Compare commits

..

75 Commits

Author SHA1 Message Date
flywind
7994556f38 don't use a temp for addr [backport: 1.6] (#19503)
* don't use a temp for addr

fix #19497

* Update compiler/ccgcalls.nim

Co-authored-by: konsumlamm <44230978+konsumlamm@users.noreply.github.com>

* add a test

Co-authored-by: konsumlamm <44230978+konsumlamm@users.noreply.github.com>
(cherry picked from commit 27e548140b)
2022-02-08 08:35:28 +01:00
flywind
8c9e88f520 disable nimlsp (#19499)
(cherry picked from commit 28180e47a9)
2022-02-07 19:50:59 +01:00
narimiran
7e52a57121 bump NimVersion to 1.6.4 2022-02-07 16:20:22 +01:00
flywind
35c812fda1 nvro don't touch cdecl types [backport: 1.6] (#19461)
* nvro don't touch cdecl types; fix #19342 again

(cherry picked from commit 0c3892c3c7)
2022-01-28 10:05:51 +01:00
rockcavera
47888c18f7 Update manual.rst (#19301)
(cherry picked from commit ef634cc251)
2022-01-26 18:30:56 +01:00
Andreas Rumpf
a8e040ec30 bugfix: varargs count as open arrays (#19447)
(cherry picked from commit 6ea6225523)
2022-01-26 07:57:21 +01:00
Hugo Granström
2fb1c80f42 change run command for numericalnim (#19448)
Now it makes runs the custom `nimCI` task that installs the external dependencies

(cherry picked from commit 4b723c0f53)
2022-01-25 13:12:41 +01:00
Andreas Rumpf
e1f3c74bdc RST: allow empty number-lines directives just like it was done for a decade; all my documents rely on this feature [backport (#19431)
(cherry picked from commit 15f54de5c4)
2022-01-23 08:14:23 +01:00
flywind
52d2ff601b enable weave (#19363) [backport:1.6]
* enable weave
* workaround CI

(cherry picked from commit 927fa890ec)
2022-01-20 18:06:44 +01:00
James
41b71487af Resolve cross file resolution errors in atomics (#19422) [backport:1.6]
* Resolve call undeclared routine testAndSet

* Fix undeclared field atomicType

(cherry picked from commit 851e515bba)
2022-01-20 18:06:35 +01:00
Tom
3d3b34473b Add noQuit option (#19419) [backport:1.6]
* Add noQuit option

* Add nim prefix in case of conflicts

Co-authored-by: flywind <xzsflywind@gmail.com>

Co-authored-by: flywind <xzsflywind@gmail.com>
(cherry picked from commit ce44cf03cc)
2022-01-20 18:06:26 +01:00
hlaaftana
fc0aec6f1b Optimize lent in JS [backport:1.6] (#19393)
* Optimize lent in JS [backport:1.6]

* addr on lent doesn't work anymore, don't use it

* use unsafeAddr  in test again for older versions

(cherry picked from commit 07c7a8a526)
2022-01-20 18:06:11 +01:00
flywind
7cafd22377 synchronize important_packages with devel 2022-01-17 11:23:51 +01:00
flywind
9aff19f51a mangle names in nimbase.h using cppDefine (#19395) [backport]
mangle names in nimbase.h
fix comments

(cherry picked from commit 4f6b59de96)
2022-01-17 11:16:29 +01:00
flywind
bc823b6487 nrvo shouldn't touch bycopy object[backport:1.2] (#19385)
fix nim-lang#19342

(cherry picked from commit 9b9ae8a487)
2022-01-17 07:38:58 +01:00
Leon
3d3d790c63 docs: Fix broken cross references to rfind in strutils (#19382) [backport]
Fixes three broken cross references to `rfind` in strutils.
Breakage due to signature changes of the `rfind` methods.

Co-authored-by: adigitoleo <adigitoleo@dissimulo.com>
(cherry picked from commit 5853303be0)
2022-01-17 07:38:51 +01:00
gecko
a90cabbe40 Fix remove on last node of singly-linked list [backport:1.6] (#19353)
(cherry picked from commit 955040f0f1)
2022-01-11 08:25:58 +01:00
Zachary Marquez
2539d7a862 fix nim-lang#19343 (#19344) [backport]
Ensure HttpClient onProgress is called once per second
Ensure that reported speed is accurate

(cherry picked from commit 58656aa5bb)
2022-01-11 08:25:42 +01:00
rockcavera
30737b3e7f Update net.nim (#19327) [backport]
(cherry picked from commit 5ec8b60942)
2022-01-11 08:25:20 +01:00
rockcavera
984691bb67 Fix #19314 - fixing broken DoublyLinkedList after adding empty DoublyLinkedList (#19315) [backport]
* Update lists.nim

* Update tlists.nim

(cherry picked from commit 526a32e169)
2022-01-11 08:21:16 +01:00
Andreas Rumpf
5f70b1ab53 fixes #16617 [backport] (#19300)
(cherry picked from commit ac37eed5a2)
2022-01-11 08:20:29 +01:00
rockcavera
afa4bc34b4 Fix #19297 - fixing broken list after adding empty list (#19299)
* Update lists.nim

* Update tlists.nim

* removed check `if b.tail != nil`

The tail of the list being null it is still possible to retrieve its end by going through all nodes from the head. So checking for null from `b.tail` is unnecessary. However, setting `a.tail = b.tail` only if `a.head != nil`, so you don't break a good list with an already broken one.

(cherry picked from commit dc5c88ca79)
2021-12-31 05:14:05 +01:00
Andreas Rumpf
0648cde117 fixes grammar typos [backport] (#19289)
(cherry picked from commit a61bbf7d8d)
2021-12-31 05:13:52 +01:00
Tomohiro
980ec713da Fix #19107 (#19286) [backport]
(cherry picked from commit fdbec969d8)
2021-12-31 05:13:46 +01:00
Jason Beetham
26ed4e5413 Fixed object field access of static objects in generics (#19283) [backport]
(cherry picked from commit fa96e56ad0)
2021-12-31 05:13:27 +01:00
Andreas Rumpf
161736ceb3 Revert "Update uri.nim (#19148) [backport:1.0]" (#19280)
This reverts commit a3ef5df680.

(cherry picked from commit 81d32cf7e5)
2021-12-31 05:13:22 +01:00
Jake Leahy
ce6fa79858 Extract runnables that specify doccmd (#19275) [backport:1.6]
(cherry picked from commit 4da7dbffc5)
2021-12-31 05:13:09 +01:00
Carlo Capocasa
f2e7e5d899 fix bug #14468 zero-width split (#19248) (#19269) 2021-12-20 13:10:51 +01:00
flywind
d4de5d32bc build testament in package CI (#19092)
* build testament in package CI

* Update testament/important_packages.nim

(cherry picked from commit b155864967)
2021-12-20 12:04:46 +01:00
xioren
efdb180f62 use uppercase "type" for Proxy-Authorization header (#19273)
Some servers will reject authorization requests with a lowercase "basic" type. Changing to "Basic" seems to solve these issues.

https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Proxy-Authorization
(cherry picked from commit b812431f83)
2021-12-20 09:42:03 +01:00
Constantine Molchanov
095202e218 Use testament to check Norm test pass (#19018)
* Use testament to check Norm test pass

This is what I actually use to test Norm, so it's better to use it.

This should not currently pass. This is expected because this is exactly the problem I want to highlight with this PR. My tests do indeed not pass at the moment.

* Remove clearNimblePath from testament command.

Co-authored-by: flywind <xzsflywind@gmail.com>
(cherry picked from commit b2edc3468c)
2021-12-19 09:19:57 +01:00
Don-Duong Quach
f4e41e6c4f Fixed typo in manual.rst unsafeAssign->uncheckedAssign. Fixes part 1 of #19266 (#19267)
(cherry picked from commit 610516e027)
2021-12-18 17:47:40 +01:00
narimiran
8aec198abc bump NimVersion to 1.6.3 2021-12-18 17:47:12 +01:00
narimiran
9084d9bc02 bump NimVersion to 1.6.2 2021-12-16 17:25:05 +01:00
Miran
48c62ca48b [backport:1.0] json: limit recursion depth (#19252)
* json: limit recursion depth

* do not run this check for JS backend

(cherry picked from commit c17baaefbc)
2021-12-14 18:19:08 +01:00
Nan Xiao
70320482be basicopt.txt: Unify the format (#19251)
(cherry picked from commit 78b86b7942)
2021-12-14 18:18:57 +01:00
Dominik Picheta
e3a07f1997 Update uri.nim (#19148) [backport:1.0]
(cherry picked from commit a3ef5df680)
2021-12-11 09:25:18 +01:00
Ștefan Talpalaru
bcf9448a75 nimc.rst: fix table markup (#19239)
(cherry picked from commit 1a92edeb89)
2021-12-11 05:47:36 +01:00
Ștefan Talpalaru
a2f5e98baa nimRawSetjmp: support Windows (#19197)
* nimRawSetjmp: support Windows

Using `_setjmp()` directly is required to avoid some rare (but very
annoying) exception-related stack corruption leading to segfaults on
Windows, with Mingw-w64 and SEH.
More details: https://github.com/status-im/nimbus-eth2/issues/3121

Also add "nimBuiltinSetjmp" - mostly for benchmarking.

* fix for Apple's Clang++

(cherry picked from commit 69aabdab80)
2021-12-11 05:47:32 +01:00
Andreas Rumpf
a3b370fa87 let Nim support Nimble 0.14 with lock-file support [backport:1.6] (#19236)
(cherry picked from commit 908fc2a22e)
2021-12-10 21:40:06 +01:00
Andreas Rumpf
b7a0c08b4f added --nimMainPrefix switch; fixes #15955; refs #16945 [backport:1.6] (#19235)
(cherry picked from commit 7ff43d07b2)
2021-12-10 21:39:58 +01:00
Andreas Rumpf
46275126b8 fixes a possible 'javascript:' protocol exploit [backport:1.0] (#19134)
* fixes a possible 'javascript:' protocol exploit [backport:1.0]

* add tests

* Update tests/stdlib/trstgen.nim

* add the same logic for hyperlinks

* move the logic into a proc

Co-authored-by: narimiran <narimiran@disroot.org>
(cherry picked from commit 9338aa2497)
2021-12-10 11:47:06 +01:00
MichalMarsalek
83c472c40d move toDeque to after addLast (#19233) [backport:1.0]
Changes the order of procs definitions in order to avoid calling an undefined proc.

(cherry picked from commit c989542339)
2021-12-10 11:46:45 +01:00
Andreas Rumpf
ac57c3193d fixes an old ARC bug: the produced copy/sink operations don't copy the hidden type field for objects with enabled inheritance; fixes #19205 [backport:1.6] (#19232)
(cherry picked from commit 32d4bf3525)
2021-12-10 11:46:35 +01:00
Andreas Rumpf
7cf5e73fb7 fixes a converter handling regression that caused private converters to leak into client modules; fixes #19213; [backport:1.6] (#19229)
(cherry picked from commit 502ac4ed5e)
2021-12-10 11:46:26 +01:00
Tanguy
c14008d77f fix #19193 (#19195) [backport:1.2]
(cherry picked from commit cd592ed85b)
2021-12-08 08:33:12 +01:00
Andreas Rumpf
168a8784f4 re-enable chronos testing once again [backport:1.2] (#19222)
(cherry picked from commit 93c8427fca)
2021-12-08 08:33:05 +01:00
Etan Kissling
ee876aee28 allow HSlice bounded by constants of distinct types (#19219) [backport:1.2]
When creating heterogenous slices of distinct types, the compiler does
not initialize the internal type's `size` before accessing it.
This then leads to this crash message:
```
compiler/int128.nim(594, 11) `false` masking only implemented for 1, 2, 4 and 8 bytes [AssertionError]
```
This patch initializes the `size` properly, fixing the problem.

(cherry picked from commit 0213c7313b)
2021-12-08 08:32:57 +01:00
Andreas Rumpf
8ed903d1d0 fixes #19159 [backport:1.6] (#19210)
(cherry picked from commit 1cbdc1573a)
2021-12-06 11:19:26 +01:00
Andreas Rumpf
bfa8188dac fixes #19198 [backport:1.6] (#19209)
* fixes #19198 [backport:1.6]

* added a test case

(cherry picked from commit f90620fb32)
2021-12-06 11:19:17 +01:00
Andreas Rumpf
56409c15c0 fixes #19015 [backport:1.6] (#19204)
(cherry picked from commit d584dd5b99)
2021-12-06 11:19:08 +01:00
Andreas Rumpf
b614d97a2d misc bugfixes [backport:1.2] (#19203)
(cherry picked from commit 23c117a950)
2021-12-06 11:18:58 +01:00
Andreas Rumpf
2bb3a85a7c renamed 'gc' switch to 'mm'; [backport:1.6] (#19187)
* renamed 'gc' switch to 'mm'; [backport:1.6]
* better docs

(cherry picked from commit a0073d2d4c)
2021-11-26 07:32:15 +01:00
flywind
1247043c90 fix marshal bugs in VM (#19161) [backport:1.6]
(cherry picked from commit fe46c8b5f1)
2021-11-22 16:30:41 +01:00
Clay Sweetser
0ba76622a3 Merge file size fields correctly on Windows (#19141)
* Merge file size fields correctly on Windows

Merge file size fields correctly on Windows

- Merge the two 32-bit file size fields from `BY_HANDLE_FILE_INFORMATION` correctly in `rawToFormalFileInfo`.
- Fixes #19135

* Update os.nim

(cherry picked from commit 0a1049881e)
2021-11-22 16:30:26 +01:00
Anuken
ab6770e77f Fix undeclared 'SYS_getrandom' on emscripten (#19144)
(cherry picked from commit 270a5a372d)
2021-11-22 16:29:54 +01:00
Andreas Rumpf
c7920e9f87 fixes .raises inference for newSeq builtin under --gc:orc [backport] (#19158)
(cherry picked from commit 309ec7167e)
2021-11-17 09:26:25 +01:00
Andreas Rumpf
167881bb83 fixes #19051 [backport:1.6] (#19133)
(cherry picked from commit c6fc3b2eae)
2021-11-17 09:26:08 +01:00
flywind
73366c015f update manual (#19130) [backport]
(cherry picked from commit 3aaa12dbe5)
2021-11-17 09:25:57 +01:00
orthoplex
cfee71e779 fixed colorNames sorting mistake (#19125) [backport]
(cherry picked from commit 528ef6c218)
2021-11-17 09:25:47 +01:00
Ryan Oldenburg
1090b0c4af Remove tlsEmulation enabled from Windows + GCC config (#19119) [backport:1.6]
This flag has a very significant performance impact on programs compiled with --threads:on. It is also apparently not needed anymore for standard circumstances. Can we remove the config? See https://github.com/nim-lang/Nim/issues/18146#issuecomment-876802676 for discussion and perf impact. [backport:1.6]

(cherry picked from commit 77b696c2c9)
2021-11-11 16:16:45 +01:00
Andreas Rumpf
3f6de926f0 fixes #14470 [backport:1.2] (#19115)
(cherry picked from commit 15157d06c3)
2021-11-11 16:16:31 +01:00
Andrey Makarov
13343180b8 fix nimindexterm in rst2tex/doc2tex [backport] (#19106)
* fix nimindexterm (rst2tex/doc2tex) [backport]

* Add support for indexing in rst

(cherry picked from commit 997ccc5889)
2021-11-11 16:16:23 +01:00
Andreas Rumpf
95dce90467 fixes #19011 [backport:1.6] (#19114)
(cherry picked from commit 6ff61766da)
2021-11-11 16:16:11 +01:00
Andreas Rumpf
f85e09633d fixes #19013 [backport:1.6] (#19111)
* fixes #19013 [backport:1.6]

* added test case

(cherry picked from commit b7c66ce860)
2021-11-11 16:16:03 +01:00
Andreas Rumpf
575450dfec fixes another effect inference bug [backport:1.6] (#19100)
* fixes another effect inference bug [backport:1.6]

(cherry picked from commit fce89cb60a)
2021-11-11 16:15:51 +01:00
Andreas Rumpf
6a2babac47 fixes #19078 [backport] (#19090)
(cherry picked from commit 9d51197aa4)
2021-11-03 15:06:53 +01:00
haxscramper
a6e192f020 [FIX] Do not break formatted string line (#19085) [backport]
Otherwise, compiler produces broken error message - `$1` is not interpolated

`Error: The $1 type doesn't have a default value. The following fields must be initialized: importGraph.`

(cherry picked from commit 4c510d5577)
2021-11-03 15:06:40 +01:00
flywind
233c6e9fb3 fix #18410 (Errors initializing an object of RootObj with the C++ backend) [backport] (#18836)
* fix #18410

* one line comment

* typo

* typo

* cover cpp

(cherry picked from commit 2f730afe9e)
2021-11-03 15:06:31 +01:00
Derek 呆
97286db546 fix #18971 (#19070) [backport:1.6]
since the example code return value from global variable, instead
of first argument, the `n.len` is 1 which causes compiler crashes.

(cherry picked from commit f755e452d2)
2021-11-03 15:06:24 +01:00
Timothy Alexander
1ac029c0f6 Fix #19052; [backport:1.6.0] (#19053)
* Fix #19052; [backport:1.6.0]

Adds a compile flag to avoid a getrandom syscall, fixing #19052.

This is neccesary when the getrandom syscall is missing, as noted in #19052, particularly in kernel versions < 3.17 when getrandom was introduced. Specifically relevant is this is missing from kernel 3.10, which is the supported kernel throughout RHEL 7 and CentOS 7, which is widely used at many organizations. Without this, versions of nim that include sysrand (i.e. versions >= 1.6.0) will not compile without modification, however with this change a compile flag may be used to fall back using /dev/urandom as done with any unknown Posix OS (preferred here as a fallback since it already supplies a cryptographically secure PRNG and existing code deals with entropy pool init, etc).

The change is placed behind a compile flag, as discussed in github ticket #19052 (summed up here):
* First, I can't seem to catch that a importc such as SYS_getrandom is declared without using it (the declared proc returns true, but compiler throws an undeclared identifier flag when referencing it).
* Second, it seemed preferable to be behaviorally explicit vs implicit when considering this is intended to be a cryptographically secure PRNG.
* Third, if I intend to compile on a kernel >= 3.17 while running the binary on at least one system < 3.17, I'll want to be able to target this without relying on a compile time determination if the getrandom syscall is available.

* Documenting compile flag for -d:nimNoGetRandom and adding changelog entry
Related to #19052 and comments in PR #19053. Also created a new changelog file since none currently exists.

Co-authored-by: Timothy Alexander <talexander@midwestlabs.com>
(cherry picked from commit dde556665a)
2021-11-03 15:05:32 +01:00
Andreas Rumpf
b18b636ea6 use two underscores for easy demangling [backport:1.6] (#19028)
(cherry picked from commit 1a45da9150)
2021-10-27 11:06:42 +02:00
narimiran
ac89e06c6e bump NimVersion to 1.6.1 2021-10-27 11:05:16 +02:00
Etan Kissling
861b625a66 allow converting static vars to openArray (#19047)
When assigning constant output to a seq, and then passing that static
seq to other functions that take `openArray`, the compiler may end up
producing errors, as it does not know how to convert `static[seq[T]]`
to `openArray[T]`. By ignoring the `static` wrapper on the type for
the purpose of determining data memory location and length, this gets
resolved cleanly. Unfortunately, it is relatively tricky to come up
with a minimal example, as there are followup problems from the failing
conversion, e.g., this may lead to `internal error: inconsistent
environment type`, instead of the relevant `openArrayLoc` error message.

(cherry picked from commit 490c4226a5)
2021-10-27 11:03:22 +02:00
narimiran
727c6378d2 bump NimVersion to 1.6.0 2021-10-18 16:36:47 +02:00
2508 changed files with 63046 additions and 131618 deletions

33
.builds/freebsd.yml Normal file
View File

@@ -0,0 +1,33 @@
## DO NO EDIT DIRECTLY! auto-generated by `nim r tools/ci_generate.nim`
# see https://man.sr.ht/builds.sr.ht/compatibility.md#freebsd
image: freebsd/latest
packages:
- databases/sqlite3
- devel/boehm-gc-threaded
- devel/pcre
- devel/sdl20
- devel/sfml
- www/node
- devel/gmake
sources:
- https://github.com/nim-lang/Nim
environment:
NIM_TESTAMENT_BATCH: "0_1"
CC: /usr/bin/clang
tasks:
- setup: |
set -e
cd Nim
. ci/funs.sh && nimBuildCsourcesIfNeeded
echo 'export PATH=$HOME/Nim/bin:$PATH' >> $HOME/.buildenv
- test: |
set -e
cd Nim
. ci/funs.sh && nimInternalBuildKochAndRunCI
triggers:
- action: email
condition: failure
to: Andreas Rumpf <rumpf_a@web.de>

33
.builds/openbsd_0.yml Normal file
View File

@@ -0,0 +1,33 @@
## DO NO EDIT DIRECTLY! auto-generated by `nim r tools/ci_generate.nim`
image: openbsd/latest
packages:
- gmake
- sqlite3
- node
- boehm-gc
- pcre
- sfml
- sdl2
- libffi
sources:
- https://github.com/nim-lang/Nim
environment:
NIM_TESTAMENT_BATCH: "0_2"
CC: /usr/bin/clang
tasks:
- setup: |
set -e
cd Nim
. ci/funs.sh && nimBuildCsourcesIfNeeded
echo 'export PATH=$HOME/Nim/bin:$PATH' >> $HOME/.buildenv
- test: |
set -e
cd Nim
. ci/funs.sh && nimInternalBuildKochAndRunCI
triggers:
- action: email
condition: failure
to: Andreas Rumpf <rumpf_a@web.de>

33
.builds/openbsd_1.yml Normal file
View File

@@ -0,0 +1,33 @@
## DO NO EDIT DIRECTLY! auto-generated by `nim r tools/ci_generate.nim`
image: openbsd/latest
packages:
- gmake
- sqlite3
- node
- boehm-gc
- pcre
- sfml
- sdl2
- libffi
sources:
- https://github.com/nim-lang/Nim
environment:
NIM_TESTAMENT_BATCH: "1_2"
CC: /usr/bin/clang
tasks:
- setup: |
set -e
cd Nim
. ci/funs.sh && nimBuildCsourcesIfNeeded
echo 'export PATH=$HOME/Nim/bin:$PATH' >> $HOME/.buildenv
- test: |
set -e
cd Nim
. ci/funs.sh && nimInternalBuildKochAndRunCI
triggers:
- action: email
condition: failure
to: Andreas Rumpf <rumpf_a@web.de>

53
.github/ISSUE_TEMPLATE/bug_report.md vendored Normal file
View File

@@ -0,0 +1,53 @@
---
name: Bug report
about: Have you found an unexpected behavior? Use this template.
title: Think about the title, twice
labels: ''
assignees: ''
---
(Consider writing a PR targetting devel branch after filing this, see [contributing.html](https://nim-lang.github.io/Nim/contributing.html)).
Function `echo` outputs the wrong string.
### Example
```nim
echo "Hello World!"
# This code should be a minimum reproducible example:
# try to simplify and minimize as much as possible. If it's a compiler
# issue, try to minimize further by removing any imports if possible.
```
### Current Output
please check whether the problem still exists in git head before posting,
see [rebuilding the compiler](https://nim-lang.github.io/Nim/intern.html#rebuilding-the-compiler).
```
Hola mundo!
```
### Expected Output
```
Hello World!
```
### Possible Solution
* In file xyz there is a call that might be the cause of it.
### Additional Information
If it's a regression, you can help us by identifying which version introduced
the bug, see [Bisecting for regressions](https://nim-lang.github.io/Nim/intern.html#bisecting-for-regressions),
or at least try known past releases (eg `choosenim 1.2.0`).
If it's a pre-existing compiler bug, see [Debugging the compiler](https://nim-lang.github.io/Nim/intern.html#debugging-the-compiler)
which should give more context on a compiler crash.
* Issue #abc is related, but different because of ...
* This issue is blocking my project xyz
```
$ nim -v
Nim Compiler Version 0.1.2
# make sure to include the git hash if not using a tagged release
```

View File

@@ -1,73 +0,0 @@
name: "Bug Report"
description: "Create a new bug report. Have you found an unexpected behavior? Use this form."
title: "Think about the title, twice."
labels: ["unconfirmed"]
body:
- type: markdown
attributes:
value: |
Please provide a minimal code example that reproduces the bug if possible.
Reports with a reproducible example or detailed information will likely receive fixes faster.
- type: textarea
id: nim-version
attributes:
label: Nim Version
description: |
Can be obtained from `nim -v` on the command line along with the OS/architecture.
For development versions, including the commit hash may help.
validations:
required: true
- type: textarea
id: description
attributes:
label: Description
description: |
Describe the problem. Code example can be given here.
placeholder: Bug reports with reproducible code or detailed information will be fixed faster.
validations:
required: true
- type: textarea
id: current-logs
attributes:
label: Current Output
description: Please copy and paste any relevant log output. This will be automatically formatted into code, so no need for backticks.
placeholder: Bug reports with reproducible code or detailed information will be fixed faster.
render: text
- type: textarea
id: expected-logs
attributes:
label: Expected Output
description: Please copy and paste any relevant log output. This will be automatically formatted into code, so no need for backticks.
placeholder: Bug reports with reproducible code or detailed information will be fixed faster.
render: text
- type: textarea
id: known-workarounds
attributes:
label: Known Workarounds
description: Provide any known workarounds.
validations:
required: false
- type: textarea
id: extra-info
attributes:
label: Additional Information
description: Any additional relevant information.
validations:
required: false
- type: markdown
attributes:
value: |
- Please check whether the problem still exists in the devel branch, which can be installed via [choosenim](https://github.com/nim-lang/choosenim/), [nightlies](https://github.com/nim-lang/nightlies/), or by [creating a temporary build of the compiler](https://nim-lang.github.io/Nim/intern.html#debugging-the-compiler-building-an-instrumented-compiler).
- Consider writing a PR targetting devel branch after filing this, see [contributing](https://nim-lang.github.io/Nim/contributing.html).
- If it's a pre-existing compiler bug, see [debugging the compiler](https://nim-lang.github.io/Nim/intern.html#debugging-the-compiler) which should give more context on a compiler crash.
- If it's a regression, you can help us by identifying which version introduced the bug by [bisecting](https://nim-lang.github.io/Nim/intern.html#bisecting-for-regressions) or at least trying known past releases (e.g. `choosenim 2.0.0`).
The Nim repo also supports bisecting in issue comments by adding `!nim c`, `!nim js` etc. before a code block, see [nimrun-action](https://github.com/juancarlospaco/nimrun-action).
- [Please, consider a Donation for the Nim project.](https://nim-lang.org/donate.html)

View File

@@ -0,0 +1,35 @@
---
name: Feature request
about: Do you want to suggest a new feature? Use this template.
title: ''
labels: ''
assignees: ''
---
<!---
Notice there is now a separate repository for the detailed RFCs and proposals:
https://github.com/nim-lang/RFCs
If you have a simple feature request, you can post it here using this template,
but bear in mind that adding new features to the language is currently a low priority.
-->
### Summary
<!--- Short summary of your proposed feature -->
### Description
<!--- Describe your solution, what problem does it fix? -->
### Alternatives
<!--- Are there any alternatives you've considered? -->
### Additional Information
<!--- For Example:
* A link to a project where the issue is relevant.
* A link to a related issue or discussion.
-->

View File

@@ -1,72 +0,0 @@
name: "Feature request"
description: "Create a new Feature Request. Do you want to suggest a new feature? Use this form."
title: "Think about the title, twice."
labels: ["unconfirmed"]
body:
- type: markdown
attributes:
value: |
- Please provide a minimal code example that illustrates the basic idea behind your feature request.
Reports with full repro code and descriptive detailed information will likely receive feedback faster.
- There is a separate repository for the detailed RFCs and proposals: https://github.com/nim-lang/RFCs.
If you have a simple feature request, you can post it here using this form,
but bear in mind that adding new features to the language is currently a low priority.
- type: textarea
id: summary
attributes:
label: Summary
description: |
Use DETAILED DESCRIPTIVE information about the feature request.
Here, you go into more details about your ideas. This section can be a few paragraphs long.
placeholder: Short summary of your proposed feature.
validations:
required: true
- type: textarea
id: description
attributes:
label: Description
description: Describe your solution, what problem does it fix?
validations:
required: true
- type: textarea
id: alternatives
attributes:
label: Alternatives
description: Are there any alternatives you've considered?
validations:
required: false
- type: textarea
id: Examples
attributes:
label: Examples
description: Provide examples for your feature request here.
placeholder: Example code here.
- type: textarea
id: incompatibility
attributes:
label: Backwards Compatibility
description: If your Feature Request introduces backward-incompatible changes, describe them and propose how to deal with them.
validations:
required: false
- type: textarea
id: links
attributes:
label: Links
description: Please copy and paste any relevant links to projects, issues, discussions, technical documentations, code samples, etc.
validations:
required: false
- type: markdown
attributes:
value: |
- Thanks for your contributions!, your ideas will receive feedback from the community soon...
- **Remember to :star: Star the Nim project on GitHub!.**
- Consider writing a PR targetting devel branch after filing this, see [contributing](https://nim-lang.github.io/Nim/contributing.html).
- [Please, consider a Donation for the Nim project.](https://nim-lang.org/donate.html)

View File

@@ -1,11 +0,0 @@
# To get started with Dependabot version updates, you'll need to specify which
# package ecosystems to update and where the package manifests are located.
# Please see the documentation for all configuration options:
# https://docs.github.com/github/administering-a-repository/configuration-options-for-dependency-updates
version: 2
updates:
- package-ecosystem: "github-actions" # See documentation for possible values
directory: "/" # Location of package manifests
schedule:
interval: "weekly"

69
.github/stale.yml vendored Normal file
View File

@@ -0,0 +1,69 @@
# Configuration for probot-stale - https://github.com/probot/stale
# Number of days of inactivity before an Issue or Pull Request becomes stale
daysUntilStale: 365
# Number of days of inactivity before an Issue or Pull Request with the stale label is closed.
# Set to false to disable. If disabled, issues still need to be closed manually, but will remain marked as stale.
daysUntilClose: 30
# Only issues or pull requests with all of these labels are check if stale. Defaults to `[]` (disabled)
onlyLabels: []
# Issues or Pull Requests with these labels will never be considered stale. Set to `[]` to disable
exemptLabels:
- ARC
- bounty
- Codegen
- Crash
- Generics
- High Priority
- Macros
- Next release
- Showstopper
- Static[T]
# Set to true to ignore issues in a project (defaults to false)
exemptProjects: false
# Set to true to ignore issues in a milestone (defaults to false)
exemptMilestones: false
# Set to true to ignore issues with an assignee (defaults to false)
exemptAssignees: false
# Label to use when marking as stale
staleLabel: stale
# Comment to post when marking as stale. Set to `false` to disable
markComment: >
This pull request has been automatically marked as stale because it has not had
recent activity.
If you think it is still a valid PR, please rebase it on the latest devel;
otherwise it will be closed. Thank you for your contributions.
# Comment to post when removing the stale label.
# unmarkComment: >
# Your comment here.
# Comment to post when closing a stale Issue or Pull Request.
# closeComment: >
# Your comment here.
# Limit the number of actions per hour, from 1-30. Default is 30
limitPerRun: 20
# Limit to only `issues` or `pulls`
only: pulls
# Optionally, specify configuration settings that are specific to just 'issues' or 'pulls':
# pulls:
# daysUntilStale: 30
# markComment: >
# This pull request has been automatically marked as stale because it has not had
# recent activity. It will be closed if no further activity occurs. Thank you
# for your contributions.
# issues:
# exemptLabels:
# - confirmed

View File

@@ -1,38 +0,0 @@
# See https://github.com/juancarlospaco/nimrun-action/issues/3#issuecomment-1607344901
name: issue comments bisects
on:
issue_comment:
types: created
jobs:
bisects:
if: |
github.event_name == 'issue_comment' && startsWith(github.event.comment.body, '!nim ') && github.event.issue.pull_request == null && github.event.comment.author_association != 'NONE'
strategy:
fail-fast: false
matrix:
platform: [ubuntu-latest, windows-latest, macos-latest]
name: ${{ matrix.platform }}-bisects
runs-on: ${{ matrix.platform }}
steps:
- uses: actions/checkout@v6
- name: Install OpenSSL (Windows)
if: |
runner.os == 'Windows'
run: choco install openssl.light --version=1.1.1.0 # OpenSSL 3.x removed SSL_library_init
shell: 'powershell'
# v2 wont work here, because uses "hardcoded" nim versions, action "dynamically" finds version with bug.
- uses: jiro4989/setup-nim-action@v1
with:
nim-version: 'devel'
- uses: juancarlospaco/nimrun-action@nim
if: |
runner.os == 'Linux' && contains(github.event.comment.body, '-d:linux' ) ||
runner.os == 'Windows' && contains(github.event.comment.body, '-d:windows') ||
runner.os == 'macOS' && contains(github.event.comment.body, '-d:osx' ) ||
runner.os == 'Linux' && !contains(github.event.comment.body, '-d:linux') && !contains(github.event.comment.body, '-d:windows') && !contains(github.event.comment.body, '-d:osx')
with:
github-token: ${{ secrets.GITHUB_TOKEN }}

View File

@@ -2,10 +2,10 @@ name: Nim Docs CI
on:
push:
paths:
- 'compiler/**.nim'
- 'compiler/docgen.nim'
- 'compiler/renderverbatim.nim'
- 'config/nimdoc.cfg'
- 'doc/**.rst'
- 'doc/**.md'
- 'doc/nimdoc.css'
- 'lib/**.nim'
- 'nimdoc/testproject/expected/testproject.html'
@@ -13,14 +13,13 @@ on:
- 'tools/kochdocs.nim'
- '.github/workflows/ci_docs.yml'
- 'koch.nim'
pull_request:
# Run only on changes on these files.
paths:
- 'compiler/**.nim'
- 'compiler/docgen.nim'
- 'compiler/renderverbatim.nim'
- 'config/nimdoc.cfg'
- 'doc/**.rst'
- 'doc/**.md'
- 'doc/nimdoc.css'
- 'lib/**.nim'
- 'nimdoc/testproject/expected/testproject.html'
@@ -29,10 +28,6 @@ on:
- '.github/workflows/ci_docs.yml'
- 'koch.nim'
concurrency:
group: ${{ github.workflow }}-${{ github.event.pull_request.number || github.ref }}
cancel-in-progress: true
jobs:
build:
strategy:
@@ -41,11 +36,11 @@ jobs:
target: [linux, windows, osx]
include:
- target: linux
os: ubuntu-22.04
os: ubuntu-20.04
- target: windows
os: windows-latest
os: windows-2019
- target: osx
os: macos-15
os: macos-10.15
name: ${{ matrix.target }}
runs-on: ${{ matrix.os }}
@@ -53,7 +48,7 @@ jobs:
steps:
- name: 'Checkout'
uses: actions/checkout@v6
uses: actions/checkout@v2
with:
fetch-depth: 2
@@ -109,7 +104,7 @@ jobs:
if: |
github.event_name == 'push' && github.ref == 'refs/heads/devel' &&
matrix.target == 'linux'
uses: crazy-max/ghaction-github-pages@v5
uses: crazy-max/ghaction-github-pages@v1
with:
build_dir: doc/html
env:

View File

@@ -1,30 +1,14 @@
name: Packages CI
on:
pull_request:
push:
branches:
- 'devel'
- 'version-2-2'
- 'version-2-0'
- 'version-1-6'
- 'version-1-2'
concurrency:
group: ${{ github.workflow }}-${{ github.event.pull_request.number || github.ref }}
cancel-in-progress: true
on: [push, pull_request]
jobs:
build:
strategy:
fail-fast: false
matrix:
os: [ubuntu-latest, macos-14]
os: [ubuntu-20.04, macos-10.15]
cpu: [amd64]
batch: ["allowed_failures", "0_3", "1_3", "2_3"] # list of `index_num`
include:
- os: ubuntu-latest
cpu: amd64
- os: macos-14
cpu: arm64
name: '${{ matrix.os }} (batch: ${{ matrix.batch }})'
runs-on: ${{ matrix.os }}
timeout-minutes: 60 # refs bug #18178
@@ -33,27 +17,26 @@ jobs:
NIM_TESTAMENT_BATCH: ${{ matrix.batch }}
steps:
- name: 'Checkout'
uses: actions/checkout@v6
uses: actions/checkout@v2
with:
fetch-depth: 2
- name: 'Install node.js'
uses: actions/setup-node@v6
- name: 'Install node.js 16.x'
uses: actions/setup-node@v2
with:
node-version: 24
node-version: '16.x'
- name: 'Install dependencies (Linux amd64)'
if: runner.os == 'Linux' && matrix.cpu == 'amd64'
run: |
sudo apt-get update -qq
sudo apt-fast update -qq
DEBIAN_FRONTEND='noninteractive' \
sudo apt-get install --no-install-recommends -yq \
sudo apt-fast install --no-install-recommends -yq \
libcurl4-openssl-dev libgc-dev libsdl1.2-dev libsfml-dev \
valgrind libc6-dbg libblas-dev liblapack-dev libpcre3 xorg-dev
valgrind libc6-dbg libblas-dev xorg-dev
- name: 'Install dependencies (macOS)'
if: runner.os == 'macOS'
run: brew install boehmgc make sfml gtk+3
# XXX can't find boehm and gtk on macos 13
- name: 'Install dependencies (Windows)'
if: runner.os == 'Windows'
shell: bash

View File

@@ -1,79 +0,0 @@
name: Tracking orc-booting compiler memory usage
on:
pull_request_target:
types: [closed]
jobs:
build:
if: github.event.pull_request.merged == true
strategy:
fail-fast: false
matrix:
os: [ubuntu-22.04]
cpu: [amd64]
name: '${{ matrix.os }}'
runs-on: ${{ matrix.os }}
steps:
- name: 'Checkout'
uses: actions/checkout@v6
with:
fetch-depth: 2
- name: 'Install node.js'
uses: actions/setup-node@v6
with:
node-version: 24
- name: 'Install dependencies (Linux amd64)'
if: runner.os == 'Linux' && matrix.cpu == 'amd64'
run: |
sudo apt-fast update -qq
DEBIAN_FRONTEND='noninteractive' \
sudo apt-fast install --no-install-recommends -yq \
libcurl4-openssl-dev libgc-dev libsdl1.2-dev libsfml-dev \
valgrind libc6-dbg libblas-dev xorg-dev
- name: 'Add build binaries to PATH'
shell: bash
run: echo "${{ github.workspace }}/bin" >> "${GITHUB_PATH}"
- name: 'System information'
shell: bash
run: . ci/funs.sh && nimCiSystemInfo
- name: 'Build csourcesAny'
shell: bash
run: . ci/funs.sh && nimBuildCsourcesIfNeeded CC=gcc ucpu='${{ matrix.cpu }}'
- name: 'Build koch'
shell: bash
run: nim c koch
- name: 'Build Nim'
shell: bash
run: ./koch boot -d:release -d:nimStrictMode --lib:lib
- name: 'Action'
shell: bash
run: nim c -r -d:release ci/action.nim
- name: 'Comment'
uses: actions/github-script@v9
with:
script: |
const fs = require('fs');
try {
const data = fs.readFileSync('ci/nimcache/results.txt', 'utf8');
github.rest.issues.createComment({
issue_number: context.issue.number,
owner: context.repo.owner,
repo: context.repo.repo,
body: data
})
} catch (err) {
console.error(err);
}

View File

@@ -1,25 +0,0 @@
# https://github.com/actions/stale#usage
name: Stale pull requests
on:
schedule:
- cron: '0 0 * * *' # Midnight.
jobs:
stale:
runs-on: ubuntu-latest
steps:
- uses: actions/stale@v10
with:
days-before-pr-stale: 365
days-before-pr-close: 30
days-before-issue-stale: -1
days-before-issue-close: -1
exempt-pr-labels: "ARC,bounty,Codegen,Crash,Generics,High Priority,Macros,Next release,Showstopper,Static[T]"
exempt-issue-labels: "Showstopper,Severe,bounty,Compiler Crash,Medium Priority"
stale-pr-message: >
This pull request is stale because it has been open for 1 year with no activity.
Contribute more commits on the pull request and rebase it on the latest devel,
or it will be closed in 30 days. Thank you for your contributions.
close-pr-message: >
This pull request has been marked as stale and closed due to inactivity after 395 days.

10
.gitignore vendored
View File

@@ -3,9 +3,9 @@
!*.*
# Cache
nimcache*/
rnimcache*/
dnimcache*/
nimcache/
rnimcache/
dnimcache/
*.o
!/icons/*.o
@@ -67,8 +67,6 @@ testament.db
/csources
/csources_v1
/csources_v2
/csources_v3
/dist/
# /lib/fusion # fusion is now unbundled; `git status` should reveal if it's there so users can act on it
@@ -111,5 +109,3 @@ htmldocs
nimdoc.out.css
# except here:
!/nimdoc/testproject/expected/*
pkgs/
/compiler/compiler/

62
.gitlab-ci.yml Normal file
View File

@@ -0,0 +1,62 @@
# xxx unused, out of date
image: ubuntu:18.04
stages:
- pre-build
- build
- deploy
- test
.linux_set_path: &linux_set_path_def
before_script:
- export PATH=$(pwd)/bin${PATH:+:$PATH}
tags:
- linux
.windows_set_path: &win_set_path_def
before_script:
- set PATH=%CD%\bin;%PATH%
tags:
- windows
build-windows:
stage: build
script:
- ci\build.bat
artifacts:
paths:
- bin\nim.exe
- bin\nimd.exe
- compiler\nim.exe
- koch.exe
expire_in: 1 week
tags:
- windows
deploy-windows:
stage: deploy
script:
- koch.exe winrelease
artifacts:
paths:
- build/*.exe
- build/*.zip
expire_in: 1 week
tags:
- windows
- fast
test-windows:
stage: test
<<: *win_set_path_def
script:
- call ci\deps.bat
- nim c testament\tester
- testament\tester.exe all
tags:
- windows
- fast

View File

@@ -1,8 +1,7 @@
trigger:
branches:
include:
- 'devel'
- 'version-*'
- '*'
pr:
branches:
include:
@@ -20,32 +19,32 @@ jobs:
strategy:
matrix:
Linux_amd64:
vmImage: 'ubuntu-24.04'
vmImage: 'ubuntu-18.04'
CPU: amd64
# regularly breaks, refs bug #17325
# Linux_i386:
# # on 'ubuntu-16.04' (not supported anymore anyways) it errored with:
# # g++-multilib : Depends: gcc-multilib (>= 4:5.3.1-1ubuntu1) but it is not going to be installed
# vmImage: 'ubuntu-18.04'
# CPU: i386
OSX_arm64:
vmImage: 'macos-15'
CPU: arm64
OSX_arm64_cpp:
vmImage: 'macos-15'
CPU: arm64
Linux_i386:
# on 'ubuntu-16.04' (not supported anymore anyways) it errored with:
# g++-multilib : Depends: gcc-multilib (>= 4:5.3.1-1ubuntu1) but it is not going to be installed
vmImage: 'ubuntu-18.04'
CPU: i386
OSX_amd64:
vmImage: 'macOS-10.15'
CPU: amd64
OSX_amd64_cpp:
vmImage: 'macOS-10.15'
CPU: amd64
NIM_COMPILE_TO_CPP: true
Windows_amd64_batch0_3:
vmImage: 'windows-2025'
vmImage: 'windows-2019'
CPU: amd64
# see also: `NIM_TEST_PACKAGES`
NIM_TESTAMENT_BATCH: "0_3"
Windows_amd64_batch1_3:
vmImage: 'windows-2025'
vmImage: 'windows-2019'
CPU: amd64
NIM_TESTAMENT_BATCH: "1_3"
Windows_amd64_batch2_3:
vmImage: 'windows-2025'
vmImage: 'windows-2019'
CPU: amd64
NIM_TESTAMENT_BATCH: "2_3"
@@ -73,19 +72,17 @@ jobs:
- task: NodeTool@0
inputs:
versionSpec: '20.x'
displayName: 'Install node.js 20.x'
versionSpec: '16.x'
displayName: 'Install node.js 16.x'
condition: and(succeeded(), eq(variables['skipci'], 'false'))
- bash: |
set -e
. ci/funs.sh
echo_run sudo add-apt-repository universe
echo_run sudo apt-get update -qq
echo_run sudo apt-fast update -qq
DEBIAN_FRONTEND='noninteractive' \
echo_run sudo apt-get install --no-install-recommends -yq \
gcc-14 g++-14 libpcre3 liblapack-dev libpcre3 liblapack-dev libcurl4-openssl-dev libgc-dev libsdl1.2-dev libsfml-dev valgrind libc6-dbg
echo_run sudo update-alternatives --install /usr/bin/gcc gcc /usr/bin/gcc-14 60 --slave /usr/bin/g++ g++ /usr/bin/g++-14
echo_run sudo apt-fast install --no-install-recommends -yq \
libcurl4-openssl-dev libgc-dev libsdl1.2-dev libsfml-dev valgrind libc6-dbg
displayName: 'Install dependencies (amd64 Linux)'
condition: and(succeeded(), eq(variables['skipci'], 'false'), eq(variables['Agent.OS'], 'Linux'), eq(variables['CPU'], 'amd64'))
@@ -102,16 +99,15 @@ jobs:
Pin-Priority: 1001
EOF
# echo_run sudo apt-get update -qq
echo_run sudo apt-get update -qq || echo "failed, see bug #17343"
# echo_run sudo apt-fast update -qq
echo_run sudo apt-fast update -qq || echo "failed, see bug #17343"
# `:i386` (e.g. in `libffi-dev:i386`) is needed otherwise you may get:
# `could not load: libffi.so` during dynamic loading.
DEBIAN_FRONTEND='noninteractive' \
echo_run sudo apt-get install --no-install-recommends --allow-downgrades -yq \
echo_run sudo apt-fast install --no-install-recommends --allow-downgrades -yq \
g++-multilib gcc-multilib libcurl4-openssl-dev:i386 libgc-dev:i386 \
libsdl1.2-dev:i386 libsfml-dev:i386 libglib2.0-dev:i386 libffi-dev:i386
cat << EOF > bin/gcc
#!/bin/bash
@@ -133,7 +129,6 @@ jobs:
- bash: brew install boehmgc make sfml
displayName: 'Install dependencies (OSX)'
condition: and(succeeded(), eq(variables['skipci'], 'false'), eq(variables['Agent.OS'], 'Darwin'))
# XXX can't find boehm on macos 13
- bash: |
set -e

View File

@@ -7,14 +7,14 @@ which nim > /dev/null || (echo "nim not in PATH"; exit 1)
which gdb > /dev/null || (echo "gdb not in PATH"; exit 1)
which readlink > /dev/null || (echo "readlink not in PATH."; exit 1)
if [[ $(uname -s) == Darwin || $(uname -s) == *BSD ]]; then
if [[ "$(uname -s)" == "Darwin" || "(uname -s)" == *"BSD" ]]; then
NIM_SYSROOT=$(dirname $(dirname $(readlink -f $(which nim))))
else
NIM_SYSROOT=$(dirname $(dirname $(readlink -e $(which nim))))
fi
# Find out where the pretty printer Python module is
GDB_PYTHON_MODULE_PATH="$NIM_SYSROOT/tools/debug/nim-gdb.py"
GDB_PYTHON_MODULE_PATH="$NIM_SYSROOT/tools/nim-gdb.py"
# Run GDB with the additional arguments that load the pretty printers
# Set the environment variable `NIM_GDB` to overwrite the call to a

View File

@@ -3,7 +3,7 @@ for %%i in (nim.exe) do (set NIM_BIN=%%~dp$PATH:i)
for %%i in ("%NIM_BIN%\..\") do (set NIM_ROOT=%%~fi)
set @GDB_PYTHON_MODULE_PATH=%NIM_ROOT%\tools\debug\nim-gdb.py
set @GDB_PYTHON_MODULE_PATH=%NIM_ROOT%\tools\nim-gdb.py
set @NIM_GDB=gdb.exe
@echo source %@GDB_PYTHON_MODULE_PATH%> wingdbcommand.txt

View File

@@ -24,6 +24,6 @@ if not exist %nim_csources% (
cd ..
copy /y bin\nim.exe %nim_csources%
)
bin\nim.exe c --noNimblePath --skipUserCfg --skipParentCfg --hints:off koch
koch boot -d:release --skipUserCfg --skipParentCfg --hints:off
koch tools --skipUserCfg --skipParentCfg --hints:off
bin\nim.exe c --skipUserCfg --skipParentCfg --hints:off koch
koch boot -d:release --skipUserCfg --skipParentCfg --hints:off
koch tools --skipUserCfg --skipParentCfg --hints:off

View File

@@ -11,7 +11,7 @@ set -e # exit on first error
. ci/funs.sh
nimBuildCsourcesIfNeeded "$@"
echo_run bin/nim c --noNimblePath --skipUserCfg --skipParentCfg --hints:off koch
echo_run bin/nim c --skipUserCfg --skipParentCfg --hints:off koch
echo_run ./koch boot -d:release --skipUserCfg --skipParentCfg --hints:off
echo_run ./koch tools --skipUserCfg --skipParentCfg --hints:off

View File

@@ -1,137 +1,72 @@
# v2.x.x - yyyy-mm-dd
# v1.8.x - yyyy-mm-dd
## Changes affecting backward compatibility
- `-d:nimPreviewFloatRoundtrip` becomes the default. `system.addFloat` and `system.$` now can produce string representations of
floating point numbers that are minimal in size and possess round-trip and correct
rounding guarantees (via the
[Dragonbox](https://raw.githubusercontent.com/jk-jeon/dragonbox/master/other_files/Dragonbox.pdf) algorithm). Use `-d:nimLegacySprintf` to emulate old behaviors.
- The `default` parameter of `tables.getOrDefault` has been renamed to `def` to
avoid conflicts with `system.default`, so named argument usage for this
parameter like `getOrDefault(..., default = ...)` will have to be changed.
- With `-d:nimPreviewCheckedClose`, the `close` function in the `std/syncio` module now raises an IO exception in case of an error.
- Unknown warnings and hints now gives warnings `warnUnknownNotes` instead of
errors.
- With `-d:nimPreviewAsmSemSymbol`, backticked symbols are type checked in the `asm/emit` statements.
- The bare `except:` now panics on `Defect`. Use `except Exception:` or `except Defect:` to catch `Defect`. `--legacy:noPanicOnExcept` is provided for a transition period.
- With `-d:nimPreviewCStringComparisons`, comparsions (`<`, `>`, `<=`, `>=`) between cstrings switch from reference semantics to value semantics like `==` and `!=`.
- `std/parsesql` has been moved to a nimble package, use `nimble` or `atlas` to install it.
- With `-d:nimPreviewDuplicateModuleError`, importing two modules that share the same name becomes a compile-time error. This includes importing the same module more than once. Use `import foo as foo1` (or other aliases) to avoid collisions.
- Adds the switch `--mangle:nim|cpp`, which selects `nim` or `cpp` style name mangling when used with `debuginfo` on, defaults to `cpp`.
- The second parameter of `succ`, `pred`, `inc`, and `dec` in `system` now accepts `SomeInteger` (previously `Ordinal`).
- Bitshift operators (`shl`, `shr`, `ashr`) now apply bitmasking to the right operand in the C/C++/VM/JS backends.
- Adds a new warning `--warning:ImplicitRangeConversion` that detects downsizing implicit conversions to range types (e.g., `int -> range[0..255]` or `range[1..256] -> range[0..255]`) that could cause runtime panics. Safe conversions like `range[0..255] -> range[0..65535]` and explicit casts do not trigger warnings. `int` to `Natural` and `Positive` conversions do not trigger warnings, which can be enabled with `--warning:systemRangeConversion`.
- Procedure compatibility also checks the backend representation of the
parameter and result types, not just their source-level shape. Use
`--legacy:procParamTypeBackendAliases` to restore the older behavior.
- Optional parameters in combination with `: body` syntax (RFC #405) are now opt-in via
`experimental:flexibleOptionalParams`.
## Standard library additions and changes
[//]: # "Additions:"
## Standard library additions and changes
- `setutils.symmetricDifference` along with its operator version
`` setutils.`-+-` `` and in-place version `setutils.toggle` have been added
to more efficiently calculate the symmetric difference of bitsets.
- `strutils.multiReplace` overload for character set replacements in a single pass.
Useful for string sanitation. Follows existing multiReplace semantics.
- `macros.parseExpr` and `macros.parseStmt` now accept an optional
filename argument for more informative errors.
- Module `colors` expanded with missing colors from the CSS color standard.
- Fixed `lists.SinglyLinkedList` being broken after removing the last node ([#19353](https://github.com/nim-lang/Nim/pull/19353)).
- `std/files` adds:
- Exports `CopyFlag` enum and `FilePermission` type for fine-grained control of file operations
- New file operation procs with `Path` support:
- `getFilePermissions`, `setFilePermissions` for managing permissions
- `tryRemoveFile` for file deletion
- `copyFile` with configurable buffer size and symlink handling
- `copyFileWithPermissions` to preserve file attributes
- `copyFileToDir` for copying files into directories
- `std/dirs` adds:
- New directory operation procs with `Path` support:
- `copyDir` with special file handling options
- `copyDirWithPermissions` to recursively preserve attributes
- `system.setLenUninit` now supports refc, JS and VM backends.
- `system.setLenUninit` for the `string` type. Allows setting length without initializing new memory on growth.
- `std/parseopt` now supports multiple parser modes via a `CliMode` enum.
Modes include `Nim` (default, fully compatible) and two new experimental modes:
`Lax` and `Gnu` for different option parsing behaviors.
- `std/nre2` is added to replace deprecated NRE.
[//]: # "Changes:"
- `std/math` The `^` symbol now supports floating-point as exponent in addition to the Natural type.
- `min`, `max`, and `sequtils`' `minIndex`, `maxIndex` and `minmax` for `openArray`s now accept a comparison function.
- `system.substr` implementation now uses `copymem` (wrapped C `memcpy`) for copying data, if available at compilation.
- `system.newStringUninit` is now considered free of side-effects allowing it to be used with `--experimental:strictFuncs`.
- `std/re` and `std/nre` are deprecated as PCRE library is obsolete.
Use https://github.com/nitely/nim-regex or `std/nre2`.
See: https://github.com/nim-lang/Nim/issues/23668.
## Language changes
- An experimental option `--experimental:typeBoundOps` has been added that
implements the RFC https://github.com/nim-lang/RFCs/issues/380.
This makes the behavior of interfaces like `hash`, `$`, `==` etc. more
reliable for nominal types across indirect/restricted imports.
- Pragma macros on type definitions can now return `nnkTypeSection` nodes as well as `nnkTypeDef`,
allowing multiple type definitions to be injected in place of the original type definition.
```nim
# objs.nim
import std/hashes
import macros
macro multiply(amount: static int, s: untyped): untyped =
let name = $s[0].basename
result = newNimNode(nnkTypeSection)
for i in 1 .. amount:
result.add(newTree(nnkTypeDef, ident(name & $i), s[1], s[2]))
type
Obj* = object
x*, y*: int
z*: string # to be ignored for equality
Foo = object
Bar {.multiply: 3.} = object
x, y, z: int
Baz = object
proc `==`*(a, b: Obj): bool =
a.x == b.x and a.y == b.y
# becomes
proc hash*(a: Obj): Hash =
$!(hash(a.x) &! hash(a.y))
type
Foo = object
Bar1 = object
x, y, z: int
Bar2 = object
x, y, z: int
Bar3 = object
x, y, z: int
Baz = object
```
```nim
# main.nim
{.experimental: "typeBoundOps".}
from objs import Obj # objs.hash, objs.`==` not imported
import std/tables
var t: Table[Obj, int]
t[Obj(x: 3, y: 4, z: "debug")] = 34
echo t[Obj(x: 3, y: 4, z: "ignored")] # 34
```
See the [experimental manual](https://nim-lang.github.io/Nim/manual_experimental.html#typeminusbound-overloads)
for more information.
- [Case statement macros](manual.html#macros-case-statement-macros) are no longer experimental,
meaning you no longer need to enable the experimental switch `caseStmtMacros` to use them.
## Compiler changes
- Fixed a bug where `sizeof(T)` inside a `typedesc` template called from a generic type's
`when` clause would error with "'sizeof' requires '.importc' types to be '.completeStruct'".
The issue was that `hasValuelessStatics` in `semtypinst.nim` didn't recognize
`tyTypeDesc(tyGenericParam)` as an unresolved generic parameter.
- `nim` can now compile version 1.4.0 as follows: `nim c --lib:lib --stylecheck:off compiler/nim`,
without requiring `-d:nimVersion140` which is now a noop.
## Tool changes
- Added `--raw` flag when generating JSON docs to not render markup.
- Added `--stdinfile` flag to name of the file used when running program from stdin (defaults to `stdinfile.nim`)
- Added `--styleCheck:warning` flag to treat style check violations as warnings.
- The `gc` switch has been renamed to `mm` ("memory management") in order to reflect the
reality better. (Nim moved away from all techniques based on "tracing".)
## Documentation changes
- Nim now supports Nimble version 0.14 which added support for lock-files. This is done by
a simple configuration change setting that you can do yourself too. In `$nim/config/nim.cfg`
replace `pkgs` by `pkgs2`.
- Added documentation for the `completeStruct` pragma in the manual.
- There is a new switch `--nimMainPrefix:prefix` to influence the `NimMain` that the
compiler produces. This is particularly useful for generating static libraries.

31
changelogs/changelog.md Normal file
View File

@@ -0,0 +1,31 @@
# v1.xx.x - yyyy-mm-dd
## Changes affecting backward compatibility
## Standard library additions and changes
### New compile flag (`-d:nimNoGetRandom`) when building `std/sysrand` to remove dependency on linux `getrandom` syscall
This compile flag only affects linux builds and is necessary if either compiling on a linux kernel version < 3.17, or if code built will be executing on kernel < 3.17.
On linux kernels < 3.17 (such as kernel 3.10 in RHEL7 and CentOS7), the `getrandom` syscall was not yet introduced. Without this, the `std/sysrand` module will not build properly, and if code is built on a kernel >= 3.17 without the flag, any usage of the `std/sysrand` module will fail to execute on a kernel < 3.17 (since it attempts to perform a syscall to `getrandom`, which isn't present in the current kernel). A compile flag has been added to force the `std/sysrand` module to use /dev/urandom (available since linux kernel 1.3.30), rather than the `getrandom` syscall. This allows for use of a cryptographically secure PRNG, regardless of kernel support for the `getrandom` syscall.
When building for RHEL7/CentOS7 for example, the entire build process for nim from a source package would then be:
```sh
$ yum install devtoolset-8 # Install GCC version 8 vs the standard 4.8.5 on RHEL7/CentOS7. Alternatively use -d:nimEmulateOverflowChecks. See issue #13692 for details
$ scl enable devtoolset-8 bash # Run bash shell with default toolchain of gcc 8
$ sh build.sh # per unix install instructions
$ bin/nim c koch # per unix install instructions
$ ./koch boot -d:release # per unix install instructions
$ ./koch tools -d:nimNoGetRandom # pass the nimNoGetRandom flag to compile std/sysrand without support for getrandom syscall
```
This is necessary to pass when building nim on kernel versions < 3.17 in particular to avoid an error of "SYS_getrandom undeclared" during the build process for stdlib (sysrand in particular).
## Language changes
## Compiler changes
## Tool changes

View File

@@ -53,7 +53,7 @@
- [``joyent_http_parser``](https://github.com/nim-lang/joyent_http_parser)
- Proc [toCountTable](https://nim-lang.org/docs/tables.html#toCountTable,openArray[A])
now produces a `CountTable` with values corresponding to the number of occurrences
now produces a `CountTable` with values correspoding to the number of occurrences
of the key in the input. It used to produce a table with all values set to `1`.
Counting occurrences in a sequence used to be:
@@ -339,7 +339,7 @@ for i in a..b:
- Fixed "ReraiseError when using try/except within finally block"
([#5871](https://github.com/nim-lang/Nim/issues/5871))
- Fixed "Range type inference leads to counter-intuitive behaviour"
- Fixed "Range type inference leads to counter-intuitive behvaiour"
([#5854](https://github.com/nim-lang/Nim/issues/5854))
- Fixed "JSON % operator can fail in extern procs with dynamic types"
([#6385](https://github.com/nim-lang/Nim/issues/6385))
@@ -403,7 +403,7 @@ for i in a..b:
([#6589](https://github.com/nim-lang/Nim/issues/6589))
- Fixed "Generated c code calls function twice"
([#6292](https://github.com/nim-lang/Nim/issues/6292))
- Fixed "Range type inference leads to counter-intuitive behaviour"
- Fixed "Range type inference leads to counter-intuitive behvaiour"
([#5854](https://github.com/nim-lang/Nim/issues/5854))
- Fixed "New backward indexing is too limited"
([#6631](https://github.com/nim-lang/Nim/issues/6631))

View File

@@ -22,7 +22,7 @@
- We removed `unicode.Rune16` without any deprecation period as the name
was wrong (see the [RFC](https://github.com/nim-lang/RFCs/issues/151) for details)
and we didn't find any usage of it in the wild. If you still need it, add this
and we didn't find any usages of it in the wild. If you still need it, add this
piece of code to your project:
```nim
type

View File

@@ -11,7 +11,7 @@
* Fixed "Assertion error when running `nim check` on compiler/nim.nim" [#12281](https://github.com/nim-lang/Nim/issues/12281)
* Fixed "Compiler crash with empty array and generic instantiation with int as parameter" [#12264](https://github.com/nim-lang/Nim/issues/12264)
* Fixed "Regression in JS backend codegen "Error: request to generate code for .compileTime proc"" [#12240](https://github.com/nim-lang/Nim/issues/12240)
* Fix how `relativePath` handles case sensitivity
* Fix how `relativePath` handle case sensitiviy
* Fixed "SIGSEGV in compiler when using generic types and seqs" [#12336](https://github.com/nim-lang/Nim/issues/12336)
* Fixed "[1.0.0] weird interaction between `import os` and casting integer to char on macosx trigger bad codegen" [#12291](https://github.com/nim-lang/Nim/issues/12291)
* VM: no special casing for big endian machines
@@ -43,7 +43,7 @@
* threadpool: fix link in docs (#12258)
* Fix spellings (#12277)
* fix #12278, don't expose internal PCRE documentation
* Fixed "Documentation of quitprocs is wrong" [#12279](https://github.com/nim-lang/Nim/issues/12279)
* Fixed "Documentation of quitprocs is wrong" [#12279(https://github.com/nim-lang/Nim/issues/12279)
* Fix typo in docs
* Fix reference to parseSpec proc in readme
* [doc/tut1] removed discard discussion in comments

View File

@@ -169,7 +169,7 @@ echo f
- The Nim compiler now supports a new pragma called ``.localPassc`` to
pass specific compiler options to the C(++) backend for the C(++) file
that was produced from the current Nim module.
- The compiler now infers "sink parameters". To disable this for a specific routine,
- The compiler now inferes "sink parameters". To disable this for a specific routine,
annotate it with `.nosinks`. To disable it for a section of code, use
`{.push sinkInference: off.}`...`{.pop.}`.
- The compiler now supports a new switch `--panics:on` that turns runtime
@@ -261,7 +261,7 @@ echo f
([#12812](https://github.com/nim-lang/Nim/issues/12812))
- Fixed "Produce static/const initializations for variables when possible"
([#12216](https://github.com/nim-lang/Nim/issues/12216))
- Fixed "Assigning discriminator field leads to internal assert with --gc:destructors"
- Fixed "Assigning descriminator field leads to internal assert with --gc:destructors"
([#12821](https://github.com/nim-lang/Nim/issues/12821))
- Fixed "nimsuggest `use` command does not return all instances of symbol"
([#12832](https://github.com/nim-lang/Nim/issues/12832))

View File

@@ -282,7 +282,7 @@
- Removed the deprecated `asyncdispatch.newAsyncNativeSocket`.
- Removed the deprecated `dom.releaseEvents` and `dom.captureEvents`.
- Removed `sharedlist.initSharedList`, was deprecated and produces undefined behaviour.
- Removed `sharedlists.initSharedList`, was deprecated and produces undefined behaviour.
- There is a new experimental feature called "strictFuncs" which makes the definition of
`.noSideEffect` stricter. [See here](manual_experimental.html#stricts-funcs)

View File

@@ -1,330 +0,0 @@
# v2.0.0 - 2023-08-01
Version 2.0 is a big milestone with too many changes to list them all here.
For a full list see [details](changelog_2_0_0_details.html).
## New features
### Better tuple unpacking
Tuple unpacking for variables is now treated as syntax sugar that directly
expands into multiple assignments. Along with this, tuple unpacking for
variables can now be nested.
```nim
proc returnsNestedTuple(): (int, (int, int), int, int) = (4, (5, 7), 2, 3)
# Now nesting is supported!
let (x, (_, y), _, z) = returnsNestedTuple()
```
### Improved type inference
A new form of type inference called [top-down inference](https://nim-lang.github.io/Nim/manual_experimental.html#topminusdown-type-inference) has been implemented for a variety of basic cases.
For example, code like the following now compiles:
```nim
let foo: seq[(float, byte, cstring)] = @[(1, 2, "abc")]
```
### Forbidden Tags
[Tag tracking](https://nim-lang.github.io/Nim/manual.html#effect-system-tag-tracking) now supports the definition
of forbidden tags by the `.forbids` pragma which can be used to disable certain effects in proc types.
For example:
```nim
type IO = object ## input/output effect
proc readLine(): string {.tags: [IO].} = discard
proc echoLine(): void = discard
proc no_IO_please() {.forbids: [IO].} =
# this is OK because it didn't define any tag:
echoLine()
# the compiler prevents this:
let y = readLine()
```
### New standard library modules
The famous `os` module got an overhaul. Several of its features are available
under a new interface that introduces a `Path` abstraction. A `Path` is
a `distinct string`, which improves the type safety when dealing with paths, files
and directories.
Use:
- `std/oserrors` for OS error reporting.
- `std/envvars` for environment variables handling.
- `std/paths` for path handling.
- `std/dirs` for directory creation/deletion/traversal.
- `std/files` for file existence checking, file deletions and moves.
- `std/symlinks` for symlink handling.
- `std/appdirs` for accessing configuration/home/temp directories.
- `std/cmdline` for reading command line parameters.
### Consistent underscore handling
The underscore identifier (`_`) is now generally not added to scope when
used as the name of a definition. While this was already the case for
variables, it is now also the case for routine parameters, generic
parameters, routine declarations, type declarations, etc. This means that the following code now does not compile:
```nim
proc foo(_: int): int = _ + 1
echo foo(1)
proc foo[_](t: typedesc[_]): seq[_] = @[default(_)]
echo foo[int]()
proc _() = echo "_"
_()
type _ = int
let x: _ = 3
```
Whereas the following code now compiles:
```nim
proc foo(_, _: int): int = 123
echo foo(1, 2)
proc foo[_, _](): int = 123
echo foo[int, bool]()
proc foo[T, U](_: typedesc[T], _: typedesc[U]): (T, U) = (default(T), default(U))
echo foo(int, bool)
proc _() = echo "one"
proc _() = echo "two"
type _ = int
type _ = float
```
### JavaScript codegen improvement
The JavaScript backend now uses [BigInt](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/BigInt)
for 64-bit integer types (`int64` and `uint64`) by default. As this affects
JS code generation, code using these types to interface with the JS backend
may need to be updated. Note that `int` and `uint` are not affected.
For compatibility with [platforms that do not support BigInt](https://caniuse.com/bigint)
and in the case of potential bugs with the new implementation, the
old behavior is currently still supported with the command line option
`--jsbigint64:off`.
## Docgen improvements
`Markdown` is now the default markup language of doc comments (instead
of the legacy `RstMarkdown` mode). In this release we begin to separate
RST and Markdown features to better follow specification of each
language, with the focus on Markdown development.
See also [the docs](https://nim-lang.github.io/Nim/markdown_rst.html).
* Added a `{.doctype: Markdown | RST | RstMarkdown.}` pragma allowing to
select the markup language mode in the doc comments of the current `.nim`
file for processing by `nim doc`:
1. `Markdown` (default) is basically CommonMark (standard Markdown) +
some Pandoc Markdown features + some RST features that are missing
in our current implementation of CommonMark and Pandoc Markdown.
2. `RST` closely follows the RST spec with few additional Nim features.
3. `RstMarkdown` is a maximum mix of RST and Markdown features, which
is kept for the sake of compatibility and ease of migration.
* Added separate `md2html` and `rst2html` commands for processing
standalone `.md` and `.rst` files respectively (and also `md2tex`/`rst2tex`).
* Added Pandoc Markdown bracket syntax `[...]` for making anchor-less links.
* Docgen now supports concise syntax for referencing Nim symbols:
instead of specifying HTML anchors directly one can use original
Nim symbol declarations (adding the aforementioned link brackets
`[...]` around them).
* To use this feature across modules, a new `importdoc` directive was added.
Using this feature for referencing also helps to ensure that links
(inside one module or the whole project) are not broken.
* Added support for RST & Markdown quote blocks (blocks starting with `>`).
* Added a popular Markdown definition lists extension.
* Added Markdown indented code blocks (blocks indented by >= 4 spaces).
* Added syntax for additional parameters to Markdown code blocks:
```nim test="nim c $1"
...
```
## C++ interop enhancements
Nim 2.0 takes C++ interop to the next level. With the new [virtual](https://nim-lang.github.io/Nim/manual_experimental.html#virtual-pragma) pragma and the extended [constructor](https://nim-lang.github.io/Nim/manual_experimental.html#constructor-pragma) pragma.
Now one can define constructors and virtual procs that maps to C++ constructors and virtual methods, allowing one to further customize
the interoperability. There is also extended support for the [codeGenDecl](https://nim-lang.org/docs/manual.html#implementation-specific-pragmas-codegendecl-pragma) pragma, so that it works on types.
It's a common pattern in C++ to use inheritance to extend a library. Some even use multiple inheritance as a mechanism to make interfaces.
Consider the following example:
```cpp
struct Base {
int someValue;
Base(int inValue) {
someValue = inValue;
};
};
class IPrinter {
public:
virtual void print() = 0;
};
```
```nim
type
Base* {.importcpp, inheritable.} = object
someValue*: int32
IPrinter* {.importcpp.} = object
const objTemplate = """
struct $1 : public $3, public IPrinter {
$2
};
""";
type NimChild {.codegenDecl: objTemplate .} = object of Base
proc makeNimChild(val: int32): NimChild {.constructor: "NimClass('1 #1) : Base(#1)".} =
echo "It calls the base constructor passing " & $this.someValue
this.someValue = val * 2 # Notice how we can access `this` inside the constructor. It's of the type `ptr NimChild`.
proc print*(self: NimChild) {.virtual.} =
echo "Some value is " & $self.someValue
let child = makeNimChild(10)
child.print()
```
It outputs:
```
It calls the base constructor passing 10
Some value is 20
```
## ARC/ORC refinements
With the 2.0 release, the ARC/ORC model got refined once again and is now finally complete:
1. Programmers now have control over the "item was moved from" state as `=wasMoved` is overridable.
2. There is a new `=dup` hook which is more efficient than the old combination of `=wasMoved(tmp); =copy(tmp, x)` operations.
3. Destructors now take a parameter of the attached object type `T` directly and don't have to take a `var T` parameter.
With these important optimizations we improved the runtime of the compiler and important benchmarks by 0%! Wait ... what?
Yes, unfortunately it turns out that for a modern optimizer like in GCC or LLVM there is no difference.
But! This refined model is more efficient once separate compilation enters the picture. In other words, as we think of
providing a stable ABI it is important not to lose any efficiency in the calling conventions.
## Tool changes
- Nim now ships Nimble version 0.14 which added support for lock-files. Libraries are stored in `$nimbleDir/pkgs2` (it was `$nimbleDir/pkgs` before). Use `nimble develop --global` to create an old style link file in the special links directory documented at https://github.com/nim-lang/nimble#nimble-develop.
- nimgrep now offers the option `--inContext` (and `--notInContext`), which
allows to filter only matches with the context block containing a given pattern.
- nimgrep: names of options containing "include/exclude" are deprecated,
e.g. instead of `--includeFile` and `--excludeFile` we have
`--filename` and `--notFilename` respectively.
Also, the semantics are now consistent for such positive/negative filters.
- Nim now ships with an alternative package manager called Atlas. More on this in upcoming versions.
## Porting guide
### Block and Break
Using an unnamed break in a block is deprecated. This warning will become an error in future versions! Use a named block with a named break instead. In other words, turn:
```nim
block:
a()
if cond:
break
b()
```
Into:
```nim
block maybePerformB:
a()
if cond:
break maybePerformB
b()
```
### Strict funcs
The definition of `"strictFuncs"` was changed.
The old definition was roughly: "A store to a ref/ptr deref is forbidden unless it's coming from a `var T` parameter".
The new definition is: "A store to a ref/ptr deref is forbidden."
This new definition is much easier to understand, the price is some expressiveness. The following code used to be
accepted:
```nim
{.experimental: "strictFuncs".}
type Node = ref object
s: string
func create(s: string): Node =
result = Node()
result.s = s # store to result[]
```
Now it has to be rewritten to:
```nim
{.experimental: "strictFuncs".}
type Node = ref object
s: string
func create(s: string): Node =
result = Node(s: s)
```
### Standard library
Several standard library modules have been moved to nimble packages, use `nimble` or `atlas` to install them:
- `std/punycode` => `punycode`
- `std/asyncftpclient` => `asyncftpclient`
- `std/smtp` => `smtp`
- `std/db_common` => `db_connector/db_common`
- `std/db_sqlite` => `db_connector/db_sqlite`
- `std/db_mysql` => `db_connector/db_mysql`
- `std/db_postgres` => `db_connector/db_postgres`
- `std/db_odbc` => `db_connector/db_odbc`
- `std/md5` => `checksums/md5`
- `std/sha1` => `checksums/sha1`
- `std/sums` => `sums`

View File

@@ -1,560 +0,0 @@
# v2.0.0 - 2023-08-01
## Changes affecting backward compatibility
- ORC is now the default memory management strategy. Use
`--mm:refc` for a transition period.
- The `threads:on` option is now the default.
- `httpclient.contentLength` default to `-1` if the Content-Length header is not set in the response. It follows Apache's `HttpClient` (Java), `http` (go) and .NET `HttpWebResponse` (C#) behaviors. Previously it raised a `ValueError`.
- `addr` is now available for all addressable locations,
`unsafeAddr` is now deprecated and an alias for `addr`.
- Certain definitions from the default `system` module have been moved to
the following new modules:
- `std/syncio`
- `std/assertions`
- `std/formatfloat`
- `std/objectdollar`
- `std/widestrs`
- `std/typedthreads`
- `std/sysatomics`
In the future, these definitions will be removed from the `system` module,
and their respective modules will have to be imported to use them.
Currently, to make these imports required, the `-d:nimPreviewSlimSystem` option
may be used.
- Enabling `-d:nimPreviewSlimSystem` also removes the following deprecated
symbols in the `system` module:
- Aliases with an `Error` suffix to exception types that have a `Defect` suffix
(see [exceptions](https://nim-lang.github.io/Nim/exceptions.html)):
`ArithmeticError`, `DivByZeroError`, `OverflowError`,
`AccessViolationError`, `AssertionError`, `OutOfMemError`, `IndexError`,
`FieldError`, `RangeError`, `StackOverflowError`, `ReraiseError`,
`ObjectAssignmentError`, `ObjectConversionError`, `FloatingPointError`,
`FloatOverflowError`, `FloatUnderflowError`, `FloatInexactError`,
`DeadThreadError`, `NilAccessError`
- `addQuitProc`, replaced by `exitprocs.addExitProc`
- Legacy unsigned conversion operations: `ze`, `ze64`, `toU8`, `toU16`, `toU32`
- `TaintedString`, formerly a distinct alias to `string`
- `PInt32`, `PInt64`, `PFloat32`, `PFloat64`, aliases to
`ptr int32`, `ptr int64`, `ptr float32`, `ptr float64`
- Enabling `-d:nimPreviewSlimSystem` removes the import of `channels_builtin` in
in the `system` module, which is replaced by [threading/channels](https://github.com/nim-lang/threading/blob/master/threading/channels.nim). Use the command `nimble install threading` and import `threading/channels`.
- Enabling `-d:nimPreviewCstringConversion` causes `ptr char`, `ptr array[N, char]` and `ptr UncheckedArray[N, char]` to not support conversion to `cstring` anymore.
- Enabling `-d:nimPreviewProcConversion` causes `proc` to not support conversion to
`pointer` anymore. `cast` may be used instead.
- The `gc:v2` option is removed.
- The `mainmodule` and `m` options are removed.
- Optional parameters in combination with `: body` syntax ([RFC #405](https://github.com/nim-lang/RFCs/issues/405))
are now opt-in via `experimental:flexibleOptionalParams`.
- Automatic dereferencing (experimental feature) is removed.
- The `Math.trunc` polyfill for targeting Internet Explorer was
previously included in most JavaScript output files.
Now, it is only included with `-d:nimJsMathTruncPolyfill`.
If you are targeting Internet Explorer, you may choose to enable this option
or define your own `Math.trunc` polyfill using the [`emit` pragma](https://nim-lang.org/docs/manual.html#implementation-specific-pragmas-emit-pragma).
Nim uses `Math.trunc` for the division and modulo operators for integers.
- `shallowCopy` and `shallow` are removed for ARC/ORC. Use `move` when possible or combine assignment and
`sink` for optimization purposes.
- The experimental `nimPreviewDotLikeOps` switch is going to be removed or deprecated because it didn't fulfill its promises.
- The `{.this.}` pragma, deprecated since 0.19, has been removed.
- `nil` literals can no longer be directly assigned to variables or fields of `distinct` pointer types. They must be converted instead.
```nim
type Foo = distinct ptr int
# Before:
var x: Foo = nil
# After:
var x: Foo = Foo(nil)
```
- Removed two type pragma syntaxes deprecated since 0.20, namely
`type Foo = object {.final.}`, and `type Foo {.final.} [T] = object`. Instead,
use `type Foo[T] {.final.} = object`.
- `foo a = b` now means `foo(a = b)` rather than `foo(a) = b`. This is consistent
with the existing behavior of `foo a, b = c` meaning `foo(a, b = c)`.
This decision was made with the assumption that the old syntax was used rarely;
if your code used the old syntax, please be aware of this change.
- [Overloadable enums](https://nim-lang.github.io/Nim/manual.html#overloadable-enum-value-names) and Unicode Operators
are no longer experimental.
- `macros.getImpl` for `const` symbols now returns the full definition node
(as `nnkConstDef`) rather than the AST of the constant value.
- Lock levels are deprecated, now a noop.
- `strictEffects` are no longer experimental.
Use `legacy:laxEffects` to keep backward compatibility.
- The `gorge`/`staticExec` calls will now return a descriptive message in the output
if the execution fails for whatever reason. To get back legacy behaviour, use `-d:nimLegacyGorgeErrors`.
- Pointer to `cstring` conversions now trigger a `[PtrToCstringConv]` warning.
This warning will become an error in future versions! Use a `cast` operation
like `cast[cstring](x)` instead.
- `logging` will default to flushing all log level messages. To get the legacy behaviour of only flushing Error and Fatal messages, use `-d:nimV1LogFlushBehavior`.
- Redefining templates with the same signature was previously
allowed to support certain macro code. To do this explicitly, the
`{.redefine.}` pragma has been added. Note that this is only for templates.
Implicit redefinition of templates is now deprecated and will give an error in the future.
- Using an unnamed break in a block is deprecated. This warning will become an error in future versions! Use a named block with a named break instead.
- Several Standard libraries have been moved to nimble packages, use `nimble` to install them:
- `std/punycode` => `punycode`
- `std/asyncftpclient` => `asyncftpclient`
- `std/smtp` => `smtp`
- `std/db_common` => `db_connector/db_common`
- `std/db_sqlite` => `db_connector/db_sqlite`
- `std/db_mysql` => `db_connector/db_mysql`
- `std/db_postgres` => `db_connector/db_postgres`
- `std/db_odbc` => `db_connector/db_odbc`
- `std/md5` => `checksums/md5`
- `std/sha1` => `checksums/sha1`
- `std/sums` => `std/sums`
- Previously, calls like `foo(a, b): ...` or `foo(a, b) do: ...` where the final argument of
`foo` had type `proc ()` were assumed by the compiler to mean `foo(a, b, proc () = ...)`.
This behavior is now deprecated. Use `foo(a, b) do (): ...` or `foo(a, b, proc () = ...)` instead.
- When `--warning[BareExcept]:on` is enabled, if an `except` specifies no exception or any exception not inheriting from `Defect` or `CatchableError`, a `warnBareExcept` warning will be triggered. For example, the following code will emit a warning:
```nim
try:
discard
except: # Warning: The bare except clause is deprecated; use `except CatchableError:` instead [BareExcept]
discard
```
- The experimental `strictFuncs` feature now disallows a store to the heap via a `ref` or `ptr` indirection.
- The underscore identifier (`_`) is now generally not added to scope when
used as the name of a definition. While this was already the case for
variables, it is now also the case for routine parameters, generic
parameters, routine declarations, type declarations, etc. This means that the following code now does not compile:
```nim
proc foo(_: int): int = _ + 1
echo foo(1)
proc foo[_](t: typedesc[_]): seq[_] = @[default(_)]
echo foo[int]()
proc _() = echo "_"
_()
type _ = int
let x: _ = 3
```
Whereas the following code now compiles:
```nim
proc foo(_, _: int): int = 123
echo foo(1, 2)
proc foo[_, _](): int = 123
echo foo[int, bool]()
proc foo[T, U](_: typedesc[T], _: typedesc[U]): (T, U) = (default(T), default(U))
echo foo(int, bool)
proc _() = echo "one"
proc _() = echo "two"
type _ = int
type _ = float
```
- Added the `--legacy:verboseTypeMismatch` switch to get legacy type mismatch error messages.
- The JavaScript backend now uses [BigInt](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/BigInt)
for 64-bit integer types (`int64` and `uint64`) by default. As this affects
JS code generation, code using these types to interface with the JS backend
may need to be updated. Note that `int` and `uint` are not affected.
For compatibility with [platforms that do not support BigInt](https://caniuse.com/bigint)
and in the case of potential bugs with the new implementation, the
old behavior is currently still supported with the command line option
`--jsbigint64:off`.
- The `proc` and `iterator` type classes now respectively only match
procs and iterators. Previously both type classes matched any of
procs or iterators.
```nim
proc prc(): int =
123
iterator iter(): int {.closure.} =
yield 123
proc takesProc[T: proc](x: T) = discard
proc takesIter[T: iterator](x: T) = discard
# always compiled:
takesProc(prc)
takesIter(iter)
# no longer compiles:
takesProc(iter)
takesIter(prc)
```
- The `proc` and `iterator` type classes now accept a calling convention pragma
(i.e. `proc {.closure.}`) that must be shared by matching proc or iterator
types. Previously, pragmas were parsed but discarded if no parameter list
was given.
This is represented in the AST by an `nnkProcTy`/`nnkIteratorTy` node with
an `nnkEmpty` node in the place of the `nnkFormalParams` node, and the pragma
node in the same place as in a concrete `proc` or `iterator` type node. This
state of the AST may be unexpected to existing code, both due to the
replacement of the `nnkFormalParams` node as well as having child nodes
unlike other type class AST.
- Signed integer literals in `set` literals now default to a range type of
`0..255` instead of `0..65535` (the maximum size of sets).
- `case` statements with `else` branches put before `elif`/`of` branches in macros
are rejected with "invalid order of case branches".
- Destructors now default to `.raises: []` (i.e. destructors must not raise
unlisted exceptions) and explicitly raising destructors are implementation
defined behavior.
- The very old, undocumented `deprecated` pragma statement syntax for
deprecated aliases is now a no-op. The regular deprecated pragma syntax is
generally sufficient instead.
```nim
# now does nothing:
{.deprecated: [OldName: NewName].}
# instead use:
type OldName* {.deprecated: "use NewName instead".} = NewName
const oldName* {.deprecated: "use newName instead".} = newName
```
`defined(nimalias)` can be used to check for versions when this syntax was
available; however since code that used this syntax is usually very old,
these deprecated aliases are likely not used anymore and it may make sense
to simply remove these statements.
- `getProgramResult` and `setProgramResult` in `std/exitprocs` are no longer
declared when they are not available on the backend. Previously it would call
`doAssert false` at runtime despite the condition being checkable at compile-time.
- Custom destructors now supports non-var parameters, e.g. ``proc `=destroy`[T: object](x: T)`` is valid. ``proc `=destroy`[T: object](x: var T)`` is deprecated.
- Relative imports will not resolve to searched paths anymore, e.g. `import ./tables` now reports an error properly.
## Standard library additions and changes
[//]: # "Changes:"
- OpenSSL 3 is now supported.
- `macros.parseExpr` and `macros.parseStmt` now accept an optional
`filename` argument for more informative errors.
- The `colors` module is expanded with missing colors from the CSS color standard.
`colPaleVioletRed` and `colMediumPurple` have also been changed to match the CSS color standard.
- Fixed `lists.SinglyLinkedList` being broken after removing the last node ([#19353](https://github.com/nim-lang/Nim/pull/19353)).
- The `md5` module now works at compile time and in JavaScript.
- Changed `mimedb` to use an `OrderedTable` instead of `OrderedTableRef`, to support `const` tables.
- `strutils.find` now uses and defaults to `last = -1` for whole string searches,
making limiting it to just the first char (`last = 0`) valid.
- `strutils.split` and `strutils.rsplit` now return the source string as a single element for an empty separator.
- `random.rand` now works with `Ordinal`s.
- Undeprecated `os.isvalidfilename`.
- `std/oids` now uses `int64` to store time internally (before, it was int32).
- `std/uri.Uri` dollar (`$`) improved, precalculates the `string` result length from the `Uri`.
- `std/uri.Uri.isIpv6` is now exported.
- `std/logging.ConsoleLogger` and `FileLogger` now have a `flushThreshold` attribute to set what log message levels are automatically flushed. For Nim v1 use `-d:nimFlushAllLogs` to automatically flush all message levels. Flushing all logs is the default behavior for Nim v2.
- `std/jsfetch.newFetchOptions` now has default values for all parameters.
- `std/jsformdata` now accepts the `Blob` data type.
- `std/sharedlist` and `std/sharedtables` are now deprecated, see [RFC #433](https://github.com/nim-lang/RFCs/issues/433).
- There is a new compile flag (`-d:nimNoGetRandom`) when building `std/sysrand` to remove the dependency on the Linux `getrandom` syscall.
This compile flag only affects Linux builds and is necessary if either compiling on a Linux kernel version < 3.17, or if code built will be executing on kernel < 3.17.
On Linux kernels < 3.17 (such as kernel 3.10 in RHEL7 and CentOS7), the `getrandom` syscall was not yet introduced. Without this, the `std/sysrand` module will not build properly, and if code is built on a kernel >= 3.17 without the flag, any usage of the `std/sysrand` module will fail to execute on a kernel < 3.17 (since it attempts to perform a syscall to `getrandom`, which isn't present in the current kernel). A compile flag has been added to force the `std/sysrand` module to use /dev/urandom (available since Linux kernel 1.3.30), rather than the `getrandom` syscall. This allows for use of a cryptographically secure PRNG, regardless of kernel support for the `getrandom` syscall.
When building for RHEL7/CentOS7 for example, the entire build process for nim from a source package would then be:
```sh
$ yum install devtoolset-8 # Install GCC version 8 vs the standard 4.8.5 on RHEL7/CentOS7. Alternatively use -d:nimEmulateOverflowChecks. See issue #13692 for details
$ scl enable devtoolset-8 bash # Run bash shell with default toolchain of gcc 8
$ sh build.sh # per unix install instructions
$ bin/nim c koch # per unix install instructions
$ ./koch boot -d:release # per unix install instructions
$ ./koch tools -d:nimNoGetRandom # pass the nimNoGetRandom flag to compile std/sysrand without support for getrandom syscall
```
This is necessary to pass when building Nim on kernel versions < 3.17 in particular to avoid an error of "SYS_getrandom undeclared" during the build process for the stdlib (`sysrand` in particular).
[//]: # "Additions:"
- Added ISO 8601 week date utilities in `times`:
- Added `IsoWeekRange`, a range type for weeks in a week-based year.
- Added `IsoYear`, a distinct type for a week-based year in contrast to a regular year.
- Added an `initDateTime` overload to create a `DateTime` from an ISO week date.
- Added `getIsoWeekAndYear` to get an ISO week number and week-based year from a datetime.
- Added `getIsoWeeksInYear` to return the number of weeks in a week-based year.
- Added new modules which were previously part of `std/os`:
- Added `std/oserrors` for OS error reporting.
- Added `std/envvars` for environment variables handling.
- Added `std/cmdline` for reading command line parameters.
- Added `std/paths`, `std/dirs`, `std/files`, `std/symlinks` and `std/appdirs`.
- Added `sep` parameter in `std/uri` to specify the query separator.
- Added `UppercaseLetters`, `LowercaseLetters`, `PunctuationChars`, `PrintableChars` sets to `std/strutils`.
- Added `complex.sgn` for obtaining the phase of complex numbers.
- Added `insertAdjacentText`, `insertAdjacentElement`, `insertAdjacentHTML`,
`after`, `before`, `closest`, `append`, `hasAttributeNS`, `removeAttributeNS`,
`hasPointerCapture`, `releasePointerCapture`, `requestPointerLock`,
`replaceChildren`, `replaceWith`, `scrollIntoViewIfNeeded`, `setHTML`,
`toggleAttribute`, and `matches` to `std/dom`.
- Added [`jsre.hasIndices`](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/RegExp/hasIndices).
- Added `capacity` for `string` and `seq` to return the current capacity, see [RFC #460](https://github.com/nim-lang/RFCs/issues/460).
- Added `openArray[char]` overloads for `std/parseutils` and `std/unicode`, allowing for more code reuse.
- Added a `safe` parameter to `base64.encodeMime`.
- Added `parseutils.parseSize` - inverse to `strutils.formatSize` - to parse human readable sizes.
- Added `minmax` to `sequtils`, as a more efficient `(min(_), max(_))` over sequences.
- `std/jscore` for the JavaScript target:
+ Added bindings to [`Array.shift`](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Array/shift)
and [`queueMicrotask`](https://developer.mozilla.org/en-US/docs/Web/API/queueMicrotask).
+ Added `toDateString`, `toISOString`, `toJSON`, `toTimeString`, `toUTCString` converters for `DateTime`.
- Added `BackwardsIndex` overload for `CacheSeq`.
- Added support for nested `with` blocks in `std/with`.
- Added `ensureMove` to the system module. It ensures that the passed argument is moved, otherwise an error is given at the compile time.
[//]: # "Deprecations:"
- Deprecated `selfExe` for Nimscript.
- Deprecated `std/base64.encode` for collections of arbitrary integer element type.
Now only `byte` and `char` are supported.
[//]: # "Removals:"
- Removed deprecated module `parseopt2`.
- Removed deprecated module `sharedstrings`.
- Removed deprecated module `dom_extensions`.
- Removed deprecated module `LockFreeHash`.
- Removed deprecated module `events`.
- Removed deprecated `oids.oidToString`.
- Removed define `nimExperimentalAsyncjsThen` for `std/asyncjs.then` and `std/jsfetch`.
- Removed deprecated `jsre.test` and `jsre.toString`.
- Removed deprecated `math.c_frexp`.
- Removed deprecated `` httpcore.`==` ``.
- Removed deprecated `std/posix.CMSG_SPACE` and `std/posix.CMSG_LEN` that take wrong argument types.
- Removed deprecated `osproc.poDemon`, symbol with typo.
- Removed deprecated `tables.rightSize`.
- Removed deprecated `posix.CLONE_STOPPED`.
## Language changes
- [Tag tracking](https://nim-lang.github.io/Nim/manual.html#effect-system-tag-tracking) now supports the definition of forbidden tags by the `.forbids` pragma
which can be used to disable certain effects in proc types.
- [Case statement macros](https://nim-lang.github.io/Nim/manual.html#macros-case-statement-macros) are no longer experimental,
meaning you no longer need to enable the experimental switch `caseStmtMacros` to use them.
- Full command syntax and block arguments i.e. `foo a, b: c` are now allowed
for the right-hand side of type definitions in type sections. Previously
they would error with "invalid indentation".
- Compile-time define changes:
- `defined` now accepts identifiers separated by dots, i.e. `defined(a.b.c)`.
In the command line, this is defined as `-d:a.b.c`. Older versions can
use backticks as in ``defined(`a.b.c`)`` to access such defines.
- [Define pragmas for constants](https://nim-lang.github.io/Nim/manual.html#implementation-specific-pragmas-compileminustime-define-pragmas)
now support a string argument for qualified define names.
```nim
# -d:package.FooBar=42
const FooBar {.intdefine: "package.FooBar".}: int = 5
echo FooBar # 42
```
This was added to help disambiguate similar define names for different packages.
In older versions, this could only be achieved with something like the following:
```nim
const FooBar = block:
const `package.FooBar` {.intdefine.}: int = 5
`package.FooBar`
```
- A generic `define` pragma for constants has been added that interprets
the value of the define based on the type of the constant value.
See the [experimental manual](https://nim-lang.github.io/Nim/manual_experimental.html#generic-nimdefine-pragma)
for a list of supported types.
- [Macro pragmas](https://nim-lang.github.io/Nim/manual.html#userminusdefined-pragmas-macro-pragmas) changes:
- Templates now accept macro pragmas.
- Macro pragmas for var/let/const sections have been redesigned in a way that works
similarly to routine macro pragmas. The new behavior is documented in the
[experimental manual](https://nim-lang.github.io/Nim/manual_experimental.html#extended-macro-pragmas).
- Pragma macros on type definitions can now return `nnkTypeSection` nodes as well as `nnkTypeDef`,
allowing multiple type definitions to be injected in place of the original type definition.
```nim
import macros
macro multiply(amount: static int, s: untyped): untyped =
let name = $s[0].basename
result = newNimNode(nnkTypeSection)
for i in 1 .. amount:
result.add(newTree(nnkTypeDef, ident(name & $i), s[1], s[2]))
type
Foo = object
Bar {.multiply: 3.} = object
x, y, z: int
Baz = object
# becomes
type
Foo = object
Bar1 = object
x, y, z: int
Bar2 = object
x, y, z: int
Bar3 = object
x, y, z: int
Baz = object
```
- A new form of type inference called [top-down inference](https://nim-lang.github.io/Nim/manual_experimental.html#topminusdown-type-inference)
has been implemented for a variety of basic cases. For example, code like the following now compiles:
```nim
let foo: seq[(float, byte, cstring)] = @[(1, 2, "abc")]
```
- `cstring` is now accepted as a selector in `case` statements, removing the
need to convert to `string`. On the JS backend, this is translated directly
to a `switch` statement.
- Nim now supports `out` parameters and ["strict definitions"](https://nim-lang.github.io/Nim/manual_experimental.html#strict-definitions-and-nimout-parameters).
- Nim now offers a [strict mode](https://nim-lang.github.io/Nim/manual_experimental.html#strict-case-objects) for `case objects`.
- IBM Z architecture and macOS m1 arm64 architecture are supported.
- `=wasMoved` can now be overridden by users.
- There is a new pragma called [quirky](https://nim-lang.github.io/Nim/manual_experimental.html#quirky-routines) that can be used to affect the code
generation of goto based exception handling. It can improve the produced code size but its effects can be subtle so use it with care.
- Tuple unpacking for variables is now treated as syntax sugar that directly
expands into multiple assignments. Along with this, tuple unpacking for
variables can now be nested.
```nim
proc returnsNestedTuple(): (int, (int, int), int, int) = (4, (5, 7), 2, 3)
let (x, (_, y), _, z) = returnsNestedTuple()
# roughly becomes
let
tmpTup1 = returnsNestedTuple()
x = tmpTup1[0]
tmpTup2 = tmpTup1[1]
y = tmpTup2[1]
z = tmpTup1[3]
```
As a result `nnkVarTuple` nodes in variable sections will no longer be
reflected in `typed` AST.
- C++ interoperability:
- New [`virtual`](https://nim-lang.github.io/Nim/manual_experimental.html#virtual-pragma) pragma added.
- Improvements to [`constructor`](https://nim-lang.github.io/Nim/manual_experimental.html#constructor-pragma) pragma.
## Compiler changes
- The `gc` switch has been renamed to `mm` ("memory management") in order to reflect the
reality better. (Nim moved away from all techniques based on "tracing".)
- Defines the `gcRefc` symbol which allows writing specific code for the refc GC.
- `nim` can now compile version 1.4.0 as follows: `nim c --lib:lib --stylecheck:off compiler/nim`,
without requiring `-d:nimVersion140` which is now a noop.
- `--styleCheck`, `--hintAsError` and `--warningAsError` now only apply to the current package.
- The switch `--nimMainPrefix:prefix` has been added to add a prefix to the names of `NimMain` and
related functions produced on the backend. This prevents conflicts with other Nim
static libraries.
- When compiling for release, the flag `-fno-math-errno` is used for GCC.
- Removed deprecated `LineTooLong` hint.
- Line numbers and file names of source files work correctly inside templates for JavaScript targets.
- Removed support for LCC (Local C), Pelles C, Digital Mars and Watcom compilers.
## Docgen
- `Markdown` is now the default markup language of doc comments (instead
of the legacy `RstMarkdown` mode). In this release we begin to separate
RST and Markdown features to better follow specification of each
language, with the focus on Markdown development.
See also [the docs](https://nim-lang.github.io/Nim/markdown_rst.html).
* Added a `{.doctype: Markdown | RST | RstMarkdown.}` pragma allowing to
select the markup language mode in the doc comments of the current `.nim`
file for processing by `nim doc`:
1. `Markdown` (default) is basically CommonMark (standard Markdown) +
some Pandoc Markdown features + some RST features that are missing
in our current implementation of CommonMark and Pandoc Markdown.
2. `RST` closely follows the RST spec with few additional Nim features.
3. `RstMarkdown` is a maximum mix of RST and Markdown features, which
is kept for the sake of compatibility and ease of migration.
* Added separate `md2html` and `rst2html` commands for processing
standalone `.md` and `.rst` files respectively (and also `md2tex`/`rst2tex`).
- Added Pandoc Markdown bracket syntax `[...]` for making anchor-less links.
- Docgen now supports concise syntax for referencing Nim symbols:
instead of specifying HTML anchors directly one can use original
Nim symbol declarations (adding the aforementioned link brackets
`[...]` around them).
* To use this feature across modules, a new `importdoc` directive was added.
Using this feature for referencing also helps to ensure that links
(inside one module or the whole project) are not broken.
- Added support for RST & Markdown quote blocks (blocks starting with `>`).
- Added a popular Markdown definition lists extension.
- Added Markdown indented code blocks (blocks indented by >= 4 spaces).
- Added syntax for additional parameters to Markdown code blocks:
```nim test="nim c $1"
...
```
## Tool changes
- Nim now ships Nimble version 0.14 which added support for lock-files. Libraries are stored in `$nimbleDir/pkgs2` (it was `$nimbleDir/pkgs` before). Use `nimble develop --global` to create an old style link file in the special links directory documented at https://github.com/nim-lang/nimble#nimble-develop.
- nimgrep added the option `--inContext` (and `--notInContext`), which
allows to filter only matches with the context block containing a given pattern.
- nimgrep: names of options containing "include/exclude" are deprecated,
e.g. instead of `--includeFile` and `--excludeFile` we have
`--filename` and `--notFilename` respectively.
Also the semantics are now consistent for such positive/negative filters.
- koch now supports the `--skipIntegrityCheck` option. The command `koch --skipIntegrityCheck boot -d:release` always builds the compiler twice.

View File

@@ -1,248 +0,0 @@
# v2.2.0 - 2024-10-02
## Changes affecting backward compatibility
- `-d:nimStrictDelete` becomes the default. An index error is produced when the index passed to `system.delete` is out of bounds. Use `-d:nimAuditDelete` to mimic the old behavior for backward compatibility.
- The default user-agent in `std/httpclient` has been changed to `Nim-httpclient/<version>` instead of `Nim httpclient/<version>` which was incorrect according to the HTTP spec.
- Methods now support implementations based on a VTable by using `--experimental:vtables`. Methods are then confined to the same module where their type has been defined.
- With `-d:nimPreviewNonVarDestructor`, non-var destructors become the default.
- A bug where tuple unpacking assignment with a longer tuple on the RHS than the LHS was allowed has been fixed, i.e. code like:
```nim
var a, b: int
(a, b) = (1, 2, 3, 4)
```
will no longer compile.
- `internalNew` is removed from the `system` module, use `new` instead.
- `bindMethod` in `std/jsffi` is deprecated, don't use it with closures.
- The JS backend now supports lambda lifting for closures. Use `--legacy:jsNoLambdaLifting` to emulate old behaviors.
- The JS backend now supports closure iterators.
- `owner` in `std/macros` is deprecated.
- Ambiguous type symbols in generic procs and templates now generate symchoice nodes.
Previously; in templates they would error immediately at the template definition,
and in generic procs a type symbol would arbitrarily be captured, losing the
information of the other symbols. This means that generic code can now give
errors for ambiguous type symbols, and macros operating on generic proc AST
may encounter symchoice nodes instead of the arbitrarily resolved type symbol nodes.
- Partial generic instantiation of routines is no longer allowed. Previously
it compiled in niche situations due to bugs in the compiler.
```nim
proc foo[T, U](x: T, y: U) = echo (x, y)
proc foo[T, U](x: var T, y: U) = echo "var ", (x, y)
proc bar[T]() =
foo[float](1, "abc")
bar[int]() # before: (1.0, "abc"), now: type mismatch, missing generic parameter
```
- `const` values now open a new scope for each constant, meaning symbols
declared in them can no longer be used outside or in the value of
other constants.
```nim
const foo = (var a = 1; a)
const bar = a # error
let baz = a # error
```
- The following POSIX wrappers have had their types changed from signed to
unsigned types on OSX and FreeBSD/OpenBSD to correct codegen errors:
- `Gid` (was `int32`, is now `uint32`)
- `Uid` (was `int32`, is now `uint32`)
- `Dev` (was `int32`, is now `uint32` on FreeBSD)
- `Nlink` (was `int16`, is now `uint32` on OpenBSD and `uint16` on OSX/other BSD)
- `sin6_flowinfo` and `sin6_scope_id` fields of `Sockaddr_in6`
(were `int32`, are now `uint32`)
- `n_net` field of `Tnetent` (was `int32`, is now `uint32`)
- The `Atomic[T]` type on C++ now uses C11 primitives by default instead of
`std::atomic`. To use `std::atomic` instead, `-d:nimUseCppAtomics` can be defined.
## Standard library additions and changes
[//]: # "Changes:"
- Changed `std/osfiles.copyFile` to allow specifying `bufferSize` instead of a hard-coded one.
- Changed `std/osfiles.copyFile` to use `POSIX_FADV_SEQUENTIAL` hints for kernel-level aggressive sequential read-aheads.
- `std/htmlparser` has been moved to a nimble package, use `nimble` or `atlas` to install it.
- Changed `std/os.copyDir` and `copyDirWithPermissions` to allow skipping special "file" objects like FIFOs, device files, etc on Unix by specifying a `skipSpecial` parameter.
[//]: # "Additions:"
- Added `newStringUninit` to the `system` module, which creates a new string of length `len` like `newString` but with uninitialized content.
- Added `setLenUninit` to the `system` module, which doesn't initialize
slots when enlarging a sequence.
- Added `hasDefaultValue` to `std/typetraits` to check if a type has a valid default value.
- Added `rangeBase` to `std/typetraits` to obtain the base type of a range type or
convert a value with a range type to its base type.
- Added Viewport API for the JavaScript targets in the `dom` module.
- Added `toSinglyLinkedRing` and `toDoublyLinkedRing` to `std/lists` to convert from `openArray`s.
- ORC: To be enabled via `nimOrcStats` there is a new API called `GC_orcStats` that can be used to query how many
objects the cyclic collector did free. If the number is zero that is a strong indicator that you can use `--mm:arc`
instead of `--mm:orc`.
- A `$` template is provided for `Path` in `std/paths`.
- `std/hashes.hash(x:string)` changed to produce a 64-bit string `Hash` (based
on Google's Farm Hash) which is also often faster than the present one. Define
`nimStringHash2` to get the old values back. `--jsbigint=off` mode always only
produces the old values. This may impact your automated tests if they depend
on hash order in some obvious or indirect way. Using `sorted` or `OrderedTable`
is often an easy workaround.
[//]: # "Deprecations:"
- Deprecates `system.newSeqUninitialized`, which is replaced by `newSeqUninit`.
[//]: # "Removals:"
## Language changes
- `noInit` can be used in types and fields to disable member initializers in the C++ backend.
- C++ custom constructors initializers see https://nim-lang.org/docs/manual_experimental.html#constructor-initializer
- `member` can be used to attach a procedure to a C++ type.
- Inside a C++ constructor, `result` can be used to access the created object rather than `this`.
- Tuple unpacking changes:
- Tuple unpacking assignment now supports using underscores to discard values.
```nim
var a, c: int
(a, _, c) = (1, 2, 3)
```
- Tuple unpacking variable declarations now support type annotations, but
only for the entire tuple.
```nim
let (a, b): (int, int) = (1, 2)
let (a, (b, c)): (byte, (float, cstring)) = (1, (2, "abc"))
```
- The experimental option `--experimental:openSym` has been added to allow
captured symbols in generic routine and template bodies respectively to be
replaced by symbols injected locally by templates/macros at instantiation
time. `bind` may be used to keep the captured symbols over the injected ones
regardless of enabling the option, but other methods like renaming the
captured symbols should be used instead so that the code is not affected by
context changes.
Since this change may affect runtime behavior, the experimental switch
`openSym` needs to be enabled; and a warning is given in the case where an
injected symbol would replace a captured symbol not bound by `bind` and
the experimental switch isn't enabled.
```nim
const value = "captured"
template foo(x: int, body: untyped): untyped =
let value {.inject.} = "injected"
body
proc old[T](): string =
foo(123):
return value # warning: a new `value` has been injected, use `bind` or turn on `experimental:openSym`
echo old[int]() # "captured"
template oldTempl(): string =
block:
foo(123):
value # warning: a new `value` has been injected, use `bind` or turn on `experimental:openSym`
echo oldTempl() # "captured"
{.experimental: "openSym".}
proc bar[T](): string =
foo(123):
return value
assert bar[int]() == "injected" # previously it would be "captured"
proc baz[T](): string =
bind value
foo(123):
return value
assert baz[int]() == "captured"
template barTempl(): string =
block:
foo(123):
value
assert barTempl() == "injected" # previously it would be "captured"
template bazTempl(): string =
bind value
block:
foo(123):
value
assert bazTempl() == "captured"
```
This option also generates a new node kind `nnkOpenSym` which contains
exactly 1 `nnkSym` node. In the future this might be merged with a slightly
modified `nnkOpenSymChoice` node but macros that want to support the
experimental feature should still handle `nnkOpenSym`, as the node kind would
simply not be generated as opposed to being removed.
Another experimental switch `genericsOpenSym` exists that enables this behavior
at instantiation time, meaning templates etc can enable it specifically when
they are being called. However this does not generate `nnkOpenSym` nodes
(unless the other switch is enabled) and so doesn't reflect the regular
behavior of the switch.
```nim
const value = "captured"
template foo(x: int, body: untyped): untyped =
let value {.inject.} = "injected"
{.push experimental: "genericsOpenSym".}
body
{.pop.}
proc bar[T](): string =
foo(123):
return value
echo bar[int]() # "injected"
template barTempl(): string =
block:
var res: string
foo(123):
res = value
res
assert barTempl() == "injected"
```
## Compiler changes
- `--nimcache` using a relative path as the argument in a config file is now relative to the config file instead of the current directory.
## Tool changes
- koch now allows bootstrapping with `-d:nimHasLibFFI`, replacing the older option of building the compiler directly w/ the `libffi` nimble package.

View File

@@ -1,4 +1,4 @@
# v2.xx.x - yyyy-mm-dd
# v1.xx.x - yyyy-mm-dd
This is an example file.
The changes should go to changelog.md!

View File

@@ -1,26 +0,0 @@
import std/[strutils, os, osproc, parseutils, strformat]
proc main() =
var msg = ""
const cmd = "./koch boot --mm:orc -d:release"
let (output, exitCode) = execCmdEx(cmd)
doAssert exitCode == 0, output
let start = rfind(output, "Hint: mm")
doAssert parseUntil(output, msg, "; proj", start) > 0, output
let (commitHash, _) = execCmdEx("""git log --format="%H" -n 1""")
let welcomeMessage = fmt"""Thanks for your hard work on this PR!
The lines below are statistics of the Nim compiler built from {commitHash}
{msg}
"""
createDir "ci/nimcache"
writeFile "ci/nimcache/results.txt", welcomeMessage
when isMainModule:
main()

View File

@@ -58,11 +58,7 @@ _nimNumCpu(){
# FreeBSD | macOS: $(sysctl -n hw.ncpu)
# OpenBSD: $(sysctl -n hw.ncpuonline)
# windows: $NUMBER_OF_PROCESSORS ?
if env | grep -q '^NIMCORES='; then
echo $NIMCORES
else
echo $(nproc 2>/dev/null || sysctl -n hw.logicalcpu 2>/dev/null || getconf _NPROCESSORS_ONLN 2>/dev/null || 1)
fi
echo $(nproc 2>/dev/null || sysctl -n hw.logicalcpu 2>/dev/null || getconf _NPROCESSORS_ONLN 2>/dev/null || 1)
}
_nimBuildCsourcesIfNeeded(){
@@ -80,8 +76,6 @@ _nimBuildCsourcesIfNeeded(){
makeX=gmake
elif [ "$unamestr" = 'CROSSOS' ]; then
makeX=gmake
elif [ "$unamestr" = 'SunOS' ]; then
makeX=gmake
else
makeX=make
fi

9
compiler.nimble Normal file
View File

@@ -0,0 +1,9 @@
version = system.NimVersion
author = "Andreas Rumpf"
description = "Compiler package providing the compiler sources as a library."
license = "MIT"
installDirs = @["compiler", "nimsuggest"]
requires "nim >= 0.14.0"

View File

@@ -1,128 +0,0 @@
import ast
import std / assertions
const
PathKinds0* = {nkDotExpr, nkCheckedFieldExpr,
nkBracketExpr, nkDerefExpr, nkHiddenDeref,
nkAddr, nkHiddenAddr,
nkObjDownConv, nkObjUpConv}
PathKinds1* = {nkHiddenStdConv, nkHiddenSubConv}
proc skipConvDfa*(n: PNode): PNode =
result = n
while true:
case result.kind
of nkObjDownConv, nkObjUpConv:
result = result[0]
of PathKinds1:
result = result[1]
else: break
proc isAnalysableFieldAccess*(orig: PNode; owner: PSym): bool =
var n = orig
while true:
case n.kind
of PathKinds0 - {nkHiddenDeref, nkDerefExpr}:
n = n[0]
of PathKinds1:
n = n[1]
of nkHiddenDeref, nkDerefExpr:
# We "own" sinkparam[].loc but not ourVar[].location as it is a nasty
# pointer indirection.
# bug #14159, we cannot reason about sinkParam[].location as it can
# still be shared for tyRef.
n = n[0]
return n.kind == nkSym and n.sym.owner == owner and
(n.sym.typ.skipTypes(abstractInst-{tyOwned}).kind in {tyOwned})
else: break
# XXX Allow closure deref operations here if we know
# the owner controlled the closure allocation?
result = n.kind == nkSym and n.sym.owner == owner and
{sfGlobal, sfThread, sfCursor} * n.sym.flags == {} and
(n.sym.kind != skParam or isSinkParam(n.sym)) # or n.sym.typ.kind == tyVar)
# Note: There is a different move analyzer possible that checks for
# consume(param.key); param.key = newValue for all paths. Then code like
#
# let splited = split(move self.root, x)
# self.root = merge(splited.lower, splited.greater)
#
# could be written without the ``move self.root``. However, this would be
# wrong! Then the write barrier for the ``self.root`` assignment would
# free the old data and all is lost! Lesson: Don't be too smart, trust the
# lower level C++ optimizer to specialize this code.
type AliasKind* = enum
yes, no, maybe
proc aliases*(obj, field: PNode): AliasKind =
# obj -> field:
# x -> x: true
# x -> x.f: true
# x.f -> x: false
# x.f -> x.f: true
# x.f -> x.v: false
# x -> x[]: true
# x[] -> x: false
# x -> x[0]: true
# x[0] -> x: false
# x[0] -> x[0]: true
# x[0] -> x[1]: false
# x -> x[i]: true
# x[i] -> x: false
# x[i] -> x[i]: maybe; Further analysis could make this return true when i is a runtime-constant
# x[i] -> x[j]: maybe; also returns maybe if only one of i or j is a compiletime-constant
template collectImportantNodes(result, n) =
var result: seq[PNode] = @[]
var n = n
while true:
case n.kind
of PathKinds0 - {nkDotExpr, nkBracketExpr, nkDerefExpr, nkHiddenDeref}:
n = n[0]
of PathKinds1:
n = n[1]
of nkDotExpr, nkBracketExpr, nkDerefExpr, nkHiddenDeref:
result.add n
n = n[0]
of nkSym:
result.add n
break
else: return no
collectImportantNodes(objImportantNodes, obj)
collectImportantNodes(fieldImportantNodes, field)
# If field is less nested than obj, then it cannot be part of/aliased by obj
if fieldImportantNodes.len < objImportantNodes.len: return no
result = yes
for i in 1..objImportantNodes.len:
# We compare the nodes leading to the location of obj and field
# with each other.
# We continue until they diverge, in which case we return no, or
# until we reach the location of obj, in which case we do not need
# to look further, since field must be part of/aliased by obj now.
# If we encounter an element access using an index which is a runtime value,
# we simply return maybe instead of yes; should further nodes not diverge.
let currFieldPath = fieldImportantNodes[^i]
let currObjPath = objImportantNodes[^i]
if currFieldPath.kind != currObjPath.kind:
return no
case currFieldPath.kind
of nkSym:
if currFieldPath.sym != currObjPath.sym: return no
of nkDotExpr:
if currFieldPath[1].sym != currObjPath[1].sym: return no
of nkDerefExpr, nkHiddenDeref:
discard
of nkBracketExpr:
if currFieldPath[1].kind in nkLiterals and currObjPath[1].kind in nkLiterals:
if currFieldPath[1].intVal != currObjPath[1].intVal:
return no
else:
result = maybe
else: assert false # unreachable

View File

@@ -10,12 +10,7 @@
## Simple alias analysis for the HLO and the code generators.
import
ast, astalgo, types, trees
import std/intsets
when defined(nimPreviewSlimSystem):
import std/assertions
ast, astalgo, types, trees, intsets
type
TAnalysisResult* = enum
@@ -51,16 +46,14 @@ proc isPartOfAux(a, b: PType, marker: var IntSet): TAnalysisResult =
if compareTypes(a, b, dcEqIgnoreDistinct): return arYes
case a.kind
of tyObject:
if a.baseClass != nil:
result = isPartOfAux(a.baseClass.skipTypes(skipPtrs), b, marker)
if a[0] != nil:
result = isPartOfAux(a[0].skipTypes(skipPtrs), b, marker)
if result == arNo: result = isPartOfAux(a.n, b, marker)
of tyGenericInst, tyDistinct, tyAlias, tySink:
result = isPartOfAux(skipModifier(a), b, marker)
of tySet, tyArray:
result = isPartOfAux(a.elementType, b, marker)
of tyTuple:
for aa in a.kids:
result = isPartOfAux(aa, b, marker)
result = isPartOfAux(lastSon(a), b, marker)
of tyArray, tySet, tyTuple:
for i in 0..<a.len:
result = isPartOfAux(a[i], b, marker)
if result == arYes: return
else: discard
@@ -81,29 +74,24 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
## cases:
##
## YES-cases:
## ```
## x <| x # for general trees
## x[] <| x
## x[i] <| x
## x.f <| x
## ```
##
## NO-cases:
## ```
## x !<| y # depending on type and symbol kind
## x[constA] !<| x[constB]
## x.f !<| x.g
## x.f !<| y.f iff x !<= y
## ```
##
## MAYBE-cases:
##
## ```
## x[] ?<| y[] iff compatible type
##
##
## x[] ?<| y depending on type
## ```
##
if a.kind == b.kind:
case a.kind
of nkSym:
@@ -118,8 +106,6 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
# use expensive type check:
if isPartOf(a.sym.typ, b.sym.typ) != arNo:
result = arMaybe
else:
result = arNo
of nkBracketExpr:
result = isPartOf(a[0], b[0])
if a.len >= 2 and b.len >= 2:
@@ -155,7 +141,7 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
result = isPartOf(a[1], b[1])
of nkObjUpConv, nkObjDownConv, nkCheckedFieldExpr:
result = isPartOf(a[0], b[0])
else: result = arNo
else: discard
# Calls return a new location, so a default of ``arNo`` is fine.
else:
# go down recursively; this is quite demanding:
@@ -171,7 +157,6 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
of DerefKinds:
# a* !<| b[] iff
result = arNo
if isPartOf(a.typ, b.typ) != arNo:
result = isPartOf(a, b[0])
if result == arNo: result = arMaybe
@@ -193,9 +178,7 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
if isPartOf(a.typ, b.typ) != arNo:
result = isPartOf(a[0], b)
if result == arNo: result = arMaybe
else:
result = arNo
else: result = arNo
else: discard
of nkObjConstr:
result = arNo
for i in 1..<b.len:
@@ -213,6 +196,4 @@ proc isPartOf*(a, b: PNode): TAnalysisResult =
of nkBracket:
if b.len > 0:
result = isPartOf(a, b[0])
else:
result = arNo
else: result = arNo
else: discard

File diff suppressed because it is too large Load Diff

File diff suppressed because it is too large Load Diff

View File

@@ -12,18 +12,18 @@
# the data structures here are used in various places of the compiler.
import
ast, astyaml, options, lineinfos, idents, rodutils,
ast, hashes, intsets, strutils, options, lineinfos, ropes, idents, rodutils,
msgs
import std/[hashes, intsets]
import std/strutils except addf
export astyaml.treeToYaml, astyaml.typeToYaml, astyaml.symToYaml, astyaml.lineInfoToStr
when defined(nimPreviewSlimSystem):
import std/assertions
proc hashNode*(p: RootRef): Hash
proc treeToYaml*(conf: ConfigRef; n: PNode, indent: int = 0, maxRecDepth: int = - 1): Rope
# Convert a tree into its YAML representation; this is used by the
# YAML code generator and it is invaluable for debugging purposes.
# If maxRecDepht <> -1 then it won't print the whole graph.
proc typeToYaml*(conf: ConfigRef; n: PType, indent: int = 0, maxRecDepth: int = - 1): Rope
proc symToYaml*(conf: ConfigRef; n: PSym, indent: int = 0, maxRecDepth: int = - 1): Rope
proc lineInfoToStr*(conf: ConfigRef; info: TLineInfo): Rope
# these are for debugging only: They are not really deprecated, but I want
# the warning so that release versions do not contain debugging statements:
@@ -31,6 +31,15 @@ proc debug*(n: PSym; conf: ConfigRef = nil) {.exportc: "debugSym", deprecated.}
proc debug*(n: PType; conf: ConfigRef = nil) {.exportc: "debugType", deprecated.}
proc debug*(n: PNode; conf: ConfigRef = nil) {.exportc: "debugNode", deprecated.}
proc typekinds*(t: PType) {.deprecated.} =
var t = t
var s = ""
while t != nil and t.len > 0:
s.add $t.kind
s.add " "
t = t.lastSon
echo s
template debug*(x: PSym|PType|PNode) {.deprecated.} =
when compiles(c.config):
debug(c.config, x)
@@ -65,9 +74,21 @@ template mdbg*: bool {.deprecated.} =
else:
error()
# --------------------------- ident tables ----------------------------------
proc idTableGet*(t: TIdTable, key: PIdObj): RootRef
proc idTableGet*(t: TIdTable, key: int): RootRef
proc idTablePut*(t: var TIdTable, key: PIdObj, val: RootRef)
proc idTableHasObjectAsKey*(t: TIdTable, key: PIdObj): bool
# checks if `t` contains the `key` (compared by the pointer value, not only
# `key`'s id)
proc idNodeTableGet*(t: TIdNodeTable, key: PIdObj): PNode
proc idNodeTablePut*(t: var TIdNodeTable, key: PIdObj, val: PNode)
# ---------------------------------------------------------------------------
proc lookupInRecord*(n: PNode, field: PIdent): PSym
proc mustRehash*(length, counter: int): bool
proc nextTry*(h, maxHash: Hash): Hash {.inline.}
# ------------- table[int, int] ---------------------------------------------
const
@@ -83,7 +104,7 @@ type
data*: TIIPairSeq
proc initIITable*(x: var TIITable)
proc initIiTable*(x: var TIITable)
proc iiTableGet*(t: TIITable, key: int): int
proc iiTablePut*(t: var TIITable, key, val: int)
@@ -171,7 +192,6 @@ proc getSymFromList*(list: PNode, ident: PIdent, start: int = 0): PSym =
result = nil
proc sameIgnoreBacktickGensymInfo(a, b: string): bool =
result = false
if a[0] != b[0]: return false
var alen = a.len - 1
while alen > 0 and a[alen] != '`': dec(alen)
@@ -201,11 +221,11 @@ proc getNamedParamFromList*(list: PNode, ident: PIdent): PSym =
## Named parameters are special because a named parameter can be
## gensym'ed and then they have '\`<number>' suffix that we need to
## ignore, see compiler / evaltempl.nim, snippet:
## ```nim
##
## .. code-block:: nim
##
## result.add newIdentNode(getIdent(c.ic, x.name.s & "\`gensym" & $x.id),
## if c.instLines: actual.info else: templ.info)
## ```
result = nil
for i in 1..<list.len:
let it = list[i].sym
if it.name.id == ident.id or
@@ -214,7 +234,173 @@ proc getNamedParamFromList*(list: PNode, ident: PIdent): PSym =
proc hashNode(p: RootRef): Hash =
result = hash(cast[pointer](p))
import std/tables
proc mustRehash(length, counter: int): bool =
assert(length > counter)
result = (length * 2 < counter * 3) or (length - counter < 4)
proc rspaces(x: int): Rope =
# returns x spaces
result = rope(spaces(x))
proc toYamlChar(c: char): string =
case c
of '\0'..'\x1F', '\x7F'..'\xFF': result = "\\u" & strutils.toHex(ord(c), 4)
of '\'', '\"', '\\': result = '\\' & c
else: result = $c
proc makeYamlString*(s: string): Rope =
# We have to split long strings into many ropes. Otherwise
# this could trigger InternalError(111). See the ropes module for
# further information.
const MaxLineLength = 64
result = nil
var res = "\""
for i in 0..<s.len:
if (i + 1) mod MaxLineLength == 0:
res.add('\"')
res.add("\n")
result.add(rope(res))
res = "\"" # reset
res.add(toYamlChar(s[i]))
res.add('\"')
result.add(rope(res))
proc flagsToStr[T](flags: set[T]): Rope =
if flags == {}:
result = rope("[]")
else:
result = nil
for x in items(flags):
if result != nil: result.add(", ")
result.add(makeYamlString($x))
result = "[" & result & "]"
proc lineInfoToStr(conf: ConfigRef; info: TLineInfo): Rope =
result = "[$1, $2, $3]" % [makeYamlString(toFilename(conf, info)),
rope(toLinenumber(info)),
rope(toColumn(info))]
proc treeToYamlAux(conf: ConfigRef; n: PNode, marker: var IntSet,
indent, maxRecDepth: int): Rope
proc symToYamlAux(conf: ConfigRef; n: PSym, marker: var IntSet,
indent, maxRecDepth: int): Rope
proc typeToYamlAux(conf: ConfigRef; n: PType, marker: var IntSet,
indent, maxRecDepth: int): Rope
proc symToYamlAux(conf: ConfigRef; n: PSym, marker: var IntSet, indent: int,
maxRecDepth: int): Rope =
if n == nil:
result = rope("null")
elif containsOrIncl(marker, n.id):
result = "\"$1\"" % [rope(n.name.s)]
else:
var ast = treeToYamlAux(conf, n.ast, marker, indent + 2, maxRecDepth - 1)
#rope("typ"), typeToYamlAux(conf, n.typ, marker,
# indent + 2, maxRecDepth - 1),
let istr = rspaces(indent + 2)
result = rope("{")
result.addf("$N$1\"kind\": $2", [istr, makeYamlString($n.kind)])
result.addf("$N$1\"name\": $2", [istr, makeYamlString(n.name.s)])
result.addf("$N$1\"typ\": $2", [istr, typeToYamlAux(conf, n.typ, marker, indent + 2, maxRecDepth - 1)])
if conf != nil:
# if we don't pass the config, we probably don't care about the line info
result.addf("$N$1\"info\": $2", [istr, lineInfoToStr(conf, n.info)])
if card(n.flags) > 0:
result.addf("$N$1\"flags\": $2", [istr, flagsToStr(n.flags)])
result.addf("$N$1\"magic\": $2", [istr, makeYamlString($n.magic)])
result.addf("$N$1\"ast\": $2", [istr, ast])
result.addf("$N$1\"options\": $2", [istr, flagsToStr(n.options)])
result.addf("$N$1\"position\": $2", [istr, rope(n.position)])
result.addf("$N$1\"k\": $2", [istr, makeYamlString($n.loc.k)])
result.addf("$N$1\"storage\": $2", [istr, makeYamlString($n.loc.storage)])
if card(n.loc.flags) > 0:
result.addf("$N$1\"flags\": $2", [istr, makeYamlString($n.loc.flags)])
result.addf("$N$1\"r\": $2", [istr, n.loc.r])
result.addf("$N$1\"lode\": $2", [istr, treeToYamlAux(conf, n.loc.lode, marker, indent + 2, maxRecDepth - 1)])
result.addf("$N$1}", [rspaces(indent)])
proc typeToYamlAux(conf: ConfigRef; n: PType, marker: var IntSet, indent: int,
maxRecDepth: int): Rope =
var sonsRope: Rope
if n == nil:
sonsRope = rope("null")
elif containsOrIncl(marker, n.id):
sonsRope = "\"$1 @$2\"" % [rope($n.kind), rope(
strutils.toHex(cast[ByteAddress](n), sizeof(n) * 2))]
else:
if n.len > 0:
sonsRope = rope("[")
for i in 0..<n.len:
if i > 0: sonsRope.add(",")
sonsRope.addf("$N$1$2", [rspaces(indent + 4), typeToYamlAux(conf, n[i],
marker, indent + 4, maxRecDepth - 1)])
sonsRope.addf("$N$1]", [rspaces(indent + 2)])
else:
sonsRope = rope("null")
let istr = rspaces(indent + 2)
result = rope("{")
result.addf("$N$1\"kind\": $2", [istr, makeYamlString($n.kind)])
result.addf("$N$1\"sym\": $2", [istr, symToYamlAux(conf, n.sym, marker, indent + 2, maxRecDepth - 1)])
result.addf("$N$1\"n\": $2", [istr, treeToYamlAux(conf, n.n, marker, indent + 2, maxRecDepth - 1)])
if card(n.flags) > 0:
result.addf("$N$1\"flags\": $2", [istr, flagsToStr(n.flags)])
result.addf("$N$1\"callconv\": $2", [istr, makeYamlString($n.callConv)])
result.addf("$N$1\"size\": $2", [istr, rope(n.size)])
result.addf("$N$1\"align\": $2", [istr, rope(n.align)])
result.addf("$N$1\"sons\": $2", [istr, sonsRope])
proc treeToYamlAux(conf: ConfigRef; n: PNode, marker: var IntSet, indent: int,
maxRecDepth: int): Rope =
if n == nil:
result = rope("null")
else:
var istr = rspaces(indent + 2)
result = "{$N$1\"kind\": $2" % [istr, makeYamlString($n.kind)]
if maxRecDepth != 0:
if conf != nil:
result.addf(",$N$1\"info\": $2", [istr, lineInfoToStr(conf, n.info)])
case n.kind
of nkCharLit..nkInt64Lit:
result.addf(",$N$1\"intVal\": $2", [istr, rope(n.intVal)])
of nkFloatLit, nkFloat32Lit, nkFloat64Lit:
result.addf(",$N$1\"floatVal\": $2",
[istr, rope(n.floatVal.toStrMaxPrecision)])
of nkStrLit..nkTripleStrLit:
result.addf(",$N$1\"strVal\": $2", [istr, makeYamlString(n.strVal)])
of nkSym:
result.addf(",$N$1\"sym\": $2",
[istr, symToYamlAux(conf, n.sym, marker, indent + 2, maxRecDepth)])
of nkIdent:
if n.ident != nil:
result.addf(",$N$1\"ident\": $2", [istr, makeYamlString(n.ident.s)])
else:
result.addf(",$N$1\"ident\": null", [istr])
else:
if n.len > 0:
result.addf(",$N$1\"sons\": [", [istr])
for i in 0..<n.len:
if i > 0: result.add(",")
result.addf("$N$1$2", [rspaces(indent + 4), treeToYamlAux(conf, n[i],
marker, indent + 4, maxRecDepth - 1)])
result.addf("$N$1]", [istr])
result.addf(",$N$1\"typ\": $2",
[istr, typeToYamlAux(conf, n.typ, marker, indent + 2, maxRecDepth)])
result.addf("$N$1}", [rspaces(indent)])
proc treeToYaml(conf: ConfigRef; n: PNode, indent: int = 0, maxRecDepth: int = - 1): Rope =
var marker = initIntSet()
result = treeToYamlAux(conf, n, marker, indent, maxRecDepth)
proc typeToYaml(conf: ConfigRef; n: PType, indent: int = 0, maxRecDepth: int = - 1): Rope =
var marker = initIntSet()
result = typeToYamlAux(conf, n, marker, indent, maxRecDepth)
proc symToYaml(conf: ConfigRef; n: PSym, indent: int = 0, maxRecDepth: int = - 1): Rope =
var marker = initIntSet()
result = symToYamlAux(conf, n, marker, indent, maxRecDepth)
import tables
const backrefStyle = "\e[90m"
const enumStyle = "\e[34m"
@@ -378,12 +564,14 @@ proc value(this: var DebugPrinter; value: PType) =
this.key "n"
this.value value.n
this.key "sons"
this.openBracket
for i, a in value.ikids:
if i > 0: this.comma
this.value a
this.closeBracket
if value.len > 0:
this.key "sons"
this.openBracket
for i in 0..<value.len:
this.value value[i]
if i != value.len - 1:
this.comma
this.closeBracket
if value.n != nil:
this.key "n"
@@ -452,32 +640,35 @@ proc value(this: var DebugPrinter; value: PNode) =
proc debug(n: PSym; conf: ConfigRef) =
var this = DebugPrinter(
visited: initTable[pointer, int](),
renderSymType: true,
useColor: not defined(windows)
)
var this: DebugPrinter
this.visited = initTable[pointer, int]()
this.renderSymType = true
this.useColor = not defined(windows)
this.value(n)
echo($this.res)
proc debug(n: PType; conf: ConfigRef) =
var this = DebugPrinter(
visited: initTable[pointer, int](),
renderSymType: true,
useColor: not defined(windows)
)
var this: DebugPrinter
this.visited = initTable[pointer, int]()
this.renderSymType = true
this.useColor = not defined(windows)
this.value(n)
echo($this.res)
proc debug(n: PNode; conf: ConfigRef) =
var this = DebugPrinter(
visited: initTable[pointer, int](),
renderSymType: false,
useColor: not defined(windows)
)
var this: DebugPrinter
this.visited = initTable[pointer, int]()
#this.renderSymType = true
this.useColor = not defined(windows)
this.value(n)
echo($this.res)
proc nextTry(h, maxHash: Hash): Hash =
result = ((5 * h) + 1) and maxHash
# For any initial h in range(maxHash), repeating that maxHash times
# generates each int in range(maxHash) exactly once (see any text on
# random-number generation for proof).
proc objectSetContains*(t: TObjectSet, obj: RootRef): bool =
# returns true whether n is in t
var h: Hash = hashNode(obj) and high(t.data) # start with real hash value
@@ -525,6 +716,95 @@ proc objectSetContainsOrIncl*(t: var TObjectSet, obj: RootRef): bool =
inc(t.counter)
result = false
proc strTableContains*(t: TStrTable, n: PSym): bool =
var h: Hash = n.name.h and high(t.data) # start with real hash value
while t.data[h] != nil:
if (t.data[h] == n):
return true
h = nextTry(h, high(t.data))
result = false
proc strTableRawInsert(data: var seq[PSym], n: PSym) =
var h: Hash = n.name.h and high(data)
while data[h] != nil:
if data[h] == n:
# allowed for 'export' feature:
#InternalError(n.info, "StrTableRawInsert: " & n.name.s)
return
h = nextTry(h, high(data))
assert(data[h] == nil)
data[h] = n
proc symTabReplaceRaw(data: var seq[PSym], prevSym: PSym, newSym: PSym) =
assert prevSym.name.h == newSym.name.h
var h: Hash = prevSym.name.h and high(data)
while data[h] != nil:
if data[h] == prevSym:
data[h] = newSym
return
h = nextTry(h, high(data))
assert false
proc symTabReplace*(t: var TStrTable, prevSym: PSym, newSym: PSym) =
symTabReplaceRaw(t.data, prevSym, newSym)
proc strTableEnlarge(t: var TStrTable) =
var n: seq[PSym]
newSeq(n, t.data.len * GrowthFactor)
for i in 0..high(t.data):
if t.data[i] != nil: strTableRawInsert(n, t.data[i])
swap(t.data, n)
proc strTableAdd*(t: var TStrTable, n: PSym) =
if mustRehash(t.data.len, t.counter): strTableEnlarge(t)
strTableRawInsert(t.data, n)
inc(t.counter)
proc strTableInclReportConflict*(t: var TStrTable, n: PSym;
onConflictKeepOld = false): PSym =
# if `t` has a conflicting symbol (same identifier as `n`), return it
# otherwise return `nil`. Incl `n` to `t` unless `onConflictKeepOld = true`
# and a conflict was found.
assert n.name != nil
var h: Hash = n.name.h and high(t.data)
var replaceSlot = -1
while true:
var it = t.data[h]
if it == nil: break
# Semantic checking can happen multiple times thanks to templates
# and overloading: (var x=@[]; x).mapIt(it).
# So it is possible the very same sym is added multiple
# times to the symbol table which we allow here with the 'it == n' check.
if it.name.id == n.name.id:
if it == n: return nil
replaceSlot = h
h = nextTry(h, high(t.data))
if replaceSlot >= 0:
result = t.data[replaceSlot] # found it
if not onConflictKeepOld:
t.data[replaceSlot] = n # overwrite it with newer definition!
return result # but return the old one
elif mustRehash(t.data.len, t.counter):
strTableEnlarge(t)
strTableRawInsert(t.data, n)
else:
assert(t.data[h] == nil)
t.data[h] = n
inc(t.counter)
result = nil
proc strTableIncl*(t: var TStrTable, n: PSym;
onConflictKeepOld = false): bool {.discardable.} =
result = strTableInclReportConflict(t, n, onConflictKeepOld) != nil
proc strTableGet*(t: TStrTable, name: PIdent): PSym =
var h: Hash = name.h and high(t.data)
while true:
result = t.data[h]
if result == nil: break
if result.name.id == name.id: break
h = nextTry(h, high(t.data))
type
TIdentIter* = object # iterator over all syms with same identifier
@@ -532,21 +812,16 @@ type
name*: PIdent
proc nextIdentIter*(ti: var TIdentIter, tab: TStrTable): PSym =
# hot spots
var h = ti.h and high(tab.data)
var start = h
var p {.cursor.} = tab.data[h]
while p != nil:
if p.name.id == ti.name.id: break
result = tab.data[h]
while result != nil:
if result.name.id == ti.name.id: break
h = nextTry(h, high(tab.data))
if h == start:
p = nil
result = nil
break
p = tab.data[h]
if p != nil:
result = p # increase the count
else:
result = nil
result = tab.data[h]
ti.h = nextTry(h, high(tab.data))
proc initIdentIter*(ti: var TIdentIter, tab: TStrTable, s: PIdent): PSym =
@@ -606,75 +881,124 @@ proc initTabIter*(ti: var TTabIter, tab: TStrTable): PSym =
result = nextIter(ti, tab)
iterator items*(tab: TStrTable): PSym =
var it: TTabIter = default(TTabIter)
var it: TTabIter
var s = initTabIter(it, tab)
while s != nil:
yield s
s = nextIter(it, tab)
proc isNil(x: ItemId): bool {.inline.} =
x.module == 0 and x.item == 0
proc hasEmptySlot[T](data: TIdPairSeq[T]): bool =
proc hasEmptySlot(data: TIdPairSeq): bool =
for h in 0..high(data):
if isNil(data[h].key):
if data[h].key == nil:
return true
result = false
proc idTableRawGet[T](t: TIdTable[T], key: int): int =
proc idTableRawGet(t: TIdTable, key: int): int =
var h: Hash
h = key and high(t.data) # start with real hash value
while not isNil(t.data[h].key):
if toId(t.data[h].key) == key:
while t.data[h].key != nil:
if t.data[h].key.id == key:
return h
h = nextTry(h, high(t.data))
result = - 1
proc getOrDefault*[T](t: TIdTable[T], key: ItemId): T =
var index = idTableRawGet(t, toId(key))
proc idTableHasObjectAsKey(t: TIdTable, key: PIdObj): bool =
var index = idTableRawGet(t, key.id)
if index >= 0: result = t.data[index].key == key
else: result = false
proc idTableGet(t: TIdTable, key: PIdObj): RootRef =
var index = idTableRawGet(t, key.id)
if index >= 0: result = t.data[index].val
else: result = default(T)
else: result = nil
template idTableGet*[T](t: TIdTable[T], key: PType | PSym): T =
getOrDefault(t, key.itemId)
proc idTableGet(t: TIdTable, key: int): RootRef =
var index = idTableRawGet(t, key)
if index >= 0: result = t.data[index].val
else: result = nil
proc idTableRawInsert[T](data: var TIdPairSeq[T], key: ItemId, val: T) =
iterator pairs*(t: TIdTable): tuple[key: int, value: RootRef] =
for i in 0..high(t.data):
if t.data[i].key != nil:
yield (t.data[i].key.id, t.data[i].val)
proc idTableRawInsert(data: var TIdPairSeq, key: PIdObj, val: RootRef) =
var h: Hash
let keyId = toId(key)
h = keyId and high(data)
while not isNil(data[h].key):
assert(toId(data[h].key) != keyId)
h = key.id and high(data)
while data[h].key != nil:
assert(data[h].key.id != key.id)
h = nextTry(h, high(data))
assert(isNil(data[h].key))
assert(data[h].key == nil)
data[h].key = key
data[h].val = val
proc `[]=`*[T](t: var TIdTable[T], key: ItemId, val: T) =
proc idTablePut(t: var TIdTable, key: PIdObj, val: RootRef) =
var
index: int
n: TIdPairSeq[T]
index = idTableRawGet(t, toId(key))
n: TIdPairSeq
index = idTableRawGet(t, key.id)
if index >= 0:
assert(not isNil(t.data[index].key))
assert(t.data[index].key != nil)
t.data[index].val = val
else:
if mustRehash(t.data.len, t.counter):
newSeq(n, t.data.len * GrowthFactor)
for i in 0..high(t.data):
if not isNil(t.data[i].key):
if t.data[i].key != nil:
idTableRawInsert(n, t.data[i].key, t.data[i].val)
assert(hasEmptySlot(n))
swap(t.data, n)
idTableRawInsert(t.data, key, val)
inc(t.counter)
template idTablePut*[T](t: var TIdTable[T], key: PType | PSym, val: T) =
t[key.itemId] = val
iterator idTablePairs*[T](t: TIdTable[T]): tuple[key: ItemId, val: T] =
iterator idTablePairs*(t: TIdTable): tuple[key: PIdObj, val: RootRef] =
for i in 0..high(t.data):
if not isNil(t.data[i].key):
yield (t.data[i].key, t.data[i].val)
if not isNil(t.data[i].key): yield (t.data[i].key, t.data[i].val)
proc idNodeTableRawGet(t: TIdNodeTable, key: PIdObj): int =
var h: Hash
h = key.id and high(t.data) # start with real hash value
while t.data[h].key != nil:
if t.data[h].key.id == key.id:
return h
h = nextTry(h, high(t.data))
result = - 1
proc idNodeTableGet(t: TIdNodeTable, key: PIdObj): PNode =
var index: int
index = idNodeTableRawGet(t, key)
if index >= 0: result = t.data[index].val
else: result = nil
proc idNodeTableRawInsert(data: var TIdNodePairSeq, key: PIdObj, val: PNode) =
var h: Hash
h = key.id and high(data)
while data[h].key != nil:
assert(data[h].key.id != key.id)
h = nextTry(h, high(data))
assert(data[h].key == nil)
data[h].key = key
data[h].val = val
proc idNodeTablePut(t: var TIdNodeTable, key: PIdObj, val: PNode) =
var index = idNodeTableRawGet(t, key)
if index >= 0:
assert(t.data[index].key != nil)
t.data[index].val = val
else:
if mustRehash(t.data.len, t.counter):
var n: TIdNodePairSeq
newSeq(n, t.data.len * GrowthFactor)
for i in 0..high(t.data):
if t.data[i].key != nil:
idNodeTableRawInsert(n, t.data[i].key, t.data[i].val)
swap(t.data, n)
idNodeTableRawInsert(t.data, key, val)
inc(t.counter)
iterator pairs*(t: TIdNodeTable): tuple[key: PIdObj, val: PNode] =
for i in 0..high(t.data):
if not isNil(t.data[i].key): yield (t.data[i].key, t.data[i].val)
proc initIITable(x: var TIITable) =
x.counter = 0
@@ -721,8 +1045,15 @@ proc iiTablePut(t: var TIITable, key, val: int) =
iiTableRawInsert(t.data, key, val)
inc(t.counter)
proc isAddrNode*(n: PNode): bool =
case n.kind
of nkAddr, nkHiddenAddr: true
of nkCallKinds:
if n[0].kind == nkSym and n[0].sym.magic == mAddr: true
else: false
else: false
proc listSymbolNames*(symbols: openArray[PSym]): string =
result = ""
for sym in symbols:
if result.len > 0:
result.add ", "

File diff suppressed because it is too large Load Diff

View File

@@ -5,7 +5,7 @@ import options, ast, msgs
proc typSym*(t: PType): PSym =
result = t.sym
if result == nil and t.kind == tyGenericInst: # this might need to be refined
result = t.genericHead.sym
result = t[0].sym
proc addDeclaredLoc*(result: var string, conf: ConfigRef; sym: PSym) =
result.add " [$1 declared in $2]" % [sym.kind.toHumanStr, toFileLineCol(conf, sym.info)]
@@ -24,12 +24,6 @@ proc addDeclaredLoc*(result: var string, conf: ConfigRef; typ: PType) =
result.add " declared in " & toFileLineCol(conf, typ.sym.info)
result.add "]"
proc addTypeNodeDeclaredLoc*(result: var string, conf: ConfigRef; typ: PType) =
result.add " [$1" % typ.kind.toHumanStr
if typ.sym != nil:
result.add " declared in " & toFileLineCol(conf, typ.sym.info)
result.add "]"
proc addDeclaredLocMaybe*(result: var string, conf: ConfigRef; typ: PType) =
if optDeclaredLocs in conf.globalOptions: addDeclaredLoc(result, conf, typ)

View File

@@ -1,154 +0,0 @@
#
#
# The Nim Compiler
# (c) Copyright 2012 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
# AST YAML printing
import "."/[ast, lineinfos, msgs, options, rodutils]
import std/[intsets, strutils]
proc addYamlString*(res: var string; s: string) =
res.add "\""
for c in s:
case c
of '\0' .. '\x1F', '\x7F' .. '\xFF':
res.add("\\u" & strutils.toHex(ord(c), 4))
of '\"', '\\':
res.add '\\' & c
else:
res.add c
res.add('\"')
proc makeYamlString(s: string): string =
result = ""
result.addYamlString(s)
proc flagsToStr[T](flags: set[T]): string =
if flags == {}:
result = "[]"
else:
result = ""
for x in items(flags):
if result != "":
result.add(", ")
result.addYamlString($x)
result = "[" & result & "]"
proc lineInfoToStr*(conf: ConfigRef; info: TLineInfo): string =
result = "["
result.addYamlString(toFilename(conf, info))
result.addf ", $1, $2]", [toLinenumber(info), toColumn(info)]
proc treeToYamlAux(res: var string; conf: ConfigRef; n: PNode; marker: var IntSet; indent, maxRecDepth: int)
proc symToYamlAux(res: var string; conf: ConfigRef; n: PSym; marker: var IntSet; indent, maxRecDepth: int)
proc typeToYamlAux(res: var string; conf: ConfigRef; n: PType; marker: var IntSet; indent, maxRecDepth: int)
proc symToYamlAux(res: var string; conf: ConfigRef; n: PSym; marker: var IntSet; indent: int; maxRecDepth: int) =
if n == nil:
res.add("null")
elif containsOrIncl(marker, n.id):
res.addYamlString(n.name.s)
else:
let istr = spaces(indent * 4)
res.addf("kind: $1", [makeYamlString($n.kind)])
res.addf("\n$1name: $2", [istr, makeYamlString(n.name.s)])
res.addf("\n$1typ: ", [istr])
res.typeToYamlAux(conf, n.typ, marker, indent + 1, maxRecDepth - 1)
if conf != nil:
# if we don't pass the config, we probably don't care about the line info
res.addf("\n$1info: $2", [istr, lineInfoToStr(conf, n.info)])
if card(n.flags) > 0:
res.addf("\n$1flags: $2", [istr, flagsToStr(n.flags)])
res.addf("\n$1magic: $2", [istr, makeYamlString($n.magic)])
res.addf("\n$1ast: ", [istr])
res.treeToYamlAux(conf, n.ast, marker, indent + 1, maxRecDepth - 1)
res.addf("\n$1options: $2", [istr, flagsToStr(n.options)])
res.addf("\n$1position: $2", [istr, $n.position])
res.addf("\n$1k: $2", [istr, makeYamlString($n.loc.k)])
res.addf("\n$1storage: $2", [istr, makeYamlString($n.loc.storage)])
if card(n.loc.flags) > 0:
res.addf("\n$1flags: $2", [istr, makeYamlString($n.loc.flags)])
res.addf("\n$1snippet: $2", [istr, n.loc.snippet])
res.addf("\n$1lode: $2", [istr])
res.treeToYamlAux(conf, n.loc.lode, marker, indent + 1, maxRecDepth - 1)
proc typeToYamlAux(res: var string; conf: ConfigRef; n: PType; marker: var IntSet; indent: int; maxRecDepth: int) =
if n == nil:
res.add("null")
elif containsOrIncl(marker, n.id):
res.addf "\"$1 @$2\"" % [$n.kind, strutils.toHex(cast[uint](n), sizeof(n) * 2)]
else:
let istr = spaces(indent * 4)
res.addf("kind: $2", [istr, makeYamlString($n.kind)])
res.addf("\n$1sym: ")
res.symToYamlAux(conf, n.sym, marker, indent + 1, maxRecDepth - 1)
res.addf("\n$1n: ")
res.treeToYamlAux(conf, n.n, marker, indent + 1, maxRecDepth - 1)
if card(n.flags) > 0:
res.addf("\n$1flags: $2", [istr, flagsToStr(n.flags)])
res.addf("\n$1callconv: $2", [istr, makeYamlString($n.callConv)])
res.addf("\n$1size: $2", [istr, $(n.size)])
res.addf("\n$1align: $2", [istr, $(n.align)])
if n.hasElementType:
res.addf("\n$1sons:")
for a in n.kids:
res.addf("\n - ")
res.typeToYamlAux(conf, a, marker, indent + 1, maxRecDepth - 1)
proc treeToYamlAux(res: var string; conf: ConfigRef; n: PNode; marker: var IntSet; indent: int;
maxRecDepth: int) =
if n == nil:
res.add("null")
else:
var istr = spaces(indent * 4)
res.addf("kind: $1" % [makeYamlString($n.kind)])
if maxRecDepth != 0:
if conf != nil:
res.addf("\n$1info: $2", [istr, lineInfoToStr(conf, n.info)])
case n.kind
of nkCharLit .. nkInt64Lit:
res.addf("\n$1intVal: $2", [istr, $(n.intVal)])
of nkFloatLit, nkFloat32Lit, nkFloat64Lit:
res.addf("\n$1floatVal: $2", [istr, n.floatVal.toStrMaxPrecision])
of nkStrLit .. nkTripleStrLit:
res.addf("\n$1strVal: $2", [istr, makeYamlString(n.strVal)])
of nkSym:
res.addf("\n$1sym: ", [istr])
res.symToYamlAux(conf, n.sym, marker, indent + 1, maxRecDepth)
of nkIdent:
if n.ident != nil:
res.addf("\n$1ident: $2", [istr, makeYamlString(n.ident.s)])
else:
res.addf("\n$1ident: null", [istr])
else:
if n.len > 0:
res.addf("\n$1sons: ", [istr])
for i in 0 ..< n.len:
res.addf("\n$1 - ", [istr])
res.treeToYamlAux(conf, n[i], marker, indent + 1, maxRecDepth - 1)
if n.typ != nil:
res.addf("\n$1typ: ", [istr])
res.typeToYamlAux(conf, n.typ, marker, indent + 1, maxRecDepth)
proc treeToYaml*(conf: ConfigRef; n: PNode; indent: int = 0; maxRecDepth: int = -1): string =
var marker = initIntSet()
result = newStringOfCap(1024)
result.treeToYamlAux(conf, n, marker, indent, maxRecDepth)
proc typeToYaml*(conf: ConfigRef; n: PType; indent: int = 0; maxRecDepth: int = -1): string =
var marker = initIntSet()
result = newStringOfCap(1024)
result.typeToYamlAux(conf, n, marker, indent, maxRecDepth)
proc symToYaml*(conf: ConfigRef; n: PSym; indent: int = 0; maxRecDepth: int = -1): string =
var marker = initIntSet()
result = newStringOfCap(1024)
result.symToYamlAux(conf, n, marker, indent, maxRecDepth)

View File

@@ -10,9 +10,6 @@
# this unit handles Nim sets; it implements bit sets
# the code here should be reused in the Nim standard library
when defined(nimPreviewSlimSystem):
import std/assertions
type
ElemType = byte
TBitSet* = seq[ElemType] # we use byte here to avoid issues with
@@ -26,40 +23,53 @@ const
template modElemSize(arg: untyped): untyped = arg and 7
template divElemSize(arg: untyped): untyped = arg shr 3
proc bitSetIn*(x: TBitSet, e: BiggestInt): bool =
proc bitSetInit*(b: var TBitSet, length: int)
proc bitSetUnion*(x: var TBitSet, y: TBitSet)
proc bitSetDiff*(x: var TBitSet, y: TBitSet)
proc bitSetSymDiff*(x: var TBitSet, y: TBitSet)
proc bitSetIntersect*(x: var TBitSet, y: TBitSet)
proc bitSetIncl*(x: var TBitSet, elem: BiggestInt)
proc bitSetExcl*(x: var TBitSet, elem: BiggestInt)
proc bitSetIn*(x: TBitSet, e: BiggestInt): bool
proc bitSetEquals*(x, y: TBitSet): bool
proc bitSetContains*(x, y: TBitSet): bool
proc bitSetCard*(x: TBitSet): BiggestInt
# implementation
proc bitSetIn(x: TBitSet, e: BiggestInt): bool =
result = (x[int(e.divElemSize)] and (One shl e.modElemSize)) != Zero
proc bitSetIncl*(x: var TBitSet, elem: BiggestInt) =
proc bitSetIncl(x: var TBitSet, elem: BiggestInt) =
assert(elem >= 0)
x[int(elem.divElemSize)] = x[int(elem.divElemSize)] or
(One shl elem.modElemSize)
proc bitSetExcl*(x: var TBitSet, elem: BiggestInt) =
proc bitSetExcl(x: var TBitSet, elem: BiggestInt) =
x[int(elem.divElemSize)] = x[int(elem.divElemSize)] and
not(One shl elem.modElemSize)
proc bitSetInit*(b: var TBitSet, length: int) =
proc bitSetInit(b: var TBitSet, length: int) =
newSeq(b, length)
proc bitSetUnion*(x: var TBitSet, y: TBitSet) =
proc bitSetUnion(x: var TBitSet, y: TBitSet) =
for i in 0..high(x): x[i] = x[i] or y[i]
proc bitSetDiff*(x: var TBitSet, y: TBitSet) =
proc bitSetDiff(x: var TBitSet, y: TBitSet) =
for i in 0..high(x): x[i] = x[i] and not y[i]
proc bitSetSymDiff*(x: var TBitSet, y: TBitSet) =
proc bitSetSymDiff(x: var TBitSet, y: TBitSet) =
for i in 0..high(x): x[i] = x[i] xor y[i]
proc bitSetIntersect*(x: var TBitSet, y: TBitSet) =
proc bitSetIntersect(x: var TBitSet, y: TBitSet) =
for i in 0..high(x): x[i] = x[i] and y[i]
proc bitSetEquals*(x, y: TBitSet): bool =
proc bitSetEquals(x, y: TBitSet): bool =
for i in 0..high(x):
if x[i] != y[i]:
return false
result = true
proc bitSetContains*(x, y: TBitSet): bool =
proc bitSetContains(x, y: TBitSet): bool =
for i in 0..high(x):
if (x[i] and not y[i]) != Zero:
return false
@@ -86,12 +96,6 @@ const populationCount: array[uint8, uint8] = block:
arr
proc bitSetCard*(x: TBitSet): BiggestInt =
result = 0
proc bitSetCard(x: TBitSet): BiggestInt =
for it in x:
result.inc int(populationCount[it])
proc bitSetToWord*(s: TBitSet; size: int): BiggestUInt =
result = 0
for j in 0..<size:
if j < s.len: result = result or (BiggestUInt(s[j]) shl (j * 8))

View File

@@ -10,9 +10,6 @@
## BTree implementation with few features, but good enough for the
## Nim compiler's needs.
when defined(nimPreviewSlimSystem):
import std/assertions
const
M = 512 # max children per B-tree node = M-1
# (must be even and greater than 2)
@@ -38,7 +35,6 @@ template less(a, b): bool = cmp(a, b) < 0
template eq(a, b): bool = cmp(a, b) == 0
proc getOrDefault*[Key, Val](b: BTree[Key, Val], key: Key): Val =
result = default(Val)
var x = b.root
while x.isInternal:
for j in 0..<x.entries:
@@ -69,10 +65,7 @@ proc copyHalf[Key, Val](h, result: Node[Key, Val]) =
result.links[j] = h.links[Mhalf + j]
else:
for j in 0..<Mhalf:
when defined(gcArc) or defined(gcOrc) or defined(gcAtomicArc) or defined(gcYrc):
result.vals[j] = move h.vals[Mhalf + j]
else:
shallowCopy(result.vals[j], h.vals[Mhalf + j])
shallowCopy(result.vals[j], h.vals[Mhalf + j])
proc split[Key, Val](h: Node[Key, Val]): Node[Key, Val] =
## split node in half
@@ -92,10 +85,7 @@ proc insert[Key, Val](h: Node[Key, Val], key: Key, val: Val): Node[Key, Val] =
if less(key, h.keys[j]): break
inc j
for i in countdown(h.entries, j+1):
when defined(gcArc) or defined(gcOrc) or defined(gcAtomicArc) or defined(gcYrc):
h.vals[i] = move h.vals[i-1]
else:
shallowCopy(h.vals[i], h.vals[i-1])
shallowCopy(h.vals[i], h.vals[i-1])
h.vals[j] = val
else:
var newLink: Node[Key, Val] = nil

View File

@@ -1,164 +0,0 @@
import ropes, int128
type
Snippet* = string
Builder* = object
buf*: string
indents*: int
template newBuilder*(s: string): Builder =
Builder(buf: s)
proc extract*(builder: Builder): Snippet =
builder.buf
proc add*(builder: var Builder, s: string) =
builder.buf.add(s)
proc add*(builder: var Builder, s: char) =
builder.buf.add(s)
proc addNewline*(builder: var Builder) =
builder.add('\n')
for i in 0 ..< builder.indents:
builder.add('\t')
proc addLineEnd*(builder: var Builder, s: string) =
builder.add(s)
builder.addNewline()
proc addLineEndIndent*(builder: var Builder, s: string) =
inc builder.indents
builder.add(s)
builder.addNewline()
proc addDedent*(builder: var Builder, s: string) =
if builder.buf.len > 0 and builder.buf[^1] == '\t':
builder.buf.setLen(builder.buf.len - 1)
builder.add(s)
dec builder.indents
proc addLineEndDedent*(builder: var Builder, s: string) =
builder.addDedent(s)
builder.addNewline()
proc addLineComment*(builder: var Builder, comment: string) =
# probably no-op on nifc
builder.add("// ")
builder.add(comment)
builder.addNewline()
proc addIntValue*(builder: var Builder, val: int) =
builder.buf.addInt(val)
proc addIntValue*(builder: var Builder, val: int64) =
builder.buf.addInt(val)
proc addIntValue*(builder: var Builder, val: uint64) =
builder.buf.addInt(val)
proc addIntValue*(builder: var Builder, val: Int128) =
builder.buf.addInt128(val)
template cIntValue*(val: int): Snippet = $val
template cIntValue*(val: int64): Snippet = $val
template cIntValue*(val: uint64): Snippet = $val
template cIntValue*(val: Int128): Snippet = $val
template cUintValue*(val: uint): Snippet = $val & "U"
import std/formatfloat
proc addFloatValue*(builder: var Builder, val: float) =
builder.buf.addFloat(val)
template cFloatValue*(val: float): Snippet = $val
proc addInt64Literal*(result: var Builder; i: BiggestInt) =
if i > low(int64):
result.add "IL64($1)" % [rope(i)]
else:
result.add "(IL64(-9223372036854775807) - IL64(1))"
proc addUint64Literal*(result: var Builder; i: uint64) =
result.add rope($i & "ULL")
proc addIntLiteral*(result: var Builder; i: BiggestInt) =
if i > low(int32) and i <= high(int32):
result.addIntValue(i)
elif i == low(int32):
# Nim has the same bug for the same reasons :-)
result.add "(-2147483647 -1)"
elif i > low(int64):
result.add "IL64($1)" % [rope(i)]
else:
result.add "(IL64(-9223372036854775807) - IL64(1))"
proc addIntLiteral*(result: var Builder; i: Int128) =
addIntLiteral(result, toInt64(i))
proc cInt64Literal*(i: BiggestInt): Snippet =
if i > low(int64):
result = "IL64($1)" % [rope(i)]
else:
result = "(IL64(-9223372036854775807) - IL64(1))"
proc cUint64Literal*(i: uint64): Snippet =
result = $i & "ULL"
proc cIntLiteral*(i: BiggestInt): Snippet =
if i > low(int32) and i <= high(int32):
result = rope(i)
elif i == low(int32):
# Nim has the same bug for the same reasons :-)
result = "(-2147483647 -1)"
elif i > low(int64):
result = "IL64($1)" % [rope(i)]
else:
result = "(IL64(-9223372036854775807) - IL64(1))"
proc cIntLiteral*(i: Int128): Snippet =
result = cIntLiteral(toInt64(i))
const
NimInt* = "NI"
NimInt8* = "NI8"
NimInt16* = "NI16"
NimInt32* = "NI32"
NimInt64* = "NI64"
CInt* = "int"
NimUint* = "NU"
NimUint8* = "NU8"
NimUint16* = "NU16"
NimUint32* = "NU32"
NimUint64* = "NU64"
NimFloat* = "NF"
NimFloat32* = "NF32"
NimFloat64* = "NF64"
NimFloat128* = "NF128" # not actually defined
NimNan* = "NAN"
NimInf* = "INF"
NimBool* = "NIM_BOOL"
NimTrue* = "NIM_TRUE"
NimFalse* = "NIM_FALSE"
NimChar* = "NIM_CHAR"
CChar* = "char"
NimCstring* = "NCSTRING"
NimNil* = "NIM_NIL"
CNil* = "NULL"
NimStrlitFlag* = "NIM_STRLIT_FLAG"
CVoid* = "void"
CPointer* = "void*"
CConstPointer* = "NIM_CONST void*"
proc cIntType*(bits: BiggestInt): Snippet =
"NI" & $bits
proc cUintType*(bits: BiggestInt): Snippet =
"NU" & $bits
type
IfBuilderState* = enum
WaitingIf, WaitingElseIf, InBlock
IfBuilder* = object
state*: IfBuilderState

View File

@@ -1,668 +0,0 @@
type VarKind = enum
Local
Global
Threadvar
Const
AlwaysConst ## const even on C++
proc addVarHeader(builder: var Builder, kind: VarKind) =
## adds modifiers for given var kind:
## Local has no modifier
## Global has `static` modifier
## Const has `static NIM_CONST` modifier
## AlwaysConst has `static const` modifier (NIM_CONST is no-op on C++)
## Threadvar is unimplemented
case kind
of Local: discard
of Global:
builder.add("static ")
of Const:
builder.add("static NIM_CONST ")
of AlwaysConst:
builder.add("static const ")
of Threadvar:
doAssert false, "unimplemented"
proc addVar(builder: var Builder, kind: VarKind = Local, name: string, typ: Snippet, initializer: Snippet = "") =
## adds a variable declaration to the builder
builder.addVarHeader(kind)
builder.add(typ)
builder.add(" ")
builder.add(name)
if initializer.len != 0:
builder.add(" = ")
builder.add(initializer)
builder.addLineEnd(";")
template addVarWithType(builder: var Builder, kind: VarKind = Local, name: string, body: typed) =
## adds a variable declaration to the builder, with the `body` building the type
builder.addVarHeader(kind)
body
builder.add(" ")
builder.add(name)
builder.addLineEnd(";")
template addVarWithInitializer(builder: var Builder, kind: VarKind = Local, name: string,
typ: Snippet, initializerBody: typed) =
## adds a variable declaration to the builder, with
## `initializerBody` building the initializer. initializer must be provided
builder.addVarHeader(kind)
builder.add(typ)
builder.add(" ")
builder.add(name)
builder.add(" = ")
initializerBody
builder.addLineEnd(";")
template addVarWithTypeAndInitializer(builder: var Builder, kind: VarKind = Local, name: string,
typeBody, initializerBody: typed) =
## adds a variable declaration to the builder, with `typeBody` building the type, and
## `initializerBody` building the initializer. initializer must be provided
builder.addVarHeader(kind)
typeBody
builder.add(" ")
builder.add(name)
builder.add(" = ")
initializerBody
builder.addLineEnd(";")
proc addArrayVar(builder: var Builder, kind: VarKind = Local, name: string, elementType: Snippet, len: int, initializer: Snippet = "") =
## adds an array variable declaration to the builder
builder.addVarHeader(kind)
builder.add(elementType)
builder.add(" ")
builder.add(name)
builder.add("[")
builder.addIntValue(len)
builder.add("]")
if initializer.len != 0:
builder.add(" = ")
builder.add(initializer)
builder.addLineEnd(";")
template addArrayVarWithInitializer(builder: var Builder, kind: VarKind = Local, name: string, elementType: Snippet, len: int, body: typed) =
## adds an array variable declaration to the builder with the initializer built according to `body`
builder.addVarHeader(kind)
builder.add(elementType)
builder.add(" ")
builder.add(name)
builder.add("[")
builder.addIntValue(len)
builder.add("] = ")
body
builder.addLineEnd(";")
template addTypedef(builder: var Builder, name: string, typeBody: typed) =
## adds a typedef declaration to the builder with name `name` and type as
## built in `typeBody`
builder.add("typedef ")
typeBody
builder.add(" ")
builder.add(name)
builder.addLineEnd(";")
proc addProcTypedef(builder: var Builder, callConv: TCallingConvention, name: string, rettype, params: Snippet) =
builder.add("typedef ")
builder.add(CallingConvToStr[callConv])
builder.add("_PTR(")
builder.add(rettype)
builder.add(", ")
builder.add(name)
builder.add(")")
builder.add(params)
builder.addLineEnd(";")
template addArrayTypedef(builder: var Builder, name: string, len: BiggestInt, typeBody: typed) =
## adds an array typedef declaration to the builder with name `name`,
## length `len`, and element type as built in `typeBody`
builder.add("typedef ")
typeBody
builder.add(" ")
builder.add(name)
builder.add("[")
builder.addIntValue(len)
builder.addLineEnd("];")
type
StructInitializerKind = enum
siOrderedStruct ## struct constructor, but without named fields on C
siNamedStruct ## struct constructor, with named fields i.e. C99 designated initializer
siArray ## array constructor
siWrapper ## wrapper for a single field, generates it verbatim
StructInitializer = object
## context for building struct initializers, i.e. `{ field1, field2 }`
kind: StructInitializerKind
## if true, fields will not be named, instead values are placed in order
needsComma: bool
proc initStructInitializer(builder: var Builder, kind: StructInitializerKind): StructInitializer =
## starts building a struct initializer, i.e. braced initializer list
result = StructInitializer(kind: kind, needsComma: false)
if kind != siWrapper:
builder.add("{")
template addField(builder: var Builder, constr: var StructInitializer, name: string, valueBody: typed) =
## adds a field to a struct initializer, with the value built in `valueBody`
if constr.needsComma:
assert constr.kind != siWrapper, "wrapper constructor cannot have multiple fields"
builder.add(", ")
else:
constr.needsComma = true
case constr.kind
of siArray, siWrapper:
# no name, can just add value
valueBody
of siOrderedStruct:
# positional init - name not used in output (empty allowed for anonymous unions)
valueBody
of siNamedStruct:
# designated init - empty name for anonymous unions (skips .name = prefix)
if name.len != 0:
builder.add(".")
builder.add(name)
builder.add(" = ")
valueBody
proc finishStructInitializer(builder: var Builder, constr: StructInitializer) =
## finishes building a struct initializer
if constr.kind != siWrapper:
builder.add("}")
template addStructInitializer(builder: var Builder, constr: out StructInitializer, kind: StructInitializerKind, body: typed) =
## builds a struct initializer, i.e. `{ field1, field2 }`
## a `var StructInitializer` must be declared and passed as a parameter so
## that it can be used with `addField`
constr = builder.initStructInitializer(kind)
body
builder.finishStructInitializer(constr)
proc addField(obj: var Builder; name, typ: Snippet; isFlexArray: bool = false; initializer: Snippet = "") =
## adds a field inside a struct/union type
obj.add('\t')
obj.add(typ)
obj.add(" ")
obj.add(name)
if isFlexArray:
obj.add("[SEQ_DECL_SIZE]")
if initializer.len != 0:
obj.add(initializer)
obj.add(";\n")
proc addArrayField(obj: var Builder; name, elementType: Snippet; len: int; initializer: Snippet = "") =
## adds an array field inside a struct/union type
obj.add('\t')
obj.add(elementType)
obj.add(" ")
obj.add(name)
obj.add("[")
obj.addIntValue(len)
obj.add("]")
if initializer.len != 0:
obj.add(initializer)
obj.add(";\n")
proc addField(obj: var Builder; field: PSym; name, typ: Snippet; isFlexArray: bool = false; initializer: Snippet = "") =
## adds an field inside a struct/union type, based on an `skField` symbol
obj.add('\t')
if field.alignment > 0:
obj.add("NIM_ALIGN(")
obj.addIntValue(field.alignment)
obj.add(") ")
obj.add(typ)
if sfNoalias in field.flags:
obj.add(" NIM_NOALIAS")
obj.add(" ")
obj.add(name)
if isFlexArray:
obj.add("[SEQ_DECL_SIZE]")
if field.bitsize != 0:
obj.add(":")
obj.addIntValue(field.bitsize)
if initializer.len != 0:
obj.add(initializer)
obj.add(";\n")
proc addProcField(obj: var Builder, callConv: TCallingConvention, name: string, rettype, params: Snippet) =
obj.add(CallingConvToStr[callConv])
obj.add("_PTR(")
obj.add(rettype)
obj.add(", ")
obj.add(name)
obj.add(")")
obj.add(params)
obj.add(";\n")
type
BaseClassKind = enum
## denotes how and whether or not the base class/RTTI should be stored
bcNone, bcCppInherit, bcSupField, bcNoneRtti, bcNoneTinyRtti
StructBuilderInfo = object
## context for building `struct` types
baseKind: BaseClassKind
named: bool
preFieldsLen: int
proc structOrUnion(t: PType): Snippet =
let t = t.skipTypes({tyAlias, tySink})
if tfUnion in t.flags: "union"
else: "struct"
proc startSimpleStruct(obj: var Builder; m: BModule; name: string; baseType: Snippet): StructBuilderInfo =
result = StructBuilderInfo(baseKind: bcNone, named: name.len != 0)
obj.add("struct")
if result.named:
obj.add(" ")
obj.add(name)
if baseType.len != 0:
if m.compileToCpp:
result.baseKind = bcCppInherit
else:
result.baseKind = bcSupField
if result.baseKind == bcCppInherit:
obj.add(" : public ")
obj.add(baseType)
obj.add(" ")
obj.add("{\n")
result.preFieldsLen = obj.buf.len
if result.baseKind == bcSupField:
obj.addField(name = "Sup", typ = baseType)
proc finishSimpleStruct(obj: var Builder; m: BModule; info: StructBuilderInfo) =
if info.baseKind == bcNone and info.preFieldsLen == obj.buf.len:
# no fields were added, add dummy field
obj.addField(name = "dummy", typ = CChar)
if info.named:
obj.add("};\n")
else:
obj.add("}")
template addSimpleStruct(obj: var Builder; m: BModule; name: string; baseType: Snippet; body: typed) =
## builds a struct type not based on a Nim type with fields according to `body`,
## `name` can be empty to build as a type expression and not a statement
let info = startSimpleStruct(obj, m, name, baseType)
body
finishSimpleStruct(obj, m, info)
proc startStruct(obj: var Builder; m: BModule; t: PType; name: string; baseType: Snippet): StructBuilderInfo =
result = StructBuilderInfo(baseKind: bcNone, named: name.len != 0)
if tfPacked in t.flags:
if hasAttribute in CC[m.config.cCompiler].props:
obj.add(structOrUnion(t))
obj.add(" __attribute__((__packed__))")
else:
obj.add("#pragma pack(push, 1)\n")
obj.add(structOrUnion(t))
else:
obj.add(structOrUnion(t))
if result.named:
obj.add(" ")
obj.add(name)
if t.kind == tyObject:
if t.baseClass == nil:
if lacksMTypeField(t):
result.baseKind = bcNone
elif optTinyRtti in m.config.globalOptions:
result.baseKind = bcNoneTinyRtti
else:
result.baseKind = bcNoneRtti
elif m.compileToCpp:
result.baseKind = bcCppInherit
else:
result.baseKind = bcSupField
elif baseType.len != 0:
if m.compileToCpp:
result.baseKind = bcCppInherit
else:
result.baseKind = bcSupField
if result.baseKind == bcCppInherit:
obj.add(" : public ")
obj.add(baseType)
obj.add(" ")
obj.add("{\n")
result.preFieldsLen = obj.buf.len
case result.baseKind
of bcNone:
# rest of the options add a field or don't need it due to inheritance,
# we need to add the dummy field for uncheckedarray ahead of time
# so that it remains trailing
if t.itemId notin m.g.graph.memberProcsPerType and
t.n != nil and t.n.len == 1 and t.n[0].kind == nkSym and
t.n[0].sym.typ.skipTypes(abstractInst).kind == tyUncheckedArray:
# only consists of flexible array field, add *initial* dummy field
obj.addField(name = "dummy", typ = CChar)
of bcCppInherit: discard
of bcNoneRtti:
obj.addField(name = "m_type", typ = ptrType(cgsymValue(m, "TNimType")))
of bcNoneTinyRtti:
obj.addField(name = "m_type", typ = ptrType(cgsymValue(m, "TNimTypeV2")))
of bcSupField:
obj.addField(name = "Sup", typ = baseType)
proc finishStruct(obj: var Builder; m: BModule; t: PType; info: StructBuilderInfo) =
if info.baseKind == bcNone and info.preFieldsLen == obj.buf.len and
t.itemId notin m.g.graph.memberProcsPerType:
# no fields were added, add dummy field
obj.addField(name = "dummy", typ = CChar)
if info.named:
obj.add("};\n")
else:
obj.add("}")
if tfPacked in t.flags and hasAttribute notin CC[m.config.cCompiler].props:
obj.add("#pragma pack(pop)\n")
template addStruct(obj: var Builder; m: BModule; typ: PType; name: string; baseType: Snippet; body: typed) =
## builds a struct type directly based on `typ` with fields according to `body`,
## `name` can be empty to build as a type expression and not a statement
let info = startStruct(obj, m, typ, name, baseType)
body
finishStruct(obj, m, typ, info)
template addFieldWithStructType(obj: var Builder; m: BModule; parentTyp: PType; fieldName: string, body: typed) =
## adds a field with a `struct { ... }` type, building the fields according to `body`
obj.add('\t')
if tfPacked in parentTyp.flags:
if hasAttribute in CC[m.config.cCompiler].props:
obj.add("struct __attribute__((__packed__)) {\n")
else:
obj.add("#pragma pack(push, 1)\nstruct {")
else:
obj.add("struct {\n")
body
obj.add("} ")
obj.add(fieldName)
obj.add(";\n")
if tfPacked in parentTyp.flags and hasAttribute notin CC[m.config.cCompiler].props:
obj.add("#pragma pack(pop)\n")
template addAnonUnion(obj: var Builder; body: typed) =
## adds an anonymous union i.e. `union { ... };` with fields according to `body`
obj.add "union{\n"
body
obj.add("};\n")
template addUnionType(obj: var Builder; body: typed) =
## adds a union type i.e. `union { ... }` with fields according to `body`
obj.add "union{\n"
body
obj.add("}")
type DeclVisibility = enum
None
Extern
ExternC
ImportLib
ExportLib
ExportLibVar
Private
StaticProc
proc addVisibilityPrefix(builder: var Builder, visibility: DeclVisibility) =
# internal proc
case visibility
of None: discard
of Extern:
builder.add("extern ")
of ExternC:
builder.add("NIM_EXTERNC ")
of ImportLib:
builder.add("N_LIB_IMPORT ")
of ExportLib:
builder.add("N_LIB_EXPORT ")
of ExportLibVar:
builder.add("N_LIB_EXPORT_VAR ")
of Private:
builder.add("N_LIB_PRIVATE ")
of StaticProc:
builder.add("static ")
template addDeclWithVisibility(builder: var Builder, visibility: DeclVisibility, declBody: typed) =
## adds a declaration as in `declBody` with the given visibility
builder.addVisibilityPrefix(visibility)
declBody
type ProcParamBuilder = object
needsComma: bool
proc initProcParamBuilder(builder: var Builder): ProcParamBuilder =
result = ProcParamBuilder(needsComma: false)
builder.add("(")
proc finishProcParamBuilder(builder: var Builder, params: ProcParamBuilder) =
if params.needsComma:
builder.add(")")
else:
builder.add("void)")
template cgDeclFrmt*(s: PSym): string =
s.constraint.strVal
proc addParam(builder: var Builder, params: var ProcParamBuilder, name: string, typ: Snippet) =
if params.needsComma:
builder.add(", ")
else:
params.needsComma = true
builder.add(typ)
builder.add(" ")
builder.add(name)
proc addParam(builder: var Builder, params: var ProcParamBuilder, param: PSym, typ: Snippet) =
if params.needsComma:
builder.add(", ")
else:
params.needsComma = true
var modifiedTyp = typ
if sfNoalias in param.flags:
modifiedTyp.add(" NIM_NOALIAS")
if sfCodegenDecl notin param.flags:
builder.add(modifiedTyp)
builder.add(" ")
builder.add(param.loc.snippet)
else:
builder.add runtimeFormat(param.cgDeclFrmt, [modifiedTyp, param.loc.snippet])
proc addUnnamedParam(builder: var Builder, params: var ProcParamBuilder, typ: Snippet) =
if params.needsComma:
builder.add(", ")
else:
params.needsComma = true
builder.add(typ)
proc addProcTypedParam(builder: var Builder, paramBuilder: var ProcParamBuilder, callConv: TCallingConvention, name: string, rettype, params: Snippet) =
if paramBuilder.needsComma:
builder.add(", ")
else:
paramBuilder.needsComma = true
builder.add(CallingConvToStr[callConv])
builder.add("_PTR(")
builder.add(rettype)
builder.add(", ")
builder.add(name)
builder.add(")")
builder.add(params)
proc addVarargsParam(builder: var Builder, params: var ProcParamBuilder) =
# does not exist in NIFC, needs to be proc pragma
if params.needsComma:
builder.add(", ")
else:
params.needsComma = true
builder.add("...")
template addProcParams(builder: var Builder, params: out ProcParamBuilder, body: typed) =
params = initProcParamBuilder(builder)
body
finishProcParamBuilder(builder, params)
type SimpleProcParam = tuple
name, typ: string
proc cProcParams(params: varargs[SimpleProcParam]): Snippet =
if params.len == 0: return "(void)"
result = "("
for i in 0 ..< params.len:
if i != 0: result.add(", ")
result.add(params[i].typ)
if params[i].name.len != 0:
result.add(" ")
result.add(params[i].name)
result.add(")")
template addProcHeaderWithParams(builder: var Builder, callConv: TCallingConvention,
name: string, rettype: Snippet, paramBuilder: typed) =
# on nifc should build something like (proc name params type pragmas
# with no body given
# or enforce this with secondary builder object
builder.add(CallingConvToStr[callConv])
builder.add("(")
builder.add(rettype)
builder.add(", ")
builder.add(name)
builder.add(")")
paramBuilder
proc addProcHeader(builder: var Builder, callConv: TCallingConvention,
name: string, rettype, params: Snippet) =
# on nifc should build something like (proc name params type pragmas
# with no body given
# or enforce this with secondary builder object
addProcHeaderWithParams(builder, callConv, name, rettype):
builder.add(params)
proc addProcHeader(builder: var Builder, name: string, rettype, params: Snippet, isConstructor = false) =
# no callconv
builder.add(rettype)
builder.add(" ")
if isConstructor:
builder.add("__attribute__((constructor)) ")
builder.add(name)
builder.add(params)
proc addProcHeader(builder: var Builder, m: BModule, prc: PSym, name: string, params, rettype: Snippet, addAttributes: bool) =
# on nifc should build something like (proc name params type pragmas
# with no body given
# or enforce this with secondary builder object
let noreturn = isNoReturn(m, prc)
if sfPure in prc.flags and hasDeclspec in extccomp.CC[m.config.cCompiler].props:
builder.add("__declspec(naked) ")
if noreturn and hasDeclspec in extccomp.CC[m.config.cCompiler].props:
builder.add("__declspec(noreturn) ")
builder.add(CallingConvToStr[prc.typ.callConv])
builder.add("(")
builder.add(rettype)
builder.add(", ")
builder.add(name)
builder.add(")")
builder.add(params)
if addAttributes:
if sfPure in prc.flags and hasAttribute in extccomp.CC[m.config.cCompiler].props:
builder.add(" __attribute__((naked))")
if noreturn and hasAttribute in extccomp.CC[m.config.cCompiler].props:
builder.add(" __attribute__((noreturn))")
proc finishProcHeaderAsProto(builder: var Builder) =
builder.addLineEnd(";")
template finishProcHeaderWithBody(builder: var Builder, body: typed) =
builder.addLineEndIndent(" {")
body
builder.addLineEndDedent("}")
builder.addNewline
proc addProcVar(builder: var Builder, m: BModule, prc: PSym, name: string, params, rettype: Snippet,
isStatic = false, ignoreAttributes = false) =
# on nifc, builds full variable
if isStatic:
builder.add("static ")
let noreturn = isNoReturn(m, prc)
if not ignoreAttributes:
if sfPure in prc.flags and hasDeclspec in extccomp.CC[m.config.cCompiler].props:
builder.add("__declspec(naked) ")
if noreturn and hasDeclspec in extccomp.CC[m.config.cCompiler].props:
builder.add("__declspec(noreturn) ")
builder.add(CallingConvToStr[prc.typ.callConv])
builder.add("_PTR(")
builder.add(rettype)
builder.add(", ")
builder.add(name)
builder.add(")")
builder.add(params)
if not ignoreAttributes:
if sfPure in prc.flags and hasAttribute in extccomp.CC[m.config.cCompiler].props:
builder.add(" __attribute__((naked))")
if noreturn and hasAttribute in extccomp.CC[m.config.cCompiler].props:
builder.add(" __attribute__((noreturn))")
# ensure we are just adding a variable:
builder.addLineEnd(";")
proc addProcVar(builder: var Builder, callConv: TCallingConvention,
name: string, params, rettype: Snippet,
isStatic = false, isVolatile = false) =
# on nifc, builds full variable
if isStatic:
builder.add("static ")
builder.add(CallingConvToStr[callConv])
builder.add("_PTR(")
builder.add(rettype)
builder.add(", ")
if isVolatile:
builder.add("volatile ")
builder.add(name)
builder.add(")")
builder.add(params)
# ensure we are just adding a variable:
builder.addLineEnd(";")
proc addProcVar(builder: var Builder,
name: string, params, rettype: Snippet,
isStatic = false, isVolatile = false) =
# no callconv
if isStatic:
builder.add("static ")
builder.add(rettype)
builder.add(" (*")
if isVolatile:
builder.add("volatile ")
builder.add(name)
builder.add(")")
builder.add(params)
# ensure we are just adding a variable:
builder.addLineEnd(";")
type VarInitializerKind = enum
Assignment, CppConstructor
proc addVar(builder: var Builder, m: BModule, s: PSym, name: string, typ: Snippet, kind = Local, visibility: DeclVisibility = None, initializer: Snippet = "", initializerKind: VarInitializerKind = Assignment) =
if sfCodegenDecl in s.flags:
builder.add(runtimeFormat(s.cgDeclFrmt, [typ, name]))
if initializer.len != 0:
if initializerKind == Assignment:
builder.add(" = ")
builder.add(initializer)
builder.addLineEnd(";")
return
if s.kind in {skLet, skVar, skField, skForVar} and s.alignment > 0:
builder.add("NIM_ALIGN(" & $s.alignment & ") ")
builder.addVisibilityPrefix(visibility)
if kind == Threadvar:
if optThreads in m.config.globalOptions:
let sym = s.typ.sym
if sym != nil and sfCppNonPod in sym.flags:
builder.add("NIM_THREAD_LOCAL ")
else: builder.add("NIM_THREADVAR ")
else:
builder.addVarHeader(kind)
builder.add(typ)
if sfRegister in s.flags: builder.add(" register")
if sfVolatile in s.flags: builder.add(" volatile")
if sfNoalias in s.flags: builder.add(" NIM_NOALIAS")
builder.add(" ")
builder.add(name)
if initializer.len != 0:
if initializerKind == Assignment:
builder.add(" = ")
builder.add(initializer)
builder.addLineEnd(";")
proc addInclude(builder: var Builder, value: Snippet) =
builder.addLineEnd("#include " & value)

View File

@@ -1,259 +0,0 @@
proc constType(t: Snippet): Snippet =
# needs manipulation of `t` in nifc
"NIM_CONST " & t
proc constPtrType(t: Snippet): Snippet =
t & "* NIM_CONST"
proc ptrConstType(t: Snippet): Snippet =
"NIM_CONST " & t & "*"
proc ptrType(t: Snippet): Snippet =
t & "*"
proc cppRefType(t: Snippet): Snippet =
t & "&"
const
CallingConvToStr: array[TCallingConvention, string] = ["N_NIMCALL",
"N_STDCALL", "N_CDECL", "N_SAFECALL",
"N_SYSCALL", # this is probably not correct for all platforms,
# but one can #define it to what one wants
"N_INLINE", "N_NOINLINE", "N_FASTCALL", "N_THISCALL", "N_CLOSURE", "N_NOCONV",
"N_NOCONV" #ccMember is N_NOCONV
]
proc procPtrTypeUnnamed(rettype, params: Snippet): Snippet =
rettype & "(*)" & params
proc procPtrTypeUnnamedNimCall(rettype, params: Snippet): Snippet =
rettype & "(N_RAW_NIMCALL*)" & params
proc procPtrTypeUnnamed(callConv: TCallingConvention, rettype, params: Snippet): Snippet =
CallingConvToStr[callConv] & "_PTR(" & rettype & ", )" & params
type CppCaptureKind = enum None, ByReference, ByCopy
template addCppLambda(builder: var Builder, captures: CppCaptureKind, params: Snippet, body: typed) =
builder.add("[")
case captures
of None: discard
of ByReference: builder.add("&")
of ByCopy: builder.add("=")
builder.add("] ")
builder.add(params)
builder.addLineEndIndent(" {")
body
builder.addLineEndDedent("}")
proc cCast(typ, value: Snippet): Snippet =
"((" & typ & ") " & value & ")"
proc wrapPar(value: Snippet): Snippet =
# used for expression group, no-op on sexp
"(" & value & ")"
proc removeSinglePar(value: Snippet): Snippet =
# removes a single paren layer expected to exist, to silence Wparentheses-equality
assert value[0] == '(' and value[^1] == ')'
value[1..^2]
template addCast(builder: var Builder, typ: Snippet, valueBody: typed) =
## adds a cast to `typ` with value built by `valueBody`
builder.add "(("
builder.add typ
builder.add ") "
valueBody
builder.add ")"
proc cAddr(value: Snippet): Snippet =
"(&" & value & ")"
proc cLabelAddr(value: TLabel): Snippet =
"&&" & value
proc cDeref(value: Snippet): Snippet =
"(*" & value & ")"
proc subscript(a, b: Snippet): Snippet =
a & "[" & b & "]"
proc dotField(a, b: Snippet): Snippet =
a & "." & b
proc derefField(a, b: Snippet): Snippet =
a & "->" & b
type CallBuilder = object
needsComma: bool
proc initCallBuilder(builder: var Builder, callee: Snippet): CallBuilder =
result = CallBuilder(needsComma: false)
builder.add(callee)
builder.add("(")
const cArgumentSeparator = ", "
proc addArgumentSeparator(builder: var Builder) =
# no-op on NIFC
# used by "single argument" builders
builder.add(cArgumentSeparator)
template addArgument(builder: var Builder, call: var CallBuilder, valueBody: typed) =
if call.needsComma:
builder.addArgumentSeparator()
else:
call.needsComma = true
valueBody
proc finishCallBuilder(builder: var Builder, call: CallBuilder) =
builder.add(")")
template addCall(builder: var Builder, call: out CallBuilder, callee: Snippet, body: typed) =
call = initCallBuilder(builder, callee)
body
finishCallBuilder(builder, call)
proc addCall(builder: var Builder, callee: Snippet, args: varargs[Snippet]) =
builder.add(callee)
builder.add("(")
if args.len != 0:
builder.add(args[0])
for i in 1 ..< args.len:
builder.add(", ")
builder.add(args[i])
builder.add(")")
proc cCall(callee: Snippet, args: varargs[Snippet]): Snippet =
result = callee
result.add("(")
if args.len != 0:
result.add(args[0])
for i in 1 ..< args.len:
result.add(", ")
result.add(args[i])
result.add(")")
proc addSizeof(builder: var Builder, val: Snippet) =
builder.add("sizeof(")
builder.add(val)
builder.add(")")
proc addAlignof(builder: var Builder, val: Snippet) =
builder.add("NIM_ALIGNOF(")
builder.add(val)
builder.add(")")
proc addOffsetof(builder: var Builder, val, member: Snippet) =
builder.add("offsetof(")
builder.add(val)
builder.add(", ")
builder.add(member)
builder.add(")")
template cSizeof(val: Snippet): Snippet =
"sizeof(" & val & ")"
template cAlignof(val: Snippet): Snippet =
"NIM_ALIGNOF(" & val & ")"
template cOffsetof(val, member: Snippet): Snippet =
"offsetof(" & val & ", " & member & ")"
type TypedBinaryOp = enum
Add, Sub, Mul, Div, Mod
Shr, Shl, BitAnd, BitOr, BitXor
const typedBinaryOperators: array[TypedBinaryOp, string] = [
Add: "+",
Sub: "-",
Mul: "*",
Div: "/",
Mod: "%",
Shr: ">>",
Shl: "<<",
BitAnd: "&",
BitOr: "|",
BitXor: "^"
]
type TypedUnaryOp = enum
Neg, BitNot
const typedUnaryOperators: array[TypedUnaryOp, string] = [
Neg: "-",
BitNot: "~",
]
type UntypedBinaryOp = enum
LessEqual, LessThan, GreaterEqual, GreaterThan, Equal, NotEqual
And, Or
const untypedBinaryOperators: array[UntypedBinaryOp, string] = [
LessEqual: "<=",
LessThan: "<",
GreaterEqual: ">=",
GreaterThan: ">",
Equal: "==",
NotEqual: "!=",
And: "&&",
Or: "||"
]
type UntypedUnaryOp = enum
Not
const untypedUnaryOperators: array[UntypedUnaryOp, string] = [
Not: "!"
]
proc addOp(builder: var Builder, binOp: TypedBinaryOp, t: Snippet, a, b: Snippet) =
builder.add('(')
builder.add(a)
builder.add(' ')
builder.add(typedBinaryOperators[binOp])
builder.add(' ')
builder.add(b)
builder.add(')')
proc addOp(builder: var Builder, unOp: TypedUnaryOp, t: Snippet, a: Snippet) =
builder.add('(')
builder.add(typedUnaryOperators[unOp])
builder.add('(')
builder.add(a)
builder.add("))")
proc addOp(builder: var Builder, binOp: UntypedBinaryOp, a, b: Snippet) =
builder.add('(')
builder.add(a)
builder.add(' ')
builder.add(untypedBinaryOperators[binOp])
builder.add(' ')
builder.add(b)
builder.add(')')
proc addOp(builder: var Builder, unOp: UntypedUnaryOp, a: Snippet) =
builder.add('(')
builder.add(untypedUnaryOperators[unOp])
builder.add('(')
builder.add(a)
builder.add("))")
template cOp(binOp: TypedBinaryOp, t: Snippet, a, b: Snippet): Snippet =
'(' & a & ' ' & typedBinaryOperators[binOp] & ' ' & b & ')'
template cOp(binOp: TypedUnaryOp, t: Snippet, a: Snippet): Snippet =
'(' & typedUnaryOperators[binOp] & '(' & a & "))"
template cOp(binOp: UntypedBinaryOp, a, b: Snippet): Snippet =
'(' & a & ' ' & untypedBinaryOperators[binOp] & ' ' & b & ')'
template cOp(binOp: UntypedUnaryOp, a: Snippet): Snippet =
'(' & untypedUnaryOperators[binOp] & '(' & a & "))"
template cIfExpr(cond, a, b: Snippet): Snippet =
# XXX used for `min` and `max`, maybe add nifc primitives for these
"(" & cond & " ? " & a & " : " & b & ")"
template cUnlikely(val: Snippet): Snippet =
"NIM_UNLIKELY(" & val & ")"

View File

@@ -1,329 +0,0 @@
template addAssignmentWithValue(builder: var Builder, lhs: Snippet, valueBody: typed) =
builder.add(lhs)
builder.add(" = ")
valueBody
builder.addLineEnd(";")
template addFieldAssignmentWithValue(builder: var Builder, lhs: Snippet, name: string, valueBody: typed) =
builder.add(lhs)
builder.add("." & name & " = ")
valueBody
builder.addLineEnd(";")
template addAssignment(builder: var Builder, lhs, rhs: Snippet) =
builder.addAssignmentWithValue(lhs):
builder.add(rhs)
template addFieldAssignment(builder: var Builder, lhs: Snippet, name: string, rhs: Snippet) =
builder.addFieldAssignmentWithValue(lhs, name):
builder.add(rhs)
template addMutualFieldAssignment(builder: var Builder, lhs, rhs: Snippet, name: string) =
builder.addFieldAssignmentWithValue(lhs, name):
builder.add(rhs)
builder.add("." & name)
template addAssignment(builder: var Builder, lhs: Snippet, rhs: int | int64 | uint64 | Int128) =
builder.addAssignmentWithValue(lhs):
builder.addIntValue(rhs)
template addFieldAssignment(builder: var Builder, lhs: Snippet, name: string, rhs: int | int64 | uint64 | Int128) =
builder.addFieldAssignmentWithValue(lhs, name):
builder.addIntValue(rhs)
template addDerefFieldAssignment(builder: var Builder, lhs: Snippet, name: string, rhs: Snippet) =
builder.add(lhs)
builder.add("->" & name & " = ")
builder.add(rhs)
builder.addLineEnd(";")
template addSubscriptAssignment(builder: var Builder, lhs: Snippet, index: Snippet, rhs: Snippet) =
builder.add(lhs)
builder.add("[" & index & "] = ")
builder.add(rhs)
builder.addLineEnd(";")
template addStmt(builder: var Builder, stmtBody: typed) =
## makes an expression built by `stmtBody` into a statement
stmtBody
builder.addLineEnd(";")
proc addCallStmt(builder: var Builder, callee: Snippet, args: varargs[Snippet]) =
builder.addStmt():
builder.addCall(callee, args)
# XXX blocks need indent tracker in `Builder` object
template addSingleIfStmt(builder: var Builder, cond: Snippet, body: typed) =
builder.add("if (")
builder.add(cond)
builder.addLineEndIndent(") {")
body
builder.addLineEndDedent("}")
template addSingleIfStmtWithCond(builder: var Builder, condBody: typed, body: typed) =
builder.add("if (")
condBody
builder.addLineEndIndent(") {")
body
builder.addLineEndDedent("}")
proc initIfStmt(builder: var Builder): IfBuilder =
IfBuilder(state: WaitingIf)
proc finishIfStmt(builder: var Builder, stmt: IfBuilder) =
assert stmt.state != InBlock
builder.addNewline()
template addIfStmt(builder: var Builder, stmt: out IfBuilder, body: typed) =
stmt = initIfStmt(builder)
body
finishIfStmt(builder, stmt)
proc initElifBranch(builder: var Builder, stmt: var IfBuilder, cond: Snippet) =
case stmt.state
of WaitingIf:
builder.add("if (")
of WaitingElseIf:
builder.add(" else if (")
else: assert false, $stmt.state
builder.add(cond)
builder.addLineEndIndent(") {")
stmt.state = InBlock
proc initElseBranch(builder: var Builder, stmt: var IfBuilder) =
assert stmt.state == WaitingElseIf, $stmt.state
builder.addLineEndIndent(" else {")
stmt.state = InBlock
proc finishBranch(builder: var Builder, stmt: var IfBuilder) =
builder.addDedent("}")
stmt.state = WaitingElseIf
template addElifBranch(builder: var Builder, stmt: var IfBuilder, cond: Snippet, body: typed) =
initElifBranch(builder, stmt, cond)
body
finishBranch(builder, stmt)
template addElseBranch(builder: var Builder, stmt: var IfBuilder, body: typed) =
initElseBranch(builder, stmt)
body
finishBranch(builder, stmt)
proc initForRange(builder: var Builder, i, start, bound: Snippet, inclusive: bool = false) =
builder.add("for (")
builder.add(i)
builder.add(" = ")
builder.add(start)
builder.add("; ")
builder.add(i)
if inclusive:
builder.add(" <= ")
else:
builder.add(" < ")
builder.add(bound)
builder.add("; ")
builder.add(i)
builder.addLineEndIndent("++) {")
proc initForStep(builder: var Builder, i, start, bound, step: Snippet, inclusive: bool = false) =
builder.add("for (")
builder.add(i)
builder.add(" = ")
builder.add(start)
builder.add("; ")
builder.add(i)
if inclusive:
builder.add(" <= ")
else:
builder.add(" < ")
builder.add(bound)
builder.add("; ")
builder.add(i)
builder.add(" += ")
builder.add(step)
builder.addLineEndIndent(") {")
proc finishFor(builder: var Builder) {.inline.} =
builder.addLineEndDedent("}")
template addForRangeExclusive(builder: var Builder, i, start, bound: Snippet, body: typed) =
initForRange(builder, i, start, bound, false)
body
finishFor(builder)
template addForRangeInclusive(builder: var Builder, i, start, bound: Snippet, body: typed) =
initForRange(builder, i, start, bound, true)
body
finishFor(builder)
template addSwitchStmt(builder: var Builder, val: Snippet, body: typed) =
builder.add("switch (")
builder.add(val)
builder.addLineEnd(") {") # no indent
body
builder.addLineEnd("}")
template addSingleSwitchCase(builder: var Builder, val: Snippet, body: typed) =
builder.add("case ")
builder.add(val)
builder.addLineEndIndent(":")
body
builder.addLineEndDedent("")
type
SwitchCaseState = enum
None, Of, Else, Finished
SwitchCaseBuilder = object
state: SwitchCaseState
proc addCase(builder: var Builder, info: var SwitchCaseBuilder, val: Snippet) =
if info.state != Of:
assert info.state == None
info.state = Of
builder.add("case ")
builder.add(val)
builder.addLineEndIndent(":")
proc addCaseRange(builder: var Builder, info: var SwitchCaseBuilder, first, last: Snippet) =
if info.state != Of:
assert info.state == None
info.state = Of
builder.add("case ")
builder.add(first)
builder.add(" ... ")
builder.add(last)
builder.addLineEndIndent(":")
proc addCaseElse(builder: var Builder, info: var SwitchCaseBuilder) =
assert info.state == None
info.state = Else
builder.addLineEndIndent("default:")
template addSwitchCase(builder: var Builder, info: out SwitchCaseBuilder, caseBody, body: typed) =
info = SwitchCaseBuilder(state: None)
caseBody
info.state = Finished
body
builder.addLineEndDedent("")
template addSwitchElse(builder: var Builder, body: typed) =
builder.addLineEndIndent("default:")
body
builder.addLineEndDedent("")
proc addBreak(builder: var Builder) =
builder.addLineEnd("break;")
type ScopeBuilder = object
inside: bool
proc initScope(builder: var Builder): ScopeBuilder =
builder.addLineEndIndent("{")
result = ScopeBuilder(inside: true)
proc finishScope(builder: var Builder, scope: var ScopeBuilder) =
assert scope.inside, "scope not inited"
builder.addLineEndDedent("}")
scope.inside = false
template addScope(builder: var Builder, body: typed) =
builder.addLineEndIndent("{")
body
builder.addLineEndDedent("}")
type WhileBuilder = object
inside: bool
proc initWhileStmt(builder: var Builder, cond: Snippet): WhileBuilder =
builder.add("while (")
builder.add(cond)
builder.addLineEndIndent(") {")
result = WhileBuilder(inside: true)
proc finishWhileStmt(builder: var Builder, stmt: var WhileBuilder) =
assert stmt.inside, "while stmt not inited"
builder.addLineEndDedent("}")
stmt.inside = false
template addWhileStmt(builder: var Builder, cond: Snippet, body: typed) =
builder.add("while (")
builder.add(cond)
builder.addLineEndIndent(") {")
body
builder.addLineEndDedent("}")
proc addLabel(builder: var Builder, name: TLabel) =
builder.add(name)
builder.addLineEnd(": ;")
proc addReturn(builder: var Builder) =
builder.addLineEnd("return;")
proc addReturn(builder: var Builder, value: Snippet) =
builder.add("return ")
builder.add(value)
builder.addLineEnd(";")
proc addGoto(builder: var Builder, label: TLabel) =
builder.add("goto ")
builder.add(label)
builder.addLineEnd(";")
proc addComputedGoto(builder: var Builder, value: Snippet) =
builder.add("goto *")
builder.add(value)
builder.addLineEnd(";")
proc addIncr(builder: var Builder, val: Snippet) =
builder.add(val)
builder.addLineEnd("++;")
proc addDecr(builder: var Builder, val: Snippet) =
builder.add(val)
builder.addLineEnd("--;")
proc addInPlaceOp(builder: var Builder, binOp: TypedBinaryOp, t: Snippet, a, b: Snippet) =
builder.add(a)
builder.add(' ')
builder.add(typedBinaryOperators[binOp])
builder.add("= ")
builder.add(b)
builder.addLineEnd(";")
proc addInPlaceOp(builder: var Builder, binOp: UntypedBinaryOp, a, b: Snippet) =
builder.add(a)
builder.add(' ')
builder.add(untypedBinaryOperators[binOp])
builder.add("= ")
builder.add(b)
builder.addLineEnd(";")
proc cInPlaceOp(binOp: TypedBinaryOp, t: Snippet, a, b: Snippet): Snippet =
result = ""
result.add(a)
result.add(' ')
result.add(typedBinaryOperators[binOp])
result.add("= ")
result.add(b)
result.add(";\n")
proc cInPlaceOp(binOp: UntypedBinaryOp, a, b: Snippet): Snippet =
result = ""
result.add(a)
result.add(' ')
result.add(untypedBinaryOperators[binOp])
result.add("= ")
result.add(b)
result.add(";\n")
template addCPragma(builder: var Builder, val: Snippet) =
builder.addNewline()
builder.add("#pragma ")
builder.add(val)
builder.addNewline()
proc addDiscard(builder: var Builder, val: Snippet) =
builder.add("(void)")
builder.add(val)
builder.addLineEnd(";")

File diff suppressed because it is too large Load Diff

File diff suppressed because it is too large Load Diff

View File

@@ -16,330 +16,98 @@
## implementation.
template detectVersion(field, corename) =
if m.g.config.selectedGC in {gcArc, gcOrc, gcYrc, gcAtomicArc, gcHooks}:
result = 2
else:
result = 1
if m.g.field == 0:
let core = getCompilerProc(m.g.graph, corename)
if core == nil or core.kind != skConst:
m.g.field = 1
else:
m.g.field = toInt(ast.getInt(core.ast))
result = m.g.field
proc detectStrVersion(m: BModule): int =
if m.g.config.usesSso() and
m.g.config.selectedGC in {gcArc, gcOrc, gcYrc, gcAtomicArc, gcHooks}:
result = 3
else:
detectVersion(strVersion, "nimStrVersion")
detectVersion(strVersion, "nimStrVersion")
proc detectSeqVersion(m: BModule): int =
detectVersion(seqVersion, "nimSeqVersion")
# ----- Version 1: GC'ed strings and seqs --------------------------------
proc genStringLiteralDataOnlyV1(m: BModule, s: string; result: var Rope) =
cgsym(m, "TGenericSeq")
let tmp = getTempName(m)
result.add tmp
var res = newBuilder("")
res.addVarWithTypeAndInitializer(AlwaysConst, name = tmp):
res.addSimpleStruct(m, name = "", baseType = ""):
res.addField(name = "Sup", typ = "TGenericSeq")
res.addArrayField(name = "data", elementType = NimChar, len = s.len + 1)
do:
var strInit: StructInitializer
res.addStructInitializer(strInit, kind = siOrderedStruct):
res.addField(strInit, name = "Sup"):
var seqInit: StructInitializer
res.addStructInitializer(seqInit, kind = siOrderedStruct):
res.addField(seqInit, name = "len"):
res.addIntValue(s.len)
res.addField(seqInit, name = "reserved"):
res.add(cCast(NimInt, cOp(BitOr, NimUint, cCast(NimUint, cIntValue(s.len)), NimStrlitFlag)))
res.addField(strInit, name = "data"):
res.add(makeCString(s))
m.s[cfsStrData].add(extract(res))
proc genStringLiteralDataOnlyV1(m: BModule, s: string): Rope =
discard cgsym(m, "TGenericSeq")
result = getTempName(m)
m.s[cfsData].addf("STRING_LITERAL($1, $2, $3);$n",
[result, makeCString(s), rope(s.len)])
proc genStringLiteralV1(m: BModule; n: PNode; result: var Builder) =
proc genStringLiteralV1(m: BModule; n: PNode): Rope =
if s.isNil:
result.add(cCast(ptrType(cgsymValue(m, "NimStringDesc")), NimNil))
result = ropecg(m, "((#NimStringDesc*) NIM_NIL)", [])
else:
let id = nodeTableTestOrSet(m.dataCache, n, m.labels)
var name: string = ""
if id == m.labels:
# string literal not found in the cache:
genStringLiteralDataOnlyV1(m, n.strVal, name)
result = ropecg(m, "((#NimStringDesc*) &$1)",
[genStringLiteralDataOnlyV1(m, n.strVal)])
else:
name = m.tmpBase & $id
result.add(cCast(ptrType(cgsymValue(m, "NimStringDesc")), cAddr(name)))
result = ropecg(m, "((#NimStringDesc*) &$1$2)",
[m.tmpBase, id])
# ------ Version 2: destructor based strings and seqs -----------------------
proc genStringLiteralDataOnlyV2(m: BModule, s: string; result: Rope; isConst: bool) =
var res = newBuilder("")
res.addVarWithTypeAndInitializer(
if isConst: AlwaysConst else: Global,
name = result):
res.addSimpleStruct(m, name = "", baseType = ""):
res.addField(name = "cap", typ = NimInt)
res.addArrayField(name = "data", elementType = NimChar, len = s.len + 1)
do:
var structInit: StructInitializer
res.addStructInitializer(structInit, kind = siOrderedStruct):
res.addField(structInit, name = "cap"):
res.add(cOp(BitOr, NimInt, cIntValue(s.len), NimStrlitFlag))
res.addField(structInit, name = "data"):
res.add(makeCString(s))
m.s[cfsStrData].add(extract(res))
m.s[cfsData].addf("static $4 struct {$n" &
" NI cap; NIM_CHAR data[$2+1];$n" &
"} $1 = { $2 | NIM_STRLIT_FLAG, $3 };$n",
[result, rope(s.len), makeCString(s),
rope(if isConst: "const" else: "")])
proc genStringLiteralV2(m: BModule; n: PNode; isConst: bool; result: var Builder) =
proc genStringLiteralV2(m: BModule; n: PNode; isConst: bool): Rope =
let id = nodeTableTestOrSet(m.dataCache, n, m.labels)
var litName: string
if id == m.labels:
cgsym(m, "NimStrPayload")
cgsym(m, "NimStringV2")
let pureLit = getTempName(m)
genStringLiteralDataOnlyV2(m, n.strVal, pureLit, isConst)
result = getTempName(m)
discard cgsym(m, "NimStrPayload")
discard cgsym(m, "NimStringV2")
# string literal not found in the cache:
litName = getTempName(m)
genStringLiteralDataOnlyV2(m, n.strVal, litName, isConst)
m.s[cfsData].addf("static $4 NimStringV2 $1 = {$2, (NimStrPayload*)&$3};$n",
[result, rope(n.strVal.len), pureLit, rope(if isConst: "const" else: "")])
else:
litName = m.tmpBase & $id
let tmp = getTempName(m)
result.add tmp
var res = newBuilder("")
res.addVarWithInitializer(
if isConst: AlwaysConst else: Global,
name = tmp,
typ = "NimStringV2"):
var strInit: StructInitializer
res.addStructInitializer(strInit, kind = siOrderedStruct):
res.addField(strInit, name = "len"):
res.addIntValue(n.strVal.len)
res.addField(strInit, name = "p"):
res.add(cCast(ptrType("NimStrPayload"), cAddr(litName)))
m.s[cfsStrData].add(extract(res))
result = getTempName(m)
m.s[cfsData].addf("static $4 NimStringV2 $1 = {$2, (NimStrPayload*)&$3};$n",
[result, rope(n.strVal.len), m.tmpBase & rope(id),
rope(if isConst: "const" else: "")])
proc genStringLiteralV2Const(m: BModule; n: PNode; isConst: bool; result: var Builder) =
proc genStringLiteralV2Const(m: BModule; n: PNode; isConst: bool): Rope =
let id = nodeTableTestOrSet(m.dataCache, n, m.labels)
var pureLit: Rope
if id == m.labels:
pureLit = getTempName(m)
cgsym(m, "NimStrPayload")
cgsym(m, "NimStringV2")
discard cgsym(m, "NimStrPayload")
discard cgsym(m, "NimStringV2")
# string literal not found in the cache:
genStringLiteralDataOnlyV2(m, n.strVal, pureLit, isConst)
else:
pureLit = m.tmpBase & rope(id)
var strInit: StructInitializer
result.addStructInitializer(strInit, kind = siOrderedStruct):
result.addField(strInit, name = "len"):
result.addIntValue(n.strVal.len)
result.addField(strInit, name = "p"):
result.add(cCast(ptrType("NimStrPayload"), cAddr(pureLit)))
proc ssoCharLit(ch: char): string =
## Return a C char literal for ch, with proper escaping.
const hexDigits = "0123456789abcdef"
result = "'"
case ch
of '\'': result.add("\\'")
of '\\': result.add("\\\\")
of '\0': result.add("\\0")
of '\n': result.add("\\n")
of '\r': result.add("\\r")
of '\t': result.add("\\t")
elif ch.ord < 32 or ch.ord == 127:
result.add("\\x")
result.add(hexDigits[ch.ord shr 4])
result.add(hexDigits[ch.ord and 0xf])
else:
result.add(ch)
result.add('\'')
proc ssoBytesLit(m: BModule; s: string; slen: int): string =
## Compute the `bytes` field value for the new SmallString layout.
## byte 0 = slen, bytes 1-7 = inline chars 0-6 (zero-padded).
## On LE: slen in bits 0-7, char[i] in bits (i+1)*8..(i+1)*8+7.
## On BE: slen in bits 56-63, char[i] in bits (6-i)*8..(6-i)*8+7.
const AlwaysAvail = 7
var val: uint64
if CPU[m.g.config.target.targetCPU].endian == littleEndian:
val = uint64(slen)
for i in 0..<min(s.len, AlwaysAvail):
val = val or (uint64(s[i]) shl (uint(i + 1) * 8))
else:
val = uint64(slen) shl 56
for i in 0..<min(s.len, AlwaysAvail):
val = val or (uint64(s[i]) shl (uint(AlwaysAvail - 1 - i) * 8))
# Cast to NU (C name for Nim's uint, = NU64 on 64-bit). NU64 = uint64_t.
result = cCast("NU", $val & "ULL")
proc ssoMoreLit(m: BModule; s: string): string =
## For medium string literals (AlwaysAvail < len <= PayloadSize), encode
## chars[AlwaysAvail..ptrSize-1] in the 'more' pointer field bit-pattern.
## The last pointer byte is always '\0' (null terminator), guaranteed by
## PayloadSize = AlwaysAvail + ptrSize - 1. slen <= PayloadSize guards
## prevent any code from dereferencing this as an actual pointer.
const AlwaysAvail = 7
let ptrSize = m.g.config.target.ptrSize
var val: uint64 = 0
for i in 0..<ptrSize:
let ch: uint64 = if AlwaysAvail + i < s.len: uint64(s[AlwaysAvail + i]) else: 0
if CPU[m.g.config.target.targetCPU].endian == littleEndian:
val = val or (ch shl (uint(i) * 8))
else:
val = val or (ch shl (uint(ptrSize - 1 - i) * 8))
result = cCast(ptrType("LongString"), "(uintptr_t)" & $val)
proc genStringLiteralV3Const(m: BModule; n: PNode; isConst: bool; result: var Builder) =
# Inline SmallString struct initializer for use inside const aggregate types.
# Layout: {bytes: NimUint, more: ptr LongString}
# bytes = slen (low byte) | char[0]<<8 | char[1]<<16 | ... | char[6]<<56
const AlwaysAvail = 7
let s = n.strVal
cgsym(m, "SmallString")
cgsym(m, "LongString")
let payloadSize = AlwaysAvail + m.g.config.target.ptrSize - 1
var si: StructInitializer
result.addStructInitializer(si, kind = siOrderedStruct):
if s.len <= AlwaysAvail:
result.addField(si, name = "bytes"):
result.add(ssoBytesLit(m, s, s.len))
result.addField(si, name = "more"):
result.add(NimNil)
elif s.len <= payloadSize:
# Medium string: bytes holds slen + chars 0-6; more holds chars 7..PayloadSize-1.
result.addField(si, name = "bytes"):
result.add(ssoBytesLit(m, s, s.len))
result.addField(si, name = "more"):
result.add(ssoMoreLit(m, s))
else:
# Emit the LongString block into cfsStrData and reference it inline.
let dataName = getTempName(m)
var res = newBuilder("")
res.addVarWithTypeAndInitializer(
if isConst: AlwaysConst else: Global,
name = dataName):
res.addSimpleStruct(m, name = "", baseType = ""):
res.addField(name = "rc", typ = NimInt)
res.addField(name = "fullLen", typ = NimInt)
res.addField(name = "capImpl", typ = NimInt)
res.addArrayField(name = "data", elementType = NimChar, len = s.len + 1)
do:
var di: StructInitializer
res.addStructInitializer(di, kind = siOrderedStruct):
res.addField(di, name = "fullLen"):
res.addIntValue(s.len)
res.addField(di, name = "rc"):
res.addIntValue(1)
res.addField(di, name = "capImpl"):
res.addIntValue(0) # static, never freed
res.addField(di, name = "data"):
res.add(makeCString(s))
m.s[cfsStrData].add(extract(res))
# slen = StaticSlen (254): marks this as a static (never-freed) long string.
result.addField(si, name = "bytes"):
result.add(ssoBytesLit(m, s, 254))
result.addField(si, name = "more"):
result.add(cCast(ptrType("LongString"), cAddr(dataName)))
# ------ Version 3: SmallString (SSO) strings --------------------------------
proc genStringLiteralV3(m: BModule; n: PNode; isConst: bool; result: var Builder) =
# SmallString literal. Always generate a fresh SmallString variable (like v2
# always generates a fresh outer NimStringV2). For long strings, cache the
# LongString payload to avoid duplicates within a module.
const AlwaysAvail = 7 # must match strs_v3.nim
let s = n.strVal
let tmp = getTempName(m)
result.add tmp
cgsym(m, "SmallString")
cgsym(m, "LongString")
let payloadSize = AlwaysAvail + m.g.config.target.ptrSize - 1
var res = newBuilder("")
if s.len <= AlwaysAvail:
# Short: bytes holds slen + all chars (zero-padded), more = NULL.
res.addVarWithInitializer(
if isConst: AlwaysConst else: Global,
name = tmp, typ = "SmallString"):
var si: StructInitializer
res.addStructInitializer(si, kind = siOrderedStruct):
res.addField(si, name = "bytes"):
res.add(ssoBytesLit(m, s, s.len))
res.addField(si, name = "more"):
res.add(NimNil)
elif s.len <= payloadSize:
# Medium: bytes holds slen + chars 0-6; more holds chars 7..PayloadSize-1 as raw bits.
res.addVarWithInitializer(
if isConst: AlwaysConst else: Global,
name = tmp, typ = "SmallString"):
var si: StructInitializer
res.addStructInitializer(si, kind = siOrderedStruct):
res.addField(si, name = "bytes"):
res.add(ssoBytesLit(m, s, s.len))
res.addField(si, name = "more"):
res.add(ssoMoreLit(m, s))
else:
# Long: cache the LongString block to emit it only once per module per string.
# Always generate a fresh SmallString pointing at the (possibly cached) block.
let id = nodeTableTestOrSet(m.dataCache, n, m.labels)
var dataName: string
if id == m.labels:
dataName = getTempName(m)
res.addVarWithTypeAndInitializer(
if isConst: AlwaysConst else: Global,
name = dataName):
res.addSimpleStruct(m, name = "", baseType = ""):
res.addField(name = "rc", typ = NimInt)
res.addField(name = "fullLen", typ = NimInt)
res.addField(name = "capImpl", typ = NimInt)
res.addArrayField(name = "data", elementType = NimChar, len = s.len + 1)
do:
var di: StructInitializer
res.addStructInitializer(di, kind = siOrderedStruct):
res.addField(di, name = "fullLen"):
res.addIntValue(s.len)
res.addField(di, name = "rc"):
res.addIntValue(1)
res.addField(di, name = "capImpl"):
res.addIntValue(0) # bit 0 = 0: static, never freed
res.addField(di, name = "data"):
res.add(makeCString(s))
else:
dataName = m.tmpBase & $id
# slen = StaticSlen (254): marks this as a static (never-freed) long string.
res.addVarWithInitializer(
if isConst: AlwaysConst else: Global,
name = tmp, typ = "SmallString"):
var si: StructInitializer
res.addStructInitializer(si, kind = siOrderedStruct):
res.addField(si, name = "bytes"):
res.add(ssoBytesLit(m, s, 254))
res.addField(si, name = "more"):
res.add(cCast(ptrType("LongString"), cAddr(dataName)))
m.s[cfsStrData].add(extract(res))
result = "{$1, (NimStrPayload*)&$2}" % [rope(n.strVal.len), pureLit]
# ------ Version selector ---------------------------------------------------
proc genStringLiteralDataOnly(m: BModule; s: string; info: TLineInfo;
isConst: bool; result: var Rope) =
isConst: bool): Rope =
case detectStrVersion(m)
of 0, 1: genStringLiteralDataOnlyV1(m, s, result)
of 0, 1: result = genStringLiteralDataOnlyV1(m, s)
of 2:
let tmp = getTempName(m)
genStringLiteralDataOnlyV2(m, s, tmp, isConst)
result.add tmp
of 3:
localError(m.config, info, "genStringLiteralDataOnly not supported for SmallString (nimsso)")
result = getTempName(m)
genStringLiteralDataOnlyV2(m, s, result, isConst)
else:
localError(m.config, info, "cannot determine how to produce code for string literal")
proc genNilStringLiteral(m: BModule; info: TLineInfo; result: var Builder) =
result.add(cCast(ptrType(cgsymValue(m, "NimStringDesc")), NimNil))
proc genNilStringLiteral(m: BModule; info: TLineInfo): Rope =
result = ropecg(m, "((#NimStringDesc*) NIM_NIL)", [])
proc genStringLiteral(m: BModule; n: PNode; result: var Builder) =
proc genStringLiteral(m: BModule; n: PNode): Rope =
case detectStrVersion(m)
of 0, 1: genStringLiteralV1(m, n, result)
of 2: genStringLiteralV2(m, n, isConst = true, result)
of 3: genStringLiteralV3(m, n, isConst = true, result)
of 0, 1: result = genStringLiteralV1(m, n)
of 2: result = genStringLiteralV2(m, n, isConst = true)
else:
localError(m.config, n.info, "cannot determine how to produce code for string literal")

View File

@@ -19,11 +19,13 @@ import
const
CFileSectionNames: array[TCFileSection, string] = [
cfsMergeInfo: "",
cfsHeaders: "NIM_merge_HEADERS",
cfsFrameDefines: "NIM_merge_FRAME_DEFINES",
cfsForwardTypes: "NIM_merge_FORWARD_TYPES",
cfsTypes: "NIM_merge_TYPES",
cfsSeqTypes: "NIM_merge_SEQ_TYPES",
cfsFieldInfo: "NIM_merge_FIELD_INFO",
cfsTypeInfo: "NIM_merge_TYPE_INFO",
cfsProcHeaders: "NIM_merge_PROC_HEADERS",
cfsData: "NIM_merge_DATA",
@@ -32,8 +34,11 @@ const
cfsInitProc: "NIM_merge_INIT_PROC",
cfsDatInitProc: "NIM_merge_DATINIT_PROC",
cfsTypeInit1: "NIM_merge_TYPE_INIT1",
cfsTypeInit2: "NIM_merge_TYPE_INIT2",
cfsTypeInit3: "NIM_merge_TYPE_INIT3",
cfsDynLibInit: "NIM_merge_DYNLIB_INIT"
cfsDebugInit: "NIM_merge_DEBUG_INIT",
cfsDynLibInit: "NIM_merge_DYNLIB_INIT",
cfsDynLibDeinit: "NIM_merge_DYNLIB_DEINIT",
]
CProcSectionNames: array[TCProcSection, string] = [
cpsLocals: "NIM_merge_PROC_LOCALS",

View File

@@ -24,31 +24,28 @@ proc specializeResetN(p: BProc, accessor: Rope, n: PNode;
of nkRecCase:
if (n[0].kind != nkSym): internalError(p.config, n.info, "specializeResetN")
let disc = n[0].sym
if disc.loc.snippet == "": fillObjectFields(p.module, typ)
if disc.loc.r == nil: fillObjectFields(p.module, typ)
if disc.loc.t == nil:
internalError(p.config, n.info, "specializeResetN()")
let discField = dotField(accessor, disc.loc.snippet)
p.s(cpsStmts).addSwitchStmt(discField):
for i in 1..<n.len:
let branch = n[i]
assert branch.kind in {nkOfBranch, nkElse}
var caseBuilder: SwitchCaseBuilder
p.s(cpsStmts).addSwitchCase(caseBuilder):
if branch.kind == nkOfBranch:
genCaseRange(p, branch, caseBuilder)
else:
p.s(cpsStmts).addCaseElse(caseBuilder)
do:
specializeResetN(p, accessor, lastSon(branch), typ)
p.s(cpsStmts).addBreak()
specializeResetT(p, discField, disc.loc.t)
lineF(p, cpsStmts, "switch ($1.$2) {$n", [accessor, disc.loc.r])
for i in 1..<n.len:
let branch = n[i]
assert branch.kind in {nkOfBranch, nkElse}
if branch.kind == nkOfBranch:
genCaseRange(p, branch)
else:
lineF(p, cpsStmts, "default:$n", [])
specializeResetN(p, accessor, lastSon(branch), typ)
lineF(p, cpsStmts, "break;$n", [])
lineF(p, cpsStmts, "} $n", [])
specializeResetT(p, "$1.$2" % [accessor, disc.loc.r], disc.loc.t)
of nkSym:
let field = n.sym
if field.typ.kind == tyVoid: return
if field.loc.snippet == "": fillObjectFields(p.module, typ)
if field.loc.r == nil: fillObjectFields(p.module, typ)
if field.loc.t == nil:
internalError(p.config, n.info, "specializeResetN()")
specializeResetT(p, dotField(accessor, field.loc.snippet), field.loc.t)
specializeResetT(p, "$1.$2" % [accessor, field.loc.r], field.loc.t)
else: internalError(p.config, n.info, "specializeResetN()")
proc specializeResetT(p: BProc, accessor: Rope, typ: PType) =
@@ -57,62 +54,40 @@ proc specializeResetT(p: BProc, accessor: Rope, typ: PType) =
case typ.kind
of tyGenericInst, tyGenericBody, tyTypeDesc, tyAlias, tyDistinct, tyInferred,
tySink, tyOwned:
specializeResetT(p, accessor, skipModifier(typ))
specializeResetT(p, accessor, lastSon(typ))
of tyArray:
let arraySize = lengthOrd(p.config, typ.indexType)
var i: TLoc = getTemp(p, getSysType(p.module.g.graph, unknownLineInfo, tyInt))
p.s(cpsStmts).addForRangeExclusive(i.snippet, cIntValue(0), cIntValue(arraySize)):
specializeResetT(p, subscript(accessor, i.snippet), typ.elementType)
let arraySize = lengthOrd(p.config, typ[0])
var i: TLoc
getTemp(p, getSysType(p.module.g.graph, unknownLineInfo, tyInt), i)
linefmt(p, cpsStmts, "for ($1 = 0; $1 < $2; $1++) {$n",
[i.r, arraySize])
specializeResetT(p, ropecg(p.module, "$1[$2]", [accessor, i.r]), typ[1])
lineF(p, cpsStmts, "}$n", [])
of tyObject:
var x = typ.baseClass
if x != nil: x = x.skipTypes(skipPtrs)
specializeResetT(p, accessor.parentObj(p.module), x)
if typ.n != nil:
if typ.sym != nil and sfImportc in typ.sym.flags:
# imported C struct, nimZeroMem
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "nimZeroMem"),
cCast(ptrType(CPointer), cAddr(accessor)),
cSizeof(getTypeDesc(p.module, typ)))
else:
specializeResetN(p, accessor, typ.n, typ)
for i in 0..<typ.len:
var x = typ[i]
if x != nil: x = x.skipTypes(skipPtrs)
specializeResetT(p, accessor.parentObj(p.module), x)
if typ.n != nil: specializeResetN(p, accessor, typ.n, typ)
of tyTuple:
let typ = getUniqueType(typ)
for i, a in typ.ikids:
specializeResetT(p, dotField(accessor, "Field" & $i), a)
for i in 0..<typ.len:
specializeResetT(p, ropecg(p.module, "$1.Field$2", [accessor, i]), typ[i])
of tyString, tyRef, tySequence:
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "unsureAsgnRef"),
cCast(ptrType(CPointer), cAddr(accessor)),
NimNil)
lineCg(p, cpsStmts, "#unsureAsgnRef((void**)&$1, NIM_NIL);$n", [accessor])
of tyProc:
if typ.callConv == ccClosure:
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "unsureAsgnRef"),
cCast(ptrType(CPointer), cAddr(dotField(accessor, "ClE_0"))),
NimNil)
p.s(cpsStmts).addFieldAssignment(accessor, "ClP_0", NimNil)
lineCg(p, cpsStmts, "#unsureAsgnRef((void**)&$1.ClE_0, NIM_NIL);$n", [accessor])
lineCg(p, cpsStmts, "$1.ClP_0 = NIM_NIL;$n", [accessor])
else:
p.s(cpsStmts).addAssignment(accessor, NimNil)
of tyChar, tyBool, tyEnum, tyRange, tyInt..tyUInt64:
p.s(cpsStmts).addAssignment(accessor, cIntValue(0))
lineCg(p, cpsStmts, "$1 = NIM_NIL;$n", [accessor])
of tyChar, tyBool, tyEnum, tyInt..tyUInt64:
lineCg(p, cpsStmts, "$1 = 0;$n", [accessor])
of tyCstring, tyPointer, tyPtr, tyVar, tyLent:
p.s(cpsStmts).addAssignment(accessor, NimNil)
of tySet:
case mapSetType(p.config, typ)
of ctArray:
let t = getTypeDesc(p.module, typ)
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "nimZeroMem"),
accessor,
cSizeof(t))
of ctInt8, ctInt16, ctInt32, ctInt64:
p.s(cpsStmts).addAssignment(accessor, cIntValue(0))
else:
raiseAssert "unexpected set type kind"
of tyNone, tyEmpty, tyNil, tyUntyped, tyTyped, tyGenericInvocation,
tyGenericParam, tyOrdinal, tyOpenArray, tyForward, tyVarargs,
tyUncheckedArray, tyError, tyBuiltInTypeClass, tyUserTypeClass,
tyUserTypeClassInst, tyCompositeTypeClass, tyAnd, tyOr, tyNot,
tyAnything, tyStatic, tyFromExpr, tyConcept, tyVoid, tyIterable:
lineCg(p, cpsStmts, "$1 = NIM_NIL;$n", [accessor])
else:
discard
proc specializeReset(p: BProc, a: TLoc) =

File diff suppressed because it is too large Load Diff

View File

@@ -19,12 +19,9 @@ proc accessThreadLocalVar(p: BProc, s: PSym) =
if emulatedThreadVars(p.config) and threadVarAccessed notin p.flags:
p.flags.incl threadVarAccessed
incl p.module.flags, usesThreadVars
p.procSec(cpsLocals).addVar(kind = Local,
name = "NimTV_",
typ = ptrType("NimThreadVars"))
p.procSec(cpsInit).addAssignment("NimTV_",
cCast(ptrType("NimThreadVars"),
cCall(cgsymValue(p.module, "GetThreadLocalVars"))))
p.procSec(cpsLocals).addf("\tNimThreadVars* NimTV_;$n", [])
p.procSec(cpsInit).add(
ropecg(p.module, "\tNimTV_ = (NimThreadVars*) #GetThreadLocalVars();$n", []))
proc declareThreadVar(m: BModule, s: PSym, isExtern: bool) =
if emulatedThreadVars(m.config):
@@ -33,32 +30,30 @@ proc declareThreadVar(m: BModule, s: PSym, isExtern: bool) =
# allocator for it :-(
if not containsOrIncl(m.g.nimtvDeclared, s.id):
m.g.nimtvDeps.add(s.loc.t)
m.g.nimtv.addField(name = s.loc.snippet, typ = getTypeDesc(m, s.loc.t))
m.g.nimtv.addf("$1 $2;$n", [getTypeDesc(m, s.loc.t), s.loc.r])
else:
let vis =
if isExtern: Extern
elif lfExportLib in s.loc.flags: ExportLibVar
else: Private
m.s[cfsVars].addVar(m, s,
name = s.loc.snippet,
typ = getTypeDesc(m, s.loc.t),
kind = Threadvar,
visibility = vis)
if isExtern: m.s[cfsVars].add("extern ")
elif lfExportLib in s.loc.flags: m.s[cfsVars].add("N_LIB_EXPORT_VAR ")
else: m.s[cfsVars].add("N_LIB_PRIVATE ")
if optThreads in m.config.globalOptions:
let sym = s.typ.sym
if sym != nil and sfCppNonPod in sym.flags:
m.s[cfsVars].add("NIM_THREAD_LOCAL ")
else: m.s[cfsVars].add("NIM_THREADVAR ")
m.s[cfsVars].add(getTypeDesc(m, s.loc.t))
m.s[cfsVars].addf(" $1;$n", [s.loc.r])
proc generateThreadLocalStorage(m: BModule) =
if m.g.nimtv.buf.len != 0 and (usesThreadVars in m.flags or sfMainModule in m.module.flags):
if m.g.nimtv != nil and (usesThreadVars in m.flags or sfMainModule in m.module.flags):
for t in items(m.g.nimtvDeps): discard getTypeDesc(m, t)
finishTypeDescriptions(m)
m.s[cfsSeqTypes].addTypedef(name = "NimThreadVars"):
m.s[cfsSeqTypes].addSimpleStruct(m, name = "", baseType = ""):
m.s[cfsSeqTypes].add(extract(m.g.nimtv))
m.s[cfsSeqTypes].addf("typedef struct {$1} NimThreadVars;$n", [m.g.nimtv])
proc generateThreadVarsSize(m: BModule) =
if m.g.nimtv.buf.len != 0:
if m.g.nimtv != nil:
let externc = if m.config.backend == backendCpp or
sfCompileToCpp in m.module.flags: ExternC
else: None
m.s[cfsProcs].addDeclWithVisibility(externc):
m.s[cfsProcs].addProcHeader("NimThreadVarsSize", NimInt, cProcParams())
m.s[cfsProcs].finishProcHeaderWithBody():
m.s[cfsProcs].addReturn(cCast(NimInt, cSizeof("NimThreadVars")))
sfCompileToCpp in m.module.flags: "extern \"C\" "
else: ""
m.s[cfsProcs].addf(
"$#NI NimThreadVarsSize(){return (NI)sizeof(NimThreadVars);}$n",
[externc.rope])

View File

@@ -16,15 +16,12 @@ type
p: BProc
visitorFrmt: string
const
visitorFrmt = "#nimGCvisit((void*)$1, $2);$n"
proc genTraverseProc(c: TTraversalClosure, accessor: Rope, typ: PType)
proc genCaseRange(p: BProc, branch: PNode, info: var SwitchCaseBuilder)
proc getTemp(p: BProc, t: PType, needsInit=false): TLoc
proc visit(p: BProc, data, visitor: Snippet) =
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "nimGCvisit"),
cCast(CPointer, data),
visitor)
proc genCaseRange(p: BProc, branch: PNode)
proc getTemp(p: BProc, t: PType, result: var TLoc; needsInit=false)
proc genTraverseProc(c: TTraversalClosure, accessor: Rope, n: PNode;
typ: PType) =
@@ -37,35 +34,32 @@ proc genTraverseProc(c: TTraversalClosure, accessor: Rope, n: PNode;
if (n[0].kind != nkSym): internalError(c.p.config, n.info, "genTraverseProc")
var p = c.p
let disc = n[0].sym
if disc.loc.snippet == "": fillObjectFields(c.p.module, typ)
if disc.loc.r == nil: fillObjectFields(c.p.module, typ)
if disc.loc.t == nil:
internalError(c.p.config, n.info, "genTraverseProc()")
let discField = dotField(accessor, disc.loc.snippet)
p.s(cpsStmts).addSwitchStmt(discField):
for i in 1..<n.len:
let branch = n[i]
assert branch.kind in {nkOfBranch, nkElse}
var caseBuilder: SwitchCaseBuilder
p.s(cpsStmts).addSwitchCase(caseBuilder):
if branch.kind == nkOfBranch:
genCaseRange(c.p, branch, caseBuilder)
else:
p.s(cpsStmts).addCaseElse(caseBuilder)
do:
genTraverseProc(c, accessor, lastSon(branch), typ)
p.s(cpsStmts).addBreak()
lineF(p, cpsStmts, "switch ($1.$2) {$n", [accessor, disc.loc.r])
for i in 1..<n.len:
let branch = n[i]
assert branch.kind in {nkOfBranch, nkElse}
if branch.kind == nkOfBranch:
genCaseRange(c.p, branch)
else:
lineF(p, cpsStmts, "default:$n", [])
genTraverseProc(c, accessor, lastSon(branch), typ)
lineF(p, cpsStmts, "break;$n", [])
lineF(p, cpsStmts, "} $n", [])
of nkSym:
let field = n.sym
if field.typ.kind == tyVoid: return
if field.loc.snippet == "": fillObjectFields(c.p.module, typ)
if field.loc.r == nil: fillObjectFields(c.p.module, typ)
if field.loc.t == nil:
internalError(c.p.config, n.info, "genTraverseProc()")
genTraverseProc(c, dotField(accessor, field.loc.snippet), field.loc.t)
genTraverseProc(c, "$1.$2" % [accessor, field.loc.r], field.loc.t)
else: internalError(c.p.config, n.info, "genTraverseProc()")
proc parentObj(accessor: Rope; m: BModule): Rope {.inline.} =
if not m.compileToCpp:
result = dotField(accessor, "Sup")
result = "$1.Sup" % [accessor]
else:
result = accessor
@@ -77,156 +71,126 @@ proc genTraverseProc(c: TTraversalClosure, accessor: Rope, typ: PType) =
case typ.kind
of tyGenericInst, tyGenericBody, tyTypeDesc, tyAlias, tyDistinct, tyInferred,
tySink, tyOwned:
genTraverseProc(c, accessor, skipModifier(typ))
genTraverseProc(c, accessor, lastSon(typ))
of tyArray:
let arraySize = lengthOrd(c.p.config, typ.indexType)
var i: TLoc = getTemp(p, getSysType(c.p.module.g.graph, unknownLineInfo, tyInt))
var oldCode = p.s(cpsStmts)
var oldLen, newLen: int
p.s(cpsStmts).addForRangeExclusive(i.snippet, cIntValue(0), cIntValue(arraySize)):
oldLen = p.s(cpsStmts).buf.len
genTraverseProc(c, subscript(accessor, i.snippet), typ.elementType)
newLen = p.s(cpsStmts).buf.len
if oldLen == newLen:
let arraySize = lengthOrd(c.p.config, typ[0])
var i: TLoc
getTemp(p, getSysType(c.p.module.g.graph, unknownLineInfo, tyInt), i)
let oldCode = p.s(cpsStmts)
linefmt(p, cpsStmts, "for ($1 = 0; $1 < $2; $1++) {$n",
[i.r, arraySize])
let oldLen = p.s(cpsStmts).len
genTraverseProc(c, ropecg(c.p.module, "$1[$2]", [accessor, i.r]), typ[1])
if p.s(cpsStmts).len == oldLen:
# do not emit dummy long loops for faster debug builds:
p.s(cpsStmts) = oldCode
else:
lineF(p, cpsStmts, "}$n", [])
of tyObject:
var x = typ.baseClass
if x != nil: x = x.skipTypes(skipPtrs)
genTraverseProc(c, accessor.parentObj(c.p.module), x)
for i in 0..<typ.len:
var x = typ[i]
if x != nil: x = x.skipTypes(skipPtrs)
genTraverseProc(c, accessor.parentObj(c.p.module), x)
if typ.n != nil: genTraverseProc(c, accessor, typ.n, typ)
of tyTuple:
let typ = getUniqueType(typ)
for i, a in typ.ikids:
genTraverseProc(c, dotField(accessor, "Field" & $i), a)
for i in 0..<typ.len:
genTraverseProc(c, ropecg(c.p.module, "$1.Field$2", [accessor, i]), typ[i])
of tyRef:
visit(p, accessor, c.visitorFrmt)
lineCg(p, cpsStmts, visitorFrmt, [accessor, c.visitorFrmt])
of tySequence:
if optSeqDestructors notin c.p.module.config.globalOptions:
visit(p, accessor, c.visitorFrmt)
elif containsGarbageCollectedRef(typ.elementType):
lineCg(p, cpsStmts, visitorFrmt, [accessor, c.visitorFrmt])
elif containsGarbageCollectedRef(typ.lastSon):
# destructor based seqs are themselves not traced but their data is, if
# they contain a GC'ed type:
p.s(cpsStmts).addCallStmt(cgsymValue(p.module, "nimGCvisitSeq"),
cCast(CPointer, accessor),
c.visitorFrmt)
lineCg(p, cpsStmts, "#nimGCvisitSeq((void*)$1, $2);$n", [accessor, c.visitorFrmt])
#genTraverseProcSeq(c, accessor, typ)
of tyString:
if tfHasAsgn notin typ.flags:
visit(p, accessor, c.visitorFrmt)
lineCg(p, cpsStmts, visitorFrmt, [accessor, c.visitorFrmt])
of tyProc:
if typ.callConv == ccClosure:
visit(p, dotField(accessor, "ClE_0"), c.visitorFrmt)
lineCg(p, cpsStmts, visitorFrmt, [ropecg(c.p.module, "$1.ClE_0", [accessor]), c.visitorFrmt])
else:
discard
proc genTraverseProcSeq(c: TTraversalClosure, accessor: Rope, typ: PType) =
var p = c.p
assert typ.kind == tySequence
var i = getTemp(p, getSysType(c.p.module.g.graph, unknownLineInfo, tyInt))
var oldCode = p.s(cpsStmts)
var oldLen, newLen: int
var a = TLoc(snippet: accessor)
let le = lenExpr(c.p, a)
var i: TLoc
getTemp(p, getSysType(c.p.module.g.graph, unknownLineInfo, tyInt), i)
let oldCode = p.s(cpsStmts)
var a: TLoc
a.r = accessor
p.s(cpsStmts).addForRangeExclusive(i.snippet, cIntValue(0), le):
oldLen = p.s(cpsStmts).buf.len
genTraverseProc(c, subscript(dataField(c.p, accessor), i.snippet), typ.elementType)
newLen = p.s(cpsStmts).buf.len
if newLen == oldLen:
lineF(p, cpsStmts, "for ($1 = 0; $1 < $2; $1++) {$n",
[i.r, lenExpr(c.p, a)])
let oldLen = p.s(cpsStmts).len
genTraverseProc(c, "$1$3[$2]" % [accessor, i.r, dataField(c.p)], typ[0])
if p.s(cpsStmts).len == oldLen:
# do not emit dummy long loops for faster debug builds:
p.s(cpsStmts) = oldCode
else:
lineF(p, cpsStmts, "}$n", [])
proc genTraverseProc(m: BModule, origTyp: PType; sig: SigHash): Rope =
var c: TTraversalClosure
var p = newProc(nil, m)
result = "Marker_" & getTypeName(m, origTyp, sig)
let
hcrOn = m.hcrOn
typ = origTyp.skipTypes(abstractInstOwned)
markerName = if hcrOn: result & "_actual" else: result
header = "static N_NIMCALL(void, $1)(void* p, NI op)" % [markerName]
t = getTypeDesc(m, typ)
p.s(cpsLocals).addVar(kind = Local, name = "a", typ = t)
p.s(cpsInit).addAssignment("a", cCast(t, "p"))
lineF(p, cpsLocals, "$1 a;$n", [t])
lineF(p, cpsInit, "a = ($1)p;$n", [t])
var c = TTraversalClosure(p: p,
visitorFrmt: "op" # "#nimGCvisit((void*)$1, op);$n"
)
c.p = p
c.visitorFrmt = "op" # "#nimGCvisit((void*)$1, op);$n"
assert typ.kind != tyTypeDesc
if typ.kind == tySequence:
genTraverseProcSeq(c, "a".rope, typ)
else:
if skipTypes(typ.elementType, typedescInst+{tyOwned}).kind == tyArray:
if skipTypes(typ[0], typedescInst+{tyOwned}).kind == tyArray:
# C's arrays are broken beyond repair:
genTraverseProc(c, "a".rope, typ.elementType)
genTraverseProc(c, "a".rope, typ[0])
else:
genTraverseProc(c, cDeref("a"), typ.elementType)
genTraverseProc(c, "(*a)".rope, typ[0])
var headerBuilder = newBuilder("")
headerBuilder.addProcHeaderWithParams(ccNimCall, markerName, CVoid):
var paramBuilder: ProcParamBuilder
headerBuilder.addProcParams(paramBuilder):
headerBuilder.addParam(paramBuilder, name = "p", typ = CPointer)
headerBuilder.addParam(paramBuilder, name = "op", typ = NimInt)
let header = extract(headerBuilder)
let generatedProc = "$1 {$n$2$3$4}\n" %
[header, p.s(cpsLocals), p.s(cpsInit), p.s(cpsStmts)]
m.s[cfsProcHeaders].addDeclWithVisibility(StaticProc):
m.s[cfsProcHeaders].add(header)
m.s[cfsProcHeaders].finishProcHeaderAsProto()
m.s[cfsProcs].addDeclWithVisibility(StaticProc):
m.s[cfsProcs].add(header)
m.s[cfsProcs].finishProcHeaderWithBody():
m.s[cfsProcs].add(extract(p.s(cpsLocals)))
m.s[cfsProcs].add(extract(p.s(cpsInit)))
m.s[cfsProcs].add(extract(p.s(cpsStmts)))
m.s[cfsProcHeaders].addf("$1;\n", [header])
m.s[cfsProcs].add(generatedProc)
if hcrOn:
var desc = newBuilder("")
var unnamedParamBuilder: ProcParamBuilder
desc.addProcParams(unnamedParamBuilder):
desc.addUnnamedParam(unnamedParamBuilder, CPointer)
desc.addUnnamedParam(unnamedParamBuilder, NimInt)
let unnamedParams = extract(desc)
m.s[cfsProcHeaders].addProcVar(ccNimCall, result, unnamedParams, CVoid)
m.s[cfsDynLibInit].addAssignmentWithValue(result):
m.s[cfsDynLibInit].addCast(procPtrTypeUnnamed(ccNimCall, CVoid, unnamedParams)):
m.s[cfsDynLibInit].addCall("hcrRegisterProc",
getModuleDllPath(m),
'"' & result & '"',
cCast(CPointer, markerName))
m.s[cfsProcHeaders].addf("N_NIMCALL_PTR(void, $1)(void*, NI);\n", [result])
m.s[cfsDynLibInit].addf("\t$1 = (N_NIMCALL_PTR(void, )(void*, NI)) hcrRegisterProc($3, \"$1\", (void*)$2);\n",
[result, markerName, getModuleDllPath(m)])
proc genTraverseProcForGlobal(m: BModule, s: PSym; info: TLineInfo): Rope =
discard genTypeInfoV1(m, s.loc.t, info)
var c: TTraversalClosure
var p = newProc(nil, m)
var sLoc = rdLoc(s.loc)
result = getTempName(m)
if sfThread in s.flags and emulatedThreadVars(m.config):
accessThreadLocalVar(p, s)
sLoc = derefField("NimTV_", sLoc)
var c = TTraversalClosure(p: p,
visitorFrmt: cIntValue(0) # "#nimGCvisit((void*)$1, 0);$n"
)
sLoc = "NimTV_->" & sLoc
c.visitorFrmt = "0" # "#nimGCvisit((void*)$1, 0);$n"
c.p = p
let header = "static N_NIMCALL(void, $1)(void)" % [result]
genTraverseProc(c, sLoc, s.loc.t)
var headerBuilder = newBuilder("")
headerBuilder.addProcHeaderWithParams(ccNimCall, result, CVoid):
var paramBuilder: ProcParamBuilder
headerBuilder.addProcParams(paramBuilder):
# (void)
discard
let header = extract(headerBuilder)
let generatedProc = "$1 {$n$2$3$4}$n" %
[header, p.s(cpsLocals), p.s(cpsInit), p.s(cpsStmts)]
m.s[cfsProcHeaders].addDeclWithVisibility(StaticProc):
m.s[cfsProcHeaders].add(header)
m.s[cfsProcHeaders].finishProcHeaderAsProto()
m.s[cfsProcs].addDeclWithVisibility(StaticProc):
m.s[cfsProcs].add(header)
m.s[cfsProcs].finishProcHeaderWithBody():
m.s[cfsProcs].add(extract(p.s(cpsLocals)))
m.s[cfsProcs].add(extract(p.s(cpsInit)))
m.s[cfsProcs].add(extract(p.s(cpsStmts)))
m.s[cfsProcHeaders].addf("$1;$n", [header])
m.s[cfsProcs].add(generatedProc)

File diff suppressed because it is too large Load Diff

View File

@@ -10,27 +10,19 @@
# This module declares some helpers for the C code generator.
import
ast, types, msgs, wordrecg,
platform, trees, options, cgendata, mangleutils, renderer
import std/[hashes, strutils, formatfloat]
when defined(nimPreviewSlimSystem):
import std/assertions
ast, types, hashes, strutils, msgs, wordrecg,
platform, trees, options, cgendata
proc getPragmaStmt*(n: PNode, w: TSpecialWord): PNode =
case n.kind
of nkStmtList:
result = nil
for i in 0..<n.len:
result = getPragmaStmt(n[i], w)
if result != nil: break
of nkPragma:
result = nil
for i in 0..<n.len:
if whichPragma(n[i]) == w: return n[i]
else:
result = nil
else: discard
proc stmtsContainPragma*(n: PNode, w: TSpecialWord): bool =
result = getPragmaStmt(n, w) != nil
@@ -58,7 +50,7 @@ proc hashString*(conf: ConfigRef; s: string): BiggestInt =
a = a + (a shl 3)
a = a xor (a shr 11)
a = a + (a shl 15)
result = cast[Hash](uint(a))
result = cast[Hash](a)
template getUniqueType*(key: PType): PType = key
@@ -68,6 +60,53 @@ proc makeSingleLineCString*(s: string): string =
c.toCChar(result)
result.add('\"')
proc mangle*(name: string): string =
result = newStringOfCap(name.len)
var start = 0
if name[0] in Digits:
result.add("X" & name[0])
start = 1
var requiresUnderscore = false
template special(x) =
result.add x
requiresUnderscore = true
for i in start..<name.len:
let c = name[i]
case c
of 'a'..'z', '0'..'9', 'A'..'Z':
result.add(c)
of '_':
# we generate names like 'foo_9' for scope disambiguations and so
# disallow this here:
if i > 0 and i < name.len-1 and name[i+1] in Digits:
discard
else:
result.add(c)
of '$': special "dollar"
of '%': special "percent"
of '&': special "amp"
of '^': special "roof"
of '!': special "emark"
of '?': special "qmark"
of '*': special "star"
of '+': special "plus"
of '-': special "minus"
of '/': special "slash"
of '\\': special "backslash"
of '=': special "eq"
of '<': special "lt"
of '>': special "gt"
of '~': special "tilde"
of ':': special "colon"
of '.': special "dot"
of '@': special "at"
of '|': special "bar"
else:
result.add("X" & toHex(ord(c), 2))
requiresUnderscore = true
if requiresUnderscore:
result.add "_"
proc mapSetType(conf: ConfigRef; typ: PType): TCTypeKind =
case int(getSize(conf, typ))
of 1: result = ctInt8
@@ -80,10 +119,7 @@ proc ccgIntroducedPtr*(conf: ConfigRef; s: PSym, retType: PType): bool =
var pt = skipTypes(s.typ, typedescInst)
assert skResult != s.kind
#note precedence: params override types
if optByRef in s.options: return true
elif sfByCopy in s.flags: return false
elif tfByRef in pt.flags: return true
if tfByRef in pt.flags: return true
elif tfByCopy in pt.flags: return false
case pt.kind
of tyObject:
@@ -106,67 +142,3 @@ proc ccgIntroducedPtr*(conf: ConfigRef; s: PSym, retType: PType): bool =
result = not (pt.kind in {tyVar, tyArray, tyOpenArray, tyVarargs, tyRef, tyPtr, tyPointer} or
pt.kind == tySet and mapSetType(conf, pt) == ctArray)
proc encodeName*(name: string): string =
result = mangle(name)
result = $result.len & result
proc makeUnique(m: BModule; s: PSym, name: string = ""): string =
result = if name == "": s.name.s else: name
result.add "__"
result.add m.g.graph.ifaces[s.itemId.module].uniqueName
result.add "_u"
result.add $s.itemId.item
proc encodeSym*(m: BModule; s: PSym; makeUnique: bool = false; extra: string = ""): string =
#Module::Type
var name = s.name.s & extra
if makeUnique:
name = makeUnique(m, s, name)
"N" & encodeName(s.skipGenericOwner.name.s) & encodeName(name) & "E"
proc encodeType*(m: BModule; t: PType; staticLists: var string): string =
result = ""
var kindName = ($t.kind)[2..^1]
kindName[0] = toLower($kindName[0])[0]
case t.kind
of tyObject, tyEnum, tyDistinct, tyUserTypeClass, tyGenericParam:
result = encodeSym(m, t.sym)
of tyGenericInst, tyUserTypeClassInst, tyGenericBody:
result = encodeName(t[0].sym.name.s)
result.add "I"
for i in 1..<t.len - 1:
result.add encodeType(m, t[i], staticLists)
result.add "E"
of tySequence, tyOpenArray, tyArray, tyVarargs, tyTuple, tyProc, tySet, tyTypeDesc,
tyPtr, tyRef, tyVar, tyLent, tySink, tyUncheckedArray, tyOr, tyAnd, tyBuiltInTypeClass:
result =
case t.kind:
of tySequence: encodeName("seq")
else: encodeName(kindName)
result.add "I"
for i in 0..<t.len:
let s = t[i]
if s.isNil: continue
result.add encodeType(m, s, staticLists)
result.add "E"
of tyStatic:
if t.n != nil:
staticLists.add "_s" & renderTree(t.n)
else:
raiseAssert "unreachable"
of tyRange:
var val = "range_"
if t.n[0].typ.kind in {tyFloat..tyFloat128}:
val.addFloat t.n[0].floatVal
val.add "_"
val.addFloat t.n[1].floatVal
else:
val.add $t.n[0].intVal & "_" & $t.n[1].intVal
result = encodeName(val)
of tyString..tyUInt64, tyPointer, tyBool, tyChar, tyVoid, tyAnything, tyNil, tyEmpty:
result = encodeName(kindName)
of tyAlias, tyInferred, tyOwned:
result = encodeType(m, t.elementType, staticLists)
else:
assert false, "encodeType " & $t.kind

File diff suppressed because it is too large Load Diff

View File

@@ -10,14 +10,13 @@
## This module contains the data structures for the C code generation phase.
import
ast, ropes, options,
lineinfos, pathutils, modulegraphs, cbuilderbase
import std/[intsets, tables, sets]
ast, ropes, options, intsets,
tables, ndi, lineinfos, pathutils, modulegraphs, sets
type
TLabel* = Rope # for the C generator a label is just a rope
TCFileSection* = enum # the sections a generated C file consists of
cfsMergeInfo, # section containing merge information
cfsHeaders, # section for C include file headers
cfsFrameDefines # section for nim frame macros
cfsForwardTypes, # section for C forward typedefs
@@ -25,17 +24,21 @@ type
cfsSeqTypes, # section for sequence types only
# this is needed for strange type generation
# reasons
cfsFieldInfo, # section for field information
cfsTypeInfo, # section for type information (ag ABI checks)
cfsProcHeaders, # section for C procs prototypes
cfsStrData, # section for constant string literals
cfsData, # section for C constant data
cfsVars, # section for C variable declarations
cfsProcs, # section for C procs that are not inline
cfsInitProc, # section for the C init proc
cfsDatInitProc, # section for the C datInit proc
cfsTypeInit1, # section 1 for declarations of type information
cfsTypeInit2, # section 2 for init of type information
cfsTypeInit3, # section 3 for init of type information
cfsDebugInit, # section for init of debug information
cfsDynLibInit, # section for init of dynamic library binding
cfsDynLibDeinit # section for deinitialization of dynamic
# libraries
TCTypeKind* = enum # describes the type kind of a C type
ctVoid, ctChar, ctBool,
ctInt, ctInt8, ctInt16, ctInt32, ctInt64,
@@ -43,12 +46,12 @@ type
ctUInt, ctUInt8, ctUInt16, ctUInt32, ctUInt64,
ctArray, ctPtrToArray, ctStruct, ctPtr, ctNimStr, ctNimSeq, ctProc,
ctCString
TCFileSections* = array[TCFileSection, Builder] # represents a generated C file
TCFileSections* = array[TCFileSection, Rope] # represents a generated C file
TCProcSection* = enum # the sections a generated C proc consists of
cpsLocals, # section of local variables for C proc
cpsInit, # section for init of variables for C proc
cpsStmts # section of local statements for C proc
TCProcSections* = array[TCProcSection, Builder] # represents a generated C proc
TCProcSections* = array[TCProcSection, Rope] # represents a generated C proc
BModule* = ref TCGen
BProc* = ref TCProc
TBlock* = object
@@ -75,13 +78,10 @@ type
flags*: set[TCProcFlag]
lastLineInfo*: TLineInfo # to avoid generating excessive 'nimln' statements
currLineInfo*: TLineInfo # AST codegen will make this superfluous
nestedTryStmts*: seq[tuple[fin: PNode, inExcept: bool, isHidden: bool, label: Natural]]
nestedTryStmts*: seq[tuple[fin: PNode, inExcept: bool, label: Natural]]
# in how many nested try statements we are
# (the vars must be volatile then)
# `inExcept` is true when we are in the except part of a try block.
# `isHidden` is true for compiler-injected `nkHiddenTryStmt` wrappers
# (e.g. ARC's destructor try/finally around `except T as e:` bodies);
# finallyActions walks past such wrappers to reach the user's try.
# bool is true when are in the except part of a try block
finallySafePoints*: seq[Rope] # For correctly cleaning up exceptions when
# using return in finally statements
labels*: Natural # for generating unique labels in the C proc
@@ -91,7 +91,6 @@ type
options*: TOptions # options that should be used for code
# generation; this is the same as prc.options
# unless prc == nil
optionsStack*: seq[(TOptions, TNoteKinds)]
module*: BModule # used to prevent excessive parameter passing
withinLoop*: int # > 0 if we are within a loop
splitDecls*: int # > 0 if we are in some context for C++ that
@@ -100,7 +99,6 @@ type
withinTryWithExcept*: int # required for goto based exception handling
withinBlockLeaveActions*: int # complex to explain
sigConflicts*: CountTable[string]
inUncheckedAssignSection*: int
TTypeSeq* = seq[PType]
TypeCache* = Table[SigHash, Rope]
@@ -118,11 +116,11 @@ type
# computing alive data on our own.
BModuleList* = ref object of RootObj
mainModProcs*, mainModInit*, otherModsInit*, mainDatInit*: Builder
mainModProcs*, mainModInit*, otherModsInit*, mainDatInit*: Rope
mapping*: Rope # the generated mapping file (if requested)
mods*: seq[BModule] # list of all compiled modules
modules*: seq[BModule] # list of all compiled modules
modulesClosed*: seq[BModule] # list of the same compiled modules, but in the order they were closed
forwardedProcs*: seq[PSym] # procs that did not yet have a body
forwardedProcs*: seq[PSym] # proc:s that did not yet have a body
generatedHeader*: BModule
typeInfoMarker*: TypeCacheWithOwner
typeInfoMarkerV2*: TypeCacheWithOwner
@@ -130,7 +128,7 @@ type
graph*: ModuleGraph
strVersion*, seqVersion*: int # version of the string/seq implementation to use
nimtv*: Builder # Nim thread vars; the struct body
nimtv*: Rope # Nim thread vars; the struct body
nimtvDeps*: seq[PType] # type deps: every module needs whole struct
nimtvDeclared*: IntSet # so that every var/field exists only once
# in the struct
@@ -140,7 +138,6 @@ type
# unconditionally...
# nimtvDeps is VERY hard to cache because it's
# not a list of IDs nor can it be made to be one.
mangledPrcs*: HashSet[string]
TCGen = object of PPassContext # represents a C source file
s*: TCFileSections # sections of the C file
@@ -154,66 +151,54 @@ type
typeABICache*: HashSet[SigHash] # cache for ABI checks; reusing typeCache
# would be ideal but for some reason enums
# don't seem to get cached so it'd generate
# 1 ABI check per occurrence in code
# 1 ABI check per occurence in code
forwTypeCache*: TypeCache # cache for forward declarations of types
declaredThings*: IntSet # things we have declared in this .c file
declaredProtos*: IntSet # prototypes we have declared in this .c file
queue*: seq[PSym] # queue of procs to generate
alive*: IntSet # symbol IDs of alive data as computed by `dce.nim`
headerFiles*: seq[string] # needed headers to include
typeInfoMarker*: TypeCache # needed for generating type information
typeInfoMarkerV2*: TypeCache
initProc*: BProc # code for init procedure
preInitProc*: BProc # code executed before the init proc
hcrCreateTypeInfosProc*: Builder # type info globals are in here when HCR=on
hcrCreateTypeInfosProc*: Rope # type info globals are in here when HCR=on
inHcrInitGuard*: bool # We are currently within a HCR reloading guard.
hcrInitGuard*: IfBuilder
typeStack*: TTypeSeq # used for type generation
dataCache*: TNodeTable
typeNodes*, nimTypes*: int # used for type info generation
typeNodesName*, nimTypesName*: Rope # used for type info generation
labels*: Natural # for generating unique module-scope names
extensionLoaders*: array['0'..'9', Builder] # special procs for the
extensionLoaders*: array['0'..'9', Rope] # special procs for the
# OpenGL wrapper
sigConflicts*: CountTable[SigHash]
g*: BModuleList
ndi*: NdiFile
template config*(m: BModule): ConfigRef = m.g.config
template config*(p: BProc): ConfigRef = p.module.g.config
template vccAndC*(p: BProc): bool = p.module.config.cCompiler == ccVcc and p.module.config.backend == backendC
proc delayedCodegen*(m: BModule): bool {.inline.} =
useAliveDataFromDce in m.flags or m.config.globalOptions.contains(optCompress)
proc includeHeader*(this: BModule; header: string) =
if not this.headerFiles.contains header:
this.headerFiles.add header
proc s*(p: BProc, s: TCProcSection): var Builder {.inline.} =
proc s*(p: BProc, s: TCProcSection): var Rope {.inline.} =
# section in the current block
result = p.blocks[^1].sections[s]
proc procSec*(p: BProc, s: TCProcSection): var Builder {.inline.} =
proc procSec*(p: BProc, s: TCProcSection): var Rope {.inline.} =
# top level proc sections
result = p.blocks[0].sections[s]
proc initBlock*(): TBlock =
result = TBlock()
for i in low(result.sections)..high(result.sections):
result.sections[i] = newBuilder("")
proc newProc*(prc: PSym, module: BModule): BProc =
result = BProc(
prc: prc,
module: module,
optionsStack: if module.initProc != nil: module.initProc.optionsStack
else: @[],
options: if prc != nil: prc.options
else: module.config.options,
blocks: @[initBlock()],
sigConflicts: initCountTable[string]())
if optQuirky in result.options:
result.flags = {nimErrorFlagDisabled}
new(result)
result.prc = prc
result.module = module
result.options = if prc != nil: prc.options
else: module.config.options
newSeq(result.blocks, 1)
result.nestedTryStmts = @[]
result.finallySafePoints = @[]
result.sigConflicts = initCountTable[string]()
proc newModuleList*(g: ModuleGraph): BModuleList =
BModuleList(typeInfoMarker: initTable[SigHash, tuple[str: Rope, owner: int32]](),

View File

@@ -10,15 +10,8 @@
## This module implements code generation for methods.
import
options, ast, msgs, idents, renderer, types, magicsys,
sempass2, modulegraphs, lineinfos, astalgo
import std/intsets
when defined(nimPreviewSlimSystem):
import std/assertions
import std/[tables]
intsets, options, ast, msgs, idents, renderer, types, magicsys,
sempass2, strutils, modulegraphs, lineinfos
proc genConv(n: PNode, d: PType, downcast: bool; conf: ConfigRef): PNode =
var dest = skipTypes(d, abstractPtrs)
@@ -47,15 +40,12 @@ proc getDispatcher*(s: PSym): PSym =
if dispatcherPos < s.ast.len:
result = s.ast[dispatcherPos].sym
doAssert sfDispatcher in result.flags
else:
result = nil
proc methodCall*(n: PNode; conf: ConfigRef): PNode =
result = n
# replace ordinary method by dispatcher method:
let disp = getDispatcher(result[0].sym)
if disp != nil:
result[0].typ = disp.typ
result[0].sym = disp
# change the arguments to up/downcasts to fit the dispatcher's parameters:
for i in 1..<result.len:
@@ -67,25 +57,22 @@ type
MethodResult = enum No, Invalid, Yes
proc sameMethodBucket(a, b: PSym; multiMethods: bool): MethodResult =
result = No
if a.name.id != b.name.id: return
if a.typ.signatureLen != b.typ.signatureLen:
if a.typ.len != b.typ.len:
return
var i = 0
for x, y in paramTypePairs(a.typ, b.typ):
inc i
var aa = x
var bb = y
for i in 1..<a.typ.len:
var aa = a.typ[i]
var bb = b.typ[i]
while true:
aa = skipTypes(aa, {tyGenericInst, tyAlias})
bb = skipTypes(bb, {tyGenericInst, tyAlias})
if aa.kind == bb.kind and aa.kind in {tyVar, tyPtr, tyRef, tyLent, tySink}:
aa = aa.elementType
bb = bb.elementType
aa = aa.lastSon
bb = bb.lastSon
else:
break
if sameType(x, y):
if sameType(a.typ[i], b.typ[i]):
if aa.kind == tyObject and result != Invalid:
result = Yes
elif aa.kind == tyObject and bb.kind == tyObject and (i == 1 or multiMethods):
@@ -103,11 +90,10 @@ proc sameMethodBucket(a, b: PSym; multiMethods: bool): MethodResult =
return No
if result == Yes:
# check for return type:
# ignore flags of return types; # bug #22673
if not sameTypeOrNil(a.typ.returnType, b.typ.returnType, {IgnoreFlags}):
if b.typ.returnType != nil and b.typ.returnType.kind == tyUntyped:
if not sameTypeOrNil(a.typ[0], b.typ[0]):
if b.typ[0] != nil and b.typ[0].kind == tyUntyped:
# infer 'auto' from the base to make it consistent:
b.typ.setReturnType a.typ.returnType
b.typ[0] = a.typ[0]
else:
return No
@@ -122,21 +108,21 @@ proc attachDispatcher(s: PSym, dispatcher: PNode) =
s.ast[dispatcherPos] = dispatcher
proc createDispatcher(s: PSym; g: ModuleGraph; idgen: IdGenerator): PSym =
var disp = copySym(s, idgen)
incl(disp, sfDispatcher)
excl(disp, sfExported)
var disp = copySym(s, nextSymId(idgen))
incl(disp.flags, sfDispatcher)
excl(disp.flags, sfExported)
let old = disp.typ
disp.typ = copyType(disp.typ, idgen, disp.typ.owner)
disp.typ = copyType(disp.typ, nextTypeId(idgen), disp.typ.owner)
copyTypeProps(g, idgen.module, disp.typ, old)
# we can't inline the dispatcher itself (for now):
if disp.typ.callConv == ccInline: disp.typ.callConv = ccNimCall
disp.ast = copyTree(s.ast)
disp.ast[bodyPos] = newNodeI(nkEmpty, s.info)
disp.locImpl.snippet = ""
if s.typ.returnType != nil:
disp.loc.r = nil
if s.typ[0] != nil:
if disp.ast.len > resultPos:
disp.ast[resultPos].sym = copySym(s.ast[resultPos].sym, idgen)
disp.ast[resultPos].sym = copySym(s.ast[resultPos].sym, nextSymId(idgen))
else:
# We've encountered a method prototype without a filled-in
# resultPos slot. We put a placeholder in there that will
@@ -157,16 +143,25 @@ proc fixupDispatcher(meth, disp: PSym; conf: ConfigRef) =
disp.ast[resultPos].kind == nkEmpty:
disp.ast[resultPos] = copyTree(meth.ast[resultPos])
proc methodDef*(g: ModuleGraph; idgen: IdGenerator; s: PSym) =
var witness: PSym = nil
if s.typ.firstParamType.owner.getModule != s.getModule and vtables in g.config.features and not
g.config.isDefined("nimInternalNonVtablesTesting"):
localError(g.config, s.info, errGenerated, "method `" & s.name.s &
"` can be defined only in the same module with its type (" & s.typ.firstParamType.typeToString() & ")")
if sfImportc in s.flags:
localError(g.config, s.info, errGenerated, "method `" & s.name.s &
"` is not allowed to have 'importc' pragmas")
# The following code works only with lock levels, so we disable
# it when they're not available.
when declared(TLockLevel):
proc `<`(a, b: TLockLevel): bool {.borrow.}
proc `==`(a, b: TLockLevel): bool {.borrow.}
if disp.typ.lockLevel == UnspecifiedLockLevel:
disp.typ.lockLevel = meth.typ.lockLevel
elif meth.typ.lockLevel != UnspecifiedLockLevel and
meth.typ.lockLevel != disp.typ.lockLevel:
message(conf, meth.info, warnLockLevel,
"method has lock level $1, but another method has $2" %
[$meth.typ.lockLevel, $disp.typ.lockLevel])
# XXX The following code silences a duplicate warning in
# checkMethodeffects() in sempass2.nim for now.
if disp.typ.lockLevel < meth.typ.lockLevel:
disp.typ.lockLevel = meth.typ.lockLevel
proc methodDef*(g: ModuleGraph; idgen: IdGenerator; s: PSym) =
var witness: PSym
for i in 0..<g.methods.len:
let disp = g.methods[i].dispatcher
case sameMethodBucket(disp, s, multimethods = optMultiMethods in g.config.globalOptions)
@@ -185,11 +180,6 @@ proc methodDef*(g: ModuleGraph; idgen: IdGenerator; s: PSym) =
of Invalid:
if witness.isNil: witness = g.methods[i].methods[0]
# create a new dispatcher:
# stores the id and the position
if s.typ.firstParamType.skipTypes(skipPtrs).itemId notin g.bucketTable:
g.bucketTable[s.typ.firstParamType.skipTypes(skipPtrs).itemId] = 1
else:
g.bucketTable.inc(s.typ.firstParamType.skipTypes(skipPtrs).itemId)
g.methods.add((methods: @[s], dispatcher: createDispatcher(s, g, idgen)))
#echo "adding ", s.info
if witness != nil:
@@ -198,9 +188,8 @@ proc methodDef*(g: ModuleGraph; idgen: IdGenerator; s: PSym) =
elif sfBase notin s.flags:
message(g.config, s.info, warnUseBase)
proc relevantCol*(methods: seq[PSym], col: int): bool =
proc relevantCol(methods: seq[PSym], col: int): bool =
# returns true iff the position is relevant
result = false
var t = methods[0].typ[col].skipTypes(skipPtrs)
if t.kind == tyObject:
for i in 1..high(methods):
@@ -209,8 +198,7 @@ proc relevantCol*(methods: seq[PSym], col: int): bool =
return true
proc cmpSignatures(a, b: PSym, relevantCols: IntSet): int =
result = 0
for col in FirstParamAt..<a.typ.signatureLen:
for col in 1..<a.typ.len:
if contains(relevantCols, col):
var aa = skipTypes(a.typ[col], skipPtrs)
var bb = skipTypes(b.typ[col], skipPtrs)
@@ -218,7 +206,7 @@ proc cmpSignatures(a, b: PSym, relevantCols: IntSet): int =
if (d != high(int)) and d != 0:
return d
proc sortBucket*(a: var seq[PSym], relevantCols: IntSet) =
proc sortBucket(a: var seq[PSym], relevantCols: IntSet) =
# we use shellsort here; fast and simple
var n = a.len
var h = 1
@@ -237,16 +225,16 @@ proc sortBucket*(a: var seq[PSym], relevantCols: IntSet) =
a[j] = v
if h == 1: break
proc genIfDispatcher*(g: ModuleGraph; methods: seq[PSym], relevantCols: IntSet; idgen: IdGenerator): PSym =
proc genDispatcher(g: ModuleGraph; methods: seq[PSym], relevantCols: IntSet): PSym =
var base = methods[0].ast[dispatcherPos].sym
result = base
var paramLen = base.typ.signatureLen
var paramLen = base.typ.len
var nilchecks = newNodeI(nkStmtList, base.info)
var disp = newNodeI(nkIfStmt, base.info)
var ands = getSysMagic(g, unknownLineInfo, "and", mAnd)
var iss = getSysMagic(g, unknownLineInfo, "of", mOf)
let boolType = getSysType(g, unknownLineInfo, tyBool)
for col in FirstParamAt..<paramLen:
for col in 1..<paramLen:
if contains(relevantCols, col):
let param = base.typ.n[col].sym
if param.typ.skipTypes(abstractInst).kind in {tyRef, tyPtr}:
@@ -255,7 +243,7 @@ proc genIfDispatcher*(g: ModuleGraph; methods: seq[PSym], relevantCols: IntSet;
for meth in 0..high(methods):
var curr = methods[meth] # generate condition:
var cond: PNode = nil
for col in FirstParamAt..<paramLen:
for col in 1..<paramLen:
if contains(relevantCols, col):
var isn = newNodeIT(nkCall, base.info, boolType)
isn.add newSymNode(iss)
@@ -270,7 +258,7 @@ proc genIfDispatcher*(g: ModuleGraph; methods: seq[PSym], relevantCols: IntSet;
cond = a
else:
cond = isn
let retTyp = base.typ.returnType
let retTyp = base.typ[0]
let call = newNodeIT(nkCall, base.info, retTyp)
call.add newSymNode(curr)
for col in 1..<paramLen:
@@ -296,13 +284,14 @@ proc genIfDispatcher*(g: ModuleGraph; methods: seq[PSym], relevantCols: IntSet;
nilchecks.flags.incl nfTransf # should not be further transformed
result.ast[bodyPos] = nilchecks
proc generateIfMethodDispatchers*(g: ModuleGraph, idgen: IdGenerator) =
proc generateMethodDispatchers*(g: ModuleGraph): PNode =
result = newNode(nkStmtList)
for bucket in 0..<g.methods.len:
var relevantCols = initIntSet()
for col in FirstParamAt..<g.methods[bucket].methods[0].typ.signatureLen:
for col in 1..<g.methods[bucket].methods[0].typ.len:
if relevantCol(g.methods[bucket].methods, col): incl(relevantCols, col)
if optMultiMethods notin g.config.globalOptions:
# if multi-methods are not enabled, we are interested only in the first field
break
sortBucket(g.methods[bucket].methods, relevantCols)
g.addDispatchers genIfDispatcher(g, g.methods[bucket].methods, relevantCols, idgen)
result.add newSymNode(genDispatcher(g, g.methods[bucket].methods, relevantCols))

File diff suppressed because it is too large Load Diff

View File

@@ -7,13 +7,11 @@
# distribution, for details about the copyright.
#
## Helpers for binaries that use compiler passes, e.g.: nim, nimsuggest
## Helpers for binaries that use compiler passes, e.g.: nim, nimsuggest, nimfix
import
options, idents, nimconf, extccomp, commands, msgs,
lineinfos, modulegraphs, condsyms, pathutils
import std/[os, parseopt]
lineinfos, modulegraphs, condsyms, os, pathutils, parseopt
proc prependCurDir*(f: AbsoluteFile): AbsoluteFile =
when defined(unix):
@@ -57,11 +55,6 @@ proc loadConfigsAndProcessCmdLine*(self: NimProg, cache: IdentCache; conf: Confi
if conf.cmd == cmdNimscript:
incl(conf.globalOptions, optWasNimscript)
loadConfigs(DefaultConfig, cache, conf, graph.idgen) # load all config files
# restores `conf.notes` after loading config files
# because it has overwrites the notes when compiling the system module which
# is a foreign module compared to the project
if conf.cmd in cmdBackends:
conf.notes = conf.mainPackageNotes
if not self.suggestMode:
let scriptFile = conf.projectFull.changeFileExt("nims")
@@ -71,8 +64,7 @@ proc loadConfigsAndProcessCmdLine*(self: NimProg, cache: IdentCache; conf: Confi
if conf.cmd == cmdNimscript: return false
# now process command line arguments again, because some options in the
# command line can overwrite the config file's settings
if conf.backend != backendJs: # bug #19059
extccomp.initVars(conf)
extccomp.initVars(conf)
self.processCmdLine(passCmd2, "", conf)
if conf.cmd == cmdNone:
rawMessage(conf, errGenerated, "command missing")

View File

@@ -24,18 +24,13 @@ bootSwitch(usedMarkAndSweep, defined(gcmarkandsweep), "--gc:markAndSweep")
bootSwitch(usedGoGC, defined(gogc), "--gc:go")
bootSwitch(usedNoGC, defined(nogc), "--gc:none")
import std/[setutils, os, strutils, parseutils, parseopt, sequtils, strtabs, enumutils]
import std/[setutils, os, strutils, parseutils, parseopt, sequtils, strtabs]
import
msgs, options, nversion, condsyms, extccomp, platform,
wordrecg, nimblecmd, lineinfos, pathutils
import std/pathnorm
wordrecg, nimblecmd, lineinfos, pathutils, pathnorm
from ast import setUseIc, eqTypeFlags, tfGcSafe, tfNoSideEffect
when defined(nimPreviewSlimSystem):
import std/assertions
# but some have deps to imported modules. Yay.
bootSwitch(usedTinyC, hasTinyCBackend, "-d:tinyc")
bootSwitch(usedFFI, hasFFI, "-d:nimHasLibFFI")
@@ -118,7 +113,7 @@ const
errInvalidCmdLineOption = "invalid command line option: '$1'"
errOnOrOffExpectedButXFound = "'on' or 'off' expected, but '$1' found"
errOnOffOrListExpectedButXFound = "'on', 'off' or 'list' expected, but '$1' found"
errOffHintsError = "'off', 'hint', 'warning', 'error' or 'usages' expected, but '$1' found"
errOffHintsError = "'off', 'hint' or 'error' expected, but '$1' found"
proc invalidCmdLineOption(conf: ConfigRef; pass: TCmdLinePass, switch: string, info: TLineInfo) =
if switch == " ": localError(conf, info, errInvalidCmdLineOption % "-")
@@ -186,7 +181,7 @@ proc processSpecificNote*(arg: string, state: TSpecialWord, pass: TCmdLinePass,
info: TLineInfo; orig: string; conf: ConfigRef) =
var id = "" # arg = key or [key] or key:val or [key]:val; with val=on|off
var i = 0
var notes: set[TMsgKind] = {}
var notes: set[TMsgKind]
var isBracket = false
if i < arg.len and arg[i] == '[':
isBracket = true
@@ -203,16 +198,11 @@ proc processSpecificNote*(arg: string, state: TSpecialWord, pass: TCmdLinePass,
else: invalidCmdLineOption(conf, pass, orig, info)
let isSomeHint = state in {wHint, wHintAsError}
let isSomeWarning = state in {wWarning, wWarningAsError}
template findNote(noteMin, noteMax, name) =
# unfortunately, hintUser and warningUser clash, otherwise implementation would simplify a bit
let x = findStr(noteMin, noteMax, id, errUnknown)
if x != errUnknown: notes = {TNoteKind(x)}
else:
if isSomeHint or isSomeWarning:
message(conf, info, warnUnknownNotes, "unknown $#: $#" % [name, id])
else:
localError(conf, info, "unknown $#: $#" % [name, id])
else: localError(conf, info, "unknown $#: $#" % [name, id])
case id.normalize
of "all": # other note groups would be easy to support via additional cases
notes = if isSomeHint: {hintMin..hintMax} else: {warnMin..warnMax}
@@ -245,12 +235,10 @@ proc processCompile(conf: ConfigRef; filename: string) =
extccomp.addExternalFileToCompile(conf, found)
const
errNoneBoehmRefcExpectedButXFound = "'arc', 'orc', 'yrc', 'atomicArc', 'markAndSweep', 'boehm', 'go', 'none', 'regions', or 'refc' expected, but '$1' found"
errNoneBoehmRefcExpectedButXFound = "'arc', 'orc', 'markAndSweep', 'boehm', 'go', 'none', 'regions', or 'refc' expected, but '$1' found"
errNoneSpeedOrSizeExpectedButXFound = "'none', 'speed' or 'size' expected, but '$1' found"
errGuiConsoleOrLibExpectedButXFound = "'gui', 'console', 'lib' or 'staticlib' expected, but '$1' found"
errInvalidExceptionSystem = "'goto', 'setjmp', 'cpp' or 'quirky' expected, but '$1' found"
errInvalidFeatureButXFound = Feature.toSeq.map(proc(val:Feature): string = "'$1'" % $val).join(", ") & " expected, but '$1' found"
errDefaultOrSsoExpectedButXFound = "'default' or 'sso' expected, but '$1' found"
errGuiConsoleOrLibExpectedButXFound = "'gui', 'console' or 'lib' expected, but '$1' found"
errInvalidExceptionSystem = "'goto', 'setjump', 'cpp' or 'quirky' expected, but '$1' found"
template warningOptionNoop(switch: string) =
warningDeprecated(conf, info, "'$#' is deprecated, now a noop" % switch)
@@ -267,23 +255,18 @@ proc testCompileOptionArg*(conf: ConfigRef; switch, arg: string, info: TLineInfo
of "markandsweep": result = conf.selectedGC == gcMarkAndSweep
of "destructors", "arc": result = conf.selectedGC == gcArc
of "orc": result = conf.selectedGC == gcOrc
of "yrc": result = conf.selectedGC == gcYrc
of "hooks": result = conf.selectedGC == gcHooks
of "go": result = conf.selectedGC == gcGo
of "none": result = conf.selectedGC == gcNone
of "stack", "regions": result = conf.selectedGC == gcRegions
of "atomicarc": result = conf.selectedGC == gcAtomicArc
else:
result = false
localError(conf, info, errNoneBoehmRefcExpectedButXFound % arg)
of "v2", "generational": warningOptionNoop(arg)
else: localError(conf, info, errNoneBoehmRefcExpectedButXFound % arg)
of "opt":
case arg.normalize
of "speed": result = contains(conf.options, optOptimizeSpeed)
of "size": result = contains(conf.options, optOptimizeSize)
of "none": result = conf.options * {optOptimizeSpeed, optOptimizeSize} == {}
else:
result = false
localError(conf, info, errNoneSpeedOrSizeExpectedButXFound % arg)
else: localError(conf, info, errNoneSpeedOrSizeExpectedButXFound % arg)
of "verbosity": result = $conf.verbosity == arg
of "app":
case arg.normalize
@@ -293,9 +276,7 @@ proc testCompileOptionArg*(conf: ConfigRef; switch, arg: string, info: TLineInfo
not contains(conf.globalOptions, optGenGuiApp)
of "staticlib": result = contains(conf.globalOptions, optGenStaticLib) and
not contains(conf.globalOptions, optGenGuiApp)
else:
result = false
localError(conf, info, errGuiConsoleOrLibExpectedButXFound % arg)
else: localError(conf, info, errGuiConsoleOrLibExpectedButXFound % arg)
of "dynliboverride":
result = isDynlibOverride(conf, arg)
of "exceptions":
@@ -304,25 +285,8 @@ proc testCompileOptionArg*(conf: ConfigRef; switch, arg: string, info: TLineInfo
of "setjmp": result = conf.exc == excSetjmp
of "quirky": result = conf.exc == excQuirky
of "goto": result = conf.exc == excGoto
else:
result = false
localError(conf, info, errInvalidExceptionSystem % arg)
of "strings":
case arg.normalize
of "default": result = conf.selectedStrings == stringDefault
of "sso": result = conf.selectedStrings == stringSso
else:
result = false
localError(conf, info, errDefaultOrSsoExpectedButXFound % arg)
of "experimental":
try:
result = conf.features.contains parseEnum[Feature](arg)
except ValueError:
result = false
localError(conf, info, errInvalidFeatureButXFound % arg)
else:
result = false
invalidCmdLineOption(conf, passCmd1, switch, info)
else: localError(conf, info, errInvalidExceptionSystem % arg)
else: invalidCmdLineOption(conf, passCmd1, switch, info)
proc testCompileOption*(conf: ConfigRef; switch: string, info: TLineInfo): bool =
case switch.normalize
@@ -360,7 +324,6 @@ proc testCompileOption*(conf: ConfigRef; switch: string, info: TLineInfo): bool
of "run", "r": result = contains(conf.globalOptions, optRun)
of "symbolfiles": result = conf.symbolFiles != disabledSf
of "genscript": result = contains(conf.globalOptions, optGenScript)
of "gencdeps": result = contains(conf.globalOptions, optGenCDeps)
of "threads": result = contains(conf.globalOptions, optThreads)
of "tlsemulation": result = contains(conf.globalOptions, optTlsEmulation)
of "implicitstatic": result = contains(conf.options, optImplicitStatic)
@@ -368,15 +331,8 @@ proc testCompileOption*(conf: ConfigRef; switch: string, info: TLineInfo): bool
if switch.normalize == "patterns": deprecatedAlias(switch, "trmacros")
result = contains(conf.options, optTrMacros)
of "excessivestacktrace": result = contains(conf.globalOptions, optExcessiveStackTrace)
of "nilseqs", "nilchecks", "taintmode":
warningOptionNoop(switch)
result = false
of "panics": result = contains(conf.globalOptions, optPanics)
of "jsbigint64": result = contains(conf.globalOptions, optJsBigInt64)
of "mangle": result = contains(conf.globalOptions, optItaniumMangle)
else:
result = false
invalidCmdLineOption(conf, passCmd1, switch, info)
of "nilseqs", "nilchecks", "taintmode": warningOptionNoop(switch)
else: invalidCmdLineOption(conf, passCmd1, switch, info)
proc processPath(conf: ConfigRef; path: string, info: TLineInfo,
notRelativeToProj = false): AbsoluteDir =
@@ -418,8 +374,7 @@ proc makeAbsolute(s: string): AbsoluteFile =
proc setTrackingInfo(conf: ConfigRef; dirty, file, line, column: string,
info: TLineInfo) =
## set tracking info, common code for track, trackDirty, & ideTrack
var ln: int = 0
var col: int = 0
var ln, col: int
if parseUtils.parseInt(line, ln) <= 0:
localError(conf, info, errInvalidNumber % line)
if parseUtils.parseInt(column, col) <= 0:
@@ -469,7 +424,7 @@ template handleStdinOrCmdInput =
conf.outDir = getNimcacheDir(conf)
proc handleStdinInput*(conf: ConfigRef) =
conf.projectName = conf.stdinFile.string
conf.projectName = "stdinfile"
conf.projectIsStdin = true
handleStdinOrCmdInput()
@@ -483,9 +438,7 @@ proc parseCommand*(command: string): Command =
of "cpp", "compiletocpp": cmdCompileToCpp
of "objc", "compiletooc": cmdCompileToOC
of "js", "compiletojs": cmdCompileToJS
of "nif": cmdCompileToNif
of "r": cmdCrun
of "m": cmdM
of "run": cmdTcc
of "check": cmdCheck
of "e": cmdNimscript
@@ -493,8 +446,6 @@ proc parseCommand*(command: string): Command =
of "doc2", "doc": cmdDoc
of "doc2tex": cmdDoc2tex
of "rst2html": cmdRst2html
of "md2tex": cmdMd2tex
of "md2html": cmdMd2html
of "rst2tex": cmdRst2tex
of "jsondoc0": cmdJsondoc0
of "jsondoc2", "jsondoc": cmdJsondoc
@@ -503,11 +454,10 @@ proc parseCommand*(command: string): Command =
of "gendepend": cmdGendepend
of "dump": cmdDump
of "parse": cmdParse
of "rod": cmdRod
of "secret": cmdInteractive
of "nop", "help": cmdNop
of "jsonscript": cmdJsonscript
of "nifc": cmdNifC # generate C from NIF files
of "ic": cmdIc # generate .build.nif for nifmake
else: cmdUnknown
proc setCmd*(conf: ConfigRef, cmd: Command) =
@@ -519,12 +469,6 @@ proc setCmd*(conf: ConfigRef, cmd: Command) =
of cmdCompileToCpp: conf.backend = backendCpp
of cmdCompileToOC: conf.backend = backendObjc
of cmdCompileToJS: conf.backend = backendJs
of cmdCompileToNif: conf.backend = backendNif
of cmdNifC:
conf.backend = backendC # NIF to C compilation
of cmdM:
# cmdM requires optCompress for proper IC handling (include files, etc.)
conf.globalOptions.incl optCompress
else: discard
proc setCommandEarly*(conf: ConfigRef, command: string) =
@@ -533,8 +477,7 @@ proc setCommandEarly*(conf: ConfigRef, command: string) =
# command early customizations
# must be handled here to honor subsequent `--hint:x:on|off`
case conf.cmd
of cmdRst2html, cmdRst2tex, cmdMd2html, cmdMd2tex:
# xxx see whether to add others: cmdGendepend, etc.
of cmdRst2html, cmdRst2tex: # xxx see whether to add others: cmdGendepend, etc.
conf.foreignPackageNotes = {hintSuccessX}
else:
conf.foreignPackageNotes = foreignPackageNotesDefault
@@ -554,105 +497,10 @@ proc specialDefine(conf: ConfigRef, key: string; pass: TCmdLinePass) =
optOverflowCheck, optAssert, optStackTrace, optLineTrace, optLineDir}
conf.globalOptions.excl {optCDebug}
proc initOrcDefines*(conf: ConfigRef) =
conf.selectedGC = gcOrc
defineSymbol(conf.symbols, "gcorc")
defineSymbol(conf.symbols, "gcdestructors")
incl conf.globalOptions, optSeqDestructors
incl conf.globalOptions, optTinyRtti
defineSymbol(conf.symbols, "nimSeqsV2")
defineSymbol(conf.symbols, "nimV2")
if conf.exc == excNone and conf.backend != backendCpp:
conf.exc = excGoto
proc registerArcOrc(pass: TCmdLinePass, conf: ConfigRef) =
defineSymbol(conf.symbols, "gcdestructors")
incl conf.globalOptions, optSeqDestructors
incl conf.globalOptions, optTinyRtti
if pass in {passCmd2, passPP}:
defineSymbol(conf.symbols, "nimSeqsV2")
defineSymbol(conf.symbols, "nimV2")
if conf.exc == excNone and conf.backend != backendCpp:
conf.exc = excGoto
proc unregisterArcOrc*(conf: ConfigRef) =
undefSymbol(conf.symbols, "gcdestructors")
undefSymbol(conf.symbols, "gcarc")
undefSymbol(conf.symbols, "gcorc")
undefSymbol(conf.symbols, "gcyrc")
undefSymbol(conf.symbols, "gcatomicarc")
undefSymbol(conf.symbols, "nimSeqsV2")
undefSymbol(conf.symbols, "nimV2")
excl conf.globalOptions, optSeqDestructors
excl conf.globalOptions, optTinyRtti
proc processMemoryManagementOption(switch, arg: string, pass: TCmdLinePass,
info: TLineInfo; conf: ConfigRef) =
if conf.backend == backendJs: return # for: bug #16033
expectArg(conf, switch, arg, pass, info)
if pass in {passCmd2, passPP}:
case arg.normalize
of "boehm":
unregisterArcOrc(conf)
conf.selectedGC = gcBoehm
defineSymbol(conf.symbols, "boehmgc")
incl conf.globalOptions, optTlsEmulation # Boehm GC doesn't scan the real TLS
of "refc":
unregisterArcOrc(conf)
defineSymbol(conf.symbols, "gcrefc")
conf.selectedGC = gcRefc
of "markandsweep":
unregisterArcOrc(conf)
conf.selectedGC = gcMarkAndSweep
defineSymbol(conf.symbols, "gcmarkandsweep")
of "destructors", "arc":
conf.selectedGC = gcArc
defineSymbol(conf.symbols, "gcarc")
registerArcOrc(pass, conf)
of "orc":
conf.selectedGC = gcOrc
defineSymbol(conf.symbols, "gcorc")
registerArcOrc(pass, conf)
of "yrc":
conf.selectedGC = gcYrc
defineSymbol(conf.symbols, "gcyrc")
registerArcOrc(pass, conf)
of "atomicarc":
conf.selectedGC = gcAtomicArc
defineSymbol(conf.symbols, "gcatomicarc")
registerArcOrc(pass, conf)
of "hooks":
conf.selectedGC = gcHooks
defineSymbol(conf.symbols, "gchooks")
incl conf.globalOptions, optSeqDestructors
processOnOffSwitchG(conf, {optSeqDestructors}, arg, pass, info)
if pass in {passCmd2, passPP}:
defineSymbol(conf.symbols, "nimSeqsV2")
of "go":
unregisterArcOrc(conf)
conf.selectedGC = gcGo
defineSymbol(conf.symbols, "gogc")
of "none":
unregisterArcOrc(conf)
conf.selectedGC = gcNone
defineSymbol(conf.symbols, "nogc")
of "stack", "regions":
unregisterArcOrc(conf)
conf.selectedGC = gcRegions
defineSymbol(conf.symbols, "gcregions")
else: localError(conf, info, errNoneBoehmRefcExpectedButXFound % arg)
proc pathRelativeToConfig(arg: string, pass: TCmdLinePass, conf: ConfigRef): string =
if pass == passPP and not isAbsolute(arg):
assert isAbsolute(conf.currentConfigDir), "something is wrong with currentConfigDir"
result = conf.currentConfigDir / arg
else:
result = arg
proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
conf: ConfigRef) =
var key = ""
var val = ""
var
key, val: string
case switch.normalize
of "eval":
expectArg(conf, switch, arg, pass, info)
@@ -667,17 +515,17 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
for path in nimbleSubs(conf, arg):
addPath(conf, if pass == passPP: processCfgPath(conf, path, info)
else: processPath(conf, path, info), info)
of "nimblepath":
of "nimblepath", "babelpath":
if switch.normalize == "babelpath": deprecatedAlias(switch, "nimblepath")
if pass in {passCmd2, passPP} and optNoNimblePath notin conf.globalOptions:
expectArg(conf, switch, arg, pass, info)
var path = processPath(conf, arg, info, notRelativeToProj=true)
let nimbleDir = AbsoluteDir getEnv("NIMBLE_DIR")
if not nimbleDir.isEmpty and pass == passPP:
path = nimbleDir / RelativeDir"pkgs2"
nimblePath(conf, path, info)
path = nimbleDir / RelativeDir"pkgs"
nimblePath(conf, path, info)
of "nonimblepath":
of "nonimblepath", "nobabelpath":
if switch.normalize == "nobabelpath": deprecatedAlias(switch, "nonimblepath")
expectNoArg(conf, switch, arg, pass, info)
disableNimblePath(conf)
of "clearnimblepath":
@@ -694,7 +542,7 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
# refs bug #18674, otherwise `--os:windows` messes up with `--nimcache` set
# in config nims files, e.g. via: `import os; switch("nimcache", "/tmp/somedir")`
if conf.target.targetOS == osWindows and DirSep == '/': arg = arg.replace('\\', '/')
conf.nimcacheDir = processPath(conf, pathRelativeToConfig(arg, pass, conf), info, notRelativeToProj=true)
conf.nimcacheDir = processPath(conf, arg, info, notRelativeToProj=true)
of "out", "o":
expectArg(conf, switch, arg, pass, info)
let f = splitFile(processPath(conf, arg, info, notRelativeToProj=true).string)
@@ -713,11 +561,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
of "backend", "b":
let backend = parseEnum(arg.normalize, TBackend.default)
if backend == TBackend.default: localError(conf, info, "invalid backend: '$1'" % arg)
if backend == backendJs: # bug #21209
conf.globalOptions.excl {optThreadAnalysis, optThreads}
if optRun in conf.globalOptions:
# for now, -r uses nodejs, so define nodejs
defineSymbol(conf.symbols, "nodejs")
conf.backend = backend
of "doccmd": conf.docCmd = arg
of "define", "d":
@@ -753,22 +596,60 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
processOnOffSwitchG(conf, {optForceFullMake}, arg, pass, info)
of "project":
processOnOffSwitchG(conf, {optWholeProject, optGenIndex}, arg, pass, info)
of "gc":
warningDeprecated(conf, info, "`gc:option` is deprecated; use `mm:option` instead")
processMemoryManagementOption(switch, arg, pass, info, conf)
of "mm":
processMemoryManagementOption(switch, arg, pass, info, conf)
of "strings":
of "gc", "mm":
if conf.backend == backendJs: return # for: bug #16033
expectArg(conf, switch, arg, pass, info)
if pass in {passCmd2, passPP}:
case arg.normalize
of "default":
conf.selectedStrings = stringDefault
of "sso":
conf.selectedStrings = stringSso
defineSymbol(conf.symbols, "nimsso")
else:
localError(conf, info, errDefaultOrSsoExpectedButXFound % arg)
of "boehm":
conf.selectedGC = gcBoehm
defineSymbol(conf.symbols, "boehmgc")
incl conf.globalOptions, optTlsEmulation # Boehm GC doesn't scan the real TLS
of "refc":
conf.selectedGC = gcRefc
of "markandsweep":
conf.selectedGC = gcMarkAndSweep
defineSymbol(conf.symbols, "gcmarkandsweep")
of "destructors", "arc":
conf.selectedGC = gcArc
defineSymbol(conf.symbols, "gcdestructors")
defineSymbol(conf.symbols, "gcarc")
incl conf.globalOptions, optSeqDestructors
incl conf.globalOptions, optTinyRtti
if pass in {passCmd2, passPP}:
defineSymbol(conf.symbols, "nimSeqsV2")
defineSymbol(conf.symbols, "nimV2")
if conf.exc == excNone and conf.backend != backendCpp:
conf.exc = excGoto
of "orc":
conf.selectedGC = gcOrc
defineSymbol(conf.symbols, "gcdestructors")
defineSymbol(conf.symbols, "gcorc")
incl conf.globalOptions, optSeqDestructors
incl conf.globalOptions, optTinyRtti
if pass in {passCmd2, passPP}:
defineSymbol(conf.symbols, "nimSeqsV2")
defineSymbol(conf.symbols, "nimV2")
if conf.exc == excNone and conf.backend != backendCpp:
conf.exc = excGoto
of "hooks":
conf.selectedGC = gcHooks
defineSymbol(conf.symbols, "gchooks")
incl conf.globalOptions, optSeqDestructors
processOnOffSwitchG(conf, {optSeqDestructors}, arg, pass, info)
if pass in {passCmd2, passPP}:
defineSymbol(conf.symbols, "nimSeqsV2")
of "go":
conf.selectedGC = gcGo
defineSymbol(conf.symbols, "gogc")
of "none":
conf.selectedGC = gcNone
defineSymbol(conf.symbols, "nogc")
of "stack", "regions":
conf.selectedGC = gcRegions
defineSymbol(conf.symbols, "gcregions")
of "v2": warningOptionNoop(arg)
else: localError(conf, info, errNoneBoehmRefcExpectedButXFound % arg)
of "warnings", "w":
if processOnOffSwitchOrList(conf, {optWarns}, arg, pass, info): listWarnings(conf)
of "warning": processSpecificNote(arg, wWarning, pass, info, switch, conf)
@@ -794,16 +675,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
conf.globalOptions.excl optCDebug
else:
localError(conf, info, "expected native|gdb|on|off but found " & arg)
of "mangle":
case arg.normalize
of "nim":
conf.globalOptions.excl optItaniumMangle
of "cpp":
conf.globalOptions.incl optItaniumMangle
else:
localError(conf, info, "expected nim|cpp but found " & arg)
of "compress":
conf.globalOptions.incl optCompress
of "g": # alias for --debugger:native
conf.globalOptions.incl optCDebug
conf.options.incl optLineDir
@@ -846,13 +717,10 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
of "linedir": processOnOffSwitch(conf, {optLineDir}, arg, pass, info)
of "assertions", "a": processOnOffSwitch(conf, {optAssert}, arg, pass, info)
of "threads":
if conf.backend == backendJs or conf.cmd == cmdNimscript: discard
if conf.backend == backendJs: discard
else: processOnOffSwitchG(conf, {optThreads}, arg, pass, info)
#if optThreads in conf.globalOptions: conf.setNote(warnGcUnsafe)
of "tlsemulation":
processOnOffSwitchG(conf, {optTlsEmulation}, arg, pass, info)
if optTlsEmulation in conf.globalOptions:
conf.legacyFeatures.incl emitGenerics
of "tlsemulation": processOnOffSwitchG(conf, {optTlsEmulation}, arg, pass, info)
of "implicitstatic":
processOnOffSwitch(conf, {optImplicitStatic}, arg, pass, info)
of "patterns", "trmacros":
@@ -889,7 +757,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
defineSymbol(conf.symbols, "dll")
of "staticlib":
incl(conf.globalOptions, optGenStaticLib)
incl(conf.globalOptions, optNoMain)
excl(conf.globalOptions, optGenGuiApp)
defineSymbol(conf.symbols, "library")
defineSymbol(conf.symbols, "staticlib")
@@ -909,36 +776,20 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
of "clib":
expectArg(conf, switch, arg, pass, info)
if pass in {passCmd2, passPP}:
conf.cLinkedLibs.add arg
conf.cLinkedLibs.add processPath(conf, arg, info).string
of "header":
if conf != nil: conf.headerFile = arg
incl(conf.globalOptions, optGenIndex)
of "nimbasepattern":
if conf != nil: conf.nimbasePattern = arg
of "index":
case arg.normalize
of "", "on": conf.globalOptions.incl {optGenIndex}
of "only": conf.globalOptions.incl {optGenIndexOnly, optGenIndex}
of "off": conf.globalOptions.excl {optGenIndex, optGenIndexOnly}
else: localError(conf, info, errOnOrOffExpectedButXFound % arg)
of "noimportdoc":
processOnOffSwitchG(conf, {optNoImportdoc}, arg, pass, info)
processOnOffSwitchG(conf, {optGenIndex}, arg, pass, info)
of "import":
expectArg(conf, switch, arg, pass, info)
if pass in {passCmd2, passPP}:
let m = findModule(conf, arg, toFullPath(conf, info)).string
if m.len == 0:
localError(conf, info, "Cannot resolve filename: " & arg)
else:
conf.implicitImports.add(if arg.startsWith(stdPrefix): arg else: m)
conf.implicitImports.add findModule(conf, arg, toFullPath(conf, info)).string
of "include":
expectArg(conf, switch, arg, pass, info)
if pass in {passCmd2, passPP}:
let m = findModule(conf, arg, toFullPath(conf, info)).string
if m.len == 0:
localError(conf, info, "Cannot resolve filename: " & arg)
else:
conf.implicitIncludes.add m
conf.implicitIncludes.add findModule(conf, arg, toFullPath(conf, info)).string
of "listcmd":
processOnOffSwitchG(conf, {optListCmd}, arg, pass, info)
of "asm":
@@ -963,38 +814,21 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
setTarget(conf.target, conf.target.targetOS, cpu)
of "run", "r":
processOnOffSwitchG(conf, {optRun}, arg, pass, info)
if conf.backend == backendJs:
# for now, -r uses nodejs, so define nodejs
defineSymbol(conf.symbols, "nodejs")
of "maxloopiterationsvm":
expectArg(conf, switch, arg, pass, info)
var value: int = 10_000_000
discard parseSaturatedNatural(arg, value)
if value <= 0: localError(conf, info, "maxLoopIterationsVM must be a positive integer greater than zero")
conf.maxLoopIterationsVM = value
of "maxcalldepthvm":
expectArg(conf, switch, arg, pass, info)
var value: int = 2_000
discard parseSaturatedNatural(arg, value)
if value <= 0: localError(conf, info, "maxCallDepthVM must be a positive integer greater than zero")
conf.maxCallDepthVM = value
conf.maxLoopIterationsVM = parseInt(arg)
of "errormax":
expectArg(conf, switch, arg, pass, info)
# Note: `nim check` (etc) can overwrite this.
# `0` is meaningless, give it a useful meaning as in clang's -ferror-limit
# If user doesn't set this flag and the code doesn't either, it'd
# have the same effect as errorMax = 1
var value: int = 0
discard parseSaturatedNatural(arg, value)
conf.errorMax = if value == 0: high(int) else: value
of "stdinfile":
expectArg(conf, switch, arg, pass, info)
conf.stdinFile = if os.isAbsolute(arg): AbsoluteFile(arg)
else: AbsoluteFile(getCurrentDir() / arg)
let ret = parseInt(arg)
conf.errorMax = if ret == 0: high(int) else: ret
of "verbosity":
expectArg(conf, switch, arg, pass, info)
let verbosity = parseInt(arg)
if verbosity notin 0..3:
if verbosity notin {0..3}:
localError(conf, info, "invalid verbosity level: '$1'" % arg)
conf.verbosity = verbosity
var verb = NotesVerbosity[conf.verbosity]
@@ -1004,9 +838,7 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
conf.mainPackageNotes = conf.notes
of "parallelbuild":
expectArg(conf, switch, arg, pass, info)
var value: int = 0
discard parseSaturatedNatural(arg, value)
conf.numberOfProcessors = value
conf.numberOfProcessors = parseInt(arg)
of "version", "v":
expectNoArg(conf, switch, arg, pass, info)
writeVersionInfo(conf, pass)
@@ -1024,8 +856,7 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
# xxx maybe also ic, since not in help?
if pass in {passCmd2, passPP}:
case arg.normalize
of "on": conf.ic = true
of "legacy": conf.symbolFiles = v2Sf
of "on": conf.symbolFiles = v2Sf
of "off": conf.symbolFiles = disabledSf
of "writeonly": conf.symbolFiles = writeOnlySf
of "readonly": conf.symbolFiles = readOnlySf
@@ -1045,8 +876,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
if switch.normalize == "gendeps": deprecatedAlias(switch, "genscript")
processOnOffSwitchG(conf, {optGenScript}, arg, pass, info)
processOnOffSwitchG(conf, {optCompileOnly}, arg, pass, info)
of "gencdeps":
processOnOffSwitchG(conf, {optGenCDeps}, arg, pass, info)
of "colors": processOnOffSwitchG(conf, {optUseColors}, arg, pass, info)
of "lib":
expectArg(conf, switch, arg, pass, info)
@@ -1056,9 +885,8 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
splitSwitch(conf, arg, key, val, pass, info)
os.putEnv(key, val)
of "cc":
if conf.backend != backendJs: # bug #19330
expectArg(conf, switch, arg, pass, info)
setCC(conf, arg, info)
expectArg(conf, switch, arg, pass, info)
setCC(conf, arg, info)
of "track":
expectArg(conf, switch, arg, pass, info)
track(conf, arg, info)
@@ -1130,12 +958,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
expectNoArg(conf, switch, arg, pass, info)
conf.exc = low(ExceptionSystem)
defineSymbol(conf.symbols, "noCppExceptions")
of "shownonexports":
expectNoArg(conf, switch, arg, pass, info)
showNonExportedFields(conf)
of "raw":
expectNoArg(conf, switch, arg, pass, info)
docRawOutput(conf)
of "exceptions":
case arg.normalize
of "cpp": conf.exc = excCpp
@@ -1167,10 +989,9 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
defineSymbol(conf.symbols, "nimSeqsV2")
of "stylecheck":
case arg.normalize
of "off": conf.globalOptions = conf.globalOptions - {optStyleHint, optStyleError, optStyleWarning}
of "hint": conf.globalOptions = conf.globalOptions + {optStyleHint} - {optStyleError, optStyleWarning}
of "warning": conf.globalOptions = conf.globalOptions + {optStyleWarning} - {optStyleHint, optStyleError}
of "error": conf.globalOptions = conf.globalOptions + {optStyleError} - {optStyleHint, optStyleWarning}
of "off": conf.globalOptions = conf.globalOptions - {optStyleHint, optStyleError}
of "hint": conf.globalOptions = conf.globalOptions + {optStyleHint} - {optStyleError}
of "error": conf.globalOptions = conf.globalOptions + {optStyleError}
of "usages": conf.globalOptions.incl optStyleUsages
else: localError(conf, info, errOffHintsError % arg)
of "showallmismatches":
@@ -1191,6 +1012,25 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
of "expandarc":
expectArg(conf, switch, arg, pass, info)
conf.arcToExpand[arg] = "T"
of "useversion":
expectArg(conf, switch, arg, pass, info)
case arg
of "1.0":
defineSymbol(conf.symbols, "NimMajor", "1")
defineSymbol(conf.symbols, "NimMinor", "0")
# old behaviors go here:
defineSymbol(conf.symbols, "nimOldRelativePathBehavior")
undefSymbol(conf.symbols, "nimDoesntTrackDefects")
ast.eqTypeFlags.excl {tfGcSafe, tfNoSideEffect}
conf.globalOptions.incl optNimV1Emulation
of "1.2":
defineSymbol(conf.symbols, "NimMajor", "1")
defineSymbol(conf.symbols, "NimMinor", "2")
conf.globalOptions.incl optNimV12Emulation
else:
localError(conf, info, "unknown Nim version; currently supported values are: `1.0`, `1.2`")
# always be compatible with 1.x.100:
defineSymbol(conf.symbols, "NimPatch", "100")
of "benchmarkvm":
processOnOffSwitchG(conf, {optBenchmarkVM}, arg, pass, info)
of "profilevm":
@@ -1204,8 +1044,6 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
processOnOffSwitchG(conf, {optPanics}, arg, pass, info)
if optPanics in conf.globalOptions:
defineSymbol(conf.symbols, "nimPanics")
of "jsbigint64":
processOnOffSwitchG(conf, {optJsBigInt64}, arg, pass, info)
of "sourcemap": # xxx document in --fullhelp
conf.globalOptions.incl optSourcemap
conf.options.incl optLineDir
@@ -1213,15 +1051,14 @@ proc processSwitch*(switch, arg: string, pass: TCmdLinePass, info: TLineInfo;
processOnOffSwitchG(conf, {optEnableDeepCopy}, arg, pass, info)
of "": # comes from "-" in for example: `nim c -r -` (gets stripped from -)
handleStdinInput(conf)
of "nilseqs", "nilchecks", "symbol", "taintmode", "cs", "deadcodeelim": warningOptionNoop(switch)
of "nilseqs", "nilchecks", "mainmodule", "m", "symbol", "taintmode", "cs", "deadcodeelim": warningOptionNoop(switch)
of "nimmainprefix": conf.nimMainPrefix = arg
else:
if strutils.find(switch, '.') >= 0: options.setConfigVar(conf, switch, arg)
else: invalidCmdLineOption(conf, pass, switch, info)
proc processCommand*(switch: string, pass: TCmdLinePass; config: ConfigRef) =
var cmd = ""
var arg = ""
var cmd, arg: string
splitSwitch(config, switch, cmd, arg, pass, gCmdLineInfo)
processSwitch(cmd, arg, pass, gCmdLineInfo, config)
@@ -1248,20 +1085,13 @@ proc processArgument*(pass: TCmdLinePass; p: OptParser;
config.projectName = unixToNativePath(p.key)
config.arguments = cmdLineRest(p)
result = true
elif pass != passCmd2:
setCommandEarly(config, p.key)
result = false
else: result = false
elif pass != passCmd2: setCommandEarly(config, p.key)
else:
if pass == passCmd1: config.commandArgs.add p.key
if argsCount == 1:
if p.key.endsWith(".nims"):
incl(config.globalOptions, optWasNimscript)
# support UNIX style filenames everywhere for portable build scripts:
if config.projectName.len == 0:
config.projectName = unixToNativePath(p.key)
config.arguments = cmdLineRest(p)
result = true
else:
result = false
inc argsCount

View File

@@ -1,28 +0,0 @@
include "../lib/system/compilation.nim"
version = $NimMajor & "." & $NimMinor & "." & $NimPatch
author = "Andreas Rumpf"
description = "Compiler package providing the compiler sources as a library."
license = "MIT"
skipDirs = @["."]
installDirs = @["compiler"]
import os
var compilerDir = ""
before install:
rmDir("compiler")
let
files = listFiles(".")
dirs = listDirs(".")
mkDir("compiler")
for f in files:
cpFile(f, "compiler" / f)
for d in dirs:
cpDir(d, "compiler" / d)
requires "nim"

View File

@@ -11,15 +11,12 @@
## for details. Note this is a first implementation and only the "Concept matching"
## section has been implemented.
import ast, semdata, lookups, lineinfos, idents, msgs, renderer, types, layeredtable
import ast, astalgo, semdata, lookups, lineinfos, idents, msgs, renderer, types, intsets
import std/sets
when defined(nimPreviewSlimSystem):
import std/assertions
from magicsys import addSonSkipIntLit
const
logBindings = when defined(debugConcepts): true else: false
logBindings = false
## Code dealing with Concept declarations
## --------------------------------------
@@ -27,12 +24,24 @@ const
proc declareSelf(c: PContext; info: TLineInfo) =
## Adds the magical 'Self' symbols to the current scope.
let ow = getCurrOwner(c)
let s = newSym(skType, getIdent(c.cache, "Self"), c.idgen, ow, info)
s.typ = newType(tyTypeDesc, c.idgen, ow)
s.typ.incl {tfUnresolved, tfPacked}
s.typ.add newType(tyEmpty, c.idgen, ow)
let s = newSym(skType, getIdent(c.cache, "Self"), nextSymId(c.idgen), ow, info)
s.typ = newType(tyTypeDesc, nextTypeId(c.idgen), ow)
s.typ.flags.incl {tfUnresolved, tfPacked}
s.typ.add newType(tyEmpty, nextTypeId(c.idgen), ow)
addDecl(c, s, info)
proc isSelf*(t: PType): bool {.inline.} =
## Is this the magical 'Self' type?
t.kind == tyTypeDesc and tfPacked in t.flags
proc makeTypeDesc*(c: PContext, typ: PType): PType =
if typ.kind == tyTypeDesc and not isSelf(typ):
result = typ
else:
result = newTypeS(tyTypeDesc, c)
incl result.flags, tfCheckedForDestructor
result.addSonSkipIntLit(typ, c.idgen)
proc semConceptDecl(c: PContext; n: PNode): PNode =
## Recursive helper for semantic checking for the concept declaration.
## Currently we only support (possibly empty) lists of statements
@@ -49,8 +58,6 @@ proc semConceptDecl(c: PContext; n: PNode): PNode =
for i in 0..<n.len-1:
result[i] = n[i]
result[^1] = semConceptDecl(c, n[^1])
of nkCommentStmt:
result = n
else:
localError(c.config, n.info, "unexpected construct in the new-styled concept: " & renderTree(n))
result = n
@@ -70,418 +77,150 @@ proc semConceptDeclaration*(c: PContext; n: PNode): PNode =
## ----------------
type
MatchFlags* = enum
mfDontBind # Do not bind generic parameters
mfCheckGeneric # formal <- formal comparison as opposed to formal <- operand
ConceptTypePair = tuple[conceptId, typeId: ItemId]
## Pair of (concept type id, implementation type id) used for cycle detection
MatchCon = object ## Context we pass around during concept matching.
bindings: LayeredIdTable
marker: HashSet[ConceptTypePair] ## Tracks (concept, type) pairs being checked to detect cycles.
inferred: seq[(PType, PType)] ## we need a seq here so that we can easily undo inferences \
## that turned out to be wrong.
marker: IntSet ## Some protection against wild runaway recursions.
potentialImplementation: PType ## the concrete type that might match the concept we try to match.
magic: TMagic ## mArrGet and mArrPut is wrong in system.nim and
## cannot be fixed that easily.
## Thus we special case it here.
concpt: PType ## current concept being evaluated
flags: set[MatchFlags]
MatchKind = enum
mkNoMatch, mkSubset, mkSame
const
asymmetricConceptParamMods = {tyVar, tySink, tyLent, tyOwned, tyAlias, tyInferred} # param modifiers that to not have to match implementation -> concept
bindableTypes = {tyGenericParam, tyOr, tyTypeDesc}
proc conceptMatchNode(c: PContext; n: PNode; m: var MatchCon): bool
proc matchType(c: PContext; fo, ao: PType; m: var MatchCon): bool
proc matchReturnType(c: PContext; f, a: PType; m: var MatchCon): bool
proc processConcept(c: PContext; concpt, invocation: PType, bindings: var LayeredIdTable; m: var MatchCon): bool
proc existingBinding(m: MatchCon; key: PType): PType =
## checks if we bound the type variable 'key' already to some
## concrete type.
result = m.bindings.lookup(key)
if result == nil:
result = key
for i in 0..<m.inferred.len:
if m.inferred[i][0] == key: return m.inferred[i][1]
return nil
const
ignorableForArgType = {tyVar, tySink, tyLent, tyOwned, tyAlias, tyInferred}
proc conceptMatchNode(c: PContext; n: PNode; m: var MatchCon): bool
proc unrollGenericParam(param: PType): PType =
result = param.skipTypes(ignorableForArgType)
while result.kind in {tyGenericParam, tyTypeDesc} and result.hasElementType and result.elementType.kind != tyNone:
result = result.elementType
proc bindParam(c: PContext, m: var MatchCon; key, v: PType): bool {. discardable .} =
if v.kind == tyTypeDesc:
return false
var value = unrollGenericParam(v)
if value.kind == tyGenericParam:
value = existingBinding(m, value)
if value.kind == tyGenericParam:
if value.hasElementType:
value = value.elementType
else:
return true
if value.kind == tyStatic:
return false
if m.magic in {mArrPut, mArrGet} and value.kind in arrPutGetMagicApplies:
value = value.last
let old = existingBinding(m, key)
if old != key:
# check previously bound value
if not matchType(c, old, value, m):
return false
elif key.hasElementType and not key.elementType.isNil and key.elementType.kind != tyNone:
# check constaint
if matchType(c, unrollGenericParam(key), value, m) == false:
return false
when logBindings: echo "bind table adding '", key, "', ", value
assert value != nil
assert value.kind != tyVoid
m.bindings.put(key, value)
return true
proc defSignatureType(n: PNode): PType = n[0].sym.typ
proc conceptBody*(n: PType): PNode = n.n.lastSon
proc acceptsAllTypes(t: PType): bool=
result = false
if t.kind == tyAnything:
result = true
elif t.kind == tyGenericParam:
if tfImplicitTypeParam in t.flags:
result = true
if not t.hasElementType or t.elementType.kind == tyNone:
result = true
proc procDefSignature(s: PSym): PNode {. deprecated .} =
var nc = s.ast.copyNode()
for i in 0 .. 5:
nc.add s.ast[i]
nc
proc matchKids(c: PContext; f, a: PType; m: var MatchCon, start=0): bool=
result = true
for i in start ..< f.kidsLen - ord(f.kind in {tyGenericInst, tyGenericInvocation}):
if not matchType(c, f[i], a[i], m): return false
iterator traverseTyOr(t: PType): PType {. closure .}=
for i in t.kids:
case i.kind:
of tyGenericParam:
if i.hasElementType:
for s in traverseTyOr(i.elementType):
yield s
else:
yield i
else:
yield i
proc matchConceptToImpl(c: PContext, f, potentialImpl: PType; m: var MatchCon): bool =
assert not(potentialImpl.reduceToBase.kind == tyConcept)
let concpt = f.reduceToBase
# Handle self-referential concepts: when a concept references itself in its body
# (e.g., `A = concept; proc test(x: Self, y: A)`), the inner type A has n=nil.
# We detect this by checking if the concept has the same symbol name as the
# one we're currently matching and has no body (n=nil).
if concpt.n.isNil:
if concpt.sym != nil and m.concpt.sym != nil and
concpt.sym == m.concpt.sym:
# Self-reference: check if potentialImpl matches what we're already checking
return potentialImpl.id == m.potentialImplementation.id
# Concept without body that's not a self-reference - cannot match
return false
# Cycle detection: track (concept, type) pairs to prevent infinite recursion.
# Returns true on cycle (coinductive semantics) to support co-dependent concepts.
let pair: ConceptTypePair = (concpt.itemId, potentialImpl.itemId)
if pair in m.marker:
return true
m.marker.incl pair
var efPot = potentialImpl
if potentialImpl.isSelf:
if m.concpt.n == concpt.n:
m.marker.excl pair
return true
efPot = m.potentialImplementation
var oldBindings = m.bindings
m.bindings = newTypeMapLayer(m.bindings)
let oldPotentialImplementation = m.potentialImplementation
m.potentialImplementation = efPot
let oldConcept = m.concpt
m.concpt = concpt
var invocation: PType = nil
if f.kind in {tyGenericInvocation, tyGenericInst}:
invocation = f
result = processConcept(c, concpt, invocation, oldBindings, m)
m.potentialImplementation = oldPotentialImplementation
m.concpt = oldConcept
m.bindings = oldBindings
m.marker.excl pair
proc cmpConceptDefs(c: PContext, fn, an: PNode, m: var MatchCon): bool=
if fn.kind != an.kind:
return false
if fn[namePos].sym.name != an[namePos].sym.name:
return false
let
ft = fn.defSignatureType
at = an.defSignatureType
if ft.len != at.len:
return false
for i in 1 ..< ft.n.len:
m.bindings = m.bindings.newTypeMapLayer()
let aType = at.n[i].typ
let fType = ft.n[i].typ
if aType.isSelf and fType.isSelf:
continue
if not matchType(c, fType, aType, m):
m.bindings.setToPreviousLayer()
return false
result = true
if not matchReturnType(c, ft.returnType, at.returnType, m):
m.bindings.setToPreviousLayer()
result = false
proc conceptsMatch(c: PContext, fc, ac: PType; m: var MatchCon): MatchKind =
# XXX: In the future this may need extra parameters to carry info for container types
if fc.n == ac.n:
# This will have to take generic parameters into account at some point
return mkSame
let
fn = fc.conceptBody
an = ac.conceptBody
sameLen = fc.len == ac.len
var match = false
for fdef in fn:
var cmpResult = false
for ia, ndef in an:
match = cmpConceptDefs(c, fdef, ndef, m)
if match:
break
if not match:
return mkNoMatch
return mkSubset
proc isObjectSubtype(f, a: PType): bool =
var t = a
result = false
while t != nil:
t = t.baseClass
if t == nil:
break
t = t.skipTypes({tyPtr,tyRef})
if t == nil:
break
if t.kind != tyObject:
break
if sameObjectTypes(f, t):
result = true
break
proc matchType(c: PContext; fo, ao: PType; m: var MatchCon): bool =
proc matchType(c: PContext; f, a: PType; m: var MatchCon): bool =
## The heart of the concept matching process. 'f' is the formal parameter of some
## routine inside the concept that we're looking for. 'a' is the formal parameter
## of a routine that might match.
var
a = ao
f = fo
if a.isSelf:
if m.magic in {mArrPut, mArrGet}:
return false
a = m.potentialImplementation
if a.kind in bindableTypes:
a = existingBinding(m, ao)
if a == ao and a.kind == tyGenericParam and a.hasElementType and a.elementType.kind != tyNone:
a = a.elementType
if f.isConcept:
if a.acceptsAllTypes:
return false
if a.skipTypes(ignorableForArgType).isConcept:
# if f is a subset of a then any match to a will also match f. Not the other way around
return conceptsMatch(c, a.reduceToBase, f.reduceToBase, m) >= mkSubset
else:
return matchConceptToImpl(c, f, a, m)
result = false
const
ignorableForArgType = {tyVar, tySink, tyLent, tyOwned, tyGenericInst, tyAlias, tyInferred}
case f.kind
of tyAlias:
result = matchType(c, f.skipModifier, a, m)
result = matchType(c, f.lastSon, a, m)
of tyTypeDesc:
if isSelf(f):
let ua = a.skipTypes(asymmetricConceptParamMods)
if m.magic in {mArrPut, mArrGet}:
if m.potentialImplementation.reduceToBase.kind in arrPutGetMagicApplies:
bindParam(c, m, a, last m.potentialImplementation)
result = true
#elif ua.isConcept:
# result = matchType(c, m.concpt, ua, m)
else:
result = matchType(c, a.skipTypes(ignorableForArgType), m.potentialImplementation, m)
#let oldLen = m.inferred.len
result = matchType(c, a, m.potentialImplementation, m)
#echo "self is? ", result, " ", a.kind, " ", a, " ", m.potentialImplementation, " ", m.potentialImplementation.kind
#m.inferred.setLen oldLen
#echo "A for ", result, " to ", typeToString(a), " to ", typeToString(m.potentialImplementation)
else:
if a.kind == tyTypeDesc:
if not(a.hasElementType) or a.elementType.kind == tyNone:
if a.kind == tyTypeDesc and f.len == a.len:
for i in 0..<a.len:
if not matchType(c, f[i], a[i], m): return false
return true
of tyGenericInvocation:
if a.kind == tyGenericInst and a[0].kind == tyGenericBody:
if sameType(f[0], a[0]) and f.len == a.len-1:
for i in 1 ..< f.len:
if not matchType(c, f[i], a[i], m): return false
return true
of tyGenericParam:
let ak = a.skipTypes({tyVar, tySink, tyLent, tyOwned})
if ak.kind in {tyTypeDesc, tyStatic} and not isSelf(ak):
result = false
else:
let old = existingBinding(m, f)
if old == nil:
if f.len > 0 and f[0].kind != tyNone:
# also check the generic's constraints:
let oldLen = m.inferred.len
result = matchType(c, f[0], a, m)
m.inferred.setLen oldLen
if result:
when logBindings: echo "A adding ", f, " ", ak
m.inferred.add((f, ak))
elif m.magic == mArrGet and ak.kind in {tyArray, tyOpenArray, tySequence, tyVarargs, tyCstring, tyString}:
when logBindings: echo "B adding ", f, " ", lastSon ak
m.inferred.add((f, lastSon ak))
result = true
elif f.hasElementType:
result = matchType(c, f.elementType, a.elementType, m)
else:
when logBindings: echo "C adding ", f, " ", ak
m.inferred.add((f, ak))
#echo "binding ", typeToString(ak), " to ", typeToString(f)
result = true
elif not m.marker.containsOrIncl(old.id):
result = matchType(c, old, ak, m)
if m.magic == mArrPut and ak.kind == tyGenericParam:
result = true
#echo "B for ", result, " to ", typeToString(a), " to ", typeToString(m.potentialImplementation)
of tyVar, tySink, tyLent, tyOwned:
# modifiers in the concept must be there in the actual implementation
# too but not vice versa.
if a.kind == f.kind:
result = matchType(c, f.elementType, a.elementType, m)
result = matchType(c, f.sons[0], a.sons[0], m)
elif m.magic == mArrPut:
result = matchType(c, f.elementType, a, m)
of tyEnum, tyObject, tyDistinct:
if a.kind in ignorableForArgType:
result = matchType(c, f, a.skipTypes(ignorableForArgType), m)
result = matchType(c, f.sons[0], a, m)
else:
if a.kind == tyGenericInst:
# tyOr does this to generic typeclasses
result = a.base.sym == f.sym
else:
result = sameType(f, a)
if not result and f.kind == tyObject and a.kind == tyObject:
result = isObjectSubtype(f, a)
result = false
of tyEnum, tyObject, tyDistinct:
result = sameType(f, a)
of tyEmpty, tyString, tyCstring, tyPointer, tyNil, tyUntyped, tyTyped, tyVoid:
result = a.skipTypes(ignorableForArgType).kind == f.kind
of tyBool, tyChar, tyInt..tyUInt64:
let ak = a.skipTypes(ignorableForArgType)
result = ak.kind == f.kind or ak.kind == tyOrdinal or
(ak.kind == tyGenericParam and ak.hasElementType and ak.elementType.kind == tyOrdinal)
of tyArray, tyTuple, tyVarargs, tyOpenArray, tyRange, tySequence, tyRef, tyPtr:
if f.kind == tyArray and f.kidsLen == 3 and a.kind == tyArray:
# XXX: this is a work-around!
# system.nim creates these for the magic array typeclass
result = true
else:
let ak = a.skipTypes(ignorableForArgType - {f.kind})
if ak.kind == f.kind:
if f.base.kind == tyNone:
result = true
elif f.kidsLen == ak.kidsLen:
result = matchKids(c, f, ak, m)
of tyGenericInvocation, tyGenericInst:
result = false
let ea = a.skipTypes(ignorableForArgType)
if ea.kind in {tyGenericInst, tyGenericInvocation}:
var
k1 = f.kidsLen - ord(f.kind == tyGenericInst)
k2 = ea.kidsLen - ord(ea.kind == tyGenericInst)
if sameType(f.genericHead, ea.genericHead) and k1 == k2:
result = true
for i in 1 ..< k2:
if not matchType(c, f[i], ea[i], m):
result = false
break
elif f.kind == tyGenericInvocation:
# bind potential generic constraints into body
let body = f.base
for i in 1 ..< len(f):
bindParam(c,m,body[i-1], f[i])
result = matchType(c, body, a, m)
else: # tyGenericInst
result = matchType(c, f.last, a, m)
of tyOrdinal:
result = isOrdinalType(a, allowEnumWithHoles = false) or a.kind == tyGenericParam
of tyStatic:
var scomp = f.base
if scomp.kind == tyGenericParam:
if f.base.kidsLen > 0:
scomp = scomp.base
if a.kind == tyStatic:
result = matchType(c, scomp, a.base, m)
else:
result = matchType(c, scomp, a, m)
of tyGenericParam:
if a.acceptsAllTypes:
discard bindParam(c, m, f, a)
result = f.acceptsAllTypes
else:
result = bindParam(c, m, f, a)
of tyAnything:
result = true
of tyNot:
if a.kind == tyNot:
result = matchType(c, f.elementType, a.elementType, m)
else:
m.bindings = m.bindings.newTypeMapLayer()
result = not matchType(c, f.elementType, a, m)
m.bindings.setToPreviousLayer()
of tyAnd:
m.bindings = m.bindings.newTypeMapLayer()
result = true
for ff in traverseTyOr(f):
let r = matchType(c, ff, a, m)
if not r:
m.bindings.setToPreviousLayer()
result = false
break
of tyGenericBody:
var ak = a
if a.kind == tyGenericBody:
ak = last(a)
result = matchType(c, last(f), ak, m)
of tyCompositeTypeClass:
if a.kind == tyCompositeTypeClass:
result = matchKids(c, f, a, m)
else:
result = matchType(c, last(f), a, m)
of tyBuiltInTypeClass:
let target = f.genericHead.kind
result = a.skipTypes(ignorableForArgType).reduceToBase.kind == target
(ak.kind == tyGenericParam and ak.len > 0 and ak[0].kind == tyOrdinal)
of tyConcept:
let oldLen = m.inferred.len
let oldPotentialImplementation = m.potentialImplementation
m.potentialImplementation = a
result = conceptMatchNode(c, f.n.lastSon, m)
m.potentialImplementation = oldPotentialImplementation
if not result:
m.inferred.setLen oldLen
of tyArray, tyTuple, tyVarargs, tyOpenArray, tyRange, tySequence, tyRef, tyPtr,
tyGenericInst:
let ak = a.skipTypes(ignorableForArgType - {f.kind})
if ak.kind == f.kind and f.len == ak.len:
for i in 0..<ak.len:
if not matchType(c, f[i], ak[i], m): return false
return true
of tyOr:
let oldLen = m.inferred.len
if a.kind == tyOr:
# say the concept requires 'int|float|string' if the potentialImplementation
# says 'int|string' that is good enough.
var covered = 0
for ff in traverseTyOr(f):
for aa in traverseTyOr(a):
m.bindings = m.bindings.newTypeMapLayer()
let r = matchType(c, ff, aa, m)
for i in 0..<f.len:
for j in 0..<a.len:
let oldLenB = m.inferred.len
let r = matchType(c, f[i], a[j], m)
if r:
inc covered
break
m.bindings.setToPreviousLayer()
m.inferred.setLen oldLenB
result = covered >= a.kidsLen
result = covered >= a.len
if not result:
m.inferred.setLen oldLen
else:
for ff in f.kids:
m.bindings = m.bindings.newTypeMapLayer()
result = matchType(c, ff, a, m)
for i in 0..<f.len:
result = matchType(c, f[i], a, m)
if result: break # and remember the binding!
m.bindings.setToPreviousLayer()
of tySet:
result = false
if a.kind == tySet:
result = matchType(c, f.elementType, a.elementType, m)
m.inferred.setLen oldLen
of tyNot:
if a.kind == tyNot:
result = matchType(c, f[0], a[0], m)
else:
let oldLen = m.inferred.len
result = not matchType(c, f[0], a, m)
m.inferred.setLen oldLen
of tyAnything:
result = true
of tyOrdinal:
result = isOrdinalType(a, allowEnumWithHoles = false) or a.kind == tyGenericParam
else:
result = false
if result and ao.kind == tyGenericParam:
let bf = if f.isSelf: m.potentialImplementation else: f
if bindParam(c, m, ao, bf):
when logBindings: echo " ^ reverse binding"
proc checkConstraint(c: PContext; f, a: PType; m: var MatchCon): bool =
result = matchType(c, f, a, m) or matchType(c, a, f, m)
proc matchReturnType(c: PContext; f, a: PType; m: var MatchCon): bool =
## Like 'matchType' but with extra logic dealing with proc return types
@@ -491,38 +230,30 @@ proc matchReturnType(c: PContext; f, a: PType; m: var MatchCon): bool =
elif a == nil:
result = false
else:
result = checkConstraint(c, f, a, m)
result = matchType(c, f, a, m)
proc matchSym(c: PContext; candidate: PSym, n: PNode; m: var MatchCon): bool =
## Checks if 'candidate' matches 'n' from the concept body. 'n' is a nkProcDef
## or similar.
# watch out: only add bindings after a completely successful match.
m.bindings = m.bindings.newTypeMapLayer()
let oldLen = m.inferred.len
let can = candidate.typ.n
let con = defSignatureType(n).n
let con = n[0].sym.typ.n
if can.len < con.len:
# too few arguments, cannot be a match:
return false
if can.len > con.len:
# too many arguments (not optional)
for i in con.len ..< can.len:
if can[i].sym.ast == nil:
return false
when defined(debugConcepts):
echo "considering: ", renderTree(candidate.procDefSignature), " ", candidate.magic
let common = min(can.len, con.len)
for i in 1 ..< common:
if not checkConstraint(c, con[i].typ, can[i].typ, m):
m.bindings.setToPreviousLayer()
if not matchType(c, con[i].typ, can[i].typ, m):
m.inferred.setLen oldLen
return false
if not matchReturnType(c, n.defSignatureType.returnType, candidate.typ.returnType, m):
m.bindings.setToPreviousLayer()
if not matchReturnType(c, n[0].sym.typ.sons[0], candidate.typ.sons[0], m):
m.inferred.setLen oldLen
return false
# all other parameters have to be optional parameters:
@@ -530,7 +261,7 @@ proc matchSym(c: PContext; candidate: PSym, n: PNode; m: var MatchCon): bool =
assert can[i].kind == nkSym
if can[i].sym.ast == nil:
# has too many arguments one of which is not optional:
m.bindings.setToPreviousLayer()
m.inferred.setLen oldLen
return false
return true
@@ -538,14 +269,12 @@ proc matchSym(c: PContext; candidate: PSym, n: PNode; m: var MatchCon): bool =
proc matchSyms(c: PContext, n: PNode; kinds: set[TSymKind]; m: var MatchCon): bool =
## Walk the current scope, extract candidates which the same name as 'n[namePos]',
## 'n' is the nkProcDef or similar from the concept that we try to match.
result = false
var candidates = searchScopes(c, n[namePos].sym.name, kinds)
searchImportsAll(c, n[namePos].sym.name, kinds, candidates)
let candidates = searchInScopesFilterBy(c, n[namePos].sym.name, kinds)
for candidate in candidates:
#echo "considering ", typeToString(candidate.typ), " ", candidate.magic
m.magic = candidate.magic
if matchSym(c, candidate, n, m):
result = true
break
if matchSym(c, candidate, n, m): return true
result = false
proc conceptMatchNode(c: PContext; n: PNode; m: var MatchCon): bool =
## Traverse the concept's AST ('n') and see if every declaration inside 'n'
@@ -572,72 +301,39 @@ proc conceptMatchNode(c: PContext; n: PNode; m: var MatchCon): bool =
result = matchSyms(c, n, {skMethod}, m)
of nkIteratorDef:
result = matchSyms(c, n, {skIterator}, m)
of nkCommentStmt:
result = true
else:
# error was reported earlier.
result = false
proc fixBindings(bindings: var LayeredIdTable; concpt: PType; invocation: PType; m: var MatchCon) =
# invocation != nil means we have a non-atomic concept:
if invocation != nil and invocation.kind == tyGenericInvocation:
assert concpt.sym.typ.kind == tyGenericBody
for i in 0 .. concpt.sym.typ.len - 1:
let thisSym = concpt.sym.typ[i]
if lookup(bindings, thisSym) != nil:
# dont trust the bindings over existing ones
continue
let found = m.bindings.lookup(thisSym)
if found != nil:
when logBindings: echo "Invocation bind: ", thisSym, " ", found
bindings.put(thisSym, found)
# bind even more generic parameters
let genBody = invocation.base
assert genBody.kind == tyGenericBody
for i in FirstGenericParamAt ..< invocation.kidsLen:
let bpram = genBody[i - 1]
if lookup(bindings, invocation[i]) != nil:
# dont trust the bindings over existing ones
continue
let boundV = lookup(bindings, bpram)
when logBindings: echo "generic body bind: '", invocation[i], "' '", boundV, "'"
if boundV != nil:
bindings.put(invocation[i], boundV)
bindings.put(concpt, m.potentialImplementation)
proc processConcept(c: PContext; concpt, invocation: PType, bindings: var LayeredIdTable; m: var MatchCon): bool =
m.bindings = m.bindings.newTypeMapLayer()
if invocation != nil and invocation.kind == tyGenericInst:
let genericBody = invocation.base
for i in 1..<invocation.kidsLen-1:
# instGenericContainer can bind `tyVoid`
if invocation[i].kind != tyVoid:
bindParam(c, m, genericBody[i-1], invocation[i])
result = conceptMatchNode(c, concpt.conceptBody, m)
if result and mfDontBind notin m.flags:
fixBindings(bindings, concpt, invocation, m)
proc conceptMatch*(c: PContext; concpt, arg: PType; bindings: var LayeredIdTable; invocation: PType, flags: set[MatchFlags] = {}): bool =
proc conceptMatch*(c: PContext; concpt, arg: PType; bindings: var TIdTable; invocation: PType): bool =
## Entry point from sigmatch. 'concpt' is the concept we try to match (here still a PType but
## we extract its AST via 'concpt.n.lastSon'). 'arg' is the type that might fulfill the
## we extract its AST via 'concpt.n.lastSon'). 'arg' is the type that might fullfill the
## concept's requirements. If so, we return true and fill the 'bindings' with pairs of
## (typeVar, instance) pairs. ('typeVar' is usually simply written as a generic 'T'.)
## 'invocation' can be nil for atomic concepts. For non-atomic concepts, it contains the
## `C[S, T]` parent type that we look for. We need this because we need to store bindings
## 'C[S, T]' parent type that we look for. We need this because we need to store bindings
## for 'S' and 'T' inside 'bindings' on a successful match. It is very important that
## we do not add any bindings at all on an unsuccessful match!
var m = MatchCon(bindings: bindings, potentialImplementation: arg, concpt: concpt, flags: flags, marker: initHashSet[ConceptTypePair]())
if arg.isConcept:
result = conceptsMatch(c, concpt.reduceToBase, arg.reduceToBase, m) >= mkSubset
elif arg.acceptsAllTypes:
# XXX: I think this is wrong, or at least partially wrong. Can still test ambiguous types
result = false
elif mfCheckGeneric in m.flags:
# prioritize concepts the least. Specifically if the arg is not a catch all as per above
result = true
else:
result = processConcept(c, concpt, invocation, bindings, m)
var m = MatchCon(inferred: @[], potentialImplementation: arg)
result = conceptMatchNode(c, concpt.n.lastSon, m)
if result:
for (a, b) in m.inferred:
if b.kind == tyGenericParam:
var dest = b
while true:
dest = existingBinding(m, dest)
if dest == nil or dest.kind != tyGenericParam: break
if dest != nil:
bindings.idTablePut(a, dest)
when logBindings: echo "A bind ", a, " ", dest
else:
bindings.idTablePut(a, b)
when logBindings: echo "B bind ", a, " ", b
# we have a match, so bind 'arg' itself to 'concpt':
bindings.idTablePut(concpt, arg)
# invocation != nil means we have a non-atomic concept:
if invocation != nil and arg.kind == tyGenericInst and invocation.len == arg.len-1:
# bind even more generic parameters
assert invocation.kind == tyGenericInvocation
for i in 1 ..< invocation.len:
bindings.idTablePut(invocation[i], arg[i])

View File

@@ -10,7 +10,7 @@
# This module handles the conditional symbols.
import
std/strtabs
strtabs
from options import Feature
from lineinfos import hintMin, hintMax, warnMin, warnMax
@@ -25,7 +25,7 @@ proc undefSymbol*(symbols: StringTableRef; symbol: string) =
# result = if isDefined(symbol): gSymbols[symbol] else: nil
iterator definedSymbolNames*(symbols: StringTableRef): string =
for key in keys(symbols):
for key, val in pairs(symbols):
yield key
proc countDefinedSymbols*(symbols: StringTableRef): int =
@@ -45,8 +45,10 @@ proc initDefines*(symbols: StringTableRef) =
defineSymbol("nimNewTypedesc") # deadcode
defineSymbol("nimrequiresnimframe") # deadcode
defineSymbol("nimparsebiggestfloatmagic") # deadcode
defineSymbol("nimalias") # deadcode
defineSymbol("nimlocks") # deadcode
defineSymbol("nimnode") # deadcode
defineSymbol("nimnode") # deadcode pending `nimnode` reference in opengl package
# refs https://github.com/nim-lang/opengl/pull/79
defineSymbol("nimvarargstyped") # deadcode
defineSymbol("nimtypedescfixed") # deadcode
defineSymbol("nimKnowsNimvm") # deadcode
@@ -68,7 +70,7 @@ proc initDefines*(symbols: StringTableRef) =
defineSymbol("nimVmExportFixed") # deadcode
defineSymbol("nimHasSymOwnerInMacro") # deadcode
defineSymbol("nimNewRuntime") # deadcode
defineSymbol("nimIncrSeqV3") # deadcode
defineSymbol("nimIncrSeqV3") # xxx: turn this into deadcode
defineSymbol("nimAshr") # deadcode
defineSymbol("nimNoNilSeqs") # deadcode
defineSymbol("nimNoNilSeqs2") # deadcode
@@ -82,24 +84,10 @@ proc initDefines*(symbols: StringTableRef) =
defineSymbol("nimHasSignatureHashInMacro") # deadcode
defineSymbol("nimHasDefault") # deadcode
defineSymbol("nimMacrosSizealignof") # deadcode
defineSymbol("nimNoZeroExtendMagic") # deadcode
defineSymbol("nimMacrosGetNodeId") # deadcode
defineSymbol("nimFixedForwardGeneric") # deadcode
defineSymbol("nimToOpenArrayCString") # deadcode
defineSymbol("nimHasUsed") # deadcode
defineSymbol("nimnomagic64") # deadcode
defineSymbol("nimNewShiftOps") # deadcode
defineSymbol("nimHasCursor") # deadcode
defineSymbol("nimAlignPragma") # deadcode
defineSymbol("nimHasExceptionsQuery") # deadcode
defineSymbol("nimHasIsNamedTuple") # deadcode
defineSymbol("nimHashOrdinalFixed") # deadcode
defineSymbol("nimHasSinkInference") # deadcode
defineSymbol("nimNewIntegerOps") # deadcode
defineSymbol("nimHasInvariant") # deadcode
# > 0.20.0
defineSymbol("nimNoZeroExtendMagic")
defineSymbol("nimMacrosGetNodeId")
for f in Feature:
defineSymbol("nimHas" & $f)
@@ -110,18 +98,31 @@ proc initDefines*(symbols: StringTableRef) =
defineSymbol("nimFixedOwned")
defineSymbol("nimHasStyleChecks")
defineSymbol("nimToOpenArrayCString")
defineSymbol("nimHasUsed")
defineSymbol("nimFixedForwardGeneric")
defineSymbol("nimnomagic64")
defineSymbol("nimNewShiftOps")
defineSymbol("nimHasCursor")
defineSymbol("nimAlignPragma")
defineSymbol("nimHasExceptionsQuery")
defineSymbol("nimHasIsNamedTuple")
defineSymbol("nimHashOrdinalFixed")
when defined(nimHasLibFFI):
# Renaming as we can't conflate input vs output define flags; e.g. this
# will report the right thing regardless of whether user adds
# `-d:nimHasLibFFI` in his user config.
defineSymbol("nimHasLibFFIEnabled") # deadcode
defineSymbol("nimHasLibFFIEnabled")
defineSymbol("nimHasStacktraceMsgs") # deadcode
defineSymbol("nimHasSinkInference")
defineSymbol("nimNewIntegerOps")
defineSymbol("nimHasInvariant")
defineSymbol("nimHasStacktraceMsgs")
defineSymbol("nimDoesntTrackDefects")
defineSymbol("nimHasLentIterators") # deadcode
defineSymbol("nimHasDeclaredMagic") # deadcode
defineSymbol("nimHasStacktracesModule") # deadcode
defineSymbol("nimHasLentIterators")
defineSymbol("nimHasDeclaredMagic")
defineSymbol("nimHasStacktracesModule")
defineSymbol("nimHasEffectTraitsModule")
defineSymbol("nimHasCastPragmaBlocks")
defineSymbol("nimHasDeclaredLocs")
@@ -132,48 +133,10 @@ proc initDefines*(symbols: StringTableRef) =
defineSymbol("nimHasCustomLiterals")
defineSymbol("nimHasUnifiedTuple")
defineSymbol("nimHasIterable")
defineSymbol("nimHasTypeofVoid") # deadcode
defineSymbol("nimHasDragonBox") # deadcode
defineSymbol("nimHasTypeofVoid")
defineSymbol("nimHasDragonBox")
defineSymbol("nimHasHintAll")
defineSymbol("nimHasTrace")
defineSymbol("nimHasEffectsOf")
defineSymbol("nimHasEnforceNoRaises")
defineSymbol("nimHasTopDownInference")
defineSymbol("nimHasTemplateRedefinitionPragma")
defineSymbol("nimHasCstringCase")
defineSymbol("nimHasCallsitePragma")
defineSymbol("nimHasWarnCastSizes") # deadcode
defineSymbol("nimHasOutParams")
defineSymbol("nimHasSystemRaisesDefect")
defineSymbol("nimHasWarnUnnamedBreak")
defineSymbol("nimHasGenericDefine")
defineSymbol("nimHasDefineAliases")
defineSymbol("nimHasWarnBareExcept")
defineSymbol("nimHasDup")
defineSymbol("nimHasChecksums")
defineSymbol("nimHasSendable")
defineSymbol("nimAllowNonVarDestructor")
defineSymbol("nimHasQuirky")
defineSymbol("nimHasEnsureMove")
defineSymbol("nimHasNoReturnError")
defineSymbol("nimUseStrictDefs") # deadcode
defineSymbol("nimHasNolineTooLong")
defineSymbol("nimHasCastExtendedVm")
defineSymbol("nimHasWarnStdPrefix")
defineSymbol("nimHasVtables")
defineSymbol("nimHasGenericsOpenSym2")
defineSymbol("nimHasGenericsOpenSym3")
defineSymbol("nimHasJsNoLambdaLifting")
defineSymbol("nimHasDefaultFloatRoundtrip")
defineSymbol("nimHasXorSet")
defineSymbol("nimHasSetLengthSeqUninitMagic")
defineSymbol("nimHasPreviewDuplicateModuleError")
defineSymbol("nimHasImplicitRangeConversion")

View File

@@ -54,19 +54,3 @@ proc isCompilerDebug*(): bool =
{.undef(nimCompilerDebug).}
echo 'x'
conf0.isDefined("nimCompilerDebug")
proc enteringDebugSection*() {.exportc, dynlib.} =
## Provides a way for native debuggers to enable breakpoints, watchpoints, etc
## when code of interest is being compiled.
##
## Set your debugger to break on entering `nimCompilerIsEnteringDebugSection`
## and then execute a desired command.
discard
proc exitingDebugSection*() {.exportc, dynlib.} =
## Provides a way for native debuggers to disable breakpoints, watchpoints, etc
## when code of interest is no longer being compiled.
##
## Set your debugger to break on entering `exitingDebugSection`
## and then execute a desired command.
discard

View File

@@ -9,17 +9,10 @@
# This module implements a dependency file generator.
import options, ast, ropes, pathutils, msgs, lineinfos
import modulegraphs
import std/[os, parseutils]
import std/strutils except addf
import std/private/globs
when defined(nimPreviewSlimSystem):
import std/assertions
import
options, ast, ropes, idents, passes, modulepaths, pathutils
from modulegraphs import ModuleGraph, PPassContext
type
TGen = object of PPassContext
@@ -35,64 +28,18 @@ proc addDependencyAux(b: Backend; importing, imported: string) =
b.dotGraph.addf("\"$1\" -> \"$2\";$n", [rope(importing), rope(imported)])
# s1 -> s2_4[label="[0-9]"];
proc toNimblePath(s: string, isStdlib: bool): string =
const stdPrefix = "std/"
const pkgPrefix = "pkg/"
if isStdlib:
let sub = "lib/"
var start = s.find(sub)
if start < 0:
raiseAssert "unreachable"
else:
start += sub.len
let base = s[start..^1]
if base.startsWith("system") or base.startsWith("std"):
result = base
else:
for dir in stdlibDirs:
if base.startsWith(dir):
return stdPrefix & base.splitFile.name
result = stdPrefix & base
else:
var sub = getEnv("NIMBLE_DIR")
if sub.len == 0:
sub = ".nimble/pkgs/"
else:
sub.add "/pkgs/"
var start = s.find(sub)
if start < 0:
sub[^1] = '2'
sub.add '/'
start = s.find(sub) # /pkgs2
if start < 0:
return s
start += sub.len
start += skipUntil(s, '/', start)
start += 1
result = pkgPrefix & s[start..^1]
proc addDependency(c: PPassContext, g: PGen, b: Backend, n: PNode) =
doAssert n.kind == nkSym, $n.kind
let path = splitFile(toProjPath(g.config, n.sym.position.FileIndex))
let modulePath = splitFile(toProjPath(g.config, g.module.position.FileIndex))
let parent = nativeToUnixPath(modulePath.dir / modulePath.name).toNimblePath(belongsToStdlib(g.graph, g.module))
let child = nativeToUnixPath(path.dir / path.name).toNimblePath(belongsToStdlib(g.graph, n.sym))
addDependencyAux(b, parent, child)
proc addDotDependency*(c: PPassContext, n: PNode): PNode =
proc addDotDependency(c: PPassContext, n: PNode): PNode =
result = n
let g = PGen(c)
let b = Backend(g.graph.backend)
case n.kind
of nkImportStmt:
for i in 0..<n.len:
addDependency(c, g, b, n[i])
var imported = getModuleName(g.config, n[i])
addDependencyAux(b, g.module.name.s, imported)
of nkFromStmt, nkImportExceptStmt:
addDependency(c, g, b, n[0])
var imported = getModuleName(g.config, n[0])
addDependencyAux(b, g.module.name.s, imported)
of nkStmtList, nkBlockStmt, nkStmtListExpr, nkBlockExpr:
for i in 0..<n.len: discard addDotDependency(c, n[i])
else:
@@ -104,7 +51,18 @@ proc generateDot*(graph: ModuleGraph; project: AbsoluteFile) =
rope(project.splitFile.name), b.dotGraph],
changeFileExt(project, "dot"))
proc setupDependPass*(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
result = PGen(module: module, config: graph.config, graph: graph)
when not defined(nimHasSinkInference):
{.pragma: nosinks.}
proc myOpen(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext {.nosinks.} =
var g: PGen
new(g)
g.module = module
g.config = graph.config
g.graph = graph
if graph.backend == nil:
graph.backend = Backend(dotGraph: "")
graph.backend = Backend(dotGraph: nil)
result = g
const gendependPass* = makePass(open = myOpen, process = addDotDependency)

View File

@@ -1,566 +0,0 @@
#
#
# The Nim Compiler
# (c) Copyright 2025 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Generate a .build.nif file for nifmake from a Nim project.
## This enables incremental and parallel compilation using the `m` switch.
import std / [os, tables, sets, times, osproc]
import options, msgs, lineinfos, pathutils
import "../dist/nimony/src/lib" / [nifstreams, bitabs, nifreader, nifbuilder]
import "../dist/nimony/src/gear2" / modnames
type
FilePair = object
nimFile: string
modname: string
Node = ref object
files: seq[FilePair] # main file + includes
deps: seq[int] # indices into DepContext.nodes
id: int
DepContext = object
config: ConfigRef
nifler: string
nodes: seq[Node]
processedModules: Table[string, int] # modname -> node index
includeStack: seq[string]
systemNodeId: int # ID of the system.nim node
proc toPair(c: DepContext; f: string): FilePair =
FilePair(nimFile: f, modname: moduleSuffix(f, cast[seq[string]](c.config.searchPaths)))
proc depsFile(c: DepContext; f: FilePair): string =
getNimcacheDir(c.config).string / f.modname & ".deps.nif"
proc parsedFile(c: DepContext; f: FilePair): string =
getNimcacheDir(c.config).string / f.modname & ".p.nif"
proc semmedFile(c: DepContext; f: FilePair): string =
getNimcacheDir(c.config).string / f.modname & ".nif"
proc findNifler(): string =
# Look for nifler in common locations
let nimDir = getAppDir()
result = nimDir / "nifler"
if not fileExists(result):
result = findExe("nifler")
proc findNifmake(): string =
# Look for nifmake in common locations
# Try relative to nim executable
let nimDir = getAppDir()
result = nimDir / "nifmake"
if not fileExists(result):
result = findExe("nifmake")
proc runNifler(c: DepContext; nimFile: string): bool =
## Run nifler deps on a file if needed. Returns true on success.
let pair = c.toPair(nimFile)
let depsPath = c.depsFile(pair)
# Check if deps file is up-to-date
if fileExists(depsPath) and fileExists(nimFile):
if getLastModificationTime(depsPath) > getLastModificationTime(nimFile):
return true # Already up-to-date
# Create output directory if needed
createDir(parentDir(depsPath))
# Run nifler deps
let cmd = quoteShell(c.nifler) & " deps " & quoteShell(nimFile) & " " & quoteShell(depsPath)
let exitCode = execShellCmd(cmd)
result = exitCode == 0
proc resolveImport(c: DepContext; origin, toResolve: string): string =
## Resolve an import path using the compiler's normal module lookup rules.
result = findModule(c.config, toResolve, origin).string
proc resolveInclude(c: DepContext; origin, toResolve: string): string =
## Resolve an include path relative to the including file or the search paths.
let originDir = parentDir(origin)
result = originDir / toResolve.addFileExt("nim")
if fileExists(result):
return result
for searchPath in c.config.searchPaths:
result = searchPath.string / toResolve.addFileExt("nim")
if fileExists(result):
return result
result = ""
proc traverseDeps(c: var DepContext; pair: FilePair; current: Node)
proc processInclude(c: var DepContext; includePath: string; current: Node) =
let resolved = resolveInclude(c, current.files[current.files.len - 1].nimFile, includePath)
if resolved.len == 0 or not fileExists(resolved):
return
# Check for recursive includes
for s in c.includeStack:
if s == resolved:
return # Skip recursive include
c.includeStack.add resolved
current.files.add c.toPair(resolved)
traverseDeps(c, c.toPair(resolved), current)
discard c.includeStack.pop()
proc processImport(c: var DepContext; importPath: string; current: Node) =
let resolved = resolveImport(c, current.files[0].nimFile, importPath)
if resolved.len == 0 or not fileExists(resolved):
return
let pair = c.toPair(resolved)
let existingIdx = c.processedModules.getOrDefault(pair.modname, -1)
if existingIdx == -1:
# New module - create node and process it
let newNode = Node(files: @[pair], id: c.nodes.len)
current.deps.add newNode.id
# Every module depends on system.nim
if c.systemNodeId >= 0:
newNode.deps.add c.systemNodeId
c.processedModules[pair.modname] = newNode.id
c.nodes.add newNode
traverseDeps(c, pair, newNode)
else:
# Already processed - just add dependency
if existingIdx notin current.deps:
current.deps.add existingIdx
proc skipSubtree(s: var Stream; first: PackedToken) =
## Consume tokens until the ParLe at `first` is balanced. Caller has
## already obtained `first`.
if first.kind != ParLe: return
var depth = 1
while depth > 0:
let t = next(s)
if t.kind == ParLe: inc depth
elif t.kind == ParRi: dec depth
elif t.kind == EofToken: return
proc evalCondExpr(c: DepContext; s: var Stream): bool =
## Read exactly one condition expression from `s` and return its truth
## value. Consumes tokens whether the expression is recognised or not so
## the caller stays in sync. Recognises `defined(IDENT)`, the boolean
## operators `not`/`and`/`or`, and the literals `true`/`false`. Anything
## else (e.g. a call to an arbitrary proc) is treated as `true` — the
## conservative direction, since a false negative here drops a real
## dependency from the build graph.
let t = next(s)
case t.kind
of Ident:
case pool.strings[t.litId]
of "true": result = true
of "false": result = false
else: result = true
of ParLe:
let tag = pool.tags[t.tagId]
case tag
of "call", "cmd", "callstrlit", "infix", "prefix":
# First child is the head (function/operator name).
let head = next(s)
var name = ""
if head.kind == Ident: name = pool.strings[head.litId]
case name
of "defined":
let arg = next(s)
var sym = ""
if arg.kind == Ident: sym = pool.strings[arg.litId]
result = sym.len > 0 and isDefined(c.config, sym)
of "not":
result = not evalCondExpr(c, s)
of "and":
result = evalCondExpr(c, s)
if result: result = evalCondExpr(c, s)
else: skipSubtree(s, next(s))
of "or":
result = evalCondExpr(c, s)
if not result: result = evalCondExpr(c, s)
else: skipSubtree(s, next(s))
else:
result = true
# Drain whatever remains until the matching ParRi.
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
of "not":
result = not evalCondExpr(c, s)
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
of "and":
result = evalCondExpr(c, s)
if result: result = evalCondExpr(c, s)
else: skipSubtree(s, next(s))
# consume closing ParRi
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
of "or":
result = evalCondExpr(c, s)
if not result: result = evalCondExpr(c, s)
else: skipSubtree(s, next(s))
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
else:
skipSubtree(s, t)
result = true
else:
result = true
proc whenMarkerHolds(c: DepContext; s: var Stream): bool =
## Caller has just consumed the `(when` ParLe. Read children until the
## matching `)`, AND-ing each evaluated condition.
result = true
while true:
# peek by reading; if it's ParRi, we're done
let t = next(s)
if t.kind == ParRi: return
if t.kind == EofToken: return
if t.kind == ParLe:
# Re-feed by manually evaluating the subtree starting at `t`.
# evalCondExpr expects to read its own opener, so handle it directly.
let tag = pool.tags[t.tagId]
case tag
of "call", "cmd", "callstrlit", "infix", "prefix":
let head = next(s)
var name = ""
if head.kind == Ident: name = pool.strings[head.litId]
var ok = true
case name
of "defined":
let arg = next(s)
var sym = ""
if arg.kind == Ident: sym = pool.strings[arg.litId]
ok = sym.len > 0 and isDefined(c.config, sym)
of "not":
ok = not evalCondExpr(c, s)
of "and":
ok = evalCondExpr(c, s)
if ok: ok = evalCondExpr(c, s)
of "or":
ok = evalCondExpr(c, s)
if not ok: ok = evalCondExpr(c, s)
else:
ok = true
# finish the subtree
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
if not ok: result = false
of "not", "and", "or":
# Re-emit a synthetic dispatch: rewrap by descending.
var ok = true
case tag
of "not":
ok = not evalCondExpr(c, s)
of "and":
ok = evalCondExpr(c, s)
if ok: ok = evalCondExpr(c, s)
of "or":
ok = evalCondExpr(c, s)
if not ok: ok = evalCondExpr(c, s)
else: discard
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: return
if not ok: result = false
else:
# Unknown — treat as true and skip.
skipSubtree(s, t)
elif t.kind == Ident:
let v = pool.strings[t.litId]
if v == "false": result = false
# else (true / unknown ident): keep result
proc readDepsFile(c: var DepContext; pair: FilePair; current: Node) =
## Read a .deps.nif file and process imports/includes
let depsPath = c.depsFile(pair)
if not fileExists(depsPath):
return
var s = nifstreams.open(depsPath)
defer: nifstreams.close(s)
discard processDirectives(s.r)
var t = next(s)
if t.kind != ParLe:
return
# Skip to content (past stmts tag)
t = next(s)
while t.kind != EofToken:
if t.kind == ParLe:
let tag = pool.tags[t.tagId]
case tag
of "import", "fromimport", "include":
# Read first child. May be a `(when COND...)` marker — parse and
# evaluate; if the condition is statically false, skip the import
# entirely. Otherwise advance past the marker and parse the path.
t = next(s)
var live = true
if t.kind == ParLe and pool.tags[t.tagId] == "when":
# whenMarkerHolds consumes everything up to and including the
# closing `)` of the `(when ...)` subtree.
live = whenMarkerHolds(c, s)
t = next(s)
if not live:
# Drain the rest of this import/include node.
var depth = 1
while depth > 0:
let n = next(s)
if n.kind == ParLe: inc depth
elif n.kind == ParRi: dec depth
elif n.kind == EofToken: break
t = next(s)
continue
# Handle path expression (could be ident, string, or infix like std/foo)
var importPath = ""
if t.kind == Ident:
importPath = pool.strings[t.litId]
elif t.kind == StringLit:
importPath = pool.strings[t.litId]
elif t.kind == ParLe and pool.tags[t.tagId] == "infix":
# Handle std / foo style imports
t = next(s) # skip infix tag
if t.kind == Ident: # operator (/)
t = next(s)
if t.kind == Ident: # first part (std)
importPath = pool.strings[t.litId]
t = next(s)
if t.kind == Ident: # second part (foo)
importPath = importPath & "/" & pool.strings[t.litId]
if importPath.len > 0:
if tag == "include":
processInclude(c, importPath, current)
else:
processImport(c, importPath, current)
# Skip to end of node
var depth = 1
while depth > 0:
t = next(s)
if t.kind == ParLe: inc depth
elif t.kind == ParRi: dec depth
else:
# Skip unknown node
var depth = 1
while depth > 0:
t = next(s)
if t.kind == ParLe: inc depth
elif t.kind == ParRi: dec depth
t = next(s)
proc traverseDeps(c: var DepContext; pair: FilePair; current: Node) =
## Process a module: run nifler and read deps
if not runNifler(c, pair.nimFile):
rawMessage(c.config, errGenerated, "nifler failed for: " & pair.nimFile)
return
readDepsFile(c, pair, current)
proc generateBuildFile(c: DepContext): string =
## Generate the .build.nif file for nifmake
let nimcache = getNimcacheDir(c.config).string
createDir(nimcache)
result = nimcache / c.nodes[0].files[0].modname & ".build.nif"
var b = nifbuilder.open(result)
defer: b.close()
b.addHeader("nim ic", "nifmake")
b.addTree "stmts"
# Define nifler command
b.addTree "cmd"
b.addSymbolDef "nifler"
b.addStrLit c.nifler
b.addStrLit "parse"
b.addStrLit "--deps"
b.addTree "input"
b.endTree()
b.addTree "output"
b.endTree()
b.endTree()
# Define nim m command
b.addTree "cmd"
b.addSymbolDef "nim_m"
b.addStrLit getAppFilename()
b.addStrLit "m"
b.addStrLit "--nimcache:" & nimcache
# Add search paths
for p in c.config.searchPaths:
b.addStrLit "--path:" & p.string
b.addTree "args"
b.endTree()
b.withTree "input":
b.addIntLit 0 # main parsed file
b.endTree()
# Define nim nifc command
b.addTree "cmd"
b.addSymbolDef "nim_nifc"
b.addStrLit getAppFilename()
b.addStrLit "nifc"
b.addStrLit "--nimcache:" & nimcache
# Add search paths
for p in c.config.searchPaths:
b.addStrLit "--path:" & p.string
b.addTree "input"
b.addIntLit 0
b.endTree()
b.endTree()
# Build rules for parsing (nifler)
var seenFiles = initHashSet[string]()
for node in c.nodes:
for pair in node.files:
let parsed = c.parsedFile(pair)
if not seenFiles.containsOrIncl(parsed):
b.addTree "do"
b.addIdent "nifler"
b.addTree "input"
b.addStrLit pair.nimFile
b.endTree()
b.addTree "output"
b.addStrLit parsed
b.endTree()
b.addTree "output"
b.addStrLit c.depsFile(pair)
b.endTree()
b.endTree()
# Build rules for semantic checking (nim m)
for i in countdown(c.nodes.len - 1, 0):
let node = c.nodes[i]
let pair = node.files[0]
b.addTree "do"
b.addIdent "nim_m"
# Input: all parsed files for this module
b.withTree "input":
b.addStrLit node.files[0].nimFile
for f in node.files:
b.addTree "input"
b.addStrLit c.parsedFile(f)
b.endTree()
# Also depend on semmed files of dependencies
for depIdx in node.deps:
b.addTree "input"
b.addStrLit c.semmedFile(c.nodes[depIdx].files[0])
b.endTree()
# Output: semmed file
b.addTree "output"
b.addStrLit c.semmedFile(pair)
b.endTree()
b.endTree()
# Final compilation step: generate executable from main module
let mainNif = c.nodes[0].files[0].nimFile
let exeFile = changeFileExt(c.nodes[0].files[0].nimFile, ExeExt)
b.addTree "do"
b.addIdent "nim_nifc"
# Input: .nim file (expanded as argument)
b.addTree "input"
b.addStrLit mainNif
b.endTree()
# Also depend on the semmed .nif files of the main module and all its
# dependencies. nifmake's topological sort orders nodes by depth; without
# these inputs the nim_nifc node sits at depth 1 (no recognized inputs)
# alongside the nifler nodes and runs *before* the nim_m steps that
# produce the .nif files it needs to read.
for node in c.nodes:
b.addTree "input"
b.addStrLit c.semmedFile(node.files[0])
b.endTree()
b.addTree "output"
b.addStrLit exeFile
b.endTree()
b.endTree()
b.endTree() # stmts
proc commandIc*(conf: ConfigRef) =
## Main entry point for `nim ic`
when not defined(nimKochBootstrap):
let nifler = findNifler()
if nifler.len == 0:
rawMessage(conf, errGenerated, "nifler tool not found. Install nimony or add nifler to PATH.")
return
let projectFile = conf.projectFull.string
if not fileExists(projectFile):
rawMessage(conf, errGenerated, "project file not found: " & projectFile)
return
# Create nimcache directory
createDir(getNimcacheDir(conf).string)
var c = DepContext(
config: conf,
nifler: nifler,
nodes: @[],
processedModules: initTable[string, int](),
includeStack: @[],
systemNodeId: -1
)
# Create root node for main project file
let rootPair = c.toPair(projectFile)
let rootNode = Node(files: @[rootPair], id: 0)
c.nodes.add rootNode
c.processedModules[rootPair.modname] = 0
# model the system.nim dependency:
let sysNode = Node(files: @[toPair(c, (conf.libpath / RelativeFile"system.nim").string)], id: 1)
c.nodes.add sysNode
c.systemNodeId = sysNode.id
rootNode.deps.add sysNode.id
# Process dependencies
traverseDeps(c, rootPair, rootNode)
# Generate build file
let buildFile = generateBuildFile(c)
rawMessage(conf, hintSuccess, "generated: " & buildFile)
# Automatically run nifmake
let nifmake = findNifmake()
if nifmake.len == 0:
rawMessage(conf, hintSuccess, "run: nifmake run " & buildFile)
else:
let cmd = quoteShell(nifmake) & " run " & quoteShell(buildFile)
rawMessage(conf, hintExecuting, cmd)
let exitCode = execShellCmd(cmd)
if exitCode != 0:
rawMessage(conf, errGenerated, "nifmake failed with exit code: " & $exitCode)
else:
rawMessage(conf, errGenerated, "nim ic not available in bootstrap build")

View File

@@ -9,34 +9,37 @@
## Data flow analysis for Nim.
## We transform the AST into a linear list of instructions first to
## make this easier to handle: There are only 3 different branching
## make this easier to handle: There are only 2 different branching
## instructions: 'goto X' is an unconditional goto, 'fork X'
## is a conditional goto (either the next instruction or 'X' can be
## taken), 'loop X' is the only jump that jumps back.
##
## Exhaustive case statements are translated
## taken). Exhaustive case statements are translated
## so that the last branch is transformed into an 'else' branch.
## ``return`` and ``break`` are all covered by 'goto'.
##
## Control flow through exception handling:
## Contrary to popular belief, exception handling doesn't cause
## many problems for this DFA representation, ``raise`` is a statement
## that ``goes to`` the outer ``finally`` or ``except`` if there is one,
## otherwise it is the same as ``return``. Every call is treated as
## a call that can potentially ``raise``. However, without a surrounding
## ``try`` we don't emit these ``fork ReturnLabel`` instructions in order
## to speed up the dataflow analysis passes.
##
## The data structures and algorithms used here are inspired by
## "A GraphFree Approach to DataFlow Analysis" by Markus Mohnen.
## https://link.springer.com/content/pdf/10.1007/3-540-45937-5_6.pdf
import ast, lineinfos, renderer, aliasanalysis
import ast, intsets, lineinfos, renderer
import std/private/asciitables
import std/intsets
when defined(nimPreviewSlimSystem):
import std/assertions
type
InstrKind* = enum
goto, loop, fork, def, use
goto, fork, def, use
Instr* = object
n*: PNode # contains the def/use location.
case kind*: InstrKind
of goto, fork, loop: dest*: int
of def, use:
n*: PNode # contains the def/use location.
of goto, fork: dest*: int
else: discard
ControlFlowGraph* = seq[Instr]
@@ -46,26 +49,24 @@ type
case isTryBlock: bool
of false:
label: PSym
breakFixups: seq[(TPosition, seq[PNode])] # Contains the gotos for the breaks along with their pending finales
breakFixups: seq[(TPosition, seq[PNode])] #Contains the gotos for the breaks along with their pending finales
of true:
finale: PNode
raiseFixups: seq[TPosition] # Contains the gotos for the raises
raiseFixups: seq[TPosition] #Contains the gotos for the raises
Con = object
code: ControlFlowGraph
inTryStmt, interestingInstructions: int
inTryStmt: int
blocks: seq[TBlock]
owner: PSym
root: PSym
proc codeListing(c: ControlFlowGraph, start = 0; last = -1): string =
# for debugging purposes
# first iteration: compute all necessary labels:
result = ""
var jumpTargets = initIntSet()
let last = if last < 0: c.len-1 else: min(last, c.len-1)
for i in start..last:
if c[i].kind in {goto, fork, loop}:
if c[i].kind in {goto, fork}:
jumpTargets.incl(i+c[i].dest)
var i = start
while i <= last:
@@ -76,12 +77,12 @@ proc codeListing(c: ControlFlowGraph, start = 0; last = -1): string =
case c[i].kind
of def, use:
result.add renderTree(c[i].n)
result.add("\t#")
result.add($c[i].n.info.line)
result.add("\n")
of goto, fork, loop:
of goto, fork:
result.add "L"
result.addInt c[i].dest+i
result.add("\t#")
result.add($c[i].n.info.line)
result.add("\n")
inc i
if i in jumpTargets: result.add("L" & $i & ": End\n")
@@ -89,13 +90,181 @@ proc echoCfg*(c: ControlFlowGraph; start = 0; last = -1) {.deprecated.} =
## echos the ControlFlowGraph for debugging purposes.
echo codeListing(c, start, last).alignTable
proc forkI(c: var Con): TPosition =
proc forkI(c: var Con; n: PNode): TPosition =
result = TPosition(c.code.len)
c.code.add Instr(kind: fork, dest: 0)
c.code.add Instr(n: n, kind: fork, dest: 0)
proc gotoI(c: var Con): TPosition =
proc gotoI(c: var Con; n: PNode): TPosition =
result = TPosition(c.code.len)
c.code.add Instr(kind: goto, dest: 0)
c.code.add Instr(n: n, kind: goto, dest: 0)
#[
Join is no more
===============
Instead of generating join instructions we adapt our traversal of the CFG.
When encountering a fork we split into two paths, we follow the path
starting at "pc + 1" until it encounters the joinpoint: "pc + forkInstr.dest".
If we encounter gotos that would jump further than the current joinpoint,
as can happen with gotos generated by unstructured controlflow such as break, raise or return,
we simply suspend following the current path, and follow the other path until the new joinpoint
which is simply the instruction pointer returned to us by the now suspended path.
If the path we are following now, also encounters a goto that exceeds the joinpoint
we repeat the process; suspending the current path and evaluating the other one with a new joinpoint.
If we eventually reach a common joinpoint we join the two paths.
This new "ping-pong" approach has the obvious advantage of not requiring join instructions, as such
cutting down on the CFG size but is also mandatory for correctly handling complicated cases
of unstructured controlflow.
Design of join
==============
block:
if cond: break
def(x)
use(x)
Generates:
L0: fork lab1
join L0 # patched.
goto Louter
lab1:
def x
join L0
Louter:
use x
block outer:
while a:
while b:
if foo:
if bar:
break outer # --> we need to 'join' every pushed 'fork' here
This works and then our abstract interpretation needs to deal with 'fork'
differently. It really causes a split in execution. Two threads are
"spawned" and both need to reach the 'join L' instruction. Afterwards
the abstract interpretations are joined and execution resumes single
threaded.
Abstract Interpretation
-----------------------
proc interpret(pc, state, comesFrom): state =
result = state
# we need an explicit 'create' instruction (an explicit heap), in order
# to deal with 'var x = create(); var y = x; var z = y; destroy(z)'
while true:
case pc
of fork:
let a = interpret(pc+1, result, pc)
let b = interpret(forkTarget, result, pc)
result = a ++ b # ++ is a union operation
inc pc
of join:
if joinTarget == comesFrom: return result
else: inc pc
of use X:
if not result.contains(x):
error "variable not initialized " & x
inc pc
of def X:
if not result.contains(x):
result.incl X
else:
error "overwrite of variable causes memory leak " & x
inc pc
of destroy X:
result.excl X
This is correct but still can lead to false positives:
proc p(cond: bool) =
if cond:
new(x)
otherThings()
if cond:
destroy x
Is not a leak. We should find a way to model *data* flow, not just
control flow. One solution is to rewrite the 'if' without a fork
instruction. The unstructured aspect can now be easily dealt with
the 'goto' and 'join' instructions.
proc p(cond: bool) =
L0: fork Lend
new(x)
# do not 'join' here!
Lend:
otherThings()
join L0 # SKIP THIS FOR new(x) SOMEHOW
destroy x
join L0 # but here.
But if we follow 'goto Louter' we will never come to the join point.
We restore the bindings after popping pc from the stack then there
"no" problem?!
while cond:
prelude()
if not condB: break
postlude()
--->
var setFlag = true
while cond and not setFlag:
prelude()
if not condB:
setFlag = true # BUT: Dependency
if not setFlag: # HERE
postlude()
--->
var setFlag = true
while cond and not setFlag:
prelude()
if not condB:
postlude()
setFlag = true
-------------------------------------------------
while cond:
prelude()
if more:
if not condB: break
stuffHere()
postlude()
-->
var setFlag = true
while cond and not setFlag:
prelude()
if more:
if not condB:
setFlag = false
else:
stuffHere()
postlude()
else:
postlude()
This is getting complicated. Instead we keep the whole 'join' idea but
duplicate the 'join' instructions on breaks and return exits!
]#
proc genLabel(c: Con): TPosition = TPosition(c.code.len)
@@ -103,8 +272,8 @@ template checkedDistance(dist): int =
doAssert low(int) div 2 + 1 < dist and dist < high(int) div 2
dist
proc jmpBack(c: var Con, p = TPosition(0)) =
c.code.add Instr(kind: loop, dest: checkedDistance(p.int - c.code.len))
proc jmpBack(c: var Con, n: PNode, p = TPosition(0)) =
c.code.add Instr(n: n, kind: goto, dest: checkedDistance(p.int - c.code.len))
proc patch(c: var Con, p: TPosition) =
# patch with current index
@@ -113,13 +282,13 @@ proc patch(c: var Con, p: TPosition) =
proc gen(c: var Con; n: PNode)
proc popBlock(c: var Con; oldLen: int) =
var exits: seq[TPosition] = @[]
exits.add c.gotoI()
var exits: seq[TPosition]
exits.add c.gotoI(newNode(nkEmpty))
for f in c.blocks[oldLen].breakFixups:
c.patch(f[0])
for finale in f[1]:
c.gen(finale)
exits.add c.gotoI()
exits.add c.gotoI(newNode(nkEmpty))
for e in exits:
c.patch e
c.blocks.setLen(oldLen)
@@ -130,29 +299,95 @@ template withBlock(labl: PSym; body: untyped) =
body
popBlock(c, oldLen)
template forkT(body) =
let lab1 = c.forkI()
proc isTrue(n: PNode): bool =
n.kind == nkSym and n.sym.kind == skEnumField and n.sym.position != 0 or
n.kind == nkIntLit and n.intVal != 0
when true:
proc genWhile(c: var Con; n: PNode) =
# We unroll every loop 3 times. We emulate 0, 1, 2 iterations
# through the loop. We need to prove this is correct for our
# purposes. But Herb Sutter claims it is. (Proof by authority.)
#
# EDIT: Actually, we only need to unroll 2 times
# because Nim doesn't have a way of breaking/goto-ing into
# a loop iteration. Unrolling 2 times is much better for compile
# times of nested loops than 3 times, so we do that here.
#[
while cond:
body
Becomes:
block:
if cond:
body
if cond:
body
if cond:
body
We still need to ensure 'break' resolves properly, so an AST to AST
translation is impossible.
So the code to generate is:
cond
fork L4 # F1
body
cond
fork L5 # F2
body
cond
fork L6 # F3
body
L6:
join F3
L5:
join F2
L4:
join F1
]#
if isTrue(n[0]):
# 'while true' is an idiom in Nim and so we produce
# better code for it:
withBlock(nil):
for i in 0..1:
c.gen(n[1])
else:
withBlock(nil):
var endings: array[2, TPosition]
for i in 0..1:
c.gen(n[0])
endings[i] = c.forkI(n)
c.gen(n[1])
for i in countdown(endings.high, 0):
c.patch(endings[i])
else:
proc genWhile(c: var Con; n: PNode) =
# lab1:
# cond, tmp
# fork tmp, lab2
# body
# jmp lab1
# lab2:
let lab1 = c.genLabel
withBlock(nil):
if isTrue(n[0]):
c.gen(n[1])
c.jmpBack(n, lab1)
else:
c.gen(n[0])
forkT(n):
c.gen(n[1])
c.jmpBack(n, lab1)
template forkT(n, body) =
let lab1 = c.forkI(n)
body
c.patch(lab1)
proc genWhile(c: var Con; n: PNode) =
# lab1:
# cond, tmp
# fork tmp, lab2
# body
# jmp lab1
# lab2:
let lab1 = c.genLabel
withBlock(nil):
if isTrue(n[0]):
c.gen(n[1])
c.jmpBack(lab1)
else:
c.gen(n[0])
forkT:
c.gen(n[1])
c.jmpBack(lab1)
proc genIf(c: var Con, n: PNode) =
#[
@@ -181,32 +416,34 @@ proc genIf(c: var Con, n: PNode) =
goto Lend3
L3:
D
goto Lend3 # not eliminated to simplify the join generation
Lend3:
join F3
Lend2:
join F2
Lend:
join F1
]#
var endings: seq[TPosition] = @[]
let oldInteresting = c.interestingInstructions
let oldLen = c.code.len
for i in 0..<n.len:
let it = n[i]
c.gen(it[0])
if it.len == 2:
forkT:
c.gen(it.lastSon)
endings.add c.gotoI()
if oldInteresting == c.interestingInstructions:
setLen c.code, oldLen
else:
for i in countdown(endings.high, 0):
c.patch(endings[i])
forkT(it[1]):
c.gen(it[1])
endings.add c.gotoI(it[1])
for i in countdown(endings.high, 0):
c.patch(endings[i])
proc genAndOr(c: var Con; n: PNode) =
# asgn dest, a
# fork lab1
# asgn dest, b
# lab1:
# join F1
c.gen(n[1])
forkT:
forkT(n):
c.gen(n[2])
proc genCase(c: var Con; n: PNode) =
@@ -221,40 +458,39 @@ proc genCase(c: var Con; n: PNode) =
# elsePart
# Lend:
let isExhaustive = skipTypes(n[0].typ,
abstractVarRange-{tyTypeDesc}).kind notin {tyFloat..tyFloat128, tyString, tyCstring}
abstractVarRange-{tyTypeDesc}).kind notin {tyFloat..tyFloat128, tyString}
# we generate endings as a set of chained gotos, this is a bit awkward but it
# ensures when recursively traversing the CFG for various analysis, we don't
# artificially extended the life of each branch (for the purposes of DFA)
# beyond the minimum amount.
var endings: seq[TPosition] = @[]
c.gen(n[0])
let oldInteresting = c.interestingInstructions
let oldLen = c.code.len
for i in 1..<n.len:
let it = n[i]
if it.len == 1 or (i == n.len-1 and isExhaustive):
# treat the last branch as 'else' if this is an exhaustive case statement.
c.gen(it.lastSon)
if endings.len != 0:
c.patch(endings[^1])
else:
forkT:
forkT(it.lastSon):
c.gen(it.lastSon)
endings.add c.gotoI()
if oldInteresting == c.interestingInstructions:
setLen c.code, oldLen
else:
for i in countdown(endings.high, 0):
c.patch(endings[i])
if endings.len != 0:
c.patch(endings[^1])
endings.add c.gotoI(it.lastSon)
proc genBlock(c: var Con; n: PNode) =
withBlock(n[0].sym):
c.gen(n[1])
proc genBreakOrRaiseAux(c: var Con, i: int, n: PNode) =
let lab1 = c.gotoI()
let lab1 = c.gotoI(n)
if c.blocks[i].isTryBlock:
c.blocks[i].raiseFixups.add lab1
else:
var trailingFinales: seq[PNode] = @[]
if c.inTryStmt > 0:
# Ok, we are in a try, lets see which (if any) try's we break out from:
var trailingFinales: seq[PNode]
if c.inTryStmt > 0: #Ok, we are in a try, lets see which (if any) try's we break out from:
for b in countdown(c.blocks.high, i):
if c.blocks[b].isTryBlock:
trailingFinales.add c.blocks[b].finale
@@ -262,7 +498,6 @@ proc genBreakOrRaiseAux(c: var Con, i: int, n: PNode) =
c.blocks[i].breakFixups.add (lab1, trailingFinales)
proc genBreak(c: var Con; n: PNode) =
inc c.interestingInstructions
if n[0].kind == nkSym:
for i in countdown(c.blocks.high, 0):
if not c.blocks[i].isTryBlock and c.blocks[i].label == n[0].sym:
@@ -293,9 +528,9 @@ proc genTry(c: var Con; n: PNode) =
for i in 1..<n.len:
let it = n[i]
if it.kind != nkFinally:
forkT:
forkT(it):
c.gen(it.lastSon)
endings.add c.gotoI()
endings.add c.gotoI(it)
for i in countdown(endings.high, 0):
c.patch(endings[i])
@@ -303,28 +538,26 @@ proc genTry(c: var Con; n: PNode) =
if fin.kind == nkFinally:
c.gen(fin[0])
template genNoReturn(c: var Con) =
template genNoReturn(c: var Con; n: PNode) =
# leave the graph
c.code.add Instr(kind: goto, dest: high(int) - c.code.len)
c.code.add Instr(n: n, kind: goto, dest: high(int) - c.code.len)
proc genRaise(c: var Con; n: PNode) =
inc c.interestingInstructions
gen(c, n[0])
if c.inTryStmt > 0:
for i in countdown(c.blocks.high, 0):
if c.blocks[i].isTryBlock:
genBreakOrRaiseAux(c, i, n)
return
assert false # Unreachable
assert false #Unreachable
else:
genNoReturn(c)
genNoReturn(c, n)
proc genImplicitReturn(c: var Con) =
if c.owner.kind in {skProc, skFunc, skMethod, skIterator, skConverter} and resultPos < c.owner.ast.len:
gen(c, c.owner.ast[resultPos])
proc genReturn(c: var Con; n: PNode) =
inc c.interestingInstructions
if n[0].kind != nkEmpty:
gen(c, n[0])
else:
@@ -333,6 +566,124 @@ proc genReturn(c: var Con; n: PNode) =
const
InterestingSyms = {skVar, skResult, skLet, skParam, skForVar, skTemp}
PathKinds0 = {nkDotExpr, nkCheckedFieldExpr,
nkBracketExpr, nkDerefExpr, nkHiddenDeref,
nkAddr, nkHiddenAddr,
nkObjDownConv, nkObjUpConv}
PathKinds1 = {nkHiddenStdConv, nkHiddenSubConv}
proc skipConvDfa*(n: PNode): PNode =
result = n
while true:
case result.kind
of nkObjDownConv, nkObjUpConv:
result = result[0]
of PathKinds1:
result = result[1]
else: break
type AliasKind* = enum
yes, no, maybe
proc aliases*(obj, field: PNode): AliasKind =
# obj -> field:
# x -> x: true
# x -> x.f: true
# x.f -> x: false
# x.f -> x.f: true
# x.f -> x.v: false
# x -> x[0]: true
# x[0] -> x: false
# x[0] -> x[0]: true
# x[0] -> x[1]: false
# x -> x[i]: true
# x[i] -> x: false
# x[i] -> x[i]: maybe; Further analysis could make this return true when i is a runtime-constant
# x[i] -> x[j]: maybe; also returns maybe if only one of i or j is a compiletime-constant
template collectImportantNodes(result, n) =
var result: seq[PNode]
var n = n
while true:
case n.kind
of PathKinds0 - {nkDotExpr, nkCheckedFieldExpr, nkBracketExpr}:
n = n[0]
of PathKinds1:
n = n[1]
of nkDotExpr, nkCheckedFieldExpr, nkBracketExpr:
result.add n
n = n[0]
of nkSym:
result.add n; break
else: return no
collectImportantNodes(objImportantNodes, obj)
collectImportantNodes(fieldImportantNodes, field)
# If field is less nested than obj, then it cannot be part of/aliased by obj
if fieldImportantNodes.len < objImportantNodes.len: return no
result = yes
for i in 1..objImportantNodes.len:
# We compare the nodes leading to the location of obj and field
# with each other.
# We continue until they diverge, in which case we return no, or
# until we reach the location of obj, in which case we do not need
# to look further, since field must be part of/aliased by obj now.
# If we encounter an element access using an index which is a runtime value,
# we simply return maybe instead of yes; should further nodes not diverge.
let currFieldPath = fieldImportantNodes[^i]
let currObjPath = objImportantNodes[^i]
if currFieldPath.kind != currObjPath.kind:
return no
case currFieldPath.kind
of nkSym:
if currFieldPath.sym != currObjPath.sym: return no
of nkDotExpr:
if currFieldPath[1].sym != currObjPath[1].sym: return no
of nkCheckedFieldExpr:
if currFieldPath[0][1].sym != currObjPath[0][1].sym: return no
of nkBracketExpr:
if currFieldPath[1].kind in nkLiterals and currObjPath[1].kind in nkLiterals:
if currFieldPath[1].intVal != currObjPath[1].intVal:
return no
else:
result = maybe
else: assert false # unreachable
proc isAnalysableFieldAccess*(orig: PNode; owner: PSym): bool =
var n = orig
while true:
case n.kind
of PathKinds0 - {nkHiddenDeref, nkDerefExpr}:
n = n[0]
of PathKinds1:
n = n[1]
of nkHiddenDeref, nkDerefExpr:
# We "own" sinkparam[].loc but not ourVar[].location as it is a nasty
# pointer indirection.
# bug #14159, we cannot reason about sinkParam[].location as it can
# still be shared for tyRef.
n = n[0]
return n.kind == nkSym and n.sym.owner == owner and
(n.sym.typ.skipTypes(abstractInst-{tyOwned}).kind in {tyOwned})
else: break
# XXX Allow closure deref operations here if we know
# the owner controlled the closure allocation?
result = n.kind == nkSym and n.sym.owner == owner and
{sfGlobal, sfThread, sfCursor} * n.sym.flags == {} and
(n.sym.kind != skParam or isSinkParam(n.sym)) # or n.sym.typ.kind == tyVar)
# Note: There is a different move analyzer possible that checks for
# consume(param.key); param.key = newValue for all paths. Then code like
#
# let splited = split(move self.root, x)
# self.root = merge(splited.lower, splited.greater)
#
# could be written without the ``move self.root``. However, this would be
# wrong! Then the write barrier for the ``self.root`` assignment would
# free the old data and all is lost! Lesson: Don't be too smart, trust the
# lower level C++ optimizer to specialize this code.
proc skipTrivials(c: var Con, n: PNode): PNode =
result = n
@@ -351,9 +702,8 @@ proc genUse(c: var Con; orig: PNode) =
let n = c.skipTrivials(orig)
if n.kind == nkSym:
if n.sym.kind in InterestingSyms and n.sym == c.root:
c.code.add Instr(kind: use, n: orig)
inc c.interestingInstructions
if n.sym.kind in InterestingSyms:
c.code.add Instr(n: orig, kind: use)
else:
gen(c, n)
@@ -361,9 +711,7 @@ proc genDef(c: var Con; orig: PNode) =
let n = c.skipTrivials(orig)
if n.kind == nkSym and n.sym.kind in InterestingSyms:
if n.sym == c.root:
c.code.add Instr(kind: def, n: orig)
inc c.interestingInstructions
c.code.add Instr(n: orig, kind: def)
proc genCall(c: var Con; n: PNode) =
gen(c, n[0])
@@ -371,17 +719,18 @@ proc genCall(c: var Con; n: PNode) =
if t != nil: t = t.skipTypes(abstractInst)
for i in 1..<n.len:
gen(c, n[i])
if t != nil and i < t.signatureLen and isOutParam(t[i]):
# Pass by 'out' is a 'must def'. Good enough for a move optimizer.
genDef(c, n[i])
when false:
if t != nil and i < t.len and t[i].kind == tyOut:
# Pass by 'out' is a 'must def'. Good enough for a move optimizer.
genDef(c, n[i])
# every call can potentially raise:
if c.inTryStmt > 0 and canRaiseConservative(n[0]):
inc c.interestingInstructions
# we generate the instruction sequence:
# fork lab1
# goto exceptionHandler (except or finally)
# lab1:
forkT:
# join F1
forkT(n):
for i in countdown(c.blocks.high, 0):
if c.blocks[i].isTryBlock:
genBreakOrRaiseAux(c, i, n)
@@ -419,11 +768,11 @@ proc gen(c: var Con; n: PNode) =
else:
genCall(c, n)
if sfNoReturn in n[0].sym.flags:
genNoReturn(c)
genNoReturn(c, n)
else:
genCall(c, n)
of nkCharLit..nkNilLit: discard
of nkAsgn, nkFastAsgn, nkSinkAsgn:
of nkAsgn, nkFastAsgn:
gen(c, n[1])
if n[0].kind in PathKinds0:
@@ -439,8 +788,8 @@ proc gen(c: var Con; n: PNode) =
genUse(c, n)
of nkIfStmt, nkIfExpr: genIf(c, n)
of nkWhenStmt:
# This is "when nimvm" node. Chose the second branch.
gen(c, n[1][0])
# This is "when nimvm" node. Chose the first branch.
gen(c, n[0][1])
of nkCaseStmt: genCase(c, n)
of nkWhileStmt: genWhile(c, n)
of nkBlockExpr, nkBlockStmt: genBlock(c, n)
@@ -457,35 +806,16 @@ proc gen(c: var Con; n: PNode) =
of nkConv, nkExprColonExpr, nkExprEqExpr, nkCast, PathKinds1:
gen(c, n[1])
of nkVarSection, nkLetSection: genVarSection(c, n)
of nkDefer: raiseAssert "dfa construction pass requires the elimination of 'defer'"
of nkDefer: doAssert false, "dfa construction pass requires the elimination of 'defer'"
else: discard
when false:
proc optimizeJumps(c: var ControlFlowGraph) =
for i in 0..<c.len:
case c[i].kind
of goto, fork:
var pc = i + c[i].dest
if pc < c.len and c[pc].kind == goto:
while pc < c.len and c[pc].kind == goto:
let newPc = pc + c[pc].dest
if newPc > pc:
pc = newPc
else:
break
c[i].dest = pc - i
of loop, def, use: discard
proc constructCfg*(s: PSym; body: PNode; root: PSym): ControlFlowGraph =
proc constructCfg*(s: PSym; body: PNode): ControlFlowGraph =
## constructs a control flow graph for ``body``.
var c = Con(code: @[], blocks: @[], owner: s, root: root)
var c = Con(code: @[], blocks: @[], owner: s)
withBlock(s):
gen(c, body)
if root.kind == skResult:
genImplicitReturn(c)
when defined(gcArc) or defined(gcOrc) or defined(gcAtomicArc) or defined(gcYrc):
genImplicitReturn(c)
when defined(gcArc) or defined(gcOrc):
result = c.code # will move
else:
shallowCopy(result, c.code)
when false:
optimizeJumps result

File diff suppressed because it is too large Load Diff

View File

@@ -11,7 +11,7 @@
# semantic checking.
import
options, ast, msgs, docgen, lineinfos, pathutils, packages
options, ast, msgs, passes, docgen, lineinfos, pathutils
from modulegraphs import ModuleGraph, PPassContext
@@ -23,7 +23,7 @@ type
PGen = ref TGen
proc shouldProcess(g: PGen): bool =
(optWholeProject in g.doc.conf.globalOptions and g.doc.conf.belongsToProjectPackage(g.module)) or
(optWholeProject in g.doc.conf.globalOptions and g.module.getnimblePkgId == g.doc.conf.mainPackageId) or
sfMainModule in g.module.flags or g.config.projectMainIdx == g.module.info.fileIndex
template closeImpl(body: untyped) {.dirty.} =
@@ -38,27 +38,25 @@ template closeImpl(body: untyped) {.dirty.} =
except IOError:
discard
proc closeDoc*(graph: ModuleGraph; p: PPassContext, n: PNode): PNode =
result = nil
proc close(graph: ModuleGraph; p: PPassContext, n: PNode): PNode =
closeImpl:
writeOutput(g.doc, useWarning, groupedToc)
proc closeJson*(graph: ModuleGraph; p: PPassContext, n: PNode): PNode =
result = nil
proc closeJson(graph: ModuleGraph; p: PPassContext, n: PNode): PNode =
closeImpl:
writeOutputJson(g.doc, useWarning)
proc processNode*(c: PPassContext, n: PNode): PNode =
proc processNode(c: PPassContext, n: PNode): PNode =
result = n
var g = PGen(c)
if shouldProcess(g):
generateDoc(g.doc, n, n, g.config)
generateDoc(g.doc, n, n)
proc processNodeJson*(c: PPassContext, n: PNode): PNode =
proc processNodeJson(c: PPassContext, n: PNode): PNode =
result = n
var g = PGen(c)
if shouldProcess(g):
generateJson(g.doc, n, g.config, false)
generateJson(g.doc, n, false)
template myOpenImpl(ext: untyped) {.dirty.} =
var g: PGen
@@ -66,15 +64,25 @@ template myOpenImpl(ext: untyped) {.dirty.} =
g.module = module
g.config = graph.config
var d = newDocumentor(AbsoluteFile toFullPath(graph.config, FileIndex module.position),
graph.cache, graph.config, ext, module, hasToc = true)
graph.cache, graph.config, ext, module)
d.hasToc = true
g.doc = d
result = g
proc openHtml*(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
proc myOpen(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
myOpenImpl(HtmlExt)
proc openTex*(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
proc myOpenTex(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
myOpenImpl(TexExt)
proc openJson*(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
proc myOpenJson(graph: ModuleGraph; module: PSym; idgen: IdGenerator): PPassContext =
myOpenImpl(JsonExt)
const docgen2Pass* = makePass(open = myOpen, process = processNode, close = close)
const docgen2TexPass* = makePass(open = myOpenTex, process = processNode,
close = close)
const docgen2JsonPass* = makePass(open = myOpenJson, process = processNodeJson,
close = closeJson)
proc finishDoc2Pass*(project: string) =
discard

View File

@@ -1,20 +1,16 @@
import ast, idents, lineinfos, modulegraphs, magicsys
when defined(nimPreviewSlimSystem):
import std/assertions
proc genEnumToStrProc*(t: PType; info: TLineInfo; g: ModuleGraph; idgen: IdGenerator): PSym =
result = newSym(skProc, getIdent(g.cache, "$"), idgen, t.owner, info)
result = newSym(skProc, getIdent(g.cache, "$"), nextSymId idgen, t.owner, info)
let dest = newSym(skParam, getIdent(g.cache, "e"), idgen, result, info)
let dest = newSym(skParam, getIdent(g.cache, "e"), nextSymId idgen, result, info)
dest.typ = t
let res = newSym(skResult, getIdent(g.cache, "result"), idgen, result, info)
let res = newSym(skResult, getIdent(g.cache, "result"), nextSymId idgen, result, info)
res.typ = getSysType(g, info, tyString)
result.typ = newType(tyProc, idgen, t.owner)
result.typ = newType(tyProc, nextTypeId idgen, t.owner)
result.typ.n = newNodeI(nkFormalParams, info)
rawAddSon(result.typ, res.typ)
result.typ.n.add newNodeI(nkEffectList, info)
@@ -30,13 +26,9 @@ proc genEnumToStrProc*(t: PType; info: TLineInfo; g: ModuleGraph; idgen: IdGener
assert(t.n[i].kind == nkSym)
var field = t.n[i].sym
let val = if field.ast == nil: field.name.s else: field.ast.strVal
caseStmt.add newTree(nkOfBranch, newIntTypeNode(field.position, t),
caseStmt.add newTree(nkOfBranch, newSymNode(field),
newTree(nkStmtList, newTree(nkFastAsgn, newSymNode(res), newStrNode(val, info))))
#newIntTypeNode(nkIntLit, field.position, t)
# safety branch for invalid data:
caseStmt.add newTree(nkElse,
newTree(nkStmtList, newTree(nkFastAsgn, newSymNode(res),
newStrNode("", info))))
body.add(caseStmt)
@@ -47,7 +39,8 @@ proc genEnumToStrProc*(t: PType; info: TLineInfo; g: ModuleGraph; idgen: IdGener
n[bodyPos] = body
n[resultPos] = newSymNode(res)
result.ast = n
incl result.flagsImpl, {sfFromGeneric, sfNeverRaises}
incl result.flags, sfFromGeneric
incl result.flags, sfNeverRaises
proc searchObjCaseImpl(obj: PNode; field: PSym): PNode =
case obj.kind
@@ -59,27 +52,26 @@ proc searchObjCaseImpl(obj: PNode; field: PSym): PNode =
if obj.kind == nkRecCase and obj[0].kind == nkSym and obj[0].sym == field:
result = obj
else:
result = nil
for x in obj:
result = searchObjCaseImpl(x, field)
if result != nil: break
proc searchObjCase(t: PType; field: PSym): PNode =
result = searchObjCaseImpl(t.n, field)
if result == nil and t.baseClass != nil:
result = searchObjCase(t.baseClass.skipTypes({tyAlias, tyGenericInst, tyRef, tyPtr}), field)
if result == nil and t.len > 0:
result = searchObjCase(t[0].skipTypes({tyAlias, tyGenericInst, tyRef, tyPtr}), field)
doAssert result != nil
proc genCaseObjDiscMapping*(t: PType; field: PSym; info: TLineInfo; g: ModuleGraph; idgen: IdGenerator): PSym =
result = newSym(skProc, getIdent(g.cache, "objDiscMapping"), idgen, t.owner, info)
result = newSym(skProc, getIdent(g.cache, "objDiscMapping"), nextSymId idgen, t.owner, info)
let dest = newSym(skParam, getIdent(g.cache, "e"), idgen, result, info)
let dest = newSym(skParam, getIdent(g.cache, "e"), nextSymId idgen, result, info)
dest.typ = field.typ
let res = newSym(skResult, getIdent(g.cache, "result"), idgen, result, info)
let res = newSym(skResult, getIdent(g.cache, "result"), nextSymId idgen, result, info)
res.typ = getSysType(g, info, tyUInt8)
result.typ = newType(tyProc, idgen, t.owner)
result.typ = newType(tyProc, nextTypeId idgen, t.owner)
result.typ.n = newNodeI(nkFormalParams, info)
rawAddSon(result.typ, res.typ)
result.typ.n.add newNodeI(nkEffectList, info)
@@ -109,4 +101,5 @@ proc genCaseObjDiscMapping*(t: PType; field: PSym; info: TLineInfo; g: ModuleGra
n[bodyPos] = body
n[resultPos] = newSymNode(res)
result.ast = n
incl result.flagsImpl, {sfFromGeneric, sfNeverRaises}
incl result.flags, sfFromGeneric
incl result.flags, sfNeverRaises

View File

@@ -10,11 +10,7 @@
## This module contains support code for new-styled error
## handling via an `nkError` node kind.
import ast, renderer, options, types
import std/strutils
when defined(nimPreviewSlimSystem):
import std/assertions
import ast, renderer, options, strutils, types
type
ErrorKind* = enum ## expand as you need.
@@ -41,8 +37,7 @@ proc newError*(wrongNode: PNode; k: ErrorKind; args: varargs[PNode]): PNode =
let innerError = errorSubNode(wrongNode)
if innerError != nil:
return innerError
var idgen = idGeneratorForPackage(-1'i32)
result = newNodeIT(nkError, wrongNode.info, newType(tyError, idgen, nil))
result = newNodeIT(nkError, wrongNode.info, newType(tyError, ItemId(module: -1, item: -1), nil))
result.add wrongNode
result.add newIntNode(nkIntLit, ord(k))
for a in args: result.add a
@@ -52,8 +47,7 @@ proc newError*(wrongNode: PNode; msg: string): PNode =
let innerError = errorSubNode(wrongNode)
if innerError != nil:
return innerError
var idgen = idGeneratorForPackage(-1'i32)
result = newNodeIT(nkError, wrongNode.info, newType(tyError, idgen, nil))
result = newNodeIT(nkError, wrongNode.info, newType(tyError, ItemId(module: -1, item: -1), nil))
result.add wrongNode
result.add newIntNode(nkIntLit, ord(CustomError))
result.add newStrNode(msg, wrongNode.info)

View File

@@ -9,11 +9,9 @@
## This file implements the FFI part of the evaluator for Nim code.
import ast, types, options, msgs, lineinfos
from std/os import getAppFilename
import libffi/libffi
import std/[tables, dynlib]
import ast, types, options, tables, dynlib, msgs, lineinfos
from os import getAppFilename
import pkg/libffi
when defined(windows):
const libcDll = "msvcrt.dll"
@@ -39,10 +37,9 @@ else:
var gExeHandle = loadLib()
proc getDll(conf: ConfigRef, cache: var TDllCache; dll: string; info: TLineInfo): pointer =
result = nil
if dll in cache:
return cache[dll]
var libs: seq[string] = @[]
var libs: seq[string]
libCandidates(dll, libs)
for c in libs:
result = loadLib(c)
@@ -64,23 +61,23 @@ proc importcSymbol*(conf: ConfigRef, sym: PSym): PNode =
let lib = sym.annex
if lib != nil and lib.path.kind notin {nkStrLit..nkTripleStrLit}:
globalError(conf, sym.info, "dynlib needs to be a string lit")
var theAddr: pointer = nil
var theAddr: pointer
if (lib.isNil or lib.kind == libHeader) and not gExeHandle.isNil:
libPathMsg = "current exe: " & getAppFilename() & " nor libc: " & libcDll
# first try this exe itself:
theAddr = gExeHandle.symAddr(name.cstring)
theAddr = gExeHandle.symAddr(name)
# then try libc:
if theAddr.isNil:
let dllhandle = getDll(conf, gDllCache, libcDll, sym.info)
theAddr = dllhandle.symAddr(name.cstring)
theAddr = dllhandle.symAddr(name)
elif not lib.isNil:
let dll = if lib.kind == libHeader: libcDll else: lib.path.strVal
libPathMsg = dll
let dllhandle = getDll(conf, gDllCache, dll, sym.info)
theAddr = dllhandle.symAddr(name.cstring)
theAddr = dllhandle.symAddr(name)
if theAddr.isNil: globalError(conf, sym.info,
"cannot import symbol: " & name & " from " & libPathMsg)
result.intVal = cast[int](theAddr)
result.intVal = cast[ByteAddress](theAddr)
proc mapType(conf: ConfigRef, t: ast.PType): ptr libffi.Type =
if t == nil: return addr libffi.type_void
@@ -99,7 +96,7 @@ proc mapType(conf: ConfigRef, t: ast.PType): ptr libffi.Type =
tyTyped, tyTypeDesc, tyProc, tyArray, tyStatic, tyNil:
result = addr libffi.type_pointer
of tyDistinct, tyAlias, tySink:
result = mapType(conf, t.skipModifier)
result = mapType(conf, t[0])
else:
result = nil
# too risky:
@@ -111,13 +108,12 @@ proc mapCallConv(conf: ConfigRef, cc: TCallingConvention, info: TLineInfo): TABI
of ccStdCall: result = when defined(windows) and defined(x86): STDCALL else: DEFAULT_ABI
of ccCDecl: result = DEFAULT_ABI
else:
result = default(TABI)
globalError(conf, info, "cannot map calling convention to FFI")
template rd(typ, p: untyped): untyped = (cast[ptr typ](p))[]
template wr(typ, p, v: untyped): untyped = (cast[ptr typ](p))[] = v
template rd(T, p: untyped): untyped = (cast[ptr T](p))[]
template wr(T, p, v: untyped): untyped = (cast[ptr T](p))[] = v
template `+!`(x, y: untyped): untyped =
cast[pointer](cast[int](x) + y)
cast[pointer](cast[ByteAddress](x) + y)
proc packSize(conf: ConfigRef, v: PNode, typ: PType): int =
## computes the size of the blob
@@ -126,18 +122,16 @@ proc packSize(conf: ConfigRef, v: PNode, typ: PType): int =
if v.kind in {nkNilLit, nkPtrLit}:
result = sizeof(pointer)
else:
result = sizeof(pointer) + packSize(conf, v[0], typ.elementType)
result = sizeof(pointer) + packSize(conf, v[0], typ.lastSon)
of tyDistinct, tyGenericInst, tyAlias, tySink:
result = packSize(conf, v, typ.skipModifier)
result = packSize(conf, v, typ[0])
of tyArray:
# consider: ptr array[0..1000_000, int] which is common for interfacing;
# we use the real length here instead
if v.kind in {nkNilLit, nkPtrLit}:
result = sizeof(pointer)
elif v.len != 0:
result = v.len * packSize(conf, v[0], typ.elementType)
else:
result = 0
result = v.len * packSize(conf, v[0], typ[1])
else:
result = getSize(conf, typ).int
@@ -146,7 +140,6 @@ proc pack(conf: ConfigRef, v: PNode, typ: PType, res: pointer)
proc getField(conf: ConfigRef, n: PNode; position: int): PSym =
case n.kind
of nkRecList:
result = nil
for i in 0..<n.len:
result = getField(conf, n[i], position)
if result != nil: return
@@ -161,8 +154,7 @@ proc getField(conf: ConfigRef, n: PNode; position: int): PSym =
else: internalError(conf, n.info, "getField(record case branch)")
of nkSym:
if n.sym.position == position: result = n.sym
else: result = nil
else: result = nil
else: discard
proc packObject(conf: ConfigRef, x: PNode, typ: PType, res: pointer) =
internalAssert conf, x.kind in {nkObjConstr, nkPar, nkTupleConstr}
@@ -185,8 +177,8 @@ const maxPackDepth = 20
var packRecCheck = 0
proc pack(conf: ConfigRef, v: PNode, typ: PType, res: pointer) =
template awr(typ, v: untyped): untyped =
wr(typ, res, v)
template awr(T, v: untyped): untyped =
wr(T, res, v)
case typ.kind
of tyBool: awr(bool, v.intVal != 0)
@@ -234,19 +226,19 @@ proc pack(conf: ConfigRef, v: PNode, typ: PType, res: pointer) =
packRecCheck = 0
globalError(conf, v.info, "cannot map value to FFI " & typeToString(v.typ))
inc packRecCheck
pack(conf, v[0], typ.elementType, res +! sizeof(pointer))
pack(conf, v[0], typ.lastSon, res +! sizeof(pointer))
dec packRecCheck
awr(pointer, res +! sizeof(pointer))
of tyArray:
let baseSize = getSize(conf, typ.elementType)
let baseSize = getSize(conf, typ[1])
for i in 0..<v.len:
pack(conf, v[i], typ.elementType, res +! i * baseSize)
pack(conf, v[i], typ[1], res +! i * baseSize)
of tyObject, tyTuple:
packObject(conf, v, typ, res)
of tyNil:
discard
of tyDistinct, tyGenericInst, tyAlias, tySink:
pack(conf, v, typ.skipModifier, res)
pack(conf, v, typ[0], res)
else:
globalError(conf, v.info, "cannot map value to FFI " & typeToString(v.typ))
@@ -304,9 +296,9 @@ proc unpackArray(conf: ConfigRef, x: pointer, typ: PType, n: PNode): PNode =
result = n
if result.kind != nkBracket:
globalError(conf, n.info, "cannot map value from FFI")
let baseSize = getSize(conf, typ.elementType)
let baseSize = getSize(conf, typ[1])
for i in 0..<result.len:
result[i] = unpack(conf, x +! i * baseSize, typ.elementType, result[i])
result[i] = unpack(conf, x +! i * baseSize, typ[1], result[i])
proc canonNodeKind(k: TNodeKind): TNodeKind =
case k
@@ -364,7 +356,6 @@ proc unpack(conf: ConfigRef, x: pointer, typ: PType, n: PNode): PNode =
of 4: awi(nkIntLit, rd(int32, x).BiggestInt)
of 8: awi(nkIntLit, rd(int64, x).BiggestInt)
else:
result = nil
globalError(conf, n.info, "cannot map value from FFI (tyEnum, tySet)")
of tyFloat: awf(nkFloatLit, rd(float, x))
of tyFloat32: awf(nkFloat32Lit, rd(float32, x))
@@ -378,19 +369,18 @@ proc unpack(conf: ConfigRef, x: pointer, typ: PType, n: PNode): PNode =
# in their unboxed representation so nothing it to be unpacked:
result = n
else:
awi(nkPtrLit, cast[int](p))
awi(nkPtrLit, cast[ByteAddress](p))
of tyPtr, tyRef, tyVar, tyLent:
let p = rd(pointer, x)
if p.isNil:
setNil()
elif n == nil or n.kind == nkPtrLit:
awi(nkPtrLit, cast[int](p))
awi(nkPtrLit, cast[ByteAddress](p))
elif n != nil and n.len == 1:
internalAssert(conf, n.kind == nkRefTy)
n[0] = unpack(conf, p, typ.elementType, n[0])
n[0] = unpack(conf, p, typ.lastSon, n[0])
result = n
else:
result = nil
globalError(conf, n.info, "cannot map value from FFI " & typeToString(typ))
of tyObject, tyTuple:
result = unpackObject(conf, x, typ, n)
@@ -405,10 +395,9 @@ proc unpack(conf: ConfigRef, x: pointer, typ: PType, n: PNode): PNode =
of tyNil:
setNil()
of tyDistinct, tyGenericInst, tyAlias, tySink:
result = unpack(conf, x, typ.skipModifier, n)
result = unpack(conf, x, typ.lastSon, n)
else:
# XXX what to do with 'array' here?
result = nil
globalError(conf, n.info, "cannot map value from FFI " & typeToString(typ))
proc fficast*(conf: ConfigRef, x: PNode, destTyp: PType): PNode =
@@ -434,8 +423,8 @@ proc fficast*(conf: ConfigRef, x: PNode, destTyp: PType): PNode =
proc callForeignFunction*(conf: ConfigRef, call: PNode): PNode =
internalAssert conf, call[0].kind == nkPtrLit
var cif: TCif = default(TCif)
var sig: ParamList = default(ParamList)
var cif: TCif
var sig: ParamList
# use the arguments' types for varargs support:
for i in 1..<call.len:
sig[i-1] = mapType(conf, call[i].typ)
@@ -444,24 +433,24 @@ proc callForeignFunction*(conf: ConfigRef, call: PNode): PNode =
let typ = call[0].typ
if prep_cif(cif, mapCallConv(conf, typ.callConv, call.info), cuint(call.len-1),
mapType(conf, typ.returnType), sig) != OK:
mapType(conf, typ[0]), sig) != OK:
globalError(conf, call.info, "error in FFI call")
var args: ArgList = default(ArgList)
var args: ArgList
let fn = cast[pointer](call[0].intVal)
for i in 1..<call.len:
var t = call[i].typ
args[i-1] = alloc0(packSize(conf, call[i], t))
pack(conf, call[i], t, args[i-1])
let retVal = if isEmptyType(typ.returnType): pointer(nil)
else: alloc(getSize(conf, typ.returnType).int)
let retVal = if isEmptyType(typ[0]): pointer(nil)
else: alloc(getSize(conf, typ[0]).int)
libffi.call(cif, fn, retVal, args)
if retVal.isNil:
result = newNode(nkEmpty)
else:
result = unpack(conf, retVal, typ.returnType, nil)
result = unpack(conf, retVal, typ[0], nil)
result.info = call.info
if retVal != nil: dealloc retVal
@@ -474,8 +463,8 @@ proc callForeignFunction*(conf: ConfigRef, fn: PNode, fntyp: PType,
info: TLineInfo): PNode =
internalAssert conf, fn.kind == nkPtrLit
var cif: TCif = default(TCif)
var sig: ParamList = default(ParamList)
var cif: TCif
var sig: ParamList
for i in 0..len-1:
var aTyp = args[i+start].typ
if aTyp.isNil:
@@ -489,7 +478,7 @@ proc callForeignFunction*(conf: ConfigRef, fn: PNode, fntyp: PType,
mapType(conf, fntyp[0]), sig) != OK:
globalError(conf, info, "error in FFI call")
var cargs: ArgList = default(ArgList)
var cargs: ArgList
let fn = cast[pointer](fn.intVal)
for i in 0..len-1:
let t = args[i+start].typ

View File

@@ -9,16 +9,16 @@
## Template evaluation engine. Now hygienic.
import options, ast, astalgo, msgs, renderer, lineinfos, idents, trees
import std/strutils
import
strutils, options, ast, astalgo, msgs, renderer, lineinfos, idents
type
TemplCtx = object
owner, genSymOwner: PSym
instLines: bool # use the instantiation lines numbers
isDeclarative: bool
mapping: SymMapping # every gensym'ed symbol needs to be mapped to some
# new symbol
mapping: TIdTable # every gensym'ed symbol needs to be mapped to some
# new symbol
config: ConfigRef
ic: IdentCache
instID: int
@@ -26,26 +26,13 @@ type
proc copyNode(ctx: TemplCtx, a, b: PNode): PNode =
result = copyNode(a)
if ctx.instLines: setInfoRecursive(result, b.info)
if ctx.instLines: result.info = b.info
proc evalTemplateAux(templ, actual: PNode, c: var TemplCtx, result: PNode) =
template handleParam(param) =
let x = param
if x.kind == nkArgList:
for y in items(x): result.add(y)
elif nfDefaultRefsParam in x.flags:
# value of default param needs to be evaluated like template body
# if it contains other template params
var res: PNode
if isAtom(x):
res = newNodeI(nkPar, x.info)
evalTemplateAux(x, actual, c, res)
if res.len == 1: res = res[0]
else:
res = copyNode(x)
for i in 0..<x.safeLen:
evalTemplateAux(x[i], actual, c, res)
result.add res
else:
result.add copyTree(x)
@@ -57,19 +44,18 @@ proc evalTemplateAux(templ, actual: PNode, c: var TemplCtx, result: PNode) =
handleParam actual[s.position]
elif (s.owner != nil) and (s.kind == skGenericParam or
s.kind == skType and s.typ != nil and s.typ.kind == tyGenericParam):
handleParam actual[s.owner.typ.signatureLen + s.position - 1]
handleParam actual[s.owner.typ.len + s.position - 1]
else:
internalAssert c.config, sfGenSym in s.flags or s.kind == skType
var x = idTableGet(c.mapping, s)
var x = PSym(idTableGet(c.mapping, s))
if x == nil:
x = copySym(s, c.idgen)
x = copySym(s, nextSymId(c.idgen))
# sem'check needs to set the owner properly later, see bug #9476
setOwner(x, nil) # c.genSymOwner
x.owner = nil # c.genSymOwner
#if x.kind == skParam and x.owner.kind == skModule:
# internalAssert c.config, false
idTablePut(c.mapping, s, x)
if sfGenSym in s.flags:
# TODO: getIdent(c.ic, "`" & x.name.s & "`gensym" & $c.instID)
result.add newIdentNode(getIdent(c.ic, x.name.s & "`gensym" & $c.instID),
if c.instLines: actual.info else: templ.info)
else:
@@ -130,7 +116,7 @@ proc evalTemplateArgs(n: PNode, s: PSym; conf: ConfigRef; fromHlo: bool): PNode
# now that we have working untyped parameters.
genericParams = if fromHlo: 0
else: s.ast[genericParamsPos].len
expectedRegularParams = s.typ.paramsLen
expectedRegularParams = s.typ.len-1
givenRegularParams = totalParams - genericParams
if givenRegularParams < 0: givenRegularParams = 0
@@ -196,14 +182,14 @@ proc evalTemplate*(n: PNode, tmpl, genSymOwner: PSym;
# replace each param by the corresponding node:
var args = evalTemplateArgs(n, tmpl, conf, fromHlo)
var ctx = TemplCtx(owner: tmpl,
genSymOwner: genSymOwner,
config: conf,
ic: ic,
mapping: initSymMapping(),
instID: instID[],
idgen: idgen
)
var ctx: TemplCtx
ctx.owner = tmpl
ctx.genSymOwner = genSymOwner
ctx.config = conf
ctx.ic = ic
initIdTable(ctx.mapping)
ctx.instID = instID[]
ctx.idgen = idgen
let body = tmpl.ast[bodyPos]
#echo "instantion of ", renderTree(body, {renderIds})
@@ -218,7 +204,7 @@ proc evalTemplate*(n: PNode, tmpl, genSymOwner: PSym;
result = copyNode(body)
ctx.instLines = sfCallsite in tmpl.flags
if ctx.instLines:
setInfoRecursive(result, n.info)
result.info = n.info
for i in 0..<body.safeLen:
evalTemplateAux(body[i], args, ctx, result)
result.flags.incl nfFromTemplate

View File

@@ -1,131 +0,0 @@
#
#
# The Nim Compiler
# (c) Copyright 2023 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
import lineinfos, ast, types
proc caseObjDefaultBranch*(obj: PNode; branch: Int128): int =
result = 0
for i in 1 ..< obj.len:
for j in 0 .. obj[i].len - 2:
if obj[i][j].kind == nkRange:
let x = getOrdValue(obj[i][j][0])
let y = getOrdValue(obj[i][j][1])
if branch >= x and branch <= y:
return i
elif getOrdValue(obj[i][j]) == branch:
return i
if obj[i].len == 1:
# else branch
return i
return 1
template newZero(t: PType; info: TLineInfo; k = nkIntLit): PNode = newNodeIT(k, info, t)
proc expandDefault*(t: PType; info: TLineInfo): PNode
proc expandField(s: PSym; info: TLineInfo): PNode =
result = newNodeIT(nkExprColonExpr, info, s.typ)
result.add newSymNode(s)
result.add expandDefault(s.typ, info)
proc expandDefaultN(n: PNode; info: TLineInfo; res: PNode) =
case n.kind
of nkRecList:
for i in 0..<n.len:
expandDefaultN(n[i], info, res)
of nkRecCase:
res.add expandField(n[0].sym, info)
var branch = Zero
let constOrNil = n[0].sym.astdef
if constOrNil != nil:
branch = getOrdValue(constOrNil)
let selectedBranch = caseObjDefaultBranch(n, branch)
let b = lastSon(n[selectedBranch])
expandDefaultN b, info, res
of nkSym:
res.add expandField(n.sym, info)
else:
discard
proc expandDefaultObj(t: PType; info: TLineInfo; res: PNode) =
if t.baseClass != nil:
expandDefaultObj(t.baseClass, info, res)
expandDefaultN(t.n, info, res)
proc expandDefault(t: PType; info: TLineInfo): PNode =
case t.kind
of tyInt: result = newZero(t, info, nkIntLit)
of tyInt8: result = newZero(t, info, nkInt8Lit)
of tyInt16: result = newZero(t, info, nkInt16Lit)
of tyInt32: result = newZero(t, info, nkInt32Lit)
of tyInt64: result = newZero(t, info, nkInt64Lit)
of tyUInt: result = newZero(t, info, nkUIntLit)
of tyUInt8: result = newZero(t, info, nkUInt8Lit)
of tyUInt16: result = newZero(t, info, nkUInt16Lit)
of tyUInt32: result = newZero(t, info, nkUInt32Lit)
of tyUInt64: result = newZero(t, info, nkUInt64Lit)
of tyFloat: result = newZero(t, info, nkFloatLit)
of tyFloat32: result = newZero(t, info, nkFloat32Lit)
of tyFloat64: result = newZero(t, info, nkFloat64Lit)
of tyFloat128: result = newZero(t, info, nkFloat64Lit)
of tyChar: result = newZero(t, info, nkCharLit)
of tyBool: result = newZero(t, info, nkIntLit)
of tyEnum:
# Could use low(T) here to finally fix old language quirks
result = newZero(t, info, nkIntLit)
of tyRange:
# Could use low(T) here to finally fix old language quirks
result = expandDefault(skipModifier t, info)
of tyVoid: result = newZero(t, info, nkEmpty)
of tySink, tyGenericInst, tyDistinct, tyAlias, tyOwned:
result = expandDefault(t.skipModifier, info)
of tyOrdinal, tyGenericBody, tyGenericParam, tyInferred, tyStatic:
if t.hasElementType:
result = expandDefault(t.skipModifier, info)
else:
result = newZero(t, info, nkEmpty)
of tyFromExpr:
if t.n != nil and t.n.typ != nil:
result = expandDefault(t.n.typ, info)
else:
result = newZero(t, info, nkEmpty)
of tyArray:
result = newZero(t, info, nkBracket)
let n = toInt64(lengthOrd(nil, t))
for i in 0..<n:
result.add expandDefault(t.elementType, info)
of tyPtr, tyRef, tyProc, tyPointer, tyCstring:
result = newZero(t, info, nkNilLit)
of tyVar, tyLent:
let e = t.elementType
if e.skipTypes(abstractInst).kind in {tyOpenArray, tyVarargs}:
# skip the modifier, `var openArray` is a (ptr, len) pair too:
result = expandDefault(e, info)
else:
result = newZero(e, info, nkNilLit)
of tySet:
result = newZero(t, info, nkCurly)
of tyObject:
result = newNodeIT(nkObjConstr, info, t)
result.add newNodeIT(nkType, info, t)
expandDefaultObj(t, info, result)
of tyTuple:
result = newZero(t, info, nkTupleConstr)
for it in t.kids:
result.add expandDefault(it, info)
of tyVarargs, tyOpenArray, tySequence, tyUncheckedArray:
result = newZero(t, info, nkBracket)
of tyString:
result = newZero(t, info, nkStrLit)
of tyNone, tyEmpty, tyUntyped, tyTyped, tyTypeDesc,
tyNil, tyGenericInvocation, tyError, tyBuiltInTypeClass,
tyUserTypeClass, tyUserTypeClassInst, tyCompositeTypeClass,
tyAnd, tyOr, tyNot, tyAnything, tyConcept, tyIterable, tyForward:
result = newZero(t, info, nkEmpty) # bug indicator

View File

@@ -12,16 +12,9 @@
# from a lineinfos file, to provide generalized procedures to compile
# nim files.
import ropes, platform, condsyms, options, msgs, lineinfos, pathutils, modulepaths
import ropes, platform, condsyms, options, msgs, lineinfos, pathutils
import std/[os, osproc, streams, sequtils, times, strtabs, json, jsonutils, sugar, parseutils]
import std / strutils except addf
when defined(nimPreviewSlimSystem):
import std/[syncio, assertions]
import ../dist/checksums/src/checksums/sha1
import std/[os, strutils, osproc, sha1, streams, sequtils, times, strtabs, json, jsonutils, sugar]
type
TInfoCCProp* = enum # properties of the C compiler:
@@ -33,7 +26,6 @@ type
hasGnuAsm, # CC's asm uses the absurd GNU assembler syntax
hasDeclspec, # CC has __declspec(X)
hasAttribute, # CC has __attribute__((X))
hasBuiltinUnreachable # CC has __builtin_unreachable
TInfoCCProps* = set[TInfoCCProp]
TInfoCC* = tuple[
name: string, # the short name of the compiler
@@ -63,7 +55,7 @@ type
# Configuration settings for various compilers.
# When adding new compilers, the cmake sources could be a good reference:
# https://cmake.org/gitweb?p=cmake.git;a=tree;f=Modules/Platform;
# http://cmake.org/gitweb?p=cmake.git;a=tree;f=Modules/Platform;
template compiler(name, settings: untyped): untyped =
proc name: TInfoCC {.compileTime.} = settings
@@ -91,12 +83,12 @@ compiler gcc:
linkLibCmd: " -l$1",
debug: "",
pic: "-fPIC",
asmStmtFrmt: "__asm__($1);$n",
asmStmtFrmt: "asm($1);$n",
structStmtFmt: "$1 $3 $2 ", # struct|union [packed] $name
produceAsm: gnuAsmListing,
cppXsupport: "-std=gnu++17 -funsigned-char",
cppXsupport: "-std=gnu++14 -funsigned-char",
props: {hasSwitchRange, hasComputedGoto, hasCpp, hasGcGuard, hasGnuAsm,
hasAttribute, hasBuiltinUnreachable})
hasAttribute})
# GNU C and C++ Compiler
compiler nintendoSwitchGCC:
@@ -121,9 +113,9 @@ compiler nintendoSwitchGCC:
asmStmtFrmt: "asm($1);$n",
structStmtFmt: "$1 $3 $2 ", # struct|union [packed] $name
produceAsm: gnuAsmListing,
cppXsupport: "-std=gnu++17 -funsigned-char",
cppXsupport: "-std=gnu++14 -funsigned-char",
props: {hasSwitchRange, hasComputedGoto, hasCpp, hasGcGuard, hasGnuAsm,
hasAttribute, hasBuiltinUnreachable})
hasAttribute})
# LLVM Frontend for GCC/G++
compiler llvmGcc:
@@ -158,15 +150,11 @@ compiler vcc:
compileTmpl: "/c$vccplatform $options $include /nologo /Fo$objfile $file",
buildGui: " /SUBSYSTEM:WINDOWS user32.lib ",
buildDll: " /LD",
buildLib: "vccexe --command:lib$vccplatform /nologo /OUT:$libfile $objfiles",
buildLib: "lib /OUT:$libfile $objfiles",
linkerExe: "cl",
linkTmpl: "$builddll$vccplatform /Fe$exefile $objfiles $buildgui /nologo $options",
includeCmd: " /I",
# HACK: we call `cl` so we have to pass `/link` for linker options,
# but users may still want to pass arguments to `cl` (see #14221)
# to deal with this, we add `/link` before each `/LIBPATH`,
# the linker ignores extra `/link`s since it's an unrecognized argument
linkDirCmd: " /link /LIBPATH:",
linkDirCmd: " /LIBPATH:",
linkLibCmd: " $1.lib",
debug: " /RTC1 /Z7 ",
pic: "",
@@ -176,22 +164,6 @@ compiler vcc:
cppXsupport: "",
props: {hasCpp, hasAssume, hasDeclspec})
# Nvidia CUDA NVCC Compiler
compiler nvcc:
result = gcc()
result.name = "nvcc"
result.compilerExe = "nvcc"
result.cppCompiler = "nvcc"
result.compileTmpl = "-c -x cu -Xcompiler=\"$options\" $include -o $objfile $file"
result.linkTmpl = "$buildgui $builddll -o $exefile $objfiles -Xcompiler=\"$options\""
# AMD HIPCC Compiler (rocm/cuda)
compiler hipcc:
result = clang()
result.name = "hipcc"
result.compilerExe = "hipcc"
result.cppCompiler = "hipcc"
compiler clangcl:
result = vcc()
result.name = "clang_cl"
@@ -257,8 +229,8 @@ compiler tcc:
linkerExe: "tcc",
linkTmpl: "-o $exefile $options $buildgui $builddll $objfiles",
includeCmd: " -I",
linkDirCmd: " -L",
linkLibCmd: " -l$1",
linkDirCmd: "", # XXX: not supported yet
linkLibCmd: "", # XXX: not supported yet
debug: " -g ",
pic: "",
asmStmtFrmt: "asm($1);$n",
@@ -305,9 +277,7 @@ const
envcc(),
icl(),
icc(),
clangcl(),
hipcc(),
nvcc()]
clangcl()]
hExt* = ".h"
@@ -341,7 +311,7 @@ proc getConfigVar(conf: ConfigRef; c: TSystemCC, suffix: string): string =
var fullSuffix = suffix
case conf.backend
of backendCpp, backendJs, backendObjc: fullSuffix = "." & $conf.backend & suffix
of backendC, backendNif: discard
of backendC: discard
of backendInvalid:
# during parsing of cfg files; we don't know the backend yet, no point in
# guessing wrong thing
@@ -353,9 +323,7 @@ proc getConfigVar(conf: ConfigRef; c: TSystemCC, suffix: string): string =
platform.OS[conf.target.targetOS].name & '.' &
CC[c].name & fullSuffix
result = getConfigVar(conf, fullCCname)
if existsConfigVar(conf, fullCCname):
result = getConfigVar(conf, fullCCname)
else:
if result.len == 0:
# not overridden for this cross compilation setting?
result = getConfigVar(conf, CC[c].name & fullSuffix)
else:
@@ -399,7 +367,6 @@ proc initVars*(conf: ConfigRef) =
proc completeCfilePath*(conf: ConfigRef; cfile: AbsoluteFile,
createSubDir: bool = true): AbsoluteFile =
## Generate the absolute file path to the generated modules.
result = completeGeneratedFilePath(conf, cfile, createSubDir)
proc toObjFile*(conf: ConfigRef; filename: AbsoluteFile): AbsoluteFile =
@@ -410,7 +377,7 @@ proc addFileToCompile*(conf: ConfigRef; cf: Cfile) =
conf.toCompile.add(cf)
proc addLocalCompileOption*(conf: ConfigRef; option: string; nimfile: AbsoluteFile) =
let key = completeCfilePath(conf, mangleModuleName(conf, nimfile).AbsoluteFile).string
let key = completeCfilePath(conf, withPackageName(conf, nimfile)).string
var value = conf.cfileSpecificOptions.getOrDefault(key)
if strutils.find(value, option, 0) < 0:
addOpt(value, option)
@@ -463,22 +430,11 @@ proc noAbsolutePaths(conf: ConfigRef): bool {.inline.} =
# really: Cross compilation from Linux to Linux for example is entirely
# reasonable.
# `optGenMapping` is included here for niminst.
# We use absolute paths for vcc / cl, see issue #19883.
let options =
if conf.cCompiler == ccVcc:
{optGenMapping}
else:
{optGenScript, optGenMapping}
result = conf.globalOptions * options != {}
result = conf.globalOptions * {optGenScript, optGenMapping} != {}
proc cFileSpecificOptions(conf: ConfigRef; nimname, fullNimFile: string): string =
result = conf.compileOptions
if (conf.cCompiler == ccGcc or conf.cCompiler == ccCLang) and
conf.selectedGC == gcRefc:
# bug #10625
addOpt(result, "-fno-omit-frame-pointer")
for option in conf.compileOptionsCmd:
if strutils.find(result, option, 0) < 0:
addOpt(result, option)
@@ -514,10 +470,6 @@ proc vccplatform(conf: ConfigRef): string =
of cpuArm: " --platform:arm"
of cpuAmd64: " --platform:amd64"
else: ""
else:
result = ""
else:
result = ""
proc getLinkOptions(conf: ConfigRef): string =
result = conf.linkOptions & " " & conf.linkOptionsCmd & " "
@@ -531,10 +483,7 @@ proc needsExeExt(conf: ConfigRef): bool {.inline.} =
(conf.target.hostOS == osWindows)
proc useCpp(conf: ConfigRef; cfile: AbsoluteFile): bool =
# List of possible file extensions taken from gcc
for ext in [".C", ".cc", ".cpp", ".CPP", ".c++", ".cp", ".cxx"]:
if cfile.string.endsWith(ext): return true
false
conf.backend == backendCpp and not cfile.string.endsWith(".c")
proc envFlags(conf: ConfigRef): string =
result = if conf.backend == backendCpp:
@@ -542,14 +491,14 @@ proc envFlags(conf: ConfigRef): string =
else:
getEnv("CFLAGS")
proc getCompilerExe(conf: ConfigRef; compiler: TSystemCC; isCpp: bool): string =
proc getCompilerExe(conf: ConfigRef; compiler: TSystemCC; cfile: AbsoluteFile): string =
if compiler == ccEnv:
result = if isCpp:
result = if useCpp(conf, cfile):
getEnv("CXX")
else:
getEnv("CC")
else:
result = if isCpp:
result = if useCpp(conf, cfile):
CC[compiler].cppCompiler
else:
CC[compiler].compilerExe
@@ -563,36 +512,47 @@ proc ccHasSaneOverflow*(conf: ConfigRef): bool =
result = false # assume an old or crappy GCC
var exe = getConfigVar(conf, conf.cCompiler, ".exe")
if exe.len == 0: exe = CC[conf.cCompiler].compilerExe
# NOTE: should we need the full version, use -dumpfullversion
let (s, exitCode) = try: execCmdEx(exe & " -dumpversion") except IOError, OSError, ValueError: ("", 1)
let (s, exitCode) = try: execCmdEx(exe & " --version") except: ("", 1)
if exitCode == 0:
var major: int = 0
discard parseInt(s, major)
result = major >= 5
var i = 0
var j = 0
# the version is the last part of the first line:
while i < s.len and s[i] != '\n':
if s[i] in {' ', '\t'}: j = i+1
inc i
if j > 0:
var major = 0
while j < s.len and s[j] in {'0'..'9'}:
major = major * 10 + (ord(s[j]) - ord('0'))
inc j
if i < s.len and s[j] == '.': inc j
while j < s.len and s[j] in {'0'..'9'}:
inc j
if j+1 < s.len and s[j] == '.' and s[j+1] in {'0'..'9'}:
# we found a third version number, chances are high
# we really parsed the version:
result = major >= 5
else:
result = conf.cCompiler == ccCLang
proc getLinkerExe(conf: ConfigRef; compiler: TSystemCC): string =
result = if CC[compiler].linkerExe.len > 0: CC[compiler].linkerExe
else: getCompilerExe(conf, compiler, optMixedMode in conf.globalOptions or conf.backend == backendCpp)
elif optMixedMode in conf.globalOptions and conf.backend != backendCpp: CC[compiler].cppCompiler
else: getCompilerExe(conf, compiler, AbsoluteFile"")
proc getCompileCFileCmd*(conf: ConfigRef; cfile: Cfile,
isMainFile = false; produceOutput = false): string =
let
c = conf.cCompiler
isCpp = useCpp(conf, cfile.cname)
let c = conf.cCompiler
# We produce files like module.nim.cpp, so the absolute Nim filename is not
# cfile.name but `cfile.cname.changeFileExt("")`:
var options = cFileSpecificOptions(conf, cfile.nimname, cfile.cname.changeFileExt("").string)
if isCpp:
if useCpp(conf, cfile.cname):
# needs to be prepended so that --passc:-std=c++17 can override default.
# we could avoid allocation by making cFileSpecificOptions inplace
options = CC[c].cppXsupport & ' ' & options
# If any C++ file was compiled, we need to use C++ driver for linking as well
incl conf.globalOptions, optMixedMode
var exe = getConfigVar(conf, c, ".exe")
if exe.len == 0: exe = getCompilerExe(conf, c, isCpp)
if exe.len == 0: exe = getCompilerExe(conf, c, cfile.cname)
if needsExeExt(conf): exe = addFileExt(exe, "exe")
if (optGenDynLib in conf.globalOptions or (conf.hcrOn and not isMainFile)) and
@@ -612,7 +572,7 @@ proc getCompileCFileCmd*(conf: ConfigRef; cfile: Cfile,
compilePattern = joinPath(conf.cCompilerPath, exe)
else:
compilePattern = exe
compilePattern = getCompilerExe(conf, c, cfile.cname)
includeCmd.add(join([CC[c].includeCmd, quoteShell(conf.projectPath.string)]))
@@ -654,7 +614,7 @@ proc getCompileCFileCmd*(conf: ConfigRef; cfile: Cfile,
"for the selected C compiler: " & CC[conf.cCompiler].name)
result.add(' ')
strutils.addf(result, CC[c].compileTmpl, [
result.addf(CC[c].compileTmpl, [
"dfile", dfile,
"file", cfsh, "objfile", quoteShell(objfile),
"options", options, "include", includeCmd,
@@ -674,9 +634,9 @@ proc footprint(conf: ConfigRef; cfile: Cfile): SecureHash =
proc externalFileChanged(conf: ConfigRef; cfile: Cfile): bool =
if conf.backend == backendJs: return false # pre-existing behavior, but not sure it's good
let hashFile = toGeneratedFile(conf, conf.mangleModuleName(cfile.cname).AbsoluteFile, "sha1")
let hashFile = toGeneratedFile(conf, conf.withPackageName(cfile.cname), "sha1")
let currentHash = footprint(conf, cfile)
var f: File = default(File)
var f: File
if open(f, hashFile.string, fmRead):
let oldHash = parseSecureHash(f.readLine())
close(f)
@@ -689,10 +649,8 @@ proc externalFileChanged(conf: ConfigRef; cfile: Cfile): bool =
close(f)
proc addExternalFileToCompile*(conf: ConfigRef; c: var Cfile) =
# we want to generate the hash file unconditionally
let extFileChanged = externalFileChanged(conf, c)
if optForceFullMake notin conf.globalOptions and fileExists(c.obj) and
not extFileChanged:
not externalFileChanged(conf, c):
c.flags.incl CfileFlag.Cached
else:
# make sure Nim keeps recompiling the external file on reruns
@@ -712,8 +670,7 @@ proc getLinkCmd(conf: ConfigRef; output: AbsoluteFile,
if removeStaticFile:
removeFile output # fixes: bug #16947
result = CC[conf.cCompiler].buildLib % ["libfile", quoteShell(output),
"objfiles", objfiles,
"vccplatform", vccplatform(conf)]
"objfiles", objfiles]
else:
var linkerExe = getConfigVar(conf, conf.cCompiler, ".linkerexe")
if linkerExe.len == 0: linkerExe = getLinkerExe(conf, conf.cCompiler)
@@ -746,7 +703,7 @@ proc getLinkCmd(conf: ConfigRef; output: AbsoluteFile,
"buildgui", buildgui, "options", linkOptions, "objfiles", objfiles,
"exefile", exefile, "nim", getPrefixDir(conf).string, "lib", conf.libpath.string])
result.add ' '
strutils.addf(result, linkTmpl, ["builddll", builddll,
result.addf(linkTmpl, ["builddll", builddll,
"mapfile", mapfile,
"buildgui", buildgui, "options", linkOptions,
"objfiles", objfiles, "exefile", exefile,
@@ -786,7 +743,7 @@ proc getLinkCmd(conf: ConfigRef; output: AbsoluteFile,
# https://blog.molecular-matters.com/2017/05/09/deleting-pdb-files-locked-by-visual-studio/
# and a bit about the .pdb format in case that is ever needed:
# https://github.com/crosire/blink
# https://www.debuginfo.com/articles/debuginfomatch.html#pdbfiles
# http://www.debuginfo.com/articles/debuginfomatch.html#pdbfiles
if conf.hcrOn and isVSCompatible(conf):
let t = now()
let pdb = output.string & "." & format(t, "MMMM-yyyy-HH-mm-") & $t.nanosecond & ".pdb"
@@ -810,61 +767,7 @@ template tryExceptOSErrorMessage(conf: ConfigRef; errorPrefix: string = "", body
(ose.msg & " " & $ose.errorCode))
raise
proc createMacAppBundle(conf: ConfigRef; exefile: AbsoluteFile) =
let (dir, name, _) = splitFile(exefile.string)
let appBundleName = name & ".app"
let appBundlePath = dir / appBundleName
let contentsPath = appBundlePath / "Contents"
let macosPath = contentsPath / "MacOS"
createDir(macosPath)
let bundleExePath = macosPath / name
copyFileWithPermissions(exefile.string, bundleExePath)
let infoPlistPath = contentsPath / "Info.plist"
proc xmlEscape(s: string): string =
result = newStringOfCap(s.len)
for c in items(s):
case c:
of '<': result.add("&lt;")
of '>': result.add("&gt;")
of '&': result.add("&amp;")
of '"': result.add("&quot;")
of '\'': result.add("&apos;")
else:
if ord(c) < 32:
result.add("&#" & $ord(c) & ';')
else:
result.add(c)
let escapedName = xmlEscape(name)
let infoPlistContent = """<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>CFBundleExecutable</key>
<string>$1</string>
<key>CFBundleIdentifier</key>
<string>com.nim.$1</string>
<key>CFBundleName</key>
<string>$1</string>
<key>CFBundlePackageType</key>
<string>APPL</string>
<key>LSUIElement</key>
<string>1</string>
</dict>
</plist>""" % [escapedName]
writeFile(infoPlistPath, infoPlistContent)
removeFile(exefile.string)
rawMessage(conf, hintUserRaw, "Created Mac app bundle: " & appBundlePath)
proc getExtraCmds(conf: ConfigRef; output: AbsoluteFile): seq[string] =
result = @[]
when defined(macosx):
if optCDebug in conf.globalOptions and optGenStaticLib notin conf.globalOptions:
# if needed, add an option to skip or override location
@@ -920,22 +823,10 @@ proc linkViaResponseFile(conf: ConfigRef; cmd: string) =
else:
writeFile(linkerArgs, args)
try:
when defined(macosx):
execLinkCmd(conf, "xargs " & cmd.substr(0, last) & " < " & linkerArgs)
else:
execLinkCmd(conf, cmd.substr(0, last) & " @" & linkerArgs)
execLinkCmd(conf, cmd.substr(0, last) & " @" & linkerArgs)
finally:
removeFile(linkerArgs)
proc linkViaShellScript(conf: ConfigRef; cmd: string) =
let linkerScript = conf.projectName & "_" & "linkerScript.sh"
writeFile(linkerScript, cmd)
let shell = getEnv("SHELL")
try:
execLinkCmd(conf, shell & " " & linkerScript)
finally:
removeFile(linkerScript)
proc getObjFilePath(conf: ConfigRef, f: Cfile): string =
if noAbsolutePaths(conf): f.obj.extractFilename
else: f.obj.string
@@ -947,38 +838,23 @@ proc hcrLinkTargetName(conf: ConfigRef, objFile: string, isMain = false): Absolu
result = conf.getNimcacheDir / RelativeFile(targetName)
proc displayProgressCC(conf: ConfigRef, path, compileCmd: string): string =
result = ""
if conf.hasHint(hintCC):
if optListCmd in conf.globalOptions or conf.verbosity > 1:
result = MsgKindToStr[hintCC] % (demangleModuleName(path.splitFile.name) & ": " & compileCmd)
result = MsgKindToStr[hintCC] % (demanglePackageName(path.splitFile.name) & ": " & compileCmd)
else:
result = MsgKindToStr[hintCC] % demangleModuleName(path.splitFile.name)
proc preventLinkCmdMaxCmdLen(conf: ConfigRef, linkCmd: string) =
# Prevent linkcmd from exceeding the maximum command line length.
# Windows's command line limit is about 8K (8191 characters) so C compilers on
# Windows support a feature where the command line can be passed via ``@linkcmd``
# to them.
const MaxCmdLen = when defined(windows): 8_000 elif defined(macosx): 260_000 else: 32_000
if linkCmd.len > MaxCmdLen:
when defined(macosx):
linkViaShellScript(conf, linkCmd)
else:
linkViaResponseFile(conf, linkCmd)
else:
execLinkCmd(conf, linkCmd)
result = MsgKindToStr[hintCC] % demanglePackageName(path.splitFile.name)
proc callCCompiler*(conf: ConfigRef) =
var
linkCmd: string = ""
linkCmd: string
extraCmds: seq[string]
if conf.globalOptions * {optCompileOnly, optGenScript} == {optCompileOnly}:
return # speed up that call if only compiling and no script shall be
# generated
#var c = cCompiler
var script: Rope = ""
var cmds: TStringSeq = default(TStringSeq)
var prettyCmds: TStringSeq = default(TStringSeq)
var script: Rope = nil
var cmds: TStringSeq
var prettyCmds: TStringSeq
let prettyCb = proc (idx: int) = writePrettyCmdsStderr(prettyCmds[idx])
for idx, it in conf.toCompile:
@@ -1039,18 +915,21 @@ proc callCCompiler*(conf: ConfigRef) =
objfiles.add(' ')
objfiles.add(quoteShell(objFile))
let mainOutput = if optGenScript notin conf.globalOptions: conf.prepareToWriteOutput
else: AbsoluteFile(conf.outFile)
else: AbsoluteFile(conf.projectName)
linkCmd = getLinkCmd(conf, mainOutput, objfiles, removeStaticFile = true)
extraCmds = getExtraCmds(conf, mainOutput)
if optCompileOnly notin conf.globalOptions:
preventLinkCmdMaxCmdLen(conf, linkCmd)
const MaxCmdLen = when defined(windows): 8_000 else: 32_000
if linkCmd.len > MaxCmdLen:
# Windows's command line limit is about 8K (don't laugh...) so C compilers on
# Windows support a feature where the command line can be passed via ``@linkcmd``
# to them.
linkViaResponseFile(conf, linkCmd)
else:
execLinkCmd(conf, linkCmd)
for cmd in extraCmds:
execExternalProgram(conf, cmd, hintExecuting)
# create Mac app bundle for GUI apps on macOS
when defined(macosx):
if conf.globalOptions * {optGenGuiApp, optGenDynLib, optGenStaticLib} == {optGenGuiApp}:
createMacAppBundle(conf, mainOutput)
else:
linkCmd = ""
if optGenScript in conf.globalOptions:
@@ -1066,11 +945,10 @@ proc jsonBuildInstructionsFile*(conf: ConfigRef): AbsoluteFile =
# works out of the box with `hashMainCompilationParams`.
result = getNimcacheDir(conf) / conf.outFile.changeFileExt("json")
const cacheVersion = "D20240927T193831" # update when `BuildCache` spec changes
const cacheVersion = "D20210525T193831" # update when `BuildCache` spec changes
type BuildCache = object
cacheVersion: string
outputFile: string
outputLastModificationTime: string
compile: seq[(string, string)]
link: seq[string]
linkcmd: string
@@ -1084,7 +962,7 @@ type BuildCache = object
depfiles: seq[(string, string)]
nimexe: string
proc writeJsonBuildInstructions*(conf: ConfigRef; deps: StringTableRef) =
proc writeJsonBuildInstructions*(conf: ConfigRef) =
var linkFiles = collect(for it in conf.externalToLink:
var it = it
if conf.noAbsolutePaths: it = it.extractFilename
@@ -1105,24 +983,17 @@ proc writeJsonBuildInstructions*(conf: ConfigRef; deps: StringTableRef) =
currentDir: getCurrentDir())
if optRun in conf.globalOptions or isDefined(conf, "nimBetterRun"):
bcache.cmdline = conf.commandLine
for it in conf.m.fileInfos:
bcache.depfiles = collect(for it in conf.m.fileInfos:
let path = it.fullPath.string
if isAbsolute(path): # TODO: else?
if path in deps:
bcache.depfiles.add (path, deps[path])
else: # backup for configs etc.
bcache.depfiles.add (path, $secureHashFile(path))
(path, $secureHashFile(path)))
bcache.nimexe = hashNimExe()
if fileExists(bcache.outputFile):
bcache.outputLastModificationTime = $getLastModificationTime(bcache.outputFile)
conf.jsonBuildFile = conf.jsonBuildInstructionsFile
conf.jsonBuildFile.string.writeFile(bcache.toJson.pretty)
proc changeDetectedViaJsonBuildInstructions*(conf: ConfigRef; jsonFile: AbsoluteFile): bool =
result = false
if not fileExists(jsonFile) or not fileExists(conf.absOutFile): return true
var bcache: BuildCache = default(BuildCache)
var bcache: BuildCache
try: bcache.fromJson(jsonFile.string.parseFile)
except IOError, OSError, ValueError:
stderr.write "Warning: JSON processing failed for: $#\n" % jsonFile.string
@@ -1136,13 +1007,11 @@ proc changeDetectedViaJsonBuildInstructions*(conf: ConfigRef; jsonFile: Absolute
# xxx optimize by returning false if stdin input was the same
for (file, hash) in bcache.depfiles:
if $secureHashFile(file) != hash: return true
if bcache.outputLastModificationTime != $getLastModificationTime(bcache.outputFile):
return true
proc runJsonBuildInstructions*(conf: ConfigRef; jsonFile: AbsoluteFile) =
var bcache: BuildCache = default(BuildCache)
var bcache: BuildCache
try: bcache.fromJson(jsonFile.string.parseFile)
except ValueError, KeyError, JsonKindError:
except:
let e = getCurrentException()
conf.quitOrRaise "\ncaught exception:\n$#\nstacktrace:\n$#error evaluating JSON file: $#" %
[e.msg, e.getStackTrace(), jsonFile.string]
@@ -1153,18 +1022,16 @@ proc runJsonBuildInstructions*(conf: ConfigRef; jsonFile: AbsoluteFile) =
globalError(conf, gCmdLineInfo,
"jsonscript command outputFile '$1' must match '$2' which was specified during --compileOnly, see \"outputFile\" entry in '$3' " %
[outputCurrent, output, jsonFile.string])
var cmds: TStringSeq = default(TStringSeq)
var prettyCmds: TStringSeq = default(TStringSeq)
var cmds, prettyCmds: TStringSeq
let prettyCb = proc (idx: int) = writePrettyCmdsStderr(prettyCmds[idx])
for (name, cmd) in bcache.compile:
cmds.add cmd
prettyCmds.add displayProgressCC(conf, name, cmd)
execCmdsInParallel(conf, cmds, prettyCb)
preventLinkCmdMaxCmdLen(conf, bcache.linkcmd)
execLinkCmd(conf, bcache.linkcmd)
for cmd in bcache.extraCmds: execExternalProgram(conf, cmd, hintExecuting)
proc genMappingFiles(conf: ConfigRef; list: CfileList): Rope =
result = ""
for it in list:
result.addf("--file:r\"$1\"$N", [rope(it.cname.string)])

View File

@@ -10,11 +10,9 @@
# This module implements Nim's standard template filter.
import
llstream, ast, msgs, options,
llstream, strutils, ast, msgs, options,
filters, lineinfos, pathutils
import std/strutils
type
TParseState = enum
psDirective, psTempl
@@ -203,15 +201,17 @@ proc parseLine(p: var TTmplParser) =
proc filterTmpl*(conf: ConfigRef, stdin: PLLStream, filename: AbsoluteFile,
call: PNode): PLLStream =
var p = TTmplParser(config: conf, info: newLineInfo(conf, filename, 0, 0),
outp: llStreamOpen(""), inp: stdin,
subsChar: charArg(conf, call, "subschar", 1, '$'),
nimDirective: charArg(conf, call, "metachar", 2, '#'),
emit: strArg(conf, call, "emit", 3, "result.add"),
conc: strArg(conf, call, "conc", 4, " & "),
toStr: strArg(conf, call, "tostring", 5, "$"),
x: newStringOfCap(120)
)
var p: TTmplParser
p.config = conf
p.info = newLineInfo(conf, filename, 0, 0)
p.outp = llStreamOpen("")
p.inp = stdin
p.subsChar = charArg(conf, call, "subschar", 1, '$')
p.nimDirective = charArg(conf, call, "metachar", 2, '#')
p.emit = strArg(conf, call, "emit", 3, "result.add")
p.conc = strArg(conf, call, "conc", 4, " & ")
p.toStr = strArg(conf, call, "tostring", 5, "$")
p.x = newStringOfCap(120)
# do not process the first line which contains the directive:
if llStreamReadLine(p.inp, p.x):
inc p.info.line

View File

@@ -10,11 +10,9 @@
# This module implements Nim's simple filters and helpers for filters.
import
llstream, idents, ast, msgs, options,
llstream, idents, strutils, ast, msgs, options,
renderer, pathutils
import std/strutils
proc invalidPragma(conf: ConfigRef; n: PNode) =
localError(conf, n.info,
"'$1' not allowed here" % renderTree(n, {renderNoComments}))
@@ -31,30 +29,23 @@ proc getArg(conf: ConfigRef; n: PNode, name: string, pos: int): PNode =
return n[i]
proc charArg*(conf: ConfigRef; n: PNode, name: string, pos: int, default: char): char =
var x = getArg(conf, n, name, pos)
if x == nil: result = default
elif x.kind == nkCharLit: result = chr(int(x.intVal))
else:
result = default(char)
invalidPragma(conf, n)
else: invalidPragma(conf, n)
proc strArg*(conf: ConfigRef; n: PNode, name: string, pos: int, default: string): string =
var x = getArg(conf, n, name, pos)
if x == nil: result = default
elif x.kind in {nkStrLit..nkTripleStrLit}: result = x.strVal
else:
result = ""
invalidPragma(conf, n)
else: invalidPragma(conf, n)
proc boolArg*(conf: ConfigRef; n: PNode, name: string, pos: int, default: bool): bool =
var x = getArg(conf, n, name, pos)
if x == nil: result = default
elif x.kind == nkIdent and cmpIgnoreStyle(x.ident.s, "true") == 0: result = true
elif x.kind == nkIdent and cmpIgnoreStyle(x.ident.s, "false") == 0: result = false
else:
result = false
invalidPragma(conf, n)
else: invalidPragma(conf, n)
proc filterStrip*(conf: ConfigRef; stdin: PLLStream, filename: AbsoluteFile, call: PNode): PLLStream =
var pattern = strArg(conf, call, "startswith", 1, "")

View File

@@ -9,14 +9,8 @@
## Module that implements ``gorge`` for the compiler.
import msgs, options, lineinfos, pathutils
import std/[os, osproc, streams]
when defined(nimPreviewSlimSystem):
import std/syncio
import ../dist/checksums/src/checksums/sha1
import msgs, std / sha1, os, osproc, streams, options,
lineinfos, pathutils
proc readOutput(p: Process): (string, int) =
result[0] = ""
@@ -30,11 +24,10 @@ proc readOutput(p: Process): (string, int) =
proc opGorge*(cmd, input, cache: string, info: TLineInfo; conf: ConfigRef): (string, int) =
let workingDir = parentDir(toFullPath(conf, info))
result = ("", 0)
if cache.len > 0:
let h = secureHash(cmd & "\t" & input & "\t" & cache)
let filename = toGeneratedFile(conf, AbsoluteFile("gorge_" & $h), "txt").string
var f: File = default(File)
var f: File
if optForceFullMake notin conf.globalOptions and open(f, filename):
result = (f.readAll, 0)
f.close
@@ -53,11 +46,7 @@ proc opGorge*(cmd, input, cache: string, info: TLineInfo; conf: ConfigRef): (str
if result[1] == 0:
writeFile(filename, result[0])
except IOError, OSError:
if not readSuccessful:
when defined(nimLegacyGorgeErrors):
result = ("", -1)
else:
result = ("Error running startProcess: " & getCurrentExceptionMsg(), -1)
if not readSuccessful: result = ("", -1)
else:
try:
var p = startProcess(cmd, workingDir,
@@ -68,7 +57,4 @@ proc opGorge*(cmd, input, cache: string, info: TLineInfo; conf: ConfigRef): (str
result = p.readOutput
p.close()
except IOError, OSError:
when defined(nimLegacyGorgeErrors):
result = ("", -1)
else:
result = ("Error running startProcess: " & getCurrentExceptionMsg(), -1)
result = ("", -1)

View File

@@ -12,9 +12,6 @@
import ast, astalgo, msgs, magicsys, nimsets, trees, types, renderer, idents,
saturate, modulegraphs, options, lineinfos, int128
when defined(nimPreviewSlimSystem):
import std/assertions
const
someEq = {mEqI, mEqF64, mEqEnum, mEqCh, mEqB, mEqRef, mEqProc,
mEqStr, mEqSet, mEqCString}
@@ -51,10 +48,6 @@ proc isLet(n: PNode): bool =
elif n.sym.kind == skParam and skipTypes(n.sym.typ,
abstractInst).kind notin {tyVar}:
result = true
else:
result = false
else:
result = false
proc isVar(n: PNode): bool =
n.kind == nkSym and n.sym.kind in {skResult, skVar} and
@@ -72,12 +65,9 @@ proc isLetLocation(m: PNode, isApprox: bool): bool =
case n.kind
of nkDotExpr, nkCheckedFieldExpr, nkObjUpConv, nkObjDownConv:
n = n[0]
of nkDerefExpr:
of nkDerefExpr, nkHiddenDeref:
n = n[0]
inc derefs
of nkHiddenDeref:
n = n[0]
if not isApprox: inc derefs
of nkBracketExpr:
if isConstExpr(n[1]) or isLet(n[1]) or isConstExpr(n[1].skipConv):
n = n[0]
@@ -140,8 +130,6 @@ proc neg(n: PNode; o: Operators): PNode =
result = a
elif b != nil:
result = b
else:
result = nil
else:
# leave not (a == 4) as it is
result = newNodeI(nkCall, n.info, 2)
@@ -209,7 +197,7 @@ proc highBound*(conf: ConfigRef; x: PNode; o: Operators): PNode =
nkIntLit.newIntNode(lastOrd(conf, typ))
elif typ.kind == tySequence and x.kind == nkSym and
x.sym.kind == skConst:
nkIntLit.newIntNode(x.sym.astdef.len-1)
nkIntLit.newIntNode(x.sym.ast.len-1)
else:
o.opAdd.buildCall(o.opLen.buildCall(x), minusOne())
result.info = x.info
@@ -336,8 +324,6 @@ proc usefulFact(n: PNode; o: Operators): PNode =
result = n
elif n[1].getMagic in someLen or n[2].getMagic in someLen:
result = n
else:
result = nil
of someLe+someLt:
if isLetLocation(n[1], true) or isLetLocation(n[2], true):
# XXX algebraic simplifications! 'i-1 < a.len' --> 'i < a.len+1'
@@ -345,18 +331,12 @@ proc usefulFact(n: PNode; o: Operators): PNode =
elif n[1].getMagic in someLen or n[2].getMagic in someLen:
# XXX Rethink this whole idea of 'usefulFact' for semparallel
result = n
else:
result = nil
of mIsNil:
if isLetLocation(n[1], false) or isVar(n[1]):
result = n
else:
result = nil
of someIn:
if isLetLocation(n[1], true):
result = n
else:
result = nil
of mAnd:
let
a = usefulFact(n[1], o)
@@ -370,14 +350,10 @@ proc usefulFact(n: PNode; o: Operators): PNode =
result = a
elif b != nil:
result = b
else:
result = nil
of mNot:
let a = usefulFact(n[1], o)
if a != nil:
result = a.neg(o)
else:
result = nil
of mOr:
# 'or' sucks! (p.isNil or q.isNil) --> hard to do anything
# with that knowledge...
@@ -394,8 +370,6 @@ proc usefulFact(n: PNode; o: Operators): PNode =
result[1] = a
result[2] = b
result = result.neg(o)
else:
result = nil
elif n.kind == nkSym and n.sym.kind == skLet:
# consider:
# let a = 2 < x
@@ -404,12 +378,8 @@ proc usefulFact(n: PNode; o: Operators): PNode =
# We make can easily replace 'a' by '2 < x' here:
if n.sym.astdef != nil:
result = usefulFact(n.sym.astdef, o)
else:
result = nil
elif n.kind == nkStmtListExpr:
result = usefulFact(n.lastSon, o)
else:
result = nil
type
TModel* = object
@@ -475,9 +445,8 @@ proc hasSubTree(n, x: PNode): bool =
of nkEmpty..nkNilLit:
result = n.sameTree(x)
of nkFormalParams:
result = false
discard
else:
result = false
for i in 0..<n.len:
if hasSubTree(n[i], x): return true
@@ -508,8 +477,6 @@ proc invalidateFacts*(m: var TModel, n: PNode) =
proc valuesUnequal(a, b: PNode): bool =
if a.isValue and b.isValue:
result = not sameValue(a, b)
else:
result = false
proc impliesEq(fact, eq: PNode): TImplication =
let (loc, val) = if isLocation(eq[1]): (1, 2) else: (2, 1)
@@ -520,26 +487,16 @@ proc impliesEq(fact, eq: PNode): TImplication =
# this is not correct; consider: a == b; a == 1 --> unknown!
if sameTree(fact[2], eq[val]): result = impYes
elif valuesUnequal(fact[2], eq[val]): result = impNo
else:
result = impUnknown
elif sameTree(fact[2], eq[loc]):
if sameTree(fact[1], eq[val]): result = impYes
elif valuesUnequal(fact[1], eq[val]): result = impNo
else:
result = impUnknown
else:
result = impUnknown
of mInSet:
# remember: mInSet is 'contains' so the set comes first!
if sameTree(fact[2], eq[loc]) and isValue(eq[val]):
if inSet(fact[1], eq[val]): result = impYes
else: result = impNo
else:
result = impUnknown
of mNot, mOr, mAnd:
result = impUnknown
assert(false, "impliesEq")
else: result = impUnknown
of mNot, mOr, mAnd: assert(false, "impliesEq")
else: discard
proc leImpliesIn(x, c, aSet: PNode): TImplication =
if c.kind in {nkCharLit..nkUInt64Lit}:
@@ -549,19 +506,13 @@ proc leImpliesIn(x, c, aSet: PNode): TImplication =
var value = newIntNode(c.kind, firstOrd(nil, x.typ))
# don't iterate too often:
if c.intVal - value.intVal < 1000:
var i, pos, neg: int = 0
var i, pos, neg: int
while value.intVal <= c.intVal:
if inSet(aSet, value): inc pos
else: inc neg
inc i; inc value.intVal
if pos == i: result = impYes
elif neg == i: result = impNo
else:
result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
proc geImpliesIn(x, c, aSet: PNode): TImplication =
if c.kind in {nkCharLit..nkUInt64Lit}:
@@ -572,23 +523,17 @@ proc geImpliesIn(x, c, aSet: PNode): TImplication =
let max = lastOrd(nil, x.typ)
# don't iterate too often:
if max - getInt(value) < toInt128(1000):
var i, pos, neg: int = 0
var i, pos, neg: int
while value.intVal <= max:
if inSet(aSet, value): inc pos
else: inc neg
inc i; inc value.intVal
if pos == i: result = impYes
elif neg == i: result = impNo
else: result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
proc compareSets(a, b: PNode): TImplication =
if equalSets(nil, a, b): result = impYes
elif intersectSets(nil, a, b).len == 0: result = impNo
else: result = impUnknown
proc impliesIn(fact, loc, aSet: PNode): TImplication =
case fact[0].sym.magic
@@ -599,32 +544,22 @@ proc impliesIn(fact, loc, aSet: PNode): TImplication =
elif sameTree(fact[2], loc):
if inSet(aSet, fact[1]): result = impYes
else: result = impNo
else:
result = impUnknown
of mInSet:
if sameTree(fact[2], loc):
result = compareSets(fact[1], aSet)
else:
result = impUnknown
of someLe:
if sameTree(fact[1], loc):
result = leImpliesIn(fact[1], fact[2], aSet)
elif sameTree(fact[2], loc):
result = geImpliesIn(fact[2], fact[1], aSet)
else:
result = impUnknown
of someLt:
if sameTree(fact[1], loc):
result = leImpliesIn(fact[1], fact[2].pred, aSet)
elif sameTree(fact[2], loc):
# 4 < x --> 3 <= x
result = geImpliesIn(fact[2], fact[1].pred, aSet)
else:
result = impUnknown
of mNot, mOr, mAnd:
result = impUnknown
assert(false, "impliesIn")
else: result = impUnknown
of mNot, mOr, mAnd: assert(false, "impliesIn")
else: discard
proc valueIsNil(n: PNode): TImplication =
if n.kind == nkNilLit: impYes
@@ -636,19 +571,13 @@ proc impliesIsNil(fact, eq: PNode): TImplication =
of mIsNil:
if sameTree(fact[1], eq[1]):
result = impYes
else:
result = impUnknown
of someEq:
if sameTree(fact[1], eq[1]):
result = valueIsNil(fact[2].skipConv)
elif sameTree(fact[2], eq[1]):
result = valueIsNil(fact[1].skipConv)
else:
result = impUnknown
of mNot, mOr, mAnd:
result = impUnknown
assert(false, "impliesIsNil")
else: result = impUnknown
of mNot, mOr, mAnd: assert(false, "impliesIsNil")
else: discard
proc impliesGe(fact, x, c: PNode): TImplication =
assert isLocation(x)
@@ -659,57 +588,32 @@ proc impliesGe(fact, x, c: PNode): TImplication =
# fact: x = 4; question x >= 56? --> true iff 4 >= 56
if leValue(c, fact[2]): result = impYes
else: result = impNo
else:
result = impUnknown
elif sameTree(fact[2], x):
if isValue(fact[1]) and isValue(c):
if leValue(c, fact[1]): result = impYes
else: result = impNo
else:
result = impUnknown
else:
result = impUnknown
of someLt:
if sameTree(fact[1], x):
if isValue(fact[2]) and isValue(c):
# fact: x < 4; question N <= x? --> false iff N <= 4
if leValue(fact[2], c): result = impNo
else: result = impUnknown
# fact: x < 4; question 2 <= x? --> we don't know
else:
result = impUnknown
elif sameTree(fact[2], x):
# fact: 3 < x; question: N-1 < x ? --> true iff N-1 <= 3
if isValue(fact[1]) and isValue(c):
if leValue(c.pred, fact[1]): result = impYes
else: result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
of someLe:
if sameTree(fact[1], x):
if isValue(fact[2]) and isValue(c):
# fact: x <= 4; question x >= 56? --> false iff 4 <= 56
if leValue(fact[2], c): result = impNo
# fact: x <= 4; question x >= 2? --> we don't know
else:
result = impUnknown
else:
result = impUnknown
elif sameTree(fact[2], x):
# fact: 3 <= x; question: x >= 2 ? --> true iff 2 <= 3
if isValue(fact[1]) and isValue(c):
if leValue(c, fact[1]): result = impYes
else: result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
of mNot, mOr, mAnd:
result = impUnknown
assert(false, "impliesGe")
else: result = impUnknown
of mNot, mOr, mAnd: assert(false, "impliesGe")
else: discard
proc impliesLe(fact, x, c: PNode): TImplication =
if not isLocation(x):
@@ -724,59 +628,35 @@ proc impliesLe(fact, x, c: PNode): TImplication =
# fact: x = 4; question x <= 56? --> true iff 4 <= 56
if leValue(fact[2], c): result = impYes
else: result = impNo
else:
result = impUnknown
elif sameTree(fact[2], x):
if isValue(fact[1]) and isValue(c):
if leValue(fact[1], c): result = impYes
else: result = impNo
else:
result = impUnknown
else:
result = impUnknown
of someLt:
if sameTree(fact[1], x):
if isValue(fact[2]) and isValue(c):
# fact: x < 4; question x <= N? --> true iff N-1 <= 4
if leValue(fact[2], c.pred): result = impYes
else:
result = impUnknown
# fact: x < 4; question x <= 2? --> we don't know
else:
result = impUnknown
elif sameTree(fact[2], x):
# fact: 3 < x; question: x <= 1 ? --> false iff 1 <= 3
if isValue(fact[1]) and isValue(c):
if leValue(c, fact[1]): result = impNo
else: result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
of someLe:
if sameTree(fact[1], x):
if isValue(fact[2]) and isValue(c):
# fact: x <= 4; question x <= 56? --> true iff 4 <= 56
if leValue(fact[2], c): result = impYes
else: result = impUnknown
# fact: x <= 4; question x <= 2? --> we don't know
else:
result = impUnknown
elif sameTree(fact[2], x):
# fact: 3 <= x; question: x <= 2 ? --> false iff 2 < 3
if isValue(fact[1]) and isValue(c):
if leValue(c, fact[1].pred): result = impNo
else:result = impUnknown
else:
result = impUnknown
else:
result = impUnknown
of mNot, mOr, mAnd:
result = impUnknown
assert(false, "impliesLe")
else: result = impUnknown
of mNot, mOr, mAnd: assert(false, "impliesLe")
else: discard
proc impliesLt(fact, x, c: PNode): TImplication =
# x < 3 same as x <= 2:
@@ -788,8 +668,6 @@ proc impliesLt(fact, x, c: PNode): TImplication =
let q = x.pred
if q != x:
result = impliesLe(fact, q, c)
else:
result = impUnknown
proc `~`(x: TImplication): TImplication =
case x
@@ -841,7 +719,6 @@ proc factImplies(fact, prop: PNode): TImplication =
proc doesImply*(facts: TModel, prop: PNode): TImplication =
assert prop.kind in nkCallKinds
result = impUnknown
for f in facts.s:
# facts can be invalidated, in which case they are 'nil':
if not f.isNil:
@@ -870,7 +747,7 @@ template isSub(x): untyped = x.getMagic in someSub
template isVal(x): untyped = x.kind in {nkCharLit..nkUInt64Lit}
template isIntVal(x, y): untyped = x.intVal == y
import std/macros
import macros
macro `=~`(x: PNode, pat: untyped): bool =
proc m(x, pat, conds: NimNode) =
@@ -1017,7 +894,6 @@ proc applyReplacements(n: PNode; rep: TReplacements): PNode =
proc pleViaModelRec(m: var TModel; a, b: PNode): TImplication =
# now check for inferrable facts: a <= b and b <= c implies a <= c
result = impUnknown
for i in 0..m.s.high:
let fact = m.s[i]
if fact != nil and fact.getMagic in someLe:
@@ -1063,7 +939,7 @@ proc pleViaModel(model: TModel; aa, bb: PNode): TImplication =
let b = fact[2]
if a.kind == nkSym: replacements.add((a,b))
else: replacements.add((b,a))
var m = TModel()
var m: TModel
var a = aa
var b = bb
if replacements.len > 0:
@@ -1098,8 +974,8 @@ proc addFactLt*(m: var TModel; a, b: PNode) =
addFactLe(m, a, bb)
proc settype(n: PNode): PType =
var idgen = idGeneratorForPackage(-1'i32)
result = newType(tySet, idgen, n.typ.owner)
result = newType(tySet, ItemId(module: -1, item: -1), n.typ.owner)
var idgen: IdGenerator
addSonSkipIntLit(result, n.typ, idgen)
proc buildOf(it, loc: PNode; o: Operators): PNode =
@@ -1165,12 +1041,8 @@ proc buildProperFieldCheck(access, check: PNode; o: Operators): PNode =
if check[1].kind == nkCurly:
result = copyTree(check)
if access.kind == nkDotExpr:
# change the access to the discriminator field access
var a = copyTree(access)
# set field name to discriminator field name
a[1] = check[2]
# set discriminator field type: important for `neg`
a.typ = check[2].typ
result[2] = a
# 'access.kind != nkDotExpr' can happen for object constructors
# which we don't check yet
@@ -1179,12 +1051,8 @@ proc buildProperFieldCheck(access, check: PNode; o: Operators): PNode =
assert check.getMagic == mNot
result = buildProperFieldCheck(access, check[1], o).neg(o)
proc checkFieldAccess*(m: TModel, n: PNode; conf: ConfigRef; produceError: bool) =
proc checkFieldAccess*(m: TModel, n: PNode; conf: ConfigRef) =
for i in 1..<n.len:
let check = buildProperFieldCheck(n[0], n[i], m.g.operators)
if check != nil and m.doesImply(check) != impYes:
if produceError:
localError(conf, n.info, "field access outside of valid case branch: " & renderTree(n[0]))
else:
message(conf, n.info, warnProveField, renderTree(n[0]))
break
message(conf, n.info, warnProveField, renderTree(n[0])); break

View File

@@ -8,20 +8,17 @@
#
# This include implements the high level optimization pass.
# included from sem.nim
proc hlo(c: PContext, n: PNode, loopDetector: int): PNode
proc hlo(c: PContext, n: PNode): PNode
proc evalPattern(c: PContext, n, orig: PNode): PNode =
internalAssert c.config, n.kind == nkCall and n[0].kind == nkSym
# we need to ensure that the resulting AST is semchecked. However, it's
# awful to semcheck before macro invocation, so we don't and treat
# templates and macros as immediate in this context.
var rule: string =
if c.config.hasHint(hintPattern):
renderTree(n, {renderNoComments})
else:
""
var rule: string
if c.config.hasHint(hintPattern):
rule = renderTree(n, {renderNoComments})
let s = n[0].sym
case s.kind
of skMacro:
@@ -61,19 +58,18 @@ proc applyPatterns(c: PContext, n: PNode): PNode =
# activate this pattern again:
c.patterns[i] = pattern
proc hlo(c: PContext, n: PNode, loopDetector: int): PNode =
proc hlo(c: PContext, n: PNode): PNode =
inc(c.hloLoopDetector)
# simply stop and do not perform any further transformations:
if loopDetector > 300:
message(c.config, n.info, warnUser, "term rewrite macro instantiation too nested")
return n
if c.hloLoopDetector > 300: return n
case n.kind
of nkMacroDef, nkTemplateDef, procDefs:
# already processed (special cases in semstmts.nim)
result = n
else:
if n.kind in {nkFastAsgn, nkAsgn, nkSinkAsgn, nkIdentDefs, nkVarTuple} and
if n.kind in {nkFastAsgn, nkAsgn, nkIdentDefs, nkVarTuple} and
n[0].kind == nkSym and
{sfGlobal, sfPure} <= n[0].sym.flags:
{sfGlobal, sfPure} * n[0].sym.flags == {sfGlobal, sfPure}:
# do not optimize 'var g {.global} = re(...)' again!
return n
result = applyPatterns(c, n)
@@ -81,7 +77,7 @@ proc hlo(c: PContext, n: PNode, loopDetector: int): PNode =
# no optimization applied, try subtrees:
for i in 0..<result.safeLen:
let a = result[i]
let h = hlo(c, a, loopDetector)
let h = hlo(c, a)
if h != a: result[i] = h
else:
# perform type checking, so that the replacement still fits:
@@ -91,15 +87,17 @@ proc hlo(c: PContext, n: PNode, loopDetector: int): PNode =
result = fitNode(c, n.typ, result, n.info)
# optimization has been applied so check again:
result = commonOptimizations(c.graph, c.idgen, c.module, result)
result = hlo(c, result, loopDetector + 1)
result = hlo(c, result)
result = commonOptimizations(c.graph, c.idgen, c.module, result)
proc hloBody(c: PContext, n: PNode): PNode =
# fast exit:
if c.patterns.len == 0 or optTrMacros notin c.config.options: return n
result = hlo(c, n, 0)
c.hloLoopDetector = 0
result = hlo(c, n)
proc hloStmt(c: PContext, n: PNode): PNode =
# fast exit:
if c.patterns.len == 0 or optTrMacros notin c.config.options: return n
result = hlo(c, n, 0)
c.hloLoopDetector = 0
result = hlo(c, n)

168
compiler/ic/bitabs.nim Normal file
View File

@@ -0,0 +1,168 @@
## A BiTable is a table that can be seen as an optimized pair
## of (Table[LitId, Val], Table[Val, LitId]).
import hashes, rodfiles
type
LitId* = distinct uint32
BiTable*[T] = object
vals: seq[T] # indexed by LitId
keys: seq[LitId] # indexed by hash(val)
proc nextTry(h, maxHash: Hash): Hash {.inline.} =
result = (h + 1) and maxHash
template maxHash(t): untyped = high(t.keys)
template isFilled(x: LitId): bool = x.uint32 > 0'u32
proc `$`*(x: LitId): string {.borrow.}
proc `<`*(x, y: LitId): bool {.borrow.}
proc `<=`*(x, y: LitId): bool {.borrow.}
proc `==`*(x, y: LitId): bool {.borrow.}
proc hash*(x: LitId): Hash {.borrow.}
proc len*[T](t: BiTable[T]): int = t.vals.len
proc mustRehash(length, counter: int): bool {.inline.} =
assert(length > counter)
result = (length * 2 < counter * 3) or (length - counter < 4)
const
idStart = 256 ##
## Ids do not start with 0 but with this value. The IR needs it.
## TODO: explain why
template idToIdx(x: LitId): int = x.int - idStart
proc hasLitId*[T](t: BiTable[T]; x: LitId): bool =
let idx = idToIdx(x)
result = idx >= 0 and idx < t.vals.len
proc enlarge[T](t: var BiTable[T]) =
var n: seq[LitId]
newSeq(n, len(t.keys) * 2)
swap(t.keys, n)
for i in 0..high(n):
let eh = n[i]
if isFilled(eh):
var j = hash(t.vals[idToIdx eh]) and maxHash(t)
while isFilled(t.keys[j]):
j = nextTry(j, maxHash(t))
t.keys[j] = move n[i]
proc getKeyId*[T](t: BiTable[T]; v: T): LitId =
let origH = hash(v)
var h = origH and maxHash(t)
if t.keys.len != 0:
while true:
let litId = t.keys[h]
if not isFilled(litId): break
if t.vals[idToIdx t.keys[h]] == v: return litId
h = nextTry(h, maxHash(t))
return LitId(0)
proc getOrIncl*[T](t: var BiTable[T]; v: T): LitId =
let origH = hash(v)
var h = origH and maxHash(t)
if t.keys.len != 0:
while true:
let litId = t.keys[h]
if not isFilled(litId): break
if t.vals[idToIdx t.keys[h]] == v: return litId
h = nextTry(h, maxHash(t))
# not found, we need to insert it:
if mustRehash(t.keys.len, t.vals.len):
enlarge(t)
# recompute where to insert:
h = origH and maxHash(t)
while true:
let litId = t.keys[h]
if not isFilled(litId): break
h = nextTry(h, maxHash(t))
else:
setLen(t.keys, 16)
h = origH and maxHash(t)
result = LitId(t.vals.len + idStart)
t.keys[h] = result
t.vals.add v
proc `[]`*[T](t: var BiTable[T]; LitId: LitId): var T {.inline.} =
let idx = idToIdx LitId
assert idx < t.vals.len
result = t.vals[idx]
proc `[]`*[T](t: BiTable[T]; LitId: LitId): lent T {.inline.} =
let idx = idToIdx LitId
assert idx < t.vals.len
result = t.vals[idx]
proc hash*[T](t: BiTable[T]): Hash =
## as the keys are hashes of the values, we simply use them instead
var h: Hash = 0
for i, n in pairs t.keys:
h = h !& hash((i, n))
result = !$h
proc store*[T](f: var RodFile; t: BiTable[T]) =
storeSeq(f, t.vals)
storeSeq(f, t.keys)
proc load*[T](f: var RodFile; t: var BiTable[T]) =
loadSeq(f, t.vals)
loadSeq(f, t.keys)
when isMainModule:
var t: BiTable[string]
echo getOrIncl(t, "hello")
echo getOrIncl(t, "hello")
echo getOrIncl(t, "hello3")
echo getOrIncl(t, "hello4")
echo getOrIncl(t, "helloasfasdfdsa")
echo getOrIncl(t, "hello")
echo getKeyId(t, "hello")
echo getKeyId(t, "none")
for i in 0 ..< 100_000:
discard t.getOrIncl($i & "___" & $i)
for i in 0 ..< 100_000:
assert t.getOrIncl($i & "___" & $i).idToIdx == i + 4
echo "begin"
echo t.vals.len
echo t.vals[0]
echo t.vals[1004]
echo "middle"
var tf: BiTable[float]
discard tf.getOrIncl(0.4)
discard tf.getOrIncl(16.4)
discard tf.getOrIncl(32.4)
echo getKeyId(tf, 32.4)
var f2 = open("testblah.bin", fmWrite)
echo store(f2, tf)
f2.close
var f1 = open("testblah.bin", fmRead)
var t2: BiTable[float]
echo f1.load(t2)
echo t2.vals.len
echo getKeyId(t2, 32.4)
echo "end"
f1.close

174
compiler/ic/cbackend.nim Normal file
View File

@@ -0,0 +1,174 @@
#
#
# The Nim Compiler
# (c) Copyright 2021 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## New entry point into our C/C++ code generator. Ideally
## somebody would rewrite the old backend (which is 8000 lines of crufty Nim code)
## to work on packed trees directly and produce the C code as an AST which can
## then be rendered to text in a very simple manner. Unfortunately nobody wrote
## this code. So instead we wrap the existing cgen.nim and its friends so that
## we call directly into the existing code generation logic but avoiding the
## naive, outdated `passes` design. Thus you will see some
## `useAliveDataFromDce in flags` checks in the old code -- the old code is
## also doing cross-module dependency tracking and DCE that we don't need
## anymore. DCE is now done as prepass over the entire packed module graph.
import std/packedsets, algorithm, tables
import ".."/[ast, options, lineinfos, modulegraphs, cgendata, cgen,
pathutils, extccomp, msgs]
import packed_ast, ic, dce, rodfiles
proc unpackTree(g: ModuleGraph; thisModule: int;
tree: PackedTree; n: NodePos): PNode =
var decoder = initPackedDecoder(g.config, g.cache)
result = loadNodes(decoder, g.packed, thisModule, tree, n)
proc setupBackendModule(g: ModuleGraph; m: var LoadedModule) =
if g.backend == nil:
g.backend = cgendata.newModuleList(g)
assert g.backend != nil
var bmod = cgen.newModule(BModuleList(g.backend), m.module, g.config)
bmod.idgen = idgenFromLoadedModule(m)
proc generateCodeForModule(g: ModuleGraph; m: var LoadedModule; alive: var AliveSyms) =
var bmod = BModuleList(g.backend).modules[m.module.position]
assert bmod != nil
bmod.flags.incl useAliveDataFromDce
bmod.alive = move alive[m.module.position]
for p in allNodes(m.fromDisk.topLevel):
let n = unpackTree(g, m.module.position, m.fromDisk.topLevel, p)
cgen.genTopLevelStmt(bmod, n)
finalCodegenActions(g, bmod, newNodeI(nkStmtList, m.module.info))
m.fromDisk.backendFlags = cgen.whichInitProcs(bmod)
proc replayTypeInfo(g: ModuleGraph; m: var LoadedModule; origin: FileIndex) =
for x in mitems(m.fromDisk.emittedTypeInfo):
#echo "found type ", x, " for file ", int(origin)
g.emittedTypeInfo[x] = origin
proc addFileToLink(config: ConfigRef; m: PSym) =
let filename = AbsoluteFile toFullPath(config, m.position.FileIndex)
let ext =
if config.backend == backendCpp: ".nim.cpp"
elif config.backend == backendObjc: ".nim.m"
else: ".nim.c"
let cfile = changeFileExt(completeCfilePath(config, withPackageName(config, filename)), ext)
let objFile = completeCfilePath(config, toObjFile(config, cfile))
if fileExists(objFile):
var cf = Cfile(nimname: m.name.s, cname: cfile,
obj: objFile,
flags: {CfileFlag.Cached})
addFileToCompile(config, cf)
when defined(debugDce):
import os, std/packedsets
proc storeAliveSymsImpl(asymFile: AbsoluteFile; s: seq[int32]) =
var f = rodfiles.create(asymFile.string)
f.storeHeader()
f.storeSection aliveSymsSection
f.storeSeq(s)
close f
template prepare {.dirty.} =
let asymFile = toRodFile(config, AbsoluteFile toFullPath(config, position.FileIndex), ".alivesyms")
var s = newSeqOfCap[int32](alive[position].len)
for a in items(alive[position]): s.add int32(a)
sort(s)
proc storeAliveSyms(config: ConfigRef; position: int; alive: AliveSyms) =
prepare()
storeAliveSymsImpl(asymFile, s)
proc aliveSymsChanged(config: ConfigRef; position: int; alive: AliveSyms): bool =
prepare()
var f2 = rodfiles.open(asymFile.string)
f2.loadHeader()
f2.loadSection aliveSymsSection
var oldData: seq[int32]
f2.loadSeq(oldData)
f2.close
if f2.err == ok and oldData == s:
result = false
else:
when defined(debugDce):
let oldAsSet = toPackedSet[int32](oldData)
let newAsSet = toPackedSet[int32](s)
echo "set of live symbols changed ", asymFile.changeFileExt("rod"), " ", position, " ", f2.err
echo "in old but not in new ", oldAsSet.difference(newAsSet), " number of entries in old ", oldAsSet.len
echo "in new but not in old ", newAsSet.difference(oldAsSet), " number of entries in new ", newAsSet.len
#if execShellCmd(getAppFilename() & " rod " & quoteShell(asymFile.changeFileExt("rod"))) != 0:
# echo "command failed"
result = true
storeAliveSymsImpl(asymFile, s)
proc genPackedModule(g: ModuleGraph, i: int; alive: var AliveSyms) =
# case statement here to enforce exhaustive checks.
case g.packed[i].status
of undefined:
discard "nothing to do"
of loading, stored:
assert false
of storing, outdated:
storeAliveSyms(g.config, g.packed[i].module.position, alive)
generateCodeForModule(g, g.packed[i], alive)
closeRodFile(g, g.packed[i].module)
of loaded:
if g.packed[i].loadedButAliveSetChanged:
generateCodeForModule(g, g.packed[i], alive)
else:
addFileToLink(g.config, g.packed[i].module)
replayTypeInfo(g, g.packed[i], FileIndex(i))
if g.backend == nil:
g.backend = cgendata.newModuleList(g)
registerInitProcs(BModuleList(g.backend), g.packed[i].module, g.packed[i].fromDisk.backendFlags)
proc generateCode*(g: ModuleGraph) =
## The single entry point, generate C(++) code for the entire
## Nim program aka `ModuleGraph`.
resetForBackend(g)
var alive = computeAliveSyms(g.packed, g.config)
when false:
for i in 0..high(g.packed):
echo i, " is of status ", g.packed[i].status, " ", toFullPath(g.config, FileIndex(i))
# First pass: Setup all the backend modules for all the modules that have
# changed:
for i in 0..high(g.packed):
# case statement here to enforce exhaustive checks.
case g.packed[i].status
of undefined:
discard "nothing to do"
of loading, stored:
assert false
of storing, outdated:
setupBackendModule(g, g.packed[i])
of loaded:
# Even though this module didn't change, DCE might trigger a change.
# Consider this case: Module A uses symbol S from B and B does not use
# S itself. A is then edited not to use S either. Thus we have to
# recompile B in order to remove S from the final result.
if aliveSymsChanged(g.config, g.packed[i].module.position, alive):
g.packed[i].loadedButAliveSetChanged = true
setupBackendModule(g, g.packed[i])
# Second pass: Code generation.
let mainModuleIdx = g.config.projectMainIdx2.int
# We need to generate the main module last, because only then
# all init procs have been registered:
for i in 0..high(g.packed):
if i != mainModuleIdx:
genPackedModule(g, i, alive)
if mainModuleIdx >= 0:
genPackedModule(g, mainModuleIdx, alive)

161
compiler/ic/dce.nim Normal file
View File

@@ -0,0 +1,161 @@
#
#
# The Nim Compiler
# (c) Copyright 2021 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Dead code elimination (=DCE) for IC.
import std/[intsets, tables]
import ".." / [ast, options, lineinfos, types]
import packed_ast, ic, bitabs
type
AliveSyms* = seq[IntSet]
AliveContext* = object ## Purpose is to fill the 'alive' field.
stack: seq[(int, TOptions, NodePos)] ## A stack for marking symbols as alive.
decoder: PackedDecoder ## We need a PackedDecoder for module ID address translations.
thisModule: int ## The module we're currently analysing for DCE.
alive: AliveSyms ## The final result of our computation.
options: TOptions
compilerProcs: Table[string, (int, int32)]
proc isExportedToC(c: var AliveContext; g: PackedModuleGraph; symId: int32): bool =
## "Exported to C" procs are special (these are marked with '.exportc') because these
## must not be optimized away!
let symPtr = unsafeAddr g[c.thisModule].fromDisk.syms[symId]
let flags = symPtr.flags
# due to a bug/limitation in the lambda lifting, unused inner procs
# are not transformed correctly; issue (#411). However, the whole purpose here
# is to eliminate unused procs. So there is no special logic required for this case.
if sfCompileTime notin flags:
if ({sfExportc, sfCompilerProc} * flags != {}) or
(symPtr.kind == skMethod):
result = true
# XXX: This used to be a condition to:
# (sfExportc in prc.flags and lfExportLib in prc.loc.flags) or
if sfCompilerProc in flags:
c.compilerProcs[g[c.thisModule].fromDisk.strings[symPtr.name]] = (c.thisModule, symId)
template isNotGeneric(n: NodePos): bool = ithSon(tree, n, genericParamsPos).kind == nkEmpty
proc followLater(c: var AliveContext; g: PackedModuleGraph; module: int; item: int32) =
## Marks a symbol 'item' as used and later in 'followNow' the symbol's body will
## be analysed.
if not c.alive[module].containsOrIncl(item):
var body = g[module].fromDisk.syms[item].ast
if body != emptyNodeId:
let opt = g[module].fromDisk.syms[item].options
if g[module].fromDisk.syms[item].kind in routineKinds:
body = NodeId ithSon(g[module].fromDisk.bodies, NodePos body, bodyPos)
c.stack.add((module, opt, NodePos(body)))
when false:
let nid = g[module].fromDisk.syms[item].name
if nid != LitId(0):
let name = g[module].fromDisk.strings[nid]
if name in ["nimFrame", "callDepthLimitReached"]:
echo "I was called! ", name, " body exists: ", body != emptyNodeId, " ", module, " ", item
proc requestCompilerProc(c: var AliveContext; g: PackedModuleGraph; name: string) =
let (module, item) = c.compilerProcs[name]
followLater(c, g, module, item)
proc loadTypeKind(t: PackedItemId; c: AliveContext; g: PackedModuleGraph; toSkip: set[TTypeKind]): TTypeKind =
template kind(t: ItemId): TTypeKind = g[t.module].fromDisk.types[t.item].kind
var t2 = translateId(t, g, c.thisModule, c.decoder.config)
result = t2.kind
while result in toSkip:
t2 = translateId(g[t2.module].fromDisk.types[t2.item].types[^1], g, t2.module, c.decoder.config)
result = t2.kind
proc rangeCheckAnalysis(c: var AliveContext; g: PackedModuleGraph; tree: PackedTree; n: NodePos) =
## Replicates the logic of `ccgexprs.genRangeChck`.
## XXX Refactor so that the duplicated logic is avoided. However, for now it's not clear
## the approach has enough merit.
var dest = loadTypeKind(n.typ, c, g, abstractVar)
if optRangeCheck notin c.options or dest in {tyUInt..tyUInt64}:
discard "no need to generate a check because it was disabled"
else:
let n0t = loadTypeKind(n.firstSon.typ, c, g, {})
if n0t in {tyUInt, tyUInt64}:
c.requestCompilerProc(g, "raiseRangeErrorNoArgs")
else:
let raiser =
case loadTypeKind(n.typ, c, g, abstractVarRange)
of tyUInt..tyUInt64, tyChar: "raiseRangeErrorU"
of tyFloat..tyFloat128: "raiseRangeErrorF"
else: "raiseRangeErrorI"
c.requestCompilerProc(g, raiser)
proc aliveCode(c: var AliveContext; g: PackedModuleGraph; tree: PackedTree; n: NodePos) =
## Marks the symbols we encounter when we traverse the AST at `tree[n]` as alive, unless
## it is purely in a declarative context (type section etc.).
case n.kind
of nkNone..pred(nkSym), succ(nkSym)..nkNilLit:
discard "ignore non-sym atoms"
of nkSym:
# This symbol is alive and everything its body references.
followLater(c, g, c.thisModule, n.operand)
of nkModuleRef:
let (n1, n2) = sons2(tree, n)
assert n1.kind == nkInt32Lit
assert n2.kind == nkInt32Lit
let m = n1.litId
let item = n2.operand
let otherModule = toFileIndexCached(c.decoder, g, c.thisModule, m).int
followLater(c, g, otherModule, item)
of nkMacroDef, nkTemplateDef, nkTypeSection, nkTypeOfExpr,
nkCommentStmt, nkIncludeStmt,
nkImportStmt, nkImportExceptStmt, nkExportStmt, nkExportExceptStmt,
nkFromStmt, nkStaticStmt:
discard
of nkVarSection, nkLetSection, nkConstSection:
# XXX ignore the defining local variable name?
for son in sonsReadonly(tree, n):
aliveCode(c, g, tree, son)
of nkChckRangeF, nkChckRange64, nkChckRange:
rangeCheckAnalysis(c, g, tree, n)
of nkProcDef, nkConverterDef, nkMethodDef, nkFuncDef, nkIteratorDef:
if n.firstSon.kind == nkSym and isNotGeneric(n):
let item = n.firstSon.operand
if isExportedToC(c, g, item):
# This symbol is alive and everything its body references.
followLater(c, g, c.thisModule, item)
else:
for son in sonsReadonly(tree, n):
aliveCode(c, g, tree, son)
proc followNow(c: var AliveContext; g: PackedModuleGraph) =
## Mark all entries in the stack. Marking can add more entries
## to the stack but eventually we have looked at every alive symbol.
while c.stack.len > 0:
let (modId, opt, ast) = c.stack.pop()
c.thisModule = modId
c.options = opt
aliveCode(c, g, g[modId].fromDisk.bodies, ast)
proc computeAliveSyms*(g: PackedModuleGraph; conf: ConfigRef): AliveSyms =
## Entry point for our DCE algorithm.
var c = AliveContext(stack: @[], decoder: PackedDecoder(config: conf),
thisModule: -1, alive: newSeq[IntSet](g.len),
options: conf.options)
for i in countdown(high(g), 0):
if g[i].status != undefined:
c.thisModule = i
for p in allNodes(g[i].fromDisk.topLevel):
aliveCode(c, g, g[i].fromDisk.topLevel, p)
followNow(c, g)
result = move(c.alive)
proc isAlive*(a: AliveSyms; module: int, item: int32): bool =
## Backends use this to query if a symbol is `alive` which means
## we need to produce (C/C++/etc) code for it.
result = a[module].contains(item)

56
compiler/ic/design.rst Normal file
View File

@@ -0,0 +1,56 @@
====================================
Incremental Recompilations
====================================
We split the Nim compiler into a frontend and a backend.
The frontend produces a set of `.rod` files. Every `.nim` module
produces its own `.rod` file.
- The IR must be a faithful representation of the AST in memory.
- The backend can do its own caching but doesn't have to. In the
current implementation the backend also caches its results.
Advantage of the "set of files" vs the previous global database:
- By construction, we either read from the `.rod` file or from the
`.nim` file, there can be no inconsistency. There can also be no
partial updates.
- No dependency to external packages (SQLite). SQLite simply is too
slow and the old way of serialization was too slow too. We use a
format designed for Nim and expect to base further tools on this
file format.
References to external modules must be (moduleId, symId) pairs.
The symbol IDs are module specific. This way no global ID increment
mechanism needs to be implemented that we could get wrong. ModuleIds
are rod-file specific too.
Global state
------------
There is no global state.
Rod File Format
---------------
It's a simple binary file format. `rodfiles.nim` contains some details.
Backend
-------
Nim programmers have to come to enjoy whole-program dead code elimination,
by default. Since this is a "whole program" optimization, it does break
modularity. However, thanks to the packed AST representation we can perform
this global analysis without having to unpack anything. This is basically
a mark&sweep GC algorithm:
- Start with the top level statements. Every symbol that is referenced
from a top level statement is not "dead" and needs to be compiled by
the backend.
- Every symbol referenced from a referenced symbol also has to be
compiled.
Caching logic: Only if the set of alive symbols is different from the
last run, the module has to be regenerated.

File diff suppressed because it is too large Load Diff

1229
compiler/ic/ic.nim Normal file

File diff suppressed because it is too large Load Diff

149
compiler/ic/integrity.nim Normal file
View File

@@ -0,0 +1,149 @@
#
#
# The Nim Compiler
# (c) Copyright 2021 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Integrity checking for a set of .rod files.
## The set must cover a complete Nim project.
import sets
import ".." / [ast, modulegraphs]
import packed_ast, bitabs, ic
type
CheckedContext = object
g: ModuleGraph
thisModule: int32
checkedSyms: HashSet[ItemId]
checkedTypes: HashSet[ItemId]
proc checkType(c: var CheckedContext; typeId: PackedItemId)
proc checkForeignSym(c: var CheckedContext; symId: PackedItemId)
proc checkNode(c: var CheckedContext; tree: PackedTree; n: NodePos)
proc checkTypeObj(c: var CheckedContext; typ: PackedType) =
for child in typ.types:
checkType(c, child)
if typ.n != emptyNodeId:
checkNode(c, c.g.packed[c.thisModule].fromDisk.bodies, NodePos typ.n)
if typ.sym != nilItemId:
checkForeignSym(c, typ.sym)
if typ.owner != nilItemId:
checkForeignSym(c, typ.owner)
checkType(c, typ.typeInst)
proc checkType(c: var CheckedContext; typeId: PackedItemId) =
if typeId == nilItemId: return
let itemId = translateId(typeId, c.g.packed, c.thisModule, c.g.config)
if not c.checkedTypes.containsOrIncl(itemId):
let oldThisModule = c.thisModule
c.thisModule = itemId.module
checkTypeObj c, c.g.packed[itemId.module].fromDisk.types[itemId.item]
c.thisModule = oldThisModule
proc checkSym(c: var CheckedContext; s: PackedSym) =
if s.name != LitId(0):
assert c.g.packed[c.thisModule].fromDisk.strings.hasLitId s.name
checkType c, s.typ
if s.ast != emptyNodeId:
checkNode(c, c.g.packed[c.thisModule].fromDisk.bodies, NodePos s.ast)
if s.owner != nilItemId:
checkForeignSym(c, s.owner)
proc checkLocalSym(c: var CheckedContext; item: int32) =
let itemId = ItemId(module: c.thisModule, item: item)
if not c.checkedSyms.containsOrIncl(itemId):
checkSym c, c.g.packed[c.thisModule].fromDisk.syms[item]
proc checkForeignSym(c: var CheckedContext; symId: PackedItemId) =
let itemId = translateId(symId, c.g.packed, c.thisModule, c.g.config)
if not c.checkedSyms.containsOrIncl(itemId):
let oldThisModule = c.thisModule
c.thisModule = itemId.module
checkSym c, c.g.packed[itemId.module].fromDisk.syms[itemId.item]
c.thisModule = oldThisModule
proc checkNode(c: var CheckedContext; tree: PackedTree; n: NodePos) =
if tree[n.int].typeId != nilItemId:
checkType(c, tree[n.int].typeId)
case n.kind
of nkEmpty, nkNilLit, nkType, nkNilRodNode:
discard
of nkIdent:
assert c.g.packed[c.thisModule].fromDisk.strings.hasLitId n.litId
of nkSym:
checkLocalSym(c, tree.nodes[n.int].operand)
of directIntLit:
discard
of externIntLit, nkFloatLit..nkFloat128Lit:
assert c.g.packed[c.thisModule].fromDisk.numbers.hasLitId n.litId
of nkStrLit..nkTripleStrLit:
assert c.g.packed[c.thisModule].fromDisk.strings.hasLitId n.litId
of nkModuleRef:
let (n1, n2) = sons2(tree, n)
assert n1.kind == nkInt32Lit
assert n2.kind == nkInt32Lit
checkForeignSym(c, PackedItemId(module: n1.litId, item: tree.nodes[n2.int].operand))
else:
for n0 in sonsReadonly(tree, n):
checkNode(c, tree, n0)
proc checkTree(c: var CheckedContext; t: PackedTree) =
for p in allNodes(t): checkNode(c, t, p)
proc checkLocalSymIds(c: var CheckedContext; m: PackedModule; symIds: seq[int32]) =
for symId in symIds:
assert symId >= 0 and symId < m.syms.len, $symId & " " & $m.syms.len
proc checkModule(c: var CheckedContext; m: PackedModule) =
# We check that:
# - Every symbol references existing types and symbols.
# - Every tree node references existing types and symbols.
for i in 0..high(m.syms):
checkLocalSym c, int32(i)
checkTree c, m.toReplay
checkTree c, m.topLevel
for e in m.exports:
assert e[1] >= 0 and e[1] < m.syms.len
assert e[0] == m.syms[e[1]].name
for e in m.compilerProcs:
assert e[1] >= 0 and e[1] < m.syms.len
assert e[0] == m.syms[e[1]].name
checkLocalSymIds c, m, m.converters
checkLocalSymIds c, m, m.methods
checkLocalSymIds c, m, m.trmacros
checkLocalSymIds c, m, m.pureEnums
#[
To do: Check all these fields:
reexports*: seq[(LitId, PackedItemId)]
macroUsages*: seq[(PackedItemId, PackedLineInfo)]
typeInstCache*: seq[(PackedItemId, PackedItemId)]
procInstCache*: seq[PackedInstantiation]
attachedOps*: seq[(TTypeAttachedOp, PackedItemId, PackedItemId)]
methodsPerType*: seq[(PackedItemId, int, PackedItemId)]
enumToStringProcs*: seq[(PackedItemId, PackedItemId)]
]#
proc checkIntegrity*(g: ModuleGraph) =
var c = CheckedContext(g: g)
for i in 0..high(g.packed):
# case statement here to enforce exhaustive checks.
case g.packed[i].status
of undefined:
discard "nothing to do"
of loading:
assert false, "cannot check integrity: Module still loading"
of stored, storing, outdated, loaded:
c.thisModule = int32 i
checkModule(c, g.packed[i].fromDisk)

167
compiler/ic/navigator.nim Normal file
View File

@@ -0,0 +1,167 @@
#
#
# The Nim Compiler
# (c) Copyright 2021 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Supports the "nim check --ic:on --defusages:FILE,LINE,COL"
## IDE-like features. It uses the set of .rod files to accomplish
## its task. The set must cover a complete Nim project.
import sets
from os import nil
from std/private/miscdollars import toLocation
import ".." / [ast, modulegraphs, msgs, options]
import packed_ast, bitabs, ic
type
NavContext = object
g: ModuleGraph
thisModule: int32
trackPos: PackedLineInfo
alreadyEmitted: HashSet[string]
outputSep: char # for easier testing, use short filenames and spaces instead of tabs.
proc isTracked(current, trackPos: PackedLineInfo, tokenLen: int): bool =
if current.file == trackPos.file and current.line == trackPos.line:
let col = trackPos.col
if col >= current.col and col < current.col+tokenLen:
return true
proc searchLocalSym(c: var NavContext; s: PackedSym; info: PackedLineInfo): bool =
result = s.name != LitId(0) and
isTracked(info, c.trackPos, c.g.packed[c.thisModule].fromDisk.strings[s.name].len)
proc searchForeignSym(c: var NavContext; s: ItemId; info: PackedLineInfo): bool =
let name = c.g.packed[s.module].fromDisk.syms[s.item].name
result = name != LitId(0) and
isTracked(info, c.trackPos, c.g.packed[s.module].fromDisk.strings[name].len)
const
EmptyItemId = ItemId(module: -1'i32, item: -1'i32)
proc search(c: var NavContext; tree: PackedTree): ItemId =
# We use the linear representation here directly:
for i in 0..high(tree.nodes):
case tree.nodes[i].kind
of nkSym:
let item = tree.nodes[i].operand
if searchLocalSym(c, c.g.packed[c.thisModule].fromDisk.syms[item], tree.nodes[i].info):
return ItemId(module: c.thisModule, item: item)
of nkModuleRef:
if tree.nodes[i].info.line == c.trackPos.line and tree.nodes[i].info.file == c.trackPos.file:
let (n1, n2) = sons2(tree, NodePos i)
assert n1.kind == nkInt32Lit
assert n2.kind == nkInt32Lit
let pId = PackedItemId(module: n1.litId, item: tree.nodes[n2.int].operand)
let itemId = translateId(pId, c.g.packed, c.thisModule, c.g.config)
if searchForeignSym(c, itemId, tree.nodes[i].info):
return itemId
else: discard
return EmptyItemId
proc isDecl(tree: PackedTree; n: NodePos): bool =
# XXX This is not correct yet.
const declarativeNodes = procDefs + {nkMacroDef, nkTemplateDef,
nkLetSection, nkVarSection, nkUsingStmt, nkConstSection, nkTypeSection,
nkIdentDefs, nkEnumTy, nkVarTuple}
result = n.int >= 0 and tree[n.int].kind in declarativeNodes
proc usage(c: var NavContext; info: PackedLineInfo; isDecl: bool) =
var m = ""
var file = c.g.packed[c.thisModule].fromDisk.strings[info.file]
if c.outputSep == ' ':
file = os.extractFilename file
toLocation(m, file, info.line.int, info.col.int + ColOffset)
if not c.alreadyEmitted.containsOrIncl(m):
msgWriteln c.g.config, (if isDecl: "def" else: "usage") & c.outputSep & m
proc list(c: var NavContext; tree: PackedTree; sym: ItemId) =
for i in 0..high(tree.nodes):
case tree.nodes[i].kind
of nkSym:
let item = tree.nodes[i].operand
if sym.item == item and sym.module == c.thisModule:
usage(c, tree.nodes[i].info, isDecl(tree, parent(NodePos i)))
of nkModuleRef:
let (n1, n2) = sons2(tree, NodePos i)
assert n1.kind == nkInt32Lit
assert n2.kind == nkInt32Lit
let pId = PackedItemId(module: n1.litId, item: tree.nodes[n2.int].operand)
let itemId = translateId(pId, c.g.packed, c.thisModule, c.g.config)
if itemId.item == sym.item and sym.module == itemId.module:
usage(c, tree.nodes[i].info, isDecl(tree, parent(NodePos i)))
else: discard
proc searchForIncludeFile(g: ModuleGraph; fullPath: string): int =
for i in 0..high(g.packed):
for k in 1..high(g.packed[i].fromDisk.includes):
# we start from 1 because the first "include" file is
# the module's filename.
if os.cmpPaths(g.packed[i].fromDisk.strings[g.packed[i].fromDisk.includes[k][0]], fullPath) == 0:
return i
return -1
proc nav(g: ModuleGraph) =
# translate the track position to a packed position:
let unpacked = g.config.m.trackPos
var mid = unpacked.fileIndex.int
let fullPath = toFullPath(g.config, unpacked.fileIndex)
if g.packed[mid].status == undefined:
# check if 'mid' is an include file of some other module:
mid = searchForIncludeFile(g, fullPath)
if mid < 0:
localError(g.config, unpacked, "unknown file name: " & fullPath)
return
let fileId = g.packed[mid].fromDisk.strings.getKeyId(fullPath)
if fileId == LitId(0):
internalError(g.config, unpacked, "cannot find a valid file ID")
return
var c = NavContext(
g: g,
thisModule: int32 mid,
trackPos: PackedLineInfo(line: unpacked.line, col: unpacked.col, file: fileId),
outputSep: if isDefined(g.config, "nimIcNavigatorTests"): ' ' else: '\t'
)
var symId = search(c, g.packed[mid].fromDisk.topLevel)
if symId == EmptyItemId:
symId = search(c, g.packed[mid].fromDisk.bodies)
if symId == EmptyItemId:
localError(g.config, unpacked, "no symbol at this position")
return
for i in 0..high(g.packed):
# case statement here to enforce exhaustive checks.
case g.packed[i].status
of undefined:
discard "nothing to do"
of loading:
assert false, "cannot check integrity: Module still loading"
of stored, storing, outdated, loaded:
c.thisModule = int32 i
list(c, g.packed[i].fromDisk.topLevel, symId)
list(c, g.packed[i].fromDisk.bodies, symId)
proc navDefinition*(g: ModuleGraph) = nav(g)
proc navUsages*(g: ModuleGraph) = nav(g)
proc navDefusages*(g: ModuleGraph) = nav(g)
proc writeRodFiles*(g: ModuleGraph) =
for i in 0..high(g.packed):
case g.packed[i].status
of undefined, loading, stored, loaded:
discard "nothing to do"
of storing, outdated:
closeRodFile(g, g.packed[i].module)

417
compiler/ic/packed_ast.nim Normal file
View File

@@ -0,0 +1,417 @@
#
#
# The Nim Compiler
# (c) Copyright 2020 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Packed AST representation, mostly based on a seq of nodes.
## For IC support. Far future: Rewrite the compiler passes to
## use this representation directly in all the transformations,
## it is superior.
import hashes, tables, strtabs
import bitabs
import ".." / [ast, options]
type
SymId* = distinct int32
ModuleId* = distinct int32
NodePos* = distinct int
NodeId* = distinct int32
PackedItemId* = object
module*: LitId # 0 if it's this module
item*: int32 # same as the in-memory representation
const
nilItemId* = PackedItemId(module: LitId(0), item: -1.int32)
const
emptyNodeId* = NodeId(-1)
type
PackedLineInfo* = object
line*: uint16
col*: int16
file*: LitId
PackedLib* = object
kind*: TLibKind
generated*: bool
isOverriden*: bool
name*: LitId
path*: NodeId
PackedSym* = object
kind*: TSymKind
name*: LitId
typ*: PackedItemId
flags*: TSymFlags
magic*: TMagic
info*: PackedLineInfo
ast*: NodeId
owner*: PackedItemId
guard*: PackedItemId
bitsize*: int
alignment*: int # for alignment
options*: TOptions
position*: int
offset*: int
externalName*: LitId # instead of TLoc
locFlags*: TLocFlags
annex*: PackedLib
when hasFFI:
cname*: LitId
constraint*: NodeId
PackedType* = object
kind*: TTypeKind
callConv*: TCallingConvention
#nodekind*: TNodeKind
flags*: TTypeFlags
types*: seq[PackedItemId]
n*: NodeId
#nodeflags*: TNodeFlags
sym*: PackedItemId
owner*: PackedItemId
size*: BiggestInt
align*: int16
paddingAtEnd*: int16
lockLevel*: TLockLevel # lock level as required for deadlock checking
# not serialized: loc*: TLoc because it is backend-specific
typeInst*: PackedItemId
nonUniqueId*: int32
PackedNode* = object # 28 bytes
kind*: TNodeKind
flags*: TNodeFlags
operand*: int32 # for kind in {nkSym, nkSymDef}: SymId
# for kind in {nkStrLit, nkIdent, nkNumberLit}: LitId
# for kind in nkInt32Lit: direct value
# for non-atom kinds: the number of nodes (for easy skipping)
typeId*: PackedItemId
info*: PackedLineInfo
PackedTree* = object ## usually represents a full Nim module
nodes*: seq[PackedNode]
PackedInstantiation* = object
key*, sym*: PackedItemId
concreteTypes*: seq[PackedItemId]
proc `==`*(a, b: SymId): bool {.borrow.}
proc hash*(a: SymId): Hash {.borrow.}
proc `==`*(a, b: NodePos): bool {.borrow.}
#proc `==`*(a, b: PackedItemId): bool {.borrow.}
proc `==`*(a, b: NodeId): bool {.borrow.}
proc newTreeFrom*(old: PackedTree): PackedTree =
result.nodes = @[]
when false: result.sh = old.sh
when false:
proc declareSym*(tree: var PackedTree; kind: TSymKind;
name: LitId; info: PackedLineInfo): SymId =
result = SymId(tree.sh.syms.len)
tree.sh.syms.add PackedSym(kind: kind, name: name, flags: {}, magic: mNone, info: info)
proc litIdFromName*(tree: PackedTree; name: string): LitId =
result = tree.sh.strings.getOrIncl(name)
proc add*(tree: var PackedTree; kind: TNodeKind; token: string; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: kind, info: info,
operand: int32 getOrIncl(tree.sh.strings, token))
proc add*(tree: var PackedTree; kind: TNodeKind; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: kind, operand: 0, info: info)
proc throwAwayLastNode*(tree: var PackedTree) =
tree.nodes.setLen(tree.nodes.len-1)
proc addIdent*(tree: var PackedTree; s: LitId; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: nkIdent, operand: int32(s), info: info)
proc addSym*(tree: var PackedTree; s: int32; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: nkSym, operand: s, info: info)
proc addModuleId*(tree: var PackedTree; s: ModuleId; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: nkInt32Lit, operand: int32(s), info: info)
proc addSymDef*(tree: var PackedTree; s: SymId; info: PackedLineInfo) =
tree.nodes.add PackedNode(kind: nkSym, operand: int32(s), info: info)
proc isAtom*(tree: PackedTree; pos: int): bool {.inline.} = tree.nodes[pos].kind <= nkNilLit
proc copyTree*(dest: var PackedTree; tree: PackedTree; n: NodePos) =
# and this is why the IR is superior. We can copy subtrees
# via a linear scan.
let pos = n.int
let L = if isAtom(tree, pos): 1 else: tree.nodes[pos].operand
let d = dest.nodes.len
dest.nodes.setLen(d + L)
for i in 0..<L:
dest.nodes[d+i] = tree.nodes[pos+i]
when false:
proc copySym*(dest: var PackedTree; tree: PackedTree; s: SymId): SymId =
result = SymId(dest.sh.syms.len)
assert int(s) < tree.sh.syms.len
let oldSym = tree.sh.syms[s.int]
dest.sh.syms.add oldSym
type
PatchPos = distinct int
when false:
proc prepare*(tree: var PackedTree; kind: TNodeKind; info: PackedLineInfo): PatchPos =
result = PatchPos tree.nodes.len
tree.nodes.add PackedNode(kind: kind, operand: 0, info: info)
proc prepare*(tree: var PackedTree; kind: TNodeKind; flags: TNodeFlags; typeId: PackedItemId; info: PackedLineInfo): PatchPos =
result = PatchPos tree.nodes.len
tree.nodes.add PackedNode(kind: kind, flags: flags, operand: 0, info: info,
typeId: typeId)
proc prepare*(dest: var PackedTree; source: PackedTree; sourcePos: NodePos): PatchPos =
result = PatchPos dest.nodes.len
dest.nodes.add source.nodes[sourcePos.int]
proc patch*(tree: var PackedTree; pos: PatchPos) =
let pos = pos.int
assert tree.nodes[pos].kind > nkNilLit
let distance = int32(tree.nodes.len - pos)
tree.nodes[pos].operand = distance
proc len*(tree: PackedTree): int {.inline.} = tree.nodes.len
proc `[]`*(tree: PackedTree; i: int): lent PackedNode {.inline.} =
tree.nodes[i]
proc nextChild(tree: PackedTree; pos: var int) {.inline.} =
if tree.nodes[pos].kind > nkNilLit:
assert tree.nodes[pos].operand > 0
inc pos, tree.nodes[pos].operand
else:
inc pos
iterator sonsReadonly*(tree: PackedTree; n: NodePos): NodePos =
var pos = n.int
assert tree.nodes[pos].kind > nkNilLit
let last = pos + tree.nodes[pos].operand
inc pos
while pos < last:
yield NodePos pos
nextChild tree, pos
iterator sons*(dest: var PackedTree; tree: PackedTree; n: NodePos): NodePos =
let patchPos = prepare(dest, tree, n)
for x in sonsReadonly(tree, n): yield x
patch dest, patchPos
iterator isons*(dest: var PackedTree; tree: PackedTree;
n: NodePos): (int, NodePos) =
var i = 0
for ch0 in sons(dest, tree, n):
yield (i, ch0)
inc i
iterator sonsFrom1*(tree: PackedTree; n: NodePos): NodePos =
var pos = n.int
assert tree.nodes[pos].kind > nkNilLit
let last = pos + tree.nodes[pos].operand
inc pos
if pos < last:
nextChild tree, pos
while pos < last:
yield NodePos pos
nextChild tree, pos
iterator sonsWithoutLast2*(tree: PackedTree; n: NodePos): NodePos =
var count = 0
for child in sonsReadonly(tree, n):
inc count
var pos = n.int
assert tree.nodes[pos].kind > nkNilLit
let last = pos + tree.nodes[pos].operand
inc pos
while pos < last and count > 2:
yield NodePos pos
dec count
nextChild tree, pos
proc parentImpl(tree: PackedTree; n: NodePos): NodePos =
# finding the parent of a node is rather easy:
var pos = n.int - 1
while pos >= 0 and (isAtom(tree, pos) or (pos + tree.nodes[pos].operand - 1 < n.int)):
dec pos
#assert pos >= 0, "node has no parent"
result = NodePos(pos)
template parent*(n: NodePos): NodePos = parentImpl(tree, n)
proc hasXsons*(tree: PackedTree; n: NodePos; x: int): bool =
var count = 0
if tree.nodes[n.int].kind > nkNilLit:
for child in sonsReadonly(tree, n): inc count
result = count == x
proc hasAtLeastXsons*(tree: PackedTree; n: NodePos; x: int): bool =
if tree.nodes[n.int].kind > nkNilLit:
var count = 0
for child in sonsReadonly(tree, n):
inc count
if count >= x: return true
return false
proc firstSon*(tree: PackedTree; n: NodePos): NodePos {.inline.} =
NodePos(n.int+1)
proc kind*(tree: PackedTree; n: NodePos): TNodeKind {.inline.} =
tree.nodes[n.int].kind
proc litId*(tree: PackedTree; n: NodePos): LitId {.inline.} =
LitId tree.nodes[n.int].operand
proc info*(tree: PackedTree; n: NodePos): PackedLineInfo {.inline.} =
tree.nodes[n.int].info
template typ*(n: NodePos): PackedItemId =
tree.nodes[n.int].typeId
template flags*(n: NodePos): TNodeFlags =
tree.nodes[n.int].flags
template operand*(n: NodePos): int32 =
tree.nodes[n.int].operand
proc span*(tree: PackedTree; pos: int): int {.inline.} =
if isAtom(tree, pos): 1 else: tree.nodes[pos].operand
proc sons2*(tree: PackedTree; n: NodePos): (NodePos, NodePos) =
assert(not isAtom(tree, n.int))
let a = n.int+1
let b = a + span(tree, a)
result = (NodePos a, NodePos b)
proc sons3*(tree: PackedTree; n: NodePos): (NodePos, NodePos, NodePos) =
assert(not isAtom(tree, n.int))
let a = n.int+1
let b = a + span(tree, a)
let c = b + span(tree, b)
result = (NodePos a, NodePos b, NodePos c)
proc ithSon*(tree: PackedTree; n: NodePos; i: int): NodePos =
if tree.nodes[n.int].kind > nkNilLit:
var count = 0
for child in sonsReadonly(tree, n):
if count == i: return child
inc count
assert false, "node has no i-th child"
when false:
proc `@`*(tree: PackedTree; lit: LitId): lent string {.inline.} =
tree.sh.strings[lit]
template kind*(n: NodePos): TNodeKind = tree.nodes[n.int].kind
template info*(n: NodePos): PackedLineInfo = tree.nodes[n.int].info
template litId*(n: NodePos): LitId = LitId tree.nodes[n.int].operand
template symId*(n: NodePos): SymId = SymId tree.nodes[n.int].operand
proc firstSon*(n: NodePos): NodePos {.inline.} = NodePos(n.int+1)
when false:
# xxx `nkStrLit` or `nkStrLit..nkTripleStrLit:` below?
proc strLit*(tree: PackedTree; n: NodePos): lent string =
assert n.kind == nkStrLit
result = tree.sh.strings[LitId tree.nodes[n.int].operand]
proc strVal*(tree: PackedTree; n: NodePos): string =
assert n.kind == nkStrLit
result = tree.sh.strings[LitId tree.nodes[n.int].operand]
#result = cookedStrLit(raw)
proc filenameVal*(tree: PackedTree; n: NodePos): string =
case n.kind
of nkStrLit:
result = strVal(tree, n)
of nkIdent:
result = tree.sh.strings[n.litId]
of nkSym:
result = tree.sh.strings[tree.sh.syms[int n.symId].name]
else:
result = ""
proc identAsStr*(tree: PackedTree; n: NodePos): lent string =
assert n.kind == nkIdent
result = tree.sh.strings[LitId tree.nodes[n.int].operand]
const
externIntLit* = {nkCharLit,
nkIntLit,
nkInt8Lit,
nkInt16Lit,
nkInt64Lit,
nkUIntLit,
nkUInt8Lit,
nkUInt16Lit,
nkUInt32Lit,
nkUInt64Lit} # nkInt32Lit is missing by design!
externSIntLit* = {nkIntLit, nkInt8Lit, nkInt16Lit, nkInt64Lit}
externUIntLit* = {nkUIntLit, nkUInt8Lit, nkUInt16Lit, nkUInt32Lit, nkUInt64Lit}
directIntLit* = nkInt32Lit
when false:
proc identIdImpl(tree: PackedTree; n: NodePos): LitId =
if n.kind == nkIdent:
result = n.litId
elif n.kind == nkSym:
result = tree.sh.syms[int n.symId].name
else:
result = LitId(0)
template identId*(n: NodePos): LitId = identIdImpl(tree, n)
template copyInto*(dest, n, body) =
let patchPos = prepare(dest, tree, n)
body
patch dest, patchPos
template copyIntoKind*(dest, kind, info, body) =
let patchPos = prepare(dest, kind, info)
body
patch dest, patchPos
when false:
proc hasPragma*(tree: PackedTree; n: NodePos; pragma: string): bool =
let litId = tree.sh.strings.getKeyId(pragma)
if litId == LitId(0):
return false
assert n.kind == nkPragma
for ch0 in sonsReadonly(tree, n):
if ch0.kind == nkExprColonExpr:
if ch0.firstSon.identId == litId:
return true
elif ch0.identId == litId:
return true
proc getNodeId*(tree: PackedTree): NodeId {.inline.} = NodeId tree.nodes.len
when false:
proc produceError*(dest: var PackedTree; tree: PackedTree; n: NodePos; msg: string) =
let patchPos = prepare(dest, nkError, n.info)
dest.add nkStrLit, msg, n.info
copyTree(dest, tree, n)
patch dest, patchPos
iterator allNodes*(tree: PackedTree): NodePos =
var p = 0
while p < tree.len:
yield NodePos(p)
let s = span(tree, p)
inc p, s
proc toPackedItemId*(item: int32): PackedItemId {.inline.} =
PackedItemId(module: LitId(0), item: item)

View File

@@ -14,10 +14,9 @@
import ".." / [ast, modulegraphs, trees, extccomp, btrees,
msgs, lineinfos, pathutils, options, cgmeth]
import std/tables
import tables
when defined(nimPreviewSlimSystem):
import std/assertions
import packed_ast, ic, bitabs
proc replayStateChanges*(module: PSym; g: ModuleGraph) =
let list = module.ast
@@ -86,3 +85,63 @@ proc replayStateChanges*(module: PSym; g: ModuleGraph) =
g.cacheSeqs[destKey].add val
else:
internalAssert g.config, false
proc replayGenericCacheInformation*(g: ModuleGraph; module: int) =
## We remember the generic instantiations a module performed
## in order to to avoid the code bloat that generic code tends
## to imply. This is cheaper than deduplication of identical
## generic instantiations. However, deduplication is more
## powerful and general and I hope to implement it soon too
## (famous last words).
assert g.packed[module].status == loaded
for it in g.packed[module].fromDisk.typeInstCache:
let key = translateId(it[0], g.packed, module, g.config)
g.typeInstCache.mgetOrPut(key, @[]).add LazyType(id: FullId(module: module, packed: it[1]), typ: nil)
for it in mitems(g.packed[module].fromDisk.procInstCache):
let key = translateId(it.key, g.packed, module, g.config)
let sym = translateId(it.sym, g.packed, module, g.config)
var concreteTypes = newSeq[FullId](it.concreteTypes.len)
for i in 0..high(it.concreteTypes):
let tmp = translateId(it.concreteTypes[i], g.packed, module, g.config)
concreteTypes[i] = FullId(module: tmp.module, packed: it.concreteTypes[i])
g.procInstCache.mgetOrPut(key, @[]).add LazyInstantiation(
module: module, sym: FullId(module: sym.module, packed: it.sym),
concreteTypes: concreteTypes, inst: nil)
for it in mitems(g.packed[module].fromDisk.methodsPerType):
let key = translateId(it[0], g.packed, module, g.config)
let col = it[1]
let tmp = translateId(it[2], g.packed, module, g.config)
let symId = FullId(module: tmp.module, packed: it[2])
g.methodsPerType.mgetOrPut(key, @[]).add (col, LazySym(id: symId, sym: nil))
for it in mitems(g.packed[module].fromDisk.enumToStringProcs):
let key = translateId(it[0], g.packed, module, g.config)
let tmp = translateId(it[1], g.packed, module, g.config)
let symId = FullId(module: tmp.module, packed: it[1])
g.enumToStringProcs[key] = LazySym(id: symId, sym: nil)
for it in mitems(g.packed[module].fromDisk.methods):
let sym = loadSymFromId(g.config, g.cache, g.packed, module,
PackedItemId(module: LitId(0), item: it))
methodDef(g, g.idgen, sym)
when false:
# not used anymore:
for it in mitems(g.packed[module].fromDisk.compilerProcs):
let symId = FullId(module: module, packed: PackedItemId(module: LitId(0), item: it[1]))
g.lazyCompilerprocs[g.packed[module].fromDisk.sh.strings[it[0]]] = symId
for it in mitems(g.packed[module].fromDisk.converters):
let symId = FullId(module: module, packed: PackedItemId(module: LitId(0), item: it))
g.ifaces[module].converters.add LazySym(id: symId, sym: nil)
for it in mitems(g.packed[module].fromDisk.trmacros):
let symId = FullId(module: module, packed: PackedItemId(module: LitId(0), item: it))
g.ifaces[module].patterns.add LazySym(id: symId, sym: nil)
for it in mitems(g.packed[module].fromDisk.pureEnums):
let symId = FullId(module: module, packed: PackedItemId(module: LitId(0), item: it))
g.ifaces[module].pureEnums.add LazySym(id: symId, sym: nil)

248
compiler/ic/rodfiles.nim Normal file
View File

@@ -0,0 +1,248 @@
#
#
# The Nim Compiler
# (c) Copyright 2020 Andreas Rumpf
#
# See the file "copying.txt", included in this
# distribution, for details about the copyright.
#
## Low level binary format used by the compiler to store and load various AST
## and related data.
##
## NB: this is incredibly low level and if you're interested in how the
## compiler works and less a storage format, you're probably looking for
## the `ic` or `packed_ast` modules to understand the logical format.
from typetraits import supportsCopyMem
## Overview
## ========
## `RodFile` represents a Rod File (versioned binary format), and the
## associated data for common interactions such as IO and error tracking
## (`RodFileError`). The file format broken up into sections (`RodSection`)
## and preceeded by a header (see: `cookie`). The precise layout, section
## ordering and data following the section are determined by the user. See
## `ic.loadRodFile`.
##
## A basic but "wrong" example of the lifecycle:
## ---------------------------------------------
## 1. `create` or `open` - create a new one or open an existing
## 2. `storeHeader` - header info
## 3. `storePrim` or `storeSeq` - save your stuff
## 4. `close` - and we're done
##
## Now read the bits below to understand what's missing.
##
## Issues with the Example
## ```````````````````````
## Missing Sections:
## This is a low level API, so headers and sections need to be stored and
## loaded by the user, see `storeHeader` & `loadHeader` and `storeSection` &
## `loadSection`, respectively.
##
## No Error Handling:
## The API is centered around IO and prone to error, each operation checks or
## sets the `RodFile.err` field. A user of this API needs to handle these
## appropriately.
##
## API Notes
## =========
##
## Valid inputs for Rod files
## --------------------------
## ASTs, hopes, dreams, and anything as long as it and any children it may have
## support `copyMem`. This means anything that is not a pointer and that does not contain a pointer. At a glance these are:
## * string
## * objects & tuples (fields are recursed)
## * sequences AKA `seq[T]`
##
## Note on error handling style
## ----------------------------
## A flag based approach is used where operations no-op in case of a
## preexisting error and set the flag if they encounter one.
##
## Misc
## ----
## * 'Prim' is short for 'primitive', as in a non-sequence type
type
RodSection* = enum
versionSection
configSection
stringsSection
checkSumsSection
depsSection
numbersSection
exportsSection
hiddenSection
reexportsSection
compilerProcsSection
trmacrosSection
convertersSection
methodsSection
pureEnumsSection
macroUsagesSection
toReplaySection
topLevelSection
bodiesSection
symsSection
typesSection
typeInstCacheSection
procInstCacheSection
attachedOpsSection
methodsPerTypeSection
enumToStringProcsSection
typeInfoSection # required by the backend
backendFlagsSection
aliveSymsSection # beware, this is stored in a `.alivesyms` file.
RodFileError* = enum
ok, tooBig, cannotOpen, ioFailure, wrongHeader, wrongSection, configMismatch,
includeFileChanged
RodFile* = object
f*: File
currentSection*: RodSection # for error checking
err*: RodFileError # little experiment to see if this works
# better than exceptions.
const
RodVersion = 1
cookie = [byte(0), byte('R'), byte('O'), byte('D'),
byte(sizeof(int)*8), byte(system.cpuEndian), byte(0), byte(RodVersion)]
proc setError(f: var RodFile; err: RodFileError) {.inline.} =
f.err = err
#raise newException(IOError, "IO error")
proc storePrim*(f: var RodFile; s: string) =
## Stores a string.
## The len is prefixed to allow for later retreival.
if f.err != ok: return
if s.len >= high(int32):
setError f, tooBig
return
var lenPrefix = int32(s.len)
if writeBuffer(f.f, addr lenPrefix, sizeof(lenPrefix)) != sizeof(lenPrefix):
setError f, ioFailure
else:
if s.len != 0:
if writeBuffer(f.f, unsafeAddr(s[0]), s.len) != s.len:
setError f, ioFailure
proc storePrim*[T](f: var RodFile; x: T) =
## Stores a non-sequence/string `T`.
## If `T` doesn't support `copyMem` and is an object or tuple then the fields
## are written -- the user from context will need to know which `T` to load.
if f.err != ok: return
when supportsCopyMem(T):
if writeBuffer(f.f, unsafeAddr(x), sizeof(x)) != sizeof(x):
setError f, ioFailure
elif T is tuple:
for y in fields(x):
storePrim(f, y)
elif T is object:
for y in fields(x):
when y is seq:
storeSeq(f, y)
else:
storePrim(f, y)
else:
{.error: "unsupported type for 'storePrim'".}
proc storeSeq*[T](f: var RodFile; s: seq[T]) =
## Stores a sequence of `T`s, with the len as a prefix for later retrieval.
if f.err != ok: return
if s.len >= high(int32):
setError f, tooBig
return
var lenPrefix = int32(s.len)
if writeBuffer(f.f, addr lenPrefix, sizeof(lenPrefix)) != sizeof(lenPrefix):
setError f, ioFailure
else:
for i in 0..<s.len:
storePrim(f, s[i])
proc loadPrim*(f: var RodFile; s: var string) =
## Read a string, the length was stored as a prefix
if f.err != ok: return
var lenPrefix = int32(0)
if readBuffer(f.f, addr lenPrefix, sizeof(lenPrefix)) != sizeof(lenPrefix):
setError f, ioFailure
else:
s = newString(lenPrefix)
if lenPrefix > 0:
if readBuffer(f.f, unsafeAddr(s[0]), s.len) != s.len:
setError f, ioFailure
proc loadPrim*[T](f: var RodFile; x: var T) =
## Load a non-sequence/string `T`.
if f.err != ok: return
when supportsCopyMem(T):
if readBuffer(f.f, unsafeAddr(x), sizeof(x)) != sizeof(x):
setError f, ioFailure
elif T is tuple:
for y in fields(x):
loadPrim(f, y)
elif T is object:
for y in fields(x):
when y is seq:
loadSeq(f, y)
else:
loadPrim(f, y)
else:
{.error: "unsupported type for 'loadPrim'".}
proc loadSeq*[T](f: var RodFile; s: var seq[T]) =
## `T` must be compatible with `copyMem`, see `loadPrim`
if f.err != ok: return
var lenPrefix = int32(0)
if readBuffer(f.f, addr lenPrefix, sizeof(lenPrefix)) != sizeof(lenPrefix):
setError f, ioFailure
else:
s = newSeq[T](lenPrefix)
for i in 0..<lenPrefix:
loadPrim(f, s[i])
proc storeHeader*(f: var RodFile) =
## stores the header which is described by `cookie`.
if f.err != ok: return
if f.f.writeBytes(cookie, 0, cookie.len) != cookie.len:
setError f, ioFailure
proc loadHeader*(f: var RodFile) =
## Loads the header which is described by `cookie`.
if f.err != ok: return
var thisCookie: array[cookie.len, byte]
if f.f.readBytes(thisCookie, 0, thisCookie.len) != thisCookie.len:
setError f, ioFailure
elif thisCookie != cookie:
setError f, wrongHeader
proc storeSection*(f: var RodFile; s: RodSection) =
## update `currentSection` and writes the bytes value of s.
if f.err != ok: return
assert f.currentSection < s
f.currentSection = s
storePrim(f, s)
proc loadSection*(f: var RodFile; expected: RodSection) =
## read the bytes value of s, sets and error if the section is incorrect.
if f.err != ok: return
var s: RodSection
loadPrim(f, s)
if expected != s and f.err == ok:
setError f, wrongSection
proc create*(filename: string): RodFile =
## create the file and open it for writing
if not open(result.f, filename, fmWrite):
setError result, cannotOpen
proc close*(f: var RodFile) = close(f.f)
proc open*(filename: string): RodFile =
## open the file for reading
if not open(result.f, filename, fmRead):
setError result, cannotOpen

View File

@@ -11,11 +11,8 @@
# An identifier is a shared immutable string that can be compared by its
# id. This module is essential for the compiler's performance.
import wordrecg
import std/hashes
when defined(nimPreviewSlimSystem):
import std/assertions
import
hashes, wordrecg
type
PIdent* = ref TIdent

View File

@@ -10,15 +10,10 @@
## This module implements the symbol importing mechanism.
import
ast, msgs, options, idents, lookups,
semdata, modulepaths, sigmatch, lineinfos,
modulegraphs, wordrecg
from std/strutils import `%`, startsWith, replace
from std/sequtils import addUnique
import std/[sets, tables, intsets]
when defined(nimPreviewSlimSystem):
import std/assertions
intsets, ast, astalgo, msgs, options, idents, lookups,
semdata, modulepaths, sigmatch, lineinfos, sets,
modulegraphs, wordrecg, tables
from strutils import `%`
proc readExceptSet*(c: PContext, n: PNode): IntSet =
assert n.kind in {nkImportExceptStmt, nkExportExceptStmt}
@@ -108,14 +103,13 @@ proc rawImportSymbol(c: PContext, s, origin: PSym; importSet: var IntSet) =
else:
importPureEnumField(c, e)
else:
if s.kind == skConverter: addConverter(c, s)
if hasPattern(s): addPattern(c, s)
if s.kind == skConverter: addConverter(c, LazySym(sym: s))
if hasPattern(s): addPattern(c, LazySym(sym: s))
if s.owner != origin:
c.exportIndirections.incl((origin.id, s.id))
proc splitPragmas(c: PContext, n: PNode): (PNode, seq[TSpecialWord]) =
template bail = globalError(c.config, n.info, "invalid pragma")
result = (nil, @[])
if n.kind == nkPragmaExpr:
if n.len == 2 and n[1].kind == nkPragma:
result[0] = n[0]
@@ -144,7 +138,7 @@ proc importSymbol(c: PContext, n: PNode, fromMod: PSym; importSet: var IntSet) =
# for an enumeration we have to add all identifiers
if multiImport:
# for a overloadable syms add all overloaded routines
var it: ModuleIter = default(ModuleIter)
var it: ModuleIter
var e = initModuleIter(it, c.graph, fromMod, s.name)
while e != nil:
if e.name.id != s.name.id: internalError(c.config, n.info, "importSymbol: 3")
@@ -190,19 +184,22 @@ proc addImport(c: PContext; im: sink ImportedModule) =
template addUnnamedIt(c: PContext, fromMod: PSym; filter: untyped) {.dirty.} =
for it in mitems c.graph.ifaces[fromMod.position].converters:
if filter:
if sfExported in it.flags:
loadPackedSym(c.graph, it)
if sfExported in it.sym.flags:
addConverter(c, it)
for it in mitems c.graph.ifaces[fromMod.position].patterns:
if filter:
if sfExported in it.flags:
loadPackedSym(c.graph, it)
if sfExported in it.sym.flags:
addPattern(c, it)
for it in mitems c.graph.ifaces[fromMod.position].pureEnums:
if filter:
importPureEnumFields(c, it, it.typ)
loadPackedSym(c.graph, it)
importPureEnumFields(c, it.sym, it.sym.typ)
proc importAllSymbolsExcept(c: PContext, fromMod: PSym, exceptSet: IntSet) =
c.addImport ImportedModule(m: fromMod, mode: importExcept, exceptSet: exceptSet)
addUnnamedIt(c, fromMod, it.name.id notin exceptSet)
addUnnamedIt(c, fromMod, it.sym.id notin exceptSet)
proc importAllSymbols*(c: PContext, fromMod: PSym) =
c.addImport ImportedModule(m: fromMod, mode: importAll)
@@ -228,10 +225,10 @@ proc importForwarded(c: PContext, n: PNode, exceptSet: IntSet; fromMod: PSym; im
for i in 0..n.safeLen-1:
importForwarded(c, n[i], exceptSet, fromMod, importSet)
proc importModuleAs(c: PContext; n: PNode, realModule: PSym, importHidden, trackUnusedImport: bool): PSym =
proc importModuleAs(c: PContext; n: PNode, realModule: PSym, importHidden: bool): PSym =
result = realModule
template createModuleAliasImpl(ident): untyped =
createModuleAlias(realModule, c.idgen, ident, n.info, c.config.options)
createModuleAlias(realModule, nextSymId c.idgen, ident, n.info, c.config.options)
if n.kind != nkImportAs: discard
elif n.len != 2 or n[1].kind != nkIdent:
localError(c.config, n.info, "module alias must be an identifier")
@@ -242,18 +239,12 @@ proc importModuleAs(c: PContext; n: PNode, realModule: PSym, importHidden, track
# avoids modifying `realModule`, see D20201209T194412 for `import {.all.}`
result = createModuleAliasImpl(realModule.name)
if importHidden:
ensureMutable result
result.optionsImpl.incl optImportHidden
let moduleIdent = if n.kind in {nkInfix, nkImportAs}: n[^1] else: n
result.info = moduleIdent.info
if trackUnusedImport:
c.unusedImports.add((result, result.info))
result.options.incl optImportHidden
c.unusedImports.add((result, n.info))
c.importModuleMap[result.id] = realModule.id
c.importModuleLookup.mgetOrPut(result.name.id, @[]).addUnique realModule.id
proc transformImportAs(c: PContext; n: PNode): tuple[node: PNode, importHidden: bool] =
result = (nil, false)
var ret = default(typeof(result))
var ret: typeof(result)
proc processPragma(n2: PNode): PNode =
let (result2, kws) = splitPragmas(c, n2)
result = result2
@@ -288,10 +279,10 @@ proc myImportModule(c: PContext, n: var PNode, importStmtResult: PNode): PSym =
toFullPath(c.config, c.graph.importStack[i+1])
c.recursiveDep = err
let trackUnusedImport = warnUnusedImportX in c.config.notes
var realModule: PSym
discard pushOptionEntry(c)
let realModule = c.graph.importModuleCallback(c.graph, c.module, f)
result = importModuleAs(c, n, realModule, transf.importHidden, trackUnusedImport)
realModule = c.graph.importModuleCallback(c.graph, c.module, f)
result = importModuleAs(c, n, realModule, transf.importHidden)
popOptionEntry(c)
#echo "set back to ", L
@@ -304,26 +295,11 @@ proc myImportModule(c: PContext, n: var PNode, importStmtResult: PNode): PSym =
var prefix = ""
if realModule.constraint != nil: prefix = realModule.constraint.strVal & "; "
message(c.config, n.info, warnDeprecated, prefix & realModule.name.s & " is deprecated")
let moduleNameNorm = getModuleName(c.config, n).replace("\\", "/")
if belongsToStdlib(c.graph, result) and not startsWith(moduleNameNorm, stdPrefix) and
not startsWith(moduleNameNorm, "system/") and not startsWith(moduleNameNorm, "packages/"):
message(c.config, n.info, warnStdPrefix, realModule.name.s)
proc suggestMod(n: PNode; s: PSym) =
if n.kind == nkImportAs:
suggestMod(n[0], realModule)
elif n.kind == nkInfix:
suggestMod(n[2], s)
else:
suggestSym(c.graph, n.info, s, c.graph.usageSym, false)
suggestMod(n, result)
suggestSym(c.graph, n.info, result, c.graph.usageSym, false)
importStmtResult.add newSymNode(result, n.info)
#newStrNode(toFullPath(c.config, f), n.info)
else:
result = nil
proc afterImport(c: PContext, m: PSym) =
if isCachedModule(c.graph, m): return
# fixes bug #17510, for re-exported symbols
let realModuleId = c.importModuleMap[m.id]
for s in allSyms(c.graph, m):
@@ -335,7 +311,7 @@ proc impMod(c: PContext; it: PNode; importStmtResult: PNode) =
let m = myImportModule(c, it, importStmtResult)
if m != nil:
# ``addDecl`` needs to be done before ``importAllSymbols``!
addDecl(c, m) # add symbol to symbol table of module
addDecl(c, m, it.info) # add symbol to symbol table of module
importAllSymbols(c, m)
#importForwarded(c, m.ast, emptySet, m)
afterImport(c, m)
@@ -344,24 +320,22 @@ proc evalImport*(c: PContext, n: PNode): PNode =
result = newNodeI(nkImportStmt, n.info)
for i in 0..<n.len:
let it = n[i]
if it.kind in {nkInfix, nkPrefix} and it[^1].kind == nkBracket:
let lastPos = it.len - 1
var imp = copyNode(it)
newSons(imp, it.len)
for i in 0 ..< lastPos: imp[i] = it[i]
imp[lastPos] = imp[0] # dummy entry, replaced in the loop
for x in it[lastPos]:
if it.kind == nkInfix and it.len == 3 and it[2].kind == nkBracket:
let sep = it[0]
let dir = it[1]
var imp = newNodeI(nkInfix, it.info)
imp.add sep
imp.add dir
imp.add sep # dummy entry, replaced in the loop
for x in it[2]:
# transform `a/b/[c as d]` to `/a/b/c as d`
if x.kind == nkInfix and x[0].ident.s == "as":
var impAs = copyNode(x)
newSons(impAs, 3)
impAs[0] = x[0]
imp[lastPos] = x[1]
let impAs = copyTree(x)
imp[2] = x[1]
impAs[1] = imp
impAs[2] = x[2]
impMod(c, impAs, result)
impMod(c, imp, result)
else:
imp[lastPos] = x
imp[2] = x
impMod(c, imp, result)
else:
impMod(c, it, result)
@@ -372,7 +346,7 @@ proc evalFrom*(c: PContext, n: PNode): PNode =
var m = myImportModule(c, n[0], result)
if m != nil:
n[0] = newSymNode(m)
addDecl(c, m) # add symbol to symbol table of module
addDecl(c, m, n.info) # add symbol to symbol table of module
var im = ImportedModule(m: m, mode: importSet, imported: initIntSet())
for i in 1..<n.len:
@@ -387,7 +361,7 @@ proc evalImportExcept*(c: PContext, n: PNode): PNode =
var m = myImportModule(c, n[0], result)
if m != nil:
n[0] = newSymNode(m)
addDecl(c, m) # add symbol to symbol table of module
addDecl(c, m, n.info) # add symbol to symbol table of module
importAllSymbolsExcept(c, m, readExceptSet(c, n))
#importForwarded(c, m.ast, exceptSet, m)
afterImport(c, m)

File diff suppressed because it is too large Load Diff

View File

@@ -1,122 +0,0 @@
proc copySymdef(n: PNode; locals: var Table[int, PSym]; idgen: IdGenerator; owner: PSym): PNode =
case n.kind
of nkEmpty..pred(nkSym), succ(nkSym)..nkNilLit:
result = n
of nkSym:
let oldSym = n.sym
let newSym = copySym(oldSym, idgen)
setOwner(newSym, owner)
locals[oldSym.id] = newSym
result = newSymNode(newSym, oldSym.info)
else:
result = shallowCopy(n)
for i in 0..<n.len:
result[i] = copySymdef(n[i], locals, idgen, owner)
proc copyInlineProcBody(n: PNode; locals: var Table[int, PSym]; idgen: IdGenerator; owner: PSym): PNode =
case n.kind
of nkEmpty..pred(nkSym), succ(nkSym)..nkNilLit:
result = n
of nkSym:
let sym = locals.getOrDefault(n.sym.id)
if sym != nil:
result = newSymNode(sym, n.info)
else:
result = n
of nkLetSection, nkVarSection:
result = shallowCopy(n)
for i in 0..<n.len:
let it = n[i]
if it.kind == nkCommentStmt:
result[i] = it
elif it.kind in {nkIdentDefs, nkConstDef}:
result[i] = shallowCopy(it)
for j in 0..<it.len-2:
result[i][j] = copySymdef(it[j], locals, idgen, owner)
for j in it.len-2..<it.len:
result[i][j] = copyInlineProcBody(it[j], locals, idgen, owner)
else:
assert it.kind == nkVarTuple
result[i] = shallowCopy(it)
for j in 0..<it.len-2:
assert it[j].kind == nkSym
let oldSym = it[j].sym
let newSym = copySym(oldSym, idgen)
setOwner(newSym, owner)
locals[oldSym.id] = newSym
result[i][j] = newSymNode(newSym, oldSym.info)
for j in it.len-2..<it.len:
result[i][j] = copyInlineProcBody(it[j], locals, idgen, owner)
of nkForStmt, nkParForStmt:
result = shallowCopy(n)
for i in 0..<n.len-2:
assert n[i].kind == nkSym
let oldSym = n[i].sym
let newSym = copySym(oldSym, idgen)
setOwner(newSym, owner)
locals[oldSym.id] = newSym
result[i] = newSymNode(newSym, oldSym.info)
result[n.len-2] = copyInlineProcBody(n[n.len-2], locals, idgen, owner)
result[n.len-1] = copyInlineProcBody(n[n.len-1], locals, idgen, owner)
of routineDefs, nkTypeSection, nkTypeOfExpr, nkMixinStmt, nkBindStmt, nkConstSection:
result = n
else:
result = shallowCopy(n)
for i in 0..<n.len:
result[i] = copyInlineProcBody(n[i], locals, idgen, owner)
proc copyParams(n: PNode; locals: var Table[int, PSym]; idgen: IdGenerator; owner: PSym): PNode =
result = shallowCopy(n)
result[0] = n[0] # return type
for i in 1..<n.len:
let it = n[i]
assert it.kind == nkIdentDefs
result[i] = shallowCopy(it)
for j in 0..<it.len-2:
assert it[j].kind == nkSym
let oldSym = it[j].sym
let newSym = copySym(oldSym, idgen)
setOwner(newSym, owner)
locals[oldSym.id] = newSym
result[i][j] = newSymNode(newSym, oldSym.info)
owner.typ.addParam newSym
for j in it.len-2..<it.len:
result[i][j] = copyInlineProcBody(it[j], locals, idgen, owner)
proc copyInlineProc(prc: PSym; idgen: IdGenerator): PSym =
result = copySym(prc, idgen)
var locals = initTable[int, PSym]()
var a = shallowCopy(prc.ast)
if resultPos < prc.ast.len and prc.ast[resultPos].kind == nkSym:
let oldRes = prc.ast[resultPos].sym
let newRes = copySym(oldRes, idgen)
setOwner(newRes, result)
locals[oldRes.id] = newRes
a[resultPos] = newSymNode(newRes, oldRes.info)
result.typ = copyType(prc.typ, idgen, result)
result.typ.n = newNodeI(prc.typ.n.kind, prc.typ.n.info)
if prc.typ.n.len > 0:
result.typ.n.add copyNode(prc.typ.n[0])
for i in 1..<prc.typ.n.len:
let it = prc.typ.n[i]
assert it.kind == nkSym
let oldSym = it.sym
let newSym = copySym(oldSym, idgen)
setOwner(newSym, result)
locals[oldSym.id] = newSym
result.typ.addParam newSym
for i in 0..<prc.ast.len:
if i == paramsPos:
a[i] = copyTree(prc.ast[i])
elif i == resultPos and prc.ast[i].kind == nkSym:
discard "handled above"
else:
a[i] = copyInlineProcBody(prc.ast[i], locals, idgen, result)
result.ast = a
#echo "Produced: ", renderTree(result.ast, {renderIds})

Some files were not shown because too many files have changed in this diff Show More