## Summary
Adds `--genBif:on|off`, allowing regular compiler builds to generate
per-module semantic BIF artifacts in `nimcache`.
This reuses the semantic artifact format produced by incremental
compilation without enabling IC or changing the normal code-generation
and linking pipeline.
In comparison to `nim check --compress ...` this new flag `nim c
--genBif:on --compileOnly yourlib.nim` is considerably more useful for
tooling.
That produced full semantic proc declarations, Nim visibility,
signatures, overload disambiguators, and pragmas. For a proc that was
actually code-generated, it also recorded the exact backend name, for
example.
## Motivation
External tools such as language servers, debuggers, and binding
generators can benefit from resolved symbol and type information
produced during an ordinary build. Previously, these semantic BIF
artifacts were tied to the incremental compiler workflow.
## Details
With the option enabled:
```sh
nim c --genBif:on project.nim
```
the compiler writes semantic `.s.bif` files and their supporting
sidecars for each semantically checked module while continuing with the
requested backend normally.
The option:
- Works with non-IC builds.
- Does not enable incremental compilation.
- Does not change generated program behavior.
- Does not enable or introduce native ABI exports.
- Does not generate `.abi.nif` manifests.
- Is ignored for NimScript compilation.
The `genBif` name follows existing artifact-generation options such as
`genScript`, `genMapping`, and `genCDeps`.
## Testing
Added a focused C backend test that runs a regular build with
`--genBif:on` and verifies that semantic `.s.bif` artifacts are
generated.
A release-mode temporary compiler build and the focused Testament test
both pass.
…pile time
fixes#26000
vm: preserve lvalues for mutations of broadcast array elements
Load in-place mutation targets through their address so mutations don't
operate on detached copies of broadcast defaults. This also preserves
nested lvalues and evaluates indexed destinations only once.
Cover sequence, string, and set mutations through direct, nested, field,
enum-indexed, and range-indexed array elements.
Fix proposed by GPT 5.6 Sol.
close#26016
Potentially close#22510
No concrete proof for the second one, though the described behavior
matches and the step count explains why it's so difficult to find a
repro.
These functions are unused and never exposed publically - along with it,
get rid of `GC_Strategy` - although it's possible someone could use this
`enum` for their own code it seems unlikely.
Fixes#25997
`executeNoHooksV3`'s `ideType` handler dereferences the target symbol's
type
without nil checks, so nimsuggest (v3/v4) dies with SIGSEGV on a `type`
query for any symbol without a usable type:
- a **void proc** — `s.sym.typ[0]` (the return-type slot) is nil, e.g.
"goto type definition" on the `add` in `s.add('x')`;
- a **module symbol** — `s.sym.typ` is nil, e.g. a `type` query on the
module name in an `import` statement.
Both are one editor action away for any user whose client maps
`textDocument/typeDefinition` to `type` (nimlangserver does), and the
crash
takes down the whole nimsuggest process. Root-caused from recurring
nimlangserver crash reports by replaying a live session log; reproduced
deterministically with a two-line file.
The fix guards the derefs and returns an empty result for symbols with
no
type, matching the existing "bad type" behavior. Two regression cases
are
appended to `nimsuggest/tests/tv3_typeDefinition.nim` (appended at the
end
so the existing `$1`–`$4` line-number expectations are untouched); both
crash with `SIGSEGV: Illegal storage access` before the fix and pass
after.
The existing `$3` generic case covers the guarded `elif` branch.
fix#25976
Initialize tagEffects for proc types that declare .forbids but omit
.tags,
so they behave like explicit tags: [] during indirect-call effect
tracking.
Add a regression for the nested callback assignment case.
fixes#25886fixes#25883
See #25883
Tuples only hash leaves so if 2 tuples have the same flattened
representation they collide in the C codegen.
Fix by hashing the length as well to disambiguate nesting levels.
---------
Co-authored-by: ringabout <43030857+ringabout@users.noreply.github.com>
I was updating nim to 2.2.10 in nixpkgs
https://github.com/NixOS/nixpkgs/pull/538469
and without this change the fail build, because add(string, cstring) is
not defined. I think it's caused by a change of position of the includes
in system, but with this it works fine.
Co-authored-by: Andreas Rumpf <rumpf_a@web.de>
fix#25608
This pull request improves how the compiler handles warnings for
implicit range conversions, ensuring that only non-constant values
trigger downsizing warnings. It also adds new test cases to verify that
assignments and function calls involving compile-time constants do not
produce unnecessary warnings.
Improvements to range conversion warnings:
* Updated the logic in `compiler/sempass2.nim` to skip implicit range
conversion warnings for compile-time constants by checking if an
expression is constant with `getConstExpr`. Now, only non-constant
values will trigger the warning.
Testing enhancements:
* Added new test cases in `tests/range/timplicitrangedownsizing.nim` to
confirm that assignments and function calls with constant enum and
integer values do not trigger downsizing warnings.
Explicit `=sink` calls such as `Isolated[T].=sink` can delegate to a
field type like `float`, which has no attached sink op. In that case
`replaceHookMagic` leaves the builtin `mAsgn` call in place.
`genMagicExpr` did not lower that shape, which caused the regression.
Mapping `=sink` to `nkSinkAsgn` and other builtin assignment hooks to
`nkAsgn`.
fixes#25803
This pull request introduces a new approach for generating C++
constructor expressions in the Nim compiler's C++ backend, ensuring that
type-prefixed construction is used when needed (such as in assignments),
rather than just braced initializer lists. It also adds a new test case
(with corresponding C++ header) to verify correct behavior when
assigning to types with overloaded assignment operators and
constructors.
**C++ code generation improvements:**
* Added `genCppConstructorExpr` in `ccgtypes.nim`, which generates a
full type-prefixed constructor expression (e.g., `Foo(a, b)`) for C++
code generation, as opposed to just a braced initializer list. This is
important for contexts like assignments where the type must be explicit.
* Updated `resetLoc` in `cgen.nim` to use `genCppConstructorExpr`
instead of `genCppInitializer` when initializing imported C++ types,
ensuring correct code generation for assignments.
**Testing:**
* Added a new C++ header file, `tcpp_default_ctor_assignment.h`,
defining a struct `AmbiguousAssign` with overloaded assignment operators
and constructors to test ambiguous assignment scenarios.
* Added a corresponding Nim test, `tcpp_default_ctor_assignment.nim`,
which exercises construction and assignment for the imported C++ type,
ensuring the new code generation logic works as intended.
The emscripten branch cast the descriptor address to the value type
EmscriptenMMapBlock instead of the pointer alias PEmscriptenMMapBlock,
so osAllocPages stored realSize/realPointer in a discarded local and
osDeallocPages reinterpreted the address integer as the descriptor
instead of dereferencing it -- calling munmap() with garbage that fails,
so freed pages are never returned. Freed huge chunks are also dropped
from the free list, leaking permanently. Affects wasm32 and wasm64.
Cast to PEmscriptenMMapBlock so both accesses go through memory.
fixes#25945
When `@[]` appears inside a nested `if` expression that also contains
statements, the AST wraps it in `nkStmtListExpr` nodes. The empty
container's `tyEmpty` element type was never resolved to a concrete
type, causing the C codegen to ICE with "cannot map the empty seq type
to a C type".
Walk through nested statement-list/block expressions in
`fitNodePostMatch` to find the innermost value node and propagate the
formal type to empty containers.
fixes#25949
track still walks both branches of preserved when nimvm, but it now sets
a small inNimvmBranch flag while visiting the VM branch, and trackCall
skips sfCompileTime marking only when that flag is set.
This PR implements `expandSymlink` on Windows with POSIX readlink
semantics: it expands exactly one hop and returns the stored link target
without resolving the full chain.
The main design question was whether Windows symlink expansion should be
built on path-finalization APIs such as `GetFinalPathNameByHandleW`, or
on direct reparse-point inspection. Current `expandSymlink` is a
single-hop "what target is stored in this link object?" operation and
most of other ways to resolve symlinks on Windows actually try to answer
the "final true file location" question in various slightly-incompatible
ways.
The full final-path resolution on Windows is substantially more complex
than readlink and is planned as a follow-up.
## Implementation choice
Implements Windows `expandSymlink` by:
- opening the path with `FILE_FLAG_OPEN_REPARSE_POINT`
- calling `DeviceIoControl(FSCTL_GET_REPARSE_POINT)`
- parsing the reparse payload for `IO_REPARSE_TAG_SYMLINK` and
`IO_REPARSE_TAG_MOUNT_POINT`
- decoding the UTF-16 slice referenced by the payload
- returning the stored target
This is the right primitive for the API:
- does not depend on whole-path finalization
- works for both symlinks and junctions
- matches the existing Linux behaviour
`widestrs` changes allow using WideCString views without temporary
allocations.
Windows prohibits symlink creation without admin rights, so,
unfortunately, the tests are conditionally skipped by default. Manually
running `testament` in an admin console is required.
## Behaviour:
- One hop only
- Relative symlink targets are returned unchanged
- Absolute Windows targets are converted from stored NT-style prefixes
to usable Win32 forms when applicable
- Non-links, malformed payloads, and unsupported reparse tags raise
`OSError`
## Future work
Path canonicalization, i.e. "final true file location". Which is, BTW,
different from `absolutePath`, which works on paths only and doesn't hit
the underlying FS. So this needs to be an API extension.
I'd like to follow-up with this when I sort through the docs, for now
you can resolve symlinks in a loop.
---------
Co-authored-by: Andreas Rumpf <rumpf_a@web.de>
fixes#25931
This fix addresses bug #25931 — a signature hash collision with
importc-aliased pointer/cstring types.
The problem: In compiler/sighashes.nim, the hashType procedure
canonicalizes types for signature hashing. Integral types
(tyInt..tyUInt64, etc.) were excluded from canonicalization so that
types like pid_t (an importc alias) keep their backend spelling. But
pointer and cstring types with importc annotations were not excluded —
meaning a type like:
type N {.importc: "const void *".} = pointer
...would be collapsed to just pointer in the signature hash, causing
collisions when N and pointer are both used in procedure types within
the same compilation unit.
The fix (compiler/sighashes.nim:193): Adds tyPointer and tyCstring to
the list of types that skip canonicalization, right alongside the
integral types. The comment is updated to clarify this applies to
"builtin scalar-ish / pointer-like types".
The test (tests/ccgbugs/tsighash_typename_regression.nim:33-42): Adds a
regression test exercising the exact scenario — an importc pointer alias
used in both an object field type and a proc parameter type.
fixes#25908
When an enum identifier is resolved as an `nkSymChoice`, one of the
candidates may come from a loop-local view and carry `tyVar` or
`tyLent`.
Enum disambiguation should compare the underlying enum type only.
Otherwise a pure-enum field can win incorrectly even though the intended
symbol is already present in the choice set.
Keep the `includePureEnum` lookup path for enum-typed expectations so
#23976 still works, but normalize `var`/`lent` only at the symchoice
selection point.
closureiters.nim splits a stmt list at yield points, moving post-yield
code into a new state body. When that stmt list was inside a pragma
block like `{.cast(uncheckedAssign).}`, the new state's body was created
as a bare nkStmtList without the wrapper.
Fix: track the enclosing pragma block in the transform context, and wrap
newly-created state bodies in a copy of it when the split occurs inside
one. Added an explicit `nkPragmaBlock` case to
`transformClosureIteratorBody` that saves/restores `ctx.enclosingPragma`
around its body.