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1413 lines
55 KiB
Nim
1413 lines
55 KiB
Nim
#
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#
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# The Nim Compiler
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# (c) Copyright 2017 Andreas Rumpf
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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# included from cgen.nim
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# ------------------------- Name Mangling --------------------------------
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import sighashes, modulegraphs
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from lowerings import createObj
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proc genProcHeader(m: BModule, prc: PSym, asPtr: bool = false): Rope
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proc isKeyword(w: PIdent): bool =
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# Nim and C++ share some keywords
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# it's more efficient to test the whole Nim keywords range
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case w.id
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of ccgKeywordsLow..ccgKeywordsHigh,
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nimKeywordsLow..nimKeywordsHigh,
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ord(wInline): return true
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else: return false
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proc mangleField(m: BModule; name: PIdent): string =
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result = mangle(name.s)
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# fields are tricky to get right and thanks to generic types producing
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# duplicates we can end up mangling the same field multiple times. However
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# if we do so, the 'cppDefines' table might be modified in the meantime
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# meaning we produce inconsistent field names (see bug #5404).
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# Hence we do not check for ``m.g.config.cppDefines.contains(result)`` here
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# anymore:
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if isKeyword(name):
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result.add "_0"
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when false:
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proc hashOwner(s: PSym): SigHash =
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var m = s
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while m.kind != skModule: m = m.owner
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let p = m.owner
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assert p.kind == skPackage
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result = gDebugInfo.register(p.name.s, m.name.s)
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proc mangleName(m: BModule; s: PSym): Rope =
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result = s.loc.r
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if result == nil:
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result = s.name.s.mangle.rope
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result.add(idOrSig(s, m.module.name.s.mangle, m.sigConflicts))
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s.loc.r = result
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writeMangledName(m.ndi, s, m.config)
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proc mangleParamName(m: BModule; s: PSym): Rope =
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## we cannot use 'sigConflicts' here since we have a BModule, not a BProc.
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## Fortunately C's scoping rules are sane enough so that that doesn't
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## cause any trouble.
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result = s.loc.r
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if result == nil:
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var res = s.name.s.mangle
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# Take into account if HCR is on because of the following scenario:
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# if a module gets imported and it has some more importc symbols in it,
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# some param names might receive the "_0" suffix to distinguish from what
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# is newly available. That might lead to changes in the C code in nimcache
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# that contain only a parameter name change, but that is enough to mandate
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# recompilation of that source file and thus a new shared object will be
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# relinked. That may lead to a module getting reloaded which wasn't intended
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# and that may be fatal when parts of the current active callstack when
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# performCodeReload() was called are from the module being reloaded
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# unintentionally - example (3 modules which import one another):
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# main => proxy => reloadable
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# we call performCodeReload() in proxy to reload only changes in reloadable
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# but there is a new import which introduces an importc symbol `socket`
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# and a function called in main or proxy uses `socket` as a parameter name.
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# That would lead to either needing to reload `proxy` or to overwrite the
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# executable file for the main module, which is running (or both!) -> error.
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if m.hcrOn or isKeyword(s.name) or m.g.config.cppDefines.contains(res):
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res.add "_0"
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result = res.rope
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s.loc.r = result
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writeMangledName(m.ndi, s, m.config)
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proc mangleLocalName(p: BProc; s: PSym): Rope =
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assert s.kind in skLocalVars+{skTemp}
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#assert sfGlobal notin s.flags
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result = s.loc.r
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if result == nil:
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var key = s.name.s.mangle
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shallow(key)
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let counter = p.sigConflicts.getOrDefault(key)
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result = key.rope
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if s.kind == skTemp:
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# speed up conflict search for temps (these are quite common):
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if counter != 0: result.add "_" & rope(counter+1)
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elif counter != 0 or isKeyword(s.name) or p.module.g.config.cppDefines.contains(key):
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result.add "_" & rope(counter+1)
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p.sigConflicts.inc(key)
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s.loc.r = result
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if s.kind != skTemp: writeMangledName(p.module.ndi, s, p.config)
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proc scopeMangledParam(p: BProc; param: PSym) =
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## parameter generation only takes BModule, not a BProc, so we have to
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## remember these parameter names are already in scope to be able to
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## generate unique identifiers reliably (consider that ``var a = a`` is
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## even an idiom in Nim).
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var key = param.name.s.mangle
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shallow(key)
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p.sigConflicts.inc(key)
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const
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irrelevantForBackend = {tyGenericBody, tyGenericInst, tyGenericInvocation,
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tyDistinct, tyRange, tyStatic, tyAlias, tySink,
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tyInferred, tyOwned}
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proc typeName(typ: PType): Rope =
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let typ = typ.skipTypes(irrelevantForBackend)
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result =
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if typ.sym != nil and typ.kind in {tyObject, tyEnum}:
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rope($typ.kind & '_' & typ.sym.name.s.mangle)
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else:
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rope($typ.kind)
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proc getTypeName(m: BModule; typ: PType; sig: SigHash): Rope =
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var t = typ
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while true:
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if t.sym != nil and {sfImportc, sfExportc} * t.sym.flags != {}:
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return t.sym.loc.r
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if t.kind in irrelevantForBackend:
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t = t.lastSon
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else:
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break
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let typ = if typ.kind in {tyAlias, tySink, tyOwned}: typ.lastSon else: typ
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if typ.loc.r == nil:
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typ.loc.r = typ.typeName & $sig
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else:
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when defined(debugSigHashes):
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# check consistency:
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assert($typ.loc.r == $(typ.typeName & $sig))
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result = typ.loc.r
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if result == nil: internalError(m.config, "getTypeName: " & $typ.kind)
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proc mapSetType(conf: ConfigRef; typ: PType): TCTypeKind =
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case int(getSize(conf, typ))
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of 1: result = ctInt8
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of 2: result = ctInt16
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of 4: result = ctInt32
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of 8: result = ctInt64
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else: result = ctArray
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proc mapType(conf: ConfigRef; typ: PType): TCTypeKind =
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## Maps a Nim type to a C type
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case typ.kind
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of tyNone, tyTyped: result = ctVoid
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of tyBool: result = ctBool
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of tyChar: result = ctChar
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of tyNil: result = ctPtr
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of tySet: result = mapSetType(conf, typ)
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of tyOpenArray, tyArray, tyVarargs, tyUncheckedArray: result = ctArray
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of tyObject, tyTuple: result = ctStruct
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of tyUserTypeClasses:
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doAssert typ.isResolvedUserTypeClass
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return mapType(conf, typ.lastSon)
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of tyGenericBody, tyGenericInst, tyGenericParam, tyDistinct, tyOrdinal,
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tyTypeDesc, tyAlias, tySink, tyInferred, tyOwned:
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result = mapType(conf, lastSon(typ))
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of tyEnum:
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if firstOrd(conf, typ) < 0:
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result = ctInt32
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else:
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case int(getSize(conf, typ))
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of 1: result = ctUInt8
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of 2: result = ctUInt16
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of 4: result = ctInt32
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of 8: result = ctInt64
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else: result = ctInt32
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of tyRange: result = mapType(conf, typ[0])
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of tyPtr, tyVar, tyLent, tyRef:
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var base = skipTypes(typ.lastSon, typedescInst)
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case base.kind
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of tyOpenArray, tyArray, tyVarargs, tyUncheckedArray: result = ctPtrToArray
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of tySet:
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if mapSetType(conf, base) == ctArray: result = ctPtrToArray
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else: result = ctPtr
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else: result = ctPtr
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of tyPointer: result = ctPtr
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of tySequence: result = ctNimSeq
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of tyProc: result = if typ.callConv != ccClosure: ctProc else: ctStruct
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of tyString: result = ctNimStr
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of tyCString: result = ctCString
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of tyInt..tyUInt64:
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result = TCTypeKind(ord(typ.kind) - ord(tyInt) + ord(ctInt))
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of tyStatic:
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if typ.n != nil: result = mapType(conf, lastSon typ)
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else: doAssert(false, "mapType")
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else: doAssert(false, "mapType")
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proc mapReturnType(conf: ConfigRef; typ: PType): TCTypeKind =
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#if skipTypes(typ, typedescInst).kind == tyArray: result = ctPtr
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#else:
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result = mapType(conf, typ)
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proc isImportedType(t: PType): bool =
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result = t.sym != nil and sfImportc in t.sym.flags
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proc isImportedCppType(t: PType): bool =
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let x = t.skipTypes(irrelevantForBackend)
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result = (t.sym != nil and sfInfixCall in t.sym.flags) or
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(x.sym != nil and sfInfixCall in x.sym.flags)
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proc getTypeDescAux(m: BModule, origTyp: PType, check: var IntSet): Rope
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proc isObjLackingTypeField(typ: PType): bool {.inline.} =
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result = (typ.kind == tyObject) and ((tfFinal in typ.flags) and
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(typ[0] == nil) or isPureObject(typ))
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proc isInvalidReturnType(conf: ConfigRef; rettype: PType): bool =
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# Arrays and sets cannot be returned by a C procedure, because C is
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# such a poor programming language.
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# We exclude records with refs too. This enhances efficiency and
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# is necessary for proper code generation of assignments.
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if rettype == nil or (tfByCopy notin rettype.flags and getSize(conf, rettype) > conf.target.floatSize*3):
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result = true
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else:
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case mapType(conf, rettype)
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of ctArray:
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result = not (skipTypes(rettype, typedescInst).kind in
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{tyVar, tyLent, tyRef, tyPtr})
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of ctStruct:
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let t = skipTypes(rettype, typedescInst)
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if rettype.isImportedCppType or t.isImportedCppType: return false
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result = containsGarbageCollectedRef(t) or
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(t.kind == tyObject and not isObjLackingTypeField(t))
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else: result = false
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const
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CallingConvToStr: array[TCallingConvention, string] = ["N_NIMCALL",
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"N_STDCALL", "N_CDECL", "N_SAFECALL",
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"N_SYSCALL", # this is probably not correct for all platforms,
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# but one can #define it to what one wants
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"N_INLINE", "N_NOINLINE", "N_FASTCALL", "N_CLOSURE", "N_NOCONV"]
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proc cacheGetType(tab: TypeCache; sig: SigHash): Rope =
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# returns nil if we need to declare this type
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# since types are now unique via the ``getUniqueType`` mechanism, this slow
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# linear search is not necessary anymore:
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result = tab.getOrDefault(sig)
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proc addAbiCheck(m: BModule, t: PType, name: Rope) =
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if isDefined(m.config, "checkabi") and (let size = getSize(m.config, t); size != szUnknownSize):
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m.s[cfsTypeInfo].addf("NIM_CHECK_SIZE($1, $2);$n", [name, rope(size)])
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proc ccgIntroducedPtr(conf: ConfigRef; s: PSym, retType: PType): bool =
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var pt = skipTypes(s.typ, typedescInst)
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assert skResult != s.kind
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if tfByRef in pt.flags: return true
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elif tfByCopy in pt.flags: return false
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case pt.kind
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of tyObject:
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if s.typ.sym != nil and sfForward in s.typ.sym.flags:
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# forwarded objects are *always* passed by pointers for consistency!
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result = true
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elif (optByRef in s.options) or (getSize(conf, pt) > conf.target.floatSize * 3):
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result = true # requested anyway
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elif retType != nil and retType.kind == tyLent:
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result = true
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elif (tfFinal in pt.flags) and (pt[0] == nil):
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result = false # no need, because no subtyping possible
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else:
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result = true # ordinary objects are always passed by reference,
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# otherwise casting doesn't work
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of tyTuple:
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if retType != nil and retType.kind == tyLent:
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result = true
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else:
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result = (getSize(conf, pt) > conf.target.floatSize*3) or (optByRef in s.options)
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else: result = false
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proc fillResult(conf: ConfigRef; param: PNode) =
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fillLoc(param.sym.loc, locParam, param, ~"Result",
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OnStack)
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let t = param.sym.typ
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if mapReturnType(conf, t) != ctArray and isInvalidReturnType(conf, t):
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incl(param.sym.loc.flags, lfIndirect)
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param.sym.loc.storage = OnUnknown
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proc typeNameOrLiteral(m: BModule; t: PType, literal: string): Rope =
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if t.sym != nil and sfImportc in t.sym.flags and t.sym.magic == mNone:
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useHeader(m, t.sym)
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result = t.sym.loc.r
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else:
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result = rope(literal)
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proc getSimpleTypeDesc(m: BModule, typ: PType): Rope =
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const
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NumericalTypeToStr: array[tyInt..tyUInt64, string] = [
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"NI", "NI8", "NI16", "NI32", "NI64",
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"NF", "NF32", "NF64", "NF128",
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"NU", "NU8", "NU16", "NU32", "NU64"]
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case typ.kind
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of tyPointer:
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result = typeNameOrLiteral(m, typ, "void*")
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of tyString:
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case detectStrVersion(m)
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of 2:
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discard cgsym(m, "NimStrPayload")
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discard cgsym(m, "NimStringV2")
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result = typeNameOrLiteral(m, typ, "NimStringV2")
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else:
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discard cgsym(m, "NimStringDesc")
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result = typeNameOrLiteral(m, typ, "NimStringDesc*")
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of tyCString: result = typeNameOrLiteral(m, typ, "NCSTRING")
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of tyBool: result = typeNameOrLiteral(m, typ, "NIM_BOOL")
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of tyChar: result = typeNameOrLiteral(m, typ, "NIM_CHAR")
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of tyNil: result = typeNameOrLiteral(m, typ, "void*")
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of tyInt..tyUInt64:
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result = typeNameOrLiteral(m, typ, NumericalTypeToStr[typ.kind])
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of tyDistinct, tyRange, tyOrdinal: result = getSimpleTypeDesc(m, typ[0])
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of tyStatic:
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if typ.n != nil: result = getSimpleTypeDesc(m, lastSon typ)
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else: internalError(m.config, "tyStatic for getSimpleTypeDesc")
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of tyGenericInst, tyAlias, tySink, tyOwned:
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result = getSimpleTypeDesc(m, lastSon typ)
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else: result = nil
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if result != nil and typ.isImportedType():
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let sig = hashType typ
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if cacheGetType(m.typeCache, sig) == nil:
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m.typeCache[sig] = result
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addAbiCheck(m, typ, result)
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proc pushType(m: BModule, typ: PType) =
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for i in 0..high(m.typeStack):
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# pointer equality is good enough here:
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if m.typeStack[i] == typ: return
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m.typeStack.add(typ)
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proc getTypePre(m: BModule, typ: PType; sig: SigHash): Rope =
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if typ == nil: result = rope("void")
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else:
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result = getSimpleTypeDesc(m, typ)
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if result == nil: result = cacheGetType(m.typeCache, sig)
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proc structOrUnion(t: PType): Rope =
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let cachedUnion {.global.} = rope("union")
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let cachedStruct {.global.} = rope("struct")
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let t = t.skipTypes({tyAlias, tySink})
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if tfUnion in t.flags: cachedUnion
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else: cachedStruct
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proc addForwardStructFormat(m: BModule, structOrUnion: Rope, typename: Rope) =
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if m.compileToCpp:
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m.s[cfsForwardTypes].addf "$1 $2;$n", [structOrUnion, typename]
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else:
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m.s[cfsForwardTypes].addf "typedef $1 $2 $2;$n", [structOrUnion, typename]
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proc seqStar(m: BModule): string =
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if optSeqDestructors in m.config.globalOptions: result = ""
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else: result = "*"
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proc getTypeForward(m: BModule, typ: PType; sig: SigHash): Rope =
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result = cacheGetType(m.forwTypeCache, sig)
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if result != nil: return
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result = getTypePre(m, typ, sig)
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if result != nil: return
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let concrete = typ.skipTypes(abstractInst + {tyOpt})
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case concrete.kind
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of tySequence, tyTuple, tyObject:
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result = getTypeName(m, typ, sig)
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m.forwTypeCache[sig] = result
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if not isImportedType(concrete):
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addForwardStructFormat(m, structOrUnion(typ), result)
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else:
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pushType(m, concrete)
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doAssert m.forwTypeCache[sig] == result
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else: internalError(m.config, "getTypeForward(" & $typ.kind & ')')
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proc getTypeDescWeak(m: BModule; t: PType; check: var IntSet): Rope =
|
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## like getTypeDescAux but creates only a *weak* dependency. In other words
|
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## we know we only need a pointer to it so we only generate a struct forward
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## declaration:
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let etB = t.skipTypes(abstractInst)
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case etB.kind
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of tyObject, tyTuple:
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if isImportedCppType(etB) and t.kind == tyGenericInst:
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result = getTypeDescAux(m, t, check)
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else:
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result = getTypeForward(m, t, hashType(t))
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pushType(m, t)
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of tySequence:
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let sig = hashType(t)
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if optSeqDestructors in m.config.globalOptions:
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if skipTypes(etB[0], typedescInst).kind == tyEmpty:
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internalError(m.config, "cannot map the empty seq type to a C type")
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result = cacheGetType(m.forwTypeCache, sig)
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if result == nil:
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result = getTypeName(m, t, sig)
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if not isImportedType(t):
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m.forwTypeCache[sig] = result
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addForwardStructFormat(m, rope"struct", result)
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let payload = result & "_Content"
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addForwardStructFormat(m, rope"struct", payload)
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|
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if cacheGetType(m.typeCache, sig) == nil:
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m.typeCache[sig] = result
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#echo "adding ", sig, " ", typeToString(t), " ", m.module.name.s
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appcg(m, m.s[cfsTypes],
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"struct $1 {$N" &
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" NI len; $1_Content* p;$N" &
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"};$N", [result])
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else:
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result = getTypeForward(m, t, sig) & seqStar(m)
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pushType(m, t)
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else:
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result = getTypeDescAux(m, t, check)
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|
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proc getSeqPayloadType(m: BModule; t: PType): Rope =
|
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var check = initIntSet()
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result = getTypeDescWeak(m, t, check) & "_Content"
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#result = getTypeForward(m, t, hashType(t)) & "_Content"
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|
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proc seqV2ContentType(m: BModule; t: PType; check: var IntSet) =
|
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let sig = hashType(t)
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let result = cacheGetType(m.typeCache, sig)
|
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if result == nil:
|
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discard getTypeDescAux(m, t, check)
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else:
|
|
# little hack for now to prevent multiple definitions of the same
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# Seq_Content:
|
|
appcg(m, m.s[cfsTypes], """$N
|
|
$3ifndef $2_Content_PP
|
|
$3define $2_Content_PP
|
|
struct $2_Content { NI cap; $1 data[SEQ_DECL_SIZE];};
|
|
$3endif$N
|
|
""", [getTypeDescAux(m, t.skipTypes(abstractInst)[0], check), result, rope"#"])
|
|
|
|
proc paramStorageLoc(param: PSym): TStorageLoc =
|
|
if param.typ.skipTypes({tyVar, tyLent, tyTypeDesc}).kind notin {
|
|
tyArray, tyOpenArray, tyVarargs}:
|
|
result = OnStack
|
|
else:
|
|
result = OnUnknown
|
|
|
|
proc genProcParams(m: BModule, t: PType, rettype, params: var Rope,
|
|
check: var IntSet, declareEnvironment=true;
|
|
weakDep=false) =
|
|
params = nil
|
|
if t[0] == nil or isInvalidReturnType(m.config, t[0]):
|
|
rettype = ~"void"
|
|
else:
|
|
rettype = getTypeDescAux(m, t[0], check)
|
|
for i in 1..<t.n.len:
|
|
if t.n[i].kind != nkSym: internalError(m.config, t.n.info, "genProcParams")
|
|
var param = t.n[i].sym
|
|
if isCompileTimeOnly(param.typ): continue
|
|
if params != nil: params.add(~", ")
|
|
fillLoc(param.loc, locParam, t.n[i], mangleParamName(m, param),
|
|
param.paramStorageLoc)
|
|
if ccgIntroducedPtr(m.config, param, t[0]):
|
|
params.add(getTypeDescWeak(m, param.typ, check))
|
|
params.add(~"*")
|
|
incl(param.loc.flags, lfIndirect)
|
|
param.loc.storage = OnUnknown
|
|
elif weakDep:
|
|
params.add(getTypeDescWeak(m, param.typ, check))
|
|
else:
|
|
params.add(getTypeDescAux(m, param.typ, check))
|
|
params.add(~" ")
|
|
params.add(param.loc.r)
|
|
# declare the len field for open arrays:
|
|
var arr = param.typ
|
|
if arr.kind in {tyVar, tyLent, tySink}: arr = arr.lastSon
|
|
var j = 0
|
|
while arr.kind in {tyOpenArray, tyVarargs}:
|
|
# this fixes the 'sort' bug:
|
|
if param.typ.kind in {tyVar, tyLent}: param.loc.storage = OnUnknown
|
|
# need to pass hidden parameter:
|
|
params.addf(", NI $1Len_$2", [param.loc.r, j.rope])
|
|
inc(j)
|
|
arr = arr[0].skipTypes({tySink})
|
|
if t[0] != nil and isInvalidReturnType(m.config, t[0]):
|
|
var arr = t[0]
|
|
if params != nil: params.add(", ")
|
|
if mapReturnType(m.config, t[0]) != ctArray:
|
|
params.add(getTypeDescWeak(m, arr, check))
|
|
params.add("*")
|
|
else:
|
|
params.add(getTypeDescAux(m, arr, check))
|
|
params.addf(" Result", [])
|
|
if t.callConv == ccClosure and declareEnvironment:
|
|
if params != nil: params.add(", ")
|
|
params.add("void* ClE_0")
|
|
if tfVarargs in t.flags:
|
|
if params != nil: params.add(", ")
|
|
params.add("...")
|
|
if params == nil: params.add("void)")
|
|
else: params.add(")")
|
|
params = "(" & params
|
|
|
|
proc mangleRecFieldName(m: BModule; field: PSym): Rope =
|
|
if {sfImportc, sfExportc} * field.flags != {}:
|
|
result = field.loc.r
|
|
else:
|
|
result = rope(mangleField(m, field.name))
|
|
if result == nil: internalError(m.config, field.info, "mangleRecFieldName")
|
|
|
|
proc genRecordFieldsAux(m: BModule, n: PNode,
|
|
rectype: PType,
|
|
check: var IntSet, unionPrefix = ""): Rope =
|
|
result = nil
|
|
case n.kind
|
|
of nkRecList:
|
|
for i in 0..<n.len:
|
|
result.add(genRecordFieldsAux(m, n[i], rectype, check, unionPrefix))
|
|
of nkRecCase:
|
|
if n[0].kind != nkSym: internalError(m.config, n.info, "genRecordFieldsAux")
|
|
result.add(genRecordFieldsAux(m, n[0], rectype, check, unionPrefix))
|
|
# prefix mangled name with "_U" to avoid clashes with other field names,
|
|
# since identifiers are not allowed to start with '_'
|
|
var unionBody: Rope = nil
|
|
for i in 1..<n.len:
|
|
case n[i].kind
|
|
of nkOfBranch, nkElse:
|
|
let k = lastSon(n[i])
|
|
if k.kind != nkSym:
|
|
let structName = "_" & mangleRecFieldName(m, n[0].sym) & "_" & $i
|
|
let a = genRecordFieldsAux(m, k, rectype, check, unionPrefix & $structName & ".")
|
|
if a != nil:
|
|
if tfPacked notin rectype.flags:
|
|
unionBody.add("struct {")
|
|
else:
|
|
if hasAttribute in CC[m.config.cCompiler].props:
|
|
unionBody.add("struct __attribute__((__packed__)){")
|
|
else:
|
|
unionBody.addf("#pragma pack(push, 1)$nstruct{", [])
|
|
unionBody.add(a)
|
|
unionBody.addf("} $1;$n", [structName])
|
|
if tfPacked in rectype.flags and hasAttribute notin CC[m.config.cCompiler].props:
|
|
unionBody.addf("#pragma pack(pop)$n", [])
|
|
else:
|
|
unionBody.add(genRecordFieldsAux(m, k, rectype, check, unionPrefix))
|
|
else: internalError(m.config, "genRecordFieldsAux(record case branch)")
|
|
if unionBody != nil:
|
|
result.addf("union{$n$1};$n", [unionBody])
|
|
of nkSym:
|
|
let field = n.sym
|
|
if field.typ.kind == tyVoid: return
|
|
#assert(field.ast == nil)
|
|
let sname = mangleRecFieldName(m, field)
|
|
fillLoc(field.loc, locField, n, unionPrefix & sname, OnUnknown)
|
|
if field.alignment > 0:
|
|
result.addf "NIM_ALIGN($1) ", [rope(field.alignment)]
|
|
# for importcpp'ed objects, we only need to set field.loc, but don't
|
|
# have to recurse via 'getTypeDescAux'. And not doing so prevents problems
|
|
# with heavily templatized C++ code:
|
|
if not isImportedCppType(rectype):
|
|
let fieldType = field.loc.lode.typ.skipTypes(abstractInst)
|
|
if fieldType.kind == tyUncheckedArray:
|
|
result.addf("$1 $2[SEQ_DECL_SIZE];$n",
|
|
[getTypeDescAux(m, fieldType.elemType, check), sname])
|
|
elif fieldType.kind == tySequence:
|
|
# we need to use a weak dependency here for trecursive_table.
|
|
result.addf("$1 $2;$n", [getTypeDescWeak(m, field.loc.t, check), sname])
|
|
elif field.bitsize != 0:
|
|
result.addf("$1 $2:$3;$n", [getTypeDescAux(m, field.loc.t, check), sname, rope($field.bitsize)])
|
|
else:
|
|
# don't use fieldType here because we need the
|
|
# tyGenericInst for C++ template support
|
|
result.addf("$1 $2;$n", [getTypeDescAux(m, field.loc.t, check), sname])
|
|
else: internalError(m.config, n.info, "genRecordFieldsAux()")
|
|
|
|
proc getRecordFields(m: BModule, typ: PType, check: var IntSet): Rope =
|
|
result = genRecordFieldsAux(m, typ.n, typ, check)
|
|
|
|
proc fillObjectFields*(m: BModule; typ: PType) =
|
|
# sometimes generic objects are not consistently merged. We patch over
|
|
# this fact here.
|
|
var check = initIntSet()
|
|
discard getRecordFields(m, typ, check)
|
|
|
|
proc mangleDynLibProc(sym: PSym): Rope
|
|
|
|
proc getRecordDesc(m: BModule, typ: PType, name: Rope,
|
|
check: var IntSet): Rope =
|
|
# declare the record:
|
|
var hasField = false
|
|
|
|
if tfPacked in typ.flags:
|
|
if hasAttribute in CC[m.config.cCompiler].props:
|
|
result = structOrUnion(typ) & " __attribute__((__packed__))"
|
|
else:
|
|
result = "#pragma pack(push, 1)\L" & structOrUnion(typ)
|
|
else:
|
|
result = structOrUnion(typ)
|
|
|
|
result.add " "
|
|
result.add name
|
|
|
|
if typ.kind == tyObject:
|
|
if typ[0] == nil:
|
|
if (typ.sym != nil and sfPure in typ.sym.flags) or tfFinal in typ.flags:
|
|
appcg(m, result, " {$n", [])
|
|
else:
|
|
appcg(m, result, " {$n#TNimType* m_type;$n", [])
|
|
hasField = true
|
|
elif m.compileToCpp:
|
|
appcg(m, result, " : public $1 {$n",
|
|
[getTypeDescAux(m, typ[0].skipTypes(skipPtrs), check)])
|
|
if typ.isException and m.config.exc == excCpp:
|
|
when false:
|
|
appcg(m, result, "virtual void raise() { throw *this; }$n", []) # required for polymorphic exceptions
|
|
if typ.sym.magic == mException:
|
|
# Add cleanup destructor to Exception base class
|
|
appcg(m, result, "~$1();$n", [name])
|
|
# define it out of the class body and into the procs section so we don't have to
|
|
# artificially forward-declare popCurrentExceptionEx (very VERY troublesome for HCR)
|
|
appcg(m, cfsProcs, "inline $1::~$1() {if(this->raiseId) #popCurrentExceptionEx(this->raiseId);}$n", [name])
|
|
hasField = true
|
|
else:
|
|
appcg(m, result, " {$n $1 Sup;$n",
|
|
[getTypeDescAux(m, typ[0].skipTypes(skipPtrs), check)])
|
|
hasField = true
|
|
else:
|
|
result.addf(" {$n", [name])
|
|
|
|
let desc = getRecordFields(m, typ, check)
|
|
if desc == nil and not hasField:
|
|
result.addf("char dummy;$n", [])
|
|
else:
|
|
result.add(desc)
|
|
result.add("};\L")
|
|
if tfPacked in typ.flags and hasAttribute notin CC[m.config.cCompiler].props:
|
|
result.add "#pragma pack(pop)\L"
|
|
|
|
proc getTupleDesc(m: BModule, typ: PType, name: Rope,
|
|
check: var IntSet): Rope =
|
|
result = "$1 $2 {$n" % [structOrUnion(typ), name]
|
|
var desc: Rope = nil
|
|
for i in 0..<typ.len:
|
|
desc.addf("$1 Field$2;$n",
|
|
[getTypeDescAux(m, typ[i], check), rope(i)])
|
|
if desc == nil: result.add("char dummy;\L")
|
|
else: result.add(desc)
|
|
result.add("};\L")
|
|
|
|
proc scanCppGenericSlot(pat: string, cursor, outIdx, outStars: var int): bool =
|
|
# A helper proc for handling cppimport patterns, involving numeric
|
|
# placeholders for generic types (e.g. '0, '**2, etc).
|
|
# pre: the cursor must be placed at the ' symbol
|
|
# post: the cursor will be placed after the final digit
|
|
# false will returned if the input is not recognized as a placeholder
|
|
inc cursor
|
|
let begin = cursor
|
|
while pat[cursor] == '*': inc cursor
|
|
if pat[cursor] in Digits:
|
|
outIdx = pat[cursor].ord - '0'.ord
|
|
outStars = cursor - begin
|
|
inc cursor
|
|
return true
|
|
else:
|
|
return false
|
|
|
|
proc resolveStarsInCppType(typ: PType, idx, stars: int): PType =
|
|
# Make sure the index refers to one of the generic params of the type.
|
|
# XXX: we should catch this earlier and report it as a semantic error.
|
|
if idx >= typ.len:
|
|
doAssert false, "invalid apostrophe type parameter index"
|
|
|
|
result = typ[idx]
|
|
for i in 1..stars:
|
|
if result != nil and result.len > 0:
|
|
result = if result.kind == tyGenericInst: result[1]
|
|
else: result.elemType
|
|
|
|
proc getTypeDescAux(m: BModule, origTyp: PType, check: var IntSet): Rope =
|
|
# returns only the type's name
|
|
var t = origTyp.skipTypes(irrelevantForBackend-{tyOwned})
|
|
if containsOrIncl(check, t.id):
|
|
if not (isImportedCppType(origTyp) or isImportedCppType(t)):
|
|
internalError(m.config, "cannot generate C type for: " & typeToString(origTyp))
|
|
# XXX: this BUG is hard to fix -> we need to introduce helper structs,
|
|
# but determining when this needs to be done is hard. We should split
|
|
# C type generation into an analysis and a code generation phase somehow.
|
|
if t.sym != nil: useHeader(m, t.sym)
|
|
if t != origTyp and origTyp.sym != nil: useHeader(m, origTyp.sym)
|
|
let sig = hashType(origTyp)
|
|
result = getTypePre(m, t, sig)
|
|
if result != nil:
|
|
excl(check, t.id)
|
|
return
|
|
case t.kind
|
|
of tyRef, tyPtr, tyVar, tyLent:
|
|
var star = if t.kind == tyVar and tfVarIsPtr notin origTyp.flags and
|
|
compileToCpp(m): "&" else: "*"
|
|
var et = origTyp.skipTypes(abstractInst).lastSon
|
|
var etB = et.skipTypes(abstractInst)
|
|
if mapType(m.config, t) == ctPtrToArray:
|
|
if etB.kind == tySet:
|
|
et = getSysType(m.g.graph, unknownLineInfo, tyUInt8)
|
|
else:
|
|
et = elemType(etB)
|
|
etB = et.skipTypes(abstractInst)
|
|
star[0] = '*'
|
|
case etB.kind
|
|
of tyObject, tyTuple:
|
|
if isImportedCppType(etB) and et.kind == tyGenericInst:
|
|
result = getTypeDescAux(m, et, check) & star
|
|
else:
|
|
# no restriction! We have a forward declaration for structs
|
|
let name = getTypeForward(m, et, hashType et)
|
|
result = name & star
|
|
m.typeCache[sig] = result
|
|
of tySequence:
|
|
if optSeqDestructors in m.config.globalOptions:
|
|
result = getTypeDescWeak(m, et, check) & star
|
|
m.typeCache[sig] = result
|
|
else:
|
|
# no restriction! We have a forward declaration for structs
|
|
let name = getTypeForward(m, et, hashType et)
|
|
result = name & seqStar(m) & star
|
|
m.typeCache[sig] = result
|
|
pushType(m, et)
|
|
else:
|
|
# else we have a strong dependency :-(
|
|
result = getTypeDescAux(m, et, check) & star
|
|
m.typeCache[sig] = result
|
|
of tyOpenArray, tyVarargs:
|
|
result = getTypeDescWeak(m, t[0], check) & "*"
|
|
m.typeCache[sig] = result
|
|
of tyEnum:
|
|
result = cacheGetType(m.typeCache, sig)
|
|
if result == nil:
|
|
result = getTypeName(m, origTyp, sig)
|
|
if not (isImportedCppType(t) or
|
|
(sfImportc in t.sym.flags and t.sym.magic == mNone)):
|
|
m.typeCache[sig] = result
|
|
var size: int
|
|
if firstOrd(m.config, t) < 0:
|
|
m.s[cfsTypes].addf("typedef NI32 $1;$n", [result])
|
|
size = 4
|
|
else:
|
|
size = int(getSize(m.config, t))
|
|
case size
|
|
of 1: m.s[cfsTypes].addf("typedef NU8 $1;$n", [result])
|
|
of 2: m.s[cfsTypes].addf("typedef NU16 $1;$n", [result])
|
|
of 4: m.s[cfsTypes].addf("typedef NI32 $1;$n", [result])
|
|
of 8: m.s[cfsTypes].addf("typedef NI64 $1;$n", [result])
|
|
else: internalError(m.config, t.sym.info, "getTypeDescAux: enum")
|
|
when false:
|
|
let owner = hashOwner(t.sym)
|
|
if not gDebugInfo.hasEnum(t.sym.name.s, t.sym.info.line, owner):
|
|
var vals: seq[(string, int)] = @[]
|
|
for i in 0..<t.n.len:
|
|
assert(t.n[i].kind == nkSym)
|
|
let field = t.n[i].sym
|
|
vals.add((field.name.s, field.position.int))
|
|
gDebugInfo.registerEnum(EnumDesc(size: size, owner: owner, id: t.sym.id,
|
|
name: t.sym.name.s, values: vals))
|
|
of tyProc:
|
|
result = getTypeName(m, origTyp, sig)
|
|
m.typeCache[sig] = result
|
|
var rettype, desc: Rope
|
|
genProcParams(m, t, rettype, desc, check, true, true)
|
|
if not isImportedType(t):
|
|
if t.callConv != ccClosure: # procedure vars may need a closure!
|
|
m.s[cfsTypes].addf("typedef $1_PTR($2, $3) $4;$n",
|
|
[rope(CallingConvToStr[t.callConv]), rettype, result, desc])
|
|
else:
|
|
m.s[cfsTypes].addf("typedef struct {$n" &
|
|
"N_NIMCALL_PTR($2, ClP_0) $3;$n" &
|
|
"void* ClE_0;$n} $1;$n",
|
|
[result, rettype, desc])
|
|
of tySequence:
|
|
if optSeqDestructors in m.config.globalOptions:
|
|
result = getTypeDescWeak(m, t, check)
|
|
else:
|
|
# we cannot use getTypeForward here because then t would be associated
|
|
# with the name of the struct, not with the pointer to the struct:
|
|
result = cacheGetType(m.forwTypeCache, sig)
|
|
if result == nil:
|
|
result = getTypeName(m, origTyp, sig)
|
|
if not isImportedType(t):
|
|
addForwardStructFormat(m, structOrUnion(t), result)
|
|
m.forwTypeCache[sig] = result
|
|
assert(cacheGetType(m.typeCache, sig) == nil)
|
|
m.typeCache[sig] = result & seqStar(m)
|
|
if not isImportedType(t):
|
|
if skipTypes(t[0], typedescInst).kind != tyEmpty:
|
|
const
|
|
cppSeq = "struct $2 : #TGenericSeq {$n"
|
|
cSeq = "struct $2 {$n" &
|
|
" #TGenericSeq Sup;$n"
|
|
if m.compileToCpp:
|
|
appcg(m, m.s[cfsSeqTypes],
|
|
cppSeq & " $1 data[SEQ_DECL_SIZE];$n" &
|
|
"};$n", [getTypeDescAux(m, t[0], check), result])
|
|
else:
|
|
appcg(m, m.s[cfsSeqTypes],
|
|
cSeq & " $1 data[SEQ_DECL_SIZE];$n" &
|
|
"};$n", [getTypeDescAux(m, t[0], check), result])
|
|
else:
|
|
result = rope("TGenericSeq")
|
|
result.add(seqStar(m))
|
|
of tyUncheckedArray:
|
|
result = getTypeName(m, origTyp, sig)
|
|
m.typeCache[sig] = result
|
|
if not isImportedType(t):
|
|
let foo = getTypeDescAux(m, t[0], check)
|
|
m.s[cfsTypes].addf("typedef $1 $2[1];$n", [foo, result])
|
|
of tyArray:
|
|
var n: BiggestInt = toInt64(lengthOrd(m.config, t))
|
|
if n <= 0: n = 1 # make an array of at least one element
|
|
result = getTypeName(m, origTyp, sig)
|
|
m.typeCache[sig] = result
|
|
if not isImportedType(t):
|
|
let foo = getTypeDescAux(m, t[1], check)
|
|
m.s[cfsTypes].addf("typedef $1 $2[$3];$n",
|
|
[foo, result, rope(n)])
|
|
else: addAbiCheck(m, t, result)
|
|
of tyObject, tyTuple:
|
|
if isImportedCppType(t) and origTyp.kind == tyGenericInst:
|
|
let cppName = getTypeName(m, t, sig)
|
|
var i = 0
|
|
var chunkStart = 0
|
|
|
|
template addResultType(ty: untyped) =
|
|
if ty == nil or ty.kind == tyVoid:
|
|
result.add(~"void")
|
|
elif ty.kind == tyStatic:
|
|
internalAssert m.config, ty.n != nil
|
|
result.add ty.n.renderTree
|
|
else:
|
|
result.add getTypeDescAux(m, ty, check)
|
|
|
|
while i < cppName.data.len:
|
|
if cppName.data[i] == '\'':
|
|
var chunkEnd = i-1
|
|
var idx, stars: int
|
|
if scanCppGenericSlot(cppName.data, i, idx, stars):
|
|
result.add cppName.data.substr(chunkStart, chunkEnd)
|
|
chunkStart = i
|
|
|
|
let typeInSlot = resolveStarsInCppType(origTyp, idx + 1, stars)
|
|
addResultType(typeInSlot)
|
|
else:
|
|
inc i
|
|
|
|
if chunkStart != 0:
|
|
result.add cppName.data.substr(chunkStart)
|
|
else:
|
|
result = cppName & "<"
|
|
for i in 1..<origTyp.len-1:
|
|
if i > 1: result.add(" COMMA ")
|
|
addResultType(origTyp[i])
|
|
result.add("> ")
|
|
# always call for sideeffects:
|
|
assert t.kind != tyTuple
|
|
discard getRecordDesc(m, t, result, check)
|
|
# The resulting type will include commas and these won't play well
|
|
# with the C macros for defining procs such as N_NIMCALL. We must
|
|
# create a typedef for the type and use it in the proc signature:
|
|
let typedefName = ~"TY" & $sig
|
|
m.s[cfsTypes].addf("typedef $1 $2;$n", [result, typedefName])
|
|
m.typeCache[sig] = typedefName
|
|
result = typedefName
|
|
else:
|
|
result = cacheGetType(m.forwTypeCache, sig)
|
|
if result == nil:
|
|
result = getTypeName(m, origTyp, sig)
|
|
m.forwTypeCache[sig] = result
|
|
if not isImportedType(t):
|
|
addForwardStructFormat(m, structOrUnion(t), result)
|
|
assert m.forwTypeCache[sig] == result
|
|
m.typeCache[sig] = result # always call for sideeffects:
|
|
if not incompleteType(t):
|
|
let recdesc = if t.kind != tyTuple: getRecordDesc(m, t, result, check)
|
|
else: getTupleDesc(m, t, result, check)
|
|
if not isImportedType(t):
|
|
m.s[cfsTypes].add(recdesc)
|
|
elif tfIncompleteStruct notin t.flags: addAbiCheck(m, t, result)
|
|
of tySet:
|
|
# Don't use the imported name as it may be scoped: 'Foo::SomeKind'
|
|
result = $t.kind & '_' & t.lastSon.typeName & $t.lastSon.hashType
|
|
m.typeCache[sig] = result
|
|
if not isImportedType(t):
|
|
let s = int(getSize(m.config, t))
|
|
case s
|
|
of 1, 2, 4, 8: m.s[cfsTypes].addf("typedef NU$2 $1;$n", [result, rope(s*8)])
|
|
else: m.s[cfsTypes].addf("typedef NU8 $1[$2];$n",
|
|
[result, rope(getSize(m.config, t))])
|
|
of tyGenericInst, tyDistinct, tyOrdinal, tyTypeDesc, tyAlias, tySink, tyOwned,
|
|
tyUserTypeClass, tyUserTypeClassInst, tyInferred:
|
|
result = getTypeDescAux(m, lastSon(t), check)
|
|
else:
|
|
internalError(m.config, "getTypeDescAux(" & $t.kind & ')')
|
|
result = nil
|
|
# fixes bug #145:
|
|
excl(check, t.id)
|
|
|
|
proc getTypeDesc(m: BModule, typ: PType): Rope =
|
|
var check = initIntSet()
|
|
result = getTypeDescAux(m, typ, check)
|
|
|
|
type
|
|
TClosureTypeKind = enum ## In C closures are mapped to 3 different things.
|
|
clHalf, ## fn(args) type without the trailing 'void* env' parameter
|
|
clHalfWithEnv, ## fn(args, void* env) type with trailing 'void* env' parameter
|
|
clFull ## struct {fn(args, void* env), env}
|
|
|
|
proc getClosureType(m: BModule, t: PType, kind: TClosureTypeKind): Rope =
|
|
assert t.kind == tyProc
|
|
var check = initIntSet()
|
|
result = getTempName(m)
|
|
var rettype, desc: Rope
|
|
genProcParams(m, t, rettype, desc, check, declareEnvironment=kind != clHalf)
|
|
if not isImportedType(t):
|
|
if t.callConv != ccClosure or kind != clFull:
|
|
m.s[cfsTypes].addf("typedef $1_PTR($2, $3) $4;$n",
|
|
[rope(CallingConvToStr[t.callConv]), rettype, result, desc])
|
|
else:
|
|
m.s[cfsTypes].addf("typedef struct {$n" &
|
|
"N_NIMCALL_PTR($2, ClP_0) $3;$n" &
|
|
"void* ClE_0;$n} $1;$n",
|
|
[result, rettype, desc])
|
|
|
|
proc finishTypeDescriptions(m: BModule) =
|
|
var i = 0
|
|
var check = initIntSet()
|
|
while i < m.typeStack.len:
|
|
let t = m.typeStack[i]
|
|
if optSeqDestructors in m.config.globalOptions and t.skipTypes(abstractInst).kind == tySequence:
|
|
seqV2ContentType(m, t, check)
|
|
else:
|
|
discard getTypeDescAux(m, t, check)
|
|
inc(i)
|
|
|
|
template cgDeclFrmt*(s: PSym): string =
|
|
s.constraint.strVal
|
|
|
|
proc isReloadable(m: BModule, prc: PSym): bool =
|
|
return m.hcrOn and sfNonReloadable notin prc.flags
|
|
|
|
proc isNonReloadable(m: BModule, prc: PSym): bool =
|
|
return m.hcrOn and sfNonReloadable in prc.flags
|
|
|
|
proc genProcHeader(m: BModule, prc: PSym, asPtr: bool = false): Rope =
|
|
var
|
|
rettype, params: Rope
|
|
# using static is needed for inline procs
|
|
if lfExportLib in prc.loc.flags:
|
|
if isHeaderFile in m.flags:
|
|
result.add "N_LIB_IMPORT "
|
|
else:
|
|
result.add "N_LIB_EXPORT "
|
|
elif prc.typ.callConv == ccInline or asPtr or isNonReloadable(m, prc):
|
|
result.add "static "
|
|
elif sfImportc notin prc.flags:
|
|
result.add "N_LIB_PRIVATE "
|
|
var check = initIntSet()
|
|
fillLoc(prc.loc, locProc, prc.ast[namePos], mangleName(m, prc), OnUnknown)
|
|
genProcParams(m, prc.typ, rettype, params, check)
|
|
# handle the 2 options for hotcodereloading codegen - function pointer
|
|
# (instead of forward declaration) or header for function body with "_actual" postfix
|
|
let asPtrStr = rope(if asPtr: "_PTR" else: "")
|
|
var name = prc.loc.r
|
|
if isReloadable(m, prc) and not asPtr:
|
|
name.add("_actual")
|
|
# careful here! don't access ``prc.ast`` as that could reload large parts of
|
|
# the object graph!
|
|
if prc.constraint.isNil:
|
|
result.addf("$1$2($3, $4)$5",
|
|
[rope(CallingConvToStr[prc.typ.callConv]), asPtrStr, rettype, name,
|
|
params])
|
|
else:
|
|
let asPtrStr = if asPtr: (rope("(*") & name & ")") else: name
|
|
result = runtimeFormat(prc.cgDeclFrmt, [rettype, asPtrStr, params])
|
|
|
|
# ------------------ type info generation -------------------------------------
|
|
|
|
proc genTypeInfo(m: BModule, t: PType; info: TLineInfo): Rope
|
|
proc getNimNode(m: BModule): Rope =
|
|
result = "$1[$2]" % [m.typeNodesName, rope(m.typeNodes)]
|
|
inc(m.typeNodes)
|
|
|
|
proc tiNameForHcr(m: BModule, name: Rope): Rope =
|
|
return if m.hcrOn: "(*".rope & name & ")" else: name
|
|
|
|
proc genTypeInfoAuxBase(m: BModule; typ, origType: PType;
|
|
name, base: Rope; info: TLineInfo) =
|
|
var nimtypeKind: int
|
|
#allocMemTI(m, typ, name)
|
|
if isObjLackingTypeField(typ):
|
|
nimtypeKind = ord(tyPureObject)
|
|
else:
|
|
nimtypeKind = ord(typ.kind)
|
|
|
|
let nameHcr = tiNameForHcr(m, name)
|
|
|
|
var size: Rope
|
|
if tfIncompleteStruct in typ.flags: size = rope"void*"
|
|
else: size = getTypeDesc(m, origType)
|
|
m.s[cfsTypeInit3].addf(
|
|
"$1.size = sizeof($2);$n" & "$1.kind = $3;$n" & "$1.base = $4;$n",
|
|
[nameHcr, size, rope(nimtypeKind), base])
|
|
# compute type flags for GC optimization
|
|
var flags = 0
|
|
if not containsGarbageCollectedRef(typ): flags = flags or 1
|
|
if not canFormAcycle(typ): flags = flags or 2
|
|
#else MessageOut("can contain a cycle: " & typeToString(typ))
|
|
if flags != 0:
|
|
m.s[cfsTypeInit3].addf("$1.flags = $2;$n", [nameHcr, rope(flags)])
|
|
discard cgsym(m, "TNimType")
|
|
if isDefined(m.config, "nimTypeNames"):
|
|
var typename = typeToString(if origType.typeInst != nil: origType.typeInst
|
|
else: origType, preferName)
|
|
if typename == "ref object" and origType.skipTypes(skipPtrs).sym != nil:
|
|
typename = "anon ref object from " & m.config$origType.skipTypes(skipPtrs).sym.info
|
|
m.s[cfsTypeInit3].addf("$1.name = $2;$n",
|
|
[nameHcr, makeCString typename])
|
|
discard cgsym(m, "nimTypeRoot")
|
|
m.s[cfsTypeInit3].addf("$1.nextType = nimTypeRoot; nimTypeRoot=&$1;$n",
|
|
[nameHcr])
|
|
|
|
if m.hcrOn:
|
|
m.s[cfsData].addf("static TNimType* $1;$n", [name])
|
|
m.hcrCreateTypeInfosProc.addf("\thcrRegisterGlobal($2, \"$1\", sizeof(TNimType), NULL, (void**)&$1);$n",
|
|
[name, getModuleDllPath(m, m.module)])
|
|
else:
|
|
m.s[cfsData].addf("N_LIB_PRIVATE TNimType $1;$n", [name])
|
|
|
|
proc genTypeInfoAux(m: BModule, typ, origType: PType, name: Rope;
|
|
info: TLineInfo) =
|
|
var base: Rope
|
|
if typ.len > 0 and typ.lastSon != nil:
|
|
var x = typ.lastSon
|
|
if typ.kind == tyObject: x = x.skipTypes(skipPtrs)
|
|
if typ.kind == tyPtr and x.kind == tyObject and incompleteType(x):
|
|
base = rope("0")
|
|
else:
|
|
base = genTypeInfo(m, x, info)
|
|
else:
|
|
base = rope("0")
|
|
genTypeInfoAuxBase(m, typ, origType, name, base, info)
|
|
|
|
proc discriminatorTableName(m: BModule, objtype: PType, d: PSym): Rope =
|
|
# bugfix: we need to search the type that contains the discriminator:
|
|
var objtype = objtype.skipTypes(abstractPtrs)
|
|
while lookupInRecord(objtype.n, d.name) == nil:
|
|
objtype = objtype[0].skipTypes(abstractPtrs)
|
|
if objtype.sym == nil:
|
|
internalError(m.config, d.info, "anonymous obj with discriminator")
|
|
result = "NimDT_$1_$2" % [rope($hashType(objtype)), rope(d.name.s.mangle)]
|
|
|
|
proc rope(arg: Int128): Rope = rope($arg)
|
|
|
|
proc discriminatorTableDecl(m: BModule, objtype: PType, d: PSym): Rope =
|
|
discard cgsym(m, "TNimNode")
|
|
var tmp = discriminatorTableName(m, objtype, d)
|
|
result = "TNimNode* $1[$2];$n" % [tmp, rope(lengthOrd(m.config, d.typ)+1)]
|
|
|
|
proc genTNimNodeArray(m: BModule, name: Rope, size: Rope) =
|
|
if m.hcrOn:
|
|
m.s[cfsData].addf("static TNimNode** $1;$n", [name])
|
|
m.hcrCreateTypeInfosProc.addf("\thcrRegisterGlobal($3, \"$1\", sizeof(TNimNode*) * $2, NULL, (void**)&$1);$n",
|
|
[name, size, getModuleDllPath(m, m.module)])
|
|
else:
|
|
m.s[cfsTypeInit1].addf("static TNimNode* $1[$2];$n", [name, size])
|
|
|
|
proc genObjectFields(m: BModule, typ, origType: PType, n: PNode, expr: Rope;
|
|
info: TLineInfo) =
|
|
case n.kind
|
|
of nkRecList:
|
|
if n.len == 1:
|
|
genObjectFields(m, typ, origType, n[0], expr, info)
|
|
elif n.len > 0:
|
|
var tmp = getTempName(m) & "_" & $n.len
|
|
genTNimNodeArray(m, tmp, rope(n.len))
|
|
for i in 0..<n.len:
|
|
var tmp2 = getNimNode(m)
|
|
m.s[cfsTypeInit3].addf("$1[$2] = &$3;$n", [tmp, rope(i), tmp2])
|
|
genObjectFields(m, typ, origType, n[i], tmp2, info)
|
|
m.s[cfsTypeInit3].addf("$1.len = $2; $1.kind = 2; $1.sons = &$3[0];$n",
|
|
[expr, rope(n.len), tmp])
|
|
else:
|
|
m.s[cfsTypeInit3].addf("$1.len = $2; $1.kind = 2;$n", [expr, rope(n.len)])
|
|
of nkRecCase:
|
|
assert(n[0].kind == nkSym)
|
|
var field = n[0].sym
|
|
var tmp = discriminatorTableName(m, typ, field)
|
|
var L = lengthOrd(m.config, field.typ)
|
|
assert L > 0
|
|
if field.loc.r == nil: fillObjectFields(m, typ)
|
|
if field.loc.t == nil:
|
|
internalError(m.config, n.info, "genObjectFields")
|
|
m.s[cfsTypeInit3].addf("$1.kind = 3;$n" &
|
|
"$1.offset = offsetof($2, $3);$n" & "$1.typ = $4;$n" &
|
|
"$1.name = $5;$n" & "$1.sons = &$6[0];$n" &
|
|
"$1.len = $7;$n", [expr, getTypeDesc(m, origType), field.loc.r,
|
|
genTypeInfo(m, field.typ, info),
|
|
makeCString(field.name.s),
|
|
tmp, rope(L)])
|
|
m.s[cfsData].addf("TNimNode* $1[$2];$n", [tmp, rope(L+1)])
|
|
for i in 1..<n.len:
|
|
var b = n[i] # branch
|
|
var tmp2 = getNimNode(m)
|
|
genObjectFields(m, typ, origType, lastSon(b), tmp2, info)
|
|
case b.kind
|
|
of nkOfBranch:
|
|
if b.len < 2:
|
|
internalError(m.config, b.info, "genObjectFields; nkOfBranch broken")
|
|
for j in 0..<b.len - 1:
|
|
if b[j].kind == nkRange:
|
|
var x = toInt(getOrdValue(b[j][0]))
|
|
var y = toInt(getOrdValue(b[j][1]))
|
|
while x <= y:
|
|
m.s[cfsTypeInit3].addf("$1[$2] = &$3;$n", [tmp, rope(x), tmp2])
|
|
inc(x)
|
|
else:
|
|
m.s[cfsTypeInit3].addf("$1[$2] = &$3;$n",
|
|
[tmp, rope(getOrdValue(b[j])), tmp2])
|
|
of nkElse:
|
|
m.s[cfsTypeInit3].addf("$1[$2] = &$3;$n",
|
|
[tmp, rope(L), tmp2])
|
|
else: internalError(m.config, n.info, "genObjectFields(nkRecCase)")
|
|
of nkSym:
|
|
var field = n.sym
|
|
# Do not produce code for void types
|
|
if isEmptyType(field.typ): return
|
|
if field.bitsize == 0:
|
|
if field.loc.r == nil: fillObjectFields(m, typ)
|
|
if field.loc.t == nil:
|
|
internalError(m.config, n.info, "genObjectFields")
|
|
m.s[cfsTypeInit3].addf("$1.kind = 1;$n" &
|
|
"$1.offset = offsetof($2, $3);$n" & "$1.typ = $4;$n" &
|
|
"$1.name = $5;$n", [expr, getTypeDesc(m, origType),
|
|
field.loc.r, genTypeInfo(m, field.typ, info), makeCString(field.name.s)])
|
|
else: internalError(m.config, n.info, "genObjectFields")
|
|
|
|
proc genObjectInfo(m: BModule, typ, origType: PType, name: Rope; info: TLineInfo) =
|
|
if typ.kind == tyObject:
|
|
if incompleteType(typ):
|
|
localError(m.config, info, "request for RTTI generation for incomplete object: " &
|
|
typeToString(typ))
|
|
genTypeInfoAux(m, typ, origType, name, info)
|
|
else:
|
|
genTypeInfoAuxBase(m, typ, origType, name, rope("0"), info)
|
|
var tmp = getNimNode(m)
|
|
if not isImportedType(typ):
|
|
genObjectFields(m, typ, origType, typ.n, tmp, info)
|
|
m.s[cfsTypeInit3].addf("$1.node = &$2;$n", [tiNameForHcr(m, name), tmp])
|
|
var t = typ[0]
|
|
while t != nil:
|
|
t = t.skipTypes(skipPtrs)
|
|
t.flags.incl tfObjHasKids
|
|
t = t[0]
|
|
|
|
proc genTupleInfo(m: BModule, typ, origType: PType, name: Rope; info: TLineInfo) =
|
|
genTypeInfoAuxBase(m, typ, typ, name, rope("0"), info)
|
|
var expr = getNimNode(m)
|
|
if typ.len > 0:
|
|
var tmp = getTempName(m) & "_" & $typ.len
|
|
genTNimNodeArray(m, tmp, rope(typ.len))
|
|
for i in 0..<typ.len:
|
|
var a = typ[i]
|
|
var tmp2 = getNimNode(m)
|
|
m.s[cfsTypeInit3].addf("$1[$2] = &$3;$n", [tmp, rope(i), tmp2])
|
|
m.s[cfsTypeInit3].addf("$1.kind = 1;$n" &
|
|
"$1.offset = offsetof($2, Field$3);$n" &
|
|
"$1.typ = $4;$n" &
|
|
"$1.name = \"Field$3\";$n",
|
|
[tmp2, getTypeDesc(m, origType), rope(i), genTypeInfo(m, a, info)])
|
|
m.s[cfsTypeInit3].addf("$1.len = $2; $1.kind = 2; $1.sons = &$3[0];$n",
|
|
[expr, rope(typ.len), tmp])
|
|
else:
|
|
m.s[cfsTypeInit3].addf("$1.len = $2; $1.kind = 2;$n",
|
|
[expr, rope(typ.len)])
|
|
m.s[cfsTypeInit3].addf("$1.node = &$2;$n", [tiNameForHcr(m, name), expr])
|
|
|
|
proc genEnumInfo(m: BModule, typ: PType, name: Rope; info: TLineInfo) =
|
|
# Type information for enumerations is quite heavy, so we do some
|
|
# optimizations here: The ``typ`` field is never set, as it is redundant
|
|
# anyway. We generate a cstring array and a loop over it. Exceptional
|
|
# positions will be reset after the loop.
|
|
genTypeInfoAux(m, typ, typ, name, info)
|
|
var nodePtrs = getTempName(m) & "_" & $typ.n.len
|
|
genTNimNodeArray(m, nodePtrs, rope(typ.n.len))
|
|
var enumNames, specialCases: Rope
|
|
var firstNimNode = m.typeNodes
|
|
var hasHoles = false
|
|
for i in 0..<typ.n.len:
|
|
assert(typ.n[i].kind == nkSym)
|
|
var field = typ.n[i].sym
|
|
var elemNode = getNimNode(m)
|
|
if field.ast == nil:
|
|
# no explicit string literal for the enum field, so use field.name:
|
|
enumNames.add(makeCString(field.name.s))
|
|
else:
|
|
enumNames.add(makeCString(field.ast.strVal))
|
|
if i < typ.n.len - 1: enumNames.add(", \L")
|
|
if field.position != i or tfEnumHasHoles in typ.flags:
|
|
specialCases.addf("$1.offset = $2;$n", [elemNode, rope(field.position)])
|
|
hasHoles = true
|
|
var enumArray = getTempName(m)
|
|
var counter = getTempName(m)
|
|
m.s[cfsTypeInit1].addf("NI $1;$n", [counter])
|
|
m.s[cfsTypeInit1].addf("static char* NIM_CONST $1[$2] = {$n$3};$n",
|
|
[enumArray, rope(typ.n.len), enumNames])
|
|
m.s[cfsTypeInit3].addf("for ($1 = 0; $1 < $2; $1++) {$n" &
|
|
"$3[$1+$4].kind = 1;$n" & "$3[$1+$4].offset = $1;$n" &
|
|
"$3[$1+$4].name = $5[$1];$n" & "$6[$1] = &$3[$1+$4];$n" & "}$n", [counter,
|
|
rope(typ.n.len), m.typeNodesName, rope(firstNimNode), enumArray, nodePtrs])
|
|
m.s[cfsTypeInit3].add(specialCases)
|
|
m.s[cfsTypeInit3].addf(
|
|
"$1.len = $2; $1.kind = 2; $1.sons = &$3[0];$n$4.node = &$1;$n",
|
|
[getNimNode(m), rope(typ.n.len), nodePtrs, tiNameForHcr(m, name)])
|
|
if hasHoles:
|
|
# 1 << 2 is {ntfEnumHole}
|
|
m.s[cfsTypeInit3].addf("$1.flags = 1<<2;$n", [tiNameForHcr(m, name)])
|
|
|
|
proc genSetInfo(m: BModule, typ: PType, name: Rope; info: TLineInfo) =
|
|
assert(typ[0] != nil)
|
|
genTypeInfoAux(m, typ, typ, name, info)
|
|
var tmp = getNimNode(m)
|
|
m.s[cfsTypeInit3].addf("$1.len = $2; $1.kind = 0;$n" & "$3.node = &$1;$n",
|
|
[tmp, rope(firstOrd(m.config, typ)), tiNameForHcr(m, name)])
|
|
|
|
proc genArrayInfo(m: BModule, typ: PType, name: Rope; info: TLineInfo) =
|
|
genTypeInfoAuxBase(m, typ, typ, name, genTypeInfo(m, typ[1], info), info)
|
|
|
|
proc fakeClosureType(m: BModule; owner: PSym): PType =
|
|
# we generate the same RTTI as for a tuple[pointer, ref tuple[]]
|
|
result = newType(tyTuple, owner)
|
|
result.rawAddSon(newType(tyPointer, owner))
|
|
var r = newType(tyRef, owner)
|
|
let obj = createObj(m.g.graph, owner, owner.info, final=false)
|
|
r.rawAddSon(obj)
|
|
result.rawAddSon(r)
|
|
|
|
include ccgtrav
|
|
|
|
proc genDeepCopyProc(m: BModule; s: PSym; result: Rope) =
|
|
genProc(m, s)
|
|
m.s[cfsTypeInit3].addf("$1.deepcopy =(void* (N_RAW_NIMCALL*)(void*))$2;$n",
|
|
[result, s.loc.r])
|
|
|
|
proc declareNimType(m: BModule, str: Rope, ownerModule: PSym) =
|
|
if m.hcrOn:
|
|
m.s[cfsData].addf("static TNimType* $1;$n", [str])
|
|
m.s[cfsTypeInit1].addf("\t$1 = (TNimType*)hcrGetGlobal($2, \"$1\");$n",
|
|
[str, getModuleDllPath(m, ownerModule)])
|
|
else:
|
|
m.s[cfsData].addf("extern TNimType $1;$n", [str])
|
|
|
|
proc genTypeInfo2Name(m: BModule; t: PType): Rope =
|
|
var res = "|"
|
|
var it = t
|
|
while it != nil:
|
|
it = it.skipTypes(skipPtrs)
|
|
if it.sym != nil:
|
|
var m = it.sym.owner
|
|
while m != nil and m.kind != skModule: m = m.owner
|
|
if m == nil or sfSystemModule in m.flags:
|
|
# produce short names for system types:
|
|
res.add it.sym.name.s
|
|
else:
|
|
var p = m.owner
|
|
if p != nil and p.kind == skPackage:
|
|
res.add p.name.s & "."
|
|
res.add m.name.s & "."
|
|
res.add it.sym.name.s
|
|
else:
|
|
res.add $hashType(it)
|
|
res.add "|"
|
|
it = it[0]
|
|
result = makeCString(res)
|
|
|
|
proc isTrivialProc(s: PSym): bool {.inline.} = s.ast[bodyPos].len == 0
|
|
|
|
proc genHook(m: BModule; t: PType; info: TLineInfo; op: TTypeAttachedOp): Rope =
|
|
let theProc = t.attachedOps[op]
|
|
if theProc != nil and not isTrivialProc(theProc):
|
|
# the prototype of a destructor is ``=destroy(x: var T)`` and that of a
|
|
# finalizer is: ``proc (x: ref T) {.nimcall.}``. We need to check the calling
|
|
# convention at least:
|
|
if theProc.typ == nil or theProc.typ.callConv != ccDefault:
|
|
localError(m.config, info,
|
|
theProc.name.s & " needs to have the 'nimcall' calling convention")
|
|
|
|
genProc(m, theProc)
|
|
result = theProc.loc.r
|
|
else:
|
|
if op == attachedTrace and m.config.selectedGC == gcOrc and
|
|
containsGarbageCollectedRef(t):
|
|
when false:
|
|
# re-enable this check
|
|
internalError(m.config, info, "no attached trace proc found")
|
|
result = rope("NIM_NIL")
|
|
|
|
proc genTypeInfoV2(m: BModule, t, origType: PType, name: Rope; info: TLineInfo) =
|
|
var typeName: Rope
|
|
if t.kind == tyObject:
|
|
if incompleteType(t):
|
|
localError(m.config, info, "request for RTTI generation for incomplete object: " &
|
|
typeToString(t))
|
|
typeName = genTypeInfo2Name(m, t)
|
|
else:
|
|
typeName = rope("NIM_NIL")
|
|
|
|
discard cgsym(m, "TNimType")
|
|
m.s[cfsData].addf("N_LIB_PRIVATE TNimType $1;$n", [name])
|
|
let destroyImpl = genHook(m, t, info, attachedDestructor)
|
|
let traceImpl = genHook(m, t, info, attachedTrace)
|
|
let disposeImpl = genHook(m, t, info, attachedDispose)
|
|
|
|
m.s[cfsTypeInit3].addf("$1.destructor = (void*)$2; $1.size = sizeof($3);$n" &
|
|
"$1.name = $4;$n" &
|
|
"$1.traceImpl = (void*)$5;$n" &
|
|
"$1.disposeImpl = (void*)$6;$n", [
|
|
name, destroyImpl, getTypeDesc(m, t), typeName,
|
|
traceImpl, disposeImpl])
|
|
|
|
proc genTypeInfo(m: BModule, t: PType; info: TLineInfo): Rope =
|
|
let origType = t
|
|
var t = skipTypes(origType, irrelevantForBackend + tyUserTypeClasses)
|
|
|
|
let prefixTI = if m.hcrOn: "(" else: "(&"
|
|
|
|
let sig = hashType(origType)
|
|
result = m.typeInfoMarker.getOrDefault(sig)
|
|
if result != nil:
|
|
return prefixTI.rope & result & ")".rope
|
|
|
|
let marker = m.g.typeInfoMarker.getOrDefault(sig)
|
|
if marker.str != nil:
|
|
discard cgsym(m, "TNimType")
|
|
discard cgsym(m, "TNimNode")
|
|
declareNimType(m, marker.str, marker.owner)
|
|
# also store in local type section:
|
|
m.typeInfoMarker[sig] = marker.str
|
|
return prefixTI.rope & marker.str & ")".rope
|
|
|
|
result = "NTI$1_" % [rope($sig)]
|
|
m.typeInfoMarker[sig] = result
|
|
|
|
let owner = t.skipTypes(typedescPtrs).owner.getModule
|
|
if owner != m.module:
|
|
# make sure the type info is created in the owner module
|
|
assert m.g.modules[owner.position] != nil
|
|
discard genTypeInfo(m.g.modules[owner.position], origType, info)
|
|
# reference the type info as extern here
|
|
discard cgsym(m, "TNimType")
|
|
discard cgsym(m, "TNimNode")
|
|
declareNimType(m, result, owner)
|
|
return prefixTI.rope & result & ")".rope
|
|
|
|
m.g.typeInfoMarker[sig] = (str: result, owner: owner)
|
|
|
|
if optTinyRtti in m.config.globalOptions:
|
|
genTypeInfoV2(m, t, origType, result, info)
|
|
else:
|
|
case t.kind
|
|
of tyEmpty, tyVoid: result = rope"0"
|
|
of tyPointer, tyBool, tyChar, tyCString, tyString, tyInt..tyUInt64, tyVar, tyLent:
|
|
genTypeInfoAuxBase(m, t, t, result, rope"0", info)
|
|
of tyStatic:
|
|
if t.n != nil: result = genTypeInfo(m, lastSon t, info)
|
|
else: internalError(m.config, "genTypeInfo(" & $t.kind & ')')
|
|
of tyUserTypeClasses:
|
|
internalAssert m.config, t.isResolvedUserTypeClass
|
|
return genTypeInfo(m, t.lastSon, info)
|
|
of tyProc:
|
|
if t.callConv != ccClosure:
|
|
genTypeInfoAuxBase(m, t, t, result, rope"0", info)
|
|
else:
|
|
let x = fakeClosureType(m, t.owner)
|
|
genTupleInfo(m, x, x, result, info)
|
|
of tySequence:
|
|
genTypeInfoAux(m, t, t, result, info)
|
|
if optSeqDestructors notin m.config.globalOptions:
|
|
if m.config.selectedGC >= gcMarkAndSweep:
|
|
let markerProc = genTraverseProc(m, origType, sig)
|
|
m.s[cfsTypeInit3].addf("$1.marker = $2;$n", [tiNameForHcr(m, result), markerProc])
|
|
of tyRef:
|
|
genTypeInfoAux(m, t, t, result, info)
|
|
if m.config.selectedGC >= gcMarkAndSweep:
|
|
let markerProc = genTraverseProc(m, origType, sig)
|
|
m.s[cfsTypeInit3].addf("$1.marker = $2;$n", [tiNameForHcr(m, result), markerProc])
|
|
of tyPtr, tyRange, tyUncheckedArray: genTypeInfoAux(m, t, t, result, info)
|
|
of tyArray: genArrayInfo(m, t, result, info)
|
|
of tySet: genSetInfo(m, t, result, info)
|
|
of tyEnum: genEnumInfo(m, t, result, info)
|
|
of tyObject:
|
|
genObjectInfo(m, t, origType, result, info)
|
|
of tyTuple:
|
|
# if t.n != nil: genObjectInfo(m, t, result)
|
|
# else:
|
|
# BUGFIX: use consistently RTTI without proper field names; otherwise
|
|
# results are not deterministic!
|
|
genTupleInfo(m, t, origType, result, info)
|
|
else: internalError(m.config, "genTypeInfo(" & $t.kind & ')')
|
|
|
|
if t.attachedOps[attachedDeepCopy] != nil:
|
|
genDeepCopyProc(m, t.attachedOps[attachedDeepCopy], result)
|
|
elif origType.attachedOps[attachedDeepCopy] != nil:
|
|
genDeepCopyProc(m, origType.attachedOps[attachedDeepCopy], result)
|
|
result = prefixTI.rope & result & ")".rope
|
|
|
|
proc genTypeSection(m: BModule, n: PNode) =
|
|
discard
|