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640 lines
23 KiB
Nim
640 lines
23 KiB
Nim
#
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#
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# The Nim Compiler
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# (c) Copyright 2015 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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## This module implements common simple lowerings.
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const
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genPrefix* = ":tmp" # prefix for generated names
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import ast, astalgo, types, idents, magicsys, msgs, options
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from trees import getMagic
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proc newDeref*(n: PNode): PNode {.inline.} =
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result = newNodeIT(nkHiddenDeref, n.info, n.typ.sons[0])
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addSon(result, n)
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proc newTupleAccess*(tup: PNode, i: int): PNode =
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result = newNodeIT(nkBracketExpr, tup.info, tup.typ.skipTypes(
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abstractInst).sons[i])
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addSon(result, copyTree(tup))
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var lit = newNodeIT(nkIntLit, tup.info, getSysType(tyInt))
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lit.intVal = i
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addSon(result, lit)
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proc addVar*(father, v: PNode) =
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var vpart = newNodeI(nkIdentDefs, v.info, 3)
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vpart.sons[0] = v
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vpart.sons[1] = ast.emptyNode
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vpart.sons[2] = ast.emptyNode
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addSon(father, vpart)
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proc newAsgnStmt(le, ri: PNode): PNode =
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result = newNodeI(nkAsgn, le.info, 2)
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result.sons[0] = le
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result.sons[1] = ri
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proc newFastAsgnStmt(le, ri: PNode): PNode =
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result = newNodeI(nkFastAsgn, le.info, 2)
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result.sons[0] = le
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result.sons[1] = ri
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proc lowerTupleUnpacking*(n: PNode; owner: PSym): PNode =
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assert n.kind == nkVarTuple
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let value = n.lastSon
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result = newNodeI(nkStmtList, n.info)
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var temp = newSym(skTemp, getIdent(genPrefix), owner, value.info)
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temp.typ = skipTypes(value.typ, abstractInst)
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incl(temp.flags, sfFromGeneric)
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var v = newNodeI(nkVarSection, value.info)
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let tempAsNode = newSymNode(temp)
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v.addVar(tempAsNode)
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result.add(v)
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result.add newAsgnStmt(tempAsNode, value)
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for i in 0 .. n.len-3:
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if n.sons[i].kind == nkSym: v.addVar(n.sons[i])
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result.add newAsgnStmt(n.sons[i], newTupleAccess(tempAsNode, i))
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proc newTupleAccessRaw*(tup: PNode, i: int): PNode =
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result = newNodeI(nkBracketExpr, tup.info)
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addSon(result, copyTree(tup))
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var lit = newNodeI(nkIntLit, tup.info)
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lit.intVal = i
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addSon(result, lit)
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proc lowerTupleUnpackingForAsgn*(n: PNode; owner: PSym): PNode =
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let value = n.lastSon
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result = newNodeI(nkStmtList, n.info)
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var temp = newSym(skTemp, getIdent(genPrefix), owner, value.info)
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var v = newNodeI(nkLetSection, value.info)
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let tempAsNode = newIdentNode(getIdent(genPrefix & $temp.id), value.info)
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var vpart = newNodeI(nkIdentDefs, tempAsNode.info, 3)
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vpart.sons[0] = tempAsNode
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vpart.sons[1] = ast.emptyNode
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vpart.sons[2] = value
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addSon(v, vpart)
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result.add(v)
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let lhs = n.sons[0]
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for i in 0 .. lhs.len-1:
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result.add newAsgnStmt(lhs.sons[i], newTupleAccessRaw(tempAsNode, i))
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proc lowerSwap*(n: PNode; owner: PSym): PNode =
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result = newNodeI(nkStmtList, n.info)
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# note: cannot use 'skTemp' here cause we really need the copy for the VM :-(
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var temp = newSym(skVar, getIdent(genPrefix), owner, n.info)
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temp.typ = n.sons[1].typ
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incl(temp.flags, sfFromGeneric)
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var v = newNodeI(nkVarSection, n.info)
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let tempAsNode = newSymNode(temp)
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var vpart = newNodeI(nkIdentDefs, v.info, 3)
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vpart.sons[0] = tempAsNode
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vpart.sons[1] = ast.emptyNode
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vpart.sons[2] = n[1]
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addSon(v, vpart)
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result.add(v)
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result.add newFastAsgnStmt(n[1], n[2])
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result.add newFastAsgnStmt(n[2], tempAsNode)
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proc createObj*(owner: PSym, info: TLineInfo): PType =
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result = newType(tyObject, owner)
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rawAddSon(result, nil)
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incl result.flags, tfFinal
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result.n = newNodeI(nkRecList, info)
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proc rawAddField*(obj: PType; field: PSym) =
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assert field.kind == skField
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field.position = sonsLen(obj.n)
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addSon(obj.n, newSymNode(field))
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proc rawIndirectAccess*(a: PNode; field: PSym; info: TLineInfo): PNode =
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# returns a[].field as a node
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assert field.kind == skField
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var deref = newNodeI(nkHiddenDeref, info)
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deref.typ = a.typ.skipTypes(abstractInst).sons[0]
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addSon(deref, a)
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result = newNodeI(nkDotExpr, info)
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addSon(result, deref)
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addSon(result, newSymNode(field))
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result.typ = field.typ
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proc addField*(obj: PType; s: PSym) =
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# because of 'gensym' support, we have to mangle the name with its ID.
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# This is hacky but the clean solution is much more complex than it looks.
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var field = newSym(skField, getIdent(s.name.s & $s.id), s.owner, s.info)
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let t = skipIntLit(s.typ)
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field.typ = t
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assert t.kind != tyStmt
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field.position = sonsLen(obj.n)
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addSon(obj.n, newSymNode(field))
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proc addUniqueField*(obj: PType; s: PSym) =
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let fieldName = getIdent(s.name.s & $s.id)
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if lookupInRecord(obj.n, fieldName) == nil:
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var field = newSym(skField, fieldName, s.owner, s.info)
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let t = skipIntLit(s.typ)
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field.typ = t
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assert t.kind != tyStmt
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field.position = sonsLen(obj.n)
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addSon(obj.n, newSymNode(field))
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proc newDotExpr(obj, b: PSym): PNode =
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result = newNodeI(nkDotExpr, obj.info)
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let field = getSymFromList(obj.typ.n, getIdent(b.name.s & $b.id))
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assert field != nil, b.name.s
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addSon(result, newSymNode(obj))
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addSon(result, newSymNode(field))
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result.typ = field.typ
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proc indirectAccess*(a: PNode, b: string, info: TLineInfo): PNode =
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# returns a[].b as a node
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var deref = newNodeI(nkHiddenDeref, info)
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deref.typ = a.typ.skipTypes(abstractInst).sons[0]
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var t = deref.typ.skipTypes(abstractInst)
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var field: PSym
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while true:
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assert t.kind == tyObject
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field = getSymFromList(t.n, getIdent(b))
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if field != nil: break
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t = t.sons[0]
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if t == nil: break
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t = t.skipTypes(abstractInst)
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#if field == nil:
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# echo "FIELD ", b
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# debug deref.typ
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internalAssert field != nil
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addSon(deref, a)
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result = newNodeI(nkDotExpr, info)
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addSon(result, deref)
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addSon(result, newSymNode(field))
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result.typ = field.typ
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proc getFieldFromObj*(t: PType; v: PSym): PSym =
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assert v.kind != skField
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let fieldName = getIdent(v.name.s & $v.id)
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var t = t
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while true:
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assert t.kind == tyObject
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result = getSymFromList(t.n, fieldName)
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if result != nil: break
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t = t.sons[0]
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if t == nil: break
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t = t.skipTypes(abstractInst)
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proc indirectAccess*(a: PNode, b: PSym, info: TLineInfo): PNode =
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# returns a[].b as a node
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result = indirectAccess(a, b.name.s & $b.id, info)
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proc indirectAccess*(a, b: PSym, info: TLineInfo): PNode =
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result = indirectAccess(newSymNode(a), b, info)
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proc genAddrOf*(n: PNode): PNode =
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result = newNodeI(nkAddr, n.info, 1)
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result.sons[0] = n
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result.typ = newType(tyPtr, n.typ.owner)
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result.typ.rawAddSon(n.typ)
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proc genDeref*(n: PNode): PNode =
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result = newNodeIT(nkHiddenDeref, n.info,
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n.typ.skipTypes(abstractInst).sons[0])
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result.add n
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proc callCodegenProc*(name: string, arg1: PNode;
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arg2, arg3, optionalArgs: PNode = nil): PNode =
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result = newNodeI(nkCall, arg1.info)
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let sym = magicsys.getCompilerProc(name)
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if sym == nil:
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localError(arg1.info, errSystemNeeds, name)
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else:
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result.add newSymNode(sym)
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result.add arg1
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if arg2 != nil: result.add arg2
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if arg3 != nil: result.add arg3
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if optionalArgs != nil:
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for i in 1..optionalArgs.len-3:
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result.add optionalArgs[i]
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result.typ = sym.typ.sons[0]
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proc callProc(a: PNode): PNode =
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result = newNodeI(nkCall, a.info)
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result.add a
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result.typ = a.typ.sons[0]
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# we have 4 cases to consider:
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# - a void proc --> nothing to do
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# - a proc returning GC'ed memory --> requires a flowVar
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# - a proc returning non GC'ed memory --> pass as hidden 'var' parameter
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# - not in a parallel environment --> requires a flowVar for memory safety
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type
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TSpawnResult* = enum
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srVoid, srFlowVar, srByVar
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TFlowVarKind = enum
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fvInvalid # invalid type T for 'FlowVar[T]'
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fvGC # FlowVar of a GC'ed type
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fvBlob # FlowVar of a blob type
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proc spawnResult*(t: PType; inParallel: bool): TSpawnResult =
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if t.isEmptyType: srVoid
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elif inParallel and not containsGarbageCollectedRef(t): srByVar
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else: srFlowVar
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proc flowVarKind(t: PType): TFlowVarKind =
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if t.skipTypes(abstractInst).kind in {tyRef, tyString, tySequence}: fvGC
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elif containsGarbageCollectedRef(t): fvInvalid
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else: fvBlob
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proc typeNeedsNoDeepCopy(t: PType): bool =
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var t = t.skipTypes(abstractInst)
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# for the tconvexhull example (and others) we're a bit lax here and pretend
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# seqs and strings are *by value* only and 'shallow' doesn't exist!
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if t.kind == tyString: return true
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# note that seq[T] is fine, but 'var seq[T]' is not, so we need to skip 'var'
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# for the stricter check and likewise we can skip 'seq' for a less
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# strict check:
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if t.kind in {tyVar, tySequence}: t = t.sons[0]
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result = not containsGarbageCollectedRef(t)
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proc addLocalVar(varSection, varInit: PNode; owner: PSym; typ: PType;
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v: PNode; useShallowCopy=false): PSym =
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result = newSym(skTemp, getIdent(genPrefix), owner, varSection.info)
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result.typ = typ
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incl(result.flags, sfFromGeneric)
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var vpart = newNodeI(nkIdentDefs, varSection.info, 3)
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vpart.sons[0] = newSymNode(result)
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vpart.sons[1] = ast.emptyNode
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vpart.sons[2] = if varInit.isNil: v else: ast.emptyNode
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varSection.add vpart
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if varInit != nil:
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if useShallowCopy and typeNeedsNoDeepCopy(typ):
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varInit.add newFastAsgnStmt(newSymNode(result), v)
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else:
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let deepCopyCall = newNodeI(nkCall, varInit.info, 3)
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deepCopyCall.sons[0] = newSymNode(createMagic("deepCopy", mDeepCopy))
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deepCopyCall.sons[1] = newSymNode(result)
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deepCopyCall.sons[2] = v
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varInit.add deepCopyCall
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discard """
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We generate roughly this:
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proc f_wrapper(thread, args) =
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barrierEnter(args.barrier) # for parallel statement
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var a = args.a # thread transfer; deepCopy or shallowCopy or no copy
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# depending on whether we're in a 'parallel' statement
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var b = args.b
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var fv = args.fv
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fv.owner = thread # optional
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nimArgsPassingDone() # signal parent that the work is done
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#
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args.fv.blob = f(a, b, ...)
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nimFlowVarSignal(args.fv)
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# - or -
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f(a, b, ...)
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barrierLeave(args.barrier) # for parallel statement
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stmtList:
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var scratchObj
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scratchObj.a = a
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scratchObj.b = b
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nimSpawn(f_wrapper, addr scratchObj)
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scratchObj.fv # optional
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"""
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proc createWrapperProc(f: PNode; threadParam, argsParam: PSym;
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varSection, varInit, call, barrier, fv: PNode;
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spawnKind: TSpawnResult): PSym =
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var body = newNodeI(nkStmtList, f.info)
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var threadLocalBarrier: PSym
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if barrier != nil:
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var varSection2 = newNodeI(nkVarSection, barrier.info)
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threadLocalBarrier = addLocalVar(varSection2, nil, argsParam.owner,
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barrier.typ, barrier)
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body.add varSection2
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body.add callCodegenProc("barrierEnter", threadLocalBarrier.newSymNode)
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var threadLocalProm: PSym
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if spawnKind == srByVar:
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threadLocalProm = addLocalVar(varSection, nil, argsParam.owner, fv.typ, fv)
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elif fv != nil:
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internalAssert fv.typ.kind == tyGenericInst
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threadLocalProm = addLocalVar(varSection, nil, argsParam.owner, fv.typ, fv)
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body.add varSection
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body.add varInit
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if fv != nil and spawnKind != srByVar:
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# generate:
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# fv.owner = threadParam
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body.add newAsgnStmt(indirectAccess(threadLocalProm.newSymNode,
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"owner", fv.info), threadParam.newSymNode)
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body.add callCodegenProc("nimArgsPassingDone", threadParam.newSymNode)
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if spawnKind == srByVar:
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body.add newAsgnStmt(genDeref(threadLocalProm.newSymNode), call)
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elif fv != nil:
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let fk = fv.typ.sons[1].flowVarKind
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if fk == fvInvalid:
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localError(f.info, "cannot create a flowVar of type: " &
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typeToString(fv.typ.sons[1]))
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body.add newAsgnStmt(indirectAccess(threadLocalProm.newSymNode,
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if fk == fvGC: "data" else: "blob", fv.info), call)
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if fk == fvGC:
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let incRefCall = newNodeI(nkCall, fv.info, 2)
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incRefCall.sons[0] = newSymNode(createMagic("GCref", mGCref))
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incRefCall.sons[1] = indirectAccess(threadLocalProm.newSymNode,
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"data", fv.info)
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body.add incRefCall
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if barrier == nil:
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# by now 'fv' is shared and thus might have beeen overwritten! we need
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# to use the thread-local view instead:
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body.add callCodegenProc("nimFlowVarSignal", threadLocalProm.newSymNode)
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else:
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body.add call
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if barrier != nil:
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body.add callCodegenProc("barrierLeave", threadLocalBarrier.newSymNode)
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var params = newNodeI(nkFormalParams, f.info)
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params.add emptyNode
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params.add threadParam.newSymNode
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params.add argsParam.newSymNode
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var t = newType(tyProc, threadParam.owner)
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t.rawAddSon nil
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t.rawAddSon threadParam.typ
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t.rawAddSon argsParam.typ
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t.n = newNodeI(nkFormalParams, f.info)
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t.n.add newNodeI(nkEffectList, f.info)
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t.n.add threadParam.newSymNode
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t.n.add argsParam.newSymNode
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let name = (if f.kind == nkSym: f.sym.name.s else: genPrefix) & "Wrapper"
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result = newSym(skProc, getIdent(name), argsParam.owner, f.info)
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result.ast = newProcNode(nkProcDef, f.info, body, params, newSymNode(result))
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result.typ = t
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proc createCastExpr(argsParam: PSym; objType: PType): PNode =
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result = newNodeI(nkCast, argsParam.info)
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result.add emptyNode
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result.add newSymNode(argsParam)
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result.typ = newType(tyPtr, objType.owner)
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result.typ.rawAddSon(objType)
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proc setupArgsForConcurrency(n: PNode; objType: PType; scratchObj: PSym,
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castExpr, call,
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varSection, varInit, result: PNode) =
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let formals = n[0].typ.n
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let tmpName = getIdent(genPrefix)
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for i in 1 .. <n.len:
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# we pick n's type here, which hopefully is 'tyArray' and not
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# 'tyOpenArray':
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var argType = n[i].typ.skipTypes(abstractInst)
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if i < formals.len and formals[i].typ.kind == tyVar:
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localError(n[i].info, "'spawn'ed function cannot have a 'var' parameter")
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#elif containsTyRef(argType):
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# localError(n[i].info, "'spawn'ed function cannot refer to 'ref'/closure")
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let fieldname = if i < formals.len: formals[i].sym.name else: tmpName
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var field = newSym(skField, fieldname, objType.owner, n.info)
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field.typ = argType
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objType.addField(field)
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result.add newFastAsgnStmt(newDotExpr(scratchObj, field), n[i])
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let temp = addLocalVar(varSection, varInit, objType.owner, argType,
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indirectAccess(castExpr, field, n.info))
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call.add(newSymNode(temp))
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proc getRoot*(n: PNode): PSym =
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## ``getRoot`` takes a *path* ``n``. A path is an lvalue expression
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## like ``obj.x[i].y``. The *root* of a path is the symbol that can be
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## determined as the owner; ``obj`` in the example.
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case n.kind
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of nkSym:
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if n.sym.kind in {skVar, skResult, skTemp, skLet, skForVar}:
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result = n.sym
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of nkDotExpr, nkBracketExpr, nkHiddenDeref, nkDerefExpr,
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nkObjUpConv, nkObjDownConv, nkCheckedFieldExpr:
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result = getRoot(n.sons[0])
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of nkHiddenStdConv, nkHiddenSubConv, nkConv:
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result = getRoot(n.sons[1])
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of nkCallKinds:
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if getMagic(n) == mSlice: result = getRoot(n.sons[1])
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else: discard
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proc newIntLit*(value: BiggestInt): PNode =
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result = nkIntLit.newIntNode(value)
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result.typ = getSysType(tyInt)
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proc genHigh*(n: PNode): PNode =
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if skipTypes(n.typ, abstractVar).kind in {tyArrayConstr, tyArray}:
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result = newIntLit(lastOrd(skipTypes(n.typ, abstractVar)))
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else:
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result = newNodeI(nkCall, n.info, 2)
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result.typ = getSysType(tyInt)
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result.sons[0] = newSymNode(createMagic("high", mHigh))
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result.sons[1] = n
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proc setupArgsForParallelism(n: PNode; objType: PType; scratchObj: PSym;
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castExpr, call,
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varSection, varInit, result: PNode) =
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let formals = n[0].typ.n
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let tmpName = getIdent(genPrefix)
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# we need to copy the foreign scratch object fields into local variables
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# for correctness: These are called 'threadLocal' here.
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for i in 1 .. <n.len:
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let n = n[i]
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let argType = skipTypes(if i < formals.len: formals[i].typ else: n.typ,
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abstractInst)
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#if containsTyRef(argType):
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# localError(n.info, "'spawn'ed function cannot refer to 'ref'/closure")
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|
|
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let fieldname = if i < formals.len: formals[i].sym.name else: tmpName
|
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var field = newSym(skField, fieldname, objType.owner, n.info)
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|
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if argType.kind in {tyVarargs, tyOpenArray}:
|
|
# important special case: we always create a zero-copy slice:
|
|
let slice = newNodeI(nkCall, n.info, 4)
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slice.typ = n.typ
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slice.sons[0] = newSymNode(createMagic("slice", mSlice))
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|
var fieldB = newSym(skField, tmpName, objType.owner, n.info)
|
|
fieldB.typ = getSysType(tyInt)
|
|
objType.addField(fieldB)
|
|
|
|
if getMagic(n) == mSlice:
|
|
let a = genAddrOf(n[1])
|
|
field.typ = a.typ
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), a)
|
|
|
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var fieldA = newSym(skField, tmpName, objType.owner, n.info)
|
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fieldA.typ = getSysType(tyInt)
|
|
objType.addField(fieldA)
|
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result.add newFastAsgnStmt(newDotExpr(scratchObj, fieldA), n[2])
|
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result.add newFastAsgnStmt(newDotExpr(scratchObj, fieldB), n[3])
|
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|
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let threadLocal = addLocalVar(varSection,nil, objType.owner, fieldA.typ,
|
|
indirectAccess(castExpr, fieldA, n.info),
|
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useShallowCopy=true)
|
|
slice.sons[2] = threadLocal.newSymNode
|
|
else:
|
|
let a = genAddrOf(n)
|
|
field.typ = a.typ
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), a)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, fieldB), genHigh(n))
|
|
|
|
slice.sons[2] = newIntLit(0)
|
|
# the array itself does not need to go through a thread local variable:
|
|
slice.sons[1] = genDeref(indirectAccess(castExpr, field, n.info))
|
|
|
|
let threadLocal = addLocalVar(varSection,nil, objType.owner, fieldB.typ,
|
|
indirectAccess(castExpr, fieldB, n.info),
|
|
useShallowCopy=true)
|
|
slice.sons[3] = threadLocal.newSymNode
|
|
call.add slice
|
|
elif (let size = computeSize(argType); size < 0 or size > 16) and
|
|
n.getRoot != nil:
|
|
# it is more efficient to pass a pointer instead:
|
|
let a = genAddrOf(n)
|
|
field.typ = a.typ
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), a)
|
|
let threadLocal = addLocalVar(varSection,nil, objType.owner, field.typ,
|
|
indirectAccess(castExpr, field, n.info),
|
|
useShallowCopy=true)
|
|
call.add(genDeref(threadLocal.newSymNode))
|
|
else:
|
|
# boring case
|
|
field.typ = argType
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), n)
|
|
let threadLocal = addLocalVar(varSection, varInit,
|
|
objType.owner, field.typ,
|
|
indirectAccess(castExpr, field, n.info),
|
|
useShallowCopy=true)
|
|
call.add(threadLocal.newSymNode)
|
|
|
|
proc wrapProcForSpawn*(owner: PSym; spawnExpr: PNode; retType: PType;
|
|
barrier, dest: PNode = nil): PNode =
|
|
# if 'barrier' != nil, then it is in a 'parallel' section and we
|
|
# generate quite different code
|
|
let n = spawnExpr[^2]
|
|
let spawnKind = spawnResult(retType, barrier!=nil)
|
|
case spawnKind
|
|
of srVoid:
|
|
internalAssert dest == nil
|
|
result = newNodeI(nkStmtList, n.info)
|
|
of srFlowVar:
|
|
internalAssert dest == nil
|
|
result = newNodeIT(nkStmtListExpr, n.info, retType)
|
|
of srByVar:
|
|
if dest == nil: localError(n.info, "'spawn' must not be discarded")
|
|
result = newNodeI(nkStmtList, n.info)
|
|
|
|
if n.kind notin nkCallKinds:
|
|
localError(n.info, "'spawn' takes a call expression")
|
|
return
|
|
if optThreadAnalysis in gGlobalOptions:
|
|
if {tfThread, tfNoSideEffect} * n[0].typ.flags == {}:
|
|
localError(n.info, "'spawn' takes a GC safe call expression")
|
|
var
|
|
threadParam = newSym(skParam, getIdent"thread", owner, n.info)
|
|
argsParam = newSym(skParam, getIdent"args", owner, n.info)
|
|
block:
|
|
let ptrType = getSysType(tyPointer)
|
|
threadParam.typ = ptrType
|
|
argsParam.typ = ptrType
|
|
argsParam.position = 1
|
|
|
|
var objType = createObj(owner, n.info)
|
|
incl(objType.flags, tfFinal)
|
|
let castExpr = createCastExpr(argsParam, objType)
|
|
|
|
var scratchObj = newSym(skVar, getIdent"scratch", owner, n.info)
|
|
block:
|
|
scratchObj.typ = objType
|
|
incl(scratchObj.flags, sfFromGeneric)
|
|
var varSectionB = newNodeI(nkVarSection, n.info)
|
|
varSectionB.addVar(scratchObj.newSymNode)
|
|
result.add varSectionB
|
|
|
|
var call = newNodeIT(nkCall, n.info, n.typ)
|
|
var fn = n.sons[0]
|
|
# templates and macros are in fact valid here due to the nature of
|
|
# the transformation:
|
|
if not (fn.kind == nkSym and fn.sym.kind in {skProc, skTemplate, skMacro,
|
|
skMethod, skConverter}):
|
|
# for indirect calls we pass the function pointer in the scratchObj
|
|
var argType = n[0].typ.skipTypes(abstractInst)
|
|
var field = newSym(skField, getIdent"fn", owner, n.info)
|
|
field.typ = argType
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), n[0])
|
|
fn = indirectAccess(castExpr, field, n.info)
|
|
elif fn.kind == nkSym and fn.sym.kind in {skClosureIterator, skIterator}:
|
|
localError(n.info, "iterator in spawn environment is not allowed")
|
|
elif fn.typ.callConv == ccClosure:
|
|
localError(n.info, "closure in spawn environment is not allowed")
|
|
|
|
call.add(fn)
|
|
var varSection = newNodeI(nkVarSection, n.info)
|
|
var varInit = newNodeI(nkStmtList, n.info)
|
|
if barrier.isNil:
|
|
setupArgsForConcurrency(n, objType, scratchObj, castExpr, call,
|
|
varSection, varInit, result)
|
|
else:
|
|
setupArgsForParallelism(n, objType, scratchObj, castExpr, call,
|
|
varSection, varInit, result)
|
|
|
|
var barrierAsExpr: PNode = nil
|
|
if barrier != nil:
|
|
let typ = newType(tyPtr, owner)
|
|
typ.rawAddSon(magicsys.getCompilerProc("Barrier").typ)
|
|
var field = newSym(skField, getIdent"barrier", owner, n.info)
|
|
field.typ = typ
|
|
objType.addField(field)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), barrier)
|
|
barrierAsExpr = indirectAccess(castExpr, field, n.info)
|
|
|
|
var fvField, fvAsExpr: PNode = nil
|
|
if spawnKind == srFlowVar:
|
|
var field = newSym(skField, getIdent"fv", owner, n.info)
|
|
field.typ = retType
|
|
objType.addField(field)
|
|
fvField = newDotExpr(scratchObj, field)
|
|
fvAsExpr = indirectAccess(castExpr, field, n.info)
|
|
# create flowVar:
|
|
result.add newFastAsgnStmt(fvField, callProc(spawnExpr[^1]))
|
|
if barrier == nil:
|
|
result.add callCodegenProc("nimFlowVarCreateSemaphore", fvField)
|
|
|
|
elif spawnKind == srByVar:
|
|
var field = newSym(skField, getIdent"fv", owner, n.info)
|
|
field.typ = newType(tyPtr, objType.owner)
|
|
field.typ.rawAddSon(retType)
|
|
objType.addField(field)
|
|
fvAsExpr = indirectAccess(castExpr, field, n.info)
|
|
result.add newFastAsgnStmt(newDotExpr(scratchObj, field), genAddrOf(dest))
|
|
|
|
let wrapper = createWrapperProc(fn, threadParam, argsParam,
|
|
varSection, varInit, call,
|
|
barrierAsExpr, fvAsExpr, spawnKind)
|
|
result.add callCodegenProc("nimSpawn" & $spawnExpr.len, wrapper.newSymNode,
|
|
genAddrOf(scratchObj.newSymNode), nil, spawnExpr)
|
|
|
|
if spawnKind == srFlowVar: result.add fvField
|