1102 lines
28 KiB
Go
1102 lines
28 KiB
Go
/*
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* Copyright (c) 2024 The GoPlus Authors (goplus.org). All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package cl
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import (
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"fmt"
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"go/ast"
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"go/constant"
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"go/token"
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"go/types"
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"log"
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"os"
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"sort"
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"strings"
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"github.com/goplus/llgo/cl/blocks"
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"github.com/goplus/llgo/internal/typepatch"
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llssa "github.com/goplus/llgo/ssa"
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"golang.org/x/tools/go/ssa"
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)
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// -----------------------------------------------------------------------------
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type dbgFlags = int
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const (
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DbgFlagInstruction dbgFlags = 1 << iota
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DbgFlagGoSSA
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DbgFlagAll = DbgFlagInstruction | DbgFlagGoSSA
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)
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var (
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debugInstr bool
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debugGoSSA bool
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)
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// SetDebug sets debug flags.
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func SetDebug(dbgFlags dbgFlags) {
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debugInstr = (dbgFlags & DbgFlagInstruction) != 0
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debugGoSSA = (dbgFlags & DbgFlagGoSSA) != 0
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}
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// -----------------------------------------------------------------------------
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const (
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fnNormal = iota
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fnHasVArg
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fnIgnore
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)
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func (p *context) funcKind(vfn ssa.Value) int {
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if fn, ok := vfn.(*ssa.Function); ok {
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params := fn.Signature.Params()
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n := params.Len()
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if n == 0 {
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if fn.Signature.Recv() == nil {
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if fn.Name() == "init" && p.pkgNoInit(fn.Pkg.Pkg) {
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return fnIgnore
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}
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}
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} else {
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last := params.At(n - 1)
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if last.Name() == llssa.NameValist {
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return fnHasVArg
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}
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}
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}
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return fnNormal
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}
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func (p *context) pkgNoInit(pkg *types.Package) bool {
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p.ensureLoaded(pkg)
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if i, ok := p.loaded[pkg]; ok {
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return i.kind >= PkgNoInit
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}
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return false
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}
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func ignoreName(name string) bool {
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/* TODO(xsw): confirm this is not needed more
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if name == "unsafe.init" {
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return true
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}
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*/
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return strings.HasPrefix(name, "internal/") || strings.HasPrefix(name, "crypto/") ||
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strings.HasPrefix(name, "arena.") || strings.HasPrefix(name, "maps.") ||
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strings.HasPrefix(name, "time.") || strings.HasPrefix(name, "syscall.") ||
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strings.HasPrefix(name, "os.") || strings.HasPrefix(name, "plugin.") ||
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strings.HasPrefix(name, "reflect.") || strings.HasPrefix(name, "errors.") ||
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strings.HasPrefix(name, "runtime/")
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}
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// -----------------------------------------------------------------------------
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type instrOrValue interface {
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ssa.Instruction
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ssa.Value
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}
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const (
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PkgNormal = iota
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PkgLLGo
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PkgPyModule // py.<module>
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PkgNoInit // noinit: a package that don't need to be initialized
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PkgDeclOnly // decl: a package that only have declarations
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PkgLinkIR // link llvm ir (.ll)
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PkgLinkExtern // link external object (.a/.so/.dll/.dylib/etc.)
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// PkgLinkBitCode // link bitcode (.bc)
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)
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type pkgInfo struct {
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kind int
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}
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type none struct{}
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type context struct {
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prog llssa.Program
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pkg llssa.Package
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fn llssa.Function
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fset *token.FileSet
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goProg *ssa.Program
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goTyps *types.Package
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goPkg *ssa.Package
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pyMod string
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link map[string]string // pkgPath.nameInPkg => linkname
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skips map[string]none
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loaded map[*types.Package]*pkgInfo // loaded packages
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bvals map[ssa.Value]llssa.Expr // block values
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vargs map[*ssa.Alloc][]llssa.Expr // varargs
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patches Patches
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blkInfos []blocks.Info
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inits []func()
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phis []func()
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skipall bool
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}
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func (p *context) inMain(instr ssa.Instruction) bool {
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return instr.Parent().Name() == "main"
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}
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func (p *context) compileType(pkg llssa.Package, t *ssa.Type) {
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tn := t.Object().(*types.TypeName)
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if tn.IsAlias() { // don't need to compile alias type
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return
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}
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tnName := tn.Name()
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typ := tn.Type()
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name := llssa.FullName(tn.Pkg(), tnName)
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if ignoreName(name) {
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return
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}
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if debugInstr {
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log.Println("==> NewType", name, typ)
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}
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p.compileMethods(pkg, typ)
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p.compileMethods(pkg, types.NewPointer(typ))
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}
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func (p *context) compileMethods(pkg llssa.Package, typ types.Type) {
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prog := p.goProg
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mthds := prog.MethodSets.MethodSet(typ)
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for i, n := 0, mthds.Len(); i < n; i++ {
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mthd := mthds.At(i)
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if ssaMthd := prog.MethodValue(mthd); ssaMthd != nil {
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p.compileFuncDecl(pkg, ssaMthd)
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}
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}
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}
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// Global variable.
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func (p *context) compileGlobal(pkg llssa.Package, gbl *ssa.Global) {
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typ := gbl.Type()
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name, vtype, define := p.varName(gbl.Pkg.Pkg, gbl)
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if vtype == pyVar || ignoreName(name) || checkCgo(gbl.Name()) {
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return
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}
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if debugInstr {
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log.Println("==> NewVar", name, typ)
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}
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g := pkg.NewVar(name, typ, llssa.Background(vtype))
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if define {
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g.InitNil()
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}
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}
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func makeClosureCtx(pkg *types.Package, vars []*ssa.FreeVar) *types.Var {
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n := len(vars)
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flds := make([]*types.Var, n)
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for i, v := range vars {
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flds[i] = types.NewField(token.NoPos, pkg, v.Name(), v.Type(), false)
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}
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t := types.NewPointer(types.NewStruct(flds, nil))
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return types.NewParam(token.NoPos, pkg, "__llgo_ctx", t)
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}
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var (
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argvTy = types.NewPointer(types.NewPointer(types.Typ[types.Int8]))
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)
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func (p *context) compileFuncDecl(pkg llssa.Package, f *ssa.Function) (llssa.Function, llssa.PyObjRef, int) {
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pkgTypes, name, ftype := p.funcName(f, true)
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if ftype != goFunc {
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/*
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if ftype == pyFunc {
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// TODO(xsw): pyMod == ""
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fnName := pysymPrefix + p.pyMod + "." + name
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return nil, pkg.NewPyFunc(fnName, f.Signature, call), pyFunc
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}
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*/
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return nil, nil, ignoredFunc
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}
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fn := pkg.FuncOf(name)
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if fn != nil && fn.HasBody() {
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return fn, nil, goFunc
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}
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var sig = f.Signature
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var hasCtx = len(f.FreeVars) > 0
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if hasCtx {
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if debugInstr {
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log.Println("==> NewClosure", name, "type:", sig)
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}
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ctx := makeClosureCtx(pkgTypes, f.FreeVars)
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sig = llssa.FuncAddCtx(ctx, sig)
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} else {
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if debugInstr {
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log.Println("==> NewFunc", name, "type:", sig.Recv(), sig, "ftype:", ftype)
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}
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}
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if fn == nil {
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if name == "main" {
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argc := types.NewParam(token.NoPos, pkgTypes, "", types.Typ[types.Int32])
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argv := types.NewParam(token.NoPos, pkgTypes, "", argvTy)
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params := types.NewTuple(argc, argv)
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ret := types.NewParam(token.NoPos, pkgTypes, "", p.prog.CInt().RawType())
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results := types.NewTuple(ret)
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sig = types.NewSignatureType(nil, nil, nil, params, results, false)
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}
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fn = pkg.NewFuncEx(name, sig, llssa.Background(ftype), hasCtx)
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}
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if nblk := len(f.Blocks); nblk > 0 {
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fn.MakeBlocks(nblk) // to set fn.HasBody() = true
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p.inits = append(p.inits, func() {
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p.fn = fn
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defer func() {
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p.fn = nil
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}()
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p.phis = nil
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if debugGoSSA {
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f.WriteTo(os.Stderr)
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}
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if debugInstr {
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log.Println("==> FuncBody", name)
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}
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b := fn.NewBuilder()
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p.bvals = make(map[ssa.Value]llssa.Expr)
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off := make([]int, len(f.Blocks))
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for i, block := range f.Blocks {
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off[i] = p.compilePhis(b, block)
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}
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p.blkInfos = blocks.Infos(f.Blocks)
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i := 0
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for {
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block := f.Blocks[i]
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doMainInit := (i == 0 && name == "main")
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doModInit := (i == 1 && f.Name() == "init" && sig.Recv() == nil)
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p.compileBlock(b, block, off[i], doMainInit, doModInit)
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if i = p.blkInfos[i].Next; i < 0 {
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break
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}
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}
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for _, phi := range p.phis {
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phi()
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}
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b.EndBuild()
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})
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}
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return fn, nil, goFunc
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}
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var llgoInstrs = map[string]int{
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"cstr": llgoCstr,
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"advance": llgoAdvance,
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"index": llgoIndex,
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"alloca": llgoAlloca,
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"allocaCStr": llgoAllocaCStr,
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"stringData": llgoStringData,
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"pyList": llgoPyList,
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"sigjmpbuf": llgoSigjmpbuf,
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"sigsetjmp": llgoSigsetjmp,
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"siglongjmp": llgoSiglongjmp,
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"deferData": llgoDeferData,
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"unreachable": llgoUnreachable,
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"atomicLoad": llgoAtomicLoad,
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"atomicStore": llgoAtomicStore,
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"atomicCmpXchg": llgoAtomicCmpXchg,
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"atomicXchg": int(llgoAtomicXchg),
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"atomicAdd": int(llgoAtomicAdd),
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"atomicSub": int(llgoAtomicSub),
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"atomicAnd": int(llgoAtomicAnd),
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"atomicNand": int(llgoAtomicNand),
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"atomicOr": int(llgoAtomicOr),
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"atomicXor": int(llgoAtomicXor),
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"atomicMax": int(llgoAtomicMax),
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"atomicMin": int(llgoAtomicMin),
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"atomicUMax": int(llgoAtomicUMax),
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"atomicUMin": int(llgoAtomicUMin),
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}
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// funcOf returns a function by name and set ftype = goFunc, cFunc, etc.
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// or returns nil and set ftype = llgoCstr, llgoAlloca, llgoUnreachable, etc.
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func (p *context) funcOf(fn *ssa.Function) (aFn llssa.Function, pyFn llssa.PyObjRef, ftype int) {
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pkgTypes, name, ftype := p.funcName(fn, false)
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switch ftype {
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case pyFunc:
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if kind, mod := pkgKindByScope(pkgTypes.Scope()); kind == PkgPyModule {
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pkg := p.pkg
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fnName := pysymPrefix + mod + "." + name
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if pyFn = pkg.PyObjOf(fnName); pyFn == nil {
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pyFn = pkg.PyNewFunc(fnName, fn.Signature, true)
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}
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return
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}
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ftype = ignoredFunc
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case llgoInstr:
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if ftype = llgoInstrs[name]; ftype == 0 {
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panic("unknown llgo instruction: " + name)
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}
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default:
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pkg := p.pkg
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if aFn = pkg.FuncOf(name); aFn == nil {
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if len(fn.FreeVars) > 0 {
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return nil, nil, ignoredFunc
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}
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sig := fn.Signature
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aFn = pkg.NewFuncEx(name, sig, llssa.Background(ftype), false)
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}
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}
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return
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}
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func (p *context) compileBlock(b llssa.Builder, block *ssa.BasicBlock, n int, doMainInit, doModInit bool) llssa.BasicBlock {
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var last int
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var pyModInit bool
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var prog = p.prog
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var pkg = p.pkg
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var instrs = block.Instrs[n:]
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var ret = p.fn.Block(block.Index)
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b.SetBlock(ret)
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if doModInit {
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if pyModInit = p.pyMod != ""; pyModInit {
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last = len(instrs) - 1
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instrs = instrs[:last]
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} else {
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// TODO(xsw): confirm pyMod don't need to call AfterInit
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p.inits = append(p.inits, func() {
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pkg.AfterInit(b, ret)
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})
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}
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} else if doMainInit {
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fn := p.fn
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argc := pkg.NewVar("__llgo_argc", types.NewPointer(types.Typ[types.Int32]), llssa.InC)
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argv := pkg.NewVar("__llgo_argv", types.NewPointer(argvTy), llssa.InC)
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argc.InitNil()
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argv.InitNil()
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b.Store(argc.Expr, fn.Param(0))
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b.Store(argv.Expr, fn.Param(1))
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callRuntimeInit(b, pkg)
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b.Call(pkg.FuncOf("main.init").Expr)
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}
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for _, instr := range instrs {
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p.compileInstr(b, instr)
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}
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if pyModInit {
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jump := block.Instrs[n+last].(*ssa.Jump)
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jumpTo := p.jumpTo(jump)
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modPath := p.pyMod
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modName := pysymPrefix + modPath
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modPtr := pkg.PyNewModVar(modName, true).Expr
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mod := b.Load(modPtr)
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cond := b.BinOp(token.NEQ, mod, prog.Nil(mod.Type))
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newBlk := p.fn.MakeBlock()
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b.If(cond, jumpTo, newBlk)
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b.SetBlockEx(newBlk, llssa.AtEnd, false)
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b.Store(modPtr, b.PyImportMod(modPath))
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b.Jump(jumpTo)
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}
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return ret
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}
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|
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const (
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RuntimeInit = llssa.PkgRuntime + ".init"
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)
|
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|
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func callRuntimeInit(b llssa.Builder, pkg llssa.Package) {
|
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fn := pkg.NewFunc(RuntimeInit, llssa.NoArgsNoRet, llssa.InC) // don't need to convert runtime.init
|
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b.Call(fn.Expr)
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}
|
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|
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func isAny(t types.Type) bool {
|
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if t, ok := t.(*types.Interface); ok {
|
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return t.Empty()
|
|
}
|
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return false
|
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}
|
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|
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func intVal(v ssa.Value) int64 {
|
|
if c, ok := v.(*ssa.Const); ok {
|
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if iv, exact := constant.Int64Val(c.Value); exact {
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return iv
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}
|
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}
|
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panic("intVal: ssa.Value is not a const int")
|
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}
|
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|
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func (p *context) isVArgs(v ssa.Value) (ret []llssa.Expr, ok bool) {
|
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switch v := v.(type) {
|
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case *ssa.Alloc:
|
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ret, ok = p.vargs[v] // varargs: this is a varargs index
|
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}
|
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return
|
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}
|
|
|
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func (p *context) checkVArgs(v *ssa.Alloc, t *types.Pointer) bool {
|
|
if v.Comment == "varargs" { // this maybe a varargs allocation
|
|
if arr, ok := t.Elem().(*types.Array); ok {
|
|
if isAny(arr.Elem()) && isAllocVargs(p, v) {
|
|
p.vargs[v] = make([]llssa.Expr, arr.Len())
|
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return true
|
|
}
|
|
}
|
|
}
|
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return false
|
|
}
|
|
|
|
func isAllocVargs(ctx *context, v *ssa.Alloc) bool {
|
|
refs := *v.Referrers()
|
|
n := len(refs)
|
|
lastref := refs[n-1]
|
|
if i, ok := lastref.(*ssa.Slice); ok {
|
|
if refs = *i.Referrers(); len(refs) == 1 {
|
|
var call *ssa.CallCommon
|
|
switch ref := refs[0].(type) {
|
|
case *ssa.Call:
|
|
call = &ref.Call
|
|
case *ssa.Defer:
|
|
call = &ref.Call
|
|
case *ssa.Go:
|
|
call = &ref.Call
|
|
default:
|
|
return false
|
|
}
|
|
return ctx.funcKind(call.Value) == fnHasVArg
|
|
}
|
|
}
|
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return false
|
|
}
|
|
|
|
// func cstr(string) *int8
|
|
func cstr(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 1 {
|
|
if c, ok := args[0].(*ssa.Const); ok {
|
|
if v := c.Value; v.Kind() == constant.String {
|
|
sv := constant.StringVal(v)
|
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return b.CStr(sv)
|
|
}
|
|
}
|
|
}
|
|
panic("cstr(<string-literal>): invalid arguments")
|
|
}
|
|
|
|
// func index(arr *T, idx int) T
|
|
func (p *context) index(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
return b.Load(p.advance(b, args))
|
|
}
|
|
|
|
// func advance(ptr *T, offset int) *T
|
|
func (p *context) advance(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 2 {
|
|
ptr := p.compileValue(b, args[0])
|
|
offset := p.compileValue(b, args[1])
|
|
return b.Advance(ptr, offset)
|
|
}
|
|
panic("advance(p ptr, offset int): invalid arguments")
|
|
}
|
|
|
|
// func alloca(size uintptr) unsafe.Pointer
|
|
func (p *context) alloca(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 1 {
|
|
n := p.compileValue(b, args[0])
|
|
return b.Alloca(n)
|
|
}
|
|
panic("alloca(size uintptr): invalid arguments")
|
|
}
|
|
|
|
// func allocaCStr(s string) *int8
|
|
func (p *context) allocaCStr(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 1 {
|
|
s := p.compileValue(b, args[0])
|
|
return b.AllocaCStr(s)
|
|
}
|
|
panic("allocaCStr(s string): invalid arguments")
|
|
}
|
|
|
|
// func stringData(s string) *int8
|
|
func (p *context) stringData(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 1 {
|
|
s := p.compileValue(b, args[0])
|
|
return b.StringData(s)
|
|
}
|
|
panic("stringData(s string): invalid arguments")
|
|
}
|
|
|
|
func (p *context) sigsetjmp(b llssa.Builder, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 2 {
|
|
jb := p.compileValue(b, args[0])
|
|
savemask := p.compileValue(b, args[1])
|
|
return b.Sigsetjmp(jb, savemask)
|
|
}
|
|
panic("sigsetjmp(jb c.SigjmpBuf, savemask c.Int): invalid arguments")
|
|
}
|
|
|
|
func (p *context) siglongjmp(b llssa.Builder, args []ssa.Value) {
|
|
if len(args) == 2 {
|
|
jb := p.compileValue(b, args[0])
|
|
retval := p.compileValue(b, args[1])
|
|
b.Siglongjmp(jb, retval)
|
|
return
|
|
}
|
|
panic("siglongjmp(jb c.SigjmpBuf, retval c.Int): invalid arguments")
|
|
}
|
|
|
|
func (p *context) atomic(b llssa.Builder, op llssa.AtomicOp, args []ssa.Value) (ret llssa.Expr) {
|
|
if len(args) == 2 {
|
|
addr := p.compileValue(b, args[0])
|
|
val := p.compileValue(b, args[1])
|
|
return b.Atomic(op, addr, val)
|
|
}
|
|
panic("atomicOp(addr *T, val T) T: invalid arguments")
|
|
}
|
|
|
|
func (p *context) atomicLoad(b llssa.Builder, args []ssa.Value) llssa.Expr {
|
|
if len(args) == 1 {
|
|
addr := p.compileValue(b, args[0])
|
|
return b.Load(addr).SetOrdering(llssa.OrderingSeqConsistent)
|
|
}
|
|
panic("atomicLoad(addr *T) T: invalid arguments")
|
|
}
|
|
|
|
func (p *context) atomicStore(b llssa.Builder, args []ssa.Value) {
|
|
if len(args) == 2 {
|
|
addr := p.compileValue(b, args[0])
|
|
val := p.compileValue(b, args[1])
|
|
b.Store(addr, val).SetOrdering(llssa.OrderingSeqConsistent)
|
|
return
|
|
}
|
|
panic("atomicStore(addr *T, val T) T: invalid arguments")
|
|
}
|
|
|
|
func (p *context) atomicCmpXchg(b llssa.Builder, args []ssa.Value) llssa.Expr {
|
|
if len(args) == 3 {
|
|
addr := p.compileValue(b, args[0])
|
|
old := p.compileValue(b, args[1])
|
|
new := p.compileValue(b, args[2])
|
|
return b.AtomicCmpXchg(addr, old, new)
|
|
}
|
|
panic("atomicCmpXchg(addr *T, old, new T) T: invalid arguments")
|
|
}
|
|
|
|
func isPhi(i ssa.Instruction) bool {
|
|
_, ok := i.(*ssa.Phi)
|
|
return ok
|
|
}
|
|
|
|
func (p *context) compilePhis(b llssa.Builder, block *ssa.BasicBlock) int {
|
|
fn := p.fn
|
|
ret := fn.Block(block.Index)
|
|
if block.Comment == "recover" { // set recover block
|
|
fn.SetRecover(ret)
|
|
}
|
|
b.SetBlockEx(ret, llssa.AtEnd, false)
|
|
if ninstr := len(block.Instrs); ninstr > 0 {
|
|
if isPhi(block.Instrs[0]) {
|
|
n := 1
|
|
for n < ninstr && isPhi(block.Instrs[n]) {
|
|
n++
|
|
}
|
|
rets := make([]llssa.Expr, n) // TODO(xsw): check to remove this
|
|
for i := 0; i < n; i++ {
|
|
iv := block.Instrs[i].(*ssa.Phi)
|
|
rets[i] = p.compilePhi(b, iv)
|
|
}
|
|
for i := 0; i < n; i++ {
|
|
iv := block.Instrs[i].(*ssa.Phi)
|
|
p.bvals[iv] = rets[i]
|
|
}
|
|
return n
|
|
}
|
|
}
|
|
return 0
|
|
}
|
|
|
|
func (p *context) compilePhi(b llssa.Builder, v *ssa.Phi) (ret llssa.Expr) {
|
|
phi := b.Phi(p.prog.Type(v.Type(), llssa.InGo))
|
|
ret = phi.Expr
|
|
p.phis = append(p.phis, func() {
|
|
preds := v.Block().Preds
|
|
bblks := make([]llssa.BasicBlock, len(preds))
|
|
for i, pred := range preds {
|
|
bblks[i] = p.fn.Block(pred.Index)
|
|
}
|
|
edges := v.Edges
|
|
phi.AddIncoming(b, bblks, func(i int, blk llssa.BasicBlock) llssa.Expr {
|
|
b.SetBlockEx(blk, llssa.BeforeLast, false)
|
|
return p.compileValue(b, edges[i])
|
|
})
|
|
})
|
|
return
|
|
}
|
|
|
|
func (p *context) call(b llssa.Builder, act llssa.DoAction, call *ssa.CallCommon) (ret llssa.Expr) {
|
|
cv := call.Value
|
|
if mthd := call.Method; mthd != nil {
|
|
o := p.compileValue(b, cv)
|
|
fn := b.Imethod(o, mthd)
|
|
args := p.compileValues(b, call.Args, fnNormal)
|
|
ret = b.Do(act, fn, args...)
|
|
return
|
|
}
|
|
kind := p.funcKind(cv)
|
|
if kind == fnIgnore {
|
|
return
|
|
}
|
|
args := call.Args
|
|
if debugGoSSA {
|
|
log.Println(">>> Do", act, cv, args)
|
|
}
|
|
switch cv := cv.(type) {
|
|
case *ssa.Builtin:
|
|
fn := cv.Name()
|
|
if fn == "ssa:wrapnilchk" { // TODO(xsw): check nil ptr
|
|
arg := args[0]
|
|
ret = p.compileValue(b, arg)
|
|
} else {
|
|
args := p.compileValues(b, args, kind)
|
|
ret = b.Do(act, llssa.Builtin(fn), args...)
|
|
}
|
|
case *ssa.Function:
|
|
aFn, pyFn, ftype := p.compileFunction(cv)
|
|
// TODO(xsw): check ca != llssa.Call
|
|
switch ftype {
|
|
case goFunc, cFunc:
|
|
args := p.compileValues(b, args, kind)
|
|
ret = b.Do(act, aFn.Expr, args...)
|
|
case pyFunc:
|
|
args := p.compileValues(b, args, kind)
|
|
ret = b.Do(act, pyFn.Expr, args...)
|
|
case llgoPyList:
|
|
args := p.compileValues(b, args, fnHasVArg)
|
|
ret = b.PyList(args...)
|
|
case llgoCstr:
|
|
ret = cstr(b, args)
|
|
case llgoAdvance:
|
|
ret = p.advance(b, args)
|
|
case llgoIndex:
|
|
ret = p.index(b, args)
|
|
case llgoAlloca:
|
|
ret = p.alloca(b, args)
|
|
case llgoAllocaCStr:
|
|
ret = p.allocaCStr(b, args)
|
|
case llgoStringData:
|
|
ret = p.stringData(b, args)
|
|
case llgoAtomicLoad:
|
|
ret = p.atomicLoad(b, args)
|
|
case llgoAtomicStore:
|
|
p.atomicStore(b, args)
|
|
case llgoAtomicCmpXchg:
|
|
ret = p.atomicCmpXchg(b, args)
|
|
case llgoSigsetjmp:
|
|
ret = p.sigsetjmp(b, args)
|
|
case llgoSiglongjmp:
|
|
p.siglongjmp(b, args)
|
|
case llgoSigjmpbuf: // func sigjmpbuf()
|
|
ret = b.AllocaSigjmpBuf()
|
|
case llgoDeferData: // func deferData() *Defer
|
|
ret = b.DeferData()
|
|
case llgoUnreachable: // func unreachable()
|
|
b.Unreachable()
|
|
default:
|
|
if ftype >= llgoAtomicOpBase && ftype <= llgoAtomicOpLast {
|
|
ret = p.atomic(b, llssa.AtomicOp(ftype-llgoAtomicOpBase), args)
|
|
} else {
|
|
log.Panicln("unknown ftype:", ftype)
|
|
}
|
|
}
|
|
default:
|
|
fn := p.compileValue(b, cv)
|
|
args := p.compileValues(b, args, kind)
|
|
ret = b.Do(act, fn, args...)
|
|
}
|
|
return
|
|
}
|
|
|
|
func (p *context) compileInstrOrValue(b llssa.Builder, iv instrOrValue, asValue bool) (ret llssa.Expr) {
|
|
if asValue {
|
|
if v, ok := p.bvals[iv]; ok {
|
|
return v
|
|
}
|
|
log.Panicln("unreachable:", iv)
|
|
}
|
|
switch v := iv.(type) {
|
|
case *ssa.Call:
|
|
ret = p.call(b, llssa.Call, &v.Call)
|
|
case *ssa.BinOp:
|
|
x := p.compileValue(b, v.X)
|
|
y := p.compileValue(b, v.Y)
|
|
ret = b.BinOp(v.Op, x, y)
|
|
case *ssa.UnOp:
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.UnOp(v.Op, x)
|
|
case *ssa.ChangeType:
|
|
t := v.Type()
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.ChangeType(p.prog.Type(t, llssa.InGo), x)
|
|
case *ssa.Convert:
|
|
t := v.Type()
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.Convert(p.prog.Type(t, llssa.InGo), x)
|
|
case *ssa.FieldAddr:
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.FieldAddr(x, v.Field)
|
|
case *ssa.Alloc:
|
|
t := v.Type().(*types.Pointer)
|
|
if p.checkVArgs(v, t) { // varargs: this maybe a varargs allocation
|
|
return
|
|
}
|
|
elem := p.prog.Type(t.Elem(), llssa.InGo)
|
|
ret = b.Alloc(elem, v.Heap)
|
|
case *ssa.IndexAddr:
|
|
vx := v.X
|
|
if _, ok := p.isVArgs(vx); ok { // varargs: this is a varargs index
|
|
return
|
|
}
|
|
x := p.compileValue(b, vx)
|
|
idx := p.compileValue(b, v.Index)
|
|
ret = b.IndexAddr(x, idx)
|
|
case *ssa.Index:
|
|
x := p.compileValue(b, v.X)
|
|
idx := p.compileValue(b, v.Index)
|
|
ret = b.Index(x, idx, func(e llssa.Expr) (ret llssa.Expr) {
|
|
if e == x {
|
|
if n, ok := v.X.(*ssa.UnOp); ok {
|
|
return p.compileValue(b, n.X)
|
|
}
|
|
}
|
|
panic(fmt.Errorf("todo: addr of %v", e))
|
|
})
|
|
case *ssa.Lookup:
|
|
x := p.compileValue(b, v.X)
|
|
idx := p.compileValue(b, v.Index)
|
|
ret = b.Lookup(x, idx, v.CommaOk)
|
|
case *ssa.Slice:
|
|
vx := v.X
|
|
if _, ok := p.isVArgs(vx); ok { // varargs: this is a varargs slice
|
|
return
|
|
}
|
|
var low, high, max llssa.Expr
|
|
x := p.compileValue(b, vx)
|
|
if v.Low != nil {
|
|
low = p.compileValue(b, v.Low)
|
|
}
|
|
if v.High != nil {
|
|
high = p.compileValue(b, v.High)
|
|
}
|
|
if v.Max != nil {
|
|
max = p.compileValue(b, v.Max)
|
|
}
|
|
ret = b.Slice(x, low, high, max)
|
|
case *ssa.MakeInterface:
|
|
if refs := *v.Referrers(); len(refs) == 1 {
|
|
if ref, ok := refs[0].(*ssa.Store); ok {
|
|
if va, ok := ref.Addr.(*ssa.IndexAddr); ok {
|
|
if _, ok = p.isVArgs(va.X); ok { // varargs: this is a varargs store
|
|
return
|
|
}
|
|
}
|
|
}
|
|
}
|
|
t := p.prog.Type(v.Type(), llssa.InGo)
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.MakeInterface(t, x)
|
|
case *ssa.MakeSlice:
|
|
var nCap llssa.Expr
|
|
t := p.prog.Type(v.Type(), llssa.InGo)
|
|
nLen := p.compileValue(b, v.Len)
|
|
if v.Cap != nil {
|
|
nCap = p.compileValue(b, v.Cap)
|
|
}
|
|
ret = b.MakeSlice(t, nLen, nCap)
|
|
case *ssa.MakeMap:
|
|
var nReserve llssa.Expr
|
|
t := p.prog.Type(v.Type(), llssa.InGo)
|
|
if v.Reserve != nil {
|
|
nReserve = p.compileValue(b, v.Reserve)
|
|
}
|
|
ret = b.MakeMap(t, nReserve)
|
|
case *ssa.MakeClosure:
|
|
fn := p.compileValue(b, v.Fn)
|
|
bindings := p.compileValues(b, v.Bindings, 0)
|
|
ret = b.MakeClosure(fn, bindings)
|
|
case *ssa.TypeAssert:
|
|
x := p.compileValue(b, v.X)
|
|
t := p.prog.Type(v.AssertedType, llssa.InGo)
|
|
ret = b.TypeAssert(x, t, v.CommaOk)
|
|
case *ssa.Extract:
|
|
x := p.compileValue(b, v.Tuple)
|
|
ret = b.Extract(x, v.Index)
|
|
case *ssa.Range:
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.Range(x)
|
|
case *ssa.Next:
|
|
iter := p.compileValue(b, v.Iter)
|
|
ret = b.Next(iter, v.IsString)
|
|
case *ssa.ChangeInterface:
|
|
t := v.Type()
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.ChangeInterface(p.prog.Type(t, llssa.InGo), x)
|
|
case *ssa.Field:
|
|
x := p.compileValue(b, v.X)
|
|
ret = b.Field(x, v.Field)
|
|
default:
|
|
panic(fmt.Sprintf("compileInstrAndValue: unknown instr - %T\n", iv))
|
|
}
|
|
p.bvals[iv] = ret
|
|
return ret
|
|
}
|
|
|
|
func (p *context) jumpTo(v *ssa.Jump) llssa.BasicBlock {
|
|
fn := p.fn
|
|
succs := v.Block().Succs
|
|
return fn.Block(succs[0].Index)
|
|
}
|
|
|
|
func (p *context) compileInstr(b llssa.Builder, instr ssa.Instruction) {
|
|
if iv, ok := instr.(instrOrValue); ok {
|
|
p.compileInstrOrValue(b, iv, false)
|
|
return
|
|
}
|
|
switch v := instr.(type) {
|
|
case *ssa.Store:
|
|
va := v.Addr
|
|
if va, ok := va.(*ssa.IndexAddr); ok {
|
|
if args, ok := p.isVArgs(va.X); ok { // varargs: this is a varargs store
|
|
idx := intVal(va.Index)
|
|
val := v.Val
|
|
if vi, ok := val.(*ssa.MakeInterface); ok {
|
|
val = vi.X
|
|
}
|
|
args[idx] = p.compileValue(b, val)
|
|
return
|
|
}
|
|
}
|
|
ptr := p.compileValue(b, va)
|
|
val := p.compileValue(b, v.Val)
|
|
b.Store(ptr, val)
|
|
case *ssa.Jump:
|
|
jmpb := p.jumpTo(v)
|
|
b.Jump(jmpb)
|
|
case *ssa.Return:
|
|
var results []llssa.Expr
|
|
if n := len(v.Results); n > 0 {
|
|
results = make([]llssa.Expr, n)
|
|
for i, r := range v.Results {
|
|
results[i] = p.compileValue(b, r)
|
|
}
|
|
}
|
|
if p.inMain(instr) {
|
|
results = make([]llssa.Expr, 1)
|
|
results[0] = p.prog.IntVal(0, p.prog.CInt())
|
|
}
|
|
b.Return(results...)
|
|
case *ssa.If:
|
|
fn := p.fn
|
|
cond := p.compileValue(b, v.Cond)
|
|
succs := v.Block().Succs
|
|
thenb := fn.Block(succs[0].Index)
|
|
elseb := fn.Block(succs[1].Index)
|
|
b.If(cond, thenb, elseb)
|
|
case *ssa.MapUpdate:
|
|
m := p.compileValue(b, v.Map)
|
|
key := p.compileValue(b, v.Key)
|
|
val := p.compileValue(b, v.Value)
|
|
b.MapUpdate(m, key, val)
|
|
case *ssa.Defer:
|
|
p.call(b, p.blkInfos[v.Block().Index].Kind, &v.Call)
|
|
case *ssa.Go:
|
|
p.call(b, llssa.Go, &v.Call)
|
|
case *ssa.RunDefers:
|
|
b.RunDefers()
|
|
case *ssa.Panic:
|
|
arg := p.compileValue(b, v.X)
|
|
b.Panic(arg)
|
|
default:
|
|
panic(fmt.Sprintf("compileInstr: unknown instr - %T\n", instr))
|
|
}
|
|
}
|
|
|
|
func (p *context) compileFunction(v *ssa.Function) (goFn llssa.Function, pyFn llssa.PyObjRef, kind int) {
|
|
// TODO(xsw) v.Pkg == nil: means auto generated function?
|
|
if v.Pkg == p.goPkg || v.Pkg == nil {
|
|
// function in this package
|
|
goFn, pyFn, kind = p.compileFuncDecl(p.pkg, v)
|
|
if kind != ignoredFunc {
|
|
return
|
|
}
|
|
}
|
|
return p.funcOf(v)
|
|
}
|
|
|
|
func (p *context) compileValue(b llssa.Builder, v ssa.Value) llssa.Expr {
|
|
if iv, ok := v.(instrOrValue); ok {
|
|
return p.compileInstrOrValue(b, iv, true)
|
|
}
|
|
switch v := v.(type) {
|
|
case *ssa.Parameter:
|
|
fn := v.Parent()
|
|
for idx, param := range fn.Params {
|
|
if param == v {
|
|
return p.fn.Param(idx)
|
|
}
|
|
}
|
|
case *ssa.Function:
|
|
aFn, pyFn, _ := p.compileFunction(v)
|
|
if aFn != nil {
|
|
return aFn.Expr
|
|
}
|
|
return pyFn.Expr
|
|
case *ssa.Global:
|
|
return p.varOf(b, v)
|
|
case *ssa.Const:
|
|
t := types.Default(v.Type())
|
|
return b.Const(v.Value, p.prog.Type(t, llssa.InGo))
|
|
case *ssa.FreeVar:
|
|
fn := v.Parent()
|
|
for idx, freeVar := range fn.FreeVars {
|
|
if freeVar == v {
|
|
return p.fn.FreeVar(b, idx)
|
|
}
|
|
}
|
|
}
|
|
panic(fmt.Sprintf("compileValue: unknown value - %T\n", v))
|
|
}
|
|
|
|
func (p *context) compileVArg(ret []llssa.Expr, b llssa.Builder, v ssa.Value) []llssa.Expr {
|
|
_ = b
|
|
switch v := v.(type) {
|
|
case *ssa.Slice: // varargs: this is a varargs slice
|
|
if args, ok := p.isVArgs(v.X); ok {
|
|
return append(ret, args...)
|
|
}
|
|
case *ssa.Const:
|
|
if v.Value == nil {
|
|
return ret
|
|
}
|
|
}
|
|
panic(fmt.Sprintf("compileVArg: unknown value - %T\n", v))
|
|
}
|
|
|
|
func (p *context) compileValues(b llssa.Builder, vals []ssa.Value, hasVArg int) []llssa.Expr {
|
|
n := len(vals) - hasVArg
|
|
ret := make([]llssa.Expr, n)
|
|
for i := 0; i < n; i++ {
|
|
ret[i] = p.compileValue(b, vals[i])
|
|
}
|
|
if hasVArg > 0 {
|
|
ret = p.compileVArg(ret, b, vals[n])
|
|
}
|
|
return ret
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
|
|
// Patches is patches of some packages.
|
|
type Patches = map[string]*ssa.Package
|
|
|
|
// NewPackage compiles a Go package to LLVM IR package.
|
|
func NewPackage(prog llssa.Program, pkg *ssa.Package, files []*ast.File) (ret llssa.Package, err error) {
|
|
return NewPackageEx(prog, nil, pkg, files)
|
|
}
|
|
|
|
// NewPackageEx compiles a Go package to LLVM IR package.
|
|
func NewPackageEx(prog llssa.Program, patches Patches, pkg *ssa.Package, files []*ast.File) (ret llssa.Package, err error) {
|
|
pkgProg := pkg.Prog
|
|
pkgTypes := pkg.Pkg
|
|
pkgName, pkgPath := pkgTypes.Name(), llssa.PathOf(pkgTypes)
|
|
alt, hasPatch := patches[pkgPath]
|
|
if hasPatch {
|
|
pkgTypes = typepatch.Pkg(pkgTypes, alt.Pkg)
|
|
pkg.Pkg = pkgTypes
|
|
alt.Pkg = pkgTypes
|
|
}
|
|
if pkgPath == llssa.PkgRuntime {
|
|
prog.SetRuntime(pkgTypes)
|
|
}
|
|
ret = prog.NewPackage(pkgName, pkgPath)
|
|
|
|
ctx := &context{
|
|
prog: prog,
|
|
pkg: ret,
|
|
fset: pkgProg.Fset,
|
|
goProg: pkgProg,
|
|
goTyps: pkgTypes,
|
|
goPkg: pkg,
|
|
patches: patches,
|
|
link: make(map[string]string),
|
|
skips: make(map[string]none),
|
|
vargs: make(map[*ssa.Alloc][]llssa.Expr),
|
|
loaded: map[*types.Package]*pkgInfo{
|
|
types.Unsafe: {kind: PkgDeclOnly}, // TODO(xsw): PkgNoInit or PkgDeclOnly?
|
|
},
|
|
}
|
|
ctx.initPyModule()
|
|
ctx.initFiles(pkgPath, files)
|
|
|
|
if hasPatch {
|
|
skips := ctx.skips
|
|
ctx.skips = nil
|
|
processPkg(ctx, ret, alt)
|
|
ctx.skips = skips
|
|
}
|
|
if !ctx.skipall {
|
|
processPkg(ctx, ret, pkg)
|
|
}
|
|
for len(ctx.inits) > 0 {
|
|
inits := ctx.inits
|
|
ctx.inits = nil
|
|
for _, ini := range inits {
|
|
ini()
|
|
}
|
|
}
|
|
return
|
|
}
|
|
|
|
func processPkg(ctx *context, ret llssa.Package, pkg *ssa.Package) {
|
|
type namedMember struct {
|
|
name string
|
|
val ssa.Member
|
|
}
|
|
|
|
members := make([]*namedMember, 0, len(pkg.Members))
|
|
skips := ctx.skips
|
|
for name, v := range pkg.Members {
|
|
if _, ok := skips[name]; !ok {
|
|
members = append(members, &namedMember{name, v})
|
|
}
|
|
}
|
|
sort.Slice(members, func(i, j int) bool {
|
|
return members[i].name < members[j].name
|
|
})
|
|
|
|
for _, m := range members {
|
|
member := m.val
|
|
switch member := member.(type) {
|
|
case *ssa.Function:
|
|
if member.TypeParams() != nil || member.TypeArgs() != nil {
|
|
// TODO(xsw): don't compile generic functions
|
|
// Do not try to build generic (non-instantiated) functions.
|
|
continue
|
|
}
|
|
ctx.compileFuncDecl(ret, member)
|
|
case *ssa.Type:
|
|
ctx.compileType(ret, member)
|
|
case *ssa.Global:
|
|
ctx.compileGlobal(ret, member)
|
|
}
|
|
}
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|