| |
| |
| |
|
|
| package escape |
|
|
| import ( |
| "cmd/compile/internal/base" |
| "cmd/compile/internal/ir" |
| "cmd/compile/internal/typecheck" |
| "cmd/compile/internal/types" |
| "cmd/internal/src" |
| "strings" |
| ) |
|
|
| |
| |
| |
| func (e *escape) call(ks []hole, call ir.Node) { |
| argument := func(k hole, arg ir.Node) { |
| |
| e.expr(k.note(call, "call parameter"), arg) |
| } |
|
|
| switch call.Op() { |
| default: |
| ir.Dump("esc", call) |
| base.Fatalf("unexpected call op: %v", call.Op()) |
|
|
| case ir.OCALLFUNC, ir.OCALLINTER: |
| call := call.(*ir.CallExpr) |
| typecheck.AssertFixedCall(call) |
|
|
| |
| |
| |
| |
| |
| |
| var fn *ir.Name |
| switch call.Op() { |
| case ir.OCALLFUNC: |
| |
| v := ir.StaticValue(call.Fun) |
| fn = ir.StaticCalleeName(v) |
| } |
|
|
| |
| |
| argumentParam := func(param *types.Field, arg ir.Node) { |
| e.rewriteArgument(arg, call, fn) |
| argument(e.tagHole(ks, fn, param), arg) |
| } |
|
|
| if call.IsCompilerVarLive { |
| |
| argumentParam = func(param *types.Field, arg ir.Node) { |
| argument(e.discardHole(), arg) |
| } |
| } |
|
|
| fntype := call.Fun.Type() |
| if fn != nil { |
| fntype = fn.Type() |
| } |
|
|
| if ks != nil && fn != nil && e.inMutualBatch(fn) { |
| for i, result := range fn.Type().Results() { |
| e.expr(ks[i], result.Nname.(*ir.Name)) |
| } |
| } |
|
|
| var recvArg ir.Node |
| if call.Op() == ir.OCALLFUNC { |
| |
| calleeK := e.discardHole() |
| if fn == nil { |
| for _, k := range ks { |
| if k.dst != &e.blankLoc { |
| |
| |
| |
| |
| calleeK = e.calleeHole().note(call, "callee operand") |
| break |
| } |
| } |
| } |
| e.expr(calleeK, call.Fun) |
| } else { |
| recvArg = call.Fun.(*ir.SelectorExpr).X |
| } |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| if fn != nil && fn.Sym().Pkg.Path == "internal/abi" && strings.HasPrefix(fn.Sym().Name, "EscapeNonString[") { |
| ps := fntype.Params() |
| if len(ps) == 2 && ps[1].Type.IsShape() { |
| if !hasNonStringPointers(ps[1].Type) { |
| argumentParam = func(param *types.Field, arg ir.Node) { |
| argument(e.discardHole(), arg) |
| } |
| } else { |
| argumentParam = func(param *types.Field, arg ir.Node) { |
| argument(e.heapHole(), arg) |
| } |
| } |
| } |
| } |
|
|
| args := call.Args |
| if recvParam := fntype.Recv(); recvParam != nil { |
| if recvArg == nil { |
| |
| |
| recvArg, args = args[0], args[1:] |
| } |
|
|
| argumentParam(recvParam, recvArg) |
| } |
|
|
| for i, param := range fntype.Params() { |
| argumentParam(param, args[i]) |
| } |
|
|
| case ir.OINLCALL: |
| call := call.(*ir.InlinedCallExpr) |
| e.stmts(call.Body) |
| for i, result := range call.ReturnVars { |
| k := e.discardHole() |
| if ks != nil { |
| k = ks[i] |
| } |
| e.expr(k, result) |
| } |
|
|
| case ir.OAPPEND: |
| call := call.(*ir.CallExpr) |
| args := call.Args |
|
|
| |
| |
| |
| |
| appendeeK := e.teeHole(ks[0], e.mutatorHole()) |
| if args[0].Type().Elem().HasPointers() { |
| appendeeK = e.teeHole(appendeeK, e.heapHole().deref(call, "appendee slice")) |
| } |
| argument(appendeeK, args[0]) |
|
|
| if call.IsDDD { |
| appendedK := e.discardHole() |
| if args[1].Type().IsSlice() && args[1].Type().Elem().HasPointers() { |
| appendedK = e.heapHole().deref(call, "appended slice...") |
| } |
| argument(appendedK, args[1]) |
| } else { |
| for i := 1; i < len(args); i++ { |
| argument(e.heapHole(), args[i]) |
| } |
| } |
| e.discard(call.RType) |
|
|
| |
| |
| |
| |
| backingStore := e.spill(ks[0], call) |
| |
| backingStore.dst.loopDepth = 0 |
|
|
| case ir.OCOPY: |
| call := call.(*ir.BinaryExpr) |
| argument(e.mutatorHole(), call.X) |
|
|
| copiedK := e.discardHole() |
| if call.Y.Type().IsSlice() && call.Y.Type().Elem().HasPointers() { |
| copiedK = e.heapHole().deref(call, "copied slice") |
| } |
| argument(copiedK, call.Y) |
| e.discard(call.RType) |
|
|
| case ir.OPANIC: |
| call := call.(*ir.UnaryExpr) |
| argument(e.heapHole(), call.X) |
|
|
| case ir.OCOMPLEX: |
| call := call.(*ir.BinaryExpr) |
| e.discard(call.X) |
| e.discard(call.Y) |
|
|
| case ir.ODELETE, ir.OPRINT, ir.OPRINTLN, ir.ORECOVER: |
| call := call.(*ir.CallExpr) |
| for _, arg := range call.Args { |
| e.discard(arg) |
| } |
| e.discard(call.RType) |
|
|
| case ir.OMIN, ir.OMAX: |
| call := call.(*ir.CallExpr) |
| for _, arg := range call.Args { |
| argument(ks[0], arg) |
| } |
| e.discard(call.RType) |
|
|
| case ir.OLEN, ir.OCAP, ir.OREAL, ir.OIMAG, ir.OCLOSE: |
| call := call.(*ir.UnaryExpr) |
| e.discard(call.X) |
|
|
| case ir.OCLEAR: |
| call := call.(*ir.UnaryExpr) |
| argument(e.mutatorHole(), call.X) |
|
|
| case ir.OUNSAFESTRINGDATA, ir.OUNSAFESLICEDATA: |
| call := call.(*ir.UnaryExpr) |
| argument(ks[0], call.X) |
|
|
| case ir.OUNSAFEADD, ir.OUNSAFESLICE, ir.OUNSAFESTRING: |
| call := call.(*ir.BinaryExpr) |
| argument(ks[0], call.X) |
| e.discard(call.Y) |
| e.discard(call.RType) |
| } |
| } |
|
|
| |
| func (e *escape) goDeferStmt(n *ir.GoDeferStmt) { |
| k := e.heapHole() |
| if n.Op() == ir.ODEFER && e.loopDepth == 1 && n.DeferAt == nil { |
| |
| |
| k = e.later(e.discardHole()) |
|
|
| |
| |
| n.SetEsc(ir.EscNever) |
| } |
|
|
| |
| |
| |
| |
| |
| |
|
|
| call, ok := n.Call.(*ir.CallExpr) |
| if !ok || call.Op() != ir.OCALLFUNC { |
| base.FatalfAt(n.Pos(), "expected function call: %v", n.Call) |
| } |
| if sig := call.Fun.Type(); sig.NumParams()+sig.NumResults() != 0 { |
| base.FatalfAt(n.Pos(), "expected signature without parameters or results: %v", sig) |
| } |
|
|
| if clo, ok := call.Fun.(*ir.ClosureExpr); ok && n.Op() == ir.OGO { |
| clo.IsGoWrap = true |
| } |
|
|
| e.expr(k, call.Fun) |
| } |
|
|
| |
| |
| func (e *escape) rewriteArgument(arg ir.Node, call *ir.CallExpr, fn *ir.Name) { |
| if fn == nil || fn.Func == nil { |
| return |
| } |
| pragma := fn.Func.Pragma |
| if pragma&(ir.UintptrKeepAlive|ir.UintptrEscapes) == 0 { |
| return |
| } |
|
|
| |
| |
| |
| unsafeUintptr := func(arg ir.Node) { |
| |
| |
| |
| |
| conv, ok := arg.(*ir.ConvExpr) |
| if !ok || conv.Op() != ir.OCONVNOP { |
| return |
| } |
| if !conv.X.Type().IsUnsafePtr() || !conv.Type().IsUintptr() { |
| return |
| } |
|
|
| |
| |
| |
| |
| |
| tmp := e.copyExpr(conv.Pos(), conv.X, call.PtrInit()) |
| conv.X = tmp |
|
|
| k := e.mutatorHole() |
| if pragma&ir.UintptrEscapes != 0 { |
| k = e.heapHole().note(conv, "//go:uintptrescapes") |
| } |
| e.flow(k, e.oldLoc(tmp)) |
|
|
| if pragma&ir.UintptrKeepAlive != 0 { |
| tmp.SetAddrtaken(true) |
| call.KeepAlive = append(call.KeepAlive, tmp) |
| } |
| } |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| |
| if arg.Op() == ir.OSLICELIT { |
| list := arg.(*ir.CompLitExpr).List |
| for _, el := range list { |
| if el.Op() == ir.OKEY { |
| el = el.(*ir.KeyExpr).Value |
| } |
| unsafeUintptr(el) |
| } |
| } else { |
| unsafeUintptr(arg) |
| } |
| } |
|
|
| |
| |
| |
| func (e *escape) copyExpr(pos src.XPos, expr ir.Node, init *ir.Nodes) *ir.Name { |
| if ir.HasUniquePos(expr) { |
| pos = expr.Pos() |
| } |
|
|
| tmp := typecheck.TempAt(pos, e.curfn, expr.Type()) |
|
|
| stmts := []ir.Node{ |
| ir.NewDecl(pos, ir.ODCL, tmp), |
| ir.NewAssignStmt(pos, tmp, expr), |
| } |
| typecheck.Stmts(stmts) |
| init.Append(stmts...) |
|
|
| e.newLoc(tmp, true) |
| e.stmts(stmts) |
|
|
| return tmp |
| } |
|
|
| |
| |
| |
| |
| func (e *escape) tagHole(ks []hole, fn *ir.Name, param *types.Field) hole { |
| |
| if fn == nil { |
| return e.heapHole() |
| } |
|
|
| if e.inMutualBatch(fn) { |
| if param.Nname == nil { |
| return e.discardHole() |
| } |
| return e.addr(param.Nname.(*ir.Name)) |
| } |
|
|
| |
|
|
| var tagKs []hole |
| esc := parseLeaks(param.Note) |
|
|
| if x := esc.Heap(); x >= 0 { |
| tagKs = append(tagKs, e.heapHole().shift(x)) |
| } |
| if x := esc.Mutator(); x >= 0 { |
| tagKs = append(tagKs, e.mutatorHole().shift(x)) |
| } |
| if x := esc.Callee(); x >= 0 { |
| tagKs = append(tagKs, e.calleeHole().shift(x)) |
| } |
|
|
| if ks != nil { |
| for i := 0; i < numEscResults; i++ { |
| if x := esc.Result(i); x >= 0 { |
| tagKs = append(tagKs, ks[i].shift(x)) |
| } |
| } |
| } |
|
|
| return e.teeHole(tagKs...) |
| } |
|
|
| func hasNonStringPointers(t *types.Type) bool { |
| if !t.HasPointers() { |
| return false |
| } |
| switch t.Kind() { |
| case types.TSTRING: |
| return false |
| case types.TSTRUCT: |
| for _, f := range t.Fields() { |
| if hasNonStringPointers(f.Type) { |
| return true |
| } |
| } |
| return false |
| case types.TARRAY: |
| return hasNonStringPointers(t.Elem()) |
| } |
| return true |
| } |
|
|