2015-06-04 13:54:58 -06:00
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// Copyright 2013 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// This file contains the code to check that locks are not passed by value.
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package main
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import (
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"bytes"
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"fmt"
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"go/ast"
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"go/token"
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2015-06-04 14:07:22 -06:00
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"go/types"
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2015-06-04 13:54:58 -06:00
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)
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func init() {
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register("copylocks",
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"check that locks are not passed by value",
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checkCopyLocks,
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funcDecl, rangeStmt, funcLit, callExpr, assignStmt, genDecl, compositeLit, returnStmt)
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}
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// checkCopyLocks checks whether node might
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// inadvertently copy a lock.
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func checkCopyLocks(f *File, node ast.Node) {
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switch node := node.(type) {
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case *ast.RangeStmt:
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checkCopyLocksRange(f, node)
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case *ast.FuncDecl:
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checkCopyLocksFunc(f, node.Name.Name, node.Recv, node.Type)
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case *ast.FuncLit:
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checkCopyLocksFunc(f, "func", nil, node.Type)
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case *ast.CallExpr:
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checkCopyLocksCallExpr(f, node)
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case *ast.AssignStmt:
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checkCopyLocksAssign(f, node)
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case *ast.GenDecl:
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checkCopyLocksGenDecl(f, node)
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case *ast.CompositeLit:
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checkCopyLocksCompositeLit(f, node)
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case *ast.ReturnStmt:
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checkCopyLocksReturnStmt(f, node)
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}
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}
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// checkCopyLocksAssign checks whether an assignment
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// copies a lock.
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func checkCopyLocksAssign(f *File, as *ast.AssignStmt) {
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for i, x := range as.Rhs {
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if path := lockPathRhs(f, x); path != nil {
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f.Badf(x.Pos(), "assignment copies lock value to %v: %v", f.gofmt(as.Lhs[i]), path)
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}
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}
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}
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// checkCopyLocksGenDecl checks whether lock is copied
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// in variable declaration.
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func checkCopyLocksGenDecl(f *File, gd *ast.GenDecl) {
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if gd.Tok != token.VAR {
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return
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}
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for _, spec := range gd.Specs {
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valueSpec, ok := spec.(*ast.ValueSpec)
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if !ok {
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continue
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}
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for i, x := range valueSpec.Values {
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if path := lockPathRhs(f, x); path != nil {
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f.Badf(x.Pos(), "variable declaration copies lock value to %v: %v", valueSpec.Names[i].Name, path)
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}
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}
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}
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}
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// checkCopyLocksCompositeLit detects lock copy inside a composite literal
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func checkCopyLocksCompositeLit(f *File, cl *ast.CompositeLit) {
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for _, x := range cl.Elts {
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if node, ok := x.(*ast.KeyValueExpr); ok {
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x = node.Value
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}
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if path := lockPathRhs(f, x); path != nil {
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f.Badf(x.Pos(), "literal copies lock value from %v: %v", f.gofmt(x), path)
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}
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}
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}
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2016-03-18 03:25:04 -06:00
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// checkCopyLocksReturnStmt detects lock copy in return statement
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func checkCopyLocksReturnStmt(f *File, rs *ast.ReturnStmt) {
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for _, x := range rs.Results {
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if path := lockPathRhs(f, x); path != nil {
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f.Badf(x.Pos(), "return copies lock value: %v", path)
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}
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}
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}
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2016-03-28 12:08:15 -06:00
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// checkCopyLocksCallExpr detects lock copy in the arguments to a function call
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func checkCopyLocksCallExpr(f *File, ce *ast.CallExpr) {
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if id, ok := ce.Fun.(*ast.Ident); ok && id.Name == "new" && f.pkg.types[id].IsBuiltin() {
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// Skip 'new(Type)' for built-in 'new'
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return
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}
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for _, x := range ce.Args {
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if path := lockPathRhs(f, x); path != nil {
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f.Badf(x.Pos(), "function call copies lock value: %v", path)
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}
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}
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}
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2015-06-04 13:54:58 -06:00
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// checkCopyLocksFunc checks whether a function might
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// inadvertently copy a lock, by checking whether
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// its receiver, parameters, or return values
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// are locks.
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func checkCopyLocksFunc(f *File, name string, recv *ast.FieldList, typ *ast.FuncType) {
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if recv != nil && len(recv.List) > 0 {
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expr := recv.List[0].Type
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if path := lockPath(f.pkg.typesPkg, f.pkg.types[expr].Type); path != nil {
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f.Badf(expr.Pos(), "%s passes lock by value: %v", name, path)
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}
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}
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if typ.Params != nil {
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for _, field := range typ.Params.List {
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expr := field.Type
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if path := lockPath(f.pkg.typesPkg, f.pkg.types[expr].Type); path != nil {
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f.Badf(expr.Pos(), "%s passes lock by value: %v", name, path)
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}
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}
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}
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2016-07-01 14:52:26 -06:00
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// Don't check typ.Results. If T has a Lock field it's OK to write
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// return T{}
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// because that is returning the zero value. Leave result checking
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// to the return statement.
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}
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// checkCopyLocksRange checks whether a range statement
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// might inadvertently copy a lock by checking whether
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// any of the range variables are locks.
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func checkCopyLocksRange(f *File, r *ast.RangeStmt) {
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checkCopyLocksRangeVar(f, r.Tok, r.Key)
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checkCopyLocksRangeVar(f, r.Tok, r.Value)
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}
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func checkCopyLocksRangeVar(f *File, rtok token.Token, e ast.Expr) {
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if e == nil {
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return
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}
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id, isId := e.(*ast.Ident)
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if isId && id.Name == "_" {
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return
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}
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var typ types.Type
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if rtok == token.DEFINE {
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if !isId {
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return
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}
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obj := f.pkg.defs[id]
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if obj == nil {
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return
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}
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typ = obj.Type()
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} else {
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typ = f.pkg.types[e].Type
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}
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if typ == nil {
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return
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}
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if path := lockPath(f.pkg.typesPkg, typ); path != nil {
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f.Badf(e.Pos(), "range var %s copies lock: %v", f.gofmt(e), path)
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}
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}
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type typePath []types.Type
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// String pretty-prints a typePath.
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func (path typePath) String() string {
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n := len(path)
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var buf bytes.Buffer
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for i := range path {
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if i > 0 {
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fmt.Fprint(&buf, " contains ")
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}
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// The human-readable path is in reverse order, outermost to innermost.
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fmt.Fprint(&buf, path[n-i-1].String())
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}
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return buf.String()
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}
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func lockPathRhs(f *File, x ast.Expr) typePath {
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if _, ok := x.(*ast.CompositeLit); ok {
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return nil
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}
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if _, ok := x.(*ast.CallExpr); ok {
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// A call may return a zero value.
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return nil
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}
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if star, ok := x.(*ast.StarExpr); ok {
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if _, ok := star.X.(*ast.CallExpr); ok {
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// A call may return a pointer to a zero value.
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return nil
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}
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}
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return lockPath(f.pkg.typesPkg, f.pkg.types[x].Type)
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}
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// lockPath returns a typePath describing the location of a lock value
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// contained in typ. If there is no contained lock, it returns nil.
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func lockPath(tpkg *types.Package, typ types.Type) typePath {
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if typ == nil {
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return nil
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}
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2016-06-22 11:16:41 -06:00
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for {
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atyp, ok := typ.Underlying().(*types.Array)
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if !ok {
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break
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}
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typ = atyp.Elem()
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}
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2015-06-04 13:54:58 -06:00
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// We're only interested in the case in which the underlying
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// type is a struct. (Interfaces and pointers are safe to copy.)
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styp, ok := typ.Underlying().(*types.Struct)
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if !ok {
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return nil
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}
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// We're looking for cases in which a reference to this type
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// can be locked, but a value cannot. This differentiates
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// embedded interfaces from embedded values.
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if plock := types.NewMethodSet(types.NewPointer(typ)).Lookup(tpkg, "Lock"); plock != nil {
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if lock := types.NewMethodSet(typ).Lookup(tpkg, "Lock"); lock == nil {
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return []types.Type{typ}
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}
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}
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nfields := styp.NumFields()
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for i := 0; i < nfields; i++ {
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ftyp := styp.Field(i).Type()
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subpath := lockPath(tpkg, ftyp)
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if subpath != nil {
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return append(subpath, typ)
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}
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}
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return nil
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}
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