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https://github.com/golang/go
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d2cdbefbfc
See json.go for interface specification. Example usage: % oracle -format=json -mode=callgraph code.google.com/p/go.tools/cmd/oracle + Tests, based on (small) golden files. Overview: Each <query>Result structure has been "lowered" so that all but the most trivial logic in each display() function has been moved to the main query. Each one now has a toJSON method that populates a json.Result struct. Though the <query>Result structs are similar to the correponding JSON protocol, they're not close enough to be used directly; for example, the former contain richer semantic entities (token.Pos, ast.Expr, ssa.Value, pointer.Pointer, etc) whereas JSON contains only their printed forms using Go basic types. The choices of what levels of abstractions the two sets of structs should have is somewhat arbitrary. We may want richer information in the JSON output in future. Details: - oracle.Main has been split into oracle.Query() and the printing of the oracle.Result. - the display() method no longer needs an *oracle param, only a print function. - callees: sort the result for determinism. - callees: compute the union across all contexts. - callers: sort the results for determinism. - describe(package): fixed a bug in the predicate for method accessibility: an unexported method defined in pkg A may belong to a type defined in package B (via embedding/promotion) and may thus be accessible to A. New accessibleMethods() utility fixes this. - describe(type): filter methods by accessibility. - added tests of 'callgraph'. - pointer: eliminated the 'caller CallGraphNode' parameter from pointer.Context.Call callback since it was redundant w.r.t site.Caller(). - added warning if CGO_ENABLED is unset. R=crawshaw CC=golang-dev https://golang.org/cl/13270045
133 lines
3.7 KiB
Go
133 lines
3.7 KiB
Go
// 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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package oracle
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import (
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"go/ast"
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"go/token"
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"sort"
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"code.google.com/p/go.tools/go/types"
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"code.google.com/p/go.tools/oracle/json"
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"code.google.com/p/go.tools/pointer"
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"code.google.com/p/go.tools/ssa"
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)
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// Callees reports the possible callees of the function call site
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// identified by the specified source location.
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//
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// TODO(adonovan): if a callee is a wrapper, show the callee's callee.
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//
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func callees(o *oracle) (queryResult, error) {
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// Determine the enclosing call for the specified position.
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var call *ast.CallExpr
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for _, n := range o.queryPath {
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if call, _ = n.(*ast.CallExpr); call != nil {
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break
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}
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}
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if call == nil {
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return nil, o.errorf(o.queryPath[0], "there is no function call here")
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}
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// TODO(adonovan): issue an error if the call is "too far
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// away" from the current selection, as this most likely is
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// not what the user intended.
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// Reject type conversions.
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if o.queryPkgInfo.IsType(call.Fun) {
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return nil, o.errorf(call, "this is a type conversion, not a function call")
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}
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// Reject calls to built-ins.
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if b, ok := o.queryPkgInfo.TypeOf(call.Fun).(*types.Builtin); ok {
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return nil, o.errorf(call, "this is a call to the built-in '%s' operator", b.Name())
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}
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buildSSA(o)
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// Compute the subgraph of the callgraph for callsite(s)
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// arising from 'call'. There may be more than one if its
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// enclosing function was treated context-sensitively.
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// (Or zero if it was in dead code.)
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//
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// The presence of a key indicates this call site is
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// interesting even if the value is nil.
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querySites := make(map[pointer.CallSite][]pointer.CallGraphNode)
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var arbitrarySite pointer.CallSite
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o.config.CallSite = func(site pointer.CallSite) {
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if site.Pos() == call.Lparen {
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// Not a no-op! Ensures key is
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// present even if value is nil:
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querySites[site] = querySites[site]
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arbitrarySite = site
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}
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}
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o.config.Call = func(site pointer.CallSite, callee pointer.CallGraphNode) {
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if targets, ok := querySites[site]; ok {
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querySites[site] = append(targets, callee)
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}
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}
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ptrAnalysis(o)
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if arbitrarySite == nil {
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return nil, o.errorf(call.Lparen, "this call site is unreachable in this analysis")
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}
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// Compute union of callees across all contexts.
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funcsMap := make(map[*ssa.Function]bool)
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for _, callees := range querySites {
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for _, callee := range callees {
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funcsMap[callee.Func()] = true
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}
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}
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funcs := make([]*ssa.Function, 0, len(funcsMap))
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for f := range funcsMap {
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funcs = append(funcs, f)
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}
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sort.Sort(byFuncPos(funcs))
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return &calleesResult{
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site: arbitrarySite,
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funcs: funcs,
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}, nil
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}
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type calleesResult struct {
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site pointer.CallSite
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funcs []*ssa.Function
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}
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func (r *calleesResult) display(printf printfFunc) {
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if len(r.funcs) == 0 {
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// dynamic call on a provably nil func/interface
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printf(r.site, "%s on nil value", r.site.Description())
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} else {
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printf(r.site, "this %s dispatches to:", r.site.Description())
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for _, callee := range r.funcs {
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printf(callee, "\t%s", callee)
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}
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}
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}
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func (r *calleesResult) toJSON(res *json.Result, fset *token.FileSet) {
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j := &json.Callees{
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Pos: r.site.Caller().Func().Prog.Fset.Position(r.site.Pos()).String(),
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Desc: r.site.Description(),
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}
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for _, callee := range r.funcs {
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j.Callees = append(j.Callees, &json.CalleesItem{
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Name: callee.String(),
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Pos: callee.Prog.Fset.Position(callee.Pos()).String(),
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})
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}
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res.Callees = j
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}
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type byFuncPos []*ssa.Function
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func (a byFuncPos) Len() int { return len(a) }
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func (a byFuncPos) Less(i, j int) bool { return a[i].Pos() < a[j].Pos() }
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func (a byFuncPos) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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