mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
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184 lines
5.8 KiB
Go
184 lines
5.8 KiB
Go
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// Copyright 2015 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 irutil
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// This file defines utility functions for constructing programs in IR form.
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import (
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"go/ast"
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"go/token"
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"go/types"
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"golang.org/x/tools/go/loader"
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"golang.org/x/tools/go/packages"
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"honnef.co/go/tools/ir"
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)
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type Options struct {
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// Which function, if any, to print in HTML form
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PrintFunc string
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}
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// Packages creates an IR program for a set of packages.
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//
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// The packages must have been loaded from source syntax using the
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// golang.org/x/tools/go/packages.Load function in LoadSyntax or
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// LoadAllSyntax mode.
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//
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// Packages creates an IR package for each well-typed package in the
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// initial list, plus all their dependencies. The resulting list of
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// packages corresponds to the list of initial packages, and may contain
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// a nil if IR code could not be constructed for the corresponding initial
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// package due to type errors.
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//
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// Code for bodies of functions is not built until Build is called on
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// the resulting Program. IR code is constructed only for the initial
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// packages with well-typed syntax trees.
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//
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// The mode parameter controls diagnostics and checking during IR construction.
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//
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func Packages(initial []*packages.Package, mode ir.BuilderMode, opts *Options) (*ir.Program, []*ir.Package) {
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return doPackages(initial, mode, false, opts)
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}
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// AllPackages creates an IR program for a set of packages plus all
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// their dependencies.
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//
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// The packages must have been loaded from source syntax using the
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// golang.org/x/tools/go/packages.Load function in LoadAllSyntax mode.
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//
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// AllPackages creates an IR package for each well-typed package in the
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// initial list, plus all their dependencies. The resulting list of
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// packages corresponds to the list of initial packages, and may contain
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// a nil if IR code could not be constructed for the corresponding
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// initial package due to type errors.
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//
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// Code for bodies of functions is not built until Build is called on
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// the resulting Program. IR code is constructed for all packages with
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// well-typed syntax trees.
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//
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// The mode parameter controls diagnostics and checking during IR construction.
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//
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func AllPackages(initial []*packages.Package, mode ir.BuilderMode, opts *Options) (*ir.Program, []*ir.Package) {
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return doPackages(initial, mode, true, opts)
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}
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func doPackages(initial []*packages.Package, mode ir.BuilderMode, deps bool, opts *Options) (*ir.Program, []*ir.Package) {
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var fset *token.FileSet
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if len(initial) > 0 {
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fset = initial[0].Fset
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}
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prog := ir.NewProgram(fset, mode)
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if opts != nil {
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prog.PrintFunc = opts.PrintFunc
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}
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isInitial := make(map[*packages.Package]bool, len(initial))
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for _, p := range initial {
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isInitial[p] = true
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}
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irmap := make(map[*packages.Package]*ir.Package)
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packages.Visit(initial, nil, func(p *packages.Package) {
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if p.Types != nil && !p.IllTyped {
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var files []*ast.File
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if deps || isInitial[p] {
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files = p.Syntax
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}
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irmap[p] = prog.CreatePackage(p.Types, files, p.TypesInfo, true)
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}
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})
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var irpkgs []*ir.Package
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for _, p := range initial {
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irpkgs = append(irpkgs, irmap[p]) // may be nil
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}
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return prog, irpkgs
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}
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// CreateProgram returns a new program in IR form, given a program
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// loaded from source. An IR package is created for each transitively
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// error-free package of lprog.
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//
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// Code for bodies of functions is not built until Build is called
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// on the result.
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//
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// The mode parameter controls diagnostics and checking during IR construction.
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//
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// Deprecated: use golang.org/x/tools/go/packages and the Packages
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// function instead; see ir.ExampleLoadPackages.
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//
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func CreateProgram(lprog *loader.Program, mode ir.BuilderMode) *ir.Program {
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prog := ir.NewProgram(lprog.Fset, mode)
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for _, info := range lprog.AllPackages {
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if info.TransitivelyErrorFree {
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prog.CreatePackage(info.Pkg, info.Files, &info.Info, info.Importable)
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}
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}
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return prog
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}
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// BuildPackage builds an IR program with IR for a single package.
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//
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// It populates pkg by type-checking the specified file ASTs. All
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// dependencies are loaded using the importer specified by tc, which
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// typically loads compiler export data; IR code cannot be built for
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// those packages. BuildPackage then constructs an ir.Program with all
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// dependency packages created, and builds and returns the IR package
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// corresponding to pkg.
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//
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// The caller must have set pkg.Path() to the import path.
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//
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// The operation fails if there were any type-checking or import errors.
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//
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// See ../ir/example_test.go for an example.
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//
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func BuildPackage(tc *types.Config, fset *token.FileSet, pkg *types.Package, files []*ast.File, mode ir.BuilderMode) (*ir.Package, *types.Info, error) {
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if fset == nil {
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panic("no token.FileSet")
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}
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if pkg.Path() == "" {
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panic("package has no import path")
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}
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info := &types.Info{
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Types: make(map[ast.Expr]types.TypeAndValue),
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Defs: make(map[*ast.Ident]types.Object),
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Uses: make(map[*ast.Ident]types.Object),
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Implicits: make(map[ast.Node]types.Object),
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Scopes: make(map[ast.Node]*types.Scope),
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Selections: make(map[*ast.SelectorExpr]*types.Selection),
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}
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if err := types.NewChecker(tc, fset, pkg, info).Files(files); err != nil {
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return nil, nil, err
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}
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prog := ir.NewProgram(fset, mode)
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// Create IR packages for all imports.
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// Order is not significant.
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created := make(map[*types.Package]bool)
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var createAll func(pkgs []*types.Package)
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createAll = func(pkgs []*types.Package) {
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for _, p := range pkgs {
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if !created[p] {
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created[p] = true
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prog.CreatePackage(p, nil, nil, true)
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createAll(p.Imports())
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}
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}
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}
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createAll(pkg.Imports())
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// Create and build the primary package.
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irpkg := prog.CreatePackage(pkg, files, info, false)
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irpkg.Build()
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return irpkg, info, nil
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}
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