185 lines
5.8 KiB
Go
185 lines
5.8 KiB
Go
// Copyright 2022 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 gosym
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import (
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"encoding/binary"
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"io"
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"strings"
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sv "golang.org/x/mod/semver"
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"golang.org/x/vuln/internal/semver"
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)
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const (
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funcSymNameGo119Lower string = "go.func.*"
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funcSymNameGo120 string = "go:func.*"
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)
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// FuncSymName returns symbol name for Go functions used in binaries
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// based on Go version. Supported Go versions are 1.18 and greater.
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// If the go version is unreadable it assumes that it is a newer version
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// and returns the symbol name for go version 1.20 or greater.
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func FuncSymName(goVersion string) string {
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// Support devel goX.Y...
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v := strings.TrimPrefix(goVersion, "devel ")
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v = semver.GoTagToSemver(v)
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mm := sv.MajorMinor(v)
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if sv.Compare(mm, "v1.20") >= 0 || mm == "" {
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return funcSymNameGo120
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} else if sv.Compare(mm, "v1.18") >= 0 {
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return funcSymNameGo119Lower
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}
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return ""
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}
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// Additions to the original package from cmd/internal/objabi/funcdata.go
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const (
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pcdata_InlTreeIndex = 2
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funcdata_InlTree = 3
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)
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// InlineTree returns the inline tree for Func f as a sequence of InlinedCalls.
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// goFuncValue is the value of the gosym.FuncSymName symbol.
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// baseAddr is the address of the memory region (ELF Prog) containing goFuncValue.
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// progReader is a ReaderAt positioned at the start of that region.
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func (t *LineTable) InlineTree(f *Func, goFuncValue, baseAddr uint64, progReader io.ReaderAt) ([]InlinedCall, error) {
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if f.inlineTreeCount == 0 {
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return nil, nil
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}
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if f.inlineTreeOffset == ^uint32(0) {
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return nil, nil
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}
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var offset int64
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if t.version >= ver118 {
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offset = int64(goFuncValue - baseAddr + uint64(f.inlineTreeOffset))
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} else {
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offset = int64(uint64(f.inlineTreeOffset) - baseAddr)
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}
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r := io.NewSectionReader(progReader, offset, 1<<32) // pick a size larger than we need
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ics := make([]InlinedCall, 0, f.inlineTreeCount)
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for i := 0; i < f.inlineTreeCount; i++ {
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if t.version >= ver120 {
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var ric rawInlinedCall120
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if err := binary.Read(r, t.binary, &ric); err != nil {
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return nil, err
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}
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ics = append(ics, InlinedCall{
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FuncID: ric.FuncID,
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Name: t.funcName(uint32(ric.NameOff)),
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ParentPC: ric.ParentPC,
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})
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} else {
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var ric rawInlinedCall112
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if err := binary.Read(r, t.binary, &ric); err != nil {
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return nil, err
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}
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ics = append(ics, InlinedCall{
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FuncID: ric.FuncID,
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Name: t.funcName(uint32(ric.Func_)),
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ParentPC: ric.ParentPC,
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})
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}
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}
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return ics, nil
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}
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// InlinedCall describes a call to an inlined function.
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type InlinedCall struct {
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FuncID uint8 // type of the called function
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Name string // name of called function
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ParentPC int32 // position of an instruction whose source position is the call site (offset from entry)
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}
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// rawInlinedCall112 is the encoding of entries in the FUNCDATA_InlTree table
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// from Go 1.12 through 1.19. It is equivalent to runtime.inlinedCall.
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type rawInlinedCall112 struct {
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Parent int16 // index of parent in the inltree, or < 0
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FuncID uint8 // type of the called function
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_ byte
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File int32 // perCU file index for inlined call. See cmd/link:pcln.go
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Line int32 // line number of the call site
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Func_ int32 // offset into pclntab for name of called function
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ParentPC int32 // position of an instruction whose source position is the call site (offset from entry)
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}
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// rawInlinedCall120 is the encoding of entries in the FUNCDATA_InlTree table
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// from Go 1.20. It is equivalent to runtime.inlinedCall.
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type rawInlinedCall120 struct {
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FuncID uint8 // type of the called function
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_ [3]byte
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NameOff int32 // offset into pclntab for name of called function
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ParentPC int32 // position of an instruction whose source position is the call site (offset from entry)
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StartLine int32 // line number of start of function (func keyword/TEXT directive)
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}
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func (f funcData) npcdata() uint32 { return f.field(7) }
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func (f funcData) nfuncdata(numFuncFields uint32) uint32 {
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return uint32(f.data[f.fieldOffset(numFuncFields-1)+3])
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}
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func (f funcData) funcdataOffset(i uint8, numFuncFields uint32) uint32 {
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if uint32(i) >= f.nfuncdata(numFuncFields) {
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return ^uint32(0)
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}
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var off uint32
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if f.t.version >= ver118 {
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off = f.fieldOffset(numFuncFields) + // skip fixed part of _func
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f.npcdata()*4 + // skip pcdata
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uint32(i)*4 // index of i'th FUNCDATA
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} else {
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off = f.fieldOffset(numFuncFields) + // skip fixed part of _func
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f.npcdata()*4
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off += uint32(i) * f.t.ptrsize
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}
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return f.t.binary.Uint32(f.data[off:])
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}
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func (f funcData) fieldOffset(n uint32) uint32 {
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// In Go 1.18, the first field of _func changed
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// from a uintptr entry PC to a uint32 entry offset.
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sz0 := f.t.ptrsize
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if f.t.version >= ver118 {
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sz0 = 4
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}
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return sz0 + (n-1)*4 // subsequent fields are 4 bytes each
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}
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func (f funcData) pcdataOffset(i uint8, numFuncFields uint32) uint32 {
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if uint32(i) >= f.npcdata() {
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return ^uint32(0)
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}
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off := f.fieldOffset(numFuncFields) + // skip fixed part of _func
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uint32(i)*4 // index of i'th PCDATA
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return f.t.binary.Uint32(f.data[off:])
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}
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// maxInlineTreeIndexValue returns the maximum value of the inline tree index
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// pc-value table in info. This is the only way to determine how many
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// IndexedCalls are in an inline tree, since the data of the tree itself is not
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// delimited in any way.
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func (t *LineTable) maxInlineTreeIndexValue(info funcData, numFuncFields uint32) int {
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if info.npcdata() <= pcdata_InlTreeIndex {
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return -1
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}
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off := info.pcdataOffset(pcdata_InlTreeIndex, numFuncFields)
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p := t.pctab[off:]
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val := int32(-1)
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max := int32(-1)
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var pc uint64
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for t.step(&p, &pc, &val, pc == 0) {
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if val > max {
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max = val
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}
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}
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return int(max)
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}
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type inlTree struct {
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inlineTreeOffset uint32 // offset from go.func.* symbol
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inlineTreeCount int // number of entries in inline tree
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}
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