| |
| |
| |
|
|
| package obj |
|
|
| import ( |
| "bytes" |
| "cmd/internal/objabi" |
| "fmt" |
| "internal/abi" |
| "internal/buildcfg" |
| "io" |
| "strings" |
| ) |
|
|
| const REG_NONE = 0 |
|
|
| |
| func (p *Prog) Line() string { |
| return p.Ctxt.OutermostPos(p.Pos).Format(false, true) |
| } |
| func (p *Prog) InnermostLine(w io.Writer) { |
| p.Ctxt.InnermostPos(p.Pos).WriteTo(w, false, true) |
| } |
|
|
| |
| |
| func (p *Prog) InnermostLineNumber() string { |
| return p.Ctxt.InnermostPos(p.Pos).LineNumber() |
| } |
|
|
| |
| |
| func (p *Prog) InnermostLineNumberHTML() string { |
| return p.Ctxt.InnermostPos(p.Pos).LineNumberHTML() |
| } |
|
|
| |
| |
| func (p *Prog) InnermostFilename() string { |
| |
| |
| pos := p.Ctxt.InnermostPos(p.Pos) |
| if !pos.IsKnown() { |
| return "<unknown file name>" |
| } |
| return pos.Filename() |
| } |
|
|
| var armCondCode = []string{ |
| ".EQ", |
| ".NE", |
| ".CS", |
| ".CC", |
| ".MI", |
| ".PL", |
| ".VS", |
| ".VC", |
| ".HI", |
| ".LS", |
| ".GE", |
| ".LT", |
| ".GT", |
| ".LE", |
| "", |
| ".NV", |
| } |
|
|
| |
| const ( |
| C_SCOND = (1 << 4) - 1 |
| C_SBIT = 1 << 4 |
| C_PBIT = 1 << 5 |
| C_WBIT = 1 << 6 |
| C_FBIT = 1 << 7 |
| C_UBIT = 1 << 7 |
| C_SCOND_XOR = 14 |
| ) |
|
|
| |
| func CConv(s uint8) string { |
| if s == 0 { |
| return "" |
| } |
| for i := range opSuffixSpace { |
| sset := &opSuffixSpace[i] |
| if sset.arch == buildcfg.GOARCH { |
| return sset.cconv(s) |
| } |
| } |
| return fmt.Sprintf("SC???%d", s) |
| } |
|
|
| |
| func CConvARM(s uint8) string { |
| |
| |
| |
|
|
| sc := armCondCode[(s&C_SCOND)^C_SCOND_XOR] |
| if s&C_SBIT != 0 { |
| sc += ".S" |
| } |
| if s&C_PBIT != 0 { |
| sc += ".P" |
| } |
| if s&C_WBIT != 0 { |
| sc += ".W" |
| } |
| if s&C_UBIT != 0 { |
| sc += ".U" |
| } |
| return sc |
| } |
|
|
| func (p *Prog) String() string { |
| if p == nil { |
| return "<nil Prog>" |
| } |
| if p.Ctxt == nil { |
| return "<Prog without ctxt>" |
| } |
| return fmt.Sprintf("%.5d (%v)\t%s", p.Pc, p.Line(), p.InstructionString()) |
| } |
|
|
| func (p *Prog) InnermostString(w io.Writer) { |
| if p == nil { |
| io.WriteString(w, "<nil Prog>") |
| return |
| } |
| if p.Ctxt == nil { |
| io.WriteString(w, "<Prog without ctxt>") |
| return |
| } |
| fmt.Fprintf(w, "%.5d (", p.Pc) |
| p.InnermostLine(w) |
| io.WriteString(w, ")\t") |
| p.WriteInstructionString(w) |
| } |
|
|
| |
| |
| func (p *Prog) InstructionString() string { |
| buf := new(bytes.Buffer) |
| p.WriteInstructionString(buf) |
| return buf.String() |
| } |
|
|
| |
| |
| func (p *Prog) WriteInstructionString(w io.Writer) { |
| if p == nil { |
| io.WriteString(w, "<nil Prog>") |
| return |
| } |
|
|
| if p.Ctxt == nil { |
| io.WriteString(w, "<Prog without ctxt>") |
| return |
| } |
|
|
| sc := CConv(p.Scond) |
|
|
| io.WriteString(w, p.As.String()) |
| io.WriteString(w, sc) |
| sep := "\t" |
|
|
| if p.From.Type != TYPE_NONE { |
| io.WriteString(w, sep) |
| WriteDconv(w, p, &p.From) |
| sep = ", " |
| } |
| if p.Reg != REG_NONE { |
| |
| fmt.Fprintf(w, "%s%v", sep, Rconv(int(p.Reg))) |
| sep = ", " |
| } |
| for i := range p.RestArgs { |
| if p.RestArgs[i].Pos == Source { |
| io.WriteString(w, sep) |
| WriteDconv(w, p, &p.RestArgs[i].Addr) |
| sep = ", " |
| } |
| } |
|
|
| if p.As == ATEXT { |
| |
| |
| |
| |
| s := p.From.Sym.TextAttrString() |
| if s != "" { |
| fmt.Fprintf(w, "%s%s", sep, s) |
| sep = ", " |
| } |
| } |
| if p.To.Type != TYPE_NONE { |
| io.WriteString(w, sep) |
| WriteDconv(w, p, &p.To) |
| sep = ", " |
| } |
| if p.RegTo2 != REG_NONE { |
| fmt.Fprintf(w, "%s%v", sep, Rconv(int(p.RegTo2))) |
| } |
| for i := range p.RestArgs { |
| if p.RestArgs[i].Pos == Destination { |
| io.WriteString(w, sep) |
| WriteDconv(w, p, &p.RestArgs[i].Addr) |
| sep = ", " |
| } |
| } |
| } |
|
|
| func (ctxt *Link) NewProg() *Prog { |
| p := new(Prog) |
| p.Ctxt = ctxt |
| return p |
| } |
|
|
| func (ctxt *Link) CanReuseProgs() bool { |
| return ctxt.Debugasm == 0 |
| } |
|
|
| |
| |
| func Dconv(p *Prog, a *Addr) string { |
| buf := new(bytes.Buffer) |
| writeDconv(buf, p, a, false) |
| return buf.String() |
| } |
|
|
| |
| |
| |
| func DconvWithABIDetail(p *Prog, a *Addr) string { |
| buf := new(bytes.Buffer) |
| writeDconv(buf, p, a, true) |
| return buf.String() |
| } |
|
|
| |
| |
| func WriteDconv(w io.Writer, p *Prog, a *Addr) { |
| writeDconv(w, p, a, false) |
| } |
|
|
| func writeDconv(w io.Writer, p *Prog, a *Addr, abiDetail bool) { |
| switch a.Type { |
| default: |
| fmt.Fprintf(w, "type=%d", a.Type) |
|
|
| case TYPE_NONE: |
| if a.Name != NAME_NONE || a.Reg != 0 || a.Sym != nil { |
| a.WriteNameTo(w) |
| fmt.Fprintf(w, "(%v)(NONE)", Rconv(int(a.Reg))) |
| } |
|
|
| case TYPE_REG: |
| |
| |
| |
| |
| if a.Offset != 0 && (a.Reg < RBaseARM64 || a.Reg >= RBaseMIPS) { |
| fmt.Fprintf(w, "$%d,%v", a.Offset, Rconv(int(a.Reg))) |
| return |
| } |
|
|
| if a.Name != NAME_NONE || a.Sym != nil { |
| a.WriteNameTo(w) |
| fmt.Fprintf(w, "(%v)(REG)", Rconv(int(a.Reg))) |
| } else { |
| io.WriteString(w, Rconv(int(a.Reg))) |
| } |
|
|
| if (RBaseARM64+1<<10+1<<9) <= a.Reg && |
| a.Reg < (RBaseARM64+1<<11) { |
| fmt.Fprintf(w, "[%d]", a.Index) |
| } |
|
|
| if (RBaseLOONG64+(1<<10)+(1<<11)) <= a.Reg && |
| a.Reg < (RBaseLOONG64+(1<<10)+(2<<11)) { |
| fmt.Fprintf(w, "[%d]", a.Index) |
| } |
|
|
| case TYPE_BRANCH: |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s(SB)", a.Sym.Name, abiDecorate(a, abiDetail)) |
| } else if a.Target() != nil { |
| fmt.Fprint(w, a.Target().Pc) |
| } else { |
| fmt.Fprintf(w, "%d(PC)", a.Offset) |
| } |
|
|
| case TYPE_INDIR: |
| io.WriteString(w, "*") |
| a.writeNameTo(w, abiDetail) |
|
|
| case TYPE_MEM: |
| a.WriteNameTo(w) |
| if a.Index != REG_NONE { |
| if a.Scale == 0 { |
| |
| fmt.Fprintf(w, "(%v)", Rconv(int(a.Index))) |
| } else { |
| fmt.Fprintf(w, "(%v*%d)", Rconv(int(a.Index)), int(a.Scale)) |
| } |
| } |
|
|
| case TYPE_CONST: |
| io.WriteString(w, "$") |
| a.WriteNameTo(w) |
| if a.Reg != 0 { |
| fmt.Fprintf(w, "(%v)", Rconv(int(a.Reg))) |
| } |
|
|
| case TYPE_TEXTSIZE: |
| if a.Val.(int32) == abi.ArgsSizeUnknown { |
| fmt.Fprintf(w, "$%d", a.Offset) |
| } else { |
| fmt.Fprintf(w, "$%d-%d", a.Offset, a.Val.(int32)) |
| } |
|
|
| case TYPE_FCONST: |
| str := fmt.Sprintf("%.17g", a.Val.(float64)) |
| |
| if !strings.ContainsAny(str, ".e") { |
| str += ".0" |
| } |
| fmt.Fprintf(w, "$(%s)", str) |
|
|
| case TYPE_SCONST: |
| fmt.Fprintf(w, "$%q", a.Val.(string)) |
|
|
| case TYPE_ADDR: |
| io.WriteString(w, "$") |
| a.writeNameTo(w, abiDetail) |
|
|
| case TYPE_SHIFT: |
| v := int(a.Offset) |
| ops := "<<>>->@>" |
| switch buildcfg.GOARCH { |
| case "arm": |
| op := ops[((v>>5)&3)<<1:] |
| if v&(1<<4) != 0 { |
| fmt.Fprintf(w, "R%d%c%cR%d", v&15, op[0], op[1], (v>>8)&15) |
| } else { |
| fmt.Fprintf(w, "R%d%c%c%d", v&15, op[0], op[1], (v>>7)&31) |
| } |
| if a.Reg != 0 { |
| fmt.Fprintf(w, "(%v)", Rconv(int(a.Reg))) |
| } |
| case "arm64": |
| op := ops[((v>>22)&3)<<1:] |
| r := (v >> 16) & 31 |
| fmt.Fprintf(w, "%s%c%c%d", Rconv(r+RBaseARM64), op[0], op[1], (v>>10)&63) |
| default: |
| panic("TYPE_SHIFT is not supported on " + buildcfg.GOARCH) |
| } |
|
|
| case TYPE_REGREG: |
| fmt.Fprintf(w, "(%v, %v)", Rconv(int(a.Reg)), Rconv(int(a.Offset))) |
|
|
| case TYPE_REGREG2: |
| fmt.Fprintf(w, "%v, %v", Rconv(int(a.Offset)), Rconv(int(a.Reg))) |
|
|
| case TYPE_REGLIST: |
| io.WriteString(w, RLconv(a.Offset)) |
|
|
| case TYPE_SPECIAL: |
| io.WriteString(w, SPCconv(a.Offset)) |
| } |
| } |
|
|
| func (a *Addr) WriteNameTo(w io.Writer) { |
| a.writeNameTo(w, false) |
| } |
|
|
| func (a *Addr) writeNameTo(w io.Writer, abiDetail bool) { |
|
|
| switch a.Name { |
| default: |
| fmt.Fprintf(w, "name=%d", a.Name) |
|
|
| case NAME_NONE: |
| switch { |
| case a.Reg == REG_NONE: |
| fmt.Fprint(w, a.Offset) |
| case a.Offset == 0: |
| fmt.Fprintf(w, "(%v)", Rconv(int(a.Reg))) |
| case a.Offset != 0: |
| fmt.Fprintf(w, "%d(%v)", a.Offset, Rconv(int(a.Reg))) |
| } |
|
|
| |
| case NAME_EXTERN: |
| reg := "SB" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s%s(%s)", a.Sym.Name, abiDecorate(a, abiDetail), offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "%s(%s)", offConv(a.Offset), reg) |
| } |
|
|
| case NAME_GOTREF: |
| reg := "SB" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s@GOT(%s)", a.Sym.Name, offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "%s@GOT(%s)", offConv(a.Offset), reg) |
| } |
|
|
| case NAME_STATIC: |
| reg := "SB" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s<>%s(%s)", a.Sym.Name, offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "<>%s(%s)", offConv(a.Offset), reg) |
| } |
|
|
| case NAME_AUTO: |
| reg := "SP" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s(%s)", a.Sym.Name, offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "%s(%s)", offConv(a.Offset), reg) |
| } |
|
|
| case NAME_PARAM: |
| reg := "FP" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s(%s)", a.Sym.Name, offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "%s(%s)", offConv(a.Offset), reg) |
| } |
| case NAME_TOCREF: |
| reg := "SB" |
| if a.Reg != REG_NONE { |
| reg = Rconv(int(a.Reg)) |
| } |
| if a.Sym != nil { |
| fmt.Fprintf(w, "%s%s(%s)", a.Sym.Name, offConv(a.Offset), reg) |
| } else { |
| fmt.Fprintf(w, "%s(%s)", offConv(a.Offset), reg) |
| } |
| } |
| } |
|
|
| func offConv(off int64) string { |
| if off == 0 { |
| return "" |
| } |
| return fmt.Sprintf("%+d", off) |
| } |
|
|
| |
| |
| |
| |
| |
| |
| type opSuffixSet struct { |
| arch string |
| cconv func(suffix uint8) string |
| } |
|
|
| var opSuffixSpace []opSuffixSet |
|
|
| |
| |
| |
| |
| func RegisterOpSuffix(arch string, cconv func(uint8) string) { |
| opSuffixSpace = append(opSuffixSpace, opSuffixSet{ |
| arch: arch, |
| cconv: cconv, |
| }) |
| } |
|
|
| type regSet struct { |
| lo int |
| hi int |
| Rconv func(int) string |
| } |
|
|
| |
| |
| var regSpace []regSet |
|
|
| |
| |
| |
| |
| |
|
|
| const ( |
| |
| |
| RBase386 = 1 * 1024 |
| RBaseAMD64 = 2 * 1024 |
| RBaseARM = 3 * 1024 |
| RBasePPC64 = 4 * 1024 |
| RBaseARM64 = 8 * 1024 |
| RBaseMIPS = 13 * 1024 |
| RBaseS390X = 14 * 1024 |
| RBaseRISCV = 15 * 1024 |
| RBaseWasm = 16 * 1024 |
| RBaseLOONG64 = 19 * 1024 |
| ) |
|
|
| |
| |
| |
| func RegisterRegister(lo, hi int, Rconv func(int) string) { |
| regSpace = append(regSpace, regSet{lo, hi, Rconv}) |
| } |
|
|
| func Rconv(reg int) string { |
| if reg == REG_NONE { |
| return "NONE" |
| } |
| for i := range regSpace { |
| rs := ®Space[i] |
| if rs.lo <= reg && reg < rs.hi { |
| return rs.Rconv(reg) |
| } |
| } |
| return fmt.Sprintf("R???%d", reg) |
| } |
|
|
| type regListSet struct { |
| lo int64 |
| hi int64 |
| RLconv func(int64) string |
| } |
|
|
| var regListSpace []regListSet |
|
|
| |
| |
| const ( |
| RegListARMLo = 0 |
| RegListARMHi = 1 << 16 |
|
|
| |
| RegListARM64Lo = 1 << 60 |
| RegListARM64Hi = 1<<61 - 1 |
|
|
| |
| RegListX86Lo = 1 << 61 |
| RegListX86Hi = 1<<62 - 1 |
| ) |
|
|
| |
| |
| |
| func RegisterRegisterList(lo, hi int64, rlconv func(int64) string) { |
| regListSpace = append(regListSpace, regListSet{lo, hi, rlconv}) |
| } |
|
|
| func RLconv(list int64) string { |
| for i := range regListSpace { |
| rls := ®ListSpace[i] |
| if rls.lo <= list && list < rls.hi { |
| return rls.RLconv(list) |
| } |
| } |
| return fmt.Sprintf("RL???%d", list) |
| } |
|
|
| |
| type spcSet struct { |
| lo int64 |
| hi int64 |
| SPCconv func(int64) string |
| } |
|
|
| var spcSpace []spcSet |
|
|
| |
| |
| const ( |
| SpecialOperandARM64Base = 0 << 16 |
| SpecialOperandRISCVBase = 1 << 16 |
| ) |
|
|
| |
| |
| |
| func RegisterSpecialOperands(lo, hi int64, rlconv func(int64) string) { |
| spcSpace = append(spcSpace, spcSet{lo, hi, rlconv}) |
| } |
|
|
| |
| func SPCconv(spc int64) string { |
| for i := range spcSpace { |
| spcs := &spcSpace[i] |
| if spcs.lo <= spc && spc < spcs.hi { |
| return spcs.SPCconv(spc) |
| } |
| } |
| return fmt.Sprintf("SPC???%d", spc) |
| } |
|
|
| type opSet struct { |
| lo As |
| names []string |
| } |
|
|
| |
| var aSpace []opSet |
|
|
| |
| |
| func RegisterOpcode(lo As, Anames []string) { |
| if len(Anames) > AllowedOpCodes { |
| panic(fmt.Sprintf("too many instructions, have %d max %d", len(Anames), AllowedOpCodes)) |
| } |
| aSpace = append(aSpace, opSet{lo, Anames}) |
| } |
|
|
| func (a As) String() string { |
| if 0 <= a && int(a) < len(Anames) { |
| return Anames[a] |
| } |
| for i := range aSpace { |
| as := &aSpace[i] |
| if as.lo <= a && int(a-as.lo) < len(as.names) { |
| return as.names[a-as.lo] |
| } |
| } |
| return fmt.Sprintf("A???%d", a) |
| } |
|
|
| var Anames = []string{ |
| "XXX", |
| "CALL", |
| "DUFFCOPY", |
| "DUFFZERO", |
| "END", |
| "FUNCDATA", |
| "JMP", |
| "NOP", |
| "PCALIGN", |
| "PCALIGNMAX", |
| "PCDATA", |
| "RET", |
| "GETCALLERPC", |
| "TEXT", |
| "UNDEF", |
| } |
|
|
| func Bool2int(b bool) int { |
| |
| |
| var i int |
| if b { |
| i = 1 |
| } else { |
| i = 0 |
| } |
| return i |
| } |
|
|
| func abiDecorate(a *Addr, abiDetail bool) string { |
| if !abiDetail || a.Sym == nil { |
| return "" |
| } |
| return fmt.Sprintf("<%s>", a.Sym.ABI()) |
| } |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| func AlignmentPadding(pc int32, p *Prog, ctxt *Link, cursym *LSym) int { |
| v := AlignmentPaddingLength(pc, p, ctxt) |
| requireAlignment(p.From.Offset, ctxt, cursym) |
| return v |
| } |
|
|
| |
| |
| |
| |
| |
| |
| |
| |
| |
| func AlignmentPaddingLength(pc int32, p *Prog, ctxt *Link) int { |
| a := p.From.Offset |
| if !((a&(a-1) == 0) && 8 <= a && a <= 2048) { |
| ctxt.Diag("alignment value of an instruction must be a power of two and in the range [8, 2048], got %d\n", a) |
| return 0 |
| } |
| pc64 := int64(pc) |
| lob := pc64 & (a - 1) |
| if p.As == APCALIGN { |
| if lob != 0 { |
| return int(a - lob) |
| } |
| return 0 |
| } |
| |
| s := p.To.Offset |
| if s < 0 || s >= a { |
| ctxt.Diag("PCALIGNMAX 'amount' %d must be non-negative and smaller than the alignment %d\n", s, a) |
| return 0 |
| } |
| if s >= a-lob { |
| return int(a - lob) |
| } |
| return 0 |
| } |
|
|
| |
| |
| func requireAlignment(a int64, ctxt *Link, cursym *LSym) { |
| |
| if ctxt.Headtype != objabi.Haix && cursym.Func().Align < int32(a) { |
| cursym.Func().Align = int32(a) |
| } |
| } |
|
|