github.com/ccccaoqing/test@v0.0.0-20220510085219-3985d23445c0/src/cmd/internal/rsc.io/arm/armasm/objdumpext_test.go (about)

     1  // Copyright 2014 The Go Authors.  All rights reserved.
     2  // Use of this source code is governed by a BSD-style
     3  // license that can be found in the LICENSE file.
     4  
     5  // Copied and simplified from rsc.io/x86/x86asm/objdumpext_test.go.
     6  
     7  package armasm
     8  
     9  import (
    10  	"bytes"
    11  	"debug/elf"
    12  	"encoding/binary"
    13  	"fmt"
    14  	"io"
    15  	"log"
    16  	"os"
    17  	"strconv"
    18  	"strings"
    19  	"testing"
    20  )
    21  
    22  const objdumpPath = "/usr/local/bin/arm-linux-elf-objdump"
    23  
    24  func testObjdumpARM(t *testing.T, generate func(func([]byte))) {
    25  	testObjdumpArch(t, generate, ModeARM)
    26  }
    27  
    28  func testObjdumpArch(t *testing.T, generate func(func([]byte)), arch Mode) {
    29  	if testing.Short() {
    30  		t.Skip("skipping objdump test in short mode")
    31  	}
    32  
    33  	if _, err := os.Stat(objdumpPath); err != nil {
    34  		t.Fatal(err)
    35  	}
    36  
    37  	testExtDis(t, "gnu", arch, objdump, generate, allowedMismatchObjdump)
    38  }
    39  
    40  func objdump(ext *ExtDis) error {
    41  	// File already written with instructions; add ELF header.
    42  	if ext.Arch == ModeARM {
    43  		if err := writeELF32(ext.File, ext.Size); err != nil {
    44  			return err
    45  		}
    46  	} else {
    47  		panic("unknown arch")
    48  	}
    49  
    50  	b, err := ext.Run(objdumpPath, "-d", "-z", ext.File.Name())
    51  	if err != nil {
    52  		return err
    53  	}
    54  
    55  	var (
    56  		nmatch  int
    57  		reading bool
    58  		next    uint32 = start
    59  		addr    uint32
    60  		encbuf  [4]byte
    61  		enc     []byte
    62  		text    string
    63  	)
    64  	flush := func() {
    65  		if addr == next {
    66  			if m := pcrel.FindStringSubmatch(text); m != nil {
    67  				targ, _ := strconv.ParseUint(m[2], 16, 64)
    68  				text = fmt.Sprintf("%s .%+#x", m[1], int32(uint32(targ)-addr-uint32(len(enc))))
    69  			}
    70  			if strings.HasPrefix(text, "stmia") {
    71  				text = "stm" + text[5:]
    72  			}
    73  			if strings.HasPrefix(text, "stmfd") {
    74  				text = "stmdb" + text[5:]
    75  			}
    76  			if strings.HasPrefix(text, "ldmfd") {
    77  				text = "ldm" + text[5:]
    78  			}
    79  			text = strings.Replace(text, "#0.0", "#0", -1)
    80  			if text == "undefined" && len(enc) == 4 {
    81  				text = "error: unknown instruction"
    82  				enc = nil
    83  			}
    84  			if len(enc) == 4 {
    85  				// prints as word but we want to record bytes
    86  				enc[0], enc[3] = enc[3], enc[0]
    87  				enc[1], enc[2] = enc[2], enc[1]
    88  			}
    89  			ext.Dec <- ExtInst{addr, encbuf, len(enc), text}
    90  			encbuf = [4]byte{}
    91  			enc = nil
    92  			next += 4
    93  		}
    94  	}
    95  	var textangle = []byte("<.text>:")
    96  	for {
    97  		line, err := b.ReadSlice('\n')
    98  		if err != nil {
    99  			if err == io.EOF {
   100  				break
   101  			}
   102  			return fmt.Errorf("reading objdump output: %v", err)
   103  		}
   104  		if bytes.Contains(line, textangle) {
   105  			reading = true
   106  			continue
   107  		}
   108  		if !reading {
   109  			continue
   110  		}
   111  		if debug {
   112  			os.Stdout.Write(line)
   113  		}
   114  		if enc1 := parseContinuation(line, encbuf[:len(enc)]); enc1 != nil {
   115  			enc = enc1
   116  			continue
   117  		}
   118  		flush()
   119  		nmatch++
   120  		addr, enc, text = parseLine(line, encbuf[:0])
   121  		if addr > next {
   122  			return fmt.Errorf("address out of sync expected <= %#x at %q in:\n%s", next, line, line)
   123  		}
   124  	}
   125  	flush()
   126  	if next != start+uint32(ext.Size) {
   127  		return fmt.Errorf("not enough results found [%d %d]", next, start+ext.Size)
   128  	}
   129  	if err := ext.Wait(); err != nil {
   130  		return fmt.Errorf("exec: %v", err)
   131  	}
   132  
   133  	return nil
   134  }
   135  
   136  var (
   137  	undefined      = []byte("<UNDEFINED>")
   138  	unpredictable  = []byte("<UNPREDICTABLE>")
   139  	illegalShifter = []byte("<illegal shifter operand>")
   140  )
   141  
   142  func parseLine(line []byte, encstart []byte) (addr uint32, enc []byte, text string) {
   143  	oline := line
   144  	i := index(line, ":\t")
   145  	if i < 0 {
   146  		log.Fatalf("cannot parse disassembly: %q", oline)
   147  	}
   148  	x, err := strconv.ParseUint(string(trimSpace(line[:i])), 16, 32)
   149  	if err != nil {
   150  		log.Fatalf("cannot parse disassembly: %q", oline)
   151  	}
   152  	addr = uint32(x)
   153  	line = line[i+2:]
   154  	i = bytes.IndexByte(line, '\t')
   155  	if i < 0 {
   156  		log.Fatalf("cannot parse disassembly: %q", oline)
   157  	}
   158  	enc, ok := parseHex(line[:i], encstart)
   159  	if !ok {
   160  		log.Fatalf("cannot parse disassembly: %q", oline)
   161  	}
   162  	line = trimSpace(line[i:])
   163  	if bytes.Contains(line, undefined) {
   164  		text = "undefined"
   165  		return
   166  	}
   167  	if bytes.Contains(line, illegalShifter) {
   168  		text = "undefined"
   169  		return
   170  	}
   171  	if false && bytes.Contains(line, unpredictable) {
   172  		text = "unpredictable"
   173  		return
   174  	}
   175  	if i := bytes.IndexByte(line, ';'); i >= 0 {
   176  		line = trimSpace(line[:i])
   177  	}
   178  	text = string(fixSpace(line))
   179  	return
   180  }
   181  
   182  func parseContinuation(line []byte, enc []byte) []byte {
   183  	i := index(line, ":\t")
   184  	if i < 0 {
   185  		return nil
   186  	}
   187  	line = line[i+1:]
   188  	enc, _ = parseHex(line, enc)
   189  	return enc
   190  }
   191  
   192  // writeELF32 writes an ELF32 header to the file,
   193  // describing a text segment that starts at start
   194  // and extends for size bytes.
   195  func writeELF32(f *os.File, size int) error {
   196  	f.Seek(0, 0)
   197  	var hdr elf.Header32
   198  	var prog elf.Prog32
   199  	var sect elf.Section32
   200  	var buf bytes.Buffer
   201  	binary.Write(&buf, binary.LittleEndian, &hdr)
   202  	off1 := buf.Len()
   203  	binary.Write(&buf, binary.LittleEndian, &prog)
   204  	off2 := buf.Len()
   205  	binary.Write(&buf, binary.LittleEndian, &sect)
   206  	off3 := buf.Len()
   207  	buf.Reset()
   208  	data := byte(elf.ELFDATA2LSB)
   209  	hdr = elf.Header32{
   210  		Ident:     [16]byte{0x7F, 'E', 'L', 'F', 1, data, 1},
   211  		Type:      2,
   212  		Machine:   uint16(elf.EM_ARM),
   213  		Version:   1,
   214  		Entry:     start,
   215  		Phoff:     uint32(off1),
   216  		Shoff:     uint32(off2),
   217  		Flags:     0x05000002,
   218  		Ehsize:    uint16(off1),
   219  		Phentsize: uint16(off2 - off1),
   220  		Phnum:     1,
   221  		Shentsize: uint16(off3 - off2),
   222  		Shnum:     3,
   223  		Shstrndx:  2,
   224  	}
   225  	binary.Write(&buf, binary.LittleEndian, &hdr)
   226  	prog = elf.Prog32{
   227  		Type:   1,
   228  		Off:    start,
   229  		Vaddr:  start,
   230  		Paddr:  start,
   231  		Filesz: uint32(size),
   232  		Memsz:  uint32(size),
   233  		Flags:  5,
   234  		Align:  start,
   235  	}
   236  	binary.Write(&buf, binary.LittleEndian, &prog)
   237  	binary.Write(&buf, binary.LittleEndian, &sect) // NULL section
   238  	sect = elf.Section32{
   239  		Name:      1,
   240  		Type:      uint32(elf.SHT_PROGBITS),
   241  		Addr:      start,
   242  		Off:       start,
   243  		Size:      uint32(size),
   244  		Flags:     uint32(elf.SHF_ALLOC | elf.SHF_EXECINSTR),
   245  		Addralign: 4,
   246  	}
   247  	binary.Write(&buf, binary.LittleEndian, &sect) // .text
   248  	sect = elf.Section32{
   249  		Name:      uint32(len("\x00.text\x00")),
   250  		Type:      uint32(elf.SHT_STRTAB),
   251  		Addr:      0,
   252  		Off:       uint32(off2 + (off3-off2)*3),
   253  		Size:      uint32(len("\x00.text\x00.shstrtab\x00")),
   254  		Addralign: 1,
   255  	}
   256  	binary.Write(&buf, binary.LittleEndian, &sect)
   257  	buf.WriteString("\x00.text\x00.shstrtab\x00")
   258  	f.Write(buf.Bytes())
   259  	return nil
   260  }