github.com/FenixAra/go@v0.0.0-20170127160404-96ea0918e670/src/cmd/internal/obj/data.go (about)

     1  // Derived from Inferno utils/6l/obj.c and utils/6l/span.c
     2  // https://bitbucket.org/inferno-os/inferno-os/src/default/utils/6l/obj.c
     3  // https://bitbucket.org/inferno-os/inferno-os/src/default/utils/6l/span.c
     4  //
     5  //	Copyright © 1994-1999 Lucent Technologies Inc.  All rights reserved.
     6  //	Portions Copyright © 1995-1997 C H Forsyth (forsyth@terzarima.net)
     7  //	Portions Copyright © 1997-1999 Vita Nuova Limited
     8  //	Portions Copyright © 2000-2007 Vita Nuova Holdings Limited (www.vitanuova.com)
     9  //	Portions Copyright © 2004,2006 Bruce Ellis
    10  //	Portions Copyright © 2005-2007 C H Forsyth (forsyth@terzarima.net)
    11  //	Revisions Copyright © 2000-2007 Lucent Technologies Inc. and others
    12  //	Portions Copyright © 2009 The Go Authors. All rights reserved.
    13  //
    14  // Permission is hereby granted, free of charge, to any person obtaining a copy
    15  // of this software and associated documentation files (the "Software"), to deal
    16  // in the Software without restriction, including without limitation the rights
    17  // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
    18  // copies of the Software, and to permit persons to whom the Software is
    19  // furnished to do so, subject to the following conditions:
    20  //
    21  // The above copyright notice and this permission notice shall be included in
    22  // all copies or substantial portions of the Software.
    23  //
    24  // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
    25  // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
    26  // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL THE
    27  // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
    28  // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
    29  // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
    30  // THE SOFTWARE.
    31  
    32  package obj
    33  
    34  import (
    35  	"log"
    36  	"math"
    37  )
    38  
    39  // Grow increases the length of s.P to lsiz.
    40  func (s *LSym) Grow(lsiz int64) {
    41  	siz := int(lsiz)
    42  	if int64(siz) != lsiz {
    43  		log.Fatalf("LSym.Grow size %d too long", lsiz)
    44  	}
    45  	if len(s.P) >= siz {
    46  		return
    47  	}
    48  	// TODO(dfc) append cap-len at once, rather than
    49  	// one byte at a time.
    50  	for cap(s.P) < siz {
    51  		s.P = append(s.P[:cap(s.P)], 0)
    52  	}
    53  	s.P = s.P[:siz]
    54  }
    55  
    56  // GrowCap increases the capacity of s.P to c.
    57  func (s *LSym) GrowCap(c int64) {
    58  	if int64(cap(s.P)) >= c {
    59  		return
    60  	}
    61  	if s.P == nil {
    62  		s.P = make([]byte, 0, c)
    63  		return
    64  	}
    65  	b := make([]byte, len(s.P), c)
    66  	copy(b, s.P)
    67  	s.P = b
    68  }
    69  
    70  // prepwrite prepares to write data of size siz into s at offset off.
    71  func (s *LSym) prepwrite(ctxt *Link, off int64, siz int) {
    72  	if off < 0 || siz < 0 || off >= 1<<30 {
    73  		log.Fatalf("prepwrite: bad off=%d siz=%d", off, siz)
    74  	}
    75  	if s.Type == SBSS || s.Type == STLSBSS {
    76  		ctxt.Diag("cannot supply data for BSS var")
    77  	}
    78  	l := off + int64(siz)
    79  	s.Grow(l)
    80  	if l > s.Size {
    81  		s.Size = l
    82  	}
    83  }
    84  
    85  // WriteFloat32 writes f into s at offset off.
    86  func (s *LSym) WriteFloat32(ctxt *Link, off int64, f float32) {
    87  	s.prepwrite(ctxt, off, 4)
    88  	ctxt.Arch.ByteOrder.PutUint32(s.P[off:], math.Float32bits(f))
    89  }
    90  
    91  // WriteFloat64 writes f into s at offset off.
    92  func (s *LSym) WriteFloat64(ctxt *Link, off int64, f float64) {
    93  	s.prepwrite(ctxt, off, 8)
    94  	ctxt.Arch.ByteOrder.PutUint64(s.P[off:], math.Float64bits(f))
    95  }
    96  
    97  // WriteInt writes an integer i of size siz into s at offset off.
    98  func (s *LSym) WriteInt(ctxt *Link, off int64, siz int, i int64) {
    99  	s.prepwrite(ctxt, off, siz)
   100  	switch siz {
   101  	default:
   102  		ctxt.Diag("WriteInt: bad integer size: %d", siz)
   103  	case 1:
   104  		s.P[off] = byte(i)
   105  	case 2:
   106  		ctxt.Arch.ByteOrder.PutUint16(s.P[off:], uint16(i))
   107  	case 4:
   108  		ctxt.Arch.ByteOrder.PutUint32(s.P[off:], uint32(i))
   109  	case 8:
   110  		ctxt.Arch.ByteOrder.PutUint64(s.P[off:], uint64(i))
   111  	}
   112  }
   113  
   114  // WriteAddr writes an address of size siz into s at offset off.
   115  // rsym and roff specify the relocation for the address.
   116  func (s *LSym) WriteAddr(ctxt *Link, off int64, siz int, rsym *LSym, roff int64) {
   117  	if siz != ctxt.Arch.PtrSize {
   118  		ctxt.Diag("WriteAddr: bad address size %d in %s", siz, s.Name)
   119  	}
   120  	s.prepwrite(ctxt, off, siz)
   121  	r := Addrel(s)
   122  	r.Off = int32(off)
   123  	if int64(r.Off) != off {
   124  		ctxt.Diag("WriteAddr: off overflow %d in %s", off, s.Name)
   125  	}
   126  	r.Siz = uint8(siz)
   127  	r.Sym = rsym
   128  	r.Type = R_ADDR
   129  	r.Add = roff
   130  }
   131  
   132  // WriteOff writes a 4 byte offset to rsym+roff into s at offset off.
   133  // After linking the 4 bytes stored at s+off will be
   134  // rsym+roff-(start of section that s is in).
   135  func (s *LSym) WriteOff(ctxt *Link, off int64, rsym *LSym, roff int64) {
   136  	s.prepwrite(ctxt, off, 4)
   137  	r := Addrel(s)
   138  	r.Off = int32(off)
   139  	if int64(r.Off) != off {
   140  		ctxt.Diag("WriteOff: off overflow %d in %s", off, s.Name)
   141  	}
   142  	r.Siz = 4
   143  	r.Sym = rsym
   144  	r.Type = R_ADDROFF
   145  	r.Add = roff
   146  }
   147  
   148  // WriteWeakOff writes a weak 4 byte offset to rsym+roff into s at offset off.
   149  // After linking the 4 bytes stored at s+off will be
   150  // rsym+roff-(start of section that s is in).
   151  func (s *LSym) WriteWeakOff(ctxt *Link, off int64, rsym *LSym, roff int64) {
   152  	s.prepwrite(ctxt, off, 4)
   153  	r := Addrel(s)
   154  	r.Off = int32(off)
   155  	if int64(r.Off) != off {
   156  		ctxt.Diag("WriteOff: off overflow %d in %s", off, s.Name)
   157  	}
   158  	r.Siz = 4
   159  	r.Sym = rsym
   160  	r.Type = R_WEAKADDROFF
   161  	r.Add = roff
   162  }
   163  
   164  // WriteString writes a string of size siz into s at offset off.
   165  func (s *LSym) WriteString(ctxt *Link, off int64, siz int, str string) {
   166  	if siz < len(str) {
   167  		ctxt.Diag("WriteString: bad string size: %d < %d", siz, len(str))
   168  	}
   169  	s.prepwrite(ctxt, off, siz)
   170  	copy(s.P[off:off+int64(siz)], str)
   171  }
   172  
   173  // WriteBytes writes a slice of bytes into s at offset off.
   174  func (s *LSym) WriteBytes(ctxt *Link, off int64, b []byte) int64 {
   175  	s.prepwrite(ctxt, off, len(b))
   176  	copy(s.P[off:], b)
   177  	return off + int64(len(b))
   178  }
   179  
   180  func Addrel(s *LSym) *Reloc {
   181  	s.R = append(s.R, Reloc{})
   182  	return &s.R[len(s.R)-1]
   183  }
   184  
   185  func Setuintxx(ctxt *Link, s *LSym, off int64, v uint64, wid int64) int64 {
   186  	if s.Type == 0 {
   187  		s.Type = SDATA
   188  	}
   189  	if s.Size < off+wid {
   190  		s.Size = off + wid
   191  		s.Grow(s.Size)
   192  	}
   193  
   194  	switch wid {
   195  	case 1:
   196  		s.P[off] = uint8(v)
   197  	case 2:
   198  		ctxt.Arch.ByteOrder.PutUint16(s.P[off:], uint16(v))
   199  	case 4:
   200  		ctxt.Arch.ByteOrder.PutUint32(s.P[off:], uint32(v))
   201  	case 8:
   202  		ctxt.Arch.ByteOrder.PutUint64(s.P[off:], v)
   203  	}
   204  
   205  	return off + wid
   206  }