github.com/mh-cbon/go@v0.0.0-20160603070303-9e112a3fe4c0/src/cmd/link/internal/amd64/asm.go (about) 1 // Inferno utils/6l/asm.c 2 // http://code.google.com/p/inferno-os/source/browse/utils/6l/asm.c 3 // 4 // Copyright © 1994-1999 Lucent Technologies Inc. All rights reserved. 5 // Portions Copyright © 1995-1997 C H Forsyth (forsyth@terzarima.net) 6 // Portions Copyright © 1997-1999 Vita Nuova Limited 7 // Portions Copyright © 2000-2007 Vita Nuova Holdings Limited (www.vitanuova.com) 8 // Portions Copyright © 2004,2006 Bruce Ellis 9 // Portions Copyright © 2005-2007 C H Forsyth (forsyth@terzarima.net) 10 // Revisions Copyright © 2000-2007 Lucent Technologies Inc. and others 11 // Portions Copyright © 2009 The Go Authors. All rights reserved. 12 // 13 // Permission is hereby granted, free of charge, to any person obtaining a copy 14 // of this software and associated documentation files (the "Software"), to deal 15 // in the Software without restriction, including without limitation the rights 16 // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 17 // copies of the Software, and to permit persons to whom the Software is 18 // furnished to do so, subject to the following conditions: 19 // 20 // The above copyright notice and this permission notice shall be included in 21 // all copies or substantial portions of the Software. 22 // 23 // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 24 // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 25 // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 26 // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 27 // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 28 // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 29 // THE SOFTWARE. 30 31 package amd64 32 33 import ( 34 "cmd/internal/obj" 35 "cmd/link/internal/ld" 36 "debug/elf" 37 "fmt" 38 "log" 39 ) 40 41 func PADDR(x uint32) uint32 { 42 return x &^ 0x80000000 43 } 44 45 func Addcall(ctxt *ld.Link, s *ld.LSym, t *ld.LSym) int64 { 46 s.Attr |= ld.AttrReachable 47 i := s.Size 48 s.Size += 4 49 ld.Symgrow(ctxt, s, s.Size) 50 r := ld.Addrel(s) 51 r.Sym = t 52 r.Off = int32(i) 53 r.Type = obj.R_CALL 54 r.Siz = 4 55 return i + int64(r.Siz) 56 } 57 58 func gentext() { 59 if !ld.DynlinkingGo() { 60 return 61 } 62 addmoduledata := ld.Linklookup(ld.Ctxt, "runtime.addmoduledata", 0) 63 if addmoduledata.Type == obj.STEXT { 64 // we're linking a module containing the runtime -> no need for 65 // an init function 66 return 67 } 68 addmoduledata.Attr |= ld.AttrReachable 69 initfunc := ld.Linklookup(ld.Ctxt, "go.link.addmoduledata", 0) 70 initfunc.Type = obj.STEXT 71 initfunc.Attr |= ld.AttrLocal 72 initfunc.Attr |= ld.AttrReachable 73 o := func(op ...uint8) { 74 for _, op1 := range op { 75 ld.Adduint8(ld.Ctxt, initfunc, op1) 76 } 77 } 78 // 0000000000000000 <local.dso_init>: 79 // 0: 48 8d 3d 00 00 00 00 lea 0x0(%rip),%rdi # 7 <local.dso_init+0x7> 80 // 3: R_X86_64_PC32 runtime.firstmoduledata-0x4 81 o(0x48, 0x8d, 0x3d) 82 ld.Addpcrelplus(ld.Ctxt, initfunc, ld.Ctxt.Moduledata, 0) 83 // 7: e8 00 00 00 00 callq c <local.dso_init+0xc> 84 // 8: R_X86_64_PLT32 runtime.addmoduledata-0x4 85 o(0xe8) 86 Addcall(ld.Ctxt, initfunc, addmoduledata) 87 // c: c3 retq 88 o(0xc3) 89 ld.Ctxt.Textp = append(ld.Ctxt.Textp, initfunc) 90 initarray_entry := ld.Linklookup(ld.Ctxt, "go.link.addmoduledatainit", 0) 91 initarray_entry.Attr |= ld.AttrReachable 92 initarray_entry.Attr |= ld.AttrLocal 93 initarray_entry.Type = obj.SINITARR 94 ld.Addaddr(ld.Ctxt, initarray_entry, initfunc) 95 } 96 97 func adddynrel(s *ld.LSym, r *ld.Reloc) { 98 targ := r.Sym 99 ld.Ctxt.Cursym = s 100 101 switch r.Type { 102 default: 103 if r.Type >= 256 { 104 ld.Diag("unexpected relocation type %d", r.Type) 105 return 106 } 107 108 // Handle relocations found in ELF object files. 109 case 256 + ld.R_X86_64_PC32: 110 if targ.Type == obj.SDYNIMPORT { 111 ld.Diag("unexpected R_X86_64_PC32 relocation for dynamic symbol %s", targ.Name) 112 } 113 if targ.Type == 0 || targ.Type == obj.SXREF { 114 ld.Diag("unknown symbol %s in pcrel", targ.Name) 115 } 116 r.Type = obj.R_PCREL 117 r.Add += 4 118 return 119 120 case 256 + ld.R_X86_64_PLT32: 121 r.Type = obj.R_PCREL 122 r.Add += 4 123 if targ.Type == obj.SDYNIMPORT { 124 addpltsym(targ) 125 r.Sym = ld.Linklookup(ld.Ctxt, ".plt", 0) 126 r.Add += int64(targ.Plt) 127 } 128 129 return 130 131 case 256 + ld.R_X86_64_GOTPCREL, 256 + ld.R_X86_64_GOTPCRELX, 256 + ld.R_X86_64_REX_GOTPCRELX: 132 if targ.Type != obj.SDYNIMPORT { 133 // have symbol 134 if r.Off >= 2 && s.P[r.Off-2] == 0x8b { 135 // turn MOVQ of GOT entry into LEAQ of symbol itself 136 s.P[r.Off-2] = 0x8d 137 138 r.Type = obj.R_PCREL 139 r.Add += 4 140 return 141 } 142 } 143 144 // fall back to using GOT and hope for the best (CMOV*) 145 // TODO: just needs relocation, no need to put in .dynsym 146 addgotsym(targ) 147 148 r.Type = obj.R_PCREL 149 r.Sym = ld.Linklookup(ld.Ctxt, ".got", 0) 150 r.Add += 4 151 r.Add += int64(targ.Got) 152 return 153 154 case 256 + ld.R_X86_64_64: 155 if targ.Type == obj.SDYNIMPORT { 156 ld.Diag("unexpected R_X86_64_64 relocation for dynamic symbol %s", targ.Name) 157 } 158 r.Type = obj.R_ADDR 159 return 160 161 // Handle relocations found in Mach-O object files. 162 case 512 + ld.MACHO_X86_64_RELOC_UNSIGNED*2 + 0, 163 512 + ld.MACHO_X86_64_RELOC_SIGNED*2 + 0, 164 512 + ld.MACHO_X86_64_RELOC_BRANCH*2 + 0: 165 // TODO: What is the difference between all these? 166 r.Type = obj.R_ADDR 167 168 if targ.Type == obj.SDYNIMPORT { 169 ld.Diag("unexpected reloc for dynamic symbol %s", targ.Name) 170 } 171 return 172 173 case 512 + ld.MACHO_X86_64_RELOC_BRANCH*2 + 1: 174 if targ.Type == obj.SDYNIMPORT { 175 addpltsym(targ) 176 r.Sym = ld.Linklookup(ld.Ctxt, ".plt", 0) 177 r.Add = int64(targ.Plt) 178 r.Type = obj.R_PCREL 179 return 180 } 181 fallthrough 182 183 // fall through 184 case 512 + ld.MACHO_X86_64_RELOC_UNSIGNED*2 + 1, 185 512 + ld.MACHO_X86_64_RELOC_SIGNED*2 + 1, 186 512 + ld.MACHO_X86_64_RELOC_SIGNED_1*2 + 1, 187 512 + ld.MACHO_X86_64_RELOC_SIGNED_2*2 + 1, 188 512 + ld.MACHO_X86_64_RELOC_SIGNED_4*2 + 1: 189 r.Type = obj.R_PCREL 190 191 if targ.Type == obj.SDYNIMPORT { 192 ld.Diag("unexpected pc-relative reloc for dynamic symbol %s", targ.Name) 193 } 194 return 195 196 case 512 + ld.MACHO_X86_64_RELOC_GOT_LOAD*2 + 1: 197 if targ.Type != obj.SDYNIMPORT { 198 // have symbol 199 // turn MOVQ of GOT entry into LEAQ of symbol itself 200 if r.Off < 2 || s.P[r.Off-2] != 0x8b { 201 ld.Diag("unexpected GOT_LOAD reloc for non-dynamic symbol %s", targ.Name) 202 return 203 } 204 205 s.P[r.Off-2] = 0x8d 206 r.Type = obj.R_PCREL 207 return 208 } 209 fallthrough 210 211 // fall through 212 case 512 + ld.MACHO_X86_64_RELOC_GOT*2 + 1: 213 if targ.Type != obj.SDYNIMPORT { 214 ld.Diag("unexpected GOT reloc for non-dynamic symbol %s", targ.Name) 215 } 216 addgotsym(targ) 217 r.Type = obj.R_PCREL 218 r.Sym = ld.Linklookup(ld.Ctxt, ".got", 0) 219 r.Add += int64(targ.Got) 220 return 221 } 222 223 // Handle references to ELF symbols from our own object files. 224 if targ.Type != obj.SDYNIMPORT { 225 return 226 } 227 228 switch r.Type { 229 case obj.R_CALL, 230 obj.R_PCREL: 231 if ld.HEADTYPE == obj.Hwindows { 232 // nothing to do, the relocation will be laid out in pereloc1 233 return 234 } else { 235 // for both ELF and Mach-O 236 addpltsym(targ) 237 r.Sym = ld.Linklookup(ld.Ctxt, ".plt", 0) 238 r.Add = int64(targ.Plt) 239 return 240 } 241 242 case obj.R_ADDR: 243 if s.Type == obj.STEXT && ld.Iself { 244 if ld.HEADTYPE == obj.Hsolaris { 245 addpltsym(targ) 246 r.Sym = ld.Linklookup(ld.Ctxt, ".plt", 0) 247 r.Add += int64(targ.Plt) 248 return 249 } 250 // The code is asking for the address of an external 251 // function. We provide it with the address of the 252 // correspondent GOT symbol. 253 addgotsym(targ) 254 255 r.Sym = ld.Linklookup(ld.Ctxt, ".got", 0) 256 r.Add += int64(targ.Got) 257 return 258 } 259 260 if s.Type != obj.SDATA { 261 break 262 } 263 if ld.Iself { 264 ld.Adddynsym(ld.Ctxt, targ) 265 rela := ld.Linklookup(ld.Ctxt, ".rela", 0) 266 ld.Addaddrplus(ld.Ctxt, rela, s, int64(r.Off)) 267 if r.Siz == 8 { 268 ld.Adduint64(ld.Ctxt, rela, ld.ELF64_R_INFO(uint32(targ.Dynid), ld.R_X86_64_64)) 269 } else { 270 ld.Adduint64(ld.Ctxt, rela, ld.ELF64_R_INFO(uint32(targ.Dynid), ld.R_X86_64_32)) 271 } 272 ld.Adduint64(ld.Ctxt, rela, uint64(r.Add)) 273 r.Type = 256 // ignore during relocsym 274 return 275 } 276 277 if ld.HEADTYPE == obj.Hdarwin && s.Size == int64(ld.SysArch.PtrSize) && r.Off == 0 { 278 // Mach-O relocations are a royal pain to lay out. 279 // They use a compact stateful bytecode representation 280 // that is too much bother to deal with. 281 // Instead, interpret the C declaration 282 // void *_Cvar_stderr = &stderr; 283 // as making _Cvar_stderr the name of a GOT entry 284 // for stderr. This is separate from the usual GOT entry, 285 // just in case the C code assigns to the variable, 286 // and of course it only works for single pointers, 287 // but we only need to support cgo and that's all it needs. 288 ld.Adddynsym(ld.Ctxt, targ) 289 290 got := ld.Linklookup(ld.Ctxt, ".got", 0) 291 s.Type = got.Type | obj.SSUB 292 s.Outer = got 293 s.Sub = got.Sub 294 got.Sub = s 295 s.Value = got.Size 296 ld.Adduint64(ld.Ctxt, got, 0) 297 ld.Adduint32(ld.Ctxt, ld.Linklookup(ld.Ctxt, ".linkedit.got", 0), uint32(targ.Dynid)) 298 r.Type = 256 // ignore during relocsym 299 return 300 } 301 302 if ld.HEADTYPE == obj.Hwindows { 303 // nothing to do, the relocation will be laid out in pereloc1 304 return 305 } 306 } 307 308 ld.Ctxt.Cursym = s 309 ld.Diag("unsupported relocation for dynamic symbol %s (type=%d stype=%d)", targ.Name, r.Type, targ.Type) 310 } 311 312 func elfreloc1(r *ld.Reloc, sectoff int64) int { 313 ld.Thearch.Vput(uint64(sectoff)) 314 315 elfsym := r.Xsym.ElfsymForReloc() 316 switch r.Type { 317 default: 318 return -1 319 320 case obj.R_ADDR: 321 if r.Siz == 4 { 322 ld.Thearch.Vput(ld.R_X86_64_32 | uint64(elfsym)<<32) 323 } else if r.Siz == 8 { 324 ld.Thearch.Vput(ld.R_X86_64_64 | uint64(elfsym)<<32) 325 } else { 326 return -1 327 } 328 329 case obj.R_TLS_LE: 330 if r.Siz == 4 { 331 ld.Thearch.Vput(ld.R_X86_64_TPOFF32 | uint64(elfsym)<<32) 332 } else { 333 return -1 334 } 335 336 case obj.R_TLS_IE: 337 if r.Siz == 4 { 338 ld.Thearch.Vput(ld.R_X86_64_GOTTPOFF | uint64(elfsym)<<32) 339 } else { 340 return -1 341 } 342 343 case obj.R_CALL: 344 if r.Siz == 4 { 345 if r.Xsym.Type == obj.SDYNIMPORT { 346 if ld.DynlinkingGo() { 347 ld.Thearch.Vput(ld.R_X86_64_PLT32 | uint64(elfsym)<<32) 348 } else { 349 ld.Thearch.Vput(ld.R_X86_64_GOTPCREL | uint64(elfsym)<<32) 350 } 351 } else { 352 ld.Thearch.Vput(ld.R_X86_64_PC32 | uint64(elfsym)<<32) 353 } 354 } else { 355 return -1 356 } 357 358 case obj.R_PCREL: 359 if r.Siz == 4 { 360 if r.Xsym.Type == obj.SDYNIMPORT && r.Xsym.ElfType == elf.STT_FUNC { 361 ld.Thearch.Vput(ld.R_X86_64_PLT32 | uint64(elfsym)<<32) 362 } else { 363 ld.Thearch.Vput(ld.R_X86_64_PC32 | uint64(elfsym)<<32) 364 } 365 } else { 366 return -1 367 } 368 369 case obj.R_GOTPCREL: 370 if r.Siz == 4 { 371 ld.Thearch.Vput(ld.R_X86_64_GOTPCREL | uint64(elfsym)<<32) 372 } else { 373 return -1 374 } 375 } 376 377 ld.Thearch.Vput(uint64(r.Xadd)) 378 return 0 379 } 380 381 func machoreloc1(r *ld.Reloc, sectoff int64) int { 382 var v uint32 383 384 rs := r.Xsym 385 386 if rs.Type == obj.SHOSTOBJ || r.Type == obj.R_PCREL { 387 if rs.Dynid < 0 { 388 ld.Diag("reloc %d to non-macho symbol %s type=%d", r.Type, rs.Name, rs.Type) 389 return -1 390 } 391 392 v = uint32(rs.Dynid) 393 v |= 1 << 27 // external relocation 394 } else { 395 v = uint32(rs.Sect.Extnum) 396 if v == 0 { 397 ld.Diag("reloc %d to symbol %s in non-macho section %s type=%d", r.Type, rs.Name, rs.Sect.Name, rs.Type) 398 return -1 399 } 400 } 401 402 switch r.Type { 403 default: 404 return -1 405 406 case obj.R_ADDR: 407 v |= ld.MACHO_X86_64_RELOC_UNSIGNED << 28 408 409 case obj.R_CALL: 410 v |= 1 << 24 // pc-relative bit 411 v |= ld.MACHO_X86_64_RELOC_BRANCH << 28 412 413 // NOTE: Only works with 'external' relocation. Forced above. 414 case obj.R_PCREL: 415 v |= 1 << 24 // pc-relative bit 416 v |= ld.MACHO_X86_64_RELOC_SIGNED << 28 417 } 418 419 switch r.Siz { 420 default: 421 return -1 422 423 case 1: 424 v |= 0 << 25 425 426 case 2: 427 v |= 1 << 25 428 429 case 4: 430 v |= 2 << 25 431 432 case 8: 433 v |= 3 << 25 434 } 435 436 ld.Thearch.Lput(uint32(sectoff)) 437 ld.Thearch.Lput(v) 438 return 0 439 } 440 441 func pereloc1(r *ld.Reloc, sectoff int64) bool { 442 var v uint32 443 444 rs := r.Xsym 445 446 if rs.Dynid < 0 { 447 ld.Diag("reloc %d to non-coff symbol %s type=%d", r.Type, rs.Name, rs.Type) 448 return false 449 } 450 451 ld.Thearch.Lput(uint32(sectoff)) 452 ld.Thearch.Lput(uint32(rs.Dynid)) 453 454 switch r.Type { 455 default: 456 return false 457 458 case obj.R_ADDR: 459 if r.Siz == 8 { 460 v = ld.IMAGE_REL_AMD64_ADDR64 461 } else { 462 v = ld.IMAGE_REL_AMD64_ADDR32 463 } 464 465 case obj.R_CALL, 466 obj.R_PCREL: 467 v = ld.IMAGE_REL_AMD64_REL32 468 } 469 470 ld.Thearch.Wput(uint16(v)) 471 472 return true 473 } 474 475 func archreloc(r *ld.Reloc, s *ld.LSym, val *int64) int { 476 return -1 477 } 478 479 func archrelocvariant(r *ld.Reloc, s *ld.LSym, t int64) int64 { 480 log.Fatalf("unexpected relocation variant") 481 return t 482 } 483 484 func elfsetupplt() { 485 plt := ld.Linklookup(ld.Ctxt, ".plt", 0) 486 got := ld.Linklookup(ld.Ctxt, ".got.plt", 0) 487 if plt.Size == 0 { 488 // pushq got+8(IP) 489 ld.Adduint8(ld.Ctxt, plt, 0xff) 490 491 ld.Adduint8(ld.Ctxt, plt, 0x35) 492 ld.Addpcrelplus(ld.Ctxt, plt, got, 8) 493 494 // jmpq got+16(IP) 495 ld.Adduint8(ld.Ctxt, plt, 0xff) 496 497 ld.Adduint8(ld.Ctxt, plt, 0x25) 498 ld.Addpcrelplus(ld.Ctxt, plt, got, 16) 499 500 // nopl 0(AX) 501 ld.Adduint32(ld.Ctxt, plt, 0x00401f0f) 502 503 // assume got->size == 0 too 504 ld.Addaddrplus(ld.Ctxt, got, ld.Linklookup(ld.Ctxt, ".dynamic", 0), 0) 505 506 ld.Adduint64(ld.Ctxt, got, 0) 507 ld.Adduint64(ld.Ctxt, got, 0) 508 } 509 } 510 511 func addpltsym(s *ld.LSym) { 512 if s.Plt >= 0 { 513 return 514 } 515 516 ld.Adddynsym(ld.Ctxt, s) 517 518 if ld.Iself { 519 plt := ld.Linklookup(ld.Ctxt, ".plt", 0) 520 got := ld.Linklookup(ld.Ctxt, ".got.plt", 0) 521 rela := ld.Linklookup(ld.Ctxt, ".rela.plt", 0) 522 if plt.Size == 0 { 523 elfsetupplt() 524 } 525 526 // jmpq *got+size(IP) 527 ld.Adduint8(ld.Ctxt, plt, 0xff) 528 529 ld.Adduint8(ld.Ctxt, plt, 0x25) 530 ld.Addpcrelplus(ld.Ctxt, plt, got, got.Size) 531 532 // add to got: pointer to current pos in plt 533 ld.Addaddrplus(ld.Ctxt, got, plt, plt.Size) 534 535 // pushq $x 536 ld.Adduint8(ld.Ctxt, plt, 0x68) 537 538 ld.Adduint32(ld.Ctxt, plt, uint32((got.Size-24-8)/8)) 539 540 // jmpq .plt 541 ld.Adduint8(ld.Ctxt, plt, 0xe9) 542 543 ld.Adduint32(ld.Ctxt, plt, uint32(-(plt.Size + 4))) 544 545 // rela 546 ld.Addaddrplus(ld.Ctxt, rela, got, got.Size-8) 547 548 ld.Adduint64(ld.Ctxt, rela, ld.ELF64_R_INFO(uint32(s.Dynid), ld.R_X86_64_JMP_SLOT)) 549 ld.Adduint64(ld.Ctxt, rela, 0) 550 551 s.Plt = int32(plt.Size - 16) 552 } else if ld.HEADTYPE == obj.Hdarwin { 553 // To do lazy symbol lookup right, we're supposed 554 // to tell the dynamic loader which library each 555 // symbol comes from and format the link info 556 // section just so. I'm too lazy (ha!) to do that 557 // so for now we'll just use non-lazy pointers, 558 // which don't need to be told which library to use. 559 // 560 // http://networkpx.blogspot.com/2009/09/about-lcdyldinfoonly-command.html 561 // has details about what we're avoiding. 562 563 addgotsym(s) 564 plt := ld.Linklookup(ld.Ctxt, ".plt", 0) 565 566 ld.Adduint32(ld.Ctxt, ld.Linklookup(ld.Ctxt, ".linkedit.plt", 0), uint32(s.Dynid)) 567 568 // jmpq *got+size(IP) 569 s.Plt = int32(plt.Size) 570 571 ld.Adduint8(ld.Ctxt, plt, 0xff) 572 ld.Adduint8(ld.Ctxt, plt, 0x25) 573 ld.Addpcrelplus(ld.Ctxt, plt, ld.Linklookup(ld.Ctxt, ".got", 0), int64(s.Got)) 574 } else { 575 ld.Diag("addpltsym: unsupported binary format") 576 } 577 } 578 579 func addgotsym(s *ld.LSym) { 580 if s.Got >= 0 { 581 return 582 } 583 584 ld.Adddynsym(ld.Ctxt, s) 585 got := ld.Linklookup(ld.Ctxt, ".got", 0) 586 s.Got = int32(got.Size) 587 ld.Adduint64(ld.Ctxt, got, 0) 588 589 if ld.Iself { 590 rela := ld.Linklookup(ld.Ctxt, ".rela", 0) 591 ld.Addaddrplus(ld.Ctxt, rela, got, int64(s.Got)) 592 ld.Adduint64(ld.Ctxt, rela, ld.ELF64_R_INFO(uint32(s.Dynid), ld.R_X86_64_GLOB_DAT)) 593 ld.Adduint64(ld.Ctxt, rela, 0) 594 } else if ld.HEADTYPE == obj.Hdarwin { 595 ld.Adduint32(ld.Ctxt, ld.Linklookup(ld.Ctxt, ".linkedit.got", 0), uint32(s.Dynid)) 596 } else { 597 ld.Diag("addgotsym: unsupported binary format") 598 } 599 } 600 601 func asmb() { 602 if ld.Debug['v'] != 0 { 603 fmt.Fprintf(ld.Bso, "%5.2f asmb\n", obj.Cputime()) 604 } 605 ld.Bso.Flush() 606 607 if ld.Debug['v'] != 0 { 608 fmt.Fprintf(ld.Bso, "%5.2f codeblk\n", obj.Cputime()) 609 } 610 ld.Bso.Flush() 611 612 if ld.Iself { 613 ld.Asmbelfsetup() 614 } 615 616 sect := ld.Segtext.Sect 617 ld.Cseek(int64(sect.Vaddr - ld.Segtext.Vaddr + ld.Segtext.Fileoff)) 618 ld.Codeblk(int64(sect.Vaddr), int64(sect.Length)) 619 for sect = sect.Next; sect != nil; sect = sect.Next { 620 ld.Cseek(int64(sect.Vaddr - ld.Segtext.Vaddr + ld.Segtext.Fileoff)) 621 ld.Datblk(int64(sect.Vaddr), int64(sect.Length)) 622 } 623 624 if ld.Segrodata.Filelen > 0 { 625 if ld.Debug['v'] != 0 { 626 fmt.Fprintf(ld.Bso, "%5.2f rodatblk\n", obj.Cputime()) 627 } 628 ld.Bso.Flush() 629 630 ld.Cseek(int64(ld.Segrodata.Fileoff)) 631 ld.Datblk(int64(ld.Segrodata.Vaddr), int64(ld.Segrodata.Filelen)) 632 } 633 634 if ld.Debug['v'] != 0 { 635 fmt.Fprintf(ld.Bso, "%5.2f datblk\n", obj.Cputime()) 636 } 637 ld.Bso.Flush() 638 639 ld.Cseek(int64(ld.Segdata.Fileoff)) 640 ld.Datblk(int64(ld.Segdata.Vaddr), int64(ld.Segdata.Filelen)) 641 642 ld.Cseek(int64(ld.Segdwarf.Fileoff)) 643 ld.Dwarfblk(int64(ld.Segdwarf.Vaddr), int64(ld.Segdwarf.Filelen)) 644 645 machlink := int64(0) 646 if ld.HEADTYPE == obj.Hdarwin { 647 machlink = ld.Domacholink() 648 } 649 650 switch ld.HEADTYPE { 651 default: 652 ld.Diag("unknown header type %d", ld.HEADTYPE) 653 fallthrough 654 655 case obj.Hplan9: 656 break 657 658 case obj.Hdarwin: 659 ld.Debug['8'] = 1 /* 64-bit addresses */ 660 661 case obj.Hlinux, 662 obj.Hfreebsd, 663 obj.Hnetbsd, 664 obj.Hopenbsd, 665 obj.Hdragonfly, 666 obj.Hsolaris: 667 ld.Debug['8'] = 1 /* 64-bit addresses */ 668 669 case obj.Hnacl, 670 obj.Hwindows: 671 break 672 } 673 674 ld.Symsize = 0 675 ld.Spsize = 0 676 ld.Lcsize = 0 677 symo := int64(0) 678 if ld.Debug['s'] == 0 { 679 if ld.Debug['v'] != 0 { 680 fmt.Fprintf(ld.Bso, "%5.2f sym\n", obj.Cputime()) 681 } 682 ld.Bso.Flush() 683 switch ld.HEADTYPE { 684 default: 685 case obj.Hplan9: 686 ld.Debug['s'] = 1 687 symo = int64(ld.Segdata.Fileoff + ld.Segdata.Filelen) 688 689 case obj.Hdarwin: 690 symo = int64(ld.Segdwarf.Fileoff + uint64(ld.Rnd(int64(ld.Segdwarf.Filelen), int64(ld.INITRND))) + uint64(machlink)) 691 692 case obj.Hlinux, 693 obj.Hfreebsd, 694 obj.Hnetbsd, 695 obj.Hopenbsd, 696 obj.Hdragonfly, 697 obj.Hsolaris, 698 obj.Hnacl: 699 symo = int64(ld.Segdwarf.Fileoff + ld.Segdwarf.Filelen) 700 symo = ld.Rnd(symo, int64(ld.INITRND)) 701 702 case obj.Hwindows: 703 symo = int64(ld.Segdwarf.Fileoff + ld.Segdwarf.Filelen) 704 symo = ld.Rnd(symo, ld.PEFILEALIGN) 705 } 706 707 ld.Cseek(symo) 708 switch ld.HEADTYPE { 709 default: 710 if ld.Iself { 711 ld.Cseek(symo) 712 ld.Asmelfsym() 713 ld.Cflush() 714 ld.Cwrite(ld.Elfstrdat) 715 716 if ld.Debug['v'] != 0 { 717 fmt.Fprintf(ld.Bso, "%5.2f dwarf\n", obj.Cputime()) 718 } 719 720 if ld.Linkmode == ld.LinkExternal { 721 ld.Elfemitreloc() 722 } 723 } 724 725 case obj.Hplan9: 726 ld.Asmplan9sym() 727 ld.Cflush() 728 729 sym := ld.Linklookup(ld.Ctxt, "pclntab", 0) 730 if sym != nil { 731 ld.Lcsize = int32(len(sym.P)) 732 for i := 0; int32(i) < ld.Lcsize; i++ { 733 ld.Cput(sym.P[i]) 734 } 735 736 ld.Cflush() 737 } 738 739 case obj.Hwindows: 740 if ld.Debug['v'] != 0 { 741 fmt.Fprintf(ld.Bso, "%5.2f dwarf\n", obj.Cputime()) 742 } 743 744 case obj.Hdarwin: 745 if ld.Linkmode == ld.LinkExternal { 746 ld.Machoemitreloc() 747 } 748 } 749 } 750 751 if ld.Debug['v'] != 0 { 752 fmt.Fprintf(ld.Bso, "%5.2f headr\n", obj.Cputime()) 753 } 754 ld.Bso.Flush() 755 ld.Cseek(0) 756 switch ld.HEADTYPE { 757 default: 758 case obj.Hplan9: /* plan9 */ 759 magic := int32(4*26*26 + 7) 760 761 magic |= 0x00008000 /* fat header */ 762 ld.Lputb(uint32(magic)) /* magic */ 763 ld.Lputb(uint32(ld.Segtext.Filelen)) /* sizes */ 764 ld.Lputb(uint32(ld.Segdata.Filelen)) 765 ld.Lputb(uint32(ld.Segdata.Length - ld.Segdata.Filelen)) 766 ld.Lputb(uint32(ld.Symsize)) /* nsyms */ 767 vl := ld.Entryvalue() 768 ld.Lputb(PADDR(uint32(vl))) /* va of entry */ 769 ld.Lputb(uint32(ld.Spsize)) /* sp offsets */ 770 ld.Lputb(uint32(ld.Lcsize)) /* line offsets */ 771 ld.Vputb(uint64(vl)) /* va of entry */ 772 773 case obj.Hdarwin: 774 ld.Asmbmacho() 775 776 case obj.Hlinux, 777 obj.Hfreebsd, 778 obj.Hnetbsd, 779 obj.Hopenbsd, 780 obj.Hdragonfly, 781 obj.Hsolaris, 782 obj.Hnacl: 783 ld.Asmbelf(symo) 784 785 case obj.Hwindows: 786 ld.Asmbpe() 787 } 788 789 ld.Cflush() 790 }