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ld.SymKind and objabi.RelocType have string representations, which is human friendly. Prefer to use it. Change-Id: I458ee0ca5866be0db8462c36cd053561a8206c95 Reviewed-on: https://go-review.googlesource.com/55253 Reviewed-by: Ian Lance Taylor <iant@golang.org> Run-TryBot: Ian Lance Taylor <iant@golang.org> TryBot-Result: Gobot Gobot <gobot@golang.org>
539 lines
15 KiB
Go
539 lines
15 KiB
Go
// Inferno utils/5l/asm.c
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// https://bitbucket.org/inferno-os/inferno-os/src/default/utils/5l/asm.c
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//
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// Copyright © 1994-1999 Lucent Technologies Inc. All rights reserved.
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// Portions Copyright © 1995-1997 C H Forsyth (forsyth@terzarima.net)
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// Portions Copyright © 1997-1999 Vita Nuova Limited
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// Portions Copyright © 2000-2007 Vita Nuova Holdings Limited (www.vitanuova.com)
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// Portions Copyright © 2004,2006 Bruce Ellis
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// Portions Copyright © 2005-2007 C H Forsyth (forsyth@terzarima.net)
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// Revisions Copyright © 2000-2007 Lucent Technologies Inc. and others
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// Portions Copyright © 2009 The Go Authors. All rights reserved.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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// THE SOFTWARE.
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package arm64
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import (
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"cmd/internal/objabi"
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"cmd/link/internal/ld"
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"encoding/binary"
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"fmt"
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"log"
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)
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func gentext(ctxt *ld.Link) {
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if !ctxt.DynlinkingGo() {
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return
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}
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addmoduledata := ctxt.Syms.Lookup("runtime.addmoduledata", 0)
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if addmoduledata.Type == ld.STEXT {
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// we're linking a module containing the runtime -> no need for
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// an init function
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return
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}
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addmoduledata.Attr |= ld.AttrReachable
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initfunc := ctxt.Syms.Lookup("go.link.addmoduledata", 0)
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initfunc.Type = ld.STEXT
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initfunc.Attr |= ld.AttrLocal
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initfunc.Attr |= ld.AttrReachable
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o := func(op uint32) {
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ld.Adduint32(ctxt, initfunc, op)
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}
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// 0000000000000000 <local.dso_init>:
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// 0: 90000000 adrp x0, 0 <runtime.firstmoduledata>
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// 0: R_AARCH64_ADR_PREL_PG_HI21 local.moduledata
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// 4: 91000000 add x0, x0, #0x0
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// 4: R_AARCH64_ADD_ABS_LO12_NC local.moduledata
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o(0x90000000)
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o(0x91000000)
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rel := ld.Addrel(initfunc)
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rel.Off = 0
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rel.Siz = 8
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rel.Sym = ctxt.Moduledata
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rel.Type = objabi.R_ADDRARM64
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// 8: 14000000 bl 0 <runtime.addmoduledata>
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// 8: R_AARCH64_CALL26 runtime.addmoduledata
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o(0x14000000)
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rel = ld.Addrel(initfunc)
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rel.Off = 8
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rel.Siz = 4
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rel.Sym = ctxt.Syms.Lookup("runtime.addmoduledata", 0)
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rel.Type = objabi.R_CALLARM64 // Really should be R_AARCH64_JUMP26 but doesn't seem to make any difference
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ctxt.Textp = append(ctxt.Textp, initfunc)
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initarray_entry := ctxt.Syms.Lookup("go.link.addmoduledatainit", 0)
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initarray_entry.Attr |= ld.AttrReachable
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initarray_entry.Attr |= ld.AttrLocal
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initarray_entry.Type = ld.SINITARR
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ld.Addaddr(ctxt, initarray_entry, initfunc)
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}
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func adddynrel(ctxt *ld.Link, s *ld.Symbol, r *ld.Reloc) bool {
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log.Fatalf("adddynrel not implemented")
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return false
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}
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func elfreloc1(ctxt *ld.Link, r *ld.Reloc, sectoff int64) int {
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ld.Thearch.Vput(uint64(sectoff))
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elfsym := r.Xsym.ElfsymForReloc()
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switch r.Type {
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default:
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return -1
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case objabi.R_ADDR:
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switch r.Siz {
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case 4:
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ld.Thearch.Vput(ld.R_AARCH64_ABS32 | uint64(elfsym)<<32)
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case 8:
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ld.Thearch.Vput(ld.R_AARCH64_ABS64 | uint64(elfsym)<<32)
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default:
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return -1
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}
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case objabi.R_ADDRARM64:
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// two relocations: R_AARCH64_ADR_PREL_PG_HI21 and R_AARCH64_ADD_ABS_LO12_NC
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ld.Thearch.Vput(ld.R_AARCH64_ADR_PREL_PG_HI21 | uint64(elfsym)<<32)
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ld.Thearch.Vput(uint64(r.Xadd))
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ld.Thearch.Vput(uint64(sectoff + 4))
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ld.Thearch.Vput(ld.R_AARCH64_ADD_ABS_LO12_NC | uint64(elfsym)<<32)
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case objabi.R_ARM64_TLS_LE:
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ld.Thearch.Vput(ld.R_AARCH64_TLSLE_MOVW_TPREL_G0 | uint64(elfsym)<<32)
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case objabi.R_ARM64_TLS_IE:
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ld.Thearch.Vput(ld.R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21 | uint64(elfsym)<<32)
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ld.Thearch.Vput(uint64(r.Xadd))
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ld.Thearch.Vput(uint64(sectoff + 4))
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ld.Thearch.Vput(ld.R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC | uint64(elfsym)<<32)
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case objabi.R_ARM64_GOTPCREL:
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ld.Thearch.Vput(ld.R_AARCH64_ADR_GOT_PAGE | uint64(elfsym)<<32)
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ld.Thearch.Vput(uint64(r.Xadd))
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ld.Thearch.Vput(uint64(sectoff + 4))
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ld.Thearch.Vput(ld.R_AARCH64_LD64_GOT_LO12_NC | uint64(elfsym)<<32)
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case objabi.R_CALLARM64:
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if r.Siz != 4 {
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return -1
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}
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ld.Thearch.Vput(ld.R_AARCH64_CALL26 | uint64(elfsym)<<32)
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}
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ld.Thearch.Vput(uint64(r.Xadd))
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return 0
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}
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func elfsetupplt(ctxt *ld.Link) {
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// TODO(aram)
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return
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}
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func machoreloc1(s *ld.Symbol, r *ld.Reloc, sectoff int64) int {
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var v uint32
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rs := r.Xsym
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// ld64 has a bug handling MACHO_ARM64_RELOC_UNSIGNED with !extern relocation.
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// see cmd/internal/ld/data.go for details. The workaround is that don't use !extern
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// UNSIGNED relocation at all.
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if rs.Type == ld.SHOSTOBJ || r.Type == objabi.R_CALLARM64 || r.Type == objabi.R_ADDRARM64 || r.Type == objabi.R_ADDR {
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if rs.Dynid < 0 {
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ld.Errorf(s, "reloc %d (%s) to non-macho symbol %s type=%d (%s)", r.Type, r.Type, rs.Name, rs.Type, rs.Type)
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return -1
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}
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v = uint32(rs.Dynid)
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v |= 1 << 27 // external relocation
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} else {
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v = uint32(rs.Sect.Extnum)
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if v == 0 {
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ld.Errorf(s, "reloc %d (%s) to symbol %s in non-macho section %s type=%d (%s)", r.Type, r.Type, rs.Name, rs.Sect.Name, rs.Type, rs.Type)
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return -1
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}
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}
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switch r.Type {
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default:
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return -1
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case objabi.R_ADDR:
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v |= ld.MACHO_ARM64_RELOC_UNSIGNED << 28
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case objabi.R_CALLARM64:
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if r.Xadd != 0 {
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ld.Errorf(s, "ld64 doesn't allow BR26 reloc with non-zero addend: %s+%d", rs.Name, r.Xadd)
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}
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v |= 1 << 24 // pc-relative bit
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v |= ld.MACHO_ARM64_RELOC_BRANCH26 << 28
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case objabi.R_ADDRARM64:
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r.Siz = 4
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// Two relocation entries: MACHO_ARM64_RELOC_PAGEOFF12 MACHO_ARM64_RELOC_PAGE21
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// if r.Xadd is non-zero, add two MACHO_ARM64_RELOC_ADDEND.
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if r.Xadd != 0 {
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ld.Thearch.Lput(uint32(sectoff + 4))
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ld.Thearch.Lput((ld.MACHO_ARM64_RELOC_ADDEND << 28) | (2 << 25) | uint32(r.Xadd&0xffffff))
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}
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ld.Thearch.Lput(uint32(sectoff + 4))
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ld.Thearch.Lput(v | (ld.MACHO_ARM64_RELOC_PAGEOFF12 << 28) | (2 << 25))
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if r.Xadd != 0 {
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ld.Thearch.Lput(uint32(sectoff))
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ld.Thearch.Lput((ld.MACHO_ARM64_RELOC_ADDEND << 28) | (2 << 25) | uint32(r.Xadd&0xffffff))
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}
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v |= 1 << 24 // pc-relative bit
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v |= ld.MACHO_ARM64_RELOC_PAGE21 << 28
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}
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switch r.Siz {
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default:
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return -1
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case 1:
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v |= 0 << 25
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case 2:
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v |= 1 << 25
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case 4:
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v |= 2 << 25
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case 8:
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v |= 3 << 25
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}
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ld.Thearch.Lput(uint32(sectoff))
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ld.Thearch.Lput(v)
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return 0
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}
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func archreloc(ctxt *ld.Link, r *ld.Reloc, s *ld.Symbol, val *int64) int {
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if ld.Linkmode == ld.LinkExternal {
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switch r.Type {
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default:
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return -1
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case objabi.R_ARM64_GOTPCREL:
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var o1, o2 uint32
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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o1 = uint32(*val >> 32)
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o2 = uint32(*val)
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} else {
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o1 = uint32(*val)
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o2 = uint32(*val >> 32)
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}
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// Any relocation against a function symbol is redirected to
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// be against a local symbol instead (see putelfsym in
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// symtab.go) but unfortunately the system linker was buggy
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// when confronted with a R_AARCH64_ADR_GOT_PAGE relocation
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// against a local symbol until May 2015
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// (https://sourceware.org/bugzilla/show_bug.cgi?id=18270). So
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// we convert the adrp; ld64 + R_ARM64_GOTPCREL into adrp;
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// add + R_ADDRARM64.
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if !(r.Sym.Version != 0 || (r.Sym.Type&ld.SHIDDEN != 0) || r.Sym.Attr.Local()) && r.Sym.Type == ld.STEXT && ctxt.DynlinkingGo() {
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if o2&0xffc00000 != 0xf9400000 {
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ld.Errorf(s, "R_ARM64_GOTPCREL against unexpected instruction %x", o2)
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}
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o2 = 0x91000000 | (o2 & 0x000003ff)
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r.Type = objabi.R_ADDRARM64
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}
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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*val = int64(o1)<<32 | int64(o2)
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} else {
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*val = int64(o2)<<32 | int64(o1)
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}
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fallthrough
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case objabi.R_ADDRARM64:
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r.Done = 0
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// set up addend for eventual relocation via outer symbol.
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rs := r.Sym
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r.Xadd = r.Add
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for rs.Outer != nil {
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r.Xadd += ld.Symaddr(rs) - ld.Symaddr(rs.Outer)
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rs = rs.Outer
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}
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if rs.Type != ld.SHOSTOBJ && rs.Type != ld.SDYNIMPORT && rs.Sect == nil {
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ld.Errorf(s, "missing section for %s", rs.Name)
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}
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r.Xsym = rs
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// Note: ld64 currently has a bug that any non-zero addend for BR26 relocation
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// will make the linking fail because it thinks the code is not PIC even though
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// the BR26 relocation should be fully resolved at link time.
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// That is the reason why the next if block is disabled. When the bug in ld64
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// is fixed, we can enable this block and also enable duff's device in cmd/7g.
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if false && ld.Headtype == objabi.Hdarwin {
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var o0, o1 uint32
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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o0 = uint32(*val >> 32)
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o1 = uint32(*val)
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} else {
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o0 = uint32(*val)
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o1 = uint32(*val >> 32)
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}
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// Mach-O wants the addend to be encoded in the instruction
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// Note that although Mach-O supports ARM64_RELOC_ADDEND, it
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// can only encode 24-bit of signed addend, but the instructions
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// supports 33-bit of signed addend, so we always encode the
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// addend in place.
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o0 |= (uint32((r.Xadd>>12)&3) << 29) | (uint32((r.Xadd>>12>>2)&0x7ffff) << 5)
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o1 |= uint32(r.Xadd&0xfff) << 10
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r.Xadd = 0
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// when laid out, the instruction order must always be o1, o2.
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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*val = int64(o0)<<32 | int64(o1)
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} else {
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*val = int64(o1)<<32 | int64(o0)
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}
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}
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return 0
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case objabi.R_CALLARM64,
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objabi.R_ARM64_TLS_LE,
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objabi.R_ARM64_TLS_IE:
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r.Done = 0
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r.Xsym = r.Sym
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r.Xadd = r.Add
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return 0
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}
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}
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switch r.Type {
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case objabi.R_CONST:
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*val = r.Add
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return 0
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case objabi.R_GOTOFF:
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*val = ld.Symaddr(r.Sym) + r.Add - ld.Symaddr(ctxt.Syms.Lookup(".got", 0))
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return 0
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case objabi.R_ADDRARM64:
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t := ld.Symaddr(r.Sym) + r.Add - ((s.Value + int64(r.Off)) &^ 0xfff)
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if t >= 1<<32 || t < -1<<32 {
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ld.Errorf(s, "program too large, address relocation distance = %d", t)
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}
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var o0, o1 uint32
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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o0 = uint32(*val >> 32)
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o1 = uint32(*val)
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} else {
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o0 = uint32(*val)
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o1 = uint32(*val >> 32)
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}
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o0 |= (uint32((t>>12)&3) << 29) | (uint32((t>>12>>2)&0x7ffff) << 5)
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o1 |= uint32(t&0xfff) << 10
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// when laid out, the instruction order must always be o1, o2.
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if ctxt.Arch.ByteOrder == binary.BigEndian {
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*val = int64(o0)<<32 | int64(o1)
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} else {
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*val = int64(o1)<<32 | int64(o0)
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}
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return 0
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case objabi.R_ARM64_TLS_LE:
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r.Done = 0
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if ld.Headtype != objabi.Hlinux {
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ld.Errorf(s, "TLS reloc on unsupported OS %v", ld.Headtype)
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}
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// The TCB is two pointers. This is not documented anywhere, but is
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// de facto part of the ABI.
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v := r.Sym.Value + int64(2*ld.SysArch.PtrSize)
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if v < 0 || v >= 32678 {
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ld.Errorf(s, "TLS offset out of range %d", v)
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}
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*val |= v << 5
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return 0
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case objabi.R_CALLARM64:
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t := (ld.Symaddr(r.Sym) + r.Add) - (s.Value + int64(r.Off))
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if t >= 1<<27 || t < -1<<27 {
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ld.Errorf(s, "program too large, call relocation distance = %d", t)
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}
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*val |= (t >> 2) & 0x03ffffff
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return 0
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}
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return -1
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}
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func archrelocvariant(ctxt *ld.Link, r *ld.Reloc, s *ld.Symbol, t int64) int64 {
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log.Fatalf("unexpected relocation variant")
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return -1
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}
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func asmb(ctxt *ld.Link) {
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if ctxt.Debugvlog != 0 {
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ctxt.Logf("%5.2f asmb\n", ld.Cputime())
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}
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if ld.Iself {
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ld.Asmbelfsetup()
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}
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sect := ld.Segtext.Sections[0]
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ld.Cseek(int64(sect.Vaddr - ld.Segtext.Vaddr + ld.Segtext.Fileoff))
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ld.Codeblk(ctxt, int64(sect.Vaddr), int64(sect.Length))
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for _, sect = range ld.Segtext.Sections[1:] {
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ld.Cseek(int64(sect.Vaddr - ld.Segtext.Vaddr + ld.Segtext.Fileoff))
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ld.Datblk(ctxt, int64(sect.Vaddr), int64(sect.Length))
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}
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if ld.Segrodata.Filelen > 0 {
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if ctxt.Debugvlog != 0 {
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ctxt.Logf("%5.2f rodatblk\n", ld.Cputime())
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}
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ld.Cseek(int64(ld.Segrodata.Fileoff))
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ld.Datblk(ctxt, int64(ld.Segrodata.Vaddr), int64(ld.Segrodata.Filelen))
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}
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if ld.Segrelrodata.Filelen > 0 {
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if ctxt.Debugvlog != 0 {
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ctxt.Logf("%5.2f relrodatblk\n", ld.Cputime())
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}
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ld.Cseek(int64(ld.Segrelrodata.Fileoff))
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ld.Datblk(ctxt, int64(ld.Segrelrodata.Vaddr), int64(ld.Segrelrodata.Filelen))
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}
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if ctxt.Debugvlog != 0 {
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ctxt.Logf("%5.2f datblk\n", ld.Cputime())
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}
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ld.Cseek(int64(ld.Segdata.Fileoff))
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ld.Datblk(ctxt, int64(ld.Segdata.Vaddr), int64(ld.Segdata.Filelen))
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ld.Cseek(int64(ld.Segdwarf.Fileoff))
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ld.Dwarfblk(ctxt, int64(ld.Segdwarf.Vaddr), int64(ld.Segdwarf.Filelen))
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machlink := uint32(0)
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if ld.Headtype == objabi.Hdarwin {
|
|
machlink = uint32(ld.Domacholink(ctxt))
|
|
}
|
|
|
|
/* output symbol table */
|
|
ld.Symsize = 0
|
|
|
|
ld.Lcsize = 0
|
|
symo := uint32(0)
|
|
if !*ld.FlagS {
|
|
// TODO: rationalize
|
|
if ctxt.Debugvlog != 0 {
|
|
ctxt.Logf("%5.2f sym\n", ld.Cputime())
|
|
}
|
|
switch ld.Headtype {
|
|
default:
|
|
if ld.Iself {
|
|
symo = uint32(ld.Segdwarf.Fileoff + ld.Segdwarf.Filelen)
|
|
symo = uint32(ld.Rnd(int64(symo), int64(*ld.FlagRound)))
|
|
}
|
|
|
|
case objabi.Hplan9:
|
|
symo = uint32(ld.Segdata.Fileoff + ld.Segdata.Filelen)
|
|
|
|
case objabi.Hdarwin:
|
|
symo = uint32(ld.Segdwarf.Fileoff + uint64(ld.Rnd(int64(ld.Segdwarf.Filelen), int64(*ld.FlagRound))) + uint64(machlink))
|
|
}
|
|
|
|
ld.Cseek(int64(symo))
|
|
switch ld.Headtype {
|
|
default:
|
|
if ld.Iself {
|
|
if ctxt.Debugvlog != 0 {
|
|
ctxt.Logf("%5.2f elfsym\n", ld.Cputime())
|
|
}
|
|
ld.Asmelfsym(ctxt)
|
|
ld.Cflush()
|
|
ld.Cwrite(ld.Elfstrdat)
|
|
|
|
if ld.Linkmode == ld.LinkExternal {
|
|
ld.Elfemitreloc(ctxt)
|
|
}
|
|
}
|
|
|
|
case objabi.Hplan9:
|
|
ld.Asmplan9sym(ctxt)
|
|
ld.Cflush()
|
|
|
|
sym := ctxt.Syms.Lookup("pclntab", 0)
|
|
if sym != nil {
|
|
ld.Lcsize = int32(len(sym.P))
|
|
for i := 0; int32(i) < ld.Lcsize; i++ {
|
|
ld.Cput(sym.P[i])
|
|
}
|
|
|
|
ld.Cflush()
|
|
}
|
|
|
|
case objabi.Hdarwin:
|
|
if ld.Linkmode == ld.LinkExternal {
|
|
ld.Machoemitreloc(ctxt)
|
|
}
|
|
}
|
|
}
|
|
|
|
if ctxt.Debugvlog != 0 {
|
|
ctxt.Logf("%5.2f header\n", ld.Cputime())
|
|
}
|
|
ld.Cseek(0)
|
|
switch ld.Headtype {
|
|
default:
|
|
case objabi.Hplan9: /* plan 9 */
|
|
ld.Thearch.Lput(0x647) /* magic */
|
|
ld.Thearch.Lput(uint32(ld.Segtext.Filelen)) /* sizes */
|
|
ld.Thearch.Lput(uint32(ld.Segdata.Filelen))
|
|
ld.Thearch.Lput(uint32(ld.Segdata.Length - ld.Segdata.Filelen))
|
|
ld.Thearch.Lput(uint32(ld.Symsize)) /* nsyms */
|
|
ld.Thearch.Lput(uint32(ld.Entryvalue(ctxt))) /* va of entry */
|
|
ld.Thearch.Lput(0)
|
|
ld.Thearch.Lput(uint32(ld.Lcsize))
|
|
|
|
case objabi.Hlinux,
|
|
objabi.Hfreebsd,
|
|
objabi.Hnetbsd,
|
|
objabi.Hopenbsd,
|
|
objabi.Hnacl:
|
|
ld.Asmbelf(ctxt, int64(symo))
|
|
|
|
case objabi.Hdarwin:
|
|
ld.Asmbmacho(ctxt)
|
|
}
|
|
|
|
ld.Cflush()
|
|
if *ld.FlagC {
|
|
fmt.Printf("textsize=%d\n", ld.Segtext.Filelen)
|
|
fmt.Printf("datsize=%d\n", ld.Segdata.Filelen)
|
|
fmt.Printf("bsssize=%d\n", ld.Segdata.Length-ld.Segdata.Filelen)
|
|
fmt.Printf("symsize=%d\n", ld.Symsize)
|
|
fmt.Printf("lcsize=%d\n", ld.Lcsize)
|
|
fmt.Printf("total=%d\n", ld.Segtext.Filelen+ld.Segdata.Length+uint64(ld.Symsize)+uint64(ld.Lcsize))
|
|
}
|
|
}
|