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Daniel Dunbarfb4a6b32009-08-21 09:11:24 +00001//===- lib/MC/MCAssembler.cpp - Assembler Backend Implementation ----------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Daniel Dunbar0adcd352009-08-25 21:10:45 +000010#define DEBUG_TYPE "assembler"
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000011#include "llvm/MC/MCAssembler.h"
Daniel Dunbar18ff2cc2010-03-11 05:53:33 +000012#include "llvm/MC/MCAsmLayout.h"
Daniel Dunbarb36052f2010-03-19 10:43:23 +000013#include "llvm/MC/MCCodeEmitter.h"
Daniel Dunbar1253a6f2009-10-16 01:58:03 +000014#include "llvm/MC/MCExpr.h"
Daniel Dunbar53b23382010-03-19 09:28:59 +000015#include "llvm/MC/MCObjectWriter.h"
Daniel Dunbar1253a6f2009-10-16 01:58:03 +000016#include "llvm/MC/MCSymbol.h"
17#include "llvm/MC/MCValue.h"
Daniel Dunbar1a9158c2010-03-19 10:43:26 +000018#include "llvm/ADT/OwningPtr.h"
Daniel Dunbar0adcd352009-08-25 21:10:45 +000019#include "llvm/ADT/Statistic.h"
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +000020#include "llvm/ADT/StringExtras.h"
Daniel Dunbard6f761e2009-08-21 23:07:38 +000021#include "llvm/ADT/Twine.h"
Daniel Dunbarac2884a2010-03-25 22:49:09 +000022#include "llvm/Support/Debug.h"
Daniel Dunbar0705fbf2009-08-21 18:29:01 +000023#include "llvm/Support/ErrorHandling.h"
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000024#include "llvm/Support/raw_ostream.h"
Daniel Dunbaree0d8922010-03-13 22:10:17 +000025#include "llvm/Target/TargetRegistry.h"
Daniel Dunbardf3c8f22010-03-12 21:00:49 +000026#include "llvm/Target/TargetAsmBackend.h"
Daniel Dunbarf6346762010-02-13 09:29:02 +000027
Chris Lattner23132b12009-08-24 03:52:50 +000028#include <vector>
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000029using namespace llvm;
30
Daniel Dunbarff547842010-03-23 23:47:14 +000031namespace {
32namespace stats {
Daniel Dunbar0adcd352009-08-25 21:10:45 +000033STATISTIC(EmittedFragments, "Number of emitted assembler fragments");
Daniel Dunbarff547842010-03-23 23:47:14 +000034STATISTIC(EvaluateFixup, "Number of evaluated fixups");
Daniel Dunbarac2884a2010-03-25 22:49:09 +000035STATISTIC(FragmentLayouts, "Number of fragment layouts");
Daniel Dunbarff547842010-03-23 23:47:14 +000036STATISTIC(ObjectBytes, "Number of emitted object file bytes");
Daniel Dunbarac2884a2010-03-25 22:49:09 +000037STATISTIC(RelaxationSteps, "Number of assembler layout and relaxation steps");
38STATISTIC(RelaxedInstructions, "Number of relaxed instructions");
39STATISTIC(SectionLayouts, "Number of section layouts");
Daniel Dunbarff547842010-03-23 23:47:14 +000040}
41}
Daniel Dunbar0adcd352009-08-25 21:10:45 +000042
Daniel Dunbar8f4d1462009-08-28 07:08:35 +000043// FIXME FIXME FIXME: There are number of places in this file where we convert
44// what is a 64-bit assembler value used for computation into a value in the
45// object file, which may truncate it. We should detect that truncation where
46// invalid and report errors back.
47
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +000048/* *** */
49
Daniel Dunbar9005d452010-05-14 00:37:21 +000050MCAsmLayout::MCAsmLayout(MCAssembler &Asm)
51 : Assembler(Asm), LastValidFragment(0)
52 {
Daniel Dunbarbc1a0cf2010-05-12 15:42:59 +000053 // Compute the section layout order. Virtual sections must go last.
54 for (MCAssembler::iterator it = Asm.begin(), ie = Asm.end(); it != ie; ++it)
55 if (!Asm.getBackend().isVirtualSection(it->getSection()))
56 SectionOrder.push_back(&*it);
57 for (MCAssembler::iterator it = Asm.begin(), ie = Asm.end(); it != ie; ++it)
58 if (Asm.getBackend().isVirtualSection(it->getSection()))
59 SectionOrder.push_back(&*it);
60}
61
Daniel Dunbar9005d452010-05-14 00:37:21 +000062bool MCAsmLayout::isSectionUpToDate(const MCSectionData *SD) const {
63 // The first section is always up-to-date.
64 unsigned Index = SD->getLayoutOrder();
65 if (!Index)
66 return true;
67
68 // Otherwise, sections are always implicitly computed when the preceeding
69 // fragment is layed out.
70 const MCSectionData *Prev = getSectionOrder()[Index - 1];
71 return isFragmentUpToDate(&(Prev->getFragmentList().back()));
72}
73
74bool MCAsmLayout::isFragmentUpToDate(const MCFragment *F) const {
75 return (LastValidFragment &&
76 F->getLayoutOrder() <= LastValidFragment->getLayoutOrder());
77}
78
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +000079void MCAsmLayout::UpdateForSlide(MCFragment *F, int SlideAmount) {
Daniel Dunbar47b3ec42010-05-14 00:51:14 +000080 // If this fragment wasn't already up-to-date, we don't need to do anything.
81 if (!isFragmentUpToDate(F))
82 return;
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +000083
Daniel Dunbar47b3ec42010-05-14 00:51:14 +000084 // Otherwise, reset the last valid fragment to the predecessor of the
85 // invalidated fragment.
86 LastValidFragment = F->getPrevNode();
87 if (!LastValidFragment) {
88 unsigned Index = F->getParent()->getLayoutOrder();
89 if (Index != 0) {
90 MCSectionData *Prev = getSectionOrder()[Index - 1];
91 LastValidFragment = &(Prev->getFragmentList().back());
92 }
93 }
94}
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +000095
Daniel Dunbar47b3ec42010-05-14 00:51:14 +000096void MCAsmLayout::EnsureValid(const MCFragment *F) const {
97 // Advance the layout position until the fragment is up-to-date.
98 while (!isFragmentUpToDate(F)) {
99 // Advance to the next fragment.
100 MCFragment *Cur = LastValidFragment;
101 if (Cur)
102 Cur = Cur->getNextNode();
103 if (!Cur) {
104 unsigned NextIndex = 0;
105 if (LastValidFragment)
106 NextIndex = LastValidFragment->getParent()->getLayoutOrder() + 1;
107 Cur = SectionOrder[NextIndex]->begin();
108 }
109
110 const_cast<MCAsmLayout*>(this)->LayoutFragment(Cur);
111 }
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +0000112}
113
Daniel Dunbaraa0d3502010-05-13 08:43:31 +0000114void MCAsmLayout::FragmentReplaced(MCFragment *Src, MCFragment *Dst) {
Daniel Dunbar9005d452010-05-14 00:37:21 +0000115 if (LastValidFragment == Src)
116 LastValidFragment = Dst;
117
Daniel Dunbaraa0d3502010-05-13 08:43:31 +0000118 Dst->Offset = Src->Offset;
119 Dst->EffectiveSize = Src->EffectiveSize;
120}
121
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000122uint64_t MCAsmLayout::getFragmentAddress(const MCFragment *F) const {
Daniel Dunbar7c3d45a2010-03-25 01:03:24 +0000123 assert(F->getParent() && "Missing section()!");
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000124 return getSectionAddress(F->getParent()) + getFragmentOffset(F);
125}
126
127uint64_t MCAsmLayout::getFragmentEffectiveSize(const MCFragment *F) const {
Daniel Dunbar47b3ec42010-05-14 00:51:14 +0000128 EnsureValid(F);
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000129 assert(F->EffectiveSize != ~UINT64_C(0) && "Address not set!");
130 return F->EffectiveSize;
131}
132
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000133uint64_t MCAsmLayout::getFragmentOffset(const MCFragment *F) const {
Daniel Dunbar47b3ec42010-05-14 00:51:14 +0000134 EnsureValid(F);
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000135 assert(F->Offset != ~UINT64_C(0) && "Address not set!");
136 return F->Offset;
137}
138
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000139uint64_t MCAsmLayout::getSymbolAddress(const MCSymbolData *SD) const {
Daniel Dunbar7c3d45a2010-03-25 01:03:24 +0000140 assert(SD->getFragment() && "Invalid getAddress() on undefined symbol!");
141 return getFragmentAddress(SD->getFragment()) + SD->getOffset();
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000142}
143
144uint64_t MCAsmLayout::getSectionAddress(const MCSectionData *SD) const {
Daniel Dunbar47b3ec42010-05-14 00:51:14 +0000145 EnsureValid(SD->begin());
Daniel Dunbar7c3d45a2010-03-25 01:03:24 +0000146 assert(SD->Address != ~UINT64_C(0) && "Address not set!");
147 return SD->Address;
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000148}
149
Daniel Dunbar2661f112010-05-13 03:19:50 +0000150uint64_t MCAsmLayout::getSectionAddressSize(const MCSectionData *SD) const {
Daniel Dunbarafc6acd2010-05-14 00:37:11 +0000151 // The size is the last fragment's end offset.
Daniel Dunbar2661f112010-05-13 03:19:50 +0000152 const MCFragment &F = SD->getFragmentList().back();
153 return getFragmentOffset(&F) + getFragmentEffectiveSize(&F);
Daniel Dunbar5d428512010-03-25 02:00:07 +0000154}
155
156uint64_t MCAsmLayout::getSectionFileSize(const MCSectionData *SD) const {
Daniel Dunbar2661f112010-05-13 03:19:50 +0000157 // Virtual sections have no file size.
158 if (getAssembler().getBackend().isVirtualSection(SD->getSection()))
159 return 0;
160
161 // Otherwise, the file size is the same as the address space size.
162 return getSectionAddressSize(SD);
Daniel Dunbar5d428512010-03-25 02:00:07 +0000163}
164
Daniel Dunbar2661f112010-05-13 03:19:50 +0000165uint64_t MCAsmLayout::getSectionSize(const MCSectionData *SD) const {
Daniel Dunbar2661f112010-05-13 03:19:50 +0000166 // The logical size is the address space size minus any tail padding.
167 uint64_t Size = getSectionAddressSize(SD);
168 const MCAlignFragment *AF =
169 dyn_cast<MCAlignFragment>(&(SD->getFragmentList().back()));
170 if (AF && AF->hasOnlyAlignAddress())
171 Size -= getFragmentEffectiveSize(AF);
172
173 return Size;
Daniel Dunbarb5844ff2010-05-13 01:10:22 +0000174}
175
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000176/* *** */
177
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000178MCFragment::MCFragment() : Kind(FragmentType(~0)) {
179}
180
Daniel Dunbar5e835962009-08-26 02:48:04 +0000181MCFragment::MCFragment(FragmentType _Kind, MCSectionData *_Parent)
Daniel Dunbar071f73d2010-05-10 22:45:09 +0000182 : Kind(_Kind), Parent(_Parent), Atom(0), EffectiveSize(~UINT64_C(0))
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000183{
Daniel Dunbar5e835962009-08-26 02:48:04 +0000184 if (Parent)
185 Parent->getFragmentList().push_back(this);
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000186}
187
188/* *** */
189
Daniel Dunbar81e40002009-08-27 00:38:04 +0000190MCSectionData::MCSectionData() : Section(0) {}
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000191
192MCSectionData::MCSectionData(const MCSection &_Section, MCAssembler *A)
Daniel Dunbar81e40002009-08-27 00:38:04 +0000193 : Section(&_Section),
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000194 Alignment(1),
Daniel Dunbar5e835962009-08-26 02:48:04 +0000195 Address(~UINT64_C(0)),
Daniel Dunbare1ec6172010-02-02 21:44:01 +0000196 HasInstructions(false)
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000197{
198 if (A)
199 A->getSectionList().push_back(this);
200}
201
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000202/* *** */
203
Daniel Dunbarefbb5332009-09-01 04:09:03 +0000204MCSymbolData::MCSymbolData() : Symbol(0) {}
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000205
Daniel Dunbarcb579b32009-08-31 08:08:06 +0000206MCSymbolData::MCSymbolData(const MCSymbol &_Symbol, MCFragment *_Fragment,
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000207 uint64_t _Offset, MCAssembler *A)
Daniel Dunbarefbb5332009-09-01 04:09:03 +0000208 : Symbol(&_Symbol), Fragment(_Fragment), Offset(_Offset),
Daniel Dunbar8f4d1462009-08-28 07:08:35 +0000209 IsExternal(false), IsPrivateExtern(false),
210 CommonSize(0), CommonAlign(0), Flags(0), Index(0)
Daniel Dunbarf3d2ef02009-08-22 10:13:24 +0000211{
212 if (A)
213 A->getSymbolList().push_back(this);
214}
215
216/* *** */
217
Daniel Dunbar1f3e4452010-03-11 01:34:27 +0000218MCAssembler::MCAssembler(MCContext &_Context, TargetAsmBackend &_Backend,
Daniel Dunbarcf871e52010-03-19 10:43:18 +0000219 MCCodeEmitter &_Emitter, raw_ostream &_OS)
220 : Context(_Context), Backend(_Backend), Emitter(_Emitter),
Daniel Dunbarac2884a2010-03-25 22:49:09 +0000221 OS(_OS), RelaxAll(false), SubsectionsViaSymbols(false)
Daniel Dunbar6009db42009-08-26 21:22:22 +0000222{
223}
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000224
225MCAssembler::~MCAssembler() {
226}
227
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000228static bool isScatteredFixupFullyResolvedSimple(const MCAssembler &Asm,
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000229 const MCFixup &Fixup,
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000230 const MCValue Target,
231 const MCSection *BaseSection) {
232 // The effective fixup address is
233 // addr(atom(A)) + offset(A)
234 // - addr(atom(B)) - offset(B)
235 // - addr(<base symbol>) + <fixup offset from base symbol>
236 // and the offsets are not relocatable, so the fixup is fully resolved when
237 // addr(atom(A)) - addr(atom(B)) - addr(<base symbol>)) == 0.
238 //
239 // The simple (Darwin, except on x86_64) way of dealing with this was to
240 // assume that any reference to a temporary symbol *must* be a temporary
241 // symbol in the same atom, unless the sections differ. Therefore, any PCrel
242 // relocation to a temporary symbol (in the same section) is fully
243 // resolved. This also works in conjunction with absolutized .set, which
244 // requires the compiler to use .set to absolutize the differences between
245 // symbols which the compiler knows to be assembly time constants, so we don't
Daniel Dunbar31e8e1d2010-05-04 00:33:07 +0000246 // need to worry about considering symbol differences fully resolved.
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000247
248 // Non-relative fixups are only resolved if constant.
249 if (!BaseSection)
250 return Target.isAbsolute();
251
252 // Otherwise, relative fixups are only resolved if not a difference and the
253 // target is a temporary in the same section.
254 if (Target.isAbsolute() || Target.getSymB())
255 return false;
256
257 const MCSymbol *A = &Target.getSymA()->getSymbol();
258 if (!A->isTemporary() || !A->isInSection() ||
259 &A->getSection() != BaseSection)
260 return false;
261
262 return true;
263}
264
Daniel Dunbar034843a2010-03-19 03:18:18 +0000265static bool isScatteredFixupFullyResolved(const MCAssembler &Asm,
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000266 const MCAsmLayout &Layout,
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000267 const MCFixup &Fixup,
Daniel Dunbar034843a2010-03-19 03:18:18 +0000268 const MCValue Target,
269 const MCSymbolData *BaseSymbol) {
270 // The effective fixup address is
271 // addr(atom(A)) + offset(A)
272 // - addr(atom(B)) - offset(B)
273 // - addr(BaseSymbol) + <fixup offset from base symbol>
274 // and the offsets are not relocatable, so the fixup is fully resolved when
275 // addr(atom(A)) - addr(atom(B)) - addr(BaseSymbol) == 0.
276 //
277 // Note that "false" is almost always conservatively correct (it means we emit
278 // a relocation which is unnecessary), except when it would force us to emit a
279 // relocation which the target cannot encode.
280
281 const MCSymbolData *A_Base = 0, *B_Base = 0;
282 if (const MCSymbolRefExpr *A = Target.getSymA()) {
283 // Modified symbol references cannot be resolved.
284 if (A->getKind() != MCSymbolRefExpr::VK_None)
285 return false;
286
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000287 A_Base = Asm.getAtom(Layout, &Asm.getSymbolData(A->getSymbol()));
Daniel Dunbar034843a2010-03-19 03:18:18 +0000288 if (!A_Base)
289 return false;
290 }
291
292 if (const MCSymbolRefExpr *B = Target.getSymB()) {
293 // Modified symbol references cannot be resolved.
294 if (B->getKind() != MCSymbolRefExpr::VK_None)
295 return false;
296
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000297 B_Base = Asm.getAtom(Layout, &Asm.getSymbolData(B->getSymbol()));
Daniel Dunbar034843a2010-03-19 03:18:18 +0000298 if (!B_Base)
299 return false;
300 }
301
302 // If there is no base, A and B have to be the same atom for this fixup to be
303 // fully resolved.
304 if (!BaseSymbol)
305 return A_Base == B_Base;
306
307 // Otherwise, B must be missing and A must be the base.
308 return !B_Base && BaseSymbol == A_Base;
309}
310
Daniel Dunbar843aa1f2010-06-16 20:04:29 +0000311bool MCAssembler::isSymbolLinkerVisible(const MCSymbol &Symbol) const {
Daniel Dunbar23869852010-03-19 03:18:09 +0000312 // Non-temporary labels should always be visible to the linker.
Daniel Dunbar843aa1f2010-06-16 20:04:29 +0000313 if (!Symbol.isTemporary())
Daniel Dunbar23869852010-03-19 03:18:09 +0000314 return true;
315
316 // Absolute temporary labels are never visible.
Daniel Dunbar843aa1f2010-06-16 20:04:29 +0000317 if (!Symbol.isInSection())
Daniel Dunbar23869852010-03-19 03:18:09 +0000318 return false;
319
320 // Otherwise, check if the section requires symbols even for temporary labels.
Daniel Dunbar843aa1f2010-06-16 20:04:29 +0000321 return getBackend().doesSectionRequireSymbols(Symbol.getSection());
Daniel Dunbar23869852010-03-19 03:18:09 +0000322}
323
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000324const MCSymbolData *MCAssembler::getAtom(const MCAsmLayout &Layout,
325 const MCSymbolData *SD) const {
Daniel Dunbar8ad0dcc2010-03-19 03:18:15 +0000326 // Linker visible symbols define atoms.
Daniel Dunbar843aa1f2010-06-16 20:04:29 +0000327 if (isSymbolLinkerVisible(SD->getSymbol()))
Daniel Dunbar8ad0dcc2010-03-19 03:18:15 +0000328 return SD;
329
330 // Absolute and undefined symbols have no defining atom.
331 if (!SD->getFragment())
332 return 0;
333
Daniel Dunbara5f1d572010-05-12 00:38:17 +0000334 // Non-linker visible symbols in sections which can't be atomized have no
335 // defining atom.
336 if (!getBackend().isSectionAtomizable(
337 SD->getFragment()->getParent()->getSection()))
338 return 0;
339
Daniel Dunbar651804c2010-05-11 17:22:50 +0000340 // Otherwise, return the atom for the containing fragment.
341 return SD->getFragment()->getAtom();
Daniel Dunbar8ad0dcc2010-03-19 03:18:15 +0000342}
343
Daniel Dunbar9d39e612010-03-22 21:49:41 +0000344bool MCAssembler::EvaluateFixup(const MCAsmLayout &Layout,
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000345 const MCFixup &Fixup, const MCFragment *DF,
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000346 MCValue &Target, uint64_t &Value) const {
Daniel Dunbarff547842010-03-23 23:47:14 +0000347 ++stats::EvaluateFixup;
348
Daniel Dunbar482ad802010-05-26 15:18:31 +0000349 if (!Fixup.getValue()->EvaluateAsRelocatable(Target, &Layout))
Chris Lattner75361b62010-04-07 22:58:41 +0000350 report_fatal_error("expected relocatable expression");
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000351
352 // FIXME: How do non-scattered symbols work in ELF? I presume the linker
353 // doesn't support small relocations, but then under what criteria does the
354 // assembler allow symbol differences?
355
356 Value = Target.getConstant();
357
Daniel Dunbar482ad802010-05-26 15:18:31 +0000358 bool IsPCRel = Emitter.getFixupKindInfo(
359 Fixup.getKind()).Flags & MCFixupKindInfo::FKF_IsPCRel;
Daniel Dunbarb36052f2010-03-19 10:43:23 +0000360 bool IsResolved = true;
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000361 if (const MCSymbolRefExpr *A = Target.getSymA()) {
362 if (A->getSymbol().isDefined())
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000363 Value += Layout.getSymbolAddress(&getSymbolData(A->getSymbol()));
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000364 else
365 IsResolved = false;
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000366 }
Daniel Dunbar9a1d2002010-03-18 00:59:10 +0000367 if (const MCSymbolRefExpr *B = Target.getSymB()) {
368 if (B->getSymbol().isDefined())
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000369 Value -= Layout.getSymbolAddress(&getSymbolData(B->getSymbol()));
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000370 else
371 IsResolved = false;
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000372 }
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000373
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000374 // If we are using scattered symbols, determine whether this value is actually
375 // resolved; scattering may cause atoms to move.
376 if (IsResolved && getBackend().hasScatteredSymbols()) {
377 if (getBackend().hasReliableSymbolDifference()) {
Daniel Dunbar034843a2010-03-19 03:18:18 +0000378 // If this is a PCrel relocation, find the base atom (identified by its
379 // symbol) that the fixup value is relative to.
380 const MCSymbolData *BaseSymbol = 0;
381 if (IsPCRel) {
Daniel Dunbar651804c2010-05-11 17:22:50 +0000382 BaseSymbol = DF->getAtom();
Daniel Dunbar034843a2010-03-19 03:18:18 +0000383 if (!BaseSymbol)
384 IsResolved = false;
385 }
386
387 if (IsResolved)
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000388 IsResolved = isScatteredFixupFullyResolved(*this, Layout, Fixup, Target,
Daniel Dunbar034843a2010-03-19 03:18:18 +0000389 BaseSymbol);
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000390 } else {
391 const MCSection *BaseSection = 0;
392 if (IsPCRel)
393 BaseSection = &DF->getParent()->getSection();
394
Daniel Dunbarc6f59822010-03-22 21:49:38 +0000395 IsResolved = isScatteredFixupFullyResolvedSimple(*this, Fixup, Target,
Daniel Dunbar939f8d72010-03-19 03:18:12 +0000396 BaseSection);
397 }
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000398 }
399
400 if (IsPCRel)
Daniel Dunbar482ad802010-05-26 15:18:31 +0000401 Value -= Layout.getFragmentAddress(DF) + Fixup.getOffset();
Daniel Dunbardf3c8f22010-03-12 21:00:49 +0000402
403 return IsResolved;
404}
405
Daniel Dunbar2c18d3b2010-05-13 18:35:06 +0000406uint64_t MCAssembler::ComputeFragmentSize(MCAsmLayout &Layout,
407 const MCFragment &F,
408 uint64_t SectionAddress,
409 uint64_t FragmentOffset) const {
410 switch (F.getKind()) {
411 case MCFragment::FT_Data:
412 return cast<MCDataFragment>(F).getContents().size();
413 case MCFragment::FT_Fill:
414 return cast<MCFillFragment>(F).getSize();
415 case MCFragment::FT_Inst:
416 return cast<MCInstFragment>(F).getInstSize();
417
418 case MCFragment::FT_Align: {
419 const MCAlignFragment &AF = cast<MCAlignFragment>(F);
420
421 assert((!AF.hasOnlyAlignAddress() || !AF.getNextNode()) &&
422 "Invalid OnlyAlignAddress bit, not the last fragment!");
423
424 uint64_t Size = OffsetToAlignment(SectionAddress + FragmentOffset,
425 AF.getAlignment());
426
427 // Honor MaxBytesToEmit.
428 if (Size > AF.getMaxBytesToEmit())
429 return 0;
430
431 return Size;
432 }
433
434 case MCFragment::FT_Org: {
435 const MCOrgFragment &OF = cast<MCOrgFragment>(F);
436
437 // FIXME: We should compute this sooner, we don't want to recurse here, and
438 // we would like to be more functional.
439 int64_t TargetLocation;
440 if (!OF.getOffset().EvaluateAsAbsolute(TargetLocation, &Layout))
441 report_fatal_error("expected assembly-time absolute expression");
442
443 // FIXME: We need a way to communicate this error.
444 int64_t Offset = TargetLocation - FragmentOffset;
445 if (Offset < 0)
446 report_fatal_error("invalid .org offset '" + Twine(TargetLocation) +
447 "' (at offset '" + Twine(FragmentOffset) + "'");
448
449 return Offset;
450 }
451 }
452
453 assert(0 && "invalid fragment kind");
454 return 0;
455}
456
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000457void MCAsmLayout::LayoutFile() {
Daniel Dunbar47b3ec42010-05-14 00:51:14 +0000458 // Initialize the first section and set the valid fragment layout point. All
459 // actual layout computations are done lazily.
Daniel Dunbar9005d452010-05-14 00:37:21 +0000460 LastValidFragment = 0;
Daniel Dunbar11c41112010-05-14 00:37:17 +0000461 if (!getSectionOrder().empty())
462 getSectionOrder().front()->Address = 0;
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000463}
464
465void MCAsmLayout::LayoutFragment(MCFragment *F) {
Daniel Dunbar9005d452010-05-14 00:37:21 +0000466 MCFragment *Prev = F->getPrevNode();
Daniel Dunbarf0d17d22010-05-12 21:35:25 +0000467
Daniel Dunbar9005d452010-05-14 00:37:21 +0000468 // We should never try to recompute something which is up-to-date.
469 assert(!isFragmentUpToDate(F) && "Attempt to recompute up-to-date fragment!");
470 // We should never try to compute the fragment layout if the section isn't
471 // up-to-date.
472 assert(isSectionUpToDate(F->getParent()) &&
473 "Attempt to compute fragment before it's section!");
474 // We should never try to compute the fragment layout if it's predecessor
475 // isn't up-to-date.
476 assert((!Prev || isFragmentUpToDate(Prev)) &&
477 "Attempt to compute fragment before it's predecessor!");
Daniel Dunbarf0d17d22010-05-12 21:35:25 +0000478
479 ++stats::FragmentLayouts;
480
Daniel Dunbar9005d452010-05-14 00:37:21 +0000481 // Compute the fragment start address.
482 uint64_t StartAddress = F->getParent()->Address;
483 uint64_t Address = StartAddress;
484 if (Prev)
485 Address += Prev->Offset + Prev->EffectiveSize;
486
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000487 // Compute fragment offset and size.
Daniel Dunbarafc6acd2010-05-14 00:37:11 +0000488 F->Offset = Address - StartAddress;
489 F->EffectiveSize = getAssembler().ComputeFragmentSize(*this, *F, StartAddress,
490 F->Offset);
Daniel Dunbar9005d452010-05-14 00:37:21 +0000491 LastValidFragment = F;
Daniel Dunbar11c41112010-05-14 00:37:17 +0000492
493 // If this is the last fragment in a section, update the next section address.
494 if (!F->getNextNode()) {
495 unsigned NextIndex = F->getParent()->getLayoutOrder() + 1;
496 if (NextIndex != getSectionOrder().size())
497 LayoutSection(getSectionOrder()[NextIndex]);
498 }
Daniel Dunbarf0d17d22010-05-12 21:35:25 +0000499}
500
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000501void MCAsmLayout::LayoutSection(MCSectionData *SD) {
502 unsigned SectionOrderIndex = SD->getLayoutOrder();
Daniel Dunbarf476b002010-03-25 18:16:42 +0000503
Daniel Dunbarac2884a2010-03-25 22:49:09 +0000504 ++stats::SectionLayouts;
505
Daniel Dunbar61066db2010-05-13 02:34:14 +0000506 // Compute the section start address.
Daniel Dunbard13a0ca2010-05-12 17:56:47 +0000507 uint64_t StartAddress = 0;
508 if (SectionOrderIndex) {
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000509 MCSectionData *Prev = getSectionOrder()[SectionOrderIndex - 1];
510 StartAddress = getSectionAddress(Prev) + getSectionAddressSize(Prev);
Daniel Dunbard13a0ca2010-05-12 17:56:47 +0000511 }
512
Daniel Dunbar61066db2010-05-13 02:34:14 +0000513 // Honor the section alignment requirements.
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000514 StartAddress = RoundUpToAlignment(StartAddress, SD->getAlignment());
Daniel Dunbarf476b002010-03-25 18:16:42 +0000515
Daniel Dunbar61066db2010-05-13 02:34:14 +0000516 // Set the section address.
Daniel Dunbarafc6acd2010-05-14 00:37:11 +0000517 SD->Address = StartAddress;
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000518}
519
Daniel Dunbar53b23382010-03-19 09:28:59 +0000520/// WriteFragmentData - Write the \arg F data to the output file.
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000521static void WriteFragmentData(const MCAssembler &Asm, const MCAsmLayout &Layout,
522 const MCFragment &F, MCObjectWriter *OW) {
Daniel Dunbar53b23382010-03-19 09:28:59 +0000523 uint64_t Start = OW->getStream().tell();
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000524 (void) Start;
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000525
Daniel Dunbarff547842010-03-23 23:47:14 +0000526 ++stats::EmittedFragments;
Daniel Dunbar0adcd352009-08-25 21:10:45 +0000527
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000528 // FIXME: Embed in fragments instead?
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000529 uint64_t FragmentSize = Layout.getFragmentEffectiveSize(&F);
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000530 switch (F.getKind()) {
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000531 case MCFragment::FT_Align: {
532 MCAlignFragment &AF = cast<MCAlignFragment>(F);
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000533 uint64_t Count = FragmentSize / AF.getValueSize();
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000534
Daniel Dunbare73d49e2010-05-12 22:51:27 +0000535 assert(AF.getValueSize() && "Invalid virtual align in concrete fragment!");
536
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000537 // FIXME: This error shouldn't actually occur (the front end should emit
538 // multiple .align directives to enforce the semantics it wants), but is
539 // severe enough that we want to report it. How to handle this?
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000540 if (Count * AF.getValueSize() != FragmentSize)
Chris Lattner75361b62010-04-07 22:58:41 +0000541 report_fatal_error("undefined .align directive, value size '" +
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000542 Twine(AF.getValueSize()) +
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000543 "' is not a divisor of padding size '" +
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000544 Twine(FragmentSize) + "'");
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000545
Kevin Enderby6e720482010-02-23 18:26:34 +0000546 // See if we are aligning with nops, and if so do that first to try to fill
547 // the Count bytes. Then if that did not fill any bytes or there are any
548 // bytes left to fill use the the Value and ValueSize to fill the rest.
Daniel Dunbar8f9b80e2010-03-23 02:36:58 +0000549 // If we are aligning with nops, ask that target to emit the right data.
Daniel Dunbar1c154132010-05-12 22:56:23 +0000550 if (AF.hasEmitNops()) {
Daniel Dunbar8f9b80e2010-03-23 02:36:58 +0000551 if (!Asm.getBackend().WriteNopData(Count, OW))
Chris Lattner75361b62010-04-07 22:58:41 +0000552 report_fatal_error("unable to write nop sequence of " +
Daniel Dunbar8f9b80e2010-03-23 02:36:58 +0000553 Twine(Count) + " bytes");
554 break;
Kevin Enderby6e720482010-02-23 18:26:34 +0000555 }
556
Daniel Dunbar8f9b80e2010-03-23 02:36:58 +0000557 // Otherwise, write out in multiples of the value size.
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000558 for (uint64_t i = 0; i != Count; ++i) {
559 switch (AF.getValueSize()) {
560 default:
561 assert(0 && "Invalid size!");
Daniel Dunbarbdd92812010-03-19 09:28:55 +0000562 case 1: OW->Write8 (uint8_t (AF.getValue())); break;
563 case 2: OW->Write16(uint16_t(AF.getValue())); break;
564 case 4: OW->Write32(uint32_t(AF.getValue())); break;
565 case 8: OW->Write64(uint64_t(AF.getValue())); break;
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000566 }
567 }
568 break;
569 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000570
Daniel Dunbar3a30b822010-02-13 09:28:15 +0000571 case MCFragment::FT_Data: {
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000572 MCDataFragment &DF = cast<MCDataFragment>(F);
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000573 assert(FragmentSize == DF.getContents().size() && "Invalid size!");
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000574 OW->WriteBytes(DF.getContents().str());
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000575 break;
Daniel Dunbar3a30b822010-02-13 09:28:15 +0000576 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000577
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000578 case MCFragment::FT_Fill: {
579 MCFillFragment &FF = cast<MCFillFragment>(F);
Daniel Dunbare2fee5b2010-05-12 22:51:35 +0000580
581 assert(FF.getValueSize() && "Invalid virtual align in concrete fragment!");
582
Daniel Dunbar3153fec2010-05-12 22:51:32 +0000583 for (uint64_t i = 0, e = FF.getSize() / FF.getValueSize(); i != e; ++i) {
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000584 switch (FF.getValueSize()) {
585 default:
586 assert(0 && "Invalid size!");
Daniel Dunbarbdd92812010-03-19 09:28:55 +0000587 case 1: OW->Write8 (uint8_t (FF.getValue())); break;
588 case 2: OW->Write16(uint16_t(FF.getValue())); break;
589 case 4: OW->Write32(uint32_t(FF.getValue())); break;
590 case 8: OW->Write64(uint64_t(FF.getValue())); break;
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000591 }
592 }
593 break;
594 }
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000595
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000596 case MCFragment::FT_Inst:
597 llvm_unreachable("unexpected inst fragment after lowering");
598 break;
599
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000600 case MCFragment::FT_Org: {
601 MCOrgFragment &OF = cast<MCOrgFragment>(F);
602
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000603 for (uint64_t i = 0, e = FragmentSize; i != e; ++i)
Daniel Dunbarbdd92812010-03-19 09:28:55 +0000604 OW->Write8(uint8_t(OF.getValue()));
Daniel Dunbard6f761e2009-08-21 23:07:38 +0000605
606 break;
607 }
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000608 }
609
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000610 assert(OW->getStream().tell() - Start == FragmentSize);
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000611}
612
Daniel Dunbar53b23382010-03-19 09:28:59 +0000613void MCAssembler::WriteSectionData(const MCSectionData *SD,
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000614 const MCAsmLayout &Layout,
Daniel Dunbar53b23382010-03-19 09:28:59 +0000615 MCObjectWriter *OW) const {
Daniel Dunbard5a8e982009-08-28 05:49:21 +0000616 // Ignore virtual sections.
Daniel Dunbarcc5b84c2010-03-19 09:29:03 +0000617 if (getBackend().isVirtualSection(SD->getSection())) {
Daniel Dunbar054be922010-05-13 03:50:50 +0000618 assert(Layout.getSectionFileSize(SD) == 0 && "Invalid size for section!");
Daniel Dunbare2fee5b2010-05-12 22:51:35 +0000619
620 // Check that contents are only things legal inside a virtual section.
621 for (MCSectionData::const_iterator it = SD->begin(),
622 ie = SD->end(); it != ie; ++it) {
623 switch (it->getKind()) {
624 default:
625 assert(0 && "Invalid fragment in virtual section!");
626 case MCFragment::FT_Align:
627 assert(!cast<MCAlignFragment>(it)->getValueSize() &&
628 "Invalid align in virtual section!");
629 break;
630 case MCFragment::FT_Fill:
631 assert(!cast<MCFillFragment>(it)->getValueSize() &&
632 "Invalid fill in virtual section!");
633 break;
Daniel Dunbare2fee5b2010-05-12 22:51:35 +0000634 }
635 }
636
Daniel Dunbard5a8e982009-08-28 05:49:21 +0000637 return;
638 }
639
Daniel Dunbar53b23382010-03-19 09:28:59 +0000640 uint64_t Start = OW->getStream().tell();
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000641 (void) Start;
Daniel Dunbar7eb85192009-10-16 01:58:15 +0000642
Daniel Dunbar53b23382010-03-19 09:28:59 +0000643 for (MCSectionData::const_iterator it = SD->begin(),
644 ie = SD->end(); it != ie; ++it)
Daniel Dunbar432cd5f2010-03-25 02:00:02 +0000645 WriteFragmentData(*this, Layout, *it, OW);
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000646
Daniel Dunbar054be922010-05-13 03:50:50 +0000647 assert(OW->getStream().tell() - Start == Layout.getSectionFileSize(SD));
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000648}
649
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000650void MCAssembler::Finish() {
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000651 DEBUG_WITH_TYPE("mc-dump", {
652 llvm::errs() << "assembler backend - pre-layout\n--\n";
653 dump(); });
654
Daniel Dunbar61066db2010-05-13 02:34:14 +0000655 // Create the layout object.
Daniel Dunbar8d39eb42010-03-22 20:35:35 +0000656 MCAsmLayout Layout(*this);
Daniel Dunbar61066db2010-05-13 02:34:14 +0000657
658 // Insert additional align fragments for concrete sections to explicitly pad
659 // the previous section to match their alignment requirements. This is for
660 // 'gas' compatibility, it shouldn't strictly be necessary.
661 //
662 // FIXME: This may be Mach-O specific.
663 for (unsigned i = 1, e = Layout.getSectionOrder().size(); i < e; ++i) {
664 MCSectionData *SD = Layout.getSectionOrder()[i];
665
666 // Ignore sections without alignment requirements.
667 unsigned Align = SD->getAlignment();
668 if (Align <= 1)
669 continue;
670
671 // Ignore virtual sections, they don't cause file size modifications.
672 if (getBackend().isVirtualSection(SD->getSection()))
673 continue;
674
675 // Otherwise, create a new align fragment at the end of the previous
676 // section.
677 MCAlignFragment *AF = new MCAlignFragment(Align, 0, 1, Align,
678 Layout.getSectionOrder()[i - 1]);
679 AF->setOnlyAlignAddress(true);
680 }
681
Daniel Dunbar337718e2010-05-14 00:37:14 +0000682 // Create dummy fragments and assign section ordinals.
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000683 unsigned SectionIndex = 0;
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000684 for (MCAssembler::iterator it = begin(), ie = end(); it != ie; ++it) {
685 // Create dummy fragments to eliminate any empty sections, this simplifies
686 // layout.
Duncan Sands6f74f692010-06-29 13:30:08 +0000687 if (it->getFragmentList().empty())
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000688 new MCFillFragment(0, 1, 0, it);
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000689
690 it->setOrdinal(SectionIndex++);
Daniel Dunbar337718e2010-05-14 00:37:14 +0000691 }
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000692
Daniel Dunbar337718e2010-05-14 00:37:14 +0000693 // Assign layout order indices to sections and fragments.
694 unsigned FragmentIndex = 0;
695 for (unsigned i = 0, e = Layout.getSectionOrder().size(); i != e; ++i) {
696 MCSectionData *SD = Layout.getSectionOrder()[i];
697 SD->setLayoutOrder(i);
698
699 for (MCSectionData::iterator it2 = SD->begin(),
700 ie2 = SD->end(); it2 != ie2; ++it2)
701 it2->setLayoutOrder(FragmentIndex++);
Daniel Dunbar49ed9212010-05-13 08:43:37 +0000702 }
703
Daniel Dunbar61066db2010-05-13 02:34:14 +0000704 // Layout until everything fits.
Daniel Dunbar8d39eb42010-03-22 20:35:35 +0000705 while (LayoutOnce(Layout))
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000706 continue;
707
708 DEBUG_WITH_TYPE("mc-dump", {
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000709 llvm::errs() << "assembler backend - post-relaxation\n--\n";
710 dump(); });
711
712 // Finalize the layout, including fragment lowering.
713 FinishLayout(Layout);
714
715 DEBUG_WITH_TYPE("mc-dump", {
716 llvm::errs() << "assembler backend - final-layout\n--\n";
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000717 dump(); });
718
Daniel Dunbarff547842010-03-23 23:47:14 +0000719 uint64_t StartOffset = OS.tell();
Daniel Dunbar1a9158c2010-03-19 10:43:26 +0000720 llvm::OwningPtr<MCObjectWriter> Writer(getBackend().createObjectWriter(OS));
721 if (!Writer)
Chris Lattner75361b62010-04-07 22:58:41 +0000722 report_fatal_error("unable to create object writer!");
Daniel Dunbarbacba992010-03-19 07:09:33 +0000723
724 // Allow the object writer a chance to perform post-layout binding (for
725 // example, to set the index fields in the symbol data).
Daniel Dunbar1a9158c2010-03-19 10:43:26 +0000726 Writer->ExecutePostLayoutBinding(*this);
Daniel Dunbarbacba992010-03-19 07:09:33 +0000727
Daniel Dunbarb1e98942010-03-19 07:09:47 +0000728 // Evaluate and apply the fixups, generating relocation entries as necessary.
Daniel Dunbarb1e98942010-03-19 07:09:47 +0000729 for (MCAssembler::iterator it = begin(), ie = end(); it != ie; ++it) {
730 for (MCSectionData::iterator it2 = it->begin(),
731 ie2 = it->end(); it2 != ie2; ++it2) {
732 MCDataFragment *DF = dyn_cast<MCDataFragment>(it2);
733 if (!DF)
734 continue;
735
736 for (MCDataFragment::fixup_iterator it3 = DF->fixup_begin(),
737 ie3 = DF->fixup_end(); it3 != ie3; ++it3) {
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000738 MCFixup &Fixup = *it3;
Daniel Dunbarb1e98942010-03-19 07:09:47 +0000739
740 // Evaluate the fixup.
741 MCValue Target;
742 uint64_t FixedValue;
743 if (!EvaluateFixup(Layout, Fixup, DF, Target, FixedValue)) {
744 // The fixup was unresolved, we need a relocation. Inform the object
745 // writer of the relocation, and give it an opportunity to adjust the
746 // fixup value if need be.
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000747 Writer->RecordRelocation(*this, Layout, DF, Fixup, Target,FixedValue);
Daniel Dunbarb1e98942010-03-19 07:09:47 +0000748 }
749
Daniel Dunbar87190c42010-03-19 09:28:12 +0000750 getBackend().ApplyFixup(Fixup, *DF, FixedValue);
Daniel Dunbarb1e98942010-03-19 07:09:47 +0000751 }
752 }
753 }
754
Daniel Dunbarbacba992010-03-19 07:09:33 +0000755 // Write the object file.
Daniel Dunbar207e06e2010-03-24 03:43:40 +0000756 Writer->WriteObject(*this, Layout);
Daniel Dunbarff547842010-03-23 23:47:14 +0000757
758 stats::ObjectBytes += OS.tell() - StartOffset;
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000759}
760
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000761bool MCAssembler::FixupNeedsRelaxation(const MCFixup &Fixup,
Daniel Dunbar9d39e612010-03-22 21:49:41 +0000762 const MCFragment *DF,
Daniel Dunbar8d39eb42010-03-22 20:35:35 +0000763 const MCAsmLayout &Layout) const {
Daniel Dunbarac2884a2010-03-25 22:49:09 +0000764 if (getRelaxAll())
765 return true;
766
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000767 // If we cannot resolve the fixup value, it requires relaxation.
768 MCValue Target;
769 uint64_t Value;
770 if (!EvaluateFixup(Layout, Fixup, DF, Target, Value))
771 return true;
772
773 // Otherwise, relax if the value is too big for a (signed) i8.
Daniel Dunbar31e8e1d2010-05-04 00:33:07 +0000774 //
775 // FIXME: This is target dependent!
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000776 return int64_t(Value) != int64_t(int8_t(Value));
777}
778
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000779bool MCAssembler::FragmentNeedsRelaxation(const MCInstFragment *IF,
780 const MCAsmLayout &Layout) const {
781 // If this inst doesn't ever need relaxation, ignore it. This occurs when we
782 // are intentionally pushing out inst fragments, or because we relaxed a
783 // previous instruction to one that doesn't need relaxation.
Daniel Dunbar84882522010-05-26 17:45:29 +0000784 if (!getBackend().MayNeedRelaxation(IF->getInst()))
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000785 return false;
786
787 for (MCInstFragment::const_fixup_iterator it = IF->fixup_begin(),
788 ie = IF->fixup_end(); it != ie; ++it)
789 if (FixupNeedsRelaxation(*it, IF, Layout))
790 return true;
791
792 return false;
793}
794
Daniel Dunbar8d39eb42010-03-22 20:35:35 +0000795bool MCAssembler::LayoutOnce(MCAsmLayout &Layout) {
Daniel Dunbarff547842010-03-23 23:47:14 +0000796 ++stats::RelaxationSteps;
797
Daniel Dunbard13a0ca2010-05-12 17:56:47 +0000798 // Layout the sections in order.
Daniel Dunbarb69fc042010-05-13 20:40:12 +0000799 Layout.LayoutFile();
Daniel Dunbard5a8e982009-08-28 05:49:21 +0000800
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000801 // Scan for fragments that need relaxation.
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +0000802 bool WasRelaxed = false;
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000803 for (iterator it = begin(), ie = end(); it != ie; ++it) {
804 MCSectionData &SD = *it;
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000805
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000806 for (MCSectionData::iterator it2 = SD.begin(),
807 ie2 = SD.end(); it2 != ie2; ++it2) {
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000808 // Check if this is an instruction fragment that needs relaxation.
809 MCInstFragment *IF = dyn_cast<MCInstFragment>(it2);
810 if (!IF || !FragmentNeedsRelaxation(IF, Layout))
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000811 continue;
Daniel Dunbar0705fbf2009-08-21 18:29:01 +0000812
Daniel Dunbarff547842010-03-23 23:47:14 +0000813 ++stats::RelaxedInstructions;
814
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000815 // FIXME-PERF: We could immediately lower out instructions if we can tell
816 // they are fully resolved, to avoid retesting on later passes.
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000817
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000818 // Relax the fragment.
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000819
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000820 MCInst Relaxed;
Daniel Dunbar95506d42010-05-26 18:15:06 +0000821 getBackend().RelaxInstruction(IF->getInst(), Relaxed);
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000822
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000823 // Encode the new instruction.
824 //
825 // FIXME-PERF: If it matters, we could let the target do this. It can
826 // probably do so more efficiently in many cases.
827 SmallVector<MCFixup, 4> Fixups;
828 SmallString<256> Code;
829 raw_svector_ostream VecOS(Code);
830 getEmitter().EncodeInstruction(Relaxed, VecOS, Fixups);
831 VecOS.flush();
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000832
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000833 // Update the instruction fragment.
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +0000834 int SlideAmount = Code.size() - IF->getInstSize();
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000835 IF->setInst(Relaxed);
836 IF->getCode() = Code;
837 IF->getFixups().clear();
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000838 // FIXME: Eliminate copy.
839 for (unsigned i = 0, e = Fixups.size(); i != e; ++i)
840 IF->getFixups().push_back(Fixups[i]);
Daniel Dunbard8036fb2010-03-23 05:09:03 +0000841
Daniel Dunbar83194de2010-05-26 20:37:03 +0000842 // Update the layout, and remember that we relaxed.
843 Layout.UpdateForSlide(IF, SlideAmount);
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +0000844 WasRelaxed = true;
Daniel Dunbarf08fde42010-03-12 22:07:14 +0000845 }
846 }
847
Daniel Dunbar0cc8bd42010-03-25 19:35:56 +0000848 return WasRelaxed;
Daniel Dunbarfb4a6b32009-08-21 09:11:24 +0000849}
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000850
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000851void MCAssembler::FinishLayout(MCAsmLayout &Layout) {
852 // Lower out any instruction fragments, to simplify the fixup application and
853 // output.
854 //
855 // FIXME-PERF: We don't have to do this, but the assumption is that it is
856 // cheap (we will mostly end up eliminating fragments and appending on to data
857 // fragments), so the extra complexity downstream isn't worth it. Evaluate
858 // this assumption.
859 for (iterator it = begin(), ie = end(); it != ie; ++it) {
860 MCSectionData &SD = *it;
861
862 for (MCSectionData::iterator it2 = SD.begin(),
863 ie2 = SD.end(); it2 != ie2; ++it2) {
864 MCInstFragment *IF = dyn_cast<MCInstFragment>(it2);
865 if (!IF)
866 continue;
867
868 // Create a new data fragment for the instruction.
869 //
Daniel Dunbar337055e2010-03-23 03:13:05 +0000870 // FIXME-PERF: Reuse previous data fragment if possible.
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000871 MCDataFragment *DF = new MCDataFragment();
872 SD.getFragmentList().insert(it2, DF);
873
874 // Update the data fragments layout data.
Daniel Dunbar9799de92010-03-23 01:39:05 +0000875 DF->setParent(IF->getParent());
Daniel Dunbar651804c2010-05-11 17:22:50 +0000876 DF->setAtom(IF->getAtom());
Daniel Dunbar337718e2010-05-14 00:37:14 +0000877 DF->setLayoutOrder(IF->getLayoutOrder());
Daniel Dunbaraa0d3502010-05-13 08:43:31 +0000878 Layout.FragmentReplaced(IF, DF);
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000879
Daniel Dunbar9799de92010-03-23 01:39:05 +0000880 // Copy in the data and the fixups.
881 DF->getContents().append(IF->getCode().begin(), IF->getCode().end());
882 for (unsigned i = 0, e = IF->getFixups().size(); i != e; ++i)
883 DF->getFixups().push_back(IF->getFixups()[i]);
Daniel Dunbar3f4dcd92010-03-22 23:16:48 +0000884
885 // Delete the instruction fragment and update the iterator.
886 SD.getFragmentList().erase(IF);
887 it2 = DF;
888 }
889 }
890}
891
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000892// Debugging methods
893
894namespace llvm {
895
Daniel Dunbarc90e30a2010-05-26 15:18:56 +0000896raw_ostream &operator<<(raw_ostream &OS, const MCFixup &AF) {
897 OS << "<MCFixup" << " Offset:" << AF.getOffset()
Daniel Dunbar482ad802010-05-26 15:18:31 +0000898 << " Value:" << *AF.getValue()
899 << " Kind:" << AF.getKind() << ">";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000900 return OS;
901}
902
903}
904
905void MCFragment::dump() {
906 raw_ostream &OS = llvm::errs();
907
Daniel Dunbare614e392010-05-26 06:50:57 +0000908 OS << "<";
909 switch (getKind()) {
910 case MCFragment::FT_Align: OS << "MCAlignFragment"; break;
911 case MCFragment::FT_Data: OS << "MCDataFragment"; break;
912 case MCFragment::FT_Fill: OS << "MCFillFragment"; break;
913 case MCFragment::FT_Inst: OS << "MCInstFragment"; break;
914 case MCFragment::FT_Org: OS << "MCOrgFragment"; break;
915 }
916
Daniel Dunbar337718e2010-05-14 00:37:14 +0000917 OS << "<MCFragment " << (void*) this << " LayoutOrder:" << LayoutOrder
918 << " Offset:" << Offset << " EffectiveSize:" << EffectiveSize << ">";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000919
Daniel Dunbare614e392010-05-26 06:50:57 +0000920 switch (getKind()) {
921 case MCFragment::FT_Align: {
922 const MCAlignFragment *AF = cast<MCAlignFragment>(this);
923 if (AF->hasEmitNops())
924 OS << " (emit nops)";
925 if (AF->hasOnlyAlignAddress())
926 OS << " (only align section)";
927 OS << "\n ";
928 OS << " Alignment:" << AF->getAlignment()
929 << " Value:" << AF->getValue() << " ValueSize:" << AF->getValueSize()
930 << " MaxBytesToEmit:" << AF->getMaxBytesToEmit() << ">";
931 break;
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000932 }
Daniel Dunbare614e392010-05-26 06:50:57 +0000933 case MCFragment::FT_Data: {
934 const MCDataFragment *DF = cast<MCDataFragment>(this);
935 OS << "\n ";
936 OS << " Contents:[";
937 const SmallVectorImpl<char> &Contents = DF->getContents();
938 for (unsigned i = 0, e = Contents.size(); i != e; ++i) {
939 if (i) OS << ",";
940 OS << hexdigit((Contents[i] >> 4) & 0xF) << hexdigit(Contents[i] & 0xF);
Daniel Dunbar0bcf0742010-02-13 09:28:43 +0000941 }
Daniel Dunbare614e392010-05-26 06:50:57 +0000942 OS << "] (" << Contents.size() << " bytes)";
943
944 if (!DF->getFixups().empty()) {
945 OS << ",\n ";
946 OS << " Fixups:[";
947 for (MCDataFragment::const_fixup_iterator it = DF->fixup_begin(),
948 ie = DF->fixup_end(); it != ie; ++it) {
949 if (it != DF->fixup_begin()) OS << ",\n ";
950 OS << *it;
951 }
952 OS << "]";
953 }
954 break;
Daniel Dunbar0bcf0742010-02-13 09:28:43 +0000955 }
Daniel Dunbare614e392010-05-26 06:50:57 +0000956 case MCFragment::FT_Fill: {
957 const MCFillFragment *FF = cast<MCFillFragment>(this);
958 OS << " Value:" << FF->getValue() << " ValueSize:" << FF->getValueSize()
959 << " Size:" << FF->getSize();
960 break;
961 }
962 case MCFragment::FT_Inst: {
963 const MCInstFragment *IF = cast<MCInstFragment>(this);
964 OS << "\n ";
965 OS << " Inst:";
966 IF->getInst().dump_pretty(OS);
967 break;
968 }
969 case MCFragment::FT_Org: {
970 const MCOrgFragment *OF = cast<MCOrgFragment>(this);
971 OS << "\n ";
972 OS << " Offset:" << OF->getOffset() << " Value:" << OF->getValue();
973 break;
974 }
975 }
Daniel Dunbar0bcf0742010-02-13 09:28:43 +0000976 OS << ">";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000977}
978
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000979void MCSectionData::dump() {
980 raw_ostream &OS = llvm::errs();
981
982 OS << "<MCSectionData";
983 OS << " Alignment:" << getAlignment() << " Address:" << Address
Daniel Dunbar2661f112010-05-13 03:19:50 +0000984 << " Fragments:[\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +0000985 for (iterator it = begin(), ie = end(); it != ie; ++it) {
986 if (it != begin()) OS << ",\n ";
987 it->dump();
988 }
989 OS << "]>";
990}
991
992void MCSymbolData::dump() {
993 raw_ostream &OS = llvm::errs();
994
995 OS << "<MCSymbolData Symbol:" << getSymbol()
996 << " Fragment:" << getFragment() << " Offset:" << getOffset()
997 << " Flags:" << getFlags() << " Index:" << getIndex();
998 if (isCommon())
999 OS << " (common, size:" << getCommonSize()
1000 << " align: " << getCommonAlignment() << ")";
1001 if (isExternal())
1002 OS << " (external)";
1003 if (isPrivateExtern())
1004 OS << " (private extern)";
1005 OS << ">";
1006}
1007
1008void MCAssembler::dump() {
1009 raw_ostream &OS = llvm::errs();
1010
1011 OS << "<MCAssembler\n";
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001012 OS << " Sections:[\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001013 for (iterator it = begin(), ie = end(); it != ie; ++it) {
1014 if (it != begin()) OS << ",\n ";
1015 it->dump();
1016 }
1017 OS << "],\n";
1018 OS << " Symbols:[";
1019
1020 for (symbol_iterator it = symbol_begin(), ie = symbol_end(); it != ie; ++it) {
Daniel Dunbar45aefff2010-03-09 01:12:23 +00001021 if (it != symbol_begin()) OS << ",\n ";
Daniel Dunbarb7c3a4b2010-02-13 09:28:03 +00001022 it->dump();
1023 }
1024 OS << "]>\n";
1025}