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Rui Ueyama00762152015-02-05 20:05:33 +00001//===-- ReaderWriter/MachO/LayoutPass.cpp - Layout atoms ------------------===//
Shankar Easwaran34ab70f2013-02-07 20:16:12 +00002//
3// The LLVM Linker
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Shankar Easwaran34ab70f2013-02-07 20:16:12 +00009
Rui Ueyama00762152015-02-05 20:05:33 +000010#include "LayoutPass.h"
Michael J. Spencerd4eb47c2013-04-06 00:56:40 +000011#include "lld/Core/Instrumentation.h"
Rui Ueyama87d10ef2015-01-26 20:18:37 +000012#include "lld/Core/Parallel.h"
Rui Ueyama00762152015-02-05 20:05:33 +000013#include "lld/Core/PassManager.h"
14#include "lld/ReaderWriter/MachOLinkingContext.h"
Benjamin Kramer06a42af2015-03-02 00:48:06 +000015#include "llvm/ADT/STLExtras.h"
Rui Ueyamaa6b71ca2013-06-07 20:18:39 +000016#include "llvm/ADT/Twine.h"
Michael J. Spencer7f09a3d2013-02-26 01:35:30 +000017#include "llvm/Support/Debug.h"
Shankar Easwaran2b67fca2014-10-18 05:33:55 +000018#include <algorithm>
19#include <set>
Michael J. Spencer7f09a3d2013-02-26 01:35:30 +000020
Shankar Easwaran34ab70f2013-02-07 20:16:12 +000021using namespace lld;
22
Chandler Carruth9afe32d2014-04-22 03:21:31 +000023#define DEBUG_TYPE "LayoutPass"
24
Rui Ueyama00762152015-02-05 20:05:33 +000025namespace lld {
26namespace mach_o {
27
Rui Ueyama5af46222013-12-08 03:24:09 +000028static bool compareAtoms(const LayoutPass::SortKey &,
Nick Kledzik82d24bc2014-11-07 21:01:21 +000029 const LayoutPass::SortKey &,
Rui Ueyama540842c2015-02-05 20:08:04 +000030 LayoutPass::SortOverride customSorter);
Rui Ueyama5af46222013-12-08 03:24:09 +000031
Rui Ueyama2994f6f2013-12-08 03:37:58 +000032#ifndef NDEBUG
Rui Ueyama6a607b62013-10-18 02:56:31 +000033// Return "reason (leftval, rightval)"
Rui Ueyama5af46222013-12-08 03:24:09 +000034static std::string formatReason(StringRef reason, int leftVal, int rightVal) {
Rui Ueyama2ea86392014-09-18 23:21:39 +000035 return (Twine(reason) + " (" + Twine(leftVal) + ", " + Twine(rightVal) + ")")
36 .str();
Rui Ueyama6a607b62013-10-18 02:56:31 +000037}
Rui Ueyama46bf8282013-10-19 03:18:18 +000038
39// Less-than relationship of two atoms must be transitive, which is, if a < b
40// and b < c, a < c must be true. This function checks the transitivity by
41// checking the sort results.
Rui Ueyama540842c2015-02-05 20:08:04 +000042static void checkTransitivity(std::vector<LayoutPass::SortKey> &vec,
43 LayoutPass::SortOverride customSorter) {
Rui Ueyama37c43e9f2013-12-08 03:12:08 +000044 for (auto i = vec.begin(), e = vec.end(); (i + 1) != e; ++i) {
45 for (auto j = i + 1; j != e; ++j) {
Rui Ueyama540842c2015-02-05 20:08:04 +000046 assert(compareAtoms(*i, *j, customSorter));
47 assert(!compareAtoms(*j, *i, customSorter));
Rui Ueyama46bf8282013-10-19 03:18:18 +000048 }
49 }
Rui Ueyama6a607b62013-10-18 02:56:31 +000050}
Rui Ueyamaa930d122013-12-09 00:37:19 +000051
52// Helper functions to check follow-on graph.
53typedef llvm::DenseMap<const DefinedAtom *, const DefinedAtom *> AtomToAtomT;
54
55static std::string atomToDebugString(const Atom *atom) {
56 const DefinedAtom *definedAtom = dyn_cast<DefinedAtom>(atom);
57 std::string str;
58 llvm::raw_string_ostream s(str);
59 if (definedAtom->name().empty())
60 s << "<anonymous " << definedAtom << ">";
61 else
62 s << definedAtom->name();
63 s << " in ";
64 if (definedAtom->customSectionName().empty())
65 s << "<anonymous>";
66 else
67 s << definedAtom->customSectionName();
68 s.flush();
69 return str;
70}
71
Nico Rieckb9d84f42014-02-24 21:14:37 +000072static void showCycleDetectedError(const Registry &registry,
73 AtomToAtomT &followOnNexts,
Rui Ueyamaa930d122013-12-09 00:37:19 +000074 const DefinedAtom *atom) {
75 const DefinedAtom *start = atom;
76 llvm::dbgs() << "There's a cycle in a follow-on chain!\n";
77 do {
78 llvm::dbgs() << " " << atomToDebugString(atom) << "\n";
79 for (const Reference *ref : *atom) {
Nico Rieckb9d84f42014-02-24 21:14:37 +000080 StringRef kindValStr;
81 if (!registry.referenceKindToString(ref->kindNamespace(), ref->kindArch(),
82 ref->kindValue(), kindValStr)) {
83 kindValStr = "<unknown>";
84 }
85 llvm::dbgs() << " " << kindValStr
86 << ": " << atomToDebugString(ref->target()) << "\n";
Rui Ueyamaa930d122013-12-09 00:37:19 +000087 }
88 atom = followOnNexts[atom];
89 } while (atom != start);
90 llvm::report_fatal_error("Cycle detected");
91}
92
93/// Exit if there's a cycle in a followon chain reachable from the
94/// given root atom. Uses the tortoise and hare algorithm to detect a
95/// cycle.
Nico Rieckb9d84f42014-02-24 21:14:37 +000096static void checkNoCycleInFollowonChain(const Registry &registry,
97 AtomToAtomT &followOnNexts,
Rui Ueyamaa930d122013-12-09 00:37:19 +000098 const DefinedAtom *root) {
99 const DefinedAtom *tortoise = root;
100 const DefinedAtom *hare = followOnNexts[root];
101 while (true) {
102 if (!tortoise || !hare)
103 return;
104 if (tortoise == hare)
Nico Rieckb9d84f42014-02-24 21:14:37 +0000105 showCycleDetectedError(registry, followOnNexts, tortoise);
Rui Ueyamaa930d122013-12-09 00:37:19 +0000106 tortoise = followOnNexts[tortoise];
107 hare = followOnNexts[followOnNexts[hare]];
108 }
109}
110
111static void checkReachabilityFromRoot(AtomToAtomT &followOnRoots,
112 const DefinedAtom *atom) {
113 if (!atom) return;
114 auto i = followOnRoots.find(atom);
115 if (i == followOnRoots.end()) {
Rui Ueyama2ea86392014-09-18 23:21:39 +0000116 llvm_unreachable(((Twine("Atom <") + atomToDebugString(atom) +
117 "> has no follow-on root!"))
118 .str()
119 .c_str());
Rui Ueyamaa930d122013-12-09 00:37:19 +0000120 }
121 const DefinedAtom *ap = i->second;
122 while (true) {
123 const DefinedAtom *next = followOnRoots[ap];
124 if (!next) {
Rui Ueyama2ea86392014-09-18 23:21:39 +0000125 llvm_unreachable((Twine("Atom <" + atomToDebugString(atom) +
126 "> is not reachable from its root!"))
127 .str()
128 .c_str());
Rui Ueyamaa930d122013-12-09 00:37:19 +0000129 }
130 if (next == ap)
131 return;
132 ap = next;
133 }
134}
135
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000136static void printDefinedAtoms(const SimpleFile::DefinedAtomRange &atomRange) {
Rui Ueyamaa930d122013-12-09 00:37:19 +0000137 for (const DefinedAtom *atom : atomRange) {
138 llvm::dbgs() << " file=" << atom->file().path()
139 << ", name=" << atom->name()
140 << ", size=" << atom->size()
141 << ", type=" << atom->contentType()
142 << ", ordinal=" << atom->ordinal()
143 << "\n";
144 }
145}
146
147/// Verify that the followon chain is sane. Should not be called in
148/// release binary.
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000149void LayoutPass::checkFollowonChain(SimpleFile::DefinedAtomRange &range) {
Rui Ueyamaa930d122013-12-09 00:37:19 +0000150 ScopedTask task(getDefaultDomain(), "LayoutPass::checkFollowonChain");
151
152 // Verify that there's no cycle in follow-on chain.
153 std::set<const DefinedAtom *> roots;
154 for (const auto &ai : _followOnRoots)
155 roots.insert(ai.second);
156 for (const DefinedAtom *root : roots)
Nico Rieckb9d84f42014-02-24 21:14:37 +0000157 checkNoCycleInFollowonChain(_registry, _followOnNexts, root);
Rui Ueyamaa930d122013-12-09 00:37:19 +0000158
159 // Verify that all the atoms in followOnNexts have references to
160 // their roots.
161 for (const auto &ai : _followOnNexts) {
162 checkReachabilityFromRoot(_followOnRoots, ai.first);
163 checkReachabilityFromRoot(_followOnRoots, ai.second);
164 }
165}
Rui Ueyama2994f6f2013-12-08 03:37:58 +0000166#endif // #ifndef NDEBUG
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000167
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000168/// The function compares atoms by sorting atoms in the following order
Rui Ueyama05366772015-03-08 01:01:40 +0000169/// a) Sorts atoms by their ordinal overrides (layout-after/ingroup)
170/// b) Sorts atoms by their permissions
171/// c) Sorts atoms by their content
172/// d) Sorts atoms by custom sorter
173/// e) Sorts atoms on how they appear using File Ordinality
174/// f) Sorts atoms on how they appear within the File
Rui Ueyama5af46222013-12-08 03:24:09 +0000175static bool compareAtomsSub(const LayoutPass::SortKey &lc,
176 const LayoutPass::SortKey &rc,
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000177 LayoutPass::SortOverride customSorter,
Rui Ueyama5af46222013-12-08 03:24:09 +0000178 std::string &reason) {
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000179 const DefinedAtom *left = lc._atom;
180 const DefinedAtom *right = rc._atom;
Rui Ueyama6a607b62013-10-18 02:56:31 +0000181 if (left == right) {
182 reason = "same";
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000183 return false;
Rui Ueyama6a607b62013-10-18 02:56:31 +0000184 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000185
Rui Ueyama46bf8282013-10-19 03:18:18 +0000186 // Find the root of the chain if it is a part of a follow-on chain.
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000187 const DefinedAtom *leftRoot = lc._root;
188 const DefinedAtom *rightRoot = rc._root;
Shankar Easwaranf1b341c2013-09-12 15:43:09 +0000189
190 // Sort atoms by their ordinal overrides only if they fall in the same
191 // chain.
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000192 if (leftRoot == rightRoot) {
193 DEBUG(reason = formatReason("override", lc._override, rc._override));
194 return lc._override < rc._override;
Shankar Easwaran3c5d2c82013-05-10 16:44:02 +0000195 }
196
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000197 // Sort same permissions together.
Rui Ueyama46bf8282013-10-19 03:18:18 +0000198 DefinedAtom::ContentPermissions leftPerms = leftRoot->permissions();
199 DefinedAtom::ContentPermissions rightPerms = rightRoot->permissions();
Shankar Easwaran8c256852013-03-13 04:05:38 +0000200
Rui Ueyama6a607b62013-10-18 02:56:31 +0000201 if (leftPerms != rightPerms) {
202 DEBUG(reason =
203 formatReason("contentPerms", (int)leftPerms, (int)rightPerms));
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000204 return leftPerms < rightPerms;
Rui Ueyama6a607b62013-10-18 02:56:31 +0000205 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000206
207 // Sort same content types together.
Rui Ueyama46bf8282013-10-19 03:18:18 +0000208 DefinedAtom::ContentType leftType = leftRoot->contentType();
209 DefinedAtom::ContentType rightType = rightRoot->contentType();
Shankar Easwaran8c256852013-03-13 04:05:38 +0000210
Rui Ueyama6a607b62013-10-18 02:56:31 +0000211 if (leftType != rightType) {
212 DEBUG(reason = formatReason("contentType", (int)leftType, (int)rightType));
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000213 return leftType < rightType;
Rui Ueyama6a607b62013-10-18 02:56:31 +0000214 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000215
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000216 // Use custom sorter if supplied.
217 if (customSorter) {
218 bool leftBeforeRight;
219 if (customSorter(leftRoot, rightRoot, leftBeforeRight))
220 return leftBeforeRight;
221 }
222
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000223 // Sort by .o order.
Rui Ueyama46bf8282013-10-19 03:18:18 +0000224 const File *leftFile = &leftRoot->file();
225 const File *rightFile = &rightRoot->file();
Shankar Easwaran8c256852013-03-13 04:05:38 +0000226
Rui Ueyama6a607b62013-10-18 02:56:31 +0000227 if (leftFile != rightFile) {
228 DEBUG(reason = formatReason(".o order", (int)leftFile->ordinal(),
229 (int)rightFile->ordinal()));
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000230 return leftFile->ordinal() < rightFile->ordinal();
Rui Ueyama6a607b62013-10-18 02:56:31 +0000231 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000232
233 // Sort by atom order with .o file.
Rui Ueyama46bf8282013-10-19 03:18:18 +0000234 uint64_t leftOrdinal = leftRoot->ordinal();
235 uint64_t rightOrdinal = rightRoot->ordinal();
Shankar Easwaran8c256852013-03-13 04:05:38 +0000236
Rui Ueyama6a607b62013-10-18 02:56:31 +0000237 if (leftOrdinal != rightOrdinal) {
Rui Ueyama46bf8282013-10-19 03:18:18 +0000238 DEBUG(reason = formatReason("ordinal", (int)leftRoot->ordinal(),
239 (int)rightRoot->ordinal()));
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000240 return leftOrdinal < rightOrdinal;
Rui Ueyama6a607b62013-10-18 02:56:31 +0000241 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000242
Rui Ueyamacd480752013-11-27 01:33:42 +0000243 llvm::errs() << "Unordered: <" << left->name() << "> <"
244 << right->name() << ">\n";
Shankar Easwaranbcf36562013-10-11 01:50:04 +0000245 llvm_unreachable("Atoms with Same Ordinal!");
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000246}
247
Rui Ueyama5af46222013-12-08 03:24:09 +0000248static bool compareAtoms(const LayoutPass::SortKey &lc,
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000249 const LayoutPass::SortKey &rc,
250 LayoutPass::SortOverride customSorter) {
Rui Ueyama6a607b62013-10-18 02:56:31 +0000251 std::string reason;
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000252 bool result = compareAtomsSub(lc, rc, customSorter, reason);
Rui Ueyama6a607b62013-10-18 02:56:31 +0000253 DEBUG({
Rui Ueyama4050b202013-10-18 03:18:52 +0000254 StringRef comp = result ? "<" : ">=";
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000255 llvm::dbgs() << "Layout: '" << lc._atom->name() << "' " << comp << " '"
256 << rc._atom->name() << "' (" << reason << ")\n";
Rui Ueyama6a607b62013-10-18 02:56:31 +0000257 });
258 return result;
259}
260
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000261LayoutPass::LayoutPass(const Registry &registry, SortOverride sorter)
262 : _registry(registry), _customSorter(sorter) {}
Nico Rieckb9d84f42014-02-24 21:14:37 +0000263
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000264// Returns the atom immediately followed by the given atom in the followon
265// chain.
266const DefinedAtom *LayoutPass::findAtomFollowedBy(
267 const DefinedAtom *targetAtom) {
268 // Start from the beginning of the chain and follow the chain until
269 // we find the targetChain.
270 const DefinedAtom *atom = _followOnRoots[targetAtom];
271 while (true) {
272 const DefinedAtom *prevAtom = atom;
273 AtomToAtomT::iterator targetFollowOnAtomsIter = _followOnNexts.find(atom);
274 // The target atom must be in the chain of its root.
275 assert(targetFollowOnAtomsIter != _followOnNexts.end());
276 atom = targetFollowOnAtomsIter->second;
277 if (atom == targetAtom)
278 return prevAtom;
279 }
280}
281
282// Check if all the atoms followed by the given target atom are of size zero.
283// When this method is called, an atom being added is not of size zero and
284// will be added to the head of the followon chain. All the atoms between the
285// atom and the targetAtom (specified by layout-after) need to be of size zero
286// in this case. Otherwise the desired layout is impossible.
287bool LayoutPass::checkAllPrevAtomsZeroSize(const DefinedAtom *targetAtom) {
288 const DefinedAtom *atom = _followOnRoots[targetAtom];
289 while (true) {
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000290 if (atom == targetAtom)
291 return true;
Rui Ueyama0196d1062013-05-14 16:53:59 +0000292 if (atom->size() != 0)
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000293 // TODO: print warning that an impossible layout is being desired by the
294 // user.
295 return false;
Rui Ueyama5ec6d1a2013-05-14 01:51:56 +0000296 AtomToAtomT::iterator targetFollowOnAtomsIter = _followOnNexts.find(atom);
297 // The target atom must be in the chain of its root.
298 assert(targetFollowOnAtomsIter != _followOnNexts.end());
299 atom = targetFollowOnAtomsIter->second;
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000300 }
301}
302
303// Set the root of all atoms in targetAtom's chain to the given root.
304void LayoutPass::setChainRoot(const DefinedAtom *targetAtom,
305 const DefinedAtom *root) {
306 // Walk through the followon chain and override each node's root.
307 while (true) {
308 _followOnRoots[targetAtom] = root;
309 AtomToAtomT::iterator targetFollowOnAtomsIter =
310 _followOnNexts.find(targetAtom);
311 if (targetFollowOnAtomsIter == _followOnNexts.end())
312 return;
313 targetAtom = targetFollowOnAtomsIter->second;
314 }
315}
316
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000317/// This pass builds the followon tables described by two DenseMaps
318/// followOnRoots and followonNexts.
319/// The followOnRoots map contains a mapping of a DefinedAtom to its root
320/// The followOnNexts map contains a mapping of what DefinedAtom follows the
321/// current Atom
322/// The algorithm follows a very simple approach
323/// a) If the atom is first seen, then make that as the root atom
Shankar Easwaran8962feb2013-03-14 16:09:49 +0000324/// b) The targetAtom which this Atom contains, has the root thats set to the
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000325/// root of the current atom
326/// c) If the targetAtom is part of a different tree and the root of the
327/// targetAtom is itself, Chain all the atoms that are contained in the tree
328/// to the current Tree
329/// d) If the targetAtom is part of a different chain and the root of the
330/// targetAtom until the targetAtom has all atoms of size 0, then chain the
331/// targetAtoms and its tree to the current chain
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000332void LayoutPass::buildFollowOnTable(SimpleFile::DefinedAtomRange &range) {
Michael J. Spencerd4eb47c2013-04-06 00:56:40 +0000333 ScopedTask task(getDefaultDomain(), "LayoutPass::buildFollowOnTable");
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000334 // Set the initial size of the followon and the followonNext hash to the
335 // number of atoms that we have.
Shankar Easwaran45a5f932013-04-29 03:27:57 +0000336 _followOnRoots.resize(range.size());
337 _followOnNexts.resize(range.size());
Rui Ueyama0196d1062013-05-14 16:53:59 +0000338 for (const DefinedAtom *ai : range) {
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000339 for (const Reference *r : *ai) {
Rui Ueyamac9411c32014-03-21 21:46:49 +0000340 if (r->kindNamespace() != lld::Reference::KindNamespace::all ||
341 r->kindValue() != lld::Reference::kindLayoutAfter)
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000342 continue;
Rui Ueyamac1800be2013-11-05 01:37:40 +0000343 const DefinedAtom *targetAtom = dyn_cast<DefinedAtom>(r->target());
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000344 _followOnNexts[ai] = targetAtom;
345
Alp Toker22593762013-12-02 01:28:14 +0000346 // If we find a followon for the first time, let's make that atom as the
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000347 // root atom.
348 if (_followOnRoots.count(ai) == 0)
349 _followOnRoots[ai] = ai;
350
351 auto iter = _followOnRoots.find(targetAtom);
352 if (iter == _followOnRoots.end()) {
Alp Toker22593762013-12-02 01:28:14 +0000353 // If the targetAtom is not a root of any chain, let's make the root of
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000354 // the targetAtom to the root of the current chain.
Rui Ueyamaa821d322014-07-25 19:46:31 +0000355
356 // The expression m[i] = m[j] where m is a DenseMap and i != j is not
357 // safe. m[j] returns a reference, which would be invalidated when a
358 // rehashing occurs. If rehashing occurs to make room for m[i], m[j]
359 // becomes invalid, and that invalid reference would be used as the RHS
360 // value of the expression.
361 // Copy the value to workaround.
362 const DefinedAtom *tmp = _followOnRoots[ai];
363 _followOnRoots[targetAtom] = tmp;
Rui Ueyamac9411c32014-03-21 21:46:49 +0000364 continue;
365 }
366 if (iter->second == targetAtom) {
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000367 // If the targetAtom is the root of a chain, the chain becomes part of
368 // the current chain. Rewrite the subchain's root to the current
369 // chain's root.
370 setChainRoot(targetAtom, _followOnRoots[ai]);
Rui Ueyamac9411c32014-03-21 21:46:49 +0000371 continue;
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000372 }
Rui Ueyamac9411c32014-03-21 21:46:49 +0000373 // The targetAtom is already a part of a chain. If the current atom is
374 // of size zero, we can insert it in the middle of the chain just
375 // before the target atom, while not breaking other atom's followon
376 // relationships. If it's not, we can only insert the current atom at
377 // the beginning of the chain. All the atoms followed by the target
378 // atom must be of size zero in that case to satisfy the followon
379 // relationships.
380 size_t currentAtomSize = ai->size();
381 if (currentAtomSize == 0) {
382 const DefinedAtom *targetPrevAtom = findAtomFollowedBy(targetAtom);
383 _followOnNexts[targetPrevAtom] = ai;
Rui Ueyamaa821d322014-07-25 19:46:31 +0000384 const DefinedAtom *tmp = _followOnRoots[targetPrevAtom];
385 _followOnRoots[ai] = tmp;
Rui Ueyamac9411c32014-03-21 21:46:49 +0000386 continue;
387 }
388 if (!checkAllPrevAtomsZeroSize(targetAtom))
389 break;
390 _followOnNexts[ai] = _followOnRoots[targetAtom];
391 setChainRoot(_followOnRoots[targetAtom], _followOnRoots[ai]);
Rui Ueyamaca8ca552013-05-14 00:41:52 +0000392 }
393 }
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000394}
395
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000396/// Build an ordinal override map by traversing the followon chain, and
Shankar Easwaran8962feb2013-03-14 16:09:49 +0000397/// assigning ordinals to each atom, if the atoms have their ordinals
398/// already assigned skip the atom and move to the next. This is the
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000399/// main map thats used to sort the atoms while comparing two atoms together
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000400void LayoutPass::buildOrdinalOverrideMap(SimpleFile::DefinedAtomRange &range) {
Michael J. Spencerd4eb47c2013-04-06 00:56:40 +0000401 ScopedTask task(getDefaultDomain(), "LayoutPass::buildOrdinalOverrideMap");
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000402 uint64_t index = 0;
Rui Ueyama0196d1062013-05-14 16:53:59 +0000403 for (const DefinedAtom *ai : range) {
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000404 const DefinedAtom *atom = ai;
Michael J. Spencer1ecf8902013-03-12 00:10:00 +0000405 if (_ordinalOverrideMap.find(atom) != _ordinalOverrideMap.end())
406 continue;
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000407 AtomToAtomT::iterator start = _followOnRoots.find(atom);
Rui Ueyamac9411c32014-03-21 21:46:49 +0000408 if (start == _followOnRoots.end())
409 continue;
410 for (const DefinedAtom *nextAtom = start->second; nextAtom != NULL;
411 nextAtom = _followOnNexts[nextAtom]) {
412 AtomToOrdinalT::iterator pos = _ordinalOverrideMap.find(nextAtom);
413 if (pos == _ordinalOverrideMap.end())
414 _ordinalOverrideMap[nextAtom] = index++;
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000415 }
416 }
417}
418
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000419std::vector<LayoutPass::SortKey>
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000420LayoutPass::decorate(SimpleFile::DefinedAtomRange &atomRange) const {
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000421 std::vector<SortKey> ret;
422 for (const DefinedAtom *atom : atomRange) {
423 auto ri = _followOnRoots.find(atom);
424 auto oi = _ordinalOverrideMap.find(atom);
425 const DefinedAtom *root = (ri == _followOnRoots.end()) ? atom : ri->second;
426 uint64_t override = (oi == _ordinalOverrideMap.end()) ? 0 : oi->second;
427 ret.push_back(SortKey(atom, root, override));
428 }
429 return ret;
430}
431
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000432void LayoutPass::undecorate(SimpleFile::DefinedAtomRange &atomRange,
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000433 std::vector<SortKey> &keys) const {
434 size_t i = 0;
435 for (SortKey &k : keys)
436 atomRange[i++] = k._atom;
437}
438
Shankar Easwaran8962feb2013-03-14 16:09:49 +0000439/// Perform the actual pass
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000440void LayoutPass::perform(std::unique_ptr<SimpleFile> &mergedFile) {
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000441 // sort the atoms
Michael J. Spencerbd66d042013-05-28 18:55:39 +0000442 ScopedTask task(getDefaultDomain(), "LayoutPass");
Rui Ueyama3c45cff2015-04-07 20:43:38 +0000443 SimpleFile::DefinedAtomRange atomRange = mergedFile->definedAtoms();
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000444
445 // Build follow on tables
446 buildFollowOnTable(atomRange);
447
Rui Ueyamaa6b71ca2013-06-07 20:18:39 +0000448 // Check the structure of followon graph if running in debug mode.
449 DEBUG(checkFollowonChain(atomRange));
450
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000451 // Build override maps
452 buildOrdinalOverrideMap(atomRange);
453
Rui Ueyama9c4f89a2013-05-23 01:31:25 +0000454 DEBUG({
Nick Kledzikf4fa8c02013-04-04 20:32:18 +0000455 llvm::dbgs() << "unsorted atoms:\n";
Rui Ueyamaa6b71ca2013-06-07 20:18:39 +0000456 printDefinedAtoms(atomRange);
Nick Kledzikf4fa8c02013-04-04 20:32:18 +0000457 });
Shankar Easwaran45a5f932013-04-29 03:27:57 +0000458
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000459 std::vector<LayoutPass::SortKey> vec = decorate(atomRange);
Rui Ueyama87d10ef2015-01-26 20:18:37 +0000460 parallel_sort(vec.begin(), vec.end(),
Nick Kledzik82d24bc2014-11-07 21:01:21 +0000461 [&](const LayoutPass::SortKey &l, const LayoutPass::SortKey &r) -> bool {
462 return compareAtoms(l, r, _customSorter);
463 });
Rui Ueyama540842c2015-02-05 20:08:04 +0000464 DEBUG(checkTransitivity(vec, _customSorter));
Rui Ueyama37c43e9f2013-12-08 03:12:08 +0000465 undecorate(atomRange, vec);
Rui Ueyama46bf8282013-10-19 03:18:18 +0000466
Rui Ueyama9c4f89a2013-05-23 01:31:25 +0000467 DEBUG({
Nick Kledzikf4fa8c02013-04-04 20:32:18 +0000468 llvm::dbgs() << "sorted atoms:\n";
Rui Ueyamaa6b71ca2013-06-07 20:18:39 +0000469 printDefinedAtoms(atomRange);
Nick Kledzikf4fa8c02013-04-04 20:32:18 +0000470 });
Shankar Easwaran34ab70f2013-02-07 20:16:12 +0000471}
Rui Ueyama00762152015-02-05 20:05:33 +0000472
473void addLayoutPass(PassManager &pm, const MachOLinkingContext &ctx) {
Rui Ueyama92634be2015-02-06 22:44:16 +0000474 pm.add(llvm::make_unique<LayoutPass>(
Rui Ueyama00762152015-02-05 20:05:33 +0000475 ctx.registry(), [&](const DefinedAtom * left, const DefinedAtom * right,
Rui Ueyama540842c2015-02-05 20:08:04 +0000476 bool & leftBeforeRight) ->bool {
Rui Ueyama00762152015-02-05 20:05:33 +0000477 return ctx.customAtomOrderer(left, right, leftBeforeRight);
Rui Ueyama92634be2015-02-06 22:44:16 +0000478 }));
Rui Ueyama00762152015-02-05 20:05:33 +0000479}
480
481} // namespace mach_o
482} // namespace lld