1 //===-- gold-plugin.cpp - Plugin to gold for Link Time Optimization ------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This is a gold plugin for LLVM. It provides an LLVM implementation of the
10 // interface described in http://gcc.gnu.org/wiki/whopr/driver .
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "llvm/ADT/Statistic.h"
15 #include "llvm/Bitcode/BitcodeReader.h"
16 #include "llvm/Bitcode/BitcodeWriter.h"
17 #include "llvm/CodeGen/CommandFlags.h"
18 #include "llvm/Config/config.h" // plugin-api.h requires HAVE_STDINT_H
19 #include "llvm/Config/llvm-config.h"
20 #include "llvm/IR/Constants.h"
21 #include "llvm/IR/DiagnosticPrinter.h"
22 #include "llvm/LTO/Caching.h"
23 #include "llvm/LTO/LTO.h"
24 #include "llvm/Object/Error.h"
25 #include "llvm/Remarks/HotnessThresholdParser.h"
26 #include "llvm/Support/CachePruning.h"
27 #include "llvm/Support/CommandLine.h"
28 #include "llvm/Support/FileSystem.h"
29 #include "llvm/Support/Host.h"
30 #include "llvm/Support/ManagedStatic.h"
31 #include "llvm/Support/MemoryBuffer.h"
32 #include "llvm/Support/Path.h"
33 #include "llvm/Support/TargetSelect.h"
34 #include "llvm/Support/Threading.h"
35 #include "llvm/Support/raw_ostream.h"
36 #include <list>
37 #include <map>
38 #include <plugin-api.h>
39 #include <string>
40 #include <system_error>
41 #include <utility>
42 #include <vector>
43
44 // FIXME: remove this declaration when we stop maintaining Ubuntu Quantal and
45 // Precise and Debian Wheezy (binutils 2.23 is required)
46 #define LDPO_PIE 3
47
48 #define LDPT_GET_SYMBOLS_V3 28
49
50 // FIXME: Remove when binutils 2.31 (containing gold 1.16) is the minimum
51 // required version.
52 #define LDPT_GET_WRAP_SYMBOLS 32
53
54 using namespace llvm;
55 using namespace lto;
56
57 static codegen::RegisterCodeGenFlags CodeGenFlags;
58
59 // FIXME: Remove when binutils 2.31 (containing gold 1.16) is the minimum
60 // required version.
61 typedef enum ld_plugin_status (*ld_plugin_get_wrap_symbols)(
62 uint64_t *num_symbols, const char ***wrap_symbol_list);
63
64 static ld_plugin_status discard_message(int level, const char *format, ...) {
65 // Die loudly. Recent versions of Gold pass ld_plugin_message as the first
66 // callback in the transfer vector. This should never be called.
67 abort();
68 }
69
70 static ld_plugin_release_input_file release_input_file = nullptr;
71 static ld_plugin_get_input_file get_input_file = nullptr;
72 static ld_plugin_message message = discard_message;
73 static ld_plugin_get_wrap_symbols get_wrap_symbols = nullptr;
74
75 namespace {
76 struct claimed_file {
77 void *handle;
78 void *leader_handle;
79 std::vector<ld_plugin_symbol> syms;
80 off_t filesize;
81 std::string name;
82 };
83
84 /// RAII wrapper to manage opening and releasing of a ld_plugin_input_file.
85 struct PluginInputFile {
86 void *Handle;
87 std::unique_ptr<ld_plugin_input_file> File;
88
PluginInputFile__anon7eeef7220111::PluginInputFile89 PluginInputFile(void *Handle) : Handle(Handle) {
90 File = std::make_unique<ld_plugin_input_file>();
91 if (get_input_file(Handle, File.get()) != LDPS_OK)
92 message(LDPL_FATAL, "Failed to get file information");
93 }
~PluginInputFile__anon7eeef7220111::PluginInputFile94 ~PluginInputFile() {
95 // File would have been reset to nullptr if we moved this object
96 // to a new owner.
97 if (File)
98 if (release_input_file(Handle) != LDPS_OK)
99 message(LDPL_FATAL, "Failed to release file information");
100 }
101
file__anon7eeef7220111::PluginInputFile102 ld_plugin_input_file &file() { return *File; }
103
104 PluginInputFile(PluginInputFile &&RHS) = default;
105 PluginInputFile &operator=(PluginInputFile &&RHS) = default;
106 };
107
108 struct ResolutionInfo {
109 bool CanOmitFromDynSym = true;
110 bool DefaultVisibility = true;
111 bool CanInline = true;
112 bool IsUsedInRegularObj = false;
113 };
114
115 }
116
117 static ld_plugin_add_symbols add_symbols = nullptr;
118 static ld_plugin_get_symbols get_symbols = nullptr;
119 static ld_plugin_add_input_file add_input_file = nullptr;
120 static ld_plugin_set_extra_library_path set_extra_library_path = nullptr;
121 static ld_plugin_get_view get_view = nullptr;
122 static bool IsExecutable = false;
123 static bool SplitSections = true;
124 static Optional<Reloc::Model> RelocationModel = None;
125 static std::string output_name = "";
126 static std::list<claimed_file> Modules;
127 static DenseMap<int, void *> FDToLeaderHandle;
128 static StringMap<ResolutionInfo> ResInfo;
129 static std::vector<std::string> Cleanup;
130
131 namespace options {
132 enum OutputType {
133 OT_NORMAL,
134 OT_DISABLE,
135 OT_BC_ONLY,
136 OT_ASM_ONLY,
137 OT_SAVE_TEMPS
138 };
139 static OutputType TheOutputType = OT_NORMAL;
140 static unsigned OptLevel = 2;
141 // Currently only affects ThinLTO, where the default is the max cores in the
142 // system. See llvm::get_threadpool_strategy() for acceptable values.
143 static std::string Parallelism;
144 // Default regular LTO codegen parallelism (number of partitions).
145 static unsigned ParallelCodeGenParallelismLevel = 1;
146 #ifdef NDEBUG
147 static bool DisableVerify = true;
148 #else
149 static bool DisableVerify = false;
150 #endif
151 static std::string obj_path;
152 static std::string extra_library_path;
153 static std::string triple;
154 static std::string mcpu;
155 // When the thinlto plugin option is specified, only read the function
156 // the information from intermediate files and write a combined
157 // global index for the ThinLTO backends.
158 static bool thinlto = false;
159 // If false, all ThinLTO backend compilations through code gen are performed
160 // using multiple threads in the gold-plugin, before handing control back to
161 // gold. If true, write individual backend index files which reflect
162 // the import decisions, and exit afterwards. The assumption is
163 // that the build system will launch the backend processes.
164 static bool thinlto_index_only = false;
165 // If non-empty, holds the name of a file in which to write the list of
166 // oject files gold selected for inclusion in the link after symbol
167 // resolution (i.e. they had selected symbols). This will only be non-empty
168 // in the thinlto_index_only case. It is used to identify files, which may
169 // have originally been within archive libraries specified via
170 // --start-lib/--end-lib pairs, that should be included in the final
171 // native link process (since intervening function importing and inlining
172 // may change the symbol resolution detected in the final link and which
173 // files to include out of --start-lib/--end-lib libraries as a result).
174 static std::string thinlto_linked_objects_file;
175 // If true, when generating individual index files for distributed backends,
176 // also generate a "${bitcodefile}.imports" file at the same location for each
177 // bitcode file, listing the files it imports from in plain text. This is to
178 // support distributed build file staging.
179 static bool thinlto_emit_imports_files = false;
180 // Option to control where files for a distributed backend (the individual
181 // index files and optional imports files) are created.
182 // If specified, expects a string of the form "oldprefix:newprefix", and
183 // instead of generating these files in the same directory path as the
184 // corresponding bitcode file, will use a path formed by replacing the
185 // bitcode file's path prefix matching oldprefix with newprefix.
186 static std::string thinlto_prefix_replace;
187 // Option to control the name of modules encoded in the individual index
188 // files for a distributed backend. This enables the use of minimized
189 // bitcode files for the thin link, assuming the name of the full bitcode
190 // file used in the backend differs just in some part of the file suffix.
191 // If specified, expects a string of the form "oldsuffix:newsuffix".
192 static std::string thinlto_object_suffix_replace;
193 // Optional path to a directory for caching ThinLTO objects.
194 static std::string cache_dir;
195 // Optional pruning policy for ThinLTO caches.
196 static std::string cache_policy;
197 // Additional options to pass into the code generator.
198 // Note: This array will contain all plugin options which are not claimed
199 // as plugin exclusive to pass to the code generator.
200 static std::vector<const char *> extra;
201 // Sample profile file path
202 static std::string sample_profile;
203 // New pass manager
204 static bool new_pass_manager = LLVM_ENABLE_NEW_PASS_MANAGER;
205 // Debug new pass manager
206 static bool debug_pass_manager = false;
207 // Directory to store the .dwo files.
208 static std::string dwo_dir;
209 /// Statistics output filename.
210 static std::string stats_file;
211 // Asserts that LTO link has whole program visibility
212 static bool whole_program_visibility = false;
213
214 // Optimization remarks filename, accepted passes and hotness options
215 static std::string RemarksFilename;
216 static std::string RemarksPasses;
217 static bool RemarksWithHotness = false;
218 static Optional<uint64_t> RemarksHotnessThreshold = 0;
219 static std::string RemarksFormat;
220
221 // Context sensitive PGO options.
222 static std::string cs_profile_path;
223 static bool cs_pgo_gen = false;
224
process_plugin_option(const char * opt_)225 static void process_plugin_option(const char *opt_)
226 {
227 if (opt_ == nullptr)
228 return;
229 llvm::StringRef opt = opt_;
230
231 if (opt.consume_front("mcpu=")) {
232 mcpu = std::string(opt);
233 } else if (opt.consume_front("extra-library-path=")) {
234 extra_library_path = std::string(opt);
235 } else if (opt.consume_front("mtriple=")) {
236 triple = std::string(opt);
237 } else if (opt.consume_front("obj-path=")) {
238 obj_path = std::string(opt);
239 } else if (opt == "emit-llvm") {
240 TheOutputType = OT_BC_ONLY;
241 } else if (opt == "save-temps") {
242 TheOutputType = OT_SAVE_TEMPS;
243 } else if (opt == "disable-output") {
244 TheOutputType = OT_DISABLE;
245 } else if (opt == "emit-asm") {
246 TheOutputType = OT_ASM_ONLY;
247 } else if (opt == "thinlto") {
248 thinlto = true;
249 } else if (opt == "thinlto-index-only") {
250 thinlto_index_only = true;
251 } else if (opt.consume_front("thinlto-index-only=")) {
252 thinlto_index_only = true;
253 thinlto_linked_objects_file = std::string(opt);
254 } else if (opt == "thinlto-emit-imports-files") {
255 thinlto_emit_imports_files = true;
256 } else if (opt.consume_front("thinlto-prefix-replace=")) {
257 thinlto_prefix_replace = std::string(opt);
258 if (thinlto_prefix_replace.find(';') == std::string::npos)
259 message(LDPL_FATAL, "thinlto-prefix-replace expects 'old;new' format");
260 } else if (opt.consume_front("thinlto-object-suffix-replace=")) {
261 thinlto_object_suffix_replace = std::string(opt);
262 if (thinlto_object_suffix_replace.find(';') == std::string::npos)
263 message(LDPL_FATAL,
264 "thinlto-object-suffix-replace expects 'old;new' format");
265 } else if (opt.consume_front("cache-dir=")) {
266 cache_dir = std::string(opt);
267 } else if (opt.consume_front("cache-policy=")) {
268 cache_policy = std::string(opt);
269 } else if (opt.size() == 2 && opt[0] == 'O') {
270 if (opt[1] < '0' || opt[1] > '3')
271 message(LDPL_FATAL, "Optimization level must be between 0 and 3");
272 OptLevel = opt[1] - '0';
273 } else if (opt.consume_front("jobs=")) {
274 Parallelism = std::string(opt);
275 if (!get_threadpool_strategy(opt))
276 message(LDPL_FATAL, "Invalid parallelism level: %s",
277 Parallelism.c_str());
278 } else if (opt.consume_front("lto-partitions=")) {
279 if (opt.getAsInteger(10, ParallelCodeGenParallelismLevel))
280 message(LDPL_FATAL, "Invalid codegen partition level: %s", opt_ + 5);
281 } else if (opt == "disable-verify") {
282 DisableVerify = true;
283 } else if (opt.consume_front("sample-profile=")) {
284 sample_profile = std::string(opt);
285 } else if (opt == "cs-profile-generate") {
286 cs_pgo_gen = true;
287 } else if (opt.consume_front("cs-profile-path=")) {
288 cs_profile_path = std::string(opt);
289 } else if (opt == "new-pass-manager") {
290 new_pass_manager = true;
291 } else if (opt == "legacy-pass-manager") {
292 new_pass_manager = false;
293 } else if (opt == "debug-pass-manager") {
294 debug_pass_manager = true;
295 } else if (opt == "whole-program-visibility") {
296 whole_program_visibility = true;
297 } else if (opt.consume_front("dwo_dir=")) {
298 dwo_dir = std::string(opt);
299 } else if (opt.consume_front("opt-remarks-filename=")) {
300 RemarksFilename = std::string(opt);
301 } else if (opt.consume_front("opt-remarks-passes=")) {
302 RemarksPasses = std::string(opt);
303 } else if (opt == "opt-remarks-with-hotness") {
304 RemarksWithHotness = true;
305 } else if (opt.consume_front("opt-remarks-hotness-threshold=")) {
306 auto ResultOrErr = remarks::parseHotnessThresholdOption(opt);
307 if (!ResultOrErr)
308 message(LDPL_FATAL, "Invalid remarks hotness threshold: %s", opt);
309 else
310 RemarksHotnessThreshold = *ResultOrErr;
311 } else if (opt.consume_front("opt-remarks-format=")) {
312 RemarksFormat = std::string(opt);
313 } else if (opt.consume_front("stats-file=")) {
314 stats_file = std::string(opt);
315 } else {
316 // Save this option to pass to the code generator.
317 // ParseCommandLineOptions() expects argv[0] to be program name. Lazily
318 // add that.
319 if (extra.empty())
320 extra.push_back("LLVMgold");
321
322 extra.push_back(opt_);
323 }
324 }
325 }
326
327 static ld_plugin_status claim_file_hook(const ld_plugin_input_file *file,
328 int *claimed);
329 static ld_plugin_status all_symbols_read_hook(void);
330 static ld_plugin_status cleanup_hook(void);
331
332 extern "C" ld_plugin_status onload(ld_plugin_tv *tv);
onload(ld_plugin_tv * tv)333 ld_plugin_status onload(ld_plugin_tv *tv) {
334 InitializeAllTargetInfos();
335 InitializeAllTargets();
336 InitializeAllTargetMCs();
337 InitializeAllAsmParsers();
338 InitializeAllAsmPrinters();
339
340 // We're given a pointer to the first transfer vector. We read through them
341 // until we find one where tv_tag == LDPT_NULL. The REGISTER_* tagged values
342 // contain pointers to functions that we need to call to register our own
343 // hooks. The others are addresses of functions we can use to call into gold
344 // for services.
345
346 bool registeredClaimFile = false;
347 bool RegisteredAllSymbolsRead = false;
348
349 for (; tv->tv_tag != LDPT_NULL; ++tv) {
350 // Cast tv_tag to int to allow values not in "enum ld_plugin_tag", like, for
351 // example, LDPT_GET_SYMBOLS_V3 when building against an older plugin-api.h
352 // header.
353 switch (static_cast<int>(tv->tv_tag)) {
354 case LDPT_OUTPUT_NAME:
355 output_name = tv->tv_u.tv_string;
356 break;
357 case LDPT_LINKER_OUTPUT:
358 switch (tv->tv_u.tv_val) {
359 case LDPO_REL: // .o
360 IsExecutable = false;
361 SplitSections = false;
362 break;
363 case LDPO_DYN: // .so
364 IsExecutable = false;
365 RelocationModel = Reloc::PIC_;
366 break;
367 case LDPO_PIE: // position independent executable
368 IsExecutable = true;
369 RelocationModel = Reloc::PIC_;
370 break;
371 case LDPO_EXEC: // .exe
372 IsExecutable = true;
373 RelocationModel = Reloc::Static;
374 break;
375 default:
376 message(LDPL_ERROR, "Unknown output file type %d", tv->tv_u.tv_val);
377 return LDPS_ERR;
378 }
379 break;
380 case LDPT_OPTION:
381 options::process_plugin_option(tv->tv_u.tv_string);
382 break;
383 case LDPT_REGISTER_CLAIM_FILE_HOOK: {
384 ld_plugin_register_claim_file callback;
385 callback = tv->tv_u.tv_register_claim_file;
386
387 if (callback(claim_file_hook) != LDPS_OK)
388 return LDPS_ERR;
389
390 registeredClaimFile = true;
391 } break;
392 case LDPT_REGISTER_ALL_SYMBOLS_READ_HOOK: {
393 ld_plugin_register_all_symbols_read callback;
394 callback = tv->tv_u.tv_register_all_symbols_read;
395
396 if (callback(all_symbols_read_hook) != LDPS_OK)
397 return LDPS_ERR;
398
399 RegisteredAllSymbolsRead = true;
400 } break;
401 case LDPT_REGISTER_CLEANUP_HOOK: {
402 ld_plugin_register_cleanup callback;
403 callback = tv->tv_u.tv_register_cleanup;
404
405 if (callback(cleanup_hook) != LDPS_OK)
406 return LDPS_ERR;
407 } break;
408 case LDPT_GET_INPUT_FILE:
409 get_input_file = tv->tv_u.tv_get_input_file;
410 break;
411 case LDPT_RELEASE_INPUT_FILE:
412 release_input_file = tv->tv_u.tv_release_input_file;
413 break;
414 case LDPT_ADD_SYMBOLS:
415 add_symbols = tv->tv_u.tv_add_symbols;
416 break;
417 case LDPT_GET_SYMBOLS_V2:
418 // Do not override get_symbols_v3 with get_symbols_v2.
419 if (!get_symbols)
420 get_symbols = tv->tv_u.tv_get_symbols;
421 break;
422 case LDPT_GET_SYMBOLS_V3:
423 get_symbols = tv->tv_u.tv_get_symbols;
424 break;
425 case LDPT_ADD_INPUT_FILE:
426 add_input_file = tv->tv_u.tv_add_input_file;
427 break;
428 case LDPT_SET_EXTRA_LIBRARY_PATH:
429 set_extra_library_path = tv->tv_u.tv_set_extra_library_path;
430 break;
431 case LDPT_GET_VIEW:
432 get_view = tv->tv_u.tv_get_view;
433 break;
434 case LDPT_MESSAGE:
435 message = tv->tv_u.tv_message;
436 break;
437 case LDPT_GET_WRAP_SYMBOLS:
438 // FIXME: When binutils 2.31 (containing gold 1.16) is the minimum
439 // required version, this should be changed to:
440 // get_wrap_symbols = tv->tv_u.tv_get_wrap_symbols;
441 get_wrap_symbols =
442 (ld_plugin_get_wrap_symbols)tv->tv_u.tv_message;
443 break;
444 default:
445 break;
446 }
447 }
448
449 if (!registeredClaimFile) {
450 message(LDPL_ERROR, "register_claim_file not passed to LLVMgold.");
451 return LDPS_ERR;
452 }
453 if (!add_symbols) {
454 message(LDPL_ERROR, "add_symbols not passed to LLVMgold.");
455 return LDPS_ERR;
456 }
457
458 if (!RegisteredAllSymbolsRead)
459 return LDPS_OK;
460
461 if (!get_input_file) {
462 message(LDPL_ERROR, "get_input_file not passed to LLVMgold.");
463 return LDPS_ERR;
464 }
465 if (!release_input_file) {
466 message(LDPL_ERROR, "release_input_file not passed to LLVMgold.");
467 return LDPS_ERR;
468 }
469
470 return LDPS_OK;
471 }
472
diagnosticHandler(const DiagnosticInfo & DI)473 static void diagnosticHandler(const DiagnosticInfo &DI) {
474 std::string ErrStorage;
475 {
476 raw_string_ostream OS(ErrStorage);
477 DiagnosticPrinterRawOStream DP(OS);
478 DI.print(DP);
479 }
480 ld_plugin_level Level;
481 switch (DI.getSeverity()) {
482 case DS_Error:
483 Level = LDPL_FATAL;
484 break;
485 case DS_Warning:
486 Level = LDPL_WARNING;
487 break;
488 case DS_Note:
489 case DS_Remark:
490 Level = LDPL_INFO;
491 break;
492 }
493 message(Level, "LLVM gold plugin: %s", ErrStorage.c_str());
494 }
495
check(Error E,std::string Msg="LLVM gold plugin")496 static void check(Error E, std::string Msg = "LLVM gold plugin") {
497 handleAllErrors(std::move(E), [&](ErrorInfoBase &EIB) -> Error {
498 message(LDPL_FATAL, "%s: %s", Msg.c_str(), EIB.message().c_str());
499 return Error::success();
500 });
501 }
502
check(Expected<T> E)503 template <typename T> static T check(Expected<T> E) {
504 if (E)
505 return std::move(*E);
506 check(E.takeError());
507 return T();
508 }
509
510 /// Called by gold to see whether this file is one that our plugin can handle.
511 /// We'll try to open it and register all the symbols with add_symbol if
512 /// possible.
claim_file_hook(const ld_plugin_input_file * file,int * claimed)513 static ld_plugin_status claim_file_hook(const ld_plugin_input_file *file,
514 int *claimed) {
515 MemoryBufferRef BufferRef;
516 std::unique_ptr<MemoryBuffer> Buffer;
517 if (get_view) {
518 const void *view;
519 if (get_view(file->handle, &view) != LDPS_OK) {
520 message(LDPL_ERROR, "Failed to get a view of %s", file->name);
521 return LDPS_ERR;
522 }
523 BufferRef =
524 MemoryBufferRef(StringRef((const char *)view, file->filesize), "");
525 } else {
526 int64_t offset = 0;
527 // Gold has found what might be IR part-way inside of a file, such as
528 // an .a archive.
529 if (file->offset) {
530 offset = file->offset;
531 }
532 ErrorOr<std::unique_ptr<MemoryBuffer>> BufferOrErr =
533 MemoryBuffer::getOpenFileSlice(sys::fs::convertFDToNativeFile(file->fd),
534 file->name, file->filesize, offset);
535 if (std::error_code EC = BufferOrErr.getError()) {
536 message(LDPL_ERROR, EC.message().c_str());
537 return LDPS_ERR;
538 }
539 Buffer = std::move(BufferOrErr.get());
540 BufferRef = Buffer->getMemBufferRef();
541 }
542
543 *claimed = 1;
544
545 Expected<std::unique_ptr<InputFile>> ObjOrErr = InputFile::create(BufferRef);
546 if (!ObjOrErr) {
547 handleAllErrors(ObjOrErr.takeError(), [&](const ErrorInfoBase &EI) {
548 std::error_code EC = EI.convertToErrorCode();
549 if (EC == object::object_error::invalid_file_type ||
550 EC == object::object_error::bitcode_section_not_found)
551 *claimed = 0;
552 else
553 message(LDPL_FATAL,
554 "LLVM gold plugin has failed to create LTO module: %s",
555 EI.message().c_str());
556 });
557
558 return *claimed ? LDPS_ERR : LDPS_OK;
559 }
560
561 std::unique_ptr<InputFile> Obj = std::move(*ObjOrErr);
562
563 Modules.emplace_back();
564 claimed_file &cf = Modules.back();
565
566 cf.handle = file->handle;
567 // Keep track of the first handle for each file descriptor, since there are
568 // multiple in the case of an archive. This is used later in the case of
569 // ThinLTO parallel backends to ensure that each file is only opened and
570 // released once.
571 auto LeaderHandle =
572 FDToLeaderHandle.insert(std::make_pair(file->fd, file->handle)).first;
573 cf.leader_handle = LeaderHandle->second;
574 // Save the filesize since for parallel ThinLTO backends we can only
575 // invoke get_input_file once per archive (only for the leader handle).
576 cf.filesize = file->filesize;
577 // In the case of an archive library, all but the first member must have a
578 // non-zero offset, which we can append to the file name to obtain a
579 // unique name.
580 cf.name = file->name;
581 if (file->offset)
582 cf.name += ".llvm." + std::to_string(file->offset) + "." +
583 sys::path::filename(Obj->getSourceFileName()).str();
584
585 for (auto &Sym : Obj->symbols()) {
586 cf.syms.push_back(ld_plugin_symbol());
587 ld_plugin_symbol &sym = cf.syms.back();
588 sym.version = nullptr;
589 StringRef Name = Sym.getName();
590 sym.name = strdup(Name.str().c_str());
591
592 ResolutionInfo &Res = ResInfo[Name];
593
594 Res.CanOmitFromDynSym &= Sym.canBeOmittedFromSymbolTable();
595
596 sym.visibility = LDPV_DEFAULT;
597 GlobalValue::VisibilityTypes Vis = Sym.getVisibility();
598 if (Vis != GlobalValue::DefaultVisibility)
599 Res.DefaultVisibility = false;
600 switch (Vis) {
601 case GlobalValue::DefaultVisibility:
602 break;
603 case GlobalValue::HiddenVisibility:
604 sym.visibility = LDPV_HIDDEN;
605 break;
606 case GlobalValue::ProtectedVisibility:
607 sym.visibility = LDPV_PROTECTED;
608 break;
609 }
610
611 if (Sym.isUndefined()) {
612 sym.def = LDPK_UNDEF;
613 if (Sym.isWeak())
614 sym.def = LDPK_WEAKUNDEF;
615 } else if (Sym.isCommon())
616 sym.def = LDPK_COMMON;
617 else if (Sym.isWeak())
618 sym.def = LDPK_WEAKDEF;
619 else
620 sym.def = LDPK_DEF;
621
622 sym.size = 0;
623 sym.comdat_key = nullptr;
624 int CI = Sym.getComdatIndex();
625 if (CI != -1) {
626 StringRef C = Obj->getComdatTable()[CI];
627 sym.comdat_key = strdup(C.str().c_str());
628 }
629
630 sym.resolution = LDPR_UNKNOWN;
631 }
632
633 if (!cf.syms.empty()) {
634 if (add_symbols(cf.handle, cf.syms.size(), cf.syms.data()) != LDPS_OK) {
635 message(LDPL_ERROR, "Unable to add symbols!");
636 return LDPS_ERR;
637 }
638 }
639
640 // Handle any --wrap options passed to gold, which are than passed
641 // along to the plugin.
642 if (get_wrap_symbols) {
643 const char **wrap_symbols;
644 uint64_t count = 0;
645 if (get_wrap_symbols(&count, &wrap_symbols) != LDPS_OK) {
646 message(LDPL_ERROR, "Unable to get wrap symbols!");
647 return LDPS_ERR;
648 }
649 for (uint64_t i = 0; i < count; i++) {
650 StringRef Name = wrap_symbols[i];
651 ResolutionInfo &Res = ResInfo[Name];
652 ResolutionInfo &WrapRes = ResInfo["__wrap_" + Name.str()];
653 ResolutionInfo &RealRes = ResInfo["__real_" + Name.str()];
654 // Tell LTO not to inline symbols that will be overwritten.
655 Res.CanInline = false;
656 RealRes.CanInline = false;
657 // Tell LTO not to eliminate symbols that will be used after renaming.
658 Res.IsUsedInRegularObj = true;
659 WrapRes.IsUsedInRegularObj = true;
660 }
661 }
662
663 return LDPS_OK;
664 }
665
freeSymName(ld_plugin_symbol & Sym)666 static void freeSymName(ld_plugin_symbol &Sym) {
667 free(Sym.name);
668 free(Sym.comdat_key);
669 Sym.name = nullptr;
670 Sym.comdat_key = nullptr;
671 }
672
673 /// Helper to get a file's symbols and a view into it via gold callbacks.
getSymbolsAndView(claimed_file & F)674 static const void *getSymbolsAndView(claimed_file &F) {
675 ld_plugin_status status = get_symbols(F.handle, F.syms.size(), F.syms.data());
676 if (status == LDPS_NO_SYMS)
677 return nullptr;
678
679 if (status != LDPS_OK)
680 message(LDPL_FATAL, "Failed to get symbol information");
681
682 const void *View;
683 if (get_view(F.handle, &View) != LDPS_OK)
684 message(LDPL_FATAL, "Failed to get a view of file");
685
686 return View;
687 }
688
689 /// Parse the thinlto-object-suffix-replace option into the \p OldSuffix and
690 /// \p NewSuffix strings, if it was specified.
getThinLTOOldAndNewSuffix(std::string & OldSuffix,std::string & NewSuffix)691 static void getThinLTOOldAndNewSuffix(std::string &OldSuffix,
692 std::string &NewSuffix) {
693 assert(options::thinlto_object_suffix_replace.empty() ||
694 options::thinlto_object_suffix_replace.find(';') != StringRef::npos);
695 StringRef SuffixReplace = options::thinlto_object_suffix_replace;
696 auto Split = SuffixReplace.split(';');
697 OldSuffix = std::string(Split.first);
698 NewSuffix = std::string(Split.second);
699 }
700
701 /// Given the original \p Path to an output file, replace any filename
702 /// suffix matching \p OldSuffix with \p NewSuffix.
getThinLTOObjectFileName(StringRef Path,StringRef OldSuffix,StringRef NewSuffix)703 static std::string getThinLTOObjectFileName(StringRef Path, StringRef OldSuffix,
704 StringRef NewSuffix) {
705 if (Path.consume_back(OldSuffix))
706 return (Path + NewSuffix).str();
707 return std::string(Path);
708 }
709
710 // Returns true if S is valid as a C language identifier.
isValidCIdentifier(StringRef S)711 static bool isValidCIdentifier(StringRef S) {
712 return !S.empty() && (isAlpha(S[0]) || S[0] == '_') &&
713 std::all_of(S.begin() + 1, S.end(),
714 [](char C) { return C == '_' || isAlnum(C); });
715 }
716
isUndefined(ld_plugin_symbol & Sym)717 static bool isUndefined(ld_plugin_symbol &Sym) {
718 return Sym.def == LDPK_UNDEF || Sym.def == LDPK_WEAKUNDEF;
719 }
720
addModule(LTO & Lto,claimed_file & F,const void * View,StringRef Filename)721 static void addModule(LTO &Lto, claimed_file &F, const void *View,
722 StringRef Filename) {
723 MemoryBufferRef BufferRef(StringRef((const char *)View, F.filesize),
724 Filename);
725 Expected<std::unique_ptr<InputFile>> ObjOrErr = InputFile::create(BufferRef);
726
727 if (!ObjOrErr)
728 message(LDPL_FATAL, "Could not read bitcode from file : %s",
729 toString(ObjOrErr.takeError()).c_str());
730
731 unsigned SymNum = 0;
732 std::unique_ptr<InputFile> Input = std::move(ObjOrErr.get());
733 auto InputFileSyms = Input->symbols();
734 assert(InputFileSyms.size() == F.syms.size());
735 std::vector<SymbolResolution> Resols(F.syms.size());
736 for (ld_plugin_symbol &Sym : F.syms) {
737 const InputFile::Symbol &InpSym = InputFileSyms[SymNum];
738 SymbolResolution &R = Resols[SymNum++];
739
740 ld_plugin_symbol_resolution Resolution =
741 (ld_plugin_symbol_resolution)Sym.resolution;
742
743 ResolutionInfo &Res = ResInfo[Sym.name];
744
745 switch (Resolution) {
746 case LDPR_UNKNOWN:
747 llvm_unreachable("Unexpected resolution");
748
749 case LDPR_RESOLVED_IR:
750 case LDPR_RESOLVED_EXEC:
751 case LDPR_PREEMPTED_IR:
752 case LDPR_PREEMPTED_REG:
753 case LDPR_UNDEF:
754 break;
755
756 case LDPR_RESOLVED_DYN:
757 R.ExportDynamic = true;
758 break;
759
760 case LDPR_PREVAILING_DEF_IRONLY:
761 R.Prevailing = !isUndefined(Sym);
762 break;
763
764 case LDPR_PREVAILING_DEF:
765 R.Prevailing = !isUndefined(Sym);
766 R.VisibleToRegularObj = true;
767 break;
768
769 case LDPR_PREVAILING_DEF_IRONLY_EXP:
770 R.Prevailing = !isUndefined(Sym);
771 // Identify symbols exported dynamically, and that therefore could be
772 // referenced by a shared library not visible to the linker.
773 R.ExportDynamic = true;
774 if (!Res.CanOmitFromDynSym)
775 R.VisibleToRegularObj = true;
776 break;
777 }
778
779 // If the symbol has a C identifier section name, we need to mark
780 // it as visible to a regular object so that LTO will keep it around
781 // to ensure the linker generates special __start_<secname> and
782 // __stop_<secname> symbols which may be used elsewhere.
783 if (isValidCIdentifier(InpSym.getSectionName()))
784 R.VisibleToRegularObj = true;
785
786 if (Resolution != LDPR_RESOLVED_DYN && Resolution != LDPR_UNDEF &&
787 (IsExecutable || !Res.DefaultVisibility))
788 R.FinalDefinitionInLinkageUnit = true;
789
790 if (!Res.CanInline)
791 R.LinkerRedefined = true;
792
793 if (Res.IsUsedInRegularObj)
794 R.VisibleToRegularObj = true;
795
796 freeSymName(Sym);
797 }
798
799 check(Lto.add(std::move(Input), Resols),
800 std::string("Failed to link module ") + F.name);
801 }
802
recordFile(const std::string & Filename,bool TempOutFile)803 static void recordFile(const std::string &Filename, bool TempOutFile) {
804 if (add_input_file(Filename.c_str()) != LDPS_OK)
805 message(LDPL_FATAL,
806 "Unable to add .o file to the link. File left behind in: %s",
807 Filename.c_str());
808 if (TempOutFile)
809 Cleanup.push_back(Filename);
810 }
811
812 /// Return the desired output filename given a base input name, a flag
813 /// indicating whether a temp file should be generated, and an optional task id.
814 /// The new filename generated is returned in \p NewFilename.
getOutputFileName(StringRef InFilename,bool TempOutFile,SmallString<128> & NewFilename,int TaskID)815 static int getOutputFileName(StringRef InFilename, bool TempOutFile,
816 SmallString<128> &NewFilename, int TaskID) {
817 int FD = -1;
818 if (TempOutFile) {
819 std::error_code EC =
820 sys::fs::createTemporaryFile("lto-llvm", "o", FD, NewFilename);
821 if (EC)
822 message(LDPL_FATAL, "Could not create temporary file: %s",
823 EC.message().c_str());
824 } else {
825 NewFilename = InFilename;
826 if (TaskID > 0)
827 NewFilename += utostr(TaskID);
828 std::error_code EC =
829 sys::fs::openFileForWrite(NewFilename, FD, sys::fs::CD_CreateAlways);
830 if (EC)
831 message(LDPL_FATAL, "Could not open file %s: %s", NewFilename.c_str(),
832 EC.message().c_str());
833 }
834 return FD;
835 }
836
getCGOptLevel()837 static CodeGenOpt::Level getCGOptLevel() {
838 switch (options::OptLevel) {
839 case 0:
840 return CodeGenOpt::None;
841 case 1:
842 return CodeGenOpt::Less;
843 case 2:
844 return CodeGenOpt::Default;
845 case 3:
846 return CodeGenOpt::Aggressive;
847 }
848 llvm_unreachable("Invalid optimization level");
849 }
850
851 /// Parse the thinlto_prefix_replace option into the \p OldPrefix and
852 /// \p NewPrefix strings, if it was specified.
getThinLTOOldAndNewPrefix(std::string & OldPrefix,std::string & NewPrefix)853 static void getThinLTOOldAndNewPrefix(std::string &OldPrefix,
854 std::string &NewPrefix) {
855 StringRef PrefixReplace = options::thinlto_prefix_replace;
856 assert(PrefixReplace.empty() || PrefixReplace.find(';') != StringRef::npos);
857 auto Split = PrefixReplace.split(';');
858 OldPrefix = std::string(Split.first);
859 NewPrefix = std::string(Split.second);
860 }
861
862 /// Creates instance of LTO.
863 /// OnIndexWrite is callback to let caller know when LTO writes index files.
864 /// LinkedObjectsFile is an output stream to write the list of object files for
865 /// the final ThinLTO linking. Can be nullptr.
createLTO(IndexWriteCallback OnIndexWrite,raw_fd_ostream * LinkedObjectsFile)866 static std::unique_ptr<LTO> createLTO(IndexWriteCallback OnIndexWrite,
867 raw_fd_ostream *LinkedObjectsFile) {
868 Config Conf;
869 ThinBackend Backend;
870
871 Conf.CPU = options::mcpu;
872 Conf.Options = codegen::InitTargetOptionsFromCodeGenFlags(Triple());
873
874 // Disable the new X86 relax relocations since gold might not support them.
875 // FIXME: Check the gold version or add a new option to enable them.
876 Conf.Options.RelaxELFRelocations = false;
877
878 // Toggle function/data sections.
879 if (!codegen::getExplicitFunctionSections())
880 Conf.Options.FunctionSections = SplitSections;
881 if (!codegen::getExplicitDataSections())
882 Conf.Options.DataSections = SplitSections;
883
884 Conf.MAttrs = codegen::getMAttrs();
885 Conf.RelocModel = RelocationModel;
886 Conf.CodeModel = codegen::getExplicitCodeModel();
887 Conf.CGOptLevel = getCGOptLevel();
888 Conf.DisableVerify = options::DisableVerify;
889 Conf.OptLevel = options::OptLevel;
890 Conf.PTO.LoopVectorization = options::OptLevel > 1;
891 Conf.PTO.SLPVectorization = options::OptLevel > 1;
892 Conf.AlwaysEmitRegularLTOObj = !options::obj_path.empty();
893
894 if (options::thinlto_index_only) {
895 std::string OldPrefix, NewPrefix;
896 getThinLTOOldAndNewPrefix(OldPrefix, NewPrefix);
897 Backend = createWriteIndexesThinBackend(OldPrefix, NewPrefix,
898 options::thinlto_emit_imports_files,
899 LinkedObjectsFile, OnIndexWrite);
900 } else {
901 Backend = createInProcessThinBackend(
902 llvm::heavyweight_hardware_concurrency(options::Parallelism));
903 }
904
905 Conf.OverrideTriple = options::triple;
906 Conf.DefaultTriple = sys::getDefaultTargetTriple();
907
908 Conf.DiagHandler = diagnosticHandler;
909
910 switch (options::TheOutputType) {
911 case options::OT_NORMAL:
912 break;
913
914 case options::OT_DISABLE:
915 Conf.PreOptModuleHook = [](size_t Task, const Module &M) { return false; };
916 break;
917
918 case options::OT_BC_ONLY:
919 Conf.PostInternalizeModuleHook = [](size_t Task, const Module &M) {
920 std::error_code EC;
921 SmallString<128> TaskFilename;
922 getOutputFileName(output_name, /* TempOutFile */ false, TaskFilename,
923 Task);
924 raw_fd_ostream OS(TaskFilename, EC, sys::fs::OpenFlags::OF_None);
925 if (EC)
926 message(LDPL_FATAL, "Failed to write the output file.");
927 WriteBitcodeToFile(M, OS, /* ShouldPreserveUseListOrder */ false);
928 return false;
929 };
930 break;
931
932 case options::OT_SAVE_TEMPS:
933 check(Conf.addSaveTemps(output_name + ".",
934 /* UseInputModulePath */ true));
935 break;
936 case options::OT_ASM_ONLY:
937 Conf.CGFileType = CGFT_AssemblyFile;
938 break;
939 }
940
941 if (!options::sample_profile.empty())
942 Conf.SampleProfile = options::sample_profile;
943
944 if (!options::cs_profile_path.empty())
945 Conf.CSIRProfile = options::cs_profile_path;
946 Conf.RunCSIRInstr = options::cs_pgo_gen;
947
948 Conf.DwoDir = options::dwo_dir;
949
950 // Set up optimization remarks handling.
951 Conf.RemarksFilename = options::RemarksFilename;
952 Conf.RemarksPasses = options::RemarksPasses;
953 Conf.RemarksWithHotness = options::RemarksWithHotness;
954 Conf.RemarksHotnessThreshold = options::RemarksHotnessThreshold;
955 Conf.RemarksFormat = options::RemarksFormat;
956
957 // Use new pass manager if set in driver
958 Conf.UseNewPM = options::new_pass_manager;
959 // Debug new pass manager if requested
960 Conf.DebugPassManager = options::debug_pass_manager;
961
962 Conf.HasWholeProgramVisibility = options::whole_program_visibility;
963
964 Conf.StatsFile = options::stats_file;
965 return std::make_unique<LTO>(std::move(Conf), Backend,
966 options::ParallelCodeGenParallelismLevel);
967 }
968
969 // Write empty files that may be expected by a distributed build
970 // system when invoked with thinlto_index_only. This is invoked when
971 // the linker has decided not to include the given module in the
972 // final link. Frequently the distributed build system will want to
973 // confirm that all expected outputs are created based on all of the
974 // modules provided to the linker.
975 // If SkipModule is true then .thinlto.bc should contain just
976 // SkipModuleByDistributedBackend flag which requests distributed backend
977 // to skip the compilation of the corresponding module and produce an empty
978 // object file.
writeEmptyDistributedBuildOutputs(const std::string & ModulePath,const std::string & OldPrefix,const std::string & NewPrefix,bool SkipModule)979 static void writeEmptyDistributedBuildOutputs(const std::string &ModulePath,
980 const std::string &OldPrefix,
981 const std::string &NewPrefix,
982 bool SkipModule) {
983 std::string NewModulePath =
984 getThinLTOOutputFile(ModulePath, OldPrefix, NewPrefix);
985 std::error_code EC;
986 {
987 raw_fd_ostream OS(NewModulePath + ".thinlto.bc", EC,
988 sys::fs::OpenFlags::OF_None);
989 if (EC)
990 message(LDPL_FATAL, "Failed to write '%s': %s",
991 (NewModulePath + ".thinlto.bc").c_str(), EC.message().c_str());
992
993 if (SkipModule) {
994 ModuleSummaryIndex Index(/*HaveGVs*/ false);
995 Index.setSkipModuleByDistributedBackend();
996 WriteIndexToFile(Index, OS, nullptr);
997 }
998 }
999 if (options::thinlto_emit_imports_files) {
1000 raw_fd_ostream OS(NewModulePath + ".imports", EC,
1001 sys::fs::OpenFlags::OF_None);
1002 if (EC)
1003 message(LDPL_FATAL, "Failed to write '%s': %s",
1004 (NewModulePath + ".imports").c_str(), EC.message().c_str());
1005 }
1006 }
1007
1008 // Creates and returns output stream with a list of object files for final
1009 // linking of distributed ThinLTO.
CreateLinkedObjectsFile()1010 static std::unique_ptr<raw_fd_ostream> CreateLinkedObjectsFile() {
1011 if (options::thinlto_linked_objects_file.empty())
1012 return nullptr;
1013 assert(options::thinlto_index_only);
1014 std::error_code EC;
1015 auto LinkedObjectsFile = std::make_unique<raw_fd_ostream>(
1016 options::thinlto_linked_objects_file, EC, sys::fs::OpenFlags::OF_None);
1017 if (EC)
1018 message(LDPL_FATAL, "Failed to create '%s': %s",
1019 options::thinlto_linked_objects_file.c_str(), EC.message().c_str());
1020 return LinkedObjectsFile;
1021 }
1022
1023 /// Runs LTO and return a list of pairs <FileName, IsTemporary>.
runLTO()1024 static std::vector<std::pair<SmallString<128>, bool>> runLTO() {
1025 // Map to own RAII objects that manage the file opening and releasing
1026 // interfaces with gold. This is needed only for ThinLTO mode, since
1027 // unlike regular LTO, where addModule will result in the opened file
1028 // being merged into a new combined module, we need to keep these files open
1029 // through Lto->run().
1030 DenseMap<void *, std::unique_ptr<PluginInputFile>> HandleToInputFile;
1031
1032 // Owns string objects and tells if index file was already created.
1033 StringMap<bool> ObjectToIndexFileState;
1034
1035 std::unique_ptr<raw_fd_ostream> LinkedObjects = CreateLinkedObjectsFile();
1036 std::unique_ptr<LTO> Lto = createLTO(
1037 [&ObjectToIndexFileState](const std::string &Identifier) {
1038 ObjectToIndexFileState[Identifier] = true;
1039 },
1040 LinkedObjects.get());
1041
1042 std::string OldPrefix, NewPrefix;
1043 if (options::thinlto_index_only)
1044 getThinLTOOldAndNewPrefix(OldPrefix, NewPrefix);
1045
1046 std::string OldSuffix, NewSuffix;
1047 getThinLTOOldAndNewSuffix(OldSuffix, NewSuffix);
1048
1049 for (claimed_file &F : Modules) {
1050 if (options::thinlto && !HandleToInputFile.count(F.leader_handle))
1051 HandleToInputFile.insert(std::make_pair(
1052 F.leader_handle, std::make_unique<PluginInputFile>(F.handle)));
1053 // In case we are thin linking with a minimized bitcode file, ensure
1054 // the module paths encoded in the index reflect where the backends
1055 // will locate the full bitcode files for compiling/importing.
1056 std::string Identifier =
1057 getThinLTOObjectFileName(F.name, OldSuffix, NewSuffix);
1058 auto ObjFilename = ObjectToIndexFileState.insert({Identifier, false});
1059 assert(ObjFilename.second);
1060 if (const void *View = getSymbolsAndView(F))
1061 addModule(*Lto, F, View, ObjFilename.first->first());
1062 else if (options::thinlto_index_only) {
1063 ObjFilename.first->second = true;
1064 writeEmptyDistributedBuildOutputs(Identifier, OldPrefix, NewPrefix,
1065 /* SkipModule */ true);
1066 }
1067 }
1068
1069 SmallString<128> Filename;
1070 // Note that getOutputFileName will append a unique ID for each task
1071 if (!options::obj_path.empty())
1072 Filename = options::obj_path;
1073 else if (options::TheOutputType == options::OT_SAVE_TEMPS)
1074 Filename = output_name + ".lto.o";
1075 else if (options::TheOutputType == options::OT_ASM_ONLY)
1076 Filename = output_name;
1077 bool SaveTemps = !Filename.empty();
1078
1079 size_t MaxTasks = Lto->getMaxTasks();
1080 std::vector<std::pair<SmallString<128>, bool>> Files(MaxTasks);
1081
1082 auto AddStream =
1083 [&](size_t Task) -> std::unique_ptr<lto::NativeObjectStream> {
1084 Files[Task].second = !SaveTemps;
1085 int FD = getOutputFileName(Filename, /* TempOutFile */ !SaveTemps,
1086 Files[Task].first, Task);
1087 return std::make_unique<lto::NativeObjectStream>(
1088 std::make_unique<llvm::raw_fd_ostream>(FD, true));
1089 };
1090
1091 auto AddBuffer = [&](size_t Task, std::unique_ptr<MemoryBuffer> MB) {
1092 *AddStream(Task)->OS << MB->getBuffer();
1093 };
1094
1095 NativeObjectCache Cache;
1096 if (!options::cache_dir.empty())
1097 Cache = check(localCache(options::cache_dir, AddBuffer));
1098
1099 check(Lto->run(AddStream, Cache));
1100
1101 // Write empty output files that may be expected by the distributed build
1102 // system.
1103 if (options::thinlto_index_only)
1104 for (auto &Identifier : ObjectToIndexFileState)
1105 if (!Identifier.getValue())
1106 writeEmptyDistributedBuildOutputs(std::string(Identifier.getKey()),
1107 OldPrefix, NewPrefix,
1108 /* SkipModule */ false);
1109
1110 return Files;
1111 }
1112
1113 /// gold informs us that all symbols have been read. At this point, we use
1114 /// get_symbols to see if any of our definitions have been overridden by a
1115 /// native object file. Then, perform optimization and codegen.
allSymbolsReadHook()1116 static ld_plugin_status allSymbolsReadHook() {
1117 if (Modules.empty())
1118 return LDPS_OK;
1119
1120 if (unsigned NumOpts = options::extra.size())
1121 cl::ParseCommandLineOptions(NumOpts, &options::extra[0]);
1122
1123 std::vector<std::pair<SmallString<128>, bool>> Files = runLTO();
1124
1125 if (options::TheOutputType == options::OT_DISABLE ||
1126 options::TheOutputType == options::OT_BC_ONLY ||
1127 options::TheOutputType == options::OT_ASM_ONLY)
1128 return LDPS_OK;
1129
1130 if (options::thinlto_index_only) {
1131 llvm_shutdown();
1132 cleanup_hook();
1133 exit(0);
1134 }
1135
1136 for (const auto &F : Files)
1137 if (!F.first.empty())
1138 recordFile(std::string(F.first.str()), F.second);
1139
1140 if (!options::extra_library_path.empty() &&
1141 set_extra_library_path(options::extra_library_path.c_str()) != LDPS_OK)
1142 message(LDPL_FATAL, "Unable to set the extra library path.");
1143
1144 return LDPS_OK;
1145 }
1146
all_symbols_read_hook(void)1147 static ld_plugin_status all_symbols_read_hook(void) {
1148 ld_plugin_status Ret = allSymbolsReadHook();
1149 llvm_shutdown();
1150
1151 if (options::TheOutputType == options::OT_BC_ONLY ||
1152 options::TheOutputType == options::OT_ASM_ONLY ||
1153 options::TheOutputType == options::OT_DISABLE) {
1154 if (options::TheOutputType == options::OT_DISABLE) {
1155 // Remove the output file here since ld.bfd creates the output file
1156 // early.
1157 std::error_code EC = sys::fs::remove(output_name);
1158 if (EC)
1159 message(LDPL_ERROR, "Failed to delete '%s': %s", output_name.c_str(),
1160 EC.message().c_str());
1161 }
1162 exit(0);
1163 }
1164
1165 return Ret;
1166 }
1167
cleanup_hook(void)1168 static ld_plugin_status cleanup_hook(void) {
1169 for (std::string &Name : Cleanup) {
1170 std::error_code EC = sys::fs::remove(Name);
1171 if (EC)
1172 message(LDPL_ERROR, "Failed to delete '%s': %s", Name.c_str(),
1173 EC.message().c_str());
1174 }
1175
1176 // Prune cache
1177 if (!options::cache_dir.empty()) {
1178 CachePruningPolicy policy = check(parseCachePruningPolicy(options::cache_policy));
1179 pruneCache(options::cache_dir, policy);
1180 }
1181
1182 return LDPS_OK;
1183 }
1184