1 //===- ScriptParser.cpp ---------------------------------------------------===//
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 file contains a recursive-descendent parser for linker scripts.
10 // Parsed results are stored to Config and Script global objects.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "ScriptParser.h"
15 #include "Config.h"
16 #include "Driver.h"
17 #include "InputSection.h"
18 #include "LinkerScript.h"
19 #include "OutputSections.h"
20 #include "ScriptLexer.h"
21 #include "Symbols.h"
22 #include "Target.h"
23 #include "lld/Common/Memory.h"
24 #include "llvm/ADT/SmallString.h"
25 #include "llvm/ADT/StringRef.h"
26 #include "llvm/ADT/StringSet.h"
27 #include "llvm/ADT/StringSwitch.h"
28 #include "llvm/BinaryFormat/ELF.h"
29 #include "llvm/Support/Casting.h"
30 #include "llvm/Support/ErrorHandling.h"
31 #include "llvm/Support/FileSystem.h"
32 #include "llvm/Support/Path.h"
33 #include "llvm/Support/ScopedPrinter.h"
34 #include <cassert>
35 #include <limits>
36 #include <vector>
37 
38 using namespace llvm;
39 using namespace llvm::ELF;
40 using namespace llvm::support::endian;
41 
42 namespace lld {
43 namespace elf {
44 namespace {
45 class ScriptParser final : ScriptLexer {
46 public:
47   ScriptParser(MemoryBufferRef mb) : ScriptLexer(mb) {
48     // Initialize IsUnderSysroot
49     if (config->sysroot == "")
50       return;
51     StringRef path = mb.getBufferIdentifier();
52     for (; !path.empty(); path = sys::path::parent_path(path)) {
53       if (!sys::fs::equivalent(config->sysroot, path))
54         continue;
55       isUnderSysroot = true;
56       return;
57     }
58   }
59 
60   void readLinkerScript();
61   void readVersionScript();
62   void readDynamicList();
63   void readDefsym(StringRef name);
64 
65 private:
66   void addFile(StringRef path);
67 
68   void readAsNeeded();
69   void readEntry();
70   void readExtern();
71   void readGroup();
72   void readInclude();
73   void readInput();
74   void readMemory();
75   void readOutput();
76   void readOutputArch();
77   void readOutputFormat();
78   void readPhdrs();
79   void readRegionAlias();
80   void readSearchDir();
81   void readSections();
82   void readTarget();
83   void readVersion();
84   void readVersionScriptCommand();
85 
86   SymbolAssignment *readSymbolAssignment(StringRef name);
87   ByteCommand *readByteCommand(StringRef tok);
88   std::array<uint8_t, 4> readFill();
89   bool readSectionDirective(OutputSection *cmd, StringRef tok1, StringRef tok2);
90   void readSectionAddressType(OutputSection *cmd);
91   OutputSection *readOverlaySectionDescription();
92   OutputSection *readOutputSectionDescription(StringRef outSec);
93   std::vector<BaseCommand *> readOverlay();
94   std::vector<StringRef> readOutputSectionPhdrs();
95   std::pair<uint64_t, uint64_t> readInputSectionFlags();
96   InputSectionDescription *readInputSectionDescription(StringRef tok);
97   StringMatcher readFilePatterns();
98   std::vector<SectionPattern> readInputSectionsList();
99   InputSectionDescription *readInputSectionRules(StringRef filePattern,
100                                                  uint64_t withFlags,
101                                                  uint64_t withoutFlags);
102   unsigned readPhdrType();
103   SortSectionPolicy readSortKind();
104   SymbolAssignment *readProvideHidden(bool provide, bool hidden);
105   SymbolAssignment *readAssignment(StringRef tok);
106   void readSort();
107   Expr readAssert();
108   Expr readConstant();
109   Expr getPageSize();
110 
111   Expr readMemoryAssignment(StringRef, StringRef, StringRef);
112   std::pair<uint32_t, uint32_t> readMemoryAttributes();
113 
114   Expr combine(StringRef op, Expr l, Expr r);
115   Expr readExpr();
116   Expr readExpr1(Expr lhs, int minPrec);
117   StringRef readParenLiteral();
118   Expr readPrimary();
119   Expr readTernary(Expr cond);
120   Expr readParenExpr();
121 
122   // For parsing version script.
123   std::vector<SymbolVersion> readVersionExtern();
124   void readAnonymousDeclaration();
125   void readVersionDeclaration(StringRef verStr);
126 
127   std::pair<std::vector<SymbolVersion>, std::vector<SymbolVersion>>
128   readSymbols();
129 
130   // True if a script being read is in a subdirectory specified by -sysroot.
131   bool isUnderSysroot = false;
132 
133   // A set to detect an INCLUDE() cycle.
134   StringSet<> seen;
135 };
136 } // namespace
137 
138 static StringRef unquote(StringRef s) {
139   if (s.startswith("\""))
140     return s.substr(1, s.size() - 2);
141   return s;
142 }
143 
144 // Some operations only support one non absolute value. Move the
145 // absolute one to the right hand side for convenience.
146 static void moveAbsRight(ExprValue &a, ExprValue &b) {
147   if (a.sec == nullptr || (a.forceAbsolute && !b.isAbsolute()))
148     std::swap(a, b);
149   if (!b.isAbsolute())
150     error(a.loc + ": at least one side of the expression must be absolute");
151 }
152 
153 static ExprValue add(ExprValue a, ExprValue b) {
154   moveAbsRight(a, b);
155   return {a.sec, a.forceAbsolute, a.getSectionOffset() + b.getValue(), a.loc};
156 }
157 
158 static ExprValue sub(ExprValue a, ExprValue b) {
159   // The distance between two symbols in sections is absolute.
160   if (!a.isAbsolute() && !b.isAbsolute())
161     return a.getValue() - b.getValue();
162   return {a.sec, false, a.getSectionOffset() - b.getValue(), a.loc};
163 }
164 
165 static ExprValue bitAnd(ExprValue a, ExprValue b) {
166   moveAbsRight(a, b);
167   return {a.sec, a.forceAbsolute,
168           (a.getValue() & b.getValue()) - a.getSecAddr(), a.loc};
169 }
170 
171 static ExprValue bitOr(ExprValue a, ExprValue b) {
172   moveAbsRight(a, b);
173   return {a.sec, a.forceAbsolute,
174           (a.getValue() | b.getValue()) - a.getSecAddr(), a.loc};
175 }
176 
177 void ScriptParser::readDynamicList() {
178   config->hasDynamicList = true;
179   expect("{");
180   std::vector<SymbolVersion> locals;
181   std::vector<SymbolVersion> globals;
182   std::tie(locals, globals) = readSymbols();
183   expect(";");
184 
185   if (!atEOF()) {
186     setError("EOF expected, but got " + next());
187     return;
188   }
189   if (!locals.empty()) {
190     setError("\"local:\" scope not supported in --dynamic-list");
191     return;
192   }
193 
194   for (SymbolVersion v : globals)
195     config->dynamicList.push_back(v);
196 }
197 
198 void ScriptParser::readVersionScript() {
199   readVersionScriptCommand();
200   if (!atEOF())
201     setError("EOF expected, but got " + next());
202 }
203 
204 void ScriptParser::readVersionScriptCommand() {
205   if (consume("{")) {
206     readAnonymousDeclaration();
207     return;
208   }
209 
210   while (!atEOF() && !errorCount() && peek() != "}") {
211     StringRef verStr = next();
212     if (verStr == "{") {
213       setError("anonymous version definition is used in "
214                "combination with other version definitions");
215       return;
216     }
217     expect("{");
218     readVersionDeclaration(verStr);
219   }
220 }
221 
222 void ScriptParser::readVersion() {
223   expect("{");
224   readVersionScriptCommand();
225   expect("}");
226 }
227 
228 void ScriptParser::readLinkerScript() {
229   while (!atEOF()) {
230     StringRef tok = next();
231     if (tok == ";")
232       continue;
233 
234     if (tok == "ENTRY") {
235       readEntry();
236     } else if (tok == "EXTERN") {
237       readExtern();
238     } else if (tok == "GROUP") {
239       readGroup();
240     } else if (tok == "INCLUDE") {
241       readInclude();
242     } else if (tok == "INPUT") {
243       readInput();
244     } else if (tok == "MEMORY") {
245       readMemory();
246     } else if (tok == "OUTPUT") {
247       readOutput();
248     } else if (tok == "OUTPUT_ARCH") {
249       readOutputArch();
250     } else if (tok == "OUTPUT_FORMAT") {
251       readOutputFormat();
252     } else if (tok == "PHDRS") {
253       readPhdrs();
254     } else if (tok == "REGION_ALIAS") {
255       readRegionAlias();
256     } else if (tok == "SEARCH_DIR") {
257       readSearchDir();
258     } else if (tok == "SECTIONS") {
259       readSections();
260     } else if (tok == "TARGET") {
261       readTarget();
262     } else if (tok == "VERSION") {
263       readVersion();
264     } else if (SymbolAssignment *cmd = readAssignment(tok)) {
265       script->sectionCommands.push_back(cmd);
266     } else {
267       setError("unknown directive: " + tok);
268     }
269   }
270 }
271 
272 void ScriptParser::readDefsym(StringRef name) {
273   if (errorCount())
274     return;
275   Expr e = readExpr();
276   if (!atEOF())
277     setError("EOF expected, but got " + next());
278   SymbolAssignment *cmd = make<SymbolAssignment>(name, e, getCurrentLocation());
279   script->sectionCommands.push_back(cmd);
280 }
281 
282 void ScriptParser::addFile(StringRef s) {
283   if (isUnderSysroot && s.startswith("/")) {
284     SmallString<128> pathData;
285     StringRef path = (config->sysroot + s).toStringRef(pathData);
286     if (sys::fs::exists(path)) {
287       driver->addFile(saver.save(path), /*withLOption=*/false);
288       return;
289     }
290   }
291 
292   if (s.startswith("/")) {
293     driver->addFile(s, /*withLOption=*/false);
294   } else if (s.startswith("=")) {
295     if (config->sysroot.empty())
296       driver->addFile(s.substr(1), /*withLOption=*/false);
297     else
298       driver->addFile(saver.save(config->sysroot + "/" + s.substr(1)),
299                       /*withLOption=*/false);
300   } else if (s.startswith("-l")) {
301     driver->addLibrary(s.substr(2));
302   } else if (sys::fs::exists(s)) {
303     driver->addFile(s, /*withLOption=*/false);
304   } else {
305     if (Optional<std::string> path = findFromSearchPaths(s))
306       driver->addFile(saver.save(*path), /*withLOption=*/true);
307     else
308       setError("unable to find " + s);
309   }
310 }
311 
312 void ScriptParser::readAsNeeded() {
313   expect("(");
314   bool orig = config->asNeeded;
315   config->asNeeded = true;
316   while (!errorCount() && !consume(")"))
317     addFile(unquote(next()));
318   config->asNeeded = orig;
319 }
320 
321 void ScriptParser::readEntry() {
322   // -e <symbol> takes predecence over ENTRY(<symbol>).
323   expect("(");
324   StringRef tok = next();
325   if (config->entry.empty())
326     config->entry = tok;
327   expect(")");
328 }
329 
330 void ScriptParser::readExtern() {
331   expect("(");
332   while (!errorCount() && !consume(")"))
333     config->undefined.push_back(unquote(next()));
334 }
335 
336 void ScriptParser::readGroup() {
337   bool orig = InputFile::isInGroup;
338   InputFile::isInGroup = true;
339   readInput();
340   InputFile::isInGroup = orig;
341   if (!orig)
342     ++InputFile::nextGroupId;
343 }
344 
345 void ScriptParser::readInclude() {
346   StringRef tok = unquote(next());
347 
348   if (!seen.insert(tok).second) {
349     setError("there is a cycle in linker script INCLUDEs");
350     return;
351   }
352 
353   if (Optional<std::string> path = searchScript(tok)) {
354     if (Optional<MemoryBufferRef> mb = readFile(*path))
355       tokenize(*mb);
356     return;
357   }
358   setError("cannot find linker script " + tok);
359 }
360 
361 void ScriptParser::readInput() {
362   expect("(");
363   while (!errorCount() && !consume(")")) {
364     if (consume("AS_NEEDED"))
365       readAsNeeded();
366     else
367       addFile(unquote(next()));
368   }
369 }
370 
371 void ScriptParser::readOutput() {
372   // -o <file> takes predecence over OUTPUT(<file>).
373   expect("(");
374   StringRef tok = next();
375   if (config->outputFile.empty())
376     config->outputFile = unquote(tok);
377   expect(")");
378 }
379 
380 void ScriptParser::readOutputArch() {
381   // OUTPUT_ARCH is ignored for now.
382   expect("(");
383   while (!errorCount() && !consume(")"))
384     skip();
385 }
386 
387 static std::pair<ELFKind, uint16_t> parseBfdName(StringRef s) {
388   return StringSwitch<std::pair<ELFKind, uint16_t>>(s)
389       .Case("elf32-i386", {ELF32LEKind, EM_386})
390       .Case("elf32-iamcu", {ELF32LEKind, EM_IAMCU})
391       .Case("elf32-littlearm", {ELF32LEKind, EM_ARM})
392       .Case("elf32-x86-64", {ELF32LEKind, EM_X86_64})
393       .Case("elf64-aarch64", {ELF64LEKind, EM_AARCH64})
394       .Case("elf64-littleaarch64", {ELF64LEKind, EM_AARCH64})
395       .Case("elf32-powerpc", {ELF32BEKind, EM_PPC})
396       .Case("elf64-powerpc", {ELF64BEKind, EM_PPC64})
397       .Case("elf64-powerpcle", {ELF64LEKind, EM_PPC64})
398       .Case("elf64-x86-64", {ELF64LEKind, EM_X86_64})
399       .Cases("elf32-tradbigmips", "elf32-bigmips", {ELF32BEKind, EM_MIPS})
400       .Case("elf32-ntradbigmips", {ELF32BEKind, EM_MIPS})
401       .Case("elf32-tradlittlemips", {ELF32LEKind, EM_MIPS})
402       .Case("elf32-ntradlittlemips", {ELF32LEKind, EM_MIPS})
403       .Case("elf64-tradbigmips", {ELF64BEKind, EM_MIPS})
404       .Case("elf64-tradlittlemips", {ELF64LEKind, EM_MIPS})
405       .Case("elf32-littleriscv", {ELF32LEKind, EM_RISCV})
406       .Case("elf64-littleriscv", {ELF64LEKind, EM_RISCV})
407       .Default({ELFNoneKind, EM_NONE});
408 }
409 
410 // Parse OUTPUT_FORMAT(bfdname) or OUTPUT_FORMAT(bfdname, big, little).
411 // Currently we ignore big and little parameters.
412 void ScriptParser::readOutputFormat() {
413   expect("(");
414 
415   config->bfdname = unquote(next());
416   StringRef s = config->bfdname;
417   if (s.consume_back("-freebsd"))
418     config->osabi = ELFOSABI_FREEBSD;
419 
420   std::tie(config->ekind, config->emachine) = parseBfdName(s);
421   if (config->emachine == EM_NONE)
422     setError("unknown output format name: " + config->bfdname);
423   if (s == "elf32-ntradlittlemips" || s == "elf32-ntradbigmips")
424     config->mipsN32Abi = true;
425 
426   if (consume(")"))
427     return;
428   expect(",");
429   skip();
430   expect(",");
431   skip();
432   expect(")");
433 }
434 
435 void ScriptParser::readPhdrs() {
436   expect("{");
437 
438   while (!errorCount() && !consume("}")) {
439     PhdrsCommand cmd;
440     cmd.name = next();
441     cmd.type = readPhdrType();
442 
443     while (!errorCount() && !consume(";")) {
444       if (consume("FILEHDR"))
445         cmd.hasFilehdr = true;
446       else if (consume("PHDRS"))
447         cmd.hasPhdrs = true;
448       else if (consume("AT"))
449         cmd.lmaExpr = readParenExpr();
450       else if (consume("FLAGS"))
451         cmd.flags = readParenExpr()().getValue();
452       else
453         setError("unexpected header attribute: " + next());
454     }
455 
456     script->phdrsCommands.push_back(cmd);
457   }
458 }
459 
460 void ScriptParser::readRegionAlias() {
461   expect("(");
462   StringRef alias = unquote(next());
463   expect(",");
464   StringRef name = next();
465   expect(")");
466 
467   if (script->memoryRegions.count(alias))
468     setError("redefinition of memory region '" + alias + "'");
469   if (!script->memoryRegions.count(name))
470     setError("memory region '" + name + "' is not defined");
471   script->memoryRegions.insert({alias, script->memoryRegions[name]});
472 }
473 
474 void ScriptParser::readSearchDir() {
475   expect("(");
476   StringRef tok = next();
477   if (!config->nostdlib)
478     config->searchPaths.push_back(unquote(tok));
479   expect(")");
480 }
481 
482 // This reads an overlay description. Overlays are used to describe output
483 // sections that use the same virtual memory range and normally would trigger
484 // linker's sections sanity check failures.
485 // https://sourceware.org/binutils/docs/ld/Overlay-Description.html#Overlay-Description
486 std::vector<BaseCommand *> ScriptParser::readOverlay() {
487   // VA and LMA expressions are optional, though for simplicity of
488   // implementation we assume they are not. That is what OVERLAY was designed
489   // for first of all: to allow sections with overlapping VAs at different LMAs.
490   Expr addrExpr = readExpr();
491   expect(":");
492   expect("AT");
493   Expr lmaExpr = readParenExpr();
494   expect("{");
495 
496   std::vector<BaseCommand *> v;
497   OutputSection *prev = nullptr;
498   while (!errorCount() && !consume("}")) {
499     // VA is the same for all sections. The LMAs are consecutive in memory
500     // starting from the base load address specified.
501     OutputSection *os = readOverlaySectionDescription();
502     os->addrExpr = addrExpr;
503     if (prev)
504       os->lmaExpr = [=] { return prev->getLMA() + prev->size; };
505     else
506       os->lmaExpr = lmaExpr;
507     v.push_back(os);
508     prev = os;
509   }
510 
511   // According to the specification, at the end of the overlay, the location
512   // counter should be equal to the overlay base address plus size of the
513   // largest section seen in the overlay.
514   // Here we want to create the Dot assignment command to achieve that.
515   Expr moveDot = [=] {
516     uint64_t max = 0;
517     for (BaseCommand *cmd : v)
518       max = std::max(max, cast<OutputSection>(cmd)->size);
519     return addrExpr().getValue() + max;
520   };
521   v.push_back(make<SymbolAssignment>(".", moveDot, getCurrentLocation()));
522   return v;
523 }
524 
525 void ScriptParser::readSections() {
526   expect("{");
527   std::vector<BaseCommand *> v;
528   while (!errorCount() && !consume("}")) {
529     StringRef tok = next();
530     if (tok == "OVERLAY") {
531       for (BaseCommand *cmd : readOverlay())
532         v.push_back(cmd);
533       continue;
534     } else if (tok == "INCLUDE") {
535       readInclude();
536       continue;
537     }
538 
539     if (BaseCommand *cmd = readAssignment(tok))
540       v.push_back(cmd);
541     else
542       v.push_back(readOutputSectionDescription(tok));
543   }
544   script->sectionCommands.insert(script->sectionCommands.end(), v.begin(),
545                                  v.end());
546 
547   if (atEOF() || !consume("INSERT")) {
548     // --no-rosegment is used to avoid placing read only non-executable sections
549     // in their own segment. We do the same if SECTIONS command is present in
550     // linker script. See comment for computeFlags().
551     // TODO This rule will be dropped in the future.
552     config->singleRoRx = true;
553 
554     script->hasSectionsCommand = true;
555     return;
556   }
557 
558   bool isAfter = false;
559   if (consume("AFTER"))
560     isAfter = true;
561   else if (!consume("BEFORE"))
562     setError("expected AFTER/BEFORE, but got '" + next() + "'");
563   StringRef where = next();
564   for (BaseCommand *cmd : v)
565     if (auto *os = dyn_cast<OutputSection>(cmd))
566       script->insertCommands.push_back({os, isAfter, where});
567 }
568 
569 void ScriptParser::readTarget() {
570   // TARGET(foo) is an alias for "--format foo". Unlike GNU linkers,
571   // we accept only a limited set of BFD names (i.e. "elf" or "binary")
572   // for --format. We recognize only /^elf/ and "binary" in the linker
573   // script as well.
574   expect("(");
575   StringRef tok = next();
576   expect(")");
577 
578   if (tok.startswith("elf"))
579     config->formatBinary = false;
580   else if (tok == "binary")
581     config->formatBinary = true;
582   else
583     setError("unknown target: " + tok);
584 }
585 
586 static int precedence(StringRef op) {
587   return StringSwitch<int>(op)
588       .Cases("*", "/", "%", 8)
589       .Cases("+", "-", 7)
590       .Cases("<<", ">>", 6)
591       .Cases("<", "<=", ">", ">=", "==", "!=", 5)
592       .Case("&", 4)
593       .Case("|", 3)
594       .Case("&&", 2)
595       .Case("||", 1)
596       .Default(-1);
597 }
598 
599 StringMatcher ScriptParser::readFilePatterns() {
600   StringMatcher Matcher;
601 
602   while (!errorCount() && !consume(")"))
603     Matcher.addPattern(SingleStringMatcher(next()));
604   return Matcher;
605 }
606 
607 SortSectionPolicy ScriptParser::readSortKind() {
608   if (consume("SORT") || consume("SORT_BY_NAME"))
609     return SortSectionPolicy::Name;
610   if (consume("SORT_BY_ALIGNMENT"))
611     return SortSectionPolicy::Alignment;
612   if (consume("SORT_BY_INIT_PRIORITY"))
613     return SortSectionPolicy::Priority;
614   if (consume("SORT_NONE"))
615     return SortSectionPolicy::None;
616   return SortSectionPolicy::Default;
617 }
618 
619 // Reads SECTIONS command contents in the following form:
620 //
621 // <contents> ::= <elem>*
622 // <elem>     ::= <exclude>? <glob-pattern>
623 // <exclude>  ::= "EXCLUDE_FILE" "(" <glob-pattern>+ ")"
624 //
625 // For example,
626 //
627 // *(.foo EXCLUDE_FILE (a.o) .bar EXCLUDE_FILE (b.o) .baz)
628 //
629 // is parsed as ".foo", ".bar" with "a.o", and ".baz" with "b.o".
630 // The semantics of that is section .foo in any file, section .bar in
631 // any file but a.o, and section .baz in any file but b.o.
632 std::vector<SectionPattern> ScriptParser::readInputSectionsList() {
633   std::vector<SectionPattern> ret;
634   while (!errorCount() && peek() != ")") {
635     StringMatcher excludeFilePat;
636     if (consume("EXCLUDE_FILE")) {
637       expect("(");
638       excludeFilePat = readFilePatterns();
639     }
640 
641     StringMatcher SectionMatcher;
642     while (!errorCount() && peek() != ")" && peek() != "EXCLUDE_FILE")
643       SectionMatcher.addPattern(unquote(next()));
644 
645     if (!SectionMatcher.empty())
646       ret.push_back({std::move(excludeFilePat), std::move(SectionMatcher)});
647     else
648       setError("section pattern is expected");
649   }
650   return ret;
651 }
652 
653 // Reads contents of "SECTIONS" directive. That directive contains a
654 // list of glob patterns for input sections. The grammar is as follows.
655 //
656 // <patterns> ::= <section-list>
657 //              | <sort> "(" <section-list> ")"
658 //              | <sort> "(" <sort> "(" <section-list> ")" ")"
659 //
660 // <sort>     ::= "SORT" | "SORT_BY_NAME" | "SORT_BY_ALIGNMENT"
661 //              | "SORT_BY_INIT_PRIORITY" | "SORT_NONE"
662 //
663 // <section-list> is parsed by readInputSectionsList().
664 InputSectionDescription *
665 ScriptParser::readInputSectionRules(StringRef filePattern, uint64_t withFlags,
666                                     uint64_t withoutFlags) {
667   auto *cmd =
668       make<InputSectionDescription>(filePattern, withFlags, withoutFlags);
669   expect("(");
670 
671   while (!errorCount() && !consume(")")) {
672     SortSectionPolicy outer = readSortKind();
673     SortSectionPolicy inner = SortSectionPolicy::Default;
674     std::vector<SectionPattern> v;
675     if (outer != SortSectionPolicy::Default) {
676       expect("(");
677       inner = readSortKind();
678       if (inner != SortSectionPolicy::Default) {
679         expect("(");
680         v = readInputSectionsList();
681         expect(")");
682       } else {
683         v = readInputSectionsList();
684       }
685       expect(")");
686     } else {
687       v = readInputSectionsList();
688     }
689 
690     for (SectionPattern &pat : v) {
691       pat.sortInner = inner;
692       pat.sortOuter = outer;
693     }
694 
695     std::move(v.begin(), v.end(), std::back_inserter(cmd->sectionPatterns));
696   }
697   return cmd;
698 }
699 
700 InputSectionDescription *
701 ScriptParser::readInputSectionDescription(StringRef tok) {
702   // Input section wildcard can be surrounded by KEEP.
703   // https://sourceware.org/binutils/docs/ld/Input-Section-Keep.html#Input-Section-Keep
704   uint64_t withFlags = 0;
705   uint64_t withoutFlags = 0;
706   if (tok == "KEEP") {
707     expect("(");
708     if (consume("INPUT_SECTION_FLAGS"))
709       std::tie(withFlags, withoutFlags) = readInputSectionFlags();
710     InputSectionDescription *cmd =
711         readInputSectionRules(next(), withFlags, withoutFlags);
712     expect(")");
713     script->keptSections.push_back(cmd);
714     return cmd;
715   }
716   if (tok == "INPUT_SECTION_FLAGS") {
717     std::tie(withFlags, withoutFlags) = readInputSectionFlags();
718     tok = next();
719   }
720   return readInputSectionRules(tok, withFlags, withoutFlags);
721 }
722 
723 void ScriptParser::readSort() {
724   expect("(");
725   expect("CONSTRUCTORS");
726   expect(")");
727 }
728 
729 Expr ScriptParser::readAssert() {
730   expect("(");
731   Expr e = readExpr();
732   expect(",");
733   StringRef msg = unquote(next());
734   expect(")");
735 
736   return [=] {
737     if (!e().getValue())
738       errorOrWarn(msg);
739     return script->getDot();
740   };
741 }
742 
743 // Tries to read the special directive for an output section definition which
744 // can be one of following: "(NOLOAD)", "(COPY)", "(INFO)" or "(OVERLAY)".
745 // Tok1 and Tok2 are next 2 tokens peeked. See comment for readSectionAddressType below.
746 bool ScriptParser::readSectionDirective(OutputSection *cmd, StringRef tok1, StringRef tok2) {
747   if (tok1 != "(")
748     return false;
749   if (tok2 != "NOLOAD" && tok2 != "COPY" && tok2 != "INFO" && tok2 != "OVERLAY")
750     return false;
751 
752   expect("(");
753   if (consume("NOLOAD")) {
754     cmd->noload = true;
755   } else {
756     skip(); // This is "COPY", "INFO" or "OVERLAY".
757     cmd->nonAlloc = true;
758   }
759   expect(")");
760   return true;
761 }
762 
763 // Reads an expression and/or the special directive for an output
764 // section definition. Directive is one of following: "(NOLOAD)",
765 // "(COPY)", "(INFO)" or "(OVERLAY)".
766 //
767 // An output section name can be followed by an address expression
768 // and/or directive. This grammar is not LL(1) because "(" can be
769 // interpreted as either the beginning of some expression or beginning
770 // of directive.
771 //
772 // https://sourceware.org/binutils/docs/ld/Output-Section-Address.html
773 // https://sourceware.org/binutils/docs/ld/Output-Section-Type.html
774 void ScriptParser::readSectionAddressType(OutputSection *cmd) {
775   if (readSectionDirective(cmd, peek(), peek2()))
776     return;
777 
778   cmd->addrExpr = readExpr();
779   if (peek() == "(" && !readSectionDirective(cmd, "(", peek2()))
780     setError("unknown section directive: " + peek2());
781 }
782 
783 static Expr checkAlignment(Expr e, std::string &loc) {
784   return [=] {
785     uint64_t alignment = std::max((uint64_t)1, e().getValue());
786     if (!isPowerOf2_64(alignment)) {
787       error(loc + ": alignment must be power of 2");
788       return (uint64_t)1; // Return a dummy value.
789     }
790     return alignment;
791   };
792 }
793 
794 OutputSection *ScriptParser::readOverlaySectionDescription() {
795   OutputSection *cmd =
796       script->createOutputSection(next(), getCurrentLocation());
797   cmd->inOverlay = true;
798   expect("{");
799   while (!errorCount() && !consume("}")) {
800     uint64_t withFlags = 0;
801     uint64_t withoutFlags = 0;
802     if (consume("INPUT_SECTION_FLAGS"))
803       std::tie(withFlags, withoutFlags) = readInputSectionFlags();
804     cmd->sectionCommands.push_back(
805         readInputSectionRules(next(), withFlags, withoutFlags));
806   }
807   return cmd;
808 }
809 
810 OutputSection *ScriptParser::readOutputSectionDescription(StringRef outSec) {
811   OutputSection *cmd =
812       script->createOutputSection(outSec, getCurrentLocation());
813 
814   size_t symbolsReferenced = script->referencedSymbols.size();
815 
816   if (peek() != ":")
817     readSectionAddressType(cmd);
818   expect(":");
819 
820   std::string location = getCurrentLocation();
821   if (consume("AT"))
822     cmd->lmaExpr = readParenExpr();
823   if (consume("ALIGN"))
824     cmd->alignExpr = checkAlignment(readParenExpr(), location);
825   if (consume("SUBALIGN"))
826     cmd->subalignExpr = checkAlignment(readParenExpr(), location);
827 
828   // Parse constraints.
829   if (consume("ONLY_IF_RO"))
830     cmd->constraint = ConstraintKind::ReadOnly;
831   if (consume("ONLY_IF_RW"))
832     cmd->constraint = ConstraintKind::ReadWrite;
833   expect("{");
834 
835   while (!errorCount() && !consume("}")) {
836     StringRef tok = next();
837     if (tok == ";") {
838       // Empty commands are allowed. Do nothing here.
839     } else if (SymbolAssignment *assign = readAssignment(tok)) {
840       cmd->sectionCommands.push_back(assign);
841     } else if (ByteCommand *data = readByteCommand(tok)) {
842       cmd->sectionCommands.push_back(data);
843     } else if (tok == "CONSTRUCTORS") {
844       // CONSTRUCTORS is a keyword to make the linker recognize C++ ctors/dtors
845       // by name. This is for very old file formats such as ECOFF/XCOFF.
846       // For ELF, we should ignore.
847     } else if (tok == "FILL") {
848       // We handle the FILL command as an alias for =fillexp section attribute,
849       // which is different from what GNU linkers do.
850       // https://sourceware.org/binutils/docs/ld/Output-Section-Data.html
851       if (peek() != "(")
852         setError("( expected, but got " + peek());
853       cmd->filler = readFill();
854     } else if (tok == "SORT") {
855       readSort();
856     } else if (tok == "INCLUDE") {
857       readInclude();
858     } else if (peek() == "(") {
859       cmd->sectionCommands.push_back(readInputSectionDescription(tok));
860     } else {
861       // We have a file name and no input sections description. It is not a
862       // commonly used syntax, but still acceptable. In that case, all sections
863       // from the file will be included.
864       // FIXME: GNU ld permits INPUT_SECTION_FLAGS to be used here. We do not
865       // handle this case here as it will already have been matched by the
866       // case above.
867       auto *isd = make<InputSectionDescription>(tok);
868       isd->sectionPatterns.push_back({{}, StringMatcher("*")});
869       cmd->sectionCommands.push_back(isd);
870     }
871   }
872 
873   if (consume(">"))
874     cmd->memoryRegionName = std::string(next());
875 
876   if (consume("AT")) {
877     expect(">");
878     cmd->lmaRegionName = std::string(next());
879   }
880 
881   if (cmd->lmaExpr && !cmd->lmaRegionName.empty())
882     error("section can't have both LMA and a load region");
883 
884   cmd->phdrs = readOutputSectionPhdrs();
885 
886   if (peek() == "=" || peek().startswith("=")) {
887     inExpr = true;
888     consume("=");
889     cmd->filler = readFill();
890     inExpr = false;
891   }
892 
893   // Consume optional comma following output section command.
894   consume(",");
895 
896   if (script->referencedSymbols.size() > symbolsReferenced)
897     cmd->expressionsUseSymbols = true;
898   return cmd;
899 }
900 
901 // Reads a `=<fillexp>` expression and returns its value as a big-endian number.
902 // https://sourceware.org/binutils/docs/ld/Output-Section-Fill.html
903 // We do not support using symbols in such expressions.
904 //
905 // When reading a hexstring, ld.bfd handles it as a blob of arbitrary
906 // size, while ld.gold always handles it as a 32-bit big-endian number.
907 // We are compatible with ld.gold because it's easier to implement.
908 // Also, we require that expressions with operators must be wrapped into
909 // round brackets. We did it to resolve the ambiguity when parsing scripts like:
910 // SECTIONS { .foo : { ... } =120+3 /DISCARD/ : { ... } }
911 std::array<uint8_t, 4> ScriptParser::readFill() {
912   uint64_t value = readPrimary()().val;
913   if (value > UINT32_MAX)
914     setError("filler expression result does not fit 32-bit: 0x" +
915              Twine::utohexstr(value));
916 
917   std::array<uint8_t, 4> buf;
918   write32be(buf.data(), (uint32_t)value);
919   return buf;
920 }
921 
922 SymbolAssignment *ScriptParser::readProvideHidden(bool provide, bool hidden) {
923   expect("(");
924   SymbolAssignment *cmd = readSymbolAssignment(next());
925   cmd->provide = provide;
926   cmd->hidden = hidden;
927   expect(")");
928   return cmd;
929 }
930 
931 SymbolAssignment *ScriptParser::readAssignment(StringRef tok) {
932   // Assert expression returns Dot, so this is equal to ".=."
933   if (tok == "ASSERT")
934     return make<SymbolAssignment>(".", readAssert(), getCurrentLocation());
935 
936   size_t oldPos = pos;
937   SymbolAssignment *cmd = nullptr;
938   if (peek() == "=" || peek() == "+=")
939     cmd = readSymbolAssignment(tok);
940   else if (tok == "PROVIDE")
941     cmd = readProvideHidden(true, false);
942   else if (tok == "HIDDEN")
943     cmd = readProvideHidden(false, true);
944   else if (tok == "PROVIDE_HIDDEN")
945     cmd = readProvideHidden(true, true);
946 
947   if (cmd) {
948     cmd->commandString =
949         tok.str() + " " +
950         llvm::join(tokens.begin() + oldPos, tokens.begin() + pos, " ");
951     expect(";");
952   }
953   return cmd;
954 }
955 
956 SymbolAssignment *ScriptParser::readSymbolAssignment(StringRef name) {
957   StringRef op = next();
958   assert(op == "=" || op == "+=");
959   Expr e = readExpr();
960   if (op == "+=") {
961     std::string loc = getCurrentLocation();
962     e = [=] { return add(script->getSymbolValue(name, loc), e()); };
963   }
964   return make<SymbolAssignment>(name, e, getCurrentLocation());
965 }
966 
967 // This is an operator-precedence parser to parse a linker
968 // script expression.
969 Expr ScriptParser::readExpr() {
970   // Our lexer is context-aware. Set the in-expression bit so that
971   // they apply different tokenization rules.
972   bool orig = inExpr;
973   inExpr = true;
974   Expr e = readExpr1(readPrimary(), 0);
975   inExpr = orig;
976   return e;
977 }
978 
979 Expr ScriptParser::combine(StringRef op, Expr l, Expr r) {
980   if (op == "+")
981     return [=] { return add(l(), r()); };
982   if (op == "-")
983     return [=] { return sub(l(), r()); };
984   if (op == "*")
985     return [=] { return l().getValue() * r().getValue(); };
986   if (op == "/") {
987     std::string loc = getCurrentLocation();
988     return [=]() -> uint64_t {
989       if (uint64_t rv = r().getValue())
990         return l().getValue() / rv;
991       error(loc + ": division by zero");
992       return 0;
993     };
994   }
995   if (op == "%") {
996     std::string loc = getCurrentLocation();
997     return [=]() -> uint64_t {
998       if (uint64_t rv = r().getValue())
999         return l().getValue() % rv;
1000       error(loc + ": modulo by zero");
1001       return 0;
1002     };
1003   }
1004   if (op == "<<")
1005     return [=] { return l().getValue() << r().getValue(); };
1006   if (op == ">>")
1007     return [=] { return l().getValue() >> r().getValue(); };
1008   if (op == "<")
1009     return [=] { return l().getValue() < r().getValue(); };
1010   if (op == ">")
1011     return [=] { return l().getValue() > r().getValue(); };
1012   if (op == ">=")
1013     return [=] { return l().getValue() >= r().getValue(); };
1014   if (op == "<=")
1015     return [=] { return l().getValue() <= r().getValue(); };
1016   if (op == "==")
1017     return [=] { return l().getValue() == r().getValue(); };
1018   if (op == "!=")
1019     return [=] { return l().getValue() != r().getValue(); };
1020   if (op == "||")
1021     return [=] { return l().getValue() || r().getValue(); };
1022   if (op == "&&")
1023     return [=] { return l().getValue() && r().getValue(); };
1024   if (op == "&")
1025     return [=] { return bitAnd(l(), r()); };
1026   if (op == "|")
1027     return [=] { return bitOr(l(), r()); };
1028   llvm_unreachable("invalid operator");
1029 }
1030 
1031 // This is a part of the operator-precedence parser. This function
1032 // assumes that the remaining token stream starts with an operator.
1033 Expr ScriptParser::readExpr1(Expr lhs, int minPrec) {
1034   while (!atEOF() && !errorCount()) {
1035     // Read an operator and an expression.
1036     if (consume("?"))
1037       return readTernary(lhs);
1038     StringRef op1 = peek();
1039     if (precedence(op1) < minPrec)
1040       break;
1041     skip();
1042     Expr rhs = readPrimary();
1043 
1044     // Evaluate the remaining part of the expression first if the
1045     // next operator has greater precedence than the previous one.
1046     // For example, if we have read "+" and "3", and if the next
1047     // operator is "*", then we'll evaluate 3 * ... part first.
1048     while (!atEOF()) {
1049       StringRef op2 = peek();
1050       if (precedence(op2) <= precedence(op1))
1051         break;
1052       rhs = readExpr1(rhs, precedence(op2));
1053     }
1054 
1055     lhs = combine(op1, lhs, rhs);
1056   }
1057   return lhs;
1058 }
1059 
1060 Expr ScriptParser::getPageSize() {
1061   std::string location = getCurrentLocation();
1062   return [=]() -> uint64_t {
1063     if (target)
1064       return config->commonPageSize;
1065     error(location + ": unable to calculate page size");
1066     return 4096; // Return a dummy value.
1067   };
1068 }
1069 
1070 Expr ScriptParser::readConstant() {
1071   StringRef s = readParenLiteral();
1072   if (s == "COMMONPAGESIZE")
1073     return getPageSize();
1074   if (s == "MAXPAGESIZE")
1075     return [] { return config->maxPageSize; };
1076   setError("unknown constant: " + s);
1077   return [] { return 0; };
1078 }
1079 
1080 // Parses Tok as an integer. It recognizes hexadecimal (prefixed with
1081 // "0x" or suffixed with "H") and decimal numbers. Decimal numbers may
1082 // have "K" (Ki) or "M" (Mi) suffixes.
1083 static Optional<uint64_t> parseInt(StringRef tok) {
1084   // Hexadecimal
1085   uint64_t val;
1086   if (tok.startswith_lower("0x")) {
1087     if (!to_integer(tok.substr(2), val, 16))
1088       return None;
1089     return val;
1090   }
1091   if (tok.endswith_lower("H")) {
1092     if (!to_integer(tok.drop_back(), val, 16))
1093       return None;
1094     return val;
1095   }
1096 
1097   // Decimal
1098   if (tok.endswith_lower("K")) {
1099     if (!to_integer(tok.drop_back(), val, 10))
1100       return None;
1101     return val * 1024;
1102   }
1103   if (tok.endswith_lower("M")) {
1104     if (!to_integer(tok.drop_back(), val, 10))
1105       return None;
1106     return val * 1024 * 1024;
1107   }
1108   if (!to_integer(tok, val, 10))
1109     return None;
1110   return val;
1111 }
1112 
1113 ByteCommand *ScriptParser::readByteCommand(StringRef tok) {
1114   int size = StringSwitch<int>(tok)
1115                  .Case("BYTE", 1)
1116                  .Case("SHORT", 2)
1117                  .Case("LONG", 4)
1118                  .Case("QUAD", 8)
1119                  .Default(-1);
1120   if (size == -1)
1121     return nullptr;
1122 
1123   size_t oldPos = pos;
1124   Expr e = readParenExpr();
1125   std::string commandString =
1126       tok.str() + " " +
1127       llvm::join(tokens.begin() + oldPos, tokens.begin() + pos, " ");
1128   return make<ByteCommand>(e, size, commandString);
1129 }
1130 
1131 static llvm::Optional<uint64_t> parseFlag(StringRef tok) {
1132   if (llvm::Optional<uint64_t> asInt = parseInt(tok))
1133     return asInt;
1134 #define CASE_ENT(enum) #enum, ELF::enum
1135   return StringSwitch<llvm::Optional<uint64_t>>(tok)
1136       .Case(CASE_ENT(SHF_WRITE))
1137       .Case(CASE_ENT(SHF_ALLOC))
1138       .Case(CASE_ENT(SHF_EXECINSTR))
1139       .Case(CASE_ENT(SHF_MERGE))
1140       .Case(CASE_ENT(SHF_STRINGS))
1141       .Case(CASE_ENT(SHF_INFO_LINK))
1142       .Case(CASE_ENT(SHF_LINK_ORDER))
1143       .Case(CASE_ENT(SHF_OS_NONCONFORMING))
1144       .Case(CASE_ENT(SHF_GROUP))
1145       .Case(CASE_ENT(SHF_TLS))
1146       .Case(CASE_ENT(SHF_COMPRESSED))
1147       .Case(CASE_ENT(SHF_EXCLUDE))
1148       .Case(CASE_ENT(SHF_ARM_PURECODE))
1149       .Default(None);
1150 #undef CASE_ENT
1151 }
1152 
1153 // Reads the '(' <flags> ')' list of section flags in
1154 // INPUT_SECTION_FLAGS '(' <flags> ')' in the
1155 // following form:
1156 // <flags> ::= <flag>
1157 //           | <flags> & flag
1158 // <flag>  ::= Recognized Flag Name, or Integer value of flag.
1159 // If the first character of <flag> is a ! then this means without flag,
1160 // otherwise with flag.
1161 // Example: SHF_EXECINSTR & !SHF_WRITE means with flag SHF_EXECINSTR and
1162 // without flag SHF_WRITE.
1163 std::pair<uint64_t, uint64_t> ScriptParser::readInputSectionFlags() {
1164    uint64_t withFlags = 0;
1165    uint64_t withoutFlags = 0;
1166    expect("(");
1167    while (!errorCount()) {
1168     StringRef tok = unquote(next());
1169     bool without = tok.consume_front("!");
1170     if (llvm::Optional<uint64_t> flag = parseFlag(tok)) {
1171       if (without)
1172         withoutFlags |= *flag;
1173       else
1174         withFlags |= *flag;
1175     } else {
1176       setError("unrecognised flag: " + tok);
1177     }
1178     if (consume(")"))
1179       break;
1180     if (!consume("&")) {
1181       next();
1182       setError("expected & or )");
1183     }
1184   }
1185   return std::make_pair(withFlags, withoutFlags);
1186 }
1187 
1188 StringRef ScriptParser::readParenLiteral() {
1189   expect("(");
1190   bool orig = inExpr;
1191   inExpr = false;
1192   StringRef tok = next();
1193   inExpr = orig;
1194   expect(")");
1195   return tok;
1196 }
1197 
1198 static void checkIfExists(OutputSection *cmd, StringRef location) {
1199   if (cmd->location.empty() && script->errorOnMissingSection)
1200     error(location + ": undefined section " + cmd->name);
1201 }
1202 
1203 Expr ScriptParser::readPrimary() {
1204   if (peek() == "(")
1205     return readParenExpr();
1206 
1207   if (consume("~")) {
1208     Expr e = readPrimary();
1209     return [=] { return ~e().getValue(); };
1210   }
1211   if (consume("!")) {
1212     Expr e = readPrimary();
1213     return [=] { return !e().getValue(); };
1214   }
1215   if (consume("-")) {
1216     Expr e = readPrimary();
1217     return [=] { return -e().getValue(); };
1218   }
1219 
1220   StringRef tok = next();
1221   std::string location = getCurrentLocation();
1222 
1223   // Built-in functions are parsed here.
1224   // https://sourceware.org/binutils/docs/ld/Builtin-Functions.html.
1225   if (tok == "ABSOLUTE") {
1226     Expr inner = readParenExpr();
1227     return [=] {
1228       ExprValue i = inner();
1229       i.forceAbsolute = true;
1230       return i;
1231     };
1232   }
1233   if (tok == "ADDR") {
1234     StringRef name = readParenLiteral();
1235     OutputSection *sec = script->getOrCreateOutputSection(name);
1236     sec->usedInExpression = true;
1237     return [=]() -> ExprValue {
1238       checkIfExists(sec, location);
1239       return {sec, false, 0, location};
1240     };
1241   }
1242   if (tok == "ALIGN") {
1243     expect("(");
1244     Expr e = readExpr();
1245     if (consume(")")) {
1246       e = checkAlignment(e, location);
1247       return [=] { return alignTo(script->getDot(), e().getValue()); };
1248     }
1249     expect(",");
1250     Expr e2 = checkAlignment(readExpr(), location);
1251     expect(")");
1252     return [=] {
1253       ExprValue v = e();
1254       v.alignment = e2().getValue();
1255       return v;
1256     };
1257   }
1258   if (tok == "ALIGNOF") {
1259     StringRef name = readParenLiteral();
1260     OutputSection *cmd = script->getOrCreateOutputSection(name);
1261     return [=] {
1262       checkIfExists(cmd, location);
1263       return cmd->alignment;
1264     };
1265   }
1266   if (tok == "ASSERT")
1267     return readAssert();
1268   if (tok == "CONSTANT")
1269     return readConstant();
1270   if (tok == "DATA_SEGMENT_ALIGN") {
1271     expect("(");
1272     Expr e = readExpr();
1273     expect(",");
1274     readExpr();
1275     expect(")");
1276     return [=] {
1277       return alignTo(script->getDot(), std::max((uint64_t)1, e().getValue()));
1278     };
1279   }
1280   if (tok == "DATA_SEGMENT_END") {
1281     expect("(");
1282     expect(".");
1283     expect(")");
1284     return [] { return script->getDot(); };
1285   }
1286   if (tok == "DATA_SEGMENT_RELRO_END") {
1287     // GNU linkers implements more complicated logic to handle
1288     // DATA_SEGMENT_RELRO_END. We instead ignore the arguments and
1289     // just align to the next page boundary for simplicity.
1290     expect("(");
1291     readExpr();
1292     expect(",");
1293     readExpr();
1294     expect(")");
1295     Expr e = getPageSize();
1296     return [=] { return alignTo(script->getDot(), e().getValue()); };
1297   }
1298   if (tok == "DEFINED") {
1299     StringRef name = readParenLiteral();
1300     return [=] { return symtab->find(name) ? 1 : 0; };
1301   }
1302   if (tok == "LENGTH") {
1303     StringRef name = readParenLiteral();
1304     if (script->memoryRegions.count(name) == 0) {
1305       setError("memory region not defined: " + name);
1306       return [] { return 0; };
1307     }
1308     return script->memoryRegions[name]->length;
1309   }
1310   if (tok == "LOADADDR") {
1311     StringRef name = readParenLiteral();
1312     OutputSection *cmd = script->getOrCreateOutputSection(name);
1313     cmd->usedInExpression = true;
1314     return [=] {
1315       checkIfExists(cmd, location);
1316       return cmd->getLMA();
1317     };
1318   }
1319   if (tok == "MAX" || tok == "MIN") {
1320     expect("(");
1321     Expr a = readExpr();
1322     expect(",");
1323     Expr b = readExpr();
1324     expect(")");
1325     if (tok == "MIN")
1326       return [=] { return std::min(a().getValue(), b().getValue()); };
1327     return [=] { return std::max(a().getValue(), b().getValue()); };
1328   }
1329   if (tok == "ORIGIN") {
1330     StringRef name = readParenLiteral();
1331     if (script->memoryRegions.count(name) == 0) {
1332       setError("memory region not defined: " + name);
1333       return [] { return 0; };
1334     }
1335     return script->memoryRegions[name]->origin;
1336   }
1337   if (tok == "SEGMENT_START") {
1338     expect("(");
1339     skip();
1340     expect(",");
1341     Expr e = readExpr();
1342     expect(")");
1343     return [=] { return e(); };
1344   }
1345   if (tok == "SIZEOF") {
1346     StringRef name = readParenLiteral();
1347     OutputSection *cmd = script->getOrCreateOutputSection(name);
1348     // Linker script does not create an output section if its content is empty.
1349     // We want to allow SIZEOF(.foo) where .foo is a section which happened to
1350     // be empty.
1351     return [=] { return cmd->size; };
1352   }
1353   if (tok == "SIZEOF_HEADERS")
1354     return [=] { return getHeaderSize(); };
1355 
1356   // Tok is the dot.
1357   if (tok == ".")
1358     return [=] { return script->getSymbolValue(tok, location); };
1359 
1360   // Tok is a literal number.
1361   if (Optional<uint64_t> val = parseInt(tok))
1362     return [=] { return *val; };
1363 
1364   // Tok is a symbol name.
1365   if (!isValidCIdentifier(tok))
1366     setError("malformed number: " + tok);
1367   script->referencedSymbols.push_back(tok);
1368   return [=] { return script->getSymbolValue(tok, location); };
1369 }
1370 
1371 Expr ScriptParser::readTernary(Expr cond) {
1372   Expr l = readExpr();
1373   expect(":");
1374   Expr r = readExpr();
1375   return [=] { return cond().getValue() ? l() : r(); };
1376 }
1377 
1378 Expr ScriptParser::readParenExpr() {
1379   expect("(");
1380   Expr e = readExpr();
1381   expect(")");
1382   return e;
1383 }
1384 
1385 std::vector<StringRef> ScriptParser::readOutputSectionPhdrs() {
1386   std::vector<StringRef> phdrs;
1387   while (!errorCount() && peek().startswith(":")) {
1388     StringRef tok = next();
1389     phdrs.push_back((tok.size() == 1) ? next() : tok.substr(1));
1390   }
1391   return phdrs;
1392 }
1393 
1394 // Read a program header type name. The next token must be a
1395 // name of a program header type or a constant (e.g. "0x3").
1396 unsigned ScriptParser::readPhdrType() {
1397   StringRef tok = next();
1398   if (Optional<uint64_t> val = parseInt(tok))
1399     return *val;
1400 
1401   unsigned ret = StringSwitch<unsigned>(tok)
1402                      .Case("PT_NULL", PT_NULL)
1403                      .Case("PT_LOAD", PT_LOAD)
1404                      .Case("PT_DYNAMIC", PT_DYNAMIC)
1405                      .Case("PT_INTERP", PT_INTERP)
1406                      .Case("PT_NOTE", PT_NOTE)
1407                      .Case("PT_SHLIB", PT_SHLIB)
1408                      .Case("PT_PHDR", PT_PHDR)
1409                      .Case("PT_TLS", PT_TLS)
1410                      .Case("PT_GNU_EH_FRAME", PT_GNU_EH_FRAME)
1411                      .Case("PT_GNU_STACK", PT_GNU_STACK)
1412                      .Case("PT_GNU_RELRO", PT_GNU_RELRO)
1413                      .Case("PT_OPENBSD_RANDOMIZE", PT_OPENBSD_RANDOMIZE)
1414                      .Case("PT_OPENBSD_WXNEEDED", PT_OPENBSD_WXNEEDED)
1415                      .Case("PT_OPENBSD_BOOTDATA", PT_OPENBSD_BOOTDATA)
1416                      .Default(-1);
1417 
1418   if (ret == (unsigned)-1) {
1419     setError("invalid program header type: " + tok);
1420     return PT_NULL;
1421   }
1422   return ret;
1423 }
1424 
1425 // Reads an anonymous version declaration.
1426 void ScriptParser::readAnonymousDeclaration() {
1427   std::vector<SymbolVersion> locals;
1428   std::vector<SymbolVersion> globals;
1429   std::tie(locals, globals) = readSymbols();
1430   for (const SymbolVersion &pat : locals)
1431     config->versionDefinitions[VER_NDX_LOCAL].patterns.push_back(pat);
1432   for (const SymbolVersion &pat : globals)
1433     config->versionDefinitions[VER_NDX_GLOBAL].patterns.push_back(pat);
1434 
1435   expect(";");
1436 }
1437 
1438 // Reads a non-anonymous version definition,
1439 // e.g. "VerStr { global: foo; bar; local: *; };".
1440 void ScriptParser::readVersionDeclaration(StringRef verStr) {
1441   // Read a symbol list.
1442   std::vector<SymbolVersion> locals;
1443   std::vector<SymbolVersion> globals;
1444   std::tie(locals, globals) = readSymbols();
1445   for (const SymbolVersion &pat : locals)
1446     config->versionDefinitions[VER_NDX_LOCAL].patterns.push_back(pat);
1447 
1448   // Create a new version definition and add that to the global symbols.
1449   VersionDefinition ver;
1450   ver.name = verStr;
1451   ver.patterns = globals;
1452   ver.id = config->versionDefinitions.size();
1453   config->versionDefinitions.push_back(ver);
1454 
1455   // Each version may have a parent version. For example, "Ver2"
1456   // defined as "Ver2 { global: foo; local: *; } Ver1;" has "Ver1"
1457   // as a parent. This version hierarchy is, probably against your
1458   // instinct, purely for hint; the runtime doesn't care about it
1459   // at all. In LLD, we simply ignore it.
1460   if (next() != ";")
1461     expect(";");
1462 }
1463 
1464 static bool hasWildcard(StringRef s) {
1465   return s.find_first_of("?*[") != StringRef::npos;
1466 }
1467 
1468 // Reads a list of symbols, e.g. "{ global: foo; bar; local: *; };".
1469 std::pair<std::vector<SymbolVersion>, std::vector<SymbolVersion>>
1470 ScriptParser::readSymbols() {
1471   std::vector<SymbolVersion> locals;
1472   std::vector<SymbolVersion> globals;
1473   std::vector<SymbolVersion> *v = &globals;
1474 
1475   while (!errorCount()) {
1476     if (consume("}"))
1477       break;
1478     if (consumeLabel("local")) {
1479       v = &locals;
1480       continue;
1481     }
1482     if (consumeLabel("global")) {
1483       v = &globals;
1484       continue;
1485     }
1486 
1487     if (consume("extern")) {
1488       std::vector<SymbolVersion> ext = readVersionExtern();
1489       v->insert(v->end(), ext.begin(), ext.end());
1490     } else {
1491       StringRef tok = next();
1492       v->push_back({unquote(tok), false, hasWildcard(tok)});
1493     }
1494     expect(";");
1495   }
1496   return {locals, globals};
1497 }
1498 
1499 // Reads an "extern C++" directive, e.g.,
1500 // "extern "C++" { ns::*; "f(int, double)"; };"
1501 //
1502 // The last semicolon is optional. E.g. this is OK:
1503 // "extern "C++" { ns::*; "f(int, double)" };"
1504 std::vector<SymbolVersion> ScriptParser::readVersionExtern() {
1505   StringRef tok = next();
1506   bool isCXX = tok == "\"C++\"";
1507   if (!isCXX && tok != "\"C\"")
1508     setError("Unknown language");
1509   expect("{");
1510 
1511   std::vector<SymbolVersion> ret;
1512   while (!errorCount() && peek() != "}") {
1513     StringRef tok = next();
1514     ret.push_back(
1515         {unquote(tok), isCXX, !tok.startswith("\"") && hasWildcard(tok)});
1516     if (consume("}"))
1517       return ret;
1518     expect(";");
1519   }
1520 
1521   expect("}");
1522   return ret;
1523 }
1524 
1525 Expr ScriptParser::readMemoryAssignment(StringRef s1, StringRef s2,
1526                                         StringRef s3) {
1527   if (!consume(s1) && !consume(s2) && !consume(s3)) {
1528     setError("expected one of: " + s1 + ", " + s2 + ", or " + s3);
1529     return [] { return 0; };
1530   }
1531   expect("=");
1532   return readExpr();
1533 }
1534 
1535 // Parse the MEMORY command as specified in:
1536 // https://sourceware.org/binutils/docs/ld/MEMORY.html
1537 //
1538 // MEMORY { name [(attr)] : ORIGIN = origin, LENGTH = len ... }
1539 void ScriptParser::readMemory() {
1540   expect("{");
1541   while (!errorCount() && !consume("}")) {
1542     StringRef tok = next();
1543     if (tok == "INCLUDE") {
1544       readInclude();
1545       continue;
1546     }
1547 
1548     uint32_t flags = 0;
1549     uint32_t negFlags = 0;
1550     if (consume("(")) {
1551       std::tie(flags, negFlags) = readMemoryAttributes();
1552       expect(")");
1553     }
1554     expect(":");
1555 
1556     Expr origin = readMemoryAssignment("ORIGIN", "org", "o");
1557     expect(",");
1558     Expr length = readMemoryAssignment("LENGTH", "len", "l");
1559 
1560     // Add the memory region to the region map.
1561     MemoryRegion *mr = make<MemoryRegion>(tok, origin, length, flags, negFlags);
1562     if (!script->memoryRegions.insert({tok, mr}).second)
1563       setError("region '" + tok + "' already defined");
1564   }
1565 }
1566 
1567 // This function parses the attributes used to match against section
1568 // flags when placing output sections in a memory region. These flags
1569 // are only used when an explicit memory region name is not used.
1570 std::pair<uint32_t, uint32_t> ScriptParser::readMemoryAttributes() {
1571   uint32_t flags = 0;
1572   uint32_t negFlags = 0;
1573   bool invert = false;
1574 
1575   for (char c : next().lower()) {
1576     uint32_t flag = 0;
1577     if (c == '!')
1578       invert = !invert;
1579     else if (c == 'w')
1580       flag = SHF_WRITE;
1581     else if (c == 'x')
1582       flag = SHF_EXECINSTR;
1583     else if (c == 'a')
1584       flag = SHF_ALLOC;
1585     else if (c != 'r')
1586       setError("invalid memory region attribute");
1587 
1588     if (invert)
1589       negFlags |= flag;
1590     else
1591       flags |= flag;
1592   }
1593   return {flags, negFlags};
1594 }
1595 
1596 void readLinkerScript(MemoryBufferRef mb) {
1597   ScriptParser(mb).readLinkerScript();
1598 }
1599 
1600 void readVersionScript(MemoryBufferRef mb) {
1601   ScriptParser(mb).readVersionScript();
1602 }
1603 
1604 void readDynamicList(MemoryBufferRef mb) { ScriptParser(mb).readDynamicList(); }
1605 
1606 void readDefsym(StringRef name, MemoryBufferRef mb) {
1607   ScriptParser(mb).readDefsym(name);
1608 }
1609 
1610 } // namespace elf
1611 } // namespace lld
1612