RuntimeDyldChecker.cpp 33 KB

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  1. //===--- RuntimeDyldChecker.cpp - RuntimeDyld tester framework --*- C++ -*-===//
  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. #include "llvm/ExecutionEngine/RuntimeDyldChecker.h"
  9. #include "RuntimeDyldCheckerImpl.h"
  10. #include "llvm/ADT/STLExtras.h"
  11. #include "llvm/ADT/StringExtras.h"
  12. #include "llvm/MC/MCContext.h"
  13. #include "llvm/MC/MCDisassembler/MCDisassembler.h"
  14. #include "llvm/MC/MCInst.h"
  15. #include "llvm/Support/Endian.h"
  16. #include "llvm/Support/MSVCErrorWorkarounds.h"
  17. #include "llvm/Support/Path.h"
  18. #include <cctype>
  19. #include <memory>
  20. #include <utility>
  21. #define DEBUG_TYPE "rtdyld"
  22. using namespace llvm;
  23. namespace llvm {
  24. // Helper class that implements the language evaluated by RuntimeDyldChecker.
  25. class RuntimeDyldCheckerExprEval {
  26. public:
  27. RuntimeDyldCheckerExprEval(const RuntimeDyldCheckerImpl &Checker,
  28. raw_ostream &ErrStream)
  29. : Checker(Checker) {}
  30. bool evaluate(StringRef Expr) const {
  31. // Expect equality expression of the form 'LHS = RHS'.
  32. Expr = Expr.trim();
  33. size_t EQIdx = Expr.find('=');
  34. ParseContext OutsideLoad(false);
  35. // Evaluate LHS.
  36. StringRef LHSExpr = Expr.substr(0, EQIdx).rtrim();
  37. StringRef RemainingExpr;
  38. EvalResult LHSResult;
  39. std::tie(LHSResult, RemainingExpr) =
  40. evalComplexExpr(evalSimpleExpr(LHSExpr, OutsideLoad), OutsideLoad);
  41. if (LHSResult.hasError())
  42. return handleError(Expr, LHSResult);
  43. if (RemainingExpr != "")
  44. return handleError(Expr, unexpectedToken(RemainingExpr, LHSExpr, ""));
  45. // Evaluate RHS.
  46. StringRef RHSExpr = Expr.substr(EQIdx + 1).ltrim();
  47. EvalResult RHSResult;
  48. std::tie(RHSResult, RemainingExpr) =
  49. evalComplexExpr(evalSimpleExpr(RHSExpr, OutsideLoad), OutsideLoad);
  50. if (RHSResult.hasError())
  51. return handleError(Expr, RHSResult);
  52. if (RemainingExpr != "")
  53. return handleError(Expr, unexpectedToken(RemainingExpr, RHSExpr, ""));
  54. if (LHSResult.getValue() != RHSResult.getValue()) {
  55. Checker.ErrStream << "Expression '" << Expr << "' is false: "
  56. << format("0x%" PRIx64, LHSResult.getValue())
  57. << " != " << format("0x%" PRIx64, RHSResult.getValue())
  58. << "\n";
  59. return false;
  60. }
  61. return true;
  62. }
  63. private:
  64. // RuntimeDyldCheckerExprEval requires some context when parsing exprs. In
  65. // particular, it needs to know whether a symbol is being evaluated in the
  66. // context of a load, in which case we want the linker's local address for
  67. // the symbol, or outside of a load, in which case we want the symbol's
  68. // address in the remote target.
  69. struct ParseContext {
  70. bool IsInsideLoad;
  71. ParseContext(bool IsInsideLoad) : IsInsideLoad(IsInsideLoad) {}
  72. };
  73. const RuntimeDyldCheckerImpl &Checker;
  74. enum class BinOpToken : unsigned {
  75. Invalid,
  76. Add,
  77. Sub,
  78. BitwiseAnd,
  79. BitwiseOr,
  80. ShiftLeft,
  81. ShiftRight
  82. };
  83. class EvalResult {
  84. public:
  85. EvalResult() : Value(0) {}
  86. EvalResult(uint64_t Value) : Value(Value) {}
  87. EvalResult(std::string ErrorMsg)
  88. : Value(0), ErrorMsg(std::move(ErrorMsg)) {}
  89. uint64_t getValue() const { return Value; }
  90. bool hasError() const { return ErrorMsg != ""; }
  91. const std::string &getErrorMsg() const { return ErrorMsg; }
  92. private:
  93. uint64_t Value;
  94. std::string ErrorMsg;
  95. };
  96. StringRef getTokenForError(StringRef Expr) const {
  97. if (Expr.empty())
  98. return "";
  99. StringRef Token, Remaining;
  100. if (isalpha(Expr[0]))
  101. std::tie(Token, Remaining) = parseSymbol(Expr);
  102. else if (isdigit(Expr[0]))
  103. std::tie(Token, Remaining) = parseNumberString(Expr);
  104. else {
  105. unsigned TokLen = 1;
  106. if (Expr.startswith("<<") || Expr.startswith(">>"))
  107. TokLen = 2;
  108. Token = Expr.substr(0, TokLen);
  109. }
  110. return Token;
  111. }
  112. EvalResult unexpectedToken(StringRef TokenStart, StringRef SubExpr,
  113. StringRef ErrText) const {
  114. std::string ErrorMsg("Encountered unexpected token '");
  115. ErrorMsg += getTokenForError(TokenStart);
  116. if (SubExpr != "") {
  117. ErrorMsg += "' while parsing subexpression '";
  118. ErrorMsg += SubExpr;
  119. }
  120. ErrorMsg += "'";
  121. if (ErrText != "") {
  122. ErrorMsg += " ";
  123. ErrorMsg += ErrText;
  124. }
  125. return EvalResult(std::move(ErrorMsg));
  126. }
  127. bool handleError(StringRef Expr, const EvalResult &R) const {
  128. assert(R.hasError() && "Not an error result.");
  129. Checker.ErrStream << "Error evaluating expression '" << Expr
  130. << "': " << R.getErrorMsg() << "\n";
  131. return false;
  132. }
  133. std::pair<BinOpToken, StringRef> parseBinOpToken(StringRef Expr) const {
  134. if (Expr.empty())
  135. return std::make_pair(BinOpToken::Invalid, "");
  136. // Handle the two 2-character tokens.
  137. if (Expr.startswith("<<"))
  138. return std::make_pair(BinOpToken::ShiftLeft, Expr.substr(2).ltrim());
  139. if (Expr.startswith(">>"))
  140. return std::make_pair(BinOpToken::ShiftRight, Expr.substr(2).ltrim());
  141. // Handle one-character tokens.
  142. BinOpToken Op;
  143. switch (Expr[0]) {
  144. default:
  145. return std::make_pair(BinOpToken::Invalid, Expr);
  146. case '+':
  147. Op = BinOpToken::Add;
  148. break;
  149. case '-':
  150. Op = BinOpToken::Sub;
  151. break;
  152. case '&':
  153. Op = BinOpToken::BitwiseAnd;
  154. break;
  155. case '|':
  156. Op = BinOpToken::BitwiseOr;
  157. break;
  158. }
  159. return std::make_pair(Op, Expr.substr(1).ltrim());
  160. }
  161. EvalResult computeBinOpResult(BinOpToken Op, const EvalResult &LHSResult,
  162. const EvalResult &RHSResult) const {
  163. switch (Op) {
  164. default:
  165. llvm_unreachable("Tried to evaluate unrecognized operation.");
  166. case BinOpToken::Add:
  167. return EvalResult(LHSResult.getValue() + RHSResult.getValue());
  168. case BinOpToken::Sub:
  169. return EvalResult(LHSResult.getValue() - RHSResult.getValue());
  170. case BinOpToken::BitwiseAnd:
  171. return EvalResult(LHSResult.getValue() & RHSResult.getValue());
  172. case BinOpToken::BitwiseOr:
  173. return EvalResult(LHSResult.getValue() | RHSResult.getValue());
  174. case BinOpToken::ShiftLeft:
  175. return EvalResult(LHSResult.getValue() << RHSResult.getValue());
  176. case BinOpToken::ShiftRight:
  177. return EvalResult(LHSResult.getValue() >> RHSResult.getValue());
  178. }
  179. }
  180. // Parse a symbol and return a (string, string) pair representing the symbol
  181. // name and expression remaining to be parsed.
  182. std::pair<StringRef, StringRef> parseSymbol(StringRef Expr) const {
  183. size_t FirstNonSymbol = Expr.find_first_not_of("0123456789"
  184. "abcdefghijklmnopqrstuvwxyz"
  185. "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
  186. ":_.$");
  187. return std::make_pair(Expr.substr(0, FirstNonSymbol),
  188. Expr.substr(FirstNonSymbol).ltrim());
  189. }
  190. // Evaluate a call to decode_operand. Decode the instruction operand at the
  191. // given symbol and get the value of the requested operand.
  192. // Returns an error if the instruction cannot be decoded, or the requested
  193. // operand is not an immediate.
  194. // On success, returns a pair containing the value of the operand, plus
  195. // the expression remaining to be evaluated.
  196. std::pair<EvalResult, StringRef> evalDecodeOperand(StringRef Expr) const {
  197. if (!Expr.startswith("("))
  198. return std::make_pair(unexpectedToken(Expr, Expr, "expected '('"), "");
  199. StringRef RemainingExpr = Expr.substr(1).ltrim();
  200. StringRef Symbol;
  201. std::tie(Symbol, RemainingExpr) = parseSymbol(RemainingExpr);
  202. if (!Checker.isSymbolValid(Symbol))
  203. return std::make_pair(
  204. EvalResult(("Cannot decode unknown symbol '" + Symbol + "'").str()),
  205. "");
  206. // if there is an offset number expr
  207. int64_t Offset = 0;
  208. BinOpToken BinOp;
  209. std::tie(BinOp, RemainingExpr) = parseBinOpToken(RemainingExpr);
  210. switch (BinOp) {
  211. case BinOpToken::Add: {
  212. EvalResult Number;
  213. std::tie(Number, RemainingExpr) = evalNumberExpr(RemainingExpr);
  214. Offset = Number.getValue();
  215. break;
  216. }
  217. case BinOpToken::Invalid:
  218. break;
  219. default:
  220. return std::make_pair(
  221. unexpectedToken(RemainingExpr, RemainingExpr,
  222. "expected '+' for offset or ',' if no offset"),
  223. "");
  224. }
  225. if (!RemainingExpr.startswith(","))
  226. return std::make_pair(
  227. unexpectedToken(RemainingExpr, RemainingExpr, "expected ','"), "");
  228. RemainingExpr = RemainingExpr.substr(1).ltrim();
  229. EvalResult OpIdxExpr;
  230. std::tie(OpIdxExpr, RemainingExpr) = evalNumberExpr(RemainingExpr);
  231. if (OpIdxExpr.hasError())
  232. return std::make_pair(OpIdxExpr, "");
  233. if (!RemainingExpr.startswith(")"))
  234. return std::make_pair(
  235. unexpectedToken(RemainingExpr, RemainingExpr, "expected ')'"), "");
  236. RemainingExpr = RemainingExpr.substr(1).ltrim();
  237. MCInst Inst;
  238. uint64_t Size;
  239. if (!decodeInst(Symbol, Inst, Size, Offset))
  240. return std::make_pair(
  241. EvalResult(("Couldn't decode instruction at '" + Symbol + "'").str()),
  242. "");
  243. unsigned OpIdx = OpIdxExpr.getValue();
  244. if (OpIdx >= Inst.getNumOperands()) {
  245. std::string ErrMsg;
  246. raw_string_ostream ErrMsgStream(ErrMsg);
  247. ErrMsgStream << "Invalid operand index '" << format("%i", OpIdx)
  248. << "' for instruction '" << Symbol
  249. << "'. Instruction has only "
  250. << format("%i", Inst.getNumOperands())
  251. << " operands.\nInstruction is:\n ";
  252. Inst.dump_pretty(ErrMsgStream, Checker.InstPrinter);
  253. return std::make_pair(EvalResult(ErrMsgStream.str()), "");
  254. }
  255. const MCOperand &Op = Inst.getOperand(OpIdx);
  256. if (!Op.isImm()) {
  257. std::string ErrMsg;
  258. raw_string_ostream ErrMsgStream(ErrMsg);
  259. ErrMsgStream << "Operand '" << format("%i", OpIdx) << "' of instruction '"
  260. << Symbol << "' is not an immediate.\nInstruction is:\n ";
  261. Inst.dump_pretty(ErrMsgStream, Checker.InstPrinter);
  262. return std::make_pair(EvalResult(ErrMsgStream.str()), "");
  263. }
  264. return std::make_pair(EvalResult(Op.getImm()), RemainingExpr);
  265. }
  266. // Evaluate a call to next_pc.
  267. // Decode the instruction at the given symbol and return the following program
  268. // counter.
  269. // Returns an error if the instruction cannot be decoded.
  270. // On success, returns a pair containing the next PC, plus of the
  271. // expression remaining to be evaluated.
  272. std::pair<EvalResult, StringRef> evalNextPC(StringRef Expr,
  273. ParseContext PCtx) const {
  274. if (!Expr.startswith("("))
  275. return std::make_pair(unexpectedToken(Expr, Expr, "expected '('"), "");
  276. StringRef RemainingExpr = Expr.substr(1).ltrim();
  277. StringRef Symbol;
  278. std::tie(Symbol, RemainingExpr) = parseSymbol(RemainingExpr);
  279. if (!Checker.isSymbolValid(Symbol))
  280. return std::make_pair(
  281. EvalResult(("Cannot decode unknown symbol '" + Symbol + "'").str()),
  282. "");
  283. if (!RemainingExpr.startswith(")"))
  284. return std::make_pair(
  285. unexpectedToken(RemainingExpr, RemainingExpr, "expected ')'"), "");
  286. RemainingExpr = RemainingExpr.substr(1).ltrim();
  287. MCInst Inst;
  288. uint64_t InstSize;
  289. if (!decodeInst(Symbol, Inst, InstSize, 0))
  290. return std::make_pair(
  291. EvalResult(("Couldn't decode instruction at '" + Symbol + "'").str()),
  292. "");
  293. uint64_t SymbolAddr = PCtx.IsInsideLoad
  294. ? Checker.getSymbolLocalAddr(Symbol)
  295. : Checker.getSymbolRemoteAddr(Symbol);
  296. uint64_t NextPC = SymbolAddr + InstSize;
  297. return std::make_pair(EvalResult(NextPC), RemainingExpr);
  298. }
  299. // Evaluate a call to stub_addr/got_addr.
  300. // Look up and return the address of the stub for the given
  301. // (<file name>, <section name>, <symbol name>) tuple.
  302. // On success, returns a pair containing the stub address, plus the expression
  303. // remaining to be evaluated.
  304. std::pair<EvalResult, StringRef>
  305. evalStubOrGOTAddr(StringRef Expr, ParseContext PCtx, bool IsStubAddr) const {
  306. if (!Expr.startswith("("))
  307. return std::make_pair(unexpectedToken(Expr, Expr, "expected '('"), "");
  308. StringRef RemainingExpr = Expr.substr(1).ltrim();
  309. // Handle file-name specially, as it may contain characters that aren't
  310. // legal for symbols.
  311. StringRef StubContainerName;
  312. size_t ComaIdx = RemainingExpr.find(',');
  313. StubContainerName = RemainingExpr.substr(0, ComaIdx).rtrim();
  314. RemainingExpr = RemainingExpr.substr(ComaIdx).ltrim();
  315. if (!RemainingExpr.startswith(","))
  316. return std::make_pair(
  317. unexpectedToken(RemainingExpr, Expr, "expected ','"), "");
  318. RemainingExpr = RemainingExpr.substr(1).ltrim();
  319. StringRef Symbol;
  320. std::tie(Symbol, RemainingExpr) = parseSymbol(RemainingExpr);
  321. if (!RemainingExpr.startswith(")"))
  322. return std::make_pair(
  323. unexpectedToken(RemainingExpr, Expr, "expected ')'"), "");
  324. RemainingExpr = RemainingExpr.substr(1).ltrim();
  325. uint64_t StubAddr;
  326. std::string ErrorMsg;
  327. std::tie(StubAddr, ErrorMsg) = Checker.getStubOrGOTAddrFor(
  328. StubContainerName, Symbol, PCtx.IsInsideLoad, IsStubAddr);
  329. if (ErrorMsg != "")
  330. return std::make_pair(EvalResult(ErrorMsg), "");
  331. return std::make_pair(EvalResult(StubAddr), RemainingExpr);
  332. }
  333. std::pair<EvalResult, StringRef> evalSectionAddr(StringRef Expr,
  334. ParseContext PCtx) const {
  335. if (!Expr.startswith("("))
  336. return std::make_pair(unexpectedToken(Expr, Expr, "expected '('"), "");
  337. StringRef RemainingExpr = Expr.substr(1).ltrim();
  338. // Handle file-name specially, as it may contain characters that aren't
  339. // legal for symbols.
  340. StringRef FileName;
  341. size_t ComaIdx = RemainingExpr.find(',');
  342. FileName = RemainingExpr.substr(0, ComaIdx).rtrim();
  343. RemainingExpr = RemainingExpr.substr(ComaIdx).ltrim();
  344. if (!RemainingExpr.startswith(","))
  345. return std::make_pair(
  346. unexpectedToken(RemainingExpr, Expr, "expected ','"), "");
  347. RemainingExpr = RemainingExpr.substr(1).ltrim();
  348. StringRef SectionName;
  349. size_t CloseParensIdx = RemainingExpr.find(')');
  350. SectionName = RemainingExpr.substr(0, CloseParensIdx).rtrim();
  351. RemainingExpr = RemainingExpr.substr(CloseParensIdx).ltrim();
  352. if (!RemainingExpr.startswith(")"))
  353. return std::make_pair(
  354. unexpectedToken(RemainingExpr, Expr, "expected ')'"), "");
  355. RemainingExpr = RemainingExpr.substr(1).ltrim();
  356. uint64_t StubAddr;
  357. std::string ErrorMsg;
  358. std::tie(StubAddr, ErrorMsg) = Checker.getSectionAddr(
  359. FileName, SectionName, PCtx.IsInsideLoad);
  360. if (ErrorMsg != "")
  361. return std::make_pair(EvalResult(ErrorMsg), "");
  362. return std::make_pair(EvalResult(StubAddr), RemainingExpr);
  363. }
  364. // Evaluate an identiefer expr, which may be a symbol, or a call to
  365. // one of the builtin functions: get_insn_opcode or get_insn_length.
  366. // Return the result, plus the expression remaining to be parsed.
  367. std::pair<EvalResult, StringRef> evalIdentifierExpr(StringRef Expr,
  368. ParseContext PCtx) const {
  369. StringRef Symbol;
  370. StringRef RemainingExpr;
  371. std::tie(Symbol, RemainingExpr) = parseSymbol(Expr);
  372. // Check for builtin function calls.
  373. if (Symbol == "decode_operand")
  374. return evalDecodeOperand(RemainingExpr);
  375. else if (Symbol == "next_pc")
  376. return evalNextPC(RemainingExpr, PCtx);
  377. else if (Symbol == "stub_addr")
  378. return evalStubOrGOTAddr(RemainingExpr, PCtx, true);
  379. else if (Symbol == "got_addr")
  380. return evalStubOrGOTAddr(RemainingExpr, PCtx, false);
  381. else if (Symbol == "section_addr")
  382. return evalSectionAddr(RemainingExpr, PCtx);
  383. if (!Checker.isSymbolValid(Symbol)) {
  384. std::string ErrMsg("No known address for symbol '");
  385. ErrMsg += Symbol;
  386. ErrMsg += "'";
  387. if (Symbol.startswith("L"))
  388. ErrMsg += " (this appears to be an assembler local label - "
  389. " perhaps drop the 'L'?)";
  390. return std::make_pair(EvalResult(ErrMsg), "");
  391. }
  392. // The value for the symbol depends on the context we're evaluating in:
  393. // Inside a load this is the address in the linker's memory, outside a
  394. // load it's the address in the target processes memory.
  395. uint64_t Value = PCtx.IsInsideLoad ? Checker.getSymbolLocalAddr(Symbol)
  396. : Checker.getSymbolRemoteAddr(Symbol);
  397. // Looks like a plain symbol reference.
  398. return std::make_pair(EvalResult(Value), RemainingExpr);
  399. }
  400. // Parse a number (hexadecimal or decimal) and return a (string, string)
  401. // pair representing the number and the expression remaining to be parsed.
  402. std::pair<StringRef, StringRef> parseNumberString(StringRef Expr) const {
  403. size_t FirstNonDigit = StringRef::npos;
  404. if (Expr.startswith("0x")) {
  405. FirstNonDigit = Expr.find_first_not_of("0123456789abcdefABCDEF", 2);
  406. if (FirstNonDigit == StringRef::npos)
  407. FirstNonDigit = Expr.size();
  408. } else {
  409. FirstNonDigit = Expr.find_first_not_of("0123456789");
  410. if (FirstNonDigit == StringRef::npos)
  411. FirstNonDigit = Expr.size();
  412. }
  413. return std::make_pair(Expr.substr(0, FirstNonDigit),
  414. Expr.substr(FirstNonDigit));
  415. }
  416. // Evaluate a constant numeric expression (hexadecimal or decimal) and
  417. // return a pair containing the result, and the expression remaining to be
  418. // evaluated.
  419. std::pair<EvalResult, StringRef> evalNumberExpr(StringRef Expr) const {
  420. StringRef ValueStr;
  421. StringRef RemainingExpr;
  422. std::tie(ValueStr, RemainingExpr) = parseNumberString(Expr);
  423. if (ValueStr.empty() || !isdigit(ValueStr[0]))
  424. return std::make_pair(
  425. unexpectedToken(RemainingExpr, RemainingExpr, "expected number"), "");
  426. uint64_t Value;
  427. ValueStr.getAsInteger(0, Value);
  428. return std::make_pair(EvalResult(Value), RemainingExpr);
  429. }
  430. // Evaluate an expression of the form "(<expr>)" and return a pair
  431. // containing the result of evaluating <expr>, plus the expression
  432. // remaining to be parsed.
  433. std::pair<EvalResult, StringRef> evalParensExpr(StringRef Expr,
  434. ParseContext PCtx) const {
  435. assert(Expr.startswith("(") && "Not a parenthesized expression");
  436. EvalResult SubExprResult;
  437. StringRef RemainingExpr;
  438. std::tie(SubExprResult, RemainingExpr) =
  439. evalComplexExpr(evalSimpleExpr(Expr.substr(1).ltrim(), PCtx), PCtx);
  440. if (SubExprResult.hasError())
  441. return std::make_pair(SubExprResult, "");
  442. if (!RemainingExpr.startswith(")"))
  443. return std::make_pair(
  444. unexpectedToken(RemainingExpr, Expr, "expected ')'"), "");
  445. RemainingExpr = RemainingExpr.substr(1).ltrim();
  446. return std::make_pair(SubExprResult, RemainingExpr);
  447. }
  448. // Evaluate an expression in one of the following forms:
  449. // *{<number>}<expr>
  450. // Return a pair containing the result, plus the expression remaining to be
  451. // parsed.
  452. std::pair<EvalResult, StringRef> evalLoadExpr(StringRef Expr) const {
  453. assert(Expr.startswith("*") && "Not a load expression");
  454. StringRef RemainingExpr = Expr.substr(1).ltrim();
  455. // Parse read size.
  456. if (!RemainingExpr.startswith("{"))
  457. return std::make_pair(EvalResult("Expected '{' following '*'."), "");
  458. RemainingExpr = RemainingExpr.substr(1).ltrim();
  459. EvalResult ReadSizeExpr;
  460. std::tie(ReadSizeExpr, RemainingExpr) = evalNumberExpr(RemainingExpr);
  461. if (ReadSizeExpr.hasError())
  462. return std::make_pair(ReadSizeExpr, RemainingExpr);
  463. uint64_t ReadSize = ReadSizeExpr.getValue();
  464. if (ReadSize < 1 || ReadSize > 8)
  465. return std::make_pair(EvalResult("Invalid size for dereference."), "");
  466. if (!RemainingExpr.startswith("}"))
  467. return std::make_pair(EvalResult("Missing '}' for dereference."), "");
  468. RemainingExpr = RemainingExpr.substr(1).ltrim();
  469. // Evaluate the expression representing the load address.
  470. ParseContext LoadCtx(true);
  471. EvalResult LoadAddrExprResult;
  472. std::tie(LoadAddrExprResult, RemainingExpr) =
  473. evalComplexExpr(evalSimpleExpr(RemainingExpr, LoadCtx), LoadCtx);
  474. if (LoadAddrExprResult.hasError())
  475. return std::make_pair(LoadAddrExprResult, "");
  476. uint64_t LoadAddr = LoadAddrExprResult.getValue();
  477. // If there is no error but the content pointer is null then this is a
  478. // zero-fill symbol/section.
  479. if (LoadAddr == 0)
  480. return std::make_pair(0, RemainingExpr);
  481. return std::make_pair(
  482. EvalResult(Checker.readMemoryAtAddr(LoadAddr, ReadSize)),
  483. RemainingExpr);
  484. }
  485. // Evaluate a "simple" expression. This is any expression that _isn't_ an
  486. // un-parenthesized binary expression.
  487. //
  488. // "Simple" expressions can be optionally bit-sliced. See evalSlicedExpr.
  489. //
  490. // Returns a pair containing the result of the evaluation, plus the
  491. // expression remaining to be parsed.
  492. std::pair<EvalResult, StringRef> evalSimpleExpr(StringRef Expr,
  493. ParseContext PCtx) const {
  494. EvalResult SubExprResult;
  495. StringRef RemainingExpr;
  496. if (Expr.empty())
  497. return std::make_pair(EvalResult("Unexpected end of expression"), "");
  498. if (Expr[0] == '(')
  499. std::tie(SubExprResult, RemainingExpr) = evalParensExpr(Expr, PCtx);
  500. else if (Expr[0] == '*')
  501. std::tie(SubExprResult, RemainingExpr) = evalLoadExpr(Expr);
  502. else if (isalpha(Expr[0]) || Expr[0] == '_')
  503. std::tie(SubExprResult, RemainingExpr) = evalIdentifierExpr(Expr, PCtx);
  504. else if (isdigit(Expr[0]))
  505. std::tie(SubExprResult, RemainingExpr) = evalNumberExpr(Expr);
  506. else
  507. return std::make_pair(
  508. unexpectedToken(Expr, Expr,
  509. "expected '(', '*', identifier, or number"), "");
  510. if (SubExprResult.hasError())
  511. return std::make_pair(SubExprResult, RemainingExpr);
  512. // Evaluate bit-slice if present.
  513. if (RemainingExpr.startswith("["))
  514. std::tie(SubExprResult, RemainingExpr) =
  515. evalSliceExpr(std::make_pair(SubExprResult, RemainingExpr));
  516. return std::make_pair(SubExprResult, RemainingExpr);
  517. }
  518. // Evaluate a bit-slice of an expression.
  519. // A bit-slice has the form "<expr>[high:low]". The result of evaluating a
  520. // slice is the bits between high and low (inclusive) in the original
  521. // expression, right shifted so that the "low" bit is in position 0 in the
  522. // result.
  523. // Returns a pair containing the result of the slice operation, plus the
  524. // expression remaining to be parsed.
  525. std::pair<EvalResult, StringRef>
  526. evalSliceExpr(const std::pair<EvalResult, StringRef> &Ctx) const {
  527. EvalResult SubExprResult;
  528. StringRef RemainingExpr;
  529. std::tie(SubExprResult, RemainingExpr) = Ctx;
  530. assert(RemainingExpr.startswith("[") && "Not a slice expr.");
  531. RemainingExpr = RemainingExpr.substr(1).ltrim();
  532. EvalResult HighBitExpr;
  533. std::tie(HighBitExpr, RemainingExpr) = evalNumberExpr(RemainingExpr);
  534. if (HighBitExpr.hasError())
  535. return std::make_pair(HighBitExpr, RemainingExpr);
  536. if (!RemainingExpr.startswith(":"))
  537. return std::make_pair(
  538. unexpectedToken(RemainingExpr, RemainingExpr, "expected ':'"), "");
  539. RemainingExpr = RemainingExpr.substr(1).ltrim();
  540. EvalResult LowBitExpr;
  541. std::tie(LowBitExpr, RemainingExpr) = evalNumberExpr(RemainingExpr);
  542. if (LowBitExpr.hasError())
  543. return std::make_pair(LowBitExpr, RemainingExpr);
  544. if (!RemainingExpr.startswith("]"))
  545. return std::make_pair(
  546. unexpectedToken(RemainingExpr, RemainingExpr, "expected ']'"), "");
  547. RemainingExpr = RemainingExpr.substr(1).ltrim();
  548. unsigned HighBit = HighBitExpr.getValue();
  549. unsigned LowBit = LowBitExpr.getValue();
  550. uint64_t Mask = ((uint64_t)1 << (HighBit - LowBit + 1)) - 1;
  551. uint64_t SlicedValue = (SubExprResult.getValue() >> LowBit) & Mask;
  552. return std::make_pair(EvalResult(SlicedValue), RemainingExpr);
  553. }
  554. // Evaluate a "complex" expression.
  555. // Takes an already evaluated subexpression and checks for the presence of a
  556. // binary operator, computing the result of the binary operation if one is
  557. // found. Used to make arithmetic expressions left-associative.
  558. // Returns a pair containing the ultimate result of evaluating the
  559. // expression, plus the expression remaining to be evaluated.
  560. std::pair<EvalResult, StringRef>
  561. evalComplexExpr(const std::pair<EvalResult, StringRef> &LHSAndRemaining,
  562. ParseContext PCtx) const {
  563. EvalResult LHSResult;
  564. StringRef RemainingExpr;
  565. std::tie(LHSResult, RemainingExpr) = LHSAndRemaining;
  566. // If there was an error, or there's nothing left to evaluate, return the
  567. // result.
  568. if (LHSResult.hasError() || RemainingExpr == "")
  569. return std::make_pair(LHSResult, RemainingExpr);
  570. // Otherwise check if this is a binary expressioan.
  571. BinOpToken BinOp;
  572. std::tie(BinOp, RemainingExpr) = parseBinOpToken(RemainingExpr);
  573. // If this isn't a recognized expression just return.
  574. if (BinOp == BinOpToken::Invalid)
  575. return std::make_pair(LHSResult, RemainingExpr);
  576. // This is a recognized bin-op. Evaluate the RHS, then evaluate the binop.
  577. EvalResult RHSResult;
  578. std::tie(RHSResult, RemainingExpr) = evalSimpleExpr(RemainingExpr, PCtx);
  579. // If there was an error evaluating the RHS, return it.
  580. if (RHSResult.hasError())
  581. return std::make_pair(RHSResult, RemainingExpr);
  582. // This is a binary expression - evaluate and try to continue as a
  583. // complex expr.
  584. EvalResult ThisResult(computeBinOpResult(BinOp, LHSResult, RHSResult));
  585. return evalComplexExpr(std::make_pair(ThisResult, RemainingExpr), PCtx);
  586. }
  587. bool decodeInst(StringRef Symbol, MCInst &Inst, uint64_t &Size,
  588. int64_t Offset) const {
  589. MCDisassembler *Dis = Checker.Disassembler;
  590. StringRef SymbolMem = Checker.getSymbolContent(Symbol);
  591. ArrayRef<uint8_t> SymbolBytes(SymbolMem.bytes_begin() + Offset,
  592. SymbolMem.size() - Offset);
  593. MCDisassembler::DecodeStatus S =
  594. Dis->getInstruction(Inst, Size, SymbolBytes, 0, nulls());
  595. return (S == MCDisassembler::Success);
  596. }
  597. };
  598. } // namespace llvm
  599. RuntimeDyldCheckerImpl::RuntimeDyldCheckerImpl(
  600. IsSymbolValidFunction IsSymbolValid, GetSymbolInfoFunction GetSymbolInfo,
  601. GetSectionInfoFunction GetSectionInfo, GetStubInfoFunction GetStubInfo,
  602. GetGOTInfoFunction GetGOTInfo, support::endianness Endianness,
  603. MCDisassembler *Disassembler, MCInstPrinter *InstPrinter,
  604. raw_ostream &ErrStream)
  605. : IsSymbolValid(std::move(IsSymbolValid)),
  606. GetSymbolInfo(std::move(GetSymbolInfo)),
  607. GetSectionInfo(std::move(GetSectionInfo)),
  608. GetStubInfo(std::move(GetStubInfo)), GetGOTInfo(std::move(GetGOTInfo)),
  609. Endianness(Endianness), Disassembler(Disassembler),
  610. InstPrinter(InstPrinter), ErrStream(ErrStream) {}
  611. bool RuntimeDyldCheckerImpl::check(StringRef CheckExpr) const {
  612. CheckExpr = CheckExpr.trim();
  613. LLVM_DEBUG(dbgs() << "RuntimeDyldChecker: Checking '" << CheckExpr
  614. << "'...\n");
  615. RuntimeDyldCheckerExprEval P(*this, ErrStream);
  616. bool Result = P.evaluate(CheckExpr);
  617. (void)Result;
  618. LLVM_DEBUG(dbgs() << "RuntimeDyldChecker: '" << CheckExpr << "' "
  619. << (Result ? "passed" : "FAILED") << ".\n");
  620. return Result;
  621. }
  622. bool RuntimeDyldCheckerImpl::checkAllRulesInBuffer(StringRef RulePrefix,
  623. MemoryBuffer *MemBuf) const {
  624. bool DidAllTestsPass = true;
  625. unsigned NumRules = 0;
  626. std::string CheckExpr;
  627. const char *LineStart = MemBuf->getBufferStart();
  628. // Eat whitespace.
  629. while (LineStart != MemBuf->getBufferEnd() && isSpace(*LineStart))
  630. ++LineStart;
  631. while (LineStart != MemBuf->getBufferEnd() && *LineStart != '\0') {
  632. const char *LineEnd = LineStart;
  633. while (LineEnd != MemBuf->getBufferEnd() && *LineEnd != '\r' &&
  634. *LineEnd != '\n')
  635. ++LineEnd;
  636. StringRef Line(LineStart, LineEnd - LineStart);
  637. if (Line.startswith(RulePrefix))
  638. CheckExpr += Line.substr(RulePrefix.size()).str();
  639. // If there's a check expr string...
  640. if (!CheckExpr.empty()) {
  641. // ... and it's complete then run it, otherwise remove the trailer '\'.
  642. if (CheckExpr.back() != '\\') {
  643. DidAllTestsPass &= check(CheckExpr);
  644. CheckExpr.clear();
  645. ++NumRules;
  646. } else
  647. CheckExpr.pop_back();
  648. }
  649. // Eat whitespace.
  650. LineStart = LineEnd;
  651. while (LineStart != MemBuf->getBufferEnd() && isSpace(*LineStart))
  652. ++LineStart;
  653. }
  654. return DidAllTestsPass && (NumRules != 0);
  655. }
  656. bool RuntimeDyldCheckerImpl::isSymbolValid(StringRef Symbol) const {
  657. return IsSymbolValid(Symbol);
  658. }
  659. uint64_t RuntimeDyldCheckerImpl::getSymbolLocalAddr(StringRef Symbol) const {
  660. auto SymInfo = GetSymbolInfo(Symbol);
  661. if (!SymInfo) {
  662. logAllUnhandledErrors(SymInfo.takeError(), errs(), "RTDyldChecker: ");
  663. return 0;
  664. }
  665. if (SymInfo->isZeroFill())
  666. return 0;
  667. return static_cast<uint64_t>(
  668. reinterpret_cast<uintptr_t>(SymInfo->getContent().data()));
  669. }
  670. uint64_t RuntimeDyldCheckerImpl::getSymbolRemoteAddr(StringRef Symbol) const {
  671. auto SymInfo = GetSymbolInfo(Symbol);
  672. if (!SymInfo) {
  673. logAllUnhandledErrors(SymInfo.takeError(), errs(), "RTDyldChecker: ");
  674. return 0;
  675. }
  676. return SymInfo->getTargetAddress();
  677. }
  678. uint64_t RuntimeDyldCheckerImpl::readMemoryAtAddr(uint64_t SrcAddr,
  679. unsigned Size) const {
  680. uintptr_t PtrSizedAddr = static_cast<uintptr_t>(SrcAddr);
  681. assert(PtrSizedAddr == SrcAddr && "Linker memory pointer out-of-range.");
  682. void *Ptr = reinterpret_cast<void*>(PtrSizedAddr);
  683. switch (Size) {
  684. case 1:
  685. return support::endian::read<uint8_t>(Ptr, Endianness);
  686. case 2:
  687. return support::endian::read<uint16_t>(Ptr, Endianness);
  688. case 4:
  689. return support::endian::read<uint32_t>(Ptr, Endianness);
  690. case 8:
  691. return support::endian::read<uint64_t>(Ptr, Endianness);
  692. }
  693. llvm_unreachable("Unsupported read size");
  694. }
  695. StringRef RuntimeDyldCheckerImpl::getSymbolContent(StringRef Symbol) const {
  696. auto SymInfo = GetSymbolInfo(Symbol);
  697. if (!SymInfo) {
  698. logAllUnhandledErrors(SymInfo.takeError(), errs(), "RTDyldChecker: ");
  699. return StringRef();
  700. }
  701. return {SymInfo->getContent().data(), SymInfo->getContent().size()};
  702. }
  703. std::pair<uint64_t, std::string> RuntimeDyldCheckerImpl::getSectionAddr(
  704. StringRef FileName, StringRef SectionName, bool IsInsideLoad) const {
  705. auto SecInfo = GetSectionInfo(FileName, SectionName);
  706. if (!SecInfo) {
  707. std::string ErrMsg;
  708. {
  709. raw_string_ostream ErrMsgStream(ErrMsg);
  710. logAllUnhandledErrors(SecInfo.takeError(), ErrMsgStream,
  711. "RTDyldChecker: ");
  712. }
  713. return std::make_pair(0, std::move(ErrMsg));
  714. }
  715. // If this address is being looked up in "load" mode, return the content
  716. // pointer, otherwise return the target address.
  717. uint64_t Addr = 0;
  718. if (IsInsideLoad) {
  719. if (SecInfo->isZeroFill())
  720. Addr = 0;
  721. else
  722. Addr = pointerToJITTargetAddress(SecInfo->getContent().data());
  723. } else
  724. Addr = SecInfo->getTargetAddress();
  725. return std::make_pair(Addr, "");
  726. }
  727. std::pair<uint64_t, std::string> RuntimeDyldCheckerImpl::getStubOrGOTAddrFor(
  728. StringRef StubContainerName, StringRef SymbolName, bool IsInsideLoad,
  729. bool IsStubAddr) const {
  730. auto StubInfo = IsStubAddr ? GetStubInfo(StubContainerName, SymbolName)
  731. : GetGOTInfo(StubContainerName, SymbolName);
  732. if (!StubInfo) {
  733. std::string ErrMsg;
  734. {
  735. raw_string_ostream ErrMsgStream(ErrMsg);
  736. logAllUnhandledErrors(StubInfo.takeError(), ErrMsgStream,
  737. "RTDyldChecker: ");
  738. }
  739. return std::make_pair((uint64_t)0, std::move(ErrMsg));
  740. }
  741. uint64_t Addr = 0;
  742. if (IsInsideLoad) {
  743. if (StubInfo->isZeroFill())
  744. return std::make_pair((uint64_t)0, "Detected zero-filled stub/GOT entry");
  745. Addr = pointerToJITTargetAddress(StubInfo->getContent().data());
  746. } else
  747. Addr = StubInfo->getTargetAddress();
  748. return std::make_pair(Addr, "");
  749. }
  750. RuntimeDyldChecker::RuntimeDyldChecker(
  751. IsSymbolValidFunction IsSymbolValid, GetSymbolInfoFunction GetSymbolInfo,
  752. GetSectionInfoFunction GetSectionInfo, GetStubInfoFunction GetStubInfo,
  753. GetGOTInfoFunction GetGOTInfo, support::endianness Endianness,
  754. MCDisassembler *Disassembler, MCInstPrinter *InstPrinter,
  755. raw_ostream &ErrStream)
  756. : Impl(::std::make_unique<RuntimeDyldCheckerImpl>(
  757. std::move(IsSymbolValid), std::move(GetSymbolInfo),
  758. std::move(GetSectionInfo), std::move(GetStubInfo),
  759. std::move(GetGOTInfo), Endianness, Disassembler, InstPrinter,
  760. ErrStream)) {}
  761. RuntimeDyldChecker::~RuntimeDyldChecker() {}
  762. bool RuntimeDyldChecker::check(StringRef CheckExpr) const {
  763. return Impl->check(CheckExpr);
  764. }
  765. bool RuntimeDyldChecker::checkAllRulesInBuffer(StringRef RulePrefix,
  766. MemoryBuffer *MemBuf) const {
  767. return Impl->checkAllRulesInBuffer(RulePrefix, MemBuf);
  768. }
  769. std::pair<uint64_t, std::string>
  770. RuntimeDyldChecker::getSectionAddr(StringRef FileName, StringRef SectionName,
  771. bool LocalAddress) {
  772. return Impl->getSectionAddr(FileName, SectionName, LocalAddress);
  773. }