ELF_riscv.cpp 25 KB

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  1. //===------- ELF_riscv.cpp -JIT linker implementation for ELF/riscv -------===//
  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. // ELF/riscv jit-link implementation.
  10. //
  11. //===----------------------------------------------------------------------===//
  12. #include "llvm/ExecutionEngine/JITLink/ELF_riscv.h"
  13. #include "ELFLinkGraphBuilder.h"
  14. #include "JITLinkGeneric.h"
  15. #include "PerGraphGOTAndPLTStubsBuilder.h"
  16. #include "llvm/BinaryFormat/ELF.h"
  17. #include "llvm/ExecutionEngine/JITLink/JITLink.h"
  18. #include "llvm/ExecutionEngine/JITLink/riscv.h"
  19. #include "llvm/Object/ELF.h"
  20. #include "llvm/Object/ELFObjectFile.h"
  21. #include "llvm/Support/Endian.h"
  22. #define DEBUG_TYPE "jitlink"
  23. using namespace llvm;
  24. using namespace llvm::jitlink;
  25. using namespace llvm::jitlink::riscv;
  26. namespace {
  27. class PerGraphGOTAndPLTStubsBuilder_ELF_riscv
  28. : public PerGraphGOTAndPLTStubsBuilder<
  29. PerGraphGOTAndPLTStubsBuilder_ELF_riscv> {
  30. public:
  31. static constexpr size_t StubEntrySize = 16;
  32. static const uint8_t NullGOTEntryContent[8];
  33. static const uint8_t RV64StubContent[StubEntrySize];
  34. static const uint8_t RV32StubContent[StubEntrySize];
  35. using PerGraphGOTAndPLTStubsBuilder<
  36. PerGraphGOTAndPLTStubsBuilder_ELF_riscv>::PerGraphGOTAndPLTStubsBuilder;
  37. bool isRV64() const { return G.getPointerSize() == 8; }
  38. bool isGOTEdgeToFix(Edge &E) const { return E.getKind() == R_RISCV_GOT_HI20; }
  39. Symbol &createGOTEntry(Symbol &Target) {
  40. Block &GOTBlock =
  41. G.createContentBlock(getGOTSection(), getGOTEntryBlockContent(),
  42. orc::ExecutorAddr(), G.getPointerSize(), 0);
  43. GOTBlock.addEdge(isRV64() ? R_RISCV_64 : R_RISCV_32, 0, Target, 0);
  44. return G.addAnonymousSymbol(GOTBlock, 0, G.getPointerSize(), false, false);
  45. }
  46. Symbol &createPLTStub(Symbol &Target) {
  47. Block &StubContentBlock = G.createContentBlock(
  48. getStubsSection(), getStubBlockContent(), orc::ExecutorAddr(), 4, 0);
  49. auto &GOTEntrySymbol = getGOTEntry(Target);
  50. StubContentBlock.addEdge(R_RISCV_CALL, 0, GOTEntrySymbol, 0);
  51. return G.addAnonymousSymbol(StubContentBlock, 0, StubEntrySize, true,
  52. false);
  53. }
  54. void fixGOTEdge(Edge &E, Symbol &GOTEntry) {
  55. // Replace the relocation pair (R_RISCV_GOT_HI20, R_RISCV_PCREL_LO12)
  56. // with (R_RISCV_PCREL_HI20, R_RISCV_PCREL_LO12)
  57. // Therefore, here just change the R_RISCV_GOT_HI20 to R_RISCV_PCREL_HI20
  58. E.setKind(R_RISCV_PCREL_HI20);
  59. E.setTarget(GOTEntry);
  60. }
  61. void fixPLTEdge(Edge &E, Symbol &PLTStubs) {
  62. assert(E.getKind() == R_RISCV_CALL_PLT && "Not a R_RISCV_CALL_PLT edge?");
  63. E.setKind(R_RISCV_CALL);
  64. E.setTarget(PLTStubs);
  65. }
  66. bool isExternalBranchEdge(Edge &E) const {
  67. return E.getKind() == R_RISCV_CALL_PLT;
  68. }
  69. private:
  70. Section &getGOTSection() const {
  71. if (!GOTSection)
  72. GOTSection = &G.createSection("$__GOT", orc::MemProt::Read);
  73. return *GOTSection;
  74. }
  75. Section &getStubsSection() const {
  76. if (!StubsSection)
  77. StubsSection =
  78. &G.createSection("$__STUBS", orc::MemProt::Read | orc::MemProt::Exec);
  79. return *StubsSection;
  80. }
  81. ArrayRef<char> getGOTEntryBlockContent() {
  82. return {reinterpret_cast<const char *>(NullGOTEntryContent),
  83. G.getPointerSize()};
  84. }
  85. ArrayRef<char> getStubBlockContent() {
  86. auto StubContent = isRV64() ? RV64StubContent : RV32StubContent;
  87. return {reinterpret_cast<const char *>(StubContent), StubEntrySize};
  88. }
  89. mutable Section *GOTSection = nullptr;
  90. mutable Section *StubsSection = nullptr;
  91. };
  92. const uint8_t PerGraphGOTAndPLTStubsBuilder_ELF_riscv::NullGOTEntryContent[8] =
  93. {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  94. const uint8_t
  95. PerGraphGOTAndPLTStubsBuilder_ELF_riscv::RV64StubContent[StubEntrySize] = {
  96. 0x17, 0x0e, 0x00, 0x00, // auipc t3, literal
  97. 0x03, 0x3e, 0x0e, 0x00, // ld t3, literal(t3)
  98. 0x67, 0x00, 0x0e, 0x00, // jr t3
  99. 0x13, 0x00, 0x00, 0x00}; // nop
  100. const uint8_t
  101. PerGraphGOTAndPLTStubsBuilder_ELF_riscv::RV32StubContent[StubEntrySize] = {
  102. 0x17, 0x0e, 0x00, 0x00, // auipc t3, literal
  103. 0x03, 0x2e, 0x0e, 0x00, // lw t3, literal(t3)
  104. 0x67, 0x00, 0x0e, 0x00, // jr t3
  105. 0x13, 0x00, 0x00, 0x00}; // nop
  106. } // namespace
  107. namespace llvm {
  108. namespace jitlink {
  109. static Expected<const Edge &> getRISCVPCRelHi20(const Edge &E) {
  110. using namespace riscv;
  111. assert((E.getKind() == R_RISCV_PCREL_LO12_I ||
  112. E.getKind() == R_RISCV_PCREL_LO12_S) &&
  113. "Can only have high relocation for R_RISCV_PCREL_LO12_I or "
  114. "R_RISCV_PCREL_LO12_S");
  115. const Symbol &Sym = E.getTarget();
  116. const Block &B = Sym.getBlock();
  117. orc::ExecutorAddrDiff Offset = Sym.getOffset();
  118. struct Comp {
  119. bool operator()(const Edge &Lhs, orc::ExecutorAddrDiff Offset) {
  120. return Lhs.getOffset() < Offset;
  121. }
  122. bool operator()(orc::ExecutorAddrDiff Offset, const Edge &Rhs) {
  123. return Offset < Rhs.getOffset();
  124. }
  125. };
  126. auto Bound =
  127. std::equal_range(B.edges().begin(), B.edges().end(), Offset, Comp{});
  128. for (auto It = Bound.first; It != Bound.second; ++It) {
  129. if (It->getKind() == R_RISCV_PCREL_HI20)
  130. return *It;
  131. }
  132. return make_error<JITLinkError>(
  133. "No HI20 PCREL relocation type be found for LO12 PCREL relocation type");
  134. }
  135. static uint32_t extractBits(uint32_t Num, unsigned Low, unsigned Size) {
  136. return (Num & (((1ULL << Size) - 1) << Low)) >> Low;
  137. }
  138. static inline bool isAlignmentCorrect(uint64_t Value, int N) {
  139. return (Value & (N - 1)) ? false : true;
  140. }
  141. // Requires 0 < N <= 64.
  142. static inline bool isInRangeForImm(int64_t Value, int N) {
  143. return Value == llvm::SignExtend64(Value, N);
  144. }
  145. class ELFJITLinker_riscv : public JITLinker<ELFJITLinker_riscv> {
  146. friend class JITLinker<ELFJITLinker_riscv>;
  147. public:
  148. ELFJITLinker_riscv(std::unique_ptr<JITLinkContext> Ctx,
  149. std::unique_ptr<LinkGraph> G, PassConfiguration PassConfig)
  150. : JITLinker(std::move(Ctx), std::move(G), std::move(PassConfig)) {}
  151. private:
  152. Error applyFixup(LinkGraph &G, Block &B, const Edge &E) const {
  153. using namespace riscv;
  154. using namespace llvm::support;
  155. char *BlockWorkingMem = B.getAlreadyMutableContent().data();
  156. char *FixupPtr = BlockWorkingMem + E.getOffset();
  157. orc::ExecutorAddr FixupAddress = B.getAddress() + E.getOffset();
  158. switch (E.getKind()) {
  159. case R_RISCV_32: {
  160. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  161. *(little32_t *)FixupPtr = static_cast<uint32_t>(Value);
  162. break;
  163. }
  164. case R_RISCV_64: {
  165. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  166. *(little64_t *)FixupPtr = static_cast<uint64_t>(Value);
  167. break;
  168. }
  169. case R_RISCV_BRANCH: {
  170. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  171. if (LLVM_UNLIKELY(!isInRangeForImm(Value >> 1, 12)))
  172. return makeTargetOutOfRangeError(G, B, E);
  173. if (LLVM_UNLIKELY(!isAlignmentCorrect(Value, 2)))
  174. return makeAlignmentError(FixupAddress, Value, 2, E);
  175. uint32_t Imm12 = extractBits(Value, 12, 1) << 31;
  176. uint32_t Imm10_5 = extractBits(Value, 5, 6) << 25;
  177. uint32_t Imm4_1 = extractBits(Value, 1, 4) << 8;
  178. uint32_t Imm11 = extractBits(Value, 11, 1) << 7;
  179. uint32_t RawInstr = *(little32_t *)FixupPtr;
  180. *(little32_t *)FixupPtr =
  181. (RawInstr & 0x1FFF07F) | Imm12 | Imm10_5 | Imm4_1 | Imm11;
  182. break;
  183. }
  184. case R_RISCV_JAL: {
  185. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  186. if (LLVM_UNLIKELY(!isInRangeForImm(Value >> 1, 20)))
  187. return makeTargetOutOfRangeError(G, B, E);
  188. if (LLVM_UNLIKELY(!isAlignmentCorrect(Value, 2)))
  189. return makeAlignmentError(FixupAddress, Value, 2, E);
  190. uint32_t Imm20 = extractBits(Value, 20, 1) << 31;
  191. uint32_t Imm10_1 = extractBits(Value, 1, 10) << 21;
  192. uint32_t Imm11 = extractBits(Value, 11, 1) << 20;
  193. uint32_t Imm19_12 = extractBits(Value, 12, 8) << 12;
  194. uint32_t RawInstr = *(little32_t *)FixupPtr;
  195. *(little32_t *)FixupPtr =
  196. (RawInstr & 0xFFF) | Imm20 | Imm10_1 | Imm11 | Imm19_12;
  197. break;
  198. }
  199. case R_RISCV_CALL: {
  200. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  201. int64_t Hi = Value + 0x800;
  202. if (LLVM_UNLIKELY(!isInRangeForImm(Hi, 32)))
  203. return makeTargetOutOfRangeError(G, B, E);
  204. int32_t Lo = Value & 0xFFF;
  205. uint32_t RawInstrAuipc = *(little32_t *)FixupPtr;
  206. uint32_t RawInstrJalr = *(little32_t *)(FixupPtr + 4);
  207. *(little32_t *)FixupPtr =
  208. RawInstrAuipc | (static_cast<uint32_t>(Hi & 0xFFFFF000));
  209. *(little32_t *)(FixupPtr + 4) =
  210. RawInstrJalr | (static_cast<uint32_t>(Lo) << 20);
  211. break;
  212. }
  213. // The relocations R_RISCV_CALL_PLT and R_RISCV_GOT_HI20 are handled by
  214. // PerGraphGOTAndPLTStubsBuilder_ELF_riscv and are transformed into
  215. // R_RISCV_CALL and R_RISCV_PCREL_HI20.
  216. case R_RISCV_PCREL_HI20: {
  217. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  218. int64_t Hi = Value + 0x800;
  219. if (LLVM_UNLIKELY(!isInRangeForImm(Hi, 32)))
  220. return makeTargetOutOfRangeError(G, B, E);
  221. uint32_t RawInstr = *(little32_t *)FixupPtr;
  222. *(little32_t *)FixupPtr =
  223. (RawInstr & 0xFFF) | (static_cast<uint32_t>(Hi & 0xFFFFF000));
  224. break;
  225. }
  226. case R_RISCV_PCREL_LO12_I: {
  227. // FIXME: We assume that R_RISCV_PCREL_HI20 is present in object code and
  228. // pairs with current relocation R_RISCV_PCREL_LO12_I. So here may need a
  229. // check.
  230. auto RelHI20 = getRISCVPCRelHi20(E);
  231. if (!RelHI20)
  232. return RelHI20.takeError();
  233. int64_t Value = RelHI20->getTarget().getAddress() +
  234. RelHI20->getAddend() - E.getTarget().getAddress();
  235. int64_t Lo = Value & 0xFFF;
  236. uint32_t RawInstr = *(little32_t *)FixupPtr;
  237. *(little32_t *)FixupPtr =
  238. (RawInstr & 0xFFFFF) | (static_cast<uint32_t>(Lo & 0xFFF) << 20);
  239. break;
  240. }
  241. case R_RISCV_PCREL_LO12_S: {
  242. // FIXME: We assume that R_RISCV_PCREL_HI20 is present in object code and
  243. // pairs with current relocation R_RISCV_PCREL_LO12_S. So here may need a
  244. // check.
  245. auto RelHI20 = getRISCVPCRelHi20(E);
  246. if (!RelHI20)
  247. return RelHI20.takeError();
  248. int64_t Value = RelHI20->getTarget().getAddress() +
  249. RelHI20->getAddend() - E.getTarget().getAddress();
  250. int64_t Lo = Value & 0xFFF;
  251. uint32_t Imm11_5 = extractBits(Lo, 5, 7) << 25;
  252. uint32_t Imm4_0 = extractBits(Lo, 0, 5) << 7;
  253. uint32_t RawInstr = *(little32_t *)FixupPtr;
  254. *(little32_t *)FixupPtr = (RawInstr & 0x1FFF07F) | Imm11_5 | Imm4_0;
  255. break;
  256. }
  257. case R_RISCV_HI20: {
  258. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  259. int64_t Hi = Value + 0x800;
  260. if (LLVM_UNLIKELY(!isInRangeForImm(Hi, 32)))
  261. return makeTargetOutOfRangeError(G, B, E);
  262. uint32_t RawInstr = *(little32_t *)FixupPtr;
  263. *(little32_t *)FixupPtr =
  264. (RawInstr & 0xFFF) | (static_cast<uint32_t>(Hi & 0xFFFFF000));
  265. break;
  266. }
  267. case R_RISCV_LO12_I: {
  268. // FIXME: We assume that R_RISCV_HI20 is present in object code and pairs
  269. // with current relocation R_RISCV_LO12_I. So here may need a check.
  270. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  271. int32_t Lo = Value & 0xFFF;
  272. uint32_t RawInstr = *(little32_t *)FixupPtr;
  273. *(little32_t *)FixupPtr =
  274. (RawInstr & 0xFFFFF) | (static_cast<uint32_t>(Lo & 0xFFF) << 20);
  275. break;
  276. }
  277. case R_RISCV_LO12_S: {
  278. // FIXME: We assume that R_RISCV_HI20 is present in object code and pairs
  279. // with current relocation R_RISCV_LO12_S. So here may need a check.
  280. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  281. int64_t Lo = Value & 0xFFF;
  282. uint32_t Imm11_5 = extractBits(Lo, 5, 7) << 25;
  283. uint32_t Imm4_0 = extractBits(Lo, 0, 5) << 7;
  284. uint32_t RawInstr = *(little32_t *)FixupPtr;
  285. *(little32_t *)FixupPtr = (RawInstr & 0x1FFF07F) | Imm11_5 | Imm4_0;
  286. break;
  287. }
  288. case R_RISCV_ADD8: {
  289. int64_t Value =
  290. (E.getTarget().getAddress() +
  291. *(reinterpret_cast<const uint8_t *>(FixupAddress.getValue())) +
  292. E.getAddend())
  293. .getValue();
  294. *FixupPtr = static_cast<uint8_t>(Value);
  295. break;
  296. }
  297. case R_RISCV_ADD16: {
  298. int64_t Value = (E.getTarget().getAddress() +
  299. support::endian::read16le(reinterpret_cast<const void *>(
  300. FixupAddress.getValue())) +
  301. E.getAddend())
  302. .getValue();
  303. *(little16_t *)FixupPtr = static_cast<uint16_t>(Value);
  304. break;
  305. }
  306. case R_RISCV_ADD32: {
  307. int64_t Value = (E.getTarget().getAddress() +
  308. support::endian::read32le(reinterpret_cast<const void *>(
  309. FixupAddress.getValue())) +
  310. E.getAddend())
  311. .getValue();
  312. *(little32_t *)FixupPtr = static_cast<uint32_t>(Value);
  313. break;
  314. }
  315. case R_RISCV_ADD64: {
  316. int64_t Value = (E.getTarget().getAddress() +
  317. support::endian::read64le(reinterpret_cast<const void *>(
  318. FixupAddress.getValue())) +
  319. E.getAddend())
  320. .getValue();
  321. *(little64_t *)FixupPtr = static_cast<uint64_t>(Value);
  322. break;
  323. }
  324. case R_RISCV_SUB8: {
  325. int64_t Value =
  326. *(reinterpret_cast<const uint8_t *>(FixupAddress.getValue())) -
  327. E.getTarget().getAddress().getValue() - E.getAddend();
  328. *FixupPtr = static_cast<uint8_t>(Value);
  329. break;
  330. }
  331. case R_RISCV_SUB16: {
  332. int64_t Value = support::endian::read16le(reinterpret_cast<const void *>(
  333. FixupAddress.getValue())) -
  334. E.getTarget().getAddress().getValue() - E.getAddend();
  335. *(little16_t *)FixupPtr = static_cast<uint32_t>(Value);
  336. break;
  337. }
  338. case R_RISCV_SUB32: {
  339. int64_t Value = support::endian::read32le(reinterpret_cast<const void *>(
  340. FixupAddress.getValue())) -
  341. E.getTarget().getAddress().getValue() - E.getAddend();
  342. *(little32_t *)FixupPtr = static_cast<uint32_t>(Value);
  343. break;
  344. }
  345. case R_RISCV_SUB64: {
  346. int64_t Value = support::endian::read64le(reinterpret_cast<const void *>(
  347. FixupAddress.getValue())) -
  348. E.getTarget().getAddress().getValue() - E.getAddend();
  349. *(little64_t *)FixupPtr = static_cast<uint64_t>(Value);
  350. break;
  351. }
  352. case R_RISCV_RVC_BRANCH: {
  353. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  354. if (LLVM_UNLIKELY(!isInRangeForImm(Value >> 1, 8)))
  355. return makeTargetOutOfRangeError(G, B, E);
  356. if (LLVM_UNLIKELY(!isAlignmentCorrect(Value, 2)))
  357. return makeAlignmentError(FixupAddress, Value, 2, E);
  358. uint16_t Imm8 = extractBits(Value, 8, 1) << 12;
  359. uint16_t Imm4_3 = extractBits(Value, 3, 2) << 10;
  360. uint16_t Imm7_6 = extractBits(Value, 6, 2) << 5;
  361. uint16_t Imm2_1 = extractBits(Value, 1, 2) << 3;
  362. uint16_t Imm5 = extractBits(Value, 5, 1) << 2;
  363. uint16_t RawInstr = *(little16_t *)FixupPtr;
  364. *(little16_t *)FixupPtr =
  365. (RawInstr & 0xE383) | Imm8 | Imm4_3 | Imm7_6 | Imm2_1 | Imm5;
  366. break;
  367. }
  368. case R_RISCV_RVC_JUMP: {
  369. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  370. if (LLVM_UNLIKELY(!isInRangeForImm(Value >> 1, 11)))
  371. return makeTargetOutOfRangeError(G, B, E);
  372. if (LLVM_UNLIKELY(!isAlignmentCorrect(Value, 2)))
  373. return makeAlignmentError(FixupAddress, Value, 2, E);
  374. uint16_t Imm11 = extractBits(Value, 11, 1) << 12;
  375. uint16_t Imm4 = extractBits(Value, 4, 1) << 11;
  376. uint16_t Imm9_8 = extractBits(Value, 8, 2) << 9;
  377. uint16_t Imm10 = extractBits(Value, 10, 1) << 8;
  378. uint16_t Imm6 = extractBits(Value, 6, 1) << 7;
  379. uint16_t Imm7 = extractBits(Value, 7, 1) << 6;
  380. uint16_t Imm3_1 = extractBits(Value, 1, 3) << 3;
  381. uint16_t Imm5 = extractBits(Value, 5, 1) << 2;
  382. uint16_t RawInstr = *(little16_t *)FixupPtr;
  383. *(little16_t *)FixupPtr = (RawInstr & 0xE003) | Imm11 | Imm4 | Imm9_8 |
  384. Imm10 | Imm6 | Imm7 | Imm3_1 | Imm5;
  385. break;
  386. }
  387. case R_RISCV_SUB6: {
  388. int64_t Value =
  389. *(reinterpret_cast<const uint8_t *>(FixupAddress.getValue())) & 0x3f;
  390. Value -= E.getTarget().getAddress().getValue() - E.getAddend();
  391. *FixupPtr = (*FixupPtr & 0xc0) | (static_cast<uint8_t>(Value) & 0x3f);
  392. break;
  393. }
  394. case R_RISCV_SET6: {
  395. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  396. uint32_t RawData = *(little32_t *)FixupPtr;
  397. int64_t Word6 = Value & 0x3f;
  398. *(little32_t *)FixupPtr = (RawData & 0xffffffc0) | Word6;
  399. break;
  400. }
  401. case R_RISCV_SET8: {
  402. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  403. uint32_t RawData = *(little32_t *)FixupPtr;
  404. int64_t Word8 = Value & 0xff;
  405. *(little32_t *)FixupPtr = (RawData & 0xffffff00) | Word8;
  406. break;
  407. }
  408. case R_RISCV_SET16: {
  409. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  410. uint32_t RawData = *(little32_t *)FixupPtr;
  411. int64_t Word16 = Value & 0xffff;
  412. *(little32_t *)FixupPtr = (RawData & 0xffff0000) | Word16;
  413. break;
  414. }
  415. case R_RISCV_SET32: {
  416. int64_t Value = (E.getTarget().getAddress() + E.getAddend()).getValue();
  417. int64_t Word32 = Value & 0xffffffff;
  418. *(little32_t *)FixupPtr = Word32;
  419. break;
  420. }
  421. case R_RISCV_32_PCREL: {
  422. int64_t Value = E.getTarget().getAddress() + E.getAddend() - FixupAddress;
  423. int64_t Word32 = Value & 0xffffffff;
  424. *(little32_t *)FixupPtr = Word32;
  425. break;
  426. }
  427. }
  428. return Error::success();
  429. }
  430. };
  431. template <typename ELFT>
  432. class ELFLinkGraphBuilder_riscv : public ELFLinkGraphBuilder<ELFT> {
  433. private:
  434. static Expected<riscv::EdgeKind_riscv>
  435. getRelocationKind(const uint32_t Type) {
  436. using namespace riscv;
  437. switch (Type) {
  438. case ELF::R_RISCV_32:
  439. return EdgeKind_riscv::R_RISCV_32;
  440. case ELF::R_RISCV_64:
  441. return EdgeKind_riscv::R_RISCV_64;
  442. case ELF::R_RISCV_BRANCH:
  443. return EdgeKind_riscv::R_RISCV_BRANCH;
  444. case ELF::R_RISCV_JAL:
  445. return EdgeKind_riscv::R_RISCV_JAL;
  446. case ELF::R_RISCV_CALL:
  447. return EdgeKind_riscv::R_RISCV_CALL;
  448. case ELF::R_RISCV_CALL_PLT:
  449. return EdgeKind_riscv::R_RISCV_CALL_PLT;
  450. case ELF::R_RISCV_GOT_HI20:
  451. return EdgeKind_riscv::R_RISCV_GOT_HI20;
  452. case ELF::R_RISCV_PCREL_HI20:
  453. return EdgeKind_riscv::R_RISCV_PCREL_HI20;
  454. case ELF::R_RISCV_PCREL_LO12_I:
  455. return EdgeKind_riscv::R_RISCV_PCREL_LO12_I;
  456. case ELF::R_RISCV_PCREL_LO12_S:
  457. return EdgeKind_riscv::R_RISCV_PCREL_LO12_S;
  458. case ELF::R_RISCV_HI20:
  459. return EdgeKind_riscv::R_RISCV_HI20;
  460. case ELF::R_RISCV_LO12_I:
  461. return EdgeKind_riscv::R_RISCV_LO12_I;
  462. case ELF::R_RISCV_LO12_S:
  463. return EdgeKind_riscv::R_RISCV_LO12_S;
  464. case ELF::R_RISCV_ADD8:
  465. return EdgeKind_riscv::R_RISCV_ADD8;
  466. case ELF::R_RISCV_ADD16:
  467. return EdgeKind_riscv::R_RISCV_ADD16;
  468. case ELF::R_RISCV_ADD32:
  469. return EdgeKind_riscv::R_RISCV_ADD32;
  470. case ELF::R_RISCV_ADD64:
  471. return EdgeKind_riscv::R_RISCV_ADD64;
  472. case ELF::R_RISCV_SUB8:
  473. return EdgeKind_riscv::R_RISCV_SUB8;
  474. case ELF::R_RISCV_SUB16:
  475. return EdgeKind_riscv::R_RISCV_SUB16;
  476. case ELF::R_RISCV_SUB32:
  477. return EdgeKind_riscv::R_RISCV_SUB32;
  478. case ELF::R_RISCV_SUB64:
  479. return EdgeKind_riscv::R_RISCV_SUB64;
  480. case ELF::R_RISCV_RVC_BRANCH:
  481. return EdgeKind_riscv::R_RISCV_RVC_BRANCH;
  482. case ELF::R_RISCV_RVC_JUMP:
  483. return EdgeKind_riscv::R_RISCV_RVC_JUMP;
  484. case ELF::R_RISCV_SUB6:
  485. return EdgeKind_riscv::R_RISCV_SUB6;
  486. case ELF::R_RISCV_SET6:
  487. return EdgeKind_riscv::R_RISCV_SET6;
  488. case ELF::R_RISCV_SET8:
  489. return EdgeKind_riscv::R_RISCV_SET8;
  490. case ELF::R_RISCV_SET16:
  491. return EdgeKind_riscv::R_RISCV_SET16;
  492. case ELF::R_RISCV_SET32:
  493. return EdgeKind_riscv::R_RISCV_SET32;
  494. case ELF::R_RISCV_32_PCREL:
  495. return EdgeKind_riscv::R_RISCV_32_PCREL;
  496. }
  497. return make_error<JITLinkError>(
  498. "Unsupported riscv relocation:" + formatv("{0:d}: ", Type) +
  499. object::getELFRelocationTypeName(ELF::EM_RISCV, Type));
  500. }
  501. Error addRelocations() override {
  502. LLVM_DEBUG(dbgs() << "Processing relocations:\n");
  503. using Base = ELFLinkGraphBuilder<ELFT>;
  504. using Self = ELFLinkGraphBuilder_riscv<ELFT>;
  505. for (const auto &RelSect : Base::Sections)
  506. if (Error Err = Base::forEachRelaRelocation(RelSect, this,
  507. &Self::addSingleRelocation))
  508. return Err;
  509. return Error::success();
  510. }
  511. Error addSingleRelocation(const typename ELFT::Rela &Rel,
  512. const typename ELFT::Shdr &FixupSect,
  513. Block &BlockToFix) {
  514. using Base = ELFLinkGraphBuilder<ELFT>;
  515. uint32_t Type = Rel.getType(false);
  516. // We do not implement linker relaxation, except what is required for
  517. // alignment (see below).
  518. if (Type == llvm::ELF::R_RISCV_RELAX)
  519. return Error::success();
  520. int64_t Addend = Rel.r_addend;
  521. if (Type == llvm::ELF::R_RISCV_ALIGN) {
  522. uint64_t Alignment = PowerOf2Ceil(Addend);
  523. // FIXME: Implement support for ensuring alignment together with linker
  524. // relaxation; 2 bytes are guaranteed by the length of compressed
  525. // instructions, so this does not need any action from our side.
  526. if (Alignment > 2)
  527. return make_error<JITLinkError>(
  528. formatv("Unsupported relocation R_RISCV_ALIGN with alignment {0} "
  529. "larger than 2 (addend: {1})",
  530. Alignment, Addend));
  531. return Error::success();
  532. }
  533. Expected<riscv::EdgeKind_riscv> Kind = getRelocationKind(Type);
  534. if (!Kind)
  535. return Kind.takeError();
  536. uint32_t SymbolIndex = Rel.getSymbol(false);
  537. auto ObjSymbol = Base::Obj.getRelocationSymbol(Rel, Base::SymTabSec);
  538. if (!ObjSymbol)
  539. return ObjSymbol.takeError();
  540. Symbol *GraphSymbol = Base::getGraphSymbol(SymbolIndex);
  541. if (!GraphSymbol)
  542. return make_error<StringError>(
  543. formatv("Could not find symbol at given index, did you add it to "
  544. "JITSymbolTable? index: {0}, shndx: {1} Size of table: {2}",
  545. SymbolIndex, (*ObjSymbol)->st_shndx,
  546. Base::GraphSymbols.size()),
  547. inconvertibleErrorCode());
  548. auto FixupAddress = orc::ExecutorAddr(FixupSect.sh_addr) + Rel.r_offset;
  549. Edge::OffsetT Offset = FixupAddress - BlockToFix.getAddress();
  550. Edge GE(*Kind, Offset, *GraphSymbol, Addend);
  551. LLVM_DEBUG({
  552. dbgs() << " ";
  553. printEdge(dbgs(), BlockToFix, GE, riscv::getEdgeKindName(*Kind));
  554. dbgs() << "\n";
  555. });
  556. BlockToFix.addEdge(std::move(GE));
  557. return Error::success();
  558. }
  559. public:
  560. ELFLinkGraphBuilder_riscv(StringRef FileName,
  561. const object::ELFFile<ELFT> &Obj, const Triple T)
  562. : ELFLinkGraphBuilder<ELFT>(Obj, std::move(T), FileName,
  563. riscv::getEdgeKindName) {}
  564. };
  565. Expected<std::unique_ptr<LinkGraph>>
  566. createLinkGraphFromELFObject_riscv(MemoryBufferRef ObjectBuffer) {
  567. LLVM_DEBUG({
  568. dbgs() << "Building jitlink graph for new input "
  569. << ObjectBuffer.getBufferIdentifier() << "...\n";
  570. });
  571. auto ELFObj = object::ObjectFile::createELFObjectFile(ObjectBuffer);
  572. if (!ELFObj)
  573. return ELFObj.takeError();
  574. if ((*ELFObj)->getArch() == Triple::riscv64) {
  575. auto &ELFObjFile = cast<object::ELFObjectFile<object::ELF64LE>>(**ELFObj);
  576. return ELFLinkGraphBuilder_riscv<object::ELF64LE>(
  577. (*ELFObj)->getFileName(), ELFObjFile.getELFFile(),
  578. (*ELFObj)->makeTriple())
  579. .buildGraph();
  580. } else {
  581. assert((*ELFObj)->getArch() == Triple::riscv32 &&
  582. "Invalid triple for RISCV ELF object file");
  583. auto &ELFObjFile = cast<object::ELFObjectFile<object::ELF32LE>>(**ELFObj);
  584. return ELFLinkGraphBuilder_riscv<object::ELF32LE>(
  585. (*ELFObj)->getFileName(), ELFObjFile.getELFFile(),
  586. (*ELFObj)->makeTriple())
  587. .buildGraph();
  588. }
  589. }
  590. void link_ELF_riscv(std::unique_ptr<LinkGraph> G,
  591. std::unique_ptr<JITLinkContext> Ctx) {
  592. PassConfiguration Config;
  593. const Triple &TT = G->getTargetTriple();
  594. if (Ctx->shouldAddDefaultTargetPasses(TT)) {
  595. if (auto MarkLive = Ctx->getMarkLivePass(TT))
  596. Config.PrePrunePasses.push_back(std::move(MarkLive));
  597. else
  598. Config.PrePrunePasses.push_back(markAllSymbolsLive);
  599. Config.PostPrunePasses.push_back(
  600. PerGraphGOTAndPLTStubsBuilder_ELF_riscv::asPass);
  601. }
  602. if (auto Err = Ctx->modifyPassConfig(*G, Config))
  603. return Ctx->notifyFailed(std::move(Err));
  604. ELFJITLinker_riscv::link(std::move(Ctx), std::move(G), std::move(Config));
  605. }
  606. } // namespace jitlink
  607. } // namespace llvm