HLSLRootSignature.cpp 59 KB

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  1. //===--- HLSLRootSignature.cpp -- HLSL root signature parsing -------------===//
  2. ///////////////////////////////////////////////////////////////////////////////
  3. // //
  4. // HLSLRootSignature.cpp //
  5. // Copyright (C) Microsoft Corporation. All rights reserved. //
  6. // This file is distributed under the University of Illinois Open Source //
  7. // License. See LICENSE.TXT for details. //
  8. // //
  9. // This file implements the parser for the root signature mini-language. //
  10. // //
  11. ///////////////////////////////////////////////////////////////////////////////
  12. #include "llvm/ADT/SmallVector.h"
  13. #include "llvm/Support/raw_ostream.h"
  14. #include "clang/Basic/Diagnostic.h"
  15. #include "clang/Parse/ParseHLSL.h"
  16. #include "clang/Parse/ParseDiagnostic.h"
  17. #include "dxc/Support/Global.h"
  18. #include "dxc/Support/WinIncludes.h"
  19. #include "dxc/Support/WinFunctions.h"
  20. #include "HLSLRootSignature.h"
  21. #include <float.h>
  22. using namespace llvm;
  23. using namespace hlsl;
  24. // Error codes. These could be useful for localization at some point.
  25. #define ERR_RS_UNEXPECTED_TOKEN 4612
  26. #define ERR_RS_ROOTFLAGS_MORE_THAN_ONCE 4613
  27. #define ERR_RS_CREATION_FAILED 4614
  28. #define ERR_RS_BAD_SM 4615
  29. #define ERR_RS_UNDEFINED_REGISTER 4616
  30. #define ERR_RS_INCORRECT_REGISTER_TYPE 4617
  31. #define ERR_RS_NOT_ALLOWED_FOR_HS_PATCH_CONST 4618
  32. #define ERR_RS_WRONG_ROOT_DESC_FLAG 4619
  33. #define ERR_RS_WRONG_DESC_RANGE_FLAG 4620
  34. #define ERR_RS_LOCAL_FLAG_ON_GLOBAL 4621
  35. #define ERR_RS_BAD_FLOAT 5000
  36. // Non-throwing new
  37. #define NEW new (std::nothrow)
  38. DEFINE_ENUM_FLAG_OPERATORS(DxilRootSignatureFlags)
  39. DEFINE_ENUM_FLAG_OPERATORS(DxilRootDescriptorFlags)
  40. DEFINE_ENUM_FLAG_OPERATORS(DxilDescriptorRangeFlags)
  41. DEFINE_ENUM_FLAG_OPERATORS(DxilRootSignatureCompilationFlags)
  42. RootSignatureTokenizer::RootSignatureTokenizer(const char *pStr, size_t len)
  43. : m_pStrPos(pStr)
  44. , m_pEndPos(pStr + len)
  45. {
  46. m_TokenBufferIdx = 0;
  47. ReadNextToken(m_TokenBufferIdx);
  48. }
  49. RootSignatureTokenizer::RootSignatureTokenizer(const char *pStr)
  50. : m_pStrPos(pStr)
  51. , m_pEndPos(pStr + strlen(pStr))
  52. {
  53. m_TokenBufferIdx = 0;
  54. ReadNextToken(m_TokenBufferIdx);
  55. }
  56. RootSignatureTokenizer::Token
  57. RootSignatureTokenizer::GetToken()
  58. {
  59. uint32_t CurBufferIdx = m_TokenBufferIdx;
  60. m_TokenBufferIdx = (m_TokenBufferIdx + 1) % kNumBuffers;
  61. ReadNextToken(m_TokenBufferIdx);
  62. return m_Tokens[CurBufferIdx];
  63. }
  64. RootSignatureTokenizer::Token
  65. RootSignatureTokenizer::PeekToken()
  66. {
  67. return m_Tokens[m_TokenBufferIdx];
  68. }
  69. bool RootSignatureTokenizer::IsDone() const
  70. {
  71. return m_pStrPos == m_pEndPos;
  72. }
  73. void RootSignatureTokenizer::ReadNextToken(uint32_t BufferIdx)
  74. {
  75. char *pBuffer = m_TokenStrings[BufferIdx];
  76. Token &T = m_Tokens[BufferIdx];
  77. bool bFloat = false;
  78. bool bKW = false;
  79. char c = 0;
  80. EatSpace();
  81. // Identify token
  82. uint32_t TokLen = 0;
  83. char ch;
  84. // Any time m_pStrPos moves, update ch; no null termination assumptions made.
  85. // Test ch, not m_StrPos[0], which may be at end.
  86. #define STRPOS_MOVED() ch = m_pStrPos == m_pEndPos ? '\0' : m_pStrPos[0];
  87. STRPOS_MOVED();
  88. if(IsSeparator(ch))
  89. {
  90. pBuffer[TokLen++] = *m_pStrPos++;
  91. }
  92. else if(IsDigit(ch) || ch == '+' || ch == '-' || ch == '.')
  93. {
  94. if(ch == '+' || ch == '-')
  95. {
  96. pBuffer[TokLen++] = *m_pStrPos++;
  97. STRPOS_MOVED();
  98. }
  99. bool bSeenDigit = false;
  100. while(IsDigit(ch) && TokLen < kMaxTokenLength)
  101. {
  102. pBuffer[TokLen++] = *m_pStrPos++;
  103. STRPOS_MOVED();
  104. bSeenDigit = true;
  105. }
  106. if(ch == '.')
  107. {
  108. bFloat = true;
  109. pBuffer[TokLen++] = *m_pStrPos++;
  110. STRPOS_MOVED();
  111. if(!bSeenDigit && !IsDigit(ch))
  112. {
  113. goto lUnknownToken;
  114. }
  115. while(IsDigit(ch) && TokLen < kMaxTokenLength)
  116. {
  117. pBuffer[TokLen++] = *m_pStrPos++;
  118. STRPOS_MOVED();
  119. bSeenDigit = true;
  120. }
  121. }
  122. if(!bSeenDigit)
  123. {
  124. goto lUnknownToken;
  125. }
  126. if(ch == 'e' || ch == 'E')
  127. {
  128. bFloat = true;
  129. pBuffer[TokLen++] = *m_pStrPos++;
  130. STRPOS_MOVED()
  131. if(ch == '+' || ch == '-')
  132. {
  133. pBuffer[TokLen++] = *m_pStrPos++;
  134. STRPOS_MOVED();
  135. }
  136. if(!IsDigit(ch))
  137. {
  138. goto lUnknownToken;
  139. }
  140. while(IsDigit(ch) && TokLen < kMaxTokenLength)
  141. {
  142. pBuffer[TokLen++] = *m_pStrPos++;
  143. STRPOS_MOVED();
  144. }
  145. }
  146. if(ch == 'f' || ch == 'F')
  147. {
  148. bFloat = true;
  149. pBuffer[TokLen++] = *m_pStrPos++;
  150. STRPOS_MOVED();
  151. }
  152. }
  153. else if(IsAlpha(ch) || ch == '_')
  154. {
  155. while((IsAlpha(ch) || ch == '_' || IsDigit(ch)) && TokLen < kMaxTokenLength)
  156. {
  157. pBuffer[TokLen++] = *m_pStrPos++;
  158. STRPOS_MOVED();
  159. }
  160. }
  161. else
  162. {
  163. while(m_pStrPos < m_pEndPos && TokLen < kMaxTokenLength)
  164. {
  165. pBuffer[TokLen++] = *m_pStrPos++;
  166. STRPOS_MOVED(); // not really needed, but good for consistency
  167. }
  168. }
  169. pBuffer[TokLen] = '\0';
  170. #undef STRPOS_MOVED
  171. //
  172. // Classify token
  173. //
  174. c = pBuffer[0];
  175. // Delimiters
  176. switch(c)
  177. {
  178. case '\0': T = Token(Token::Type::EOL, pBuffer); return;
  179. case ',': T = Token(Token::Type::Comma, pBuffer); return;
  180. case '(': T = Token(Token::Type::LParen, pBuffer); return;
  181. case ')': T = Token(Token::Type::RParen, pBuffer); return;
  182. case '=': T = Token(Token::Type::EQ, pBuffer); return;
  183. case '|': T = Token(Token::Type::OR, pBuffer); return;
  184. }
  185. // Number
  186. if(IsDigit(c) || c == '+' || c == '-' || c == '.')
  187. {
  188. if(bFloat)
  189. {
  190. float v = 0.f;
  191. if(ToFloat(pBuffer, v))
  192. {
  193. T = Token(Token::Type::NumberFloat, pBuffer, v);
  194. return;
  195. }
  196. }
  197. else
  198. {
  199. if(c == '-')
  200. {
  201. int n = 0;
  202. if(ToI32(pBuffer, n))
  203. {
  204. T = Token(Token::Type::NumberI32, pBuffer, (uint32_t)n);
  205. return;
  206. }
  207. }
  208. else
  209. {
  210. uint32_t n = 0;
  211. if(ToU32(pBuffer, n))
  212. {
  213. T = Token(Token::Type::NumberU32, pBuffer, n);
  214. return;
  215. }
  216. }
  217. }
  218. goto lUnknownToken;
  219. }
  220. // Register
  221. if(IsDigit(pBuffer[1]) && (c == 't' || c == 's' || c == 'u' || c == 'b'))
  222. {
  223. if(ToRegister(pBuffer, T))
  224. return;
  225. }
  226. // Keyword
  227. #define KW(__name) ToKeyword(pBuffer, T, #__name, Token::Type::__name)
  228. // Case-incensitive
  229. switch(toupper(c))
  230. {
  231. case 'A':
  232. bKW = KW(ALLOW_INPUT_ASSEMBLER_INPUT_LAYOUT) ||
  233. KW(ALLOW_STREAM_OUTPUT) ||
  234. KW(addressU) ||
  235. KW(addressV) ||
  236. KW(addressW);
  237. break;
  238. case 'B':
  239. bKW = KW(borderColor);
  240. break;
  241. case 'C':
  242. bKW = KW(CBV) ||
  243. KW(comparisonFunc) ||
  244. KW(COMPARISON_NEVER) ||
  245. KW(COMPARISON_LESS) ||
  246. KW(COMPARISON_EQUAL) ||
  247. KW(COMPARISON_LESS_EQUAL) ||
  248. KW(COMPARISON_GREATER) ||
  249. KW(COMPARISON_NOT_EQUAL) ||
  250. KW(COMPARISON_GREATER_EQUAL) ||
  251. KW(COMPARISON_ALWAYS) ||
  252. KW(CBV_SRV_UAV_HEAP_DIRECTLY_INDEXED);
  253. break;
  254. case 'D':
  255. bKW = KW(DescriptorTable) ||
  256. KW(DESCRIPTOR_RANGE_OFFSET_APPEND) ||
  257. KW(DENY_VERTEX_SHADER_ROOT_ACCESS) ||
  258. KW(DENY_HULL_SHADER_ROOT_ACCESS) ||
  259. KW(DENY_DOMAIN_SHADER_ROOT_ACCESS) ||
  260. KW(DENY_GEOMETRY_SHADER_ROOT_ACCESS) ||
  261. KW(DENY_PIXEL_SHADER_ROOT_ACCESS) ||
  262. KW(DENY_AMPLIFICATION_SHADER_ROOT_ACCESS) ||
  263. KW(DENY_MESH_SHADER_ROOT_ACCESS) ||
  264. KW(DESCRIPTORS_VOLATILE) ||
  265. KW(DATA_VOLATILE) ||
  266. KW(DATA_STATIC) ||
  267. KW(DATA_STATIC_WHILE_SET_AT_EXECUTE) ||
  268. KW(DESCRIPTORS_STATIC_KEEPING_BUFFER_BOUNDS_CHECKS);
  269. break;
  270. case 'F':
  271. bKW = KW(flags) ||
  272. KW(filter) ||
  273. KW(FILTER_MIN_MAG_MIP_POINT) ||
  274. KW(FILTER_MIN_MAG_POINT_MIP_LINEAR) ||
  275. KW(FILTER_MIN_POINT_MAG_LINEAR_MIP_POINT) ||
  276. KW(FILTER_MIN_POINT_MAG_MIP_LINEAR) ||
  277. KW(FILTER_MIN_LINEAR_MAG_MIP_POINT) ||
  278. KW(FILTER_MIN_LINEAR_MAG_POINT_MIP_LINEAR) ||
  279. KW(FILTER_MIN_MAG_LINEAR_MIP_POINT) ||
  280. KW(FILTER_MIN_MAG_MIP_LINEAR) ||
  281. KW(FILTER_ANISOTROPIC) ||
  282. KW(FILTER_COMPARISON_MIN_MAG_MIP_POINT) ||
  283. KW(FILTER_COMPARISON_MIN_MAG_POINT_MIP_LINEAR) ||
  284. KW(FILTER_COMPARISON_MIN_POINT_MAG_LINEAR_MIP_POINT) ||
  285. KW(FILTER_COMPARISON_MIN_POINT_MAG_MIP_LINEAR) ||
  286. KW(FILTER_COMPARISON_MIN_LINEAR_MAG_MIP_POINT) ||
  287. KW(FILTER_COMPARISON_MIN_LINEAR_MAG_POINT_MIP_LINEAR) ||
  288. KW(FILTER_COMPARISON_MIN_MAG_LINEAR_MIP_POINT) ||
  289. KW(FILTER_COMPARISON_MIN_MAG_MIP_LINEAR) ||
  290. KW(FILTER_COMPARISON_ANISOTROPIC) ||
  291. KW(FILTER_MINIMUM_MIN_MAG_MIP_POINT) ||
  292. KW(FILTER_MINIMUM_MIN_MAG_POINT_MIP_LINEAR) ||
  293. KW(FILTER_MINIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT) ||
  294. KW(FILTER_MINIMUM_MIN_POINT_MAG_MIP_LINEAR) ||
  295. KW(FILTER_MINIMUM_MIN_LINEAR_MAG_MIP_POINT) ||
  296. KW(FILTER_MINIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR) ||
  297. KW(FILTER_MINIMUM_MIN_MAG_LINEAR_MIP_POINT) ||
  298. KW(FILTER_MINIMUM_MIN_MAG_MIP_LINEAR) ||
  299. KW(FILTER_MINIMUM_ANISOTROPIC) ||
  300. KW(FILTER_MAXIMUM_MIN_MAG_MIP_POINT) ||
  301. KW(FILTER_MAXIMUM_MIN_MAG_POINT_MIP_LINEAR) ||
  302. KW(FILTER_MAXIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT) ||
  303. KW(FILTER_MAXIMUM_MIN_POINT_MAG_MIP_LINEAR) ||
  304. KW(FILTER_MAXIMUM_MIN_LINEAR_MAG_MIP_POINT) ||
  305. KW(FILTER_MAXIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR) ||
  306. KW(FILTER_MAXIMUM_MIN_MAG_LINEAR_MIP_POINT) ||
  307. KW(FILTER_MAXIMUM_MIN_MAG_MIP_LINEAR) ||
  308. KW(FILTER_MAXIMUM_ANISOTROPIC);
  309. break;
  310. case 'L':
  311. bKW = KW(LOCAL_ROOT_SIGNATURE);
  312. break;
  313. case 'M':
  314. bKW = KW(maxAnisotropy) || KW(mipLODBias) || KW(minLOD) || KW(maxLOD);
  315. break;
  316. case 'N':
  317. bKW = KW(numDescriptors) || KW(num32BitConstants);
  318. break;
  319. case 'O':
  320. bKW = KW(offset);
  321. break;
  322. case 'R':
  323. bKW = KW(RootFlags) || KW(RootConstants);
  324. break;
  325. case 'S':
  326. bKW = KW(space) || KW(Sampler) || KW(StaticSampler) || KW(SRV) ||
  327. KW(CBV_SRV_UAV_HEAP_DIRECTLY_INDEXED) || KW(SAMPLER_HEAP_DIRECTLY_INDEXED) ||
  328. KW(SHADER_VISIBILITY_ALL) || KW(SHADER_VISIBILITY_VERTEX) ||
  329. KW(SHADER_VISIBILITY_HULL) || KW(SHADER_VISIBILITY_DOMAIN) ||
  330. KW(SHADER_VISIBILITY_GEOMETRY) || KW(SHADER_VISIBILITY_PIXEL) ||
  331. KW(SHADER_VISIBILITY_AMPLIFICATION) || KW(SHADER_VISIBILITY_MESH) ||
  332. KW(STATIC_BORDER_COLOR_TRANSPARENT_BLACK) ||
  333. KW(STATIC_BORDER_COLOR_OPAQUE_BLACK) ||
  334. KW(STATIC_BORDER_COLOR_OPAQUE_WHITE) || KW(SAMPLER_HEAP_DIRECTLY_INDEXED);
  335. break;
  336. case 'T':
  337. bKW = KW(TEXTURE_ADDRESS_WRAP) ||
  338. KW(TEXTURE_ADDRESS_MIRROR) ||
  339. KW(TEXTURE_ADDRESS_CLAMP) ||
  340. KW(TEXTURE_ADDRESS_BORDER) ||
  341. KW(TEXTURE_ADDRESS_MIRROR_ONCE);
  342. break;
  343. case 'U':
  344. bKW = KW(unbounded) || KW(UAV);
  345. break;
  346. case 'V':
  347. bKW = KW(visibility);
  348. break;
  349. }
  350. #undef KW
  351. if(!bKW) goto lUnknownToken;
  352. return;
  353. lUnknownToken:
  354. T = Token(Token::Type::Unknown, pBuffer);
  355. }
  356. void RootSignatureTokenizer::EatSpace()
  357. {
  358. while(m_pStrPos < m_pEndPos && *m_pStrPos == ' ')
  359. m_pStrPos++;
  360. }
  361. bool RootSignatureTokenizer::ToI32(LPCSTR pBuf, int & n)
  362. {
  363. if(pBuf[0] == '\0') return false;
  364. long long N = _atoi64(pBuf);
  365. if(N > INT_MAX || N < INT_MIN) return false;
  366. n = static_cast<int>(N);
  367. return true;
  368. }
  369. bool RootSignatureTokenizer::ToU32(LPCSTR pBuf, uint32_t & n)
  370. {
  371. if(pBuf[0] == '\0') return false;
  372. long long N = _atoi64(pBuf);
  373. if(N > UINT32_MAX || N < 0) return false;
  374. n = static_cast<uint32_t>(N);
  375. return true;
  376. }
  377. bool RootSignatureTokenizer::ToFloat(LPCSTR pBuf, float & n)
  378. {
  379. if(pBuf[0] == '\0') return false;
  380. errno = 0;
  381. double N = strtod(pBuf, NULL);
  382. if (errno == ERANGE || (N > FLT_MAX || N < -FLT_MAX)) {
  383. return false;
  384. }
  385. n = static_cast<float>(N);
  386. return true;
  387. }
  388. bool RootSignatureTokenizer::ToRegister(LPCSTR pBuf, Token & T)
  389. {
  390. uint32_t n;
  391. if(ToU32(&pBuf[1], n))
  392. {
  393. switch(pBuf[0])
  394. {
  395. case 't': T = Token(Token::Type::TReg, pBuf, n); return true;
  396. case 's': T = Token(Token::Type::SReg, pBuf, n); return true;
  397. case 'u': T = Token(Token::Type::UReg, pBuf, n); return true;
  398. case 'b': T = Token(Token::Type::BReg, pBuf, n); return true;
  399. }
  400. }
  401. return false;
  402. }
  403. bool RootSignatureTokenizer::ToKeyword(LPCSTR pBuf, Token & T, const char *pKeyword, Token::Type Type)
  404. {
  405. // Tokens are case-insencitive to allow more flexibility for programmers
  406. if(_stricmp(pBuf, pKeyword) == 0)
  407. {
  408. T = Token(Type, pBuf);
  409. return true;
  410. }
  411. else
  412. {
  413. T = Token(Token::Type::Unknown, pBuf);
  414. return false;
  415. }
  416. }
  417. bool RootSignatureTokenizer::IsSeparator(char c) const
  418. {
  419. return (c == ',' || c == '=' || c == '|' || c == '(' || c == ')' || c == ' ' || c == '\t' || c == '\n');
  420. }
  421. bool RootSignatureTokenizer::IsDigit(char c) const
  422. {
  423. return isdigit(c) > 0;
  424. }
  425. bool RootSignatureTokenizer::IsAlpha(char c) const
  426. {
  427. return isalpha(c) > 0;
  428. }
  429. RootSignatureParser::RootSignatureParser(
  430. RootSignatureTokenizer *pTokenizer, DxilRootSignatureVersion DefaultVersion,
  431. DxilRootSignatureCompilationFlags CompilationFlags, llvm::raw_ostream &OS)
  432. : m_pTokenizer(pTokenizer), m_Version(DefaultVersion), m_CompilationFlags(CompilationFlags), m_OS(OS) {}
  433. HRESULT RootSignatureParser::Parse(DxilVersionedRootSignatureDesc **ppRootSignature)
  434. {
  435. HRESULT hr = S_OK;
  436. DxilVersionedRootSignatureDesc *pRS = NULL;
  437. DXASSERT(!((bool)(m_CompilationFlags & DxilRootSignatureCompilationFlags::GlobalRootSignature) &&
  438. (bool)(m_CompilationFlags & DxilRootSignatureCompilationFlags::LocalRootSignature)),
  439. "global and local cannot be both set");
  440. if(ppRootSignature != NULL)
  441. {
  442. IFC(ParseRootSignature(&pRS));
  443. *ppRootSignature = pRS;
  444. }
  445. Cleanup:
  446. return hr;
  447. }
  448. HRESULT RootSignatureParser::GetAndMatchToken(TokenType & Token, TokenType::Type Type)
  449. {
  450. HRESULT hr = S_OK;
  451. Token = m_pTokenizer->GetToken();
  452. if(Token.GetType() != Type)
  453. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  454. Cleanup:
  455. return hr;
  456. }
  457. HRESULT RootSignatureParser::Error(uint32_t uErrorNum, LPCSTR pError, ...)
  458. {
  459. va_list Args;
  460. char msg[512];
  461. va_start(Args, pError);
  462. vsprintf_s(msg, pError, Args);
  463. va_end(Args);
  464. try {
  465. m_OS << msg;
  466. }
  467. CATCH_CPP_RETURN_HRESULT();
  468. return E_FAIL;
  469. }
  470. HRESULT RootSignatureParser::ParseRootSignature(DxilVersionedRootSignatureDesc **ppRootSignature)
  471. {
  472. HRESULT hr = S_OK;
  473. TokenType Token;
  474. bool bSeenFlags = false;
  475. SmallVector<DxilRootParameter1, 8> RSParameters;
  476. DxilRootParameter1 *pRSParams = NULL;
  477. SmallVector<DxilStaticSamplerDesc, 8> StaticSamplers;
  478. DxilStaticSamplerDesc *pStaticSamplers = NULL;
  479. DxilVersionedRootSignatureDesc *pRS = NULL;
  480. *ppRootSignature = NULL;
  481. IFCOOM(pRS = NEW DxilVersionedRootSignatureDesc);
  482. // Always parse root signature string to the latest version.
  483. pRS->Version = DxilRootSignatureVersion::Version_1_1;
  484. memset(&pRS->Desc_1_1, 0, sizeof(pRS->Desc_1_1));
  485. Token = m_pTokenizer->PeekToken();
  486. while(Token.GetType() != TokenType::EOL)
  487. {
  488. switch(Token.GetType())
  489. {
  490. case TokenType::RootFlags:
  491. if(!bSeenFlags)
  492. {
  493. IFC(ParseRootSignatureFlags(pRS->Desc_1_1.Flags));
  494. bSeenFlags = true;
  495. }
  496. else
  497. {
  498. IFC(Error(ERR_RS_ROOTFLAGS_MORE_THAN_ONCE, "RootFlags cannot be specified more than once"));
  499. }
  500. break;
  501. case TokenType::RootConstants:
  502. {
  503. DxilRootParameter1 P;
  504. IFC(ParseRootConstants(P));
  505. RSParameters.push_back(P);
  506. break;
  507. }
  508. case TokenType::CBV:
  509. {
  510. DxilRootParameter1 P;
  511. IFC(ParseRootShaderResource(Token.GetType(), TokenType::BReg, DxilRootParameterType::CBV, P));
  512. RSParameters.push_back(P);
  513. break;
  514. }
  515. case TokenType::SRV:
  516. {
  517. DxilRootParameter1 P;
  518. IFC(ParseRootShaderResource(Token.GetType(), TokenType::TReg, DxilRootParameterType::SRV, P));
  519. RSParameters.push_back(P);
  520. break;
  521. }
  522. case TokenType::UAV:
  523. {
  524. DxilRootParameter1 P;
  525. IFC(ParseRootShaderResource(Token.GetType(), TokenType::UReg, DxilRootParameterType::UAV, P));
  526. RSParameters.push_back(P);
  527. break;
  528. }
  529. case TokenType::DescriptorTable:
  530. {
  531. DxilRootParameter1 P;
  532. IFC(ParseRootDescriptorTable(P));
  533. RSParameters.push_back(P);
  534. break;
  535. }
  536. case TokenType::StaticSampler:
  537. {
  538. DxilStaticSamplerDesc P;
  539. IFC(ParseStaticSampler(P));
  540. StaticSamplers.push_back(P);
  541. break;
  542. }
  543. default:
  544. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s' when parsing root signature", Token.GetStr()));
  545. }
  546. Token = m_pTokenizer->GetToken();
  547. if(Token.GetType() == TokenType::EOL)
  548. break;
  549. // Consume ','
  550. if(Token.GetType() != TokenType::Comma)
  551. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected ',', found: '%s'", Token.GetStr()));
  552. Token = m_pTokenizer->PeekToken();
  553. }
  554. if(RSParameters.size() > 0)
  555. {
  556. IFCOOM(pRSParams = NEW DxilRootParameter1[RSParameters.size()]);
  557. pRS->Desc_1_1.NumParameters = RSParameters.size();
  558. memcpy(pRSParams, RSParameters.data(), pRS->Desc_1_1.NumParameters*sizeof(DxilRootParameter1));
  559. pRS->Desc_1_1.pParameters = pRSParams;
  560. }
  561. if(StaticSamplers.size() > 0)
  562. {
  563. IFCOOM(pStaticSamplers = NEW DxilStaticSamplerDesc[StaticSamplers.size()]);
  564. pRS->Desc_1_1.NumStaticSamplers = StaticSamplers.size();
  565. memcpy(pStaticSamplers, StaticSamplers.data(), pRS->Desc_1_1.NumStaticSamplers*sizeof(DxilStaticSamplerDesc));
  566. pRS->Desc_1_1.pStaticSamplers = pStaticSamplers;
  567. }
  568. // Set local signature flag if not already on
  569. if ((bool)(m_CompilationFlags & DxilRootSignatureCompilationFlags::LocalRootSignature))
  570. pRS->Desc_1_1.Flags |= DxilRootSignatureFlags::LocalRootSignature;
  571. // Down-convert root signature to the right version, if needed.
  572. if(pRS->Version != m_Version)
  573. {
  574. DxilVersionedRootSignatureDesc *pRS1 = NULL;
  575. try {
  576. hlsl::ConvertRootSignature(pRS, m_Version, const_cast<const DxilVersionedRootSignatureDesc **>(&pRS1));
  577. }
  578. CATCH_CPP_ASSIGN_HRESULT();
  579. IFC(hr);
  580. hlsl::DeleteRootSignature(pRS);
  581. pRS = pRS1;
  582. }
  583. *ppRootSignature = pRS;
  584. Cleanup:
  585. if(FAILED(hr))
  586. {
  587. hlsl::DeleteRootSignature(pRS);
  588. }
  589. return hr;
  590. }
  591. HRESULT RootSignatureParser::ParseRootSignatureFlags(DxilRootSignatureFlags & Flags)
  592. {
  593. //RootFlags(ALLOW_INPUT_ASSEMBLER_INPUT_LAYOUT | DENY_VERTEX_SHADER_ROOT_ACCESS)
  594. // ALLOW_INPUT_ASSEMBLER_INPUT_LAYOUT
  595. // DENY_VERTEX_SHADER_ROOT_ACCESS
  596. // DENY_HULL_SHADER_ROOT_ACCESS
  597. // DENY_DOMAIN_SHADER_ROOT_ACCESS
  598. // DENY_GEOMETRY_SHADER_ROOT_ACCESS
  599. // DENY_PIXEL_SHADER_ROOT_ACCESS
  600. // DENY_AMPLIFICATION_SHADER_ROOT_ACCESS
  601. // DENY_MESH_SHADER_ROOT_ACCESS
  602. // ALLOW_STREAM_OUTPUT
  603. // LOCAL_ROOT_SIGNATURE
  604. HRESULT hr = S_OK;
  605. TokenType Token;
  606. IFC(GetAndMatchToken(Token, TokenType::RootFlags));
  607. IFC(GetAndMatchToken(Token, TokenType::LParen));
  608. Flags = DxilRootSignatureFlags::None;
  609. Token = m_pTokenizer->PeekToken();
  610. if(Token.GetType() == TokenType::NumberU32)
  611. {
  612. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  613. uint32_t n = Token.GetU32Value();
  614. if(n != 0)
  615. {
  616. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Root signature flag values can only be 0 or flag enum values, found: '%s'", Token.GetStr()));
  617. }
  618. }
  619. else
  620. {
  621. for(;;)
  622. {
  623. Token = m_pTokenizer->GetToken();
  624. switch(Token.GetType())
  625. {
  626. case TokenType::ALLOW_INPUT_ASSEMBLER_INPUT_LAYOUT:
  627. Flags |= DxilRootSignatureFlags::AllowInputAssemblerInputLayout;
  628. break;
  629. case TokenType::DENY_VERTEX_SHADER_ROOT_ACCESS:
  630. Flags |= DxilRootSignatureFlags::DenyVertexShaderRootAccess;
  631. break;
  632. case TokenType::DENY_HULL_SHADER_ROOT_ACCESS:
  633. Flags |= DxilRootSignatureFlags::DenyHullShaderRootAccess;
  634. break;
  635. case TokenType::DENY_DOMAIN_SHADER_ROOT_ACCESS:
  636. Flags |= DxilRootSignatureFlags::DenyDomainShaderRootAccess;
  637. break;
  638. case TokenType::DENY_GEOMETRY_SHADER_ROOT_ACCESS:
  639. Flags |= DxilRootSignatureFlags::DenyGeometryShaderRootAccess;
  640. break;
  641. case TokenType::DENY_PIXEL_SHADER_ROOT_ACCESS:
  642. Flags |= DxilRootSignatureFlags::DenyPixelShaderRootAccess;
  643. break;
  644. case TokenType::DENY_AMPLIFICATION_SHADER_ROOT_ACCESS:
  645. Flags |= DxilRootSignatureFlags::DenyAmplificationShaderRootAccess;
  646. break;
  647. case TokenType::DENY_MESH_SHADER_ROOT_ACCESS:
  648. Flags |= DxilRootSignatureFlags::DenyMeshShaderRootAccess;
  649. break;
  650. case TokenType::ALLOW_STREAM_OUTPUT:
  651. Flags |= DxilRootSignatureFlags::AllowStreamOutput;
  652. break;
  653. case TokenType::LOCAL_ROOT_SIGNATURE:
  654. if ((bool)(m_CompilationFlags & DxilRootSignatureCompilationFlags::GlobalRootSignature))
  655. IFC(Error(ERR_RS_LOCAL_FLAG_ON_GLOBAL, "LOCAL_ROOT_SIGNATURE flag used in global root signature"));
  656. Flags |= DxilRootSignatureFlags::LocalRootSignature;
  657. break;
  658. case TokenType::CBV_SRV_UAV_HEAP_DIRECTLY_INDEXED:
  659. Flags |= DxilRootSignatureFlags::CBVSRVUAVHeapDirectlyIndexed;
  660. break;
  661. case TokenType::SAMPLER_HEAP_DIRECTLY_INDEXED:
  662. Flags |= DxilRootSignatureFlags::SamplerHeapDirectlyIndexed;
  663. break;
  664. default:
  665. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected a root signature flag value, found: '%s'", Token.GetStr()));
  666. }
  667. Token = m_pTokenizer->PeekToken();
  668. if(Token.GetType() == TokenType::RParen)
  669. break;
  670. IFC(GetAndMatchToken(Token, TokenType::OR));
  671. }
  672. }
  673. IFC(GetAndMatchToken(Token, TokenType::RParen));
  674. Cleanup:
  675. return hr;
  676. }
  677. HRESULT RootSignatureParser::ParseRootConstants(DxilRootParameter1 &P)
  678. {
  679. //"RootConstants(num32BitConstants=3, b2 [, space=1, visibility=SHADER_VISIBILITY_ALL ] ), "
  680. HRESULT hr = S_OK;
  681. TokenType Token;
  682. memset(&P, 0, sizeof(P));
  683. DXASSERT(P.ShaderVisibility == DxilShaderVisibility::All, "else default isn't zero");
  684. P.ParameterType = DxilRootParameterType::Constants32Bit;
  685. bool bSeenNum32BitConstants = false;
  686. bool bSeenBReg = false;
  687. bool bSeenSpace = false;
  688. bool bSeenVisibility = false;
  689. IFC(GetAndMatchToken(Token, TokenType::RootConstants));
  690. IFC(GetAndMatchToken(Token, TokenType::LParen));
  691. for(;;)
  692. {
  693. Token = m_pTokenizer->PeekToken();
  694. switch(Token.GetType())
  695. {
  696. case TokenType::num32BitConstants:
  697. IFC(MarkParameter(bSeenNum32BitConstants, "num32BitConstants"));
  698. IFC(ParseNum32BitConstants(P.Constants.Num32BitValues));
  699. break;
  700. case TokenType::BReg:
  701. IFC(MarkParameter(bSeenBReg, "cbuffer register b#"));
  702. IFC(ParseRegister(TokenType::BReg, P.Constants.ShaderRegister));
  703. break;
  704. case TokenType::space:
  705. IFC(MarkParameter(bSeenSpace, "space"));
  706. IFC(ParseSpace(P.Constants.RegisterSpace));
  707. break;
  708. case TokenType::visibility:
  709. IFC(MarkParameter(bSeenVisibility, "visibility"));
  710. IFC(ParseVisibility(P.ShaderVisibility));
  711. break;
  712. default:
  713. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  714. break;
  715. }
  716. Token = m_pTokenizer->GetToken();
  717. if(Token.GetType() == TokenType::RParen)
  718. break;
  719. else if(Token.GetType() != TokenType::Comma)
  720. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  721. }
  722. if(!bSeenNum32BitConstants)
  723. {
  724. IFC(Error(ERR_RS_UNDEFINED_REGISTER, "num32BitConstants must be defined for each RootConstants"));
  725. }
  726. if(!bSeenBReg)
  727. {
  728. IFC(Error(ERR_RS_UNDEFINED_REGISTER, "Constant buffer register b# must be defined for each RootConstants"));
  729. }
  730. Cleanup:
  731. return hr;
  732. }
  733. HRESULT RootSignatureParser::ParseRootShaderResource(TokenType::Type TokType,
  734. TokenType::Type RegType,
  735. DxilRootParameterType ResType,
  736. DxilRootParameter1 &P)
  737. {
  738. // CBV(b0 [, space=3, flags=0, visibility=VISIBILITY_ALL] )
  739. HRESULT hr = S_OK;
  740. TokenType Token;
  741. P.ParameterType = ResType;
  742. P.ShaderVisibility = DxilShaderVisibility::All;
  743. P.Descriptor.ShaderRegister = 0;
  744. P.Descriptor.RegisterSpace = 0;
  745. P.Descriptor.Flags = DxilRootDescriptorFlags::None;
  746. bool bSeenReg = false;
  747. bool bSeenFlags = false;
  748. bool bSeenSpace = false;
  749. bool bSeenVisibility = false;
  750. IFC(GetAndMatchToken(Token, TokType));
  751. IFC(GetAndMatchToken(Token, TokenType::LParen));
  752. for(;;)
  753. {
  754. Token = m_pTokenizer->PeekToken();
  755. switch(Token.GetType())
  756. {
  757. case TokenType::BReg:
  758. case TokenType::TReg:
  759. case TokenType::UReg:
  760. IFC(MarkParameter(bSeenReg, "shader register"));
  761. IFC(ParseRegister(RegType, P.Descriptor.ShaderRegister));
  762. break;
  763. case TokenType::flags:
  764. IFC(MarkParameter(bSeenFlags, "flags"));
  765. IFC(ParseRootDescFlags(P.Descriptor.Flags));
  766. break;
  767. case TokenType::space:
  768. IFC(MarkParameter(bSeenSpace, "space"));
  769. IFC(ParseSpace(P.Descriptor.RegisterSpace));
  770. break;
  771. case TokenType::visibility:
  772. IFC(MarkParameter(bSeenVisibility, "visibility"));
  773. IFC(ParseVisibility(P.ShaderVisibility));
  774. break;
  775. default:
  776. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  777. break;
  778. }
  779. Token = m_pTokenizer->GetToken();
  780. if(Token.GetType() == TokenType::RParen)
  781. break;
  782. else if(Token.GetType() != TokenType::Comma)
  783. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  784. }
  785. if(!bSeenReg)
  786. {
  787. IFC(Error(ERR_RS_UNDEFINED_REGISTER, "shader register must be defined for each CBV/SRV/UAV"));
  788. }
  789. Cleanup:
  790. return hr;
  791. }
  792. HRESULT RootSignatureParser::ParseRootDescriptorTable(DxilRootParameter1 &P)
  793. {
  794. //DescriptorTable( SRV(t2, numDescriptors = 6), UAV(u0, numDescriptors = 4) [, visibility = SHADER_VISIBILITY_ALL ] )
  795. HRESULT hr = S_OK;
  796. TokenType Token;
  797. memset(&P, 0, sizeof(P));
  798. DXASSERT(P.ShaderVisibility == DxilShaderVisibility::All, "else default isn't zero");
  799. P.ParameterType = DxilRootParameterType::DescriptorTable;
  800. bool bSeenVisibility = false;
  801. DxilDescriptorRange1 * pDescs = NULL;
  802. SmallVector<DxilDescriptorRange1, 4> Ranges;
  803. IFC(GetAndMatchToken(Token, TokenType::DescriptorTable));
  804. IFC(GetAndMatchToken(Token, TokenType::LParen));
  805. for(;;)
  806. {
  807. Token = m_pTokenizer->PeekToken();
  808. switch(Token.GetType())
  809. {
  810. case TokenType::CBV:
  811. {
  812. DxilDescriptorRange1 R;
  813. IFC(ParseDescTableResource(Token.GetType(), TokenType::BReg, DxilDescriptorRangeType::CBV, R));
  814. Ranges.push_back(R);
  815. break;
  816. }
  817. case TokenType::SRV:
  818. {
  819. DxilDescriptorRange1 R;
  820. IFC(ParseDescTableResource(Token.GetType(), TokenType::TReg, DxilDescriptorRangeType::SRV, R));
  821. Ranges.push_back(R);
  822. break;
  823. }
  824. case TokenType::UAV:
  825. {
  826. DxilDescriptorRange1 R;
  827. IFC(ParseDescTableResource(Token.GetType(), TokenType::UReg, DxilDescriptorRangeType::UAV, R));
  828. Ranges.push_back(R);
  829. break;
  830. }
  831. case TokenType::Sampler:
  832. {
  833. DxilDescriptorRange1 R;
  834. IFC(ParseDescTableResource(Token.GetType(), TokenType::SReg, DxilDescriptorRangeType::Sampler, R));
  835. Ranges.push_back(R);
  836. break;
  837. }
  838. case TokenType::visibility:
  839. IFC(MarkParameter(bSeenVisibility, "visibility"));
  840. IFC(ParseVisibility(P.ShaderVisibility));
  841. break;
  842. default:
  843. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  844. break;
  845. }
  846. Token = m_pTokenizer->GetToken();
  847. if(Token.GetType() == TokenType::RParen)
  848. break;
  849. else if(Token.GetType() != TokenType::Comma)
  850. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  851. }
  852. if(Ranges.size() > 0)
  853. {
  854. IFCOOM(pDescs = NEW DxilDescriptorRange1[Ranges.size()]);
  855. for(uint32_t i = 0; i < Ranges.size(); i++)
  856. {
  857. pDescs[i] = Ranges[i];
  858. }
  859. P.DescriptorTable.pDescriptorRanges = pDescs;
  860. P.DescriptorTable.NumDescriptorRanges = Ranges.size();
  861. }
  862. Cleanup:
  863. if(FAILED(hr))
  864. {
  865. delete[] pDescs;
  866. }
  867. return hr;
  868. }
  869. HRESULT RootSignatureParser::ParseDescTableResource(TokenType::Type TokType,
  870. TokenType::Type RegType,
  871. DxilDescriptorRangeType RangeType,
  872. DxilDescriptorRange1 &R)
  873. {
  874. HRESULT hr = S_OK;
  875. TokenType Token;
  876. // CBV(b0 [, numDescriptors = 1, space=0, flags=0, offset = DESCRIPTOR_RANGE_OFFSET_APPEND] )
  877. R.RangeType = RangeType;
  878. R.NumDescriptors = 1;
  879. R.BaseShaderRegister = 0;
  880. R.RegisterSpace = 0;
  881. R.Flags = DxilDescriptorRangeFlags::None;
  882. R.OffsetInDescriptorsFromTableStart = DxilDescriptorRangeOffsetAppend;
  883. bool bSeenReg = false;
  884. bool bSeenNumDescriptors = false;
  885. bool bSeenSpace = false;
  886. bool bSeenFlags = false;
  887. bool bSeenOffset = false;
  888. IFC(GetAndMatchToken(Token, TokType));
  889. IFC(GetAndMatchToken(Token, TokenType::LParen));
  890. for(;;)
  891. {
  892. Token = m_pTokenizer->PeekToken();
  893. switch(Token.GetType())
  894. {
  895. case TokenType::BReg:
  896. case TokenType::TReg:
  897. case TokenType::UReg:
  898. case TokenType::SReg:
  899. IFC(MarkParameter(bSeenReg, "shader register"));
  900. IFC(ParseRegister(RegType, R.BaseShaderRegister));
  901. break;
  902. case TokenType::numDescriptors:
  903. IFC(MarkParameter(bSeenNumDescriptors, "numDescriptors"));
  904. IFC(ParseNumDescriptors(R.NumDescriptors));
  905. break;
  906. case TokenType::space:
  907. IFC(MarkParameter(bSeenSpace, "space"));
  908. IFC(ParseSpace(R.RegisterSpace));
  909. break;
  910. case TokenType::flags:
  911. IFC(MarkParameter(bSeenFlags, "flags"));
  912. IFC(ParseDescRangeFlags(RangeType, R.Flags));
  913. break;
  914. case TokenType::offset:
  915. IFC(MarkParameter(bSeenOffset, "offset"));
  916. IFC(ParseOffset(R.OffsetInDescriptorsFromTableStart));
  917. break;
  918. default:
  919. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  920. break;
  921. }
  922. Token = m_pTokenizer->GetToken();
  923. if(Token.GetType() == TokenType::RParen)
  924. break;
  925. else if(Token.GetType() != TokenType::Comma)
  926. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  927. }
  928. if(!bSeenReg)
  929. {
  930. IFC(Error(ERR_RS_UNDEFINED_REGISTER, "shader register must be defined for each CBV/SRV/UAV"));
  931. }
  932. Cleanup:
  933. return hr;
  934. }
  935. HRESULT RootSignatureParser::ParseRegister(TokenType::Type RegType, uint32_t & Reg)
  936. {
  937. HRESULT hr = S_OK;
  938. TokenType Token = m_pTokenizer->PeekToken();
  939. switch(Token.GetType())
  940. {
  941. case TokenType::BReg:
  942. IFC(GetAndMatchToken(Token, TokenType::BReg));
  943. break;
  944. case TokenType::TReg:
  945. IFC(GetAndMatchToken(Token, TokenType::TReg));
  946. break;
  947. case TokenType::UReg:
  948. IFC(GetAndMatchToken(Token, TokenType::UReg));
  949. break;
  950. case TokenType::SReg:
  951. IFC(GetAndMatchToken(Token, TokenType::SReg));
  952. break;
  953. default:
  954. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected a register token (CBV, SRV, UAV, Sampler), found: '%s'", Token.GetStr()));
  955. }
  956. if(Token.GetType() != RegType)
  957. {
  958. switch(RegType)
  959. {
  960. case TokenType::BReg:
  961. IFC(Error(ERR_RS_INCORRECT_REGISTER_TYPE, "Incorrect register type '%s' in CBV (expected b#)", Token.GetStr()));
  962. break;
  963. case TokenType::TReg:
  964. IFC(Error(ERR_RS_INCORRECT_REGISTER_TYPE, "Incorrect register type '%s' in SRV (expected t#)", Token.GetStr()));
  965. break;
  966. case TokenType::UReg:
  967. IFC(Error(ERR_RS_INCORRECT_REGISTER_TYPE, "Incorrect register type '%s' in UAV (expected u#)", Token.GetStr()));
  968. break;
  969. case TokenType::SReg:
  970. IFC(Error(ERR_RS_INCORRECT_REGISTER_TYPE, "Incorrect register type '%s' in Sampler/StaticSampler (expected s#)", Token.GetStr()));
  971. break;
  972. default:
  973. // Only Register types are relevant.
  974. break;
  975. }
  976. }
  977. Reg = Token.GetU32Value();
  978. Cleanup:
  979. return hr;
  980. }
  981. HRESULT RootSignatureParser::ParseSpace(uint32_t & Space)
  982. {
  983. HRESULT hr = S_OK;
  984. TokenType Token;
  985. IFC(GetAndMatchToken(Token, TokenType::space));
  986. IFC(GetAndMatchToken(Token, TokenType::EQ));
  987. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  988. Space = Token.GetU32Value();
  989. Cleanup:
  990. return hr;
  991. }
  992. HRESULT RootSignatureParser::ParseNumDescriptors(uint32_t & NumDescriptors)
  993. {
  994. HRESULT hr = S_OK;
  995. TokenType Token;
  996. IFC(GetAndMatchToken(Token, TokenType::numDescriptors));
  997. IFC(GetAndMatchToken(Token, TokenType::EQ));
  998. Token = m_pTokenizer->PeekToken();
  999. if(Token.GetType() == TokenType::unbounded)
  1000. {
  1001. IFC(GetAndMatchToken(Token, TokenType::unbounded));
  1002. NumDescriptors = UINT32_MAX;
  1003. }
  1004. else
  1005. {
  1006. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1007. NumDescriptors = Token.GetU32Value();
  1008. }
  1009. Cleanup:
  1010. return hr;
  1011. }
  1012. HRESULT RootSignatureParser::ParseRootDescFlags(DxilRootDescriptorFlags &Flags)
  1013. {
  1014. // flags=DATA_VOLATILE | DATA_STATIC | DATA_STATIC_WHILE_SET_AT_EXECUTE
  1015. HRESULT hr = S_OK;
  1016. TokenType Token;
  1017. if (m_Version == DxilRootSignatureVersion::Version_1_0)
  1018. {
  1019. IFC(Error(ERR_RS_WRONG_ROOT_DESC_FLAG, "Root descriptor flags cannot be specified for root_sig_1_0"));
  1020. }
  1021. IFC(GetAndMatchToken(Token, TokenType::flags));
  1022. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1023. Flags = DxilRootDescriptorFlags::None;
  1024. Token = m_pTokenizer->PeekToken();
  1025. if(Token.GetType() == TokenType::NumberU32)
  1026. {
  1027. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1028. uint32_t n = Token.GetU32Value();
  1029. if(n != 0)
  1030. {
  1031. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Root descriptor flag values can only be 0 or flag enum values, found: '%s'", Token.GetStr()));
  1032. }
  1033. }
  1034. else
  1035. {
  1036. for(;;)
  1037. {
  1038. Token = m_pTokenizer->GetToken();
  1039. switch(Token.GetType())
  1040. {
  1041. case TokenType::DATA_VOLATILE:
  1042. Flags |= DxilRootDescriptorFlags::DataVolatile;
  1043. break;
  1044. case TokenType::DATA_STATIC:
  1045. Flags |= DxilRootDescriptorFlags::DataStatic;
  1046. break;
  1047. case TokenType::DATA_STATIC_WHILE_SET_AT_EXECUTE:
  1048. Flags |= DxilRootDescriptorFlags::DataStaticWhileSetAtExecute;
  1049. break;
  1050. default:
  1051. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected a root descriptor flag value, found: '%s'", Token.GetStr()));
  1052. }
  1053. Token = m_pTokenizer->PeekToken();
  1054. if(Token.GetType() == TokenType::RParen || Token.GetType() == TokenType::Comma)
  1055. break;
  1056. IFC(GetAndMatchToken(Token, TokenType::OR));
  1057. }
  1058. }
  1059. Cleanup:
  1060. return hr;
  1061. }
  1062. HRESULT RootSignatureParser::ParseDescRangeFlags(DxilDescriptorRangeType,
  1063. DxilDescriptorRangeFlags & Flags)
  1064. {
  1065. // flags=DESCRIPTORS_VOLATILE | DATA_VOLATILE | DATA_STATIC | DATA_STATIC_WHILE_SET_AT_EXECUTE | DESCRIPTORS_STATIC_KEEPING_BUFFER_BOUNDS_CHECKS
  1066. HRESULT hr = S_OK;
  1067. TokenType Token;
  1068. if (m_Version == DxilRootSignatureVersion::Version_1_0)
  1069. {
  1070. IFC(Error(ERR_RS_WRONG_DESC_RANGE_FLAG, "Descriptor range flags cannot be specified for root_sig_1_0"));
  1071. }
  1072. IFC(GetAndMatchToken(Token, TokenType::flags));
  1073. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1074. Flags = DxilDescriptorRangeFlags::None;
  1075. Token = m_pTokenizer->PeekToken();
  1076. if(Token.GetType() == TokenType::NumberU32)
  1077. {
  1078. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1079. uint32_t n = Token.GetU32Value();
  1080. if(n != 0)
  1081. {
  1082. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Descriptor range flag values can only be 0 or flag enum values, found: '%s'", Token.GetStr()));
  1083. }
  1084. }
  1085. else
  1086. {
  1087. for(;;)
  1088. {
  1089. Token = m_pTokenizer->GetToken();
  1090. switch(Token.GetType())
  1091. {
  1092. case TokenType::DESCRIPTORS_VOLATILE:
  1093. Flags |= DxilDescriptorRangeFlags::DescriptorsVolatile;
  1094. break;
  1095. case TokenType::DATA_VOLATILE:
  1096. Flags |= DxilDescriptorRangeFlags::DataVolatile;
  1097. break;
  1098. case TokenType::DATA_STATIC:
  1099. Flags |= DxilDescriptorRangeFlags::DataStatic;
  1100. break;
  1101. case TokenType::DATA_STATIC_WHILE_SET_AT_EXECUTE:
  1102. Flags |= DxilDescriptorRangeFlags::DataStaticWhileSetAtExecute;
  1103. break;
  1104. case TokenType::DESCRIPTORS_STATIC_KEEPING_BUFFER_BOUNDS_CHECKS:
  1105. Flags |= DxilDescriptorRangeFlags::DescriptorsStaticKeepingBufferBoundsChecks;
  1106. break;
  1107. default:
  1108. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected a descriptor range flag value, found: '%s'", Token.GetStr()));
  1109. }
  1110. Token = m_pTokenizer->PeekToken();
  1111. if(Token.GetType() == TokenType::RParen || Token.GetType() == TokenType::Comma)
  1112. break;
  1113. IFC(GetAndMatchToken(Token, TokenType::OR));
  1114. }
  1115. }
  1116. Cleanup:
  1117. return hr;
  1118. }
  1119. HRESULT RootSignatureParser::ParseOffset(uint32_t & Offset)
  1120. {
  1121. HRESULT hr = S_OK;
  1122. TokenType Token;
  1123. IFC(GetAndMatchToken(Token, TokenType::offset));
  1124. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1125. Token = m_pTokenizer->PeekToken();
  1126. if(Token.GetType() == TokenType::DESCRIPTOR_RANGE_OFFSET_APPEND)
  1127. {
  1128. IFC(GetAndMatchToken(Token, TokenType::DESCRIPTOR_RANGE_OFFSET_APPEND));
  1129. Offset = DxilDescriptorRangeOffsetAppend;
  1130. }
  1131. else
  1132. {
  1133. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1134. Offset = Token.GetU32Value();
  1135. }
  1136. Cleanup:
  1137. return hr;
  1138. }
  1139. HRESULT RootSignatureParser::ParseVisibility(DxilShaderVisibility & Vis)
  1140. {
  1141. HRESULT hr = S_OK;
  1142. TokenType Token;
  1143. IFC(GetAndMatchToken(Token, TokenType::visibility));
  1144. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1145. Token = m_pTokenizer->GetToken();
  1146. switch(Token.GetType())
  1147. {
  1148. case TokenType::SHADER_VISIBILITY_ALL: Vis = DxilShaderVisibility::All; break;
  1149. case TokenType::SHADER_VISIBILITY_VERTEX: Vis = DxilShaderVisibility::Vertex; break;
  1150. case TokenType::SHADER_VISIBILITY_HULL: Vis = DxilShaderVisibility::Hull; break;
  1151. case TokenType::SHADER_VISIBILITY_DOMAIN: Vis = DxilShaderVisibility::Domain; break;
  1152. case TokenType::SHADER_VISIBILITY_GEOMETRY: Vis = DxilShaderVisibility::Geometry; break;
  1153. case TokenType::SHADER_VISIBILITY_PIXEL: Vis = DxilShaderVisibility::Pixel; break;
  1154. case TokenType::SHADER_VISIBILITY_AMPLIFICATION: Vis = DxilShaderVisibility::Amplification; break;
  1155. case TokenType::SHADER_VISIBILITY_MESH: Vis = DxilShaderVisibility::Mesh; break;
  1156. default:
  1157. IFC(Error(ERR_RS_UNEXPECTED_TOKEN,
  1158. "Unexpected visibility value: '%s'.", Token.GetStr()));
  1159. }
  1160. Cleanup:
  1161. return hr;
  1162. }
  1163. HRESULT RootSignatureParser::ParseNum32BitConstants(uint32_t & NumConst)
  1164. {
  1165. HRESULT hr = S_OK;
  1166. TokenType Token;
  1167. IFC(GetAndMatchToken(Token, TokenType::num32BitConstants));
  1168. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1169. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1170. NumConst = Token.GetU32Value();
  1171. Cleanup:
  1172. return hr;
  1173. }
  1174. HRESULT RootSignatureParser::ParseStaticSampler(DxilStaticSamplerDesc &P)
  1175. {
  1176. // StaticSampler( s0,
  1177. // [ Filter = FILTER_ANISOTROPIC,
  1178. // AddressU = TEXTURE_ADDRESS_WRAP,
  1179. // AddressV = TEXTURE_ADDRESS_WRAP,
  1180. // AddressW = TEXTURE_ADDRESS_WRAP,
  1181. // MipLODBias = 0,
  1182. // MaxAnisotropy = 16,
  1183. // ComparisonFunc = COMPARISON_LESS_EQUAL,
  1184. // BorderColor = STATIC_BORDER_COLOR_OPAQUE_WHITE,
  1185. // MinLOD = 0.f,
  1186. // MaxLOD = 3.402823466e+38f
  1187. // space = 0,
  1188. // visibility = SHADER_VISIBILITY_ALL ] )
  1189. HRESULT hr = S_OK;
  1190. TokenType Token;
  1191. memset(&P, 0, sizeof(P));
  1192. P.Filter = DxilFilter::ANISOTROPIC;
  1193. P.AddressU = P.AddressV = P.AddressW = DxilTextureAddressMode::Wrap;
  1194. P.MaxAnisotropy = 16;
  1195. P.ComparisonFunc = DxilComparisonFunc::LessEqual;
  1196. P.BorderColor = DxilStaticBorderColor::OpaqueWhite;
  1197. P.MaxLOD = DxilFloat32Max;
  1198. bool bSeenFilter = false;
  1199. bool bSeenAddressU = false;
  1200. bool bSeenAddressV = false;
  1201. bool bSeenAddressW = false;
  1202. bool bSeenMipLODBias = false;
  1203. bool bSeenMaxAnisotropy = false;
  1204. bool bSeenComparisonFunc = false;
  1205. bool bSeenBorderColor = false;
  1206. bool bSeenMinLOD = false;
  1207. bool bSeenMaxLOD = false;
  1208. bool bSeenSReg = false;
  1209. bool bSeenSpace = false;
  1210. bool bSeenVisibility = false;
  1211. IFC(GetAndMatchToken(Token, TokenType::StaticSampler));
  1212. IFC(GetAndMatchToken(Token, TokenType::LParen));
  1213. for(;;)
  1214. {
  1215. Token = m_pTokenizer->PeekToken();
  1216. switch(Token.GetType())
  1217. {
  1218. case TokenType::filter:
  1219. IFC(MarkParameter(bSeenFilter, "filter"));
  1220. IFC(ParseFilter(P.Filter));
  1221. break;
  1222. case TokenType::addressU:
  1223. IFC(MarkParameter(bSeenAddressU, "addressU"));
  1224. IFC(ParseTextureAddressMode(P.AddressU));
  1225. break;
  1226. case TokenType::addressV:
  1227. IFC(MarkParameter(bSeenAddressV, "addressV"));
  1228. IFC(ParseTextureAddressMode(P.AddressV));
  1229. break;
  1230. case TokenType::addressW:
  1231. IFC(MarkParameter(bSeenAddressW, "addressW"));
  1232. IFC(ParseTextureAddressMode(P.AddressW));
  1233. break;
  1234. case TokenType::mipLODBias:
  1235. IFC(MarkParameter(bSeenMipLODBias, "mipLODBias"));
  1236. IFC(ParseMipLODBias(P.MipLODBias));
  1237. break;
  1238. case TokenType::maxAnisotropy:
  1239. IFC(MarkParameter(bSeenMaxAnisotropy, "maxAnisotropy"));
  1240. IFC(ParseMaxAnisotropy(P.MaxAnisotropy));
  1241. break;
  1242. case TokenType::comparisonFunc:
  1243. IFC(MarkParameter(bSeenComparisonFunc, "comparisonFunc"));
  1244. IFC(ParseComparisonFunction(P.ComparisonFunc));
  1245. break;
  1246. case TokenType::borderColor:
  1247. IFC(MarkParameter(bSeenBorderColor, "borderColor"));
  1248. IFC(ParseBorderColor(P.BorderColor));
  1249. break;
  1250. case TokenType::minLOD:
  1251. IFC(MarkParameter(bSeenMinLOD, "minLOD"));
  1252. IFC(ParseMinLOD(P.MinLOD));
  1253. break;
  1254. case TokenType::maxLOD:
  1255. IFC(MarkParameter(bSeenMaxLOD, "maxLOD"));
  1256. IFC(ParseMaxLOD(P.MaxLOD));
  1257. break;
  1258. case TokenType::SReg:
  1259. IFC(MarkParameter(bSeenSReg, "sampler register s#"));
  1260. IFC(ParseRegister(TokenType::SReg, P.ShaderRegister));
  1261. break;
  1262. case TokenType::space:
  1263. IFC(MarkParameter(bSeenSpace, "space"));
  1264. IFC(ParseSpace(P.RegisterSpace));
  1265. break;
  1266. case TokenType::visibility:
  1267. IFC(MarkParameter(bSeenVisibility, "visibility"));
  1268. IFC(ParseVisibility(P.ShaderVisibility));
  1269. break;
  1270. default:
  1271. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  1272. break;
  1273. }
  1274. Token = m_pTokenizer->GetToken();
  1275. if(Token.GetType() == TokenType::RParen)
  1276. break;
  1277. else if(Token.GetType() != TokenType::Comma)
  1278. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Unexpected token '%s'", Token.GetStr()));
  1279. }
  1280. if(!bSeenSReg)
  1281. {
  1282. IFC(Error(ERR_RS_UNDEFINED_REGISTER, "Sampler register s# must be defined for each static sampler"));
  1283. }
  1284. Cleanup:
  1285. return hr;
  1286. }
  1287. HRESULT RootSignatureParser::ParseFilter(DxilFilter & Filter)
  1288. {
  1289. HRESULT hr = S_OK;
  1290. TokenType Token;
  1291. IFC(GetAndMatchToken(Token, TokenType::filter));
  1292. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1293. Token = m_pTokenizer->GetToken();
  1294. switch(Token.GetType())
  1295. {
  1296. case TokenType::FILTER_MIN_MAG_MIP_POINT: Filter = DxilFilter::MIN_MAG_MIP_POINT; break;
  1297. case TokenType::FILTER_MIN_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MIN_MAG_POINT_MIP_LINEAR; break;
  1298. case TokenType::FILTER_MIN_POINT_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MIN_POINT_MAG_LINEAR_MIP_POINT; break;
  1299. case TokenType::FILTER_MIN_POINT_MAG_MIP_LINEAR: Filter = DxilFilter::MIN_POINT_MAG_MIP_LINEAR; break;
  1300. case TokenType::FILTER_MIN_LINEAR_MAG_MIP_POINT: Filter = DxilFilter::MIN_LINEAR_MAG_MIP_POINT; break;
  1301. case TokenType::FILTER_MIN_LINEAR_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MIN_LINEAR_MAG_POINT_MIP_LINEAR; break;
  1302. case TokenType::FILTER_MIN_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MIN_MAG_LINEAR_MIP_POINT; break;
  1303. case TokenType::FILTER_MIN_MAG_MIP_LINEAR: Filter = DxilFilter::MIN_MAG_MIP_LINEAR; break;
  1304. case TokenType::FILTER_ANISOTROPIC: Filter = DxilFilter::ANISOTROPIC; break;
  1305. case TokenType::FILTER_COMPARISON_MIN_MAG_MIP_POINT: Filter = DxilFilter::COMPARISON_MIN_MAG_MIP_POINT; break;
  1306. case TokenType::FILTER_COMPARISON_MIN_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::COMPARISON_MIN_MAG_POINT_MIP_LINEAR; break;
  1307. case TokenType::FILTER_COMPARISON_MIN_POINT_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::COMPARISON_MIN_POINT_MAG_LINEAR_MIP_POINT; break;
  1308. case TokenType::FILTER_COMPARISON_MIN_POINT_MAG_MIP_LINEAR: Filter = DxilFilter::COMPARISON_MIN_POINT_MAG_MIP_LINEAR; break;
  1309. case TokenType::FILTER_COMPARISON_MIN_LINEAR_MAG_MIP_POINT: Filter = DxilFilter::COMPARISON_MIN_LINEAR_MAG_MIP_POINT; break;
  1310. case TokenType::FILTER_COMPARISON_MIN_LINEAR_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::COMPARISON_MIN_LINEAR_MAG_POINT_MIP_LINEAR; break;
  1311. case TokenType::FILTER_COMPARISON_MIN_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::COMPARISON_MIN_MAG_LINEAR_MIP_POINT; break;
  1312. case TokenType::FILTER_COMPARISON_MIN_MAG_MIP_LINEAR: Filter = DxilFilter::COMPARISON_MIN_MAG_MIP_LINEAR; break;
  1313. case TokenType::FILTER_COMPARISON_ANISOTROPIC: Filter = DxilFilter::COMPARISON_ANISOTROPIC; break;
  1314. case TokenType::FILTER_MINIMUM_MIN_MAG_MIP_POINT: Filter = DxilFilter::MINIMUM_MIN_MAG_MIP_POINT; break;
  1315. case TokenType::FILTER_MINIMUM_MIN_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MINIMUM_MIN_MAG_POINT_MIP_LINEAR; break;
  1316. case TokenType::FILTER_MINIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MINIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT; break;
  1317. case TokenType::FILTER_MINIMUM_MIN_POINT_MAG_MIP_LINEAR: Filter = DxilFilter::MINIMUM_MIN_POINT_MAG_MIP_LINEAR; break;
  1318. case TokenType::FILTER_MINIMUM_MIN_LINEAR_MAG_MIP_POINT: Filter = DxilFilter::MINIMUM_MIN_LINEAR_MAG_MIP_POINT; break;
  1319. case TokenType::FILTER_MINIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MINIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR; break;
  1320. case TokenType::FILTER_MINIMUM_MIN_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MINIMUM_MIN_MAG_LINEAR_MIP_POINT; break;
  1321. case TokenType::FILTER_MINIMUM_MIN_MAG_MIP_LINEAR: Filter = DxilFilter::MINIMUM_MIN_MAG_MIP_LINEAR; break;
  1322. case TokenType::FILTER_MINIMUM_ANISOTROPIC: Filter = DxilFilter::MINIMUM_ANISOTROPIC; break;
  1323. case TokenType::FILTER_MAXIMUM_MIN_MAG_MIP_POINT: Filter = DxilFilter::MAXIMUM_MIN_MAG_MIP_POINT; break;
  1324. case TokenType::FILTER_MAXIMUM_MIN_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MAXIMUM_MIN_MAG_POINT_MIP_LINEAR; break;
  1325. case TokenType::FILTER_MAXIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MAXIMUM_MIN_POINT_MAG_LINEAR_MIP_POINT; break;
  1326. case TokenType::FILTER_MAXIMUM_MIN_POINT_MAG_MIP_LINEAR: Filter = DxilFilter::MAXIMUM_MIN_POINT_MAG_MIP_LINEAR; break;
  1327. case TokenType::FILTER_MAXIMUM_MIN_LINEAR_MAG_MIP_POINT: Filter = DxilFilter::MAXIMUM_MIN_LINEAR_MAG_MIP_POINT; break;
  1328. case TokenType::FILTER_MAXIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR: Filter = DxilFilter::MAXIMUM_MIN_LINEAR_MAG_POINT_MIP_LINEAR; break;
  1329. case TokenType::FILTER_MAXIMUM_MIN_MAG_LINEAR_MIP_POINT: Filter = DxilFilter::MAXIMUM_MIN_MAG_LINEAR_MIP_POINT; break;
  1330. case TokenType::FILTER_MAXIMUM_MIN_MAG_MIP_LINEAR: Filter = DxilFilter::MAXIMUM_MIN_MAG_MIP_LINEAR; break;
  1331. case TokenType::FILTER_MAXIMUM_ANISOTROPIC: Filter = DxilFilter::MAXIMUM_ANISOTROPIC; break;
  1332. default:
  1333. IFC(Error(ERR_RS_UNEXPECTED_TOKEN,
  1334. "Unexpected filter value: '%s'.", Token.GetStr()));
  1335. }
  1336. Cleanup:
  1337. return hr;
  1338. }
  1339. HRESULT RootSignatureParser::ParseTextureAddressMode(DxilTextureAddressMode & AddressMode)
  1340. {
  1341. HRESULT hr = S_OK;
  1342. TokenType Token = m_pTokenizer->GetToken();
  1343. DXASSERT_NOMSG(Token.GetType() == TokenType::addressU ||
  1344. Token.GetType() == TokenType::addressV ||
  1345. Token.GetType() == TokenType::addressW);
  1346. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1347. Token = m_pTokenizer->GetToken();
  1348. switch(Token.GetType())
  1349. {
  1350. case TokenType::TEXTURE_ADDRESS_WRAP: AddressMode = DxilTextureAddressMode::Wrap; break;
  1351. case TokenType::TEXTURE_ADDRESS_MIRROR: AddressMode = DxilTextureAddressMode::Mirror; break;
  1352. case TokenType::TEXTURE_ADDRESS_CLAMP: AddressMode = DxilTextureAddressMode::Clamp; break;
  1353. case TokenType::TEXTURE_ADDRESS_BORDER: AddressMode = DxilTextureAddressMode::Border; break;
  1354. case TokenType::TEXTURE_ADDRESS_MIRROR_ONCE: AddressMode = DxilTextureAddressMode::MirrorOnce; break;
  1355. default:
  1356. IFC(Error(ERR_RS_UNEXPECTED_TOKEN,
  1357. "Unexpected texture address mode value: '%s'.", Token.GetStr()));
  1358. }
  1359. Cleanup:
  1360. return hr;
  1361. }
  1362. HRESULT RootSignatureParser::ParseMipLODBias(float & MipLODBias)
  1363. {
  1364. HRESULT hr = S_OK;
  1365. TokenType Token;
  1366. IFC(GetAndMatchToken(Token, TokenType::mipLODBias));
  1367. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1368. IFC(ParseFloat(MipLODBias));
  1369. Cleanup:
  1370. return hr;
  1371. }
  1372. HRESULT RootSignatureParser::ParseMaxAnisotropy(uint32_t & MaxAnisotropy)
  1373. {
  1374. HRESULT hr = S_OK;
  1375. TokenType Token;
  1376. IFC(GetAndMatchToken(Token, TokenType::maxAnisotropy));
  1377. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1378. IFC(GetAndMatchToken(Token, TokenType::NumberU32));
  1379. MaxAnisotropy = Token.GetU32Value();
  1380. Cleanup:
  1381. return hr;
  1382. }
  1383. HRESULT RootSignatureParser::ParseComparisonFunction(DxilComparisonFunc & ComparisonFunc)
  1384. {
  1385. HRESULT hr = S_OK;
  1386. TokenType Token;
  1387. IFC(GetAndMatchToken(Token, TokenType::comparisonFunc));
  1388. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1389. Token = m_pTokenizer->GetToken();
  1390. switch(Token.GetType())
  1391. {
  1392. case TokenType::COMPARISON_NEVER: ComparisonFunc = DxilComparisonFunc::Never; break;
  1393. case TokenType::COMPARISON_LESS: ComparisonFunc = DxilComparisonFunc::Less; break;
  1394. case TokenType::COMPARISON_EQUAL: ComparisonFunc = DxilComparisonFunc::Equal; break;
  1395. case TokenType::COMPARISON_LESS_EQUAL: ComparisonFunc = DxilComparisonFunc::LessEqual; break;
  1396. case TokenType::COMPARISON_GREATER: ComparisonFunc = DxilComparisonFunc::Greater; break;
  1397. case TokenType::COMPARISON_NOT_EQUAL: ComparisonFunc = DxilComparisonFunc::NotEqual; break;
  1398. case TokenType::COMPARISON_GREATER_EQUAL: ComparisonFunc = DxilComparisonFunc::GreaterEqual; break;
  1399. case TokenType::COMPARISON_ALWAYS: ComparisonFunc = DxilComparisonFunc::Always; break;
  1400. default:
  1401. IFC(Error(ERR_RS_UNEXPECTED_TOKEN,
  1402. "Unexpected texture address mode value: '%s'.", Token.GetStr()));
  1403. }
  1404. Cleanup:
  1405. return hr;
  1406. }
  1407. HRESULT RootSignatureParser::ParseBorderColor(DxilStaticBorderColor & BorderColor)
  1408. {
  1409. HRESULT hr = S_OK;
  1410. TokenType Token;
  1411. IFC(GetAndMatchToken(Token, TokenType::borderColor));
  1412. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1413. Token = m_pTokenizer->GetToken();
  1414. switch(Token.GetType())
  1415. {
  1416. case TokenType::STATIC_BORDER_COLOR_TRANSPARENT_BLACK: BorderColor = DxilStaticBorderColor::TransparentBlack; break;
  1417. case TokenType::STATIC_BORDER_COLOR_OPAQUE_BLACK: BorderColor = DxilStaticBorderColor::OpaqueBlack; break;
  1418. case TokenType::STATIC_BORDER_COLOR_OPAQUE_WHITE: BorderColor = DxilStaticBorderColor::OpaqueWhite; break;
  1419. default:
  1420. IFC(Error(ERR_RS_UNEXPECTED_TOKEN,
  1421. "Unexpected texture address mode value: '%s'.", Token.GetStr()));
  1422. }
  1423. Cleanup:
  1424. return hr;
  1425. }
  1426. HRESULT RootSignatureParser::ParseMinLOD(float & MinLOD)
  1427. {
  1428. HRESULT hr = S_OK;
  1429. TokenType Token;
  1430. IFC(GetAndMatchToken(Token, TokenType::minLOD));
  1431. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1432. IFC(ParseFloat(MinLOD));
  1433. Cleanup:
  1434. return hr;
  1435. }
  1436. HRESULT RootSignatureParser::ParseMaxLOD(float & MaxLOD)
  1437. {
  1438. HRESULT hr = S_OK;
  1439. TokenType Token;
  1440. IFC(GetAndMatchToken(Token, TokenType::maxLOD));
  1441. IFC(GetAndMatchToken(Token, TokenType::EQ));
  1442. IFC(ParseFloat(MaxLOD));
  1443. Cleanup:
  1444. return hr;
  1445. }
  1446. HRESULT RootSignatureParser::ParseFloat(float & v)
  1447. {
  1448. HRESULT hr = S_OK;
  1449. TokenType Token = m_pTokenizer->GetToken();
  1450. if(Token.GetType() == TokenType::NumberU32)
  1451. {
  1452. v = (float)Token.GetU32Value();
  1453. }
  1454. else if(Token.GetType() == TokenType::NumberI32)
  1455. {
  1456. v = (float)Token.GetI32Value();
  1457. }
  1458. else if(Token.GetType() == TokenType::NumberFloat)
  1459. {
  1460. v = Token.GetFloatValue();
  1461. }
  1462. else
  1463. {
  1464. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Expected float, found token '%s'", Token.GetStr()));
  1465. }
  1466. Cleanup:
  1467. return hr;
  1468. }
  1469. HRESULT RootSignatureParser::MarkParameter(bool & bSeen, LPCSTR pName)
  1470. {
  1471. HRESULT hr = S_OK;
  1472. if(bSeen)
  1473. {
  1474. IFC(Error(ERR_RS_UNEXPECTED_TOKEN, "Parameter '%s' can be specified only once", pName));
  1475. }
  1476. bSeen = true;
  1477. Cleanup:
  1478. return hr;
  1479. }
  1480. _Use_decl_annotations_
  1481. bool clang::ParseHLSLRootSignature(
  1482. const char *pData, unsigned Len, hlsl::DxilRootSignatureVersion Ver,
  1483. hlsl::DxilRootSignatureCompilationFlags Flags, hlsl::DxilVersionedRootSignatureDesc **ppDesc,
  1484. SourceLocation Loc, clang::DiagnosticsEngine &Diags) {
  1485. *ppDesc = nullptr;
  1486. std::string OSStr;
  1487. llvm::raw_string_ostream OS(OSStr);
  1488. hlsl::RootSignatureTokenizer RST(pData, Len);
  1489. hlsl::RootSignatureParser RSP(&RST, Ver, Flags, OS);
  1490. hlsl::DxilVersionedRootSignatureDesc *D = nullptr;
  1491. if (SUCCEEDED(RSP.Parse(&D))) {
  1492. *ppDesc = D;
  1493. return true;
  1494. }
  1495. else {
  1496. // Create diagnostic error message.
  1497. OS.flush();
  1498. if (OSStr.empty()) {
  1499. Diags.Report(Loc, clang::diag::err_hlsl_rootsig) << "unexpected";
  1500. }
  1501. else {
  1502. Diags.Report(Loc, clang::diag::err_hlsl_rootsig) << OSStr.c_str();
  1503. }
  1504. return false;
  1505. }
  1506. }
  1507. _Use_decl_annotations_
  1508. void clang::ReportHLSLRootSigError(clang::DiagnosticsEngine &Diags,
  1509. clang::SourceLocation Loc, const char *pData,
  1510. unsigned Len) {
  1511. Diags.Report(Loc, clang::diag::err_hlsl_rootsig) << StringRef(pData, Len);
  1512. return;
  1513. }