pragmas.nim 45 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211
  1. #
  2. #
  3. # The Nim Compiler
  4. # (c) Copyright 2015 Andreas Rumpf
  5. #
  6. # See the file "copying.txt", included in this
  7. # distribution, for details about the copyright.
  8. #
  9. # This module implements semantic checking for pragmas
  10. import
  11. os, platform, condsyms, ast, astalgo, idents, semdata, msgs, renderer,
  12. wordrecg, ropes, options, strutils, extccomp, math, magicsys, trees,
  13. types, lookups, lineinfos, pathutils, linter
  14. const
  15. FirstCallConv* = wNimcall
  16. LastCallConv* = wNoconv
  17. const
  18. procPragmas* = {FirstCallConv..LastCallConv, wImportc, wExportc, wNodecl,
  19. wMagic, wNoSideEffect, wSideEffect, wNoreturn, wDynlib, wHeader,
  20. wCompilerProc, wNonReloadable, wCore, wProcVar, wDeprecated, wVarargs, wCompileTime, wMerge,
  21. wBorrow, wExtern, wImportCompilerProc, wThread, wImportCpp, wImportObjC,
  22. wAsmNoStackFrame, wError, wDiscardable, wNoInit, wCodegenDecl,
  23. wGensym, wInject, wRaises, wTags, wLocks, wDelegator, wGcSafe,
  24. wConstructor, wExportNims, wUsed, wLiftLocals, wStackTrace, wLineTrace, wNoDestroy}
  25. converterPragmas* = procPragmas - {wNoDestroy}
  26. methodPragmas* = procPragmas+{wBase}-{wImportCpp, wNoDestroy}
  27. templatePragmas* = {wDeprecated, wError, wGensym, wInject, wDirty,
  28. wDelegator, wExportNims, wUsed, wPragma}
  29. macroPragmas* = {FirstCallConv..LastCallConv, wImportc, wExportc,
  30. wNodecl, wMagic, wNoSideEffect, wCompilerProc, wNonReloadable, wCore, wDeprecated, wExtern,
  31. wImportCpp, wImportObjC, wError, wDiscardable, wGensym, wInject, wDelegator,
  32. wExportNims, wUsed}
  33. iteratorPragmas* = {FirstCallConv..LastCallConv, wNoSideEffect, wSideEffect,
  34. wImportc, wExportc, wNodecl, wMagic, wDeprecated, wBorrow, wExtern,
  35. wImportCpp, wImportObjC, wError, wDiscardable, wGensym, wInject, wRaises,
  36. wTags, wLocks, wGcSafe, wExportNims, wUsed}
  37. exprPragmas* = {wLine, wLocks, wNoRewrite, wGcSafe, wNoSideEffect}
  38. stmtPragmas* = {wChecks, wObjChecks, wFieldChecks, wRangeChecks,
  39. wBoundChecks, wOverflowChecks, wNilChecks, wStyleChecks, wAssertions,
  40. wWarnings, wHints,
  41. wLineDir, wStackTrace, wLineTrace, wOptimization, wHint, wWarning, wError,
  42. wFatal, wDefine, wUndef, wCompile, wLink, wLinksys, wPure, wPush, wPop,
  43. wBreakpoint, wWatchPoint, wPassl, wPassc,
  44. wDeadCodeElimUnused, # deprecated, always on
  45. wDeprecated,
  46. wFloatChecks, wInfChecks, wNanChecks, wPragma, wEmit, wUnroll,
  47. wLinearScanEnd, wPatterns, wTrMacros, wEffects, wNoForward, wReorder, wComputedGoto,
  48. wInjectStmt, wDeprecated, wExperimental, wThis}
  49. lambdaPragmas* = {FirstCallConv..LastCallConv, wImportc, wExportc, wNodecl,
  50. wNoSideEffect, wSideEffect, wNoreturn, wDynlib, wHeader,
  51. wDeprecated, wExtern, wThread, wImportCpp, wImportObjC, wAsmNoStackFrame,
  52. wRaises, wLocks, wTags, wGcSafe, wCodegenDecl}
  53. typePragmas* = {wImportc, wExportc, wDeprecated, wMagic, wAcyclic, wNodecl,
  54. wPure, wHeader, wCompilerProc, wCore, wFinal, wSize, wExtern, wShallow,
  55. wImportCpp, wImportObjC, wError, wIncompleteStruct, wByCopy, wByRef,
  56. wInheritable, wGensym, wInject, wRequiresInit, wUnchecked, wUnion, wPacked,
  57. wBorrow, wGcSafe, wExportNims, wPartial, wUsed, wExplain, wPackage}
  58. fieldPragmas* = {wImportc, wExportc, wDeprecated, wExtern,
  59. wImportCpp, wImportObjC, wError, wGuard, wBitsize, wUsed}
  60. varPragmas* = {wImportc, wExportc, wVolatile, wRegister, wThreadVar, wNodecl,
  61. wMagic, wHeader, wDeprecated, wCompilerProc, wCore, wDynlib, wExtern,
  62. wImportCpp, wImportObjC, wError, wNoInit, wCompileTime, wGlobal,
  63. wGensym, wInject, wCodegenDecl, wGuard, wGoto, wExportNims, wUsed, wCursor}
  64. constPragmas* = {wImportc, wExportc, wHeader, wDeprecated, wMagic, wNodecl,
  65. wExtern, wImportCpp, wImportObjC, wError, wGensym, wInject, wExportNims,
  66. wIntDefine, wStrDefine, wBoolDefine, wUsed, wCompilerProc, wCore}
  67. letPragmas* = varPragmas
  68. procTypePragmas* = {FirstCallConv..LastCallConv, wVarargs, wNoSideEffect,
  69. wThread, wRaises, wLocks, wTags, wGcSafe}
  70. forVarPragmas* = {wInject, wGensym}
  71. allRoutinePragmas* = methodPragmas + iteratorPragmas + lambdaPragmas
  72. enumFieldPragmas* = {wDeprecated}
  73. proc getPragmaVal*(procAst: PNode; name: TSpecialWord): PNode =
  74. let p = procAst[pragmasPos]
  75. if p.kind == nkEmpty: return nil
  76. for it in p:
  77. if it.kind in nkPragmaCallKinds and it.len == 2 and it[0].kind == nkIdent and
  78. it[0].ident.id == ord(name):
  79. return it[1]
  80. proc pragma*(c: PContext, sym: PSym, n: PNode, validPragmas: TSpecialWords)
  81. proc recordPragma(c: PContext; n: PNode; key, val: string; val2 = "") =
  82. var recorded = newNodeI(nkCommentStmt, n.info)
  83. recorded.add newStrNode(key, n.info)
  84. recorded.add newStrNode(val, n.info)
  85. if val2.len > 0: recorded.add newStrNode(val2, n.info)
  86. c.graph.recordStmt(c.graph, c.module, recorded)
  87. const
  88. errStringLiteralExpected = "string literal expected"
  89. errIntLiteralExpected = "integer literal expected"
  90. proc invalidPragma*(c: PContext; n: PNode) =
  91. localError(c.config, n.info, "invalid pragma: " & renderTree(n, {renderNoComments}))
  92. proc illegalCustomPragma*(c: PContext, n: PNode, s: PSym) =
  93. localError(c.config, n.info, "cannot attach a custom pragma to '" & s.name.s & "'")
  94. proc pragmaAsm*(c: PContext, n: PNode): char =
  95. result = '\0'
  96. if n != nil:
  97. for i in 0 ..< sonsLen(n):
  98. let it = n.sons[i]
  99. if it.kind in nkPragmaCallKinds and it.len == 2 and it.sons[0].kind == nkIdent:
  100. case whichKeyword(it.sons[0].ident)
  101. of wSubsChar:
  102. if it.sons[1].kind == nkCharLit: result = chr(int(it.sons[1].intVal))
  103. else: invalidPragma(c, it)
  104. else: invalidPragma(c, it)
  105. else:
  106. invalidPragma(c, it)
  107. proc setExternName(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  108. # special cases to improve performance:
  109. if extname == "$1":
  110. s.loc.r = rope(s.name.s)
  111. elif '$' notin extname:
  112. s.loc.r = rope(extname)
  113. else:
  114. try:
  115. s.loc.r = rope(extname % s.name.s)
  116. except ValueError:
  117. localError(c.config, info, "invalid extern name: '" & extname & "'. (Forgot to escape '$'?)")
  118. if c.config.cmd == cmdPretty and '$' notin extname:
  119. # note that '{.importc.}' is transformed into '{.importc: "$1".}'
  120. s.loc.flags.incl(lfFullExternalName)
  121. proc makeExternImport(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  122. setExternName(c, s, extname, info)
  123. incl(s.flags, sfImportc)
  124. excl(s.flags, sfForward)
  125. proc makeExternExport(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  126. setExternName(c, s, extname, info)
  127. incl(s.flags, sfExportc)
  128. proc processImportCompilerProc(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  129. setExternName(c, s, extname, info)
  130. incl(s.flags, sfImportc)
  131. excl(s.flags, sfForward)
  132. incl(s.loc.flags, lfImportCompilerProc)
  133. proc processImportCpp(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  134. setExternName(c, s, extname, info)
  135. incl(s.flags, sfImportc)
  136. incl(s.flags, sfInfixCall)
  137. excl(s.flags, sfForward)
  138. if c.config.cmd == cmdCompileToC:
  139. let m = s.getModule()
  140. incl(m.flags, sfCompileToCpp)
  141. incl c.config.globalOptions, optMixedMode
  142. proc processImportObjC(c: PContext; s: PSym, extname: string, info: TLineInfo) =
  143. setExternName(c, s, extname, info)
  144. incl(s.flags, sfImportc)
  145. incl(s.flags, sfNamedParamCall)
  146. excl(s.flags, sfForward)
  147. let m = s.getModule()
  148. incl(m.flags, sfCompileToObjc)
  149. proc newEmptyStrNode(c: PContext; n: PNode): PNode {.noinline.} =
  150. result = newNodeIT(nkStrLit, n.info, getSysType(c.graph, n.info, tyString))
  151. result.strVal = ""
  152. proc getStrLitNode(c: PContext, n: PNode): PNode =
  153. if n.kind notin nkPragmaCallKinds or n.len != 2:
  154. localError(c.config, n.info, errStringLiteralExpected)
  155. # error correction:
  156. result = newEmptyStrNode(c, n)
  157. else:
  158. n.sons[1] = c.semConstExpr(c, n.sons[1])
  159. case n.sons[1].kind
  160. of nkStrLit, nkRStrLit, nkTripleStrLit: result = n.sons[1]
  161. else:
  162. localError(c.config, n.info, errStringLiteralExpected)
  163. # error correction:
  164. result = newEmptyStrNode(c, n)
  165. proc expectStrLit(c: PContext, n: PNode): string =
  166. result = getStrLitNode(c, n).strVal
  167. proc expectIntLit(c: PContext, n: PNode): int =
  168. if n.kind notin nkPragmaCallKinds or n.len != 2:
  169. localError(c.config, n.info, errIntLiteralExpected)
  170. else:
  171. n.sons[1] = c.semConstExpr(c, n.sons[1])
  172. case n.sons[1].kind
  173. of nkIntLit..nkInt64Lit: result = int(n.sons[1].intVal)
  174. else: localError(c.config, n.info, errIntLiteralExpected)
  175. proc getOptionalStr(c: PContext, n: PNode, defaultStr: string): string =
  176. if n.kind in nkPragmaCallKinds: result = expectStrLit(c, n)
  177. else: result = defaultStr
  178. proc processCodegenDecl(c: PContext, n: PNode, sym: PSym) =
  179. sym.constraint = getStrLitNode(c, n)
  180. proc processMagic(c: PContext, n: PNode, s: PSym) =
  181. #if sfSystemModule notin c.module.flags:
  182. # liMessage(n.info, errMagicOnlyInSystem)
  183. if n.kind notin nkPragmaCallKinds or n.len != 2:
  184. localError(c.config, n.info, errStringLiteralExpected)
  185. return
  186. var v: string
  187. if n.sons[1].kind == nkIdent: v = n.sons[1].ident.s
  188. else: v = expectStrLit(c, n)
  189. for m in low(TMagic) .. high(TMagic):
  190. if substr($m, 1) == v:
  191. s.magic = m
  192. break
  193. if s.magic == mNone: message(c.config, n.info, warnUnknownMagic, v)
  194. proc wordToCallConv(sw: TSpecialWord): TCallingConvention =
  195. # this assumes that the order of special words and calling conventions is
  196. # the same
  197. result = TCallingConvention(ord(ccDefault) + ord(sw) - ord(wNimcall))
  198. proc isTurnedOn(c: PContext, n: PNode): bool =
  199. if n.kind in nkPragmaCallKinds and n.len == 2:
  200. let x = c.semConstBoolExpr(c, n.sons[1])
  201. n.sons[1] = x
  202. if x.kind == nkIntLit: return x.intVal != 0
  203. localError(c.config, n.info, "'on' or 'off' expected")
  204. proc onOff(c: PContext, n: PNode, op: TOptions, resOptions: var TOptions) =
  205. if isTurnedOn(c, n): resOptions = resOptions + op
  206. else: resOptions = resOptions - op
  207. proc pragmaNoForward(c: PContext, n: PNode; flag=sfNoForward) =
  208. if isTurnedOn(c, n):
  209. incl(c.module.flags, flag)
  210. c.features.incl codeReordering
  211. else:
  212. excl(c.module.flags, flag)
  213. # c.features.excl codeReordering
  214. # deprecated as of 0.18.1
  215. message(c.config, n.info, warnDeprecated,
  216. "use {.experimental: \"codeReordering\".} instead; " &
  217. (if flag == sfNoForward: "{.noForward.}" else: "{.reorder.}") & " is deprecated")
  218. proc processCallConv(c: PContext, n: PNode) =
  219. if n.kind in nkPragmaCallKinds and n.len == 2 and n.sons[1].kind == nkIdent:
  220. let sw = whichKeyword(n.sons[1].ident)
  221. case sw
  222. of FirstCallConv..LastCallConv:
  223. c.optionStack[^1].defaultCC = wordToCallConv(sw)
  224. else: localError(c.config, n.info, "calling convention expected")
  225. else:
  226. localError(c.config, n.info, "calling convention expected")
  227. proc getLib(c: PContext, kind: TLibKind, path: PNode): PLib =
  228. for it in c.libs:
  229. if it.kind == kind and trees.exprStructuralEquivalent(it.path, path):
  230. return it
  231. result = newLib(kind)
  232. result.path = path
  233. c.libs.add result
  234. if path.kind in {nkStrLit..nkTripleStrLit}:
  235. result.isOverriden = options.isDynlibOverride(c.config, path.strVal)
  236. proc expectDynlibNode(c: PContext, n: PNode): PNode =
  237. if n.kind notin nkPragmaCallKinds or n.len != 2:
  238. localError(c.config, n.info, errStringLiteralExpected)
  239. # error correction:
  240. result = newEmptyStrNode(c, n)
  241. else:
  242. # For the OpenGL wrapper we support:
  243. # {.dynlib: myGetProcAddr(...).}
  244. result = c.semExpr(c, n.sons[1])
  245. if result.kind == nkSym and result.sym.kind == skConst:
  246. result = result.sym.ast # look it up
  247. if result.typ == nil or result.typ.kind notin {tyPointer, tyString, tyProc}:
  248. localError(c.config, n.info, errStringLiteralExpected)
  249. result = newEmptyStrNode(c, n)
  250. proc processDynLib(c: PContext, n: PNode, sym: PSym) =
  251. if (sym == nil) or (sym.kind == skModule):
  252. let lib = getLib(c, libDynamic, expectDynlibNode(c, n))
  253. if not lib.isOverriden:
  254. c.optionStack[^1].dynlib = lib
  255. else:
  256. if n.kind in nkPragmaCallKinds:
  257. var lib = getLib(c, libDynamic, expectDynlibNode(c, n))
  258. if not lib.isOverriden:
  259. addToLib(lib, sym)
  260. incl(sym.loc.flags, lfDynamicLib)
  261. else:
  262. incl(sym.loc.flags, lfExportLib)
  263. # since we'll be loading the dynlib symbols dynamically, we must use
  264. # a calling convention that doesn't introduce custom name mangling
  265. # cdecl is the default - the user can override this explicitly
  266. if sym.kind in routineKinds and sym.typ != nil and
  267. sym.typ.callConv == ccDefault:
  268. sym.typ.callConv = ccCDecl
  269. proc processNote(c: PContext, n: PNode) =
  270. if n.kind in nkPragmaCallKinds and len(n) == 2 and
  271. n[0].kind == nkBracketExpr and
  272. n[0].len == 2 and
  273. n[0][1].kind == nkIdent and n[0][0].kind == nkIdent:
  274. var nk: TNoteKind
  275. case whichKeyword(n[0][0].ident)
  276. of wHint:
  277. var x = findStr(HintsToStr, n[0][1].ident.s)
  278. if x >= 0: nk = TNoteKind(x + ord(hintMin))
  279. else: invalidPragma(c, n); return
  280. of wWarning:
  281. var x = findStr(WarningsToStr, n[0][1].ident.s)
  282. if x >= 0: nk = TNoteKind(x + ord(warnMin))
  283. else: invalidPragma(c, n); return
  284. else:
  285. invalidPragma(c, n)
  286. return
  287. let x = c.semConstBoolExpr(c, n[1])
  288. n.sons[1] = x
  289. if x.kind == nkIntLit and x.intVal != 0: incl(c.config.notes, nk)
  290. else: excl(c.config.notes, nk)
  291. else:
  292. invalidPragma(c, n)
  293. proc pragmaToOptions(w: TSpecialWord): TOptions {.inline.} =
  294. case w
  295. of wChecks: ChecksOptions
  296. of wObjChecks: {optObjCheck}
  297. of wFieldChecks: {optFieldCheck}
  298. of wRangeChecks: {optRangeCheck}
  299. of wBoundChecks: {optBoundsCheck}
  300. of wOverflowChecks: {optOverflowCheck}
  301. of wNilChecks: {optNilCheck}
  302. of wFloatChecks: {optNaNCheck, optInfCheck}
  303. of wNanChecks: {optNaNCheck}
  304. of wInfChecks: {optInfCheck}
  305. of wStyleChecks: {optStyleCheck}
  306. of wAssertions: {optAssert}
  307. of wWarnings: {optWarns}
  308. of wHints: {optHints}
  309. of wLineDir: {optLineDir}
  310. of wStackTrace: {optStackTrace}
  311. of wLineTrace: {optLineTrace}
  312. of wDebugger: {optEndb}
  313. of wProfiler: {optProfiler, optMemTracker}
  314. of wMemTracker: {optMemTracker}
  315. of wByRef: {optByRef}
  316. of wImplicitStatic: {optImplicitStatic}
  317. of wPatterns, wTrMacros: {optTrMacros}
  318. else: {}
  319. proc processExperimental(c: PContext; n: PNode) =
  320. if n.kind notin nkPragmaCallKinds or n.len != 2:
  321. c.features.incl oldExperimentalFeatures
  322. else:
  323. n[1] = c.semConstExpr(c, n[1])
  324. case n[1].kind
  325. of nkStrLit, nkRStrLit, nkTripleStrLit:
  326. try:
  327. let feature = parseEnum[Feature](n[1].strVal)
  328. c.features.incl feature
  329. if feature == codeReordering:
  330. if not isTopLevel(c):
  331. localError(c.config, n.info,
  332. "Code reordering experimental pragma only valid at toplevel")
  333. c.module.flags.incl sfReorder
  334. except ValueError:
  335. localError(c.config, n[1].info, "unknown experimental feature")
  336. else:
  337. localError(c.config, n.info, errStringLiteralExpected)
  338. proc tryProcessOption(c: PContext, n: PNode, resOptions: var TOptions): bool =
  339. result = true
  340. if n.kind notin nkPragmaCallKinds or n.len != 2: result = false
  341. elif n.sons[0].kind == nkBracketExpr: processNote(c, n)
  342. elif n.sons[0].kind != nkIdent: result = false
  343. else:
  344. let sw = whichKeyword(n.sons[0].ident)
  345. if sw == wExperimental:
  346. processExperimental(c, n)
  347. return true
  348. let opts = pragmaToOptions(sw)
  349. if opts != {}:
  350. onOff(c, n, opts, resOptions)
  351. else:
  352. case sw
  353. of wCallconv: processCallConv(c, n)
  354. of wDynlib: processDynLib(c, n, nil)
  355. of wOptimization:
  356. if n.sons[1].kind != nkIdent:
  357. invalidPragma(c, n)
  358. else:
  359. case n.sons[1].ident.s.normalize
  360. of "speed":
  361. incl(resOptions, optOptimizeSpeed)
  362. excl(resOptions, optOptimizeSize)
  363. of "size":
  364. excl(resOptions, optOptimizeSpeed)
  365. incl(resOptions, optOptimizeSize)
  366. of "none":
  367. excl(resOptions, optOptimizeSpeed)
  368. excl(resOptions, optOptimizeSize)
  369. else: localError(c.config, n.info, "'none', 'speed' or 'size' expected")
  370. else: result = false
  371. proc processOption(c: PContext, n: PNode, resOptions: var TOptions) =
  372. if not tryProcessOption(c, n, resOptions):
  373. # calling conventions (boring...):
  374. localError(c.config, n.info, "option expected")
  375. proc processPush(c: PContext, n: PNode, start: int) =
  376. if n.sons[start-1].kind in nkPragmaCallKinds:
  377. localError(c.config, n.info, "'push' cannot have arguments")
  378. var x = newOptionEntry(c.config)
  379. var y = c.optionStack[^1]
  380. x.options = c.config.options
  381. x.defaultCC = y.defaultCC
  382. x.dynlib = y.dynlib
  383. x.notes = c.config.notes
  384. x.features = c.features
  385. c.optionStack.add(x)
  386. for i in start ..< sonsLen(n):
  387. if not tryProcessOption(c, n.sons[i], c.config.options):
  388. # simply store it somewhere:
  389. if x.otherPragmas.isNil:
  390. x.otherPragmas = newNodeI(nkPragma, n.info)
  391. x.otherPragmas.add n.sons[i]
  392. #localError(c.config, n.info, errOptionExpected)
  393. # If stacktrace is disabled globally we should not enable it
  394. if optStackTrace notin c.optionStack[0].options:
  395. c.config.options.excl(optStackTrace)
  396. when defined(debugOptions):
  397. echo c.config $ n.info, " PUSH config is now ", c.config.options
  398. proc processPop(c: PContext, n: PNode) =
  399. if c.optionStack.len <= 1:
  400. localError(c.config, n.info, "{.pop.} without a corresponding {.push.}")
  401. else:
  402. c.config.options = c.optionStack[^1].options
  403. c.config.notes = c.optionStack[^1].notes
  404. c.features = c.optionStack[^1].features
  405. c.optionStack.setLen(c.optionStack.len - 1)
  406. when defined(debugOptions):
  407. echo c.config $ n.info, " POP config is now ", c.config.options
  408. proc processDefine(c: PContext, n: PNode) =
  409. if (n.kind in nkPragmaCallKinds and n.len == 2) and (n[1].kind == nkIdent):
  410. defineSymbol(c.config.symbols, n[1].ident.s)
  411. message(c.config, n.info, warnDeprecated, "define is deprecated")
  412. else:
  413. invalidPragma(c, n)
  414. proc processUndef(c: PContext, n: PNode) =
  415. if (n.kind in nkPragmaCallKinds and n.len == 2) and (n[1].kind == nkIdent):
  416. undefSymbol(c.config.symbols, n[1].ident.s)
  417. message(c.config, n.info, warnDeprecated, "undef is deprecated")
  418. else:
  419. invalidPragma(c, n)
  420. proc relativeFile(c: PContext; n: PNode; ext=""): AbsoluteFile =
  421. var s = expectStrLit(c, n)
  422. if ext.len > 0 and splitFile(s).ext == "":
  423. s = addFileExt(s, ext)
  424. result = AbsoluteFile parentDir(toFullPath(c.config, n.info)) / s
  425. if not fileExists(result):
  426. if isAbsolute(s): result = AbsoluteFile s
  427. else:
  428. result = findFile(c.config, s)
  429. if result.isEmpty: result = AbsoluteFile s
  430. proc processCompile(c: PContext, n: PNode) =
  431. proc docompile(c: PContext; it: PNode; src, dest: AbsoluteFile) =
  432. var cf = Cfile(nimname: splitFile(src).name,
  433. cname: src, obj: dest, flags: {CfileFlag.External})
  434. extccomp.addExternalFileToCompile(c.config, cf)
  435. recordPragma(c, it, "compile", src.string, dest.string)
  436. proc getStrLit(c: PContext, n: PNode; i: int): string =
  437. n.sons[i] = c.semConstExpr(c, n[i])
  438. case n[i].kind
  439. of nkStrLit, nkRStrLit, nkTripleStrLit:
  440. shallowCopy(result, n[i].strVal)
  441. else:
  442. localError(c.config, n.info, errStringLiteralExpected)
  443. result = ""
  444. let it = if n.kind in nkPragmaCallKinds and n.len == 2: n.sons[1] else: n
  445. if it.kind in {nkPar, nkTupleConstr} and it.len == 2:
  446. let s = getStrLit(c, it, 0)
  447. let dest = getStrLit(c, it, 1)
  448. var found = parentDir(toFullPath(c.config, n.info)) / s
  449. for f in os.walkFiles(found):
  450. let obj = completeCfilePath(c.config, AbsoluteFile(dest % extractFilename(f)))
  451. docompile(c, it, AbsoluteFile f, obj)
  452. else:
  453. let s = expectStrLit(c, n)
  454. var found = AbsoluteFile(parentDir(toFullPath(c.config, n.info)) / s)
  455. if not fileExists(found):
  456. if isAbsolute(s): found = AbsoluteFile s
  457. else:
  458. found = findFile(c.config, s)
  459. if found.isEmpty: found = AbsoluteFile s
  460. let obj = toObjFile(c.config, completeCfilePath(c.config, found, false))
  461. docompile(c, it, found, obj)
  462. proc processLink(c: PContext, n: PNode) =
  463. let found = relativeFile(c, n, CC[c.config.cCompiler].objExt)
  464. extccomp.addExternalFileToLink(c.config, found)
  465. recordPragma(c, n, "link", found.string)
  466. proc pragmaBreakpoint(c: PContext, n: PNode) =
  467. discard getOptionalStr(c, n, "")
  468. proc pragmaWatchpoint(c: PContext, n: PNode) =
  469. if n.kind in nkPragmaCallKinds and n.len == 2:
  470. n.sons[1] = c.semExpr(c, n.sons[1])
  471. else:
  472. invalidPragma(c, n)
  473. proc semAsmOrEmit*(con: PContext, n: PNode, marker: char): PNode =
  474. case n.sons[1].kind
  475. of nkStrLit, nkRStrLit, nkTripleStrLit:
  476. result = newNode(if n.kind == nkAsmStmt: nkAsmStmt else: nkArgList, n.info)
  477. var str = n.sons[1].strVal
  478. if str == "":
  479. localError(con.config, n.info, "empty 'asm' statement")
  480. return
  481. # now parse the string literal and substitute symbols:
  482. var a = 0
  483. while true:
  484. var b = strutils.find(str, marker, a)
  485. var sub = if b < 0: substr(str, a) else: substr(str, a, b - 1)
  486. if sub != "": addSon(result, newStrNode(nkStrLit, sub))
  487. if b < 0: break
  488. var c = strutils.find(str, marker, b + 1)
  489. if c < 0: sub = substr(str, b + 1)
  490. else: sub = substr(str, b + 1, c - 1)
  491. if sub != "":
  492. var e = searchInScopes(con, getIdent(con.cache, sub))
  493. if e != nil:
  494. when false:
  495. if e.kind == skStub: loadStub(e)
  496. incl(e.flags, sfUsed)
  497. addSon(result, newSymNode(e))
  498. else:
  499. addSon(result, newStrNode(nkStrLit, sub))
  500. else:
  501. # an empty '``' produces a single '`'
  502. addSon(result, newStrNode(nkStrLit, $marker))
  503. if c < 0: break
  504. a = c + 1
  505. else:
  506. illFormedAstLocal(n, con.config)
  507. result = newNode(nkAsmStmt, n.info)
  508. proc pragmaEmit(c: PContext, n: PNode) =
  509. if n.kind notin nkPragmaCallKinds or n.len != 2:
  510. localError(c.config, n.info, errStringLiteralExpected)
  511. else:
  512. let n1 = n[1]
  513. if n1.kind == nkBracket:
  514. var b = newNodeI(nkBracket, n1.info, n1.len)
  515. for i in 0..<n1.len:
  516. b.sons[i] = c.semExpr(c, n1[i])
  517. n.sons[1] = b
  518. else:
  519. n.sons[1] = c.semConstExpr(c, n1)
  520. case n.sons[1].kind
  521. of nkStrLit, nkRStrLit, nkTripleStrLit:
  522. n.sons[1] = semAsmOrEmit(c, n, '`')
  523. else:
  524. localError(c.config, n.info, errStringLiteralExpected)
  525. proc noVal(c: PContext; n: PNode) =
  526. if n.kind in nkPragmaCallKinds and n.len > 1: invalidPragma(c, n)
  527. proc pragmaUnroll(c: PContext, n: PNode) =
  528. if c.p.nestedLoopCounter <= 0:
  529. invalidPragma(c, n)
  530. elif n.kind in nkPragmaCallKinds and n.len == 2:
  531. var unrollFactor = expectIntLit(c, n)
  532. if unrollFactor <% 32:
  533. n.sons[1] = newIntNode(nkIntLit, unrollFactor)
  534. else:
  535. invalidPragma(c, n)
  536. proc pragmaLine(c: PContext, n: PNode) =
  537. if n.kind in nkPragmaCallKinds and n.len == 2:
  538. n.sons[1] = c.semConstExpr(c, n.sons[1])
  539. let a = n.sons[1]
  540. if a.kind in {nkPar, nkTupleConstr}:
  541. # unpack the tuple
  542. var x = a.sons[0]
  543. var y = a.sons[1]
  544. if x.kind == nkExprColonExpr: x = x.sons[1]
  545. if y.kind == nkExprColonExpr: y = y.sons[1]
  546. if x.kind != nkStrLit:
  547. localError(c.config, n.info, errStringLiteralExpected)
  548. elif y.kind != nkIntLit:
  549. localError(c.config, n.info, errIntLiteralExpected)
  550. else:
  551. n.info.fileIndex = fileInfoIdx(c.config, AbsoluteFile(x.strVal))
  552. n.info.line = uint16(y.intVal)
  553. else:
  554. localError(c.config, n.info, "tuple expected")
  555. else:
  556. # sensible default:
  557. n.info = getInfoContext(c.config, -1)
  558. proc processPragma(c: PContext, n: PNode, i: int) =
  559. let it = n[i]
  560. if it.kind notin nkPragmaCallKinds and it.safeLen == 2: invalidPragma(c, n)
  561. elif it.safeLen != 2 or it[0].kind != nkIdent or it[1].kind != nkIdent:
  562. invalidPragma(c, n)
  563. var userPragma = newSym(skTemplate, it[1].ident, nil, it.info, c.config.options)
  564. userPragma.ast = newNode(nkPragma, n.info, n.sons[i+1..^1])
  565. strTableAdd(c.userPragmas, userPragma)
  566. proc pragmaRaisesOrTags(c: PContext, n: PNode) =
  567. proc processExc(c: PContext, x: PNode) =
  568. var t = skipTypes(c.semTypeNode(c, x, nil), skipPtrs)
  569. if t.kind != tyObject:
  570. localError(c.config, x.info, errGenerated, "invalid type for raises/tags list")
  571. x.typ = t
  572. if n.kind in nkPragmaCallKinds and n.len == 2:
  573. let it = n.sons[1]
  574. if it.kind notin {nkCurly, nkBracket}:
  575. processExc(c, it)
  576. else:
  577. for e in items(it): processExc(c, e)
  578. else:
  579. invalidPragma(c, n)
  580. proc pragmaLockStmt(c: PContext; it: PNode) =
  581. if it.kind notin nkPragmaCallKinds or it.len != 2:
  582. invalidPragma(c, it)
  583. else:
  584. let n = it[1]
  585. if n.kind != nkBracket:
  586. localError(c.config, n.info, errGenerated, "locks pragma takes a list of expressions")
  587. else:
  588. for i in 0 ..< n.len:
  589. n.sons[i] = c.semExpr(c, n.sons[i])
  590. proc pragmaLocks(c: PContext, it: PNode): TLockLevel =
  591. if it.kind notin nkPragmaCallKinds or it.len != 2:
  592. invalidPragma(c, it)
  593. else:
  594. case it[1].kind
  595. of nkStrLit, nkRStrLit, nkTripleStrLit:
  596. if it[1].strVal == "unknown":
  597. result = UnknownLockLevel
  598. else:
  599. localError(c.config, it[1].info, "invalid string literal for locks pragma (only allowed string is \"unknown\")")
  600. else:
  601. let x = expectIntLit(c, it)
  602. if x < 0 or x > MaxLockLevel:
  603. localError(c.config, it[1].info, "integer must be within 0.." & $MaxLockLevel)
  604. else:
  605. result = TLockLevel(x)
  606. proc typeBorrow(c: PContext; sym: PSym, n: PNode) =
  607. if n.kind in nkPragmaCallKinds and n.len == 2:
  608. let it = n.sons[1]
  609. if it.kind != nkAccQuoted:
  610. localError(c.config, n.info, "a type can only borrow `.` for now")
  611. incl(sym.typ.flags, tfBorrowDot)
  612. proc markCompilerProc(c: PContext; s: PSym) =
  613. # minor hack ahead: FlowVar is the only generic .compilerProc type which
  614. # should not have an external name set:
  615. if s.kind != skType or s.name.s != "FlowVar":
  616. makeExternExport(c, s, "$1", s.info)
  617. incl(s.flags, sfCompilerProc)
  618. incl(s.flags, sfUsed)
  619. registerCompilerProc(c.graph, s)
  620. proc deprecatedStmt(c: PContext; outerPragma: PNode) =
  621. let pragma = outerPragma[1]
  622. if pragma.kind in {nkStrLit..nkTripleStrLit}:
  623. incl(c.module.flags, sfDeprecated)
  624. c.module.constraint = getStrLitNode(c, outerPragma)
  625. return
  626. if pragma.kind != nkBracket:
  627. localError(c.config, pragma.info, "list of key:value pairs expected"); return
  628. for n in pragma:
  629. if n.kind in nkPragmaCallKinds and n.len == 2:
  630. let dest = qualifiedLookUp(c, n[1], {checkUndeclared})
  631. if dest == nil or dest.kind in routineKinds:
  632. localError(c.config, n.info, warnUser, "the .deprecated pragma is unreliable for routines")
  633. let src = considerQuotedIdent(c, n[0])
  634. let alias = newSym(skAlias, src, dest, n[0].info, c.config.options)
  635. incl(alias.flags, sfExported)
  636. if sfCompilerProc in dest.flags: markCompilerProc(c, alias)
  637. addInterfaceDecl(c, alias)
  638. n.sons[1] = newSymNode(dest)
  639. else:
  640. localError(c.config, n.info, "key:value pair expected")
  641. proc pragmaGuard(c: PContext; it: PNode; kind: TSymKind): PSym =
  642. if it.kind notin nkPragmaCallKinds or it.len != 2:
  643. invalidPragma(c, it); return
  644. let n = it[1]
  645. if n.kind == nkSym:
  646. result = n.sym
  647. elif kind == skField:
  648. # First check if the guard is a global variable:
  649. result = qualifiedLookUp(c, n, {})
  650. if result.isNil or result.kind notin {skLet, skVar} or
  651. sfGlobal notin result.flags:
  652. # We return a dummy symbol; later passes over the type will repair it.
  653. # Generic instantiation needs to know about this too. But we're lazy
  654. # and perform the lookup on demand instead.
  655. result = newSym(skUnknown, considerQuotedIdent(c, n), nil, n.info,
  656. c.config.options)
  657. else:
  658. result = qualifiedLookUp(c, n, {checkUndeclared})
  659. proc semCustomPragma(c: PContext, n: PNode): PNode =
  660. var callNode: PNode
  661. if n.kind == nkIdent:
  662. # pragma -> pragma()
  663. callNode = newTree(nkCall, n)
  664. elif n.kind == nkExprColonExpr:
  665. # pragma: arg -> pragma(arg)
  666. callNode = newTree(nkCall, n[0], n[1])
  667. elif n.kind in nkPragmaCallKinds:
  668. callNode = n
  669. else:
  670. invalidPragma(c, n)
  671. return n
  672. let r = c.semOverloadedCall(c, callNode, n, {skTemplate}, {efNoUndeclared})
  673. if r.isNil or sfCustomPragma notin r[0].sym.flags:
  674. invalidPragma(c, n)
  675. return n
  676. result = r
  677. # Transform the nkCall node back to its original form if possible
  678. if n.kind == nkIdent and r.len == 1:
  679. # pragma() -> pragma
  680. result = result[0]
  681. elif n.kind == nkExprColonExpr and r.len == 2:
  682. # pragma(arg) -> pragma: arg
  683. result.kind = n.kind
  684. proc singlePragma(c: PContext, sym: PSym, n: PNode, i: var int,
  685. validPragmas: TSpecialWords, comesFromPush: bool) : bool =
  686. var it = n.sons[i]
  687. var key = if it.kind in nkPragmaCallKinds and it.len > 1: it.sons[0] else: it
  688. if key.kind == nkBracketExpr:
  689. processNote(c, it)
  690. return
  691. elif key.kind notin nkIdentKinds:
  692. n.sons[i] = semCustomPragma(c, it)
  693. return
  694. let ident = considerQuotedIdent(c, key)
  695. var userPragma = strTableGet(c.userPragmas, ident)
  696. if userPragma != nil:
  697. if {optStyleHint, optStyleError} * c.config.globalOptions != {}:
  698. styleCheckUse(c.config, key.info, userPragma)
  699. # number of pragmas increase/decrease with user pragma expansion
  700. inc c.instCounter
  701. if c.instCounter > 100:
  702. globalError(c.config, it.info, "recursive dependency: " & userPragma.name.s)
  703. pragma(c, sym, userPragma.ast, validPragmas)
  704. n.sons[i..i] = userPragma.ast.sons # expand user pragma with its content
  705. i.inc(userPragma.ast.len - 1) # inc by -1 is ok, user pragmas was empty
  706. dec c.instCounter
  707. else:
  708. let k = whichKeyword(ident)
  709. if k in validPragmas:
  710. if {optStyleHint, optStyleError} * c.config.globalOptions != {}:
  711. checkPragmaUse(c.config, key.info, k, ident.s)
  712. case k
  713. of wExportc:
  714. makeExternExport(c, sym, getOptionalStr(c, it, "$1"), it.info)
  715. incl(sym.flags, sfUsed) # avoid wrong hints
  716. of wImportc:
  717. let name = getOptionalStr(c, it, "$1")
  718. cppDefine(c.config, name)
  719. recordPragma(c, it, "cppdefine", name)
  720. makeExternImport(c, sym, name, it.info)
  721. of wImportCompilerProc:
  722. let name = getOptionalStr(c, it, "$1")
  723. cppDefine(c.config, name)
  724. recordPragma(c, it, "cppdefine", name)
  725. processImportCompilerProc(c, sym, name, it.info)
  726. of wExtern: setExternName(c, sym, expectStrLit(c, it), it.info)
  727. of wDirty:
  728. if sym.kind == skTemplate: incl(sym.flags, sfDirty)
  729. else: invalidPragma(c, it)
  730. of wImportCpp:
  731. processImportCpp(c, sym, getOptionalStr(c, it, "$1"), it.info)
  732. of wImportObjC:
  733. processImportObjC(c, sym, getOptionalStr(c, it, "$1"), it.info)
  734. of wAlign:
  735. if sym.typ == nil: invalidPragma(c, it)
  736. var align = expectIntLit(c, it)
  737. if (not isPowerOfTwo(align) and align != 0) or align >% high(int16):
  738. localError(c.config, it.info, "power of two expected")
  739. else:
  740. sym.typ.align = align.int16
  741. of wSize:
  742. if sym.typ == nil: invalidPragma(c, it)
  743. var size = expectIntLit(c, it)
  744. case size
  745. of 1, 2, 4, 8:
  746. sym.typ.size = size
  747. if size == 8 and c.config.target.targetCPU == cpuI386:
  748. sym.typ.align = 4
  749. else:
  750. sym.typ.align = int16(size)
  751. else:
  752. localError(c.config, it.info, "size may only be 1, 2, 4 or 8")
  753. of wNodecl:
  754. noVal(c, it)
  755. incl(sym.loc.flags, lfNoDecl)
  756. of wPure, wAsmNoStackFrame:
  757. noVal(c, it)
  758. if sym != nil:
  759. if k == wPure and sym.kind in routineKinds: invalidPragma(c, it)
  760. else: incl(sym.flags, sfPure)
  761. of wVolatile:
  762. noVal(c, it)
  763. incl(sym.flags, sfVolatile)
  764. of wRegister:
  765. noVal(c, it)
  766. incl(sym.flags, sfRegister)
  767. of wThreadVar:
  768. noVal(c, it)
  769. incl(sym.flags, {sfThread, sfGlobal})
  770. of wDeadCodeElimUnused: discard # deprecated, dead code elim always on
  771. of wNoForward: pragmaNoForward(c, it)
  772. of wReorder: pragmaNoForward(c, it, flag = sfReorder)
  773. of wMagic: processMagic(c, it, sym)
  774. of wCompileTime:
  775. noVal(c, it)
  776. incl(sym.flags, sfCompileTime)
  777. incl(sym.loc.flags, lfNoDecl)
  778. of wGlobal:
  779. noVal(c, it)
  780. incl(sym.flags, sfGlobal)
  781. incl(sym.flags, sfPure)
  782. of wMerge:
  783. # only supported for backwards compat, doesn't do anything anymore
  784. noVal(c, it)
  785. of wConstructor:
  786. noVal(c, it)
  787. incl(sym.flags, sfConstructor)
  788. of wHeader:
  789. var lib = getLib(c, libHeader, getStrLitNode(c, it))
  790. addToLib(lib, sym)
  791. incl(sym.flags, sfImportc)
  792. incl(sym.loc.flags, lfHeader)
  793. incl(sym.loc.flags, lfNoDecl)
  794. # implies nodecl, because otherwise header would not make sense
  795. if sym.loc.r == nil: sym.loc.r = rope(sym.name.s)
  796. of wNoSideEffect:
  797. noVal(c, it)
  798. if sym != nil:
  799. incl(sym.flags, sfNoSideEffect)
  800. if sym.typ != nil: incl(sym.typ.flags, tfNoSideEffect)
  801. of wSideEffect:
  802. noVal(c, it)
  803. incl(sym.flags, sfSideEffect)
  804. of wNoreturn:
  805. noVal(c, it)
  806. # Disable the 'noreturn' annotation when in the "Quirky Exceptions" mode!
  807. if not isDefined(c.config, "nimQuirky"):
  808. incl(sym.flags, sfNoReturn)
  809. if sym.typ[0] != nil:
  810. localError(c.config, sym.ast[paramsPos][0].info,
  811. ".noreturn with return type not allowed")
  812. of wNoDestroy:
  813. noVal(c, it)
  814. incl(sym.flags, sfGeneratedOp)
  815. of wDynlib:
  816. processDynLib(c, it, sym)
  817. of wCompilerProc, wCore:
  818. noVal(c, it) # compilerproc may not get a string!
  819. cppDefine(c.graph.config, sym.name.s)
  820. recordPragma(c, it, "cppdefine", sym.name.s)
  821. if sfFromGeneric notin sym.flags: markCompilerProc(c, sym)
  822. of wNonReloadable:
  823. sym.flags.incl sfNonReloadable
  824. of wProcVar:
  825. noVal(c, it)
  826. incl(sym.flags, sfProcvar)
  827. of wExplain:
  828. sym.flags.incl sfExplain
  829. of wDeprecated:
  830. if sym != nil and sym.kind in routineKinds + {skType, skVar, skLet}:
  831. if it.kind in nkPragmaCallKinds: discard getStrLitNode(c, it)
  832. incl(sym.flags, sfDeprecated)
  833. elif sym != nil and sym.kind != skModule:
  834. # We don't support the extra annotation field
  835. if it.kind in nkPragmaCallKinds:
  836. localError(c.config, it.info, "annotation to deprecated not supported here")
  837. incl(sym.flags, sfDeprecated)
  838. # At this point we're quite sure this is a statement and applies to the
  839. # whole module
  840. elif it.kind in nkPragmaCallKinds: deprecatedStmt(c, it)
  841. else: incl(c.module.flags, sfDeprecated)
  842. of wVarargs:
  843. noVal(c, it)
  844. if sym.typ == nil: invalidPragma(c, it)
  845. else: incl(sym.typ.flags, tfVarargs)
  846. of wBorrow:
  847. if sym.kind == skType:
  848. typeBorrow(c, sym, it)
  849. else:
  850. noVal(c, it)
  851. incl(sym.flags, sfBorrow)
  852. of wFinal:
  853. noVal(c, it)
  854. if sym.typ == nil: invalidPragma(c, it)
  855. else: incl(sym.typ.flags, tfFinal)
  856. of wInheritable:
  857. noVal(c, it)
  858. if sym.typ == nil or tfFinal in sym.typ.flags: invalidPragma(c, it)
  859. else: incl(sym.typ.flags, tfInheritable)
  860. of wPackage:
  861. noVal(c, it)
  862. if sym.typ == nil: invalidPragma(c, it)
  863. else: incl(sym.flags, sfForward)
  864. of wAcyclic:
  865. noVal(c, it)
  866. if sym.typ == nil: invalidPragma(c, it)
  867. # now: ignored
  868. of wShallow:
  869. noVal(c, it)
  870. if sym.typ == nil: invalidPragma(c, it)
  871. else: incl(sym.typ.flags, tfShallow)
  872. of wThread:
  873. noVal(c, it)
  874. incl(sym.flags, sfThread)
  875. incl(sym.flags, sfProcvar)
  876. if sym.typ != nil:
  877. incl(sym.typ.flags, tfThread)
  878. if sym.typ.callConv == ccClosure: sym.typ.callConv = ccDefault
  879. of wGcSafe:
  880. noVal(c, it)
  881. if sym != nil:
  882. if sym.kind != skType: incl(sym.flags, sfThread)
  883. if sym.typ != nil: incl(sym.typ.flags, tfGcSafe)
  884. else: invalidPragma(c, it)
  885. else:
  886. discard "no checking if used as a code block"
  887. of wPacked:
  888. noVal(c, it)
  889. if sym.typ == nil: invalidPragma(c, it)
  890. else: incl(sym.typ.flags, tfPacked)
  891. of wHint:
  892. let s = expectStrLit(c, it)
  893. recordPragma(c, it, "hint", s)
  894. message(c.config, it.info, hintUser, s)
  895. of wWarning:
  896. let s = expectStrLit(c, it)
  897. recordPragma(c, it, "warning", s)
  898. message(c.config, it.info, warnUser, s)
  899. of wError:
  900. if sym != nil and (sym.isRoutine or sym.kind == skType) and wUsed in validPragmas:
  901. # This is subtle but correct: the error *statement* is only
  902. # allowed when 'wUsed' is not in validPragmas. Here this is the easiest way to
  903. # distinguish properly between
  904. # ``proc p() {.error}`` and ``proc p() = {.error: "msg".}``
  905. if it.kind in nkPragmaCallKinds: discard getStrLitNode(c, it)
  906. incl(sym.flags, sfError)
  907. excl(sym.flags, sfForward)
  908. else:
  909. let s = expectStrLit(c, it)
  910. recordPragma(c, it, "error", s)
  911. localError(c.config, it.info, errUser, s)
  912. of wFatal: fatal(c.config, it.info, errUser, expectStrLit(c, it))
  913. of wDefine: processDefine(c, it)
  914. of wUndef: processUndef(c, it)
  915. of wCompile: processCompile(c, it)
  916. of wLink: processLink(c, it)
  917. of wPassl:
  918. let s = expectStrLit(c, it)
  919. extccomp.addLinkOption(c.config, s)
  920. recordPragma(c, it, "passl", s)
  921. of wPassc:
  922. let s = expectStrLit(c, it)
  923. extccomp.addCompileOption(c.config, s)
  924. recordPragma(c, it, "passc", s)
  925. of wBreakpoint: pragmaBreakpoint(c, it)
  926. of wWatchPoint: pragmaWatchpoint(c, it)
  927. of wPush:
  928. processPush(c, n, i + 1)
  929. result = true
  930. of wPop: processPop(c, it)
  931. of wPragma:
  932. if not sym.isNil and sym.kind == skTemplate:
  933. sym.flags.incl sfCustomPragma
  934. else:
  935. processPragma(c, n, i)
  936. result = true
  937. of wDiscardable:
  938. noVal(c, it)
  939. if sym != nil: incl(sym.flags, sfDiscardable)
  940. of wNoInit:
  941. noVal(c, it)
  942. if sym != nil: incl(sym.flags, sfNoInit)
  943. of wCodegenDecl: processCodegenDecl(c, it, sym)
  944. of wChecks, wObjChecks, wFieldChecks, wRangeChecks, wBoundChecks,
  945. wOverflowChecks, wNilChecks, wAssertions, wWarnings, wHints,
  946. wLineDir, wOptimization, wStyleChecks, wCallconv, wDebugger, wProfiler,
  947. wFloatChecks, wNanChecks, wInfChecks, wPatterns, wTrMacros:
  948. processOption(c, it, c.config.options)
  949. of wStackTrace, wLineTrace:
  950. if sym.kind in {skProc, skMethod, skConverter}:
  951. processOption(c, it, sym.options)
  952. else:
  953. processOption(c, it, c.config.options)
  954. of FirstCallConv..LastCallConv:
  955. assert(sym != nil)
  956. if sym.typ == nil: invalidPragma(c, it)
  957. else: sym.typ.callConv = wordToCallConv(k)
  958. of wEmit: pragmaEmit(c, it)
  959. of wUnroll: pragmaUnroll(c, it)
  960. of wLinearScanEnd, wComputedGoto: noVal(c, it)
  961. of wEffects:
  962. # is later processed in effect analysis:
  963. noVal(c, it)
  964. of wIncompleteStruct:
  965. noVal(c, it)
  966. if sym.typ == nil: invalidPragma(c, it)
  967. else: incl(sym.typ.flags, tfIncompleteStruct)
  968. of wUnchecked:
  969. noVal(c, it)
  970. if sym.typ == nil or sym.typ.kind notin {tyArray, tyUncheckedArray}:
  971. invalidPragma(c, it)
  972. else:
  973. sym.typ.kind = tyUncheckedArray
  974. of wUnion:
  975. noVal(c, it)
  976. if sym.typ == nil: invalidPragma(c, it)
  977. else: incl(sym.typ.flags, tfUnion)
  978. of wRequiresInit:
  979. noVal(c, it)
  980. if sym.typ == nil: invalidPragma(c, it)
  981. else: incl(sym.typ.flags, tfNeedsInit)
  982. of wByRef:
  983. noVal(c, it)
  984. if sym == nil or sym.typ == nil:
  985. processOption(c, it, c.config.options)
  986. else:
  987. incl(sym.typ.flags, tfByRef)
  988. of wByCopy:
  989. noVal(c, it)
  990. if sym.kind != skType or sym.typ == nil: invalidPragma(c, it)
  991. else: incl(sym.typ.flags, tfByCopy)
  992. of wPartial:
  993. noVal(c, it)
  994. if sym.kind != skType or sym.typ == nil: invalidPragma(c, it)
  995. else:
  996. incl(sym.typ.flags, tfPartial)
  997. of wInject, wGensym:
  998. # We check for errors, but do nothing with these pragmas otherwise
  999. # as they are handled directly in 'evalTemplate'.
  1000. noVal(c, it)
  1001. if sym == nil: invalidPragma(c, it)
  1002. of wLine: pragmaLine(c, it)
  1003. of wRaises, wTags: pragmaRaisesOrTags(c, it)
  1004. of wLocks:
  1005. if sym == nil: pragmaLockStmt(c, it)
  1006. elif sym.typ == nil: invalidPragma(c, it)
  1007. else: sym.typ.lockLevel = pragmaLocks(c, it)
  1008. of wBitsize:
  1009. if sym == nil or sym.kind != skField:
  1010. invalidPragma(c, it)
  1011. else:
  1012. sym.bitsize = expectIntLit(c, it)
  1013. if sym.bitsize <= 0:
  1014. localError(c.config, it.info, "bitsize needs to be positive")
  1015. of wGuard:
  1016. if sym == nil or sym.kind notin {skVar, skLet, skField}:
  1017. invalidPragma(c, it)
  1018. else:
  1019. sym.guard = pragmaGuard(c, it, sym.kind)
  1020. of wGoto:
  1021. if sym == nil or sym.kind notin {skVar, skLet}:
  1022. invalidPragma(c, it)
  1023. else:
  1024. sym.flags.incl sfGoto
  1025. of wCursor:
  1026. if sym == nil or sym.kind notin {skVar, skLet}:
  1027. invalidPragma(c, it)
  1028. else:
  1029. sym.flags.incl sfCursor
  1030. of wExportNims:
  1031. if sym == nil: invalidPragma(c, it)
  1032. else: magicsys.registerNimScriptSymbol(c.graph, sym)
  1033. of wInjectStmt:
  1034. if it.kind notin nkPragmaCallKinds or it.len != 2:
  1035. localError(c.config, it.info, "expression expected")
  1036. else:
  1037. it.sons[1] = c.semExpr(c, it.sons[1])
  1038. of wExperimental:
  1039. if not isTopLevel(c):
  1040. localError(c.config, n.info, "'experimental' pragma only valid as toplevel statement or in a 'push' environment")
  1041. processExperimental(c, it)
  1042. of wThis:
  1043. if it.kind in nkPragmaCallKinds and it.len == 2:
  1044. c.selfName = considerQuotedIdent(c, it[1])
  1045. message(c.config, n.info, warnDeprecated, "the '.this' pragma is deprecated")
  1046. elif it.kind == nkIdent or it.len == 1:
  1047. c.selfName = getIdent(c.cache, "self")
  1048. message(c.config, n.info, warnDeprecated, "the '.this' pragma is deprecated")
  1049. else:
  1050. localError(c.config, it.info, "'this' pragma is allowed to have zero or one arguments")
  1051. of wNoRewrite:
  1052. noVal(c, it)
  1053. of wBase:
  1054. noVal(c, it)
  1055. sym.flags.incl sfBase
  1056. of wIntDefine:
  1057. sym.magic = mIntDefine
  1058. of wStrDefine:
  1059. sym.magic = mStrDefine
  1060. of wBoolDefine:
  1061. sym.magic = mBoolDefine
  1062. of wUsed:
  1063. noVal(c, it)
  1064. if sym == nil: invalidPragma(c, it)
  1065. else: sym.flags.incl sfUsed
  1066. of wLiftLocals: discard
  1067. else: invalidPragma(c, it)
  1068. elif comesFromPush and whichKeyword(ident) in {wTags, wRaises}:
  1069. discard "ignore the .push pragma; it doesn't apply"
  1070. else:
  1071. if sym == nil or (sym != nil and sym.kind in {skVar, skLet, skParam,
  1072. skField, skProc, skFunc, skConverter, skMethod, skType}):
  1073. n.sons[i] = semCustomPragma(c, it)
  1074. elif sym != nil:
  1075. illegalCustomPragma(c, it, sym)
  1076. else:
  1077. invalidPragma(c, it)
  1078. proc overwriteLineInfo(n: PNode; info: TLineInfo) =
  1079. n.info = info
  1080. for i in 0..<safeLen(n):
  1081. overwriteLineInfo(n[i], info)
  1082. proc mergePragmas(n, pragmas: PNode) =
  1083. var pragmas = copyTree(pragmas)
  1084. overwriteLineInfo pragmas, n.info
  1085. if n[pragmasPos].kind == nkEmpty:
  1086. n[pragmasPos] = pragmas
  1087. else:
  1088. for p in pragmas: n.sons[pragmasPos].add p
  1089. proc implicitPragmas*(c: PContext, sym: PSym, n: PNode,
  1090. validPragmas: TSpecialWords) =
  1091. if sym != nil and sym.kind != skModule:
  1092. for it in c.optionStack:
  1093. let o = it.otherPragmas
  1094. if not o.isNil:
  1095. pushInfoContext(c.config, n.info)
  1096. var i = 0
  1097. while i < o.len:
  1098. if singlePragma(c, sym, o, i, validPragmas, true):
  1099. internalError(c.config, n.info, "implicitPragmas")
  1100. inc i
  1101. popInfoContext(c.config)
  1102. if sym.kind in routineKinds and sym.ast != nil: mergePragmas(sym.ast, o)
  1103. if lfExportLib in sym.loc.flags and sfExportc notin sym.flags:
  1104. localError(c.config, n.info, ".dynlib requires .exportc")
  1105. var lib = c.optionStack[^1].dynlib
  1106. if {lfDynamicLib, lfHeader} * sym.loc.flags == {} and
  1107. sfImportc in sym.flags and lib != nil:
  1108. incl(sym.loc.flags, lfDynamicLib)
  1109. addToLib(lib, sym)
  1110. if sym.loc.r == nil: sym.loc.r = rope(sym.name.s)
  1111. proc hasPragma*(n: PNode, pragma: TSpecialWord): bool =
  1112. if n == nil: return false
  1113. for p in n:
  1114. var key = if p.kind in nkPragmaCallKinds and p.len > 1: p[0] else: p
  1115. if key.kind == nkIdent and whichKeyword(key.ident) == pragma:
  1116. return true
  1117. return false
  1118. proc pragmaRec(c: PContext, sym: PSym, n: PNode, validPragmas: TSpecialWords) =
  1119. if n == nil: return
  1120. var i = 0
  1121. while i < n.len:
  1122. if singlePragma(c, sym, n, i, validPragmas, false): break
  1123. inc i
  1124. proc pragma(c: PContext, sym: PSym, n: PNode, validPragmas: TSpecialWords) =
  1125. if n == nil: return
  1126. pragmaRec(c, sym, n, validPragmas)
  1127. implicitPragmas(c, sym, n, validPragmas)