deduce.cpp 27 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #include "toolchain/check/deduce.h"
  5. #include "llvm/ADT/SmallBitVector.h"
  6. #include "toolchain/base/kind_switch.h"
  7. #include "toolchain/check/context.h"
  8. #include "toolchain/check/convert.h"
  9. #include "toolchain/check/generic.h"
  10. #include "toolchain/check/subst.h"
  11. #include "toolchain/diagnostics/diagnostic.h"
  12. #include "toolchain/sem_ir/ids.h"
  13. #include "toolchain/sem_ir/impl.h"
  14. #include "toolchain/sem_ir/typed_insts.h"
  15. namespace Carbon::Check {
  16. namespace {
  17. // A list of pairs of (instruction from generic, corresponding instruction from
  18. // call to of generic) for which we still need to perform deduction, along with
  19. // methods to add and pop pending deductions from the list. Deductions are
  20. // popped in order from most- to least-recently pushed, with the intent that
  21. // they are visited in depth-first order, although the order is not expected to
  22. // matter except when it influences which error is diagnosed.
  23. class DeductionWorklist {
  24. public:
  25. // `context` must not be null.
  26. explicit DeductionWorklist(Context* context) : context_(context) {}
  27. struct PendingDeduction {
  28. SemIR::InstId param;
  29. SemIR::InstId arg;
  30. bool needs_substitution;
  31. };
  32. // Adds a single (param, arg) deduction.
  33. auto Add(SemIR::InstId param, SemIR::InstId arg, bool needs_substitution)
  34. -> void {
  35. deductions_.push_back(
  36. {.param = param, .arg = arg, .needs_substitution = needs_substitution});
  37. }
  38. // Adds a single (param, arg) type deduction.
  39. auto Add(SemIR::TypeId param, SemIR::TypeId arg, bool needs_substitution)
  40. -> void {
  41. Add(context_->types().GetInstId(param), context_->types().GetInstId(arg),
  42. needs_substitution);
  43. }
  44. // Adds a single (param, arg) deduction of a specific.
  45. auto Add(SemIR::SpecificId param, SemIR::SpecificId arg,
  46. bool needs_substitution) -> void {
  47. if (!param.has_value() || !arg.has_value()) {
  48. return;
  49. }
  50. auto& param_specific = context_->specifics().Get(param);
  51. auto& arg_specific = context_->specifics().Get(arg);
  52. if (param_specific.generic_id != arg_specific.generic_id) {
  53. // TODO: Decide whether to error on this or just treat the specific as
  54. // non-deduced. For now we treat it as non-deduced.
  55. return;
  56. }
  57. AddAll(param_specific.args_id, arg_specific.args_id, needs_substitution);
  58. }
  59. // Adds a list of (param, arg) deductions. These are added in reverse order so
  60. // they are popped in forward order.
  61. template <typename ElementId>
  62. auto AddAll(llvm::ArrayRef<ElementId> params, llvm::ArrayRef<ElementId> args,
  63. bool needs_substitution) -> void {
  64. if (params.size() != args.size()) {
  65. // TODO: Decide whether to error on this or just treat the parameter list
  66. // as non-deduced. For now we treat it as non-deduced.
  67. return;
  68. }
  69. for (auto [param, arg] : llvm::reverse(llvm::zip_equal(params, args))) {
  70. Add(param, arg, needs_substitution);
  71. }
  72. }
  73. auto AddAll(SemIR::InstBlockId params, llvm::ArrayRef<SemIR::InstId> args,
  74. bool needs_substitution) -> void {
  75. AddAll(context_->inst_blocks().Get(params), args, needs_substitution);
  76. }
  77. auto AddAll(SemIR::StructTypeFieldsId params, SemIR::StructTypeFieldsId args,
  78. bool needs_substitution) -> void {
  79. const auto& param_fields = context_->struct_type_fields().Get(params);
  80. const auto& arg_fields = context_->struct_type_fields().Get(args);
  81. if (param_fields.size() != arg_fields.size()) {
  82. // TODO: Decide whether to error on this or just treat the parameter list
  83. // as non-deduced. For now we treat it as non-deduced.
  84. return;
  85. }
  86. // Don't do deduction unless the names match in order.
  87. // TODO: Support reordering of names.
  88. for (auto [param, arg] : llvm::zip_equal(param_fields, arg_fields)) {
  89. if (param.name_id != arg.name_id) {
  90. return;
  91. }
  92. }
  93. for (auto [param, arg] :
  94. llvm::reverse(llvm::zip_equal(param_fields, arg_fields))) {
  95. Add(param.type_id, arg.type_id, needs_substitution);
  96. }
  97. }
  98. auto AddAll(SemIR::InstBlockId params, SemIR::InstBlockId args,
  99. bool needs_substitution) -> void {
  100. AddAll(context_->inst_blocks().Get(params),
  101. context_->inst_blocks().Get(args), needs_substitution);
  102. }
  103. auto AddAll(SemIR::TypeBlockId params, SemIR::TypeBlockId args,
  104. bool needs_substitution) -> void {
  105. AddAll(context_->type_blocks().Get(params),
  106. context_->type_blocks().Get(args), needs_substitution);
  107. }
  108. auto AddAll(SemIR::FacetTypeId params, SemIR::FacetTypeId args,
  109. bool needs_substitution) -> void {
  110. const auto& param_impls =
  111. context_->facet_types().Get(params).impls_constraints;
  112. const auto& arg_impls = context_->facet_types().Get(args).impls_constraints;
  113. // TODO: Decide whether to error on these or just treat the parameter list
  114. // as non-deduced. For now we treat it as non-deduced.
  115. if (param_impls.size() != 1 || arg_impls.size() != 1) {
  116. return;
  117. }
  118. auto param = param_impls.front();
  119. auto arg = arg_impls.front();
  120. if (param.interface_id != arg.interface_id) {
  121. return;
  122. }
  123. Add(param.specific_id, arg.specific_id, needs_substitution);
  124. }
  125. // Adds a (param, arg) pair for an instruction argument, given its kind.
  126. auto AddInstArg(SemIR::Inst::ArgAndKind param, int32_t arg,
  127. bool needs_substitution) -> void {
  128. CARBON_KIND_SWITCH(param) {
  129. case SemIR::IdKind::None:
  130. case SemIR::IdKind::For<SemIR::ClassId>:
  131. case SemIR::IdKind::For<SemIR::IntKind>:
  132. break;
  133. case CARBON_KIND(SemIR::InstId inst_id): {
  134. Add(inst_id, SemIR::InstId(arg), needs_substitution);
  135. break;
  136. }
  137. case CARBON_KIND(SemIR::TypeId type_id): {
  138. Add(type_id, SemIR::TypeId(arg), needs_substitution);
  139. break;
  140. }
  141. case CARBON_KIND(SemIR::StructTypeFieldsId fields_id): {
  142. AddAll(fields_id, SemIR::StructTypeFieldsId(arg), needs_substitution);
  143. break;
  144. }
  145. case CARBON_KIND(SemIR::InstBlockId inst_block_id): {
  146. AddAll(inst_block_id, SemIR::InstBlockId(arg), needs_substitution);
  147. break;
  148. }
  149. case CARBON_KIND(SemIR::TypeBlockId type_block_id): {
  150. AddAll(type_block_id, SemIR::TypeBlockId(arg), needs_substitution);
  151. break;
  152. }
  153. case CARBON_KIND(SemIR::SpecificId specific_id): {
  154. Add(specific_id, SemIR::SpecificId(arg), needs_substitution);
  155. break;
  156. }
  157. case CARBON_KIND(SemIR::FacetTypeId facet_type_id): {
  158. AddAll(facet_type_id, SemIR::FacetTypeId(arg), needs_substitution);
  159. break;
  160. }
  161. default:
  162. CARBON_FATAL("unexpected argument kind");
  163. }
  164. }
  165. // Returns whether we have completed all deductions.
  166. auto Done() -> bool { return deductions_.empty(); }
  167. // Pops the next deduction. Requires `!Done()`.
  168. auto PopNext() -> PendingDeduction { return deductions_.pop_back_val(); }
  169. private:
  170. Context* context_;
  171. llvm::SmallVector<PendingDeduction> deductions_;
  172. };
  173. // State that is tracked throughout the deduction process.
  174. class DeductionContext {
  175. public:
  176. // Preparse to perform deduction. If an enclosing specific or self type
  177. // are provided, adds the corresponding arguments as known arguments that will
  178. // not be deduced. `context` must not be null.
  179. DeductionContext(Context* context, SemIR::LocId loc_id,
  180. SemIR::GenericId generic_id,
  181. SemIR::SpecificId enclosing_specific_id,
  182. SemIR::InstId self_type_id, bool diagnose);
  183. auto context() const -> Context& { return *context_; }
  184. // Adds a pending deduction of `param` from `arg`. `needs_substitution`
  185. // indicates whether we need to substitute known generic parameters into
  186. // `param`.
  187. template <typename ParamT, typename ArgT>
  188. auto Add(ParamT param, ArgT arg, bool needs_substitution) -> void {
  189. worklist_.Add(param, arg, needs_substitution);
  190. }
  191. // Same as `Add` but for an array or block of operands.
  192. template <typename ParamT, typename ArgT>
  193. auto AddAll(ParamT param, ArgT arg, bool needs_substitution) -> void {
  194. worklist_.AddAll(param, arg, needs_substitution);
  195. }
  196. // Performs all deductions in the deduction worklist. Returns whether
  197. // deduction succeeded.
  198. auto Deduce() -> bool;
  199. // Returns whether every generic parameter has a corresponding deduced generic
  200. // argument. If not, issues a suitable diagnostic.
  201. auto CheckDeductionIsComplete() -> bool;
  202. // Forms a specific corresponding to the deduced generic with the deduced
  203. // argument list. Must not be called before deduction is complete.
  204. auto MakeSpecific() -> SemIR::SpecificId;
  205. private:
  206. auto NoteInitializingParam(SemIR::InstId param_id, auto& builder) -> void {
  207. if (auto param = context().insts().TryGetAs<SemIR::SymbolicBindingPattern>(
  208. param_id)) {
  209. CARBON_DIAGNOSTIC(InitializingGenericParam, Note,
  210. "initializing generic parameter `{0}` declared here",
  211. SemIR::NameId);
  212. builder.Note(param_id, InitializingGenericParam,
  213. context().entity_names().Get(param->entity_name_id).name_id);
  214. } else {
  215. NoteGenericHere(context(), generic_id_, builder);
  216. }
  217. }
  218. Context* context_;
  219. SemIR::LocId loc_id_;
  220. SemIR::GenericId generic_id_;
  221. bool diagnose_;
  222. DeductionWorklist worklist_;
  223. llvm::SmallVector<SemIR::InstId> result_arg_ids_;
  224. llvm::SmallVector<Substitution> substitutions_;
  225. SemIR::CompileTimeBindIndex first_deduced_index_;
  226. // Non-deduced indexes, indexed by parameter index - first_deduced_index_.
  227. llvm::SmallBitVector non_deduced_indexes_;
  228. };
  229. } // namespace
  230. static auto NoteGenericHere(Context& context, SemIR::GenericId generic_id,
  231. DiagnosticBuilder& diag) -> void {
  232. CARBON_DIAGNOSTIC(DeductionGenericHere, Note,
  233. "while deducing parameters of generic declared here");
  234. diag.Note(context.generics().Get(generic_id).decl_id, DeductionGenericHere);
  235. }
  236. DeductionContext::DeductionContext(Context* context, SemIR::LocId loc_id,
  237. SemIR::GenericId generic_id,
  238. SemIR::SpecificId enclosing_specific_id,
  239. SemIR::InstId self_type_id, bool diagnose)
  240. : context_(context),
  241. loc_id_(loc_id),
  242. generic_id_(generic_id),
  243. diagnose_(diagnose),
  244. worklist_(context),
  245. first_deduced_index_(0) {
  246. CARBON_CHECK(generic_id.has_value(),
  247. "Performing deduction for non-generic entity");
  248. // Initialize the deduced arguments to `None`.
  249. result_arg_ids_.resize(
  250. context->inst_blocks()
  251. .Get(context->generics().Get(generic_id_).bindings_id)
  252. .size(),
  253. SemIR::InstId::None);
  254. if (enclosing_specific_id.has_value()) {
  255. // Copy any outer generic arguments from the specified instance and prepare
  256. // to substitute them into the function declaration.
  257. auto args = context->inst_blocks().Get(
  258. context->specifics().Get(enclosing_specific_id).args_id);
  259. llvm::copy(args, result_arg_ids_.begin());
  260. // TODO: Subst is linear in the length of the substitutions list. Change
  261. // it so we can pass in an array mapping indexes to substitutions instead.
  262. substitutions_.reserve(args.size() + result_arg_ids_.size());
  263. for (auto [i, subst_inst_id] : llvm::enumerate(args)) {
  264. substitutions_.push_back(
  265. {.bind_id = SemIR::CompileTimeBindIndex(i),
  266. .replacement_id = context->constant_values().Get(subst_inst_id)});
  267. }
  268. first_deduced_index_ = SemIR::CompileTimeBindIndex(args.size());
  269. }
  270. if (self_type_id.has_value()) {
  271. // Copy the provided `Self` type as the value of the next binding.
  272. auto self_index = first_deduced_index_;
  273. result_arg_ids_[self_index.index] = self_type_id;
  274. substitutions_.push_back(
  275. {.bind_id = SemIR::CompileTimeBindIndex(self_index),
  276. .replacement_id = context->constant_values().Get(self_type_id)});
  277. first_deduced_index_ = SemIR::CompileTimeBindIndex(self_index.index + 1);
  278. }
  279. non_deduced_indexes_.resize(result_arg_ids_.size() -
  280. first_deduced_index_.index);
  281. }
  282. auto DeductionContext::Deduce() -> bool {
  283. while (!worklist_.Done()) {
  284. auto [param_id, arg_id, needs_substitution] = worklist_.PopNext();
  285. // TODO: Bail out if there's nothing to deduce: if we're not in a pattern
  286. // and the parameter doesn't have a symbolic constant value.
  287. auto param_type_id = context().insts().Get(param_id).type_id();
  288. // If the parameter has a symbolic type, deduce against that.
  289. if (param_type_id.is_symbolic()) {
  290. Add(context().types().GetInstId(param_type_id),
  291. context().types().GetInstId(context().insts().Get(arg_id).type_id()),
  292. needs_substitution);
  293. } else {
  294. // The argument (e.g. a TupleLiteral of types) may be convertible to a
  295. // compile-time value (e.g. TupleType) that we can decompose further.
  296. // So we do this conversion here, even though we will later try convert
  297. // again when we have deduced all of the bindings.
  298. Diagnostics::AnnotationScope annotate_diagnostics(
  299. &context().emitter(), [&](auto& builder) {
  300. if (diagnose_) {
  301. NoteInitializingParam(param_id, builder);
  302. }
  303. });
  304. // TODO: The call logic should reuse the conversion here (if any) instead
  305. // of doing the same conversion again. At the moment we throw away the
  306. // converted arg_id.
  307. arg_id = diagnose_ ? ConvertToValueOfType(context(), loc_id_, arg_id,
  308. param_type_id)
  309. : TryConvertToValueOfType(context(), loc_id_, arg_id,
  310. param_type_id);
  311. if (arg_id == SemIR::ErrorInst::SingletonInstId) {
  312. return false;
  313. }
  314. }
  315. // Attempt to match `param_inst` against `arg_id`. If the match succeeds,
  316. // this should `continue` the outer loop. On `break`, we will try to desugar
  317. // the parameter to continue looking for a match.
  318. auto param_inst = context().insts().Get(param_id);
  319. CARBON_KIND_SWITCH(param_inst) {
  320. // Deducing a symbolic binding pattern from an argument deduces the
  321. // binding as having that constant value. For example, deducing
  322. // `(T:! type)` against `(i32)` deduces `T` to be `i32`. This only arises
  323. // when initializing a generic parameter from an explicitly specified
  324. // argument, and in this case, the argument is required to be a
  325. // compile-time constant.
  326. case CARBON_KIND(SemIR::SymbolicBindingPattern bind): {
  327. auto& entity_name = context().entity_names().Get(bind.entity_name_id);
  328. auto index = entity_name.bind_index();
  329. if (!index.has_value()) {
  330. break;
  331. }
  332. CARBON_CHECK(
  333. index >= first_deduced_index_ &&
  334. static_cast<size_t>(index.index) < result_arg_ids_.size(),
  335. "Unexpected index {0} for symbolic binding pattern; "
  336. "expected to be in range [{1}, {2})",
  337. index.index, first_deduced_index_.index, result_arg_ids_.size());
  338. CARBON_CHECK(!result_arg_ids_[index.index].has_value(),
  339. "Deduced a value for parameter prior to its declaration");
  340. auto arg_const_inst_id =
  341. context().constant_values().GetConstantInstId(arg_id);
  342. if (!arg_const_inst_id.has_value()) {
  343. if (diagnose_) {
  344. CARBON_DIAGNOSTIC(CompTimeArgumentNotConstant, Error,
  345. "argument for generic parameter is not a "
  346. "compile-time constant");
  347. auto diag =
  348. context().emitter().Build(loc_id_, CompTimeArgumentNotConstant);
  349. NoteInitializingParam(param_id, diag);
  350. diag.Emit();
  351. }
  352. return false;
  353. }
  354. result_arg_ids_[index.index] = arg_const_inst_id;
  355. // This parameter index should not be deduced if it appears later.
  356. non_deduced_indexes_[index.index - first_deduced_index_.index] = true;
  357. continue;
  358. }
  359. // Deducing a symbolic binding appearing within an expression against a
  360. // constant value deduces the binding as having that value. For example,
  361. // deducing `[T:! type](x: T)` against `("foo")` deduces `T` as `String`.
  362. case CARBON_KIND(SemIR::BindSymbolicName bind): {
  363. auto& entity_name = context().entity_names().Get(bind.entity_name_id);
  364. auto index = entity_name.bind_index();
  365. if (!index.has_value() || index < first_deduced_index_ ||
  366. non_deduced_indexes_[index.index - first_deduced_index_.index]) {
  367. break;
  368. }
  369. CARBON_CHECK(static_cast<size_t>(index.index) < result_arg_ids_.size(),
  370. "Deduced value for unexpected index {0}; expected to "
  371. "deduce {1} arguments.",
  372. index, result_arg_ids_.size());
  373. auto arg_const_inst_id =
  374. context().constant_values().GetConstantInstId(arg_id);
  375. if (arg_const_inst_id.has_value()) {
  376. if (result_arg_ids_[index.index].has_value() &&
  377. result_arg_ids_[index.index] != arg_const_inst_id) {
  378. if (diagnose_) {
  379. // TODO: Include the two different deduced values.
  380. CARBON_DIAGNOSTIC(DeductionInconsistent, Error,
  381. "inconsistent deductions for value of generic "
  382. "parameter `{0}`",
  383. SemIR::NameId);
  384. auto diag = context().emitter().Build(
  385. loc_id_, DeductionInconsistent, entity_name.name_id);
  386. NoteGenericHere(context(), generic_id_, diag);
  387. diag.Emit();
  388. }
  389. return false;
  390. }
  391. result_arg_ids_[index.index] = arg_const_inst_id;
  392. }
  393. continue;
  394. }
  395. case CARBON_KIND(SemIR::ValueParamPattern pattern): {
  396. Add(pattern.subpattern_id, arg_id, needs_substitution);
  397. continue;
  398. }
  399. case SemIR::StructValue::Kind:
  400. // TODO: Match field name order between param and arg.
  401. break;
  402. case CARBON_KIND(SemIR::FacetAccessType access): {
  403. // Given `fn F[G:! Interface](g: G)`, the type of `g` is `G as type`.
  404. // `G` is a symbolic binding, whose type is a facet type, but `G as
  405. // type` converts into a `FacetAccessType`.
  406. //
  407. // When we see a `FacetAccessType` parameter here, we want to deduce the
  408. // facet type of `G`, not `G as type`, for the argument (so that the
  409. // argument would be a facet value, whose type is the same facet type of
  410. // `G`. So here we "undo" the `as type` operation that's built into the
  411. // `g` parameter's type.
  412. Add(access.facet_value_inst_id, arg_id, needs_substitution);
  413. continue;
  414. }
  415. // TODO: Handle more cases.
  416. default:
  417. if (param_inst.kind().deduce_through()) {
  418. // Various kinds of parameter should match an argument of the same
  419. // form, if the operands all match.
  420. auto arg_inst = context().insts().Get(arg_id);
  421. if (arg_inst.kind() != param_inst.kind()) {
  422. break;
  423. }
  424. worklist_.AddInstArg(param_inst.arg0_and_kind(), arg_inst.arg0(),
  425. needs_substitution);
  426. worklist_.AddInstArg(param_inst.arg1_and_kind(), arg_inst.arg1(),
  427. needs_substitution);
  428. continue;
  429. }
  430. break;
  431. }
  432. // We didn't manage to deduce against the syntactic form of the parameter.
  433. // Convert it to a canonical constant value and try deducing against that.
  434. auto param_const_id = context().constant_values().Get(param_id);
  435. if (!param_const_id.has_value() || !param_const_id.is_symbolic()) {
  436. // It's not a symbolic constant. There's nothing here to deduce.
  437. continue;
  438. }
  439. auto param_const_inst_id =
  440. context().constant_values().GetInstId(param_const_id);
  441. if (param_const_inst_id != param_id) {
  442. Add(param_const_inst_id, arg_id, needs_substitution);
  443. continue;
  444. }
  445. // If we've not yet substituted into the parameter, do so now and try again.
  446. if (needs_substitution) {
  447. param_const_id = SubstConstant(context(), param_const_id, substitutions_);
  448. if (!param_const_id.has_value() || !param_const_id.is_symbolic()) {
  449. continue;
  450. }
  451. Add(context().constant_values().GetInstId(param_const_id), arg_id,
  452. /*needs_substitution=*/false);
  453. }
  454. }
  455. return true;
  456. }
  457. // Gets the entity name of a generic binding. The generic binding may be an
  458. // imported instruction.
  459. static auto GetEntityNameForGenericBinding(Context& context,
  460. SemIR::InstId binding_id)
  461. -> SemIR::NameId {
  462. // If `binding_id` is imported (or referenced indirectly perhaps in the
  463. // future), it may not have an entity name. Get a canonical local instruction
  464. // from its constant value which does.
  465. binding_id = context.constant_values().GetConstantInstId(binding_id);
  466. if (auto bind_name =
  467. context.insts().TryGetAs<SemIR::AnyBindName>(binding_id)) {
  468. return context.entity_names().Get(bind_name->entity_name_id).name_id;
  469. } else {
  470. CARBON_FATAL("Instruction without entity name in generic binding position");
  471. }
  472. }
  473. auto DeductionContext::CheckDeductionIsComplete() -> bool {
  474. // Check we deduced an argument value for every parameter, and convert each
  475. // argument to match the final parameter type after substituting any deduced
  476. // types it depends on.
  477. for (auto&& [i, deduced_arg_id] :
  478. llvm::enumerate(llvm::MutableArrayRef(result_arg_ids_)
  479. .drop_front(first_deduced_index_.index))) {
  480. auto binding_index = first_deduced_index_.index + i;
  481. auto binding_id = context().inst_blocks().Get(
  482. context().generics().Get(generic_id_).bindings_id)[binding_index];
  483. if (!deduced_arg_id.has_value()) {
  484. if (diagnose_) {
  485. CARBON_DIAGNOSTIC(DeductionIncomplete, Error,
  486. "cannot deduce value for generic parameter `{0}`",
  487. SemIR::NameId);
  488. auto diag = context().emitter().Build(
  489. loc_id_, DeductionIncomplete,
  490. GetEntityNameForGenericBinding(context(), binding_id));
  491. NoteGenericHere(context(), generic_id_, diag);
  492. diag.Emit();
  493. }
  494. return false;
  495. }
  496. // If the binding is symbolic it can refer to other earlier bindings in the
  497. // same generic, or from an enclosing specific. Substitute to replace those
  498. // and get a non-symbolic type in order for us to know the final type that
  499. // the argument needs to be converted to.
  500. //
  501. // Note that when typechecking a checked generic, the arguments can
  502. // still be symbolic, so the substitution would also be symbolic. We are
  503. // unable to get the final type for symbolic bindings until deducing with
  504. // non-symbolic arguments.
  505. //
  506. // TODO: If arguments of different values, but that _convert to_ the same
  507. // value, are deduced for the same symbolic binding, then we will fail
  508. // typechecking in Deduce() with conflicting types via the
  509. // `DeductionInconsistent` diagnostic. If we defer that check until after
  510. // all conversions are done (after the code below) then we won't diagnose
  511. // that incorrectly.
  512. auto arg_type_id = context().insts().Get(deduced_arg_id).type_id();
  513. auto binding_type_id = context().insts().Get(binding_id).type_id();
  514. if (arg_type_id.is_concrete() && binding_type_id.is_symbolic()) {
  515. auto param_type_const_id = SubstConstant(
  516. context(), binding_type_id.AsConstantId(), substitutions_);
  517. CARBON_CHECK(param_type_const_id.has_value());
  518. binding_type_id =
  519. context().types().GetTypeIdForTypeConstantId(param_type_const_id);
  520. Diagnostics::AnnotationScope annotate_diagnostics(
  521. &context().emitter(), [&](auto& builder) {
  522. if (diagnose_) {
  523. NoteInitializingParam(binding_id, builder);
  524. }
  525. });
  526. auto converted_arg_id =
  527. diagnose_ ? ConvertToValueOfType(context(), loc_id_, deduced_arg_id,
  528. binding_type_id)
  529. : TryConvertToValueOfType(context(), loc_id_,
  530. deduced_arg_id, binding_type_id);
  531. // Replace the deduced arg with its value converted to the parameter
  532. // type. The conversion of the argument type must produce a constant value
  533. // to be used in deduction.
  534. if (auto const_inst_id =
  535. context().constant_values().GetConstantInstId(converted_arg_id);
  536. const_inst_id.has_value()) {
  537. deduced_arg_id = const_inst_id;
  538. } else {
  539. if (diagnose_) {
  540. CARBON_DIAGNOSTIC(RuntimeConversionDuringCompTimeDeduction, Error,
  541. "compile-time value requires runtime conversion, "
  542. "constructing value of type {0}",
  543. SemIR::TypeId);
  544. auto diag = context().emitter().Build(
  545. loc_id_, RuntimeConversionDuringCompTimeDeduction,
  546. binding_type_id);
  547. NoteGenericHere(context(), generic_id_, diag);
  548. diag.Emit();
  549. }
  550. deduced_arg_id = SemIR::ErrorInst::SingletonInstId;
  551. }
  552. }
  553. substitutions_.push_back(
  554. {.bind_id = SemIR::CompileTimeBindIndex(binding_index),
  555. .replacement_id = context().constant_values().Get(deduced_arg_id)});
  556. }
  557. return true;
  558. }
  559. auto DeductionContext::MakeSpecific() -> SemIR::SpecificId {
  560. // TODO: Convert the deduced values to the types of the bindings.
  561. return Check::MakeSpecific(context(), loc_id_, generic_id_, result_arg_ids_);
  562. }
  563. auto DeduceGenericCallArguments(
  564. Context& context, SemIR::LocId loc_id, SemIR::GenericId generic_id,
  565. SemIR::SpecificId enclosing_specific_id, SemIR::InstId self_type_id,
  566. [[maybe_unused]] SemIR::InstBlockId implicit_params_id,
  567. SemIR::InstBlockId params_id, [[maybe_unused]] SemIR::InstId self_id,
  568. llvm::ArrayRef<SemIR::InstId> arg_ids) -> SemIR::SpecificId {
  569. DeductionContext deduction(&context, loc_id, generic_id,
  570. enclosing_specific_id, self_type_id,
  571. /*diagnose=*/true);
  572. // Prepare to perform deduction of the explicit parameters against their
  573. // arguments.
  574. // TODO: Also perform deduction for type of self.
  575. deduction.AddAll(params_id, arg_ids, /*needs_substitution=*/true);
  576. if (!deduction.Deduce() || !deduction.CheckDeductionIsComplete()) {
  577. return SemIR::SpecificId::None;
  578. }
  579. return deduction.MakeSpecific();
  580. }
  581. auto DeduceImplArguments(Context& context, SemIR::LocId loc_id, DeduceImpl impl,
  582. SemIR::ConstantId self_id,
  583. SemIR::SpecificId constraint_specific_id)
  584. -> SemIR::SpecificId {
  585. DeductionContext deduction(&context, loc_id, impl.generic_id,
  586. /*enclosing_specific_id=*/SemIR::SpecificId::None,
  587. /*self_type_id=*/SemIR::InstId::None,
  588. /*diagnose=*/false);
  589. // Prepare to perform deduction of the type and interface.
  590. deduction.Add(impl.self_id, context.constant_values().GetInstId(self_id),
  591. /*needs_substitution=*/false);
  592. deduction.Add(impl.specific_id, constraint_specific_id,
  593. /*needs_substitution=*/false);
  594. if (!deduction.Deduce() || !deduction.CheckDeductionIsComplete()) {
  595. return SemIR::SpecificId::None;
  596. }
  597. return deduction.MakeSpecific();
  598. }
  599. } // namespace Carbon::Check