llvm_backend_stmt.cpp 68 KB

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  1. void lb_build_constant_value_decl(lbProcedure *p, AstValueDecl *vd) {
  2. if (vd == nullptr || vd->is_mutable) {
  3. return;
  4. }
  5. auto *min_dep_set = &p->module->info->minimum_dependency_set;
  6. static i32 global_guid = 0;
  7. for_array(i, vd->names) {
  8. Ast *ident = vd->names[i];
  9. GB_ASSERT(ident->kind == Ast_Ident);
  10. Entity *e = entity_of_node(ident);
  11. GB_ASSERT(e != nullptr);
  12. if (e->kind != Entity_TypeName) {
  13. continue;
  14. }
  15. bool polymorphic_struct = false;
  16. if (e->type != nullptr && e->kind == Entity_TypeName) {
  17. Type *bt = base_type(e->type);
  18. if (bt->kind == Type_Struct) {
  19. polymorphic_struct = bt->Struct.is_polymorphic;
  20. }
  21. }
  22. if (!polymorphic_struct && !ptr_set_exists(min_dep_set, e)) {
  23. continue;
  24. }
  25. if (e->TypeName.ir_mangled_name.len != 0) {
  26. // NOTE(bill): Already set
  27. continue;
  28. }
  29. lb_set_nested_type_name_ir_mangled_name(e, p);
  30. }
  31. for_array(i, vd->names) {
  32. Ast *ident = vd->names[i];
  33. GB_ASSERT(ident->kind == Ast_Ident);
  34. Entity *e = entity_of_node(ident);
  35. GB_ASSERT(e != nullptr);
  36. if (e->kind != Entity_Procedure) {
  37. continue;
  38. }
  39. GB_ASSERT (vd->values[i] != nullptr);
  40. Ast *value = unparen_expr(vd->values[i]);
  41. if (value->kind != Ast_ProcLit) {
  42. continue; // It's an alias
  43. }
  44. CheckerInfo *info = p->module->info;
  45. DeclInfo *decl = decl_info_of_entity(e);
  46. ast_node(pl, ProcLit, decl->proc_lit);
  47. if (pl->body != nullptr) {
  48. auto *found = map_get(&info->gen_procs, ident);
  49. if (found) {
  50. auto procs = *found;
  51. for_array(i, procs) {
  52. Entity *e = procs[i];
  53. if (!ptr_set_exists(min_dep_set, e)) {
  54. continue;
  55. }
  56. DeclInfo *d = decl_info_of_entity(e);
  57. lb_build_nested_proc(p, &d->proc_lit->ProcLit, e);
  58. }
  59. } else {
  60. lb_build_nested_proc(p, pl, e);
  61. }
  62. } else {
  63. // FFI - Foreign function interace
  64. String original_name = e->token.string;
  65. String name = original_name;
  66. if (e->Procedure.is_foreign) {
  67. lb_add_foreign_library_path(p->module, e->Procedure.foreign_library);
  68. }
  69. if (e->Procedure.link_name.len > 0) {
  70. name = e->Procedure.link_name;
  71. }
  72. lbValue *prev_value = string_map_get(&p->module->members, name);
  73. if (prev_value != nullptr) {
  74. // NOTE(bill): Don't do mutliple declarations in the IR
  75. return;
  76. }
  77. e->Procedure.link_name = name;
  78. lbProcedure *nested_proc = lb_create_procedure(p->module, e);
  79. lbValue value = {};
  80. value.value = nested_proc->value;
  81. value.type = nested_proc->type;
  82. array_add(&p->module->procedures_to_generate, nested_proc);
  83. array_add(&p->children, nested_proc);
  84. string_map_set(&p->module->members, name, value);
  85. }
  86. }
  87. }
  88. void lb_build_stmt_list(lbProcedure *p, Slice<Ast *> const &stmts) {
  89. for_array(i, stmts) {
  90. Ast *stmt = stmts[i];
  91. switch (stmt->kind) {
  92. case_ast_node(vd, ValueDecl, stmt);
  93. lb_build_constant_value_decl(p, vd);
  94. case_end;
  95. case_ast_node(fb, ForeignBlockDecl, stmt);
  96. ast_node(block, BlockStmt, fb->body);
  97. lb_build_stmt_list(p, block->stmts);
  98. case_end;
  99. }
  100. }
  101. for_array(i, stmts) {
  102. lb_build_stmt(p, stmts[i]);
  103. }
  104. }
  105. lbBranchBlocks lb_lookup_branch_blocks(lbProcedure *p, Ast *ident) {
  106. GB_ASSERT(ident->kind == Ast_Ident);
  107. Entity *e = entity_of_node(ident);
  108. GB_ASSERT(e->kind == Entity_Label);
  109. for_array(i, p->branch_blocks) {
  110. lbBranchBlocks *b = &p->branch_blocks[i];
  111. if (b->label == e->Label.node) {
  112. return *b;
  113. }
  114. }
  115. GB_PANIC("Unreachable");
  116. lbBranchBlocks empty = {};
  117. return empty;
  118. }
  119. lbTargetList *lb_push_target_list(lbProcedure *p, Ast *label, lbBlock *break_, lbBlock *continue_, lbBlock *fallthrough_) {
  120. lbTargetList *tl = gb_alloc_item(permanent_allocator(), lbTargetList);
  121. tl->prev = p->target_list;
  122. tl->break_ = break_;
  123. tl->continue_ = continue_;
  124. tl->fallthrough_ = fallthrough_;
  125. p->target_list = tl;
  126. if (label != nullptr) { // Set label blocks
  127. GB_ASSERT(label->kind == Ast_Label);
  128. for_array(i, p->branch_blocks) {
  129. lbBranchBlocks *b = &p->branch_blocks[i];
  130. GB_ASSERT(b->label != nullptr && label != nullptr);
  131. GB_ASSERT(b->label->kind == Ast_Label);
  132. if (b->label == label) {
  133. b->break_ = break_;
  134. b->continue_ = continue_;
  135. return tl;
  136. }
  137. }
  138. GB_PANIC("Unreachable");
  139. }
  140. return tl;
  141. }
  142. void lb_pop_target_list(lbProcedure *p) {
  143. p->target_list = p->target_list->prev;
  144. }
  145. void lb_open_scope(lbProcedure *p, Scope *s) {
  146. lbModule *m = p->module;
  147. if (m->debug_builder) {
  148. LLVMMetadataRef curr_metadata = lb_get_llvm_metadata(m, s);
  149. if (s != nullptr && s->node != nullptr && curr_metadata == nullptr) {
  150. Token token = ast_token(s->node);
  151. unsigned line = cast(unsigned)token.pos.line;
  152. unsigned column = cast(unsigned)token.pos.column;
  153. LLVMMetadataRef file = nullptr;
  154. AstFile *ast_file = s->node->file();
  155. if (ast_file != nullptr) {
  156. file = lb_get_llvm_metadata(m, ast_file);
  157. }
  158. LLVMMetadataRef scope = nullptr;
  159. if (p->scope_stack.count > 0) {
  160. scope = lb_get_llvm_metadata(m, p->scope_stack[p->scope_stack.count-1]);
  161. }
  162. if (scope == nullptr) {
  163. scope = lb_get_llvm_metadata(m, p);
  164. }
  165. GB_ASSERT_MSG(scope != nullptr, "%.*s", LIT(p->name));
  166. if (m->debug_builder) {
  167. LLVMMetadataRef res = LLVMDIBuilderCreateLexicalBlock(m->debug_builder, scope,
  168. file, line, column
  169. );
  170. lb_set_llvm_metadata(m, s, res);
  171. }
  172. }
  173. }
  174. p->scope_index += 1;
  175. array_add(&p->scope_stack, s);
  176. }
  177. void lb_close_scope(lbProcedure *p, lbDeferExitKind kind, lbBlock *block, bool pop_stack=true) {
  178. lb_emit_defer_stmts(p, kind, block);
  179. GB_ASSERT(p->scope_index > 0);
  180. // NOTE(bill): Remove `context`s made in that scope
  181. while (p->context_stack.count > 0) {
  182. lbContextData *ctx = &p->context_stack[p->context_stack.count-1];
  183. if (ctx->scope_index >= p->scope_index) {
  184. array_pop(&p->context_stack);
  185. } else {
  186. break;
  187. }
  188. }
  189. p->scope_index -= 1;
  190. array_pop(&p->scope_stack);
  191. }
  192. void lb_build_when_stmt(lbProcedure *p, AstWhenStmt *ws) {
  193. TypeAndValue tv = type_and_value_of_expr(ws->cond);
  194. GB_ASSERT(is_type_boolean(tv.type));
  195. GB_ASSERT(tv.value.kind == ExactValue_Bool);
  196. if (tv.value.value_bool) {
  197. lb_build_stmt_list(p, ws->body->BlockStmt.stmts);
  198. } else if (ws->else_stmt) {
  199. switch (ws->else_stmt->kind) {
  200. case Ast_BlockStmt:
  201. lb_build_stmt_list(p, ws->else_stmt->BlockStmt.stmts);
  202. break;
  203. case Ast_WhenStmt:
  204. lb_build_when_stmt(p, &ws->else_stmt->WhenStmt);
  205. break;
  206. default:
  207. GB_PANIC("Invalid 'else' statement in 'when' statement");
  208. break;
  209. }
  210. }
  211. }
  212. void lb_build_range_indexed(lbProcedure *p, lbValue expr, Type *val_type, lbValue count_ptr,
  213. lbValue *val_, lbValue *idx_, lbBlock **loop_, lbBlock **done_) {
  214. lbModule *m = p->module;
  215. lbValue count = {};
  216. Type *expr_type = base_type(type_deref(expr.type));
  217. switch (expr_type->kind) {
  218. case Type_Array:
  219. count = lb_const_int(m, t_int, expr_type->Array.count);
  220. break;
  221. }
  222. lbValue val = {};
  223. lbValue idx = {};
  224. lbBlock *loop = nullptr;
  225. lbBlock *done = nullptr;
  226. lbBlock *body = nullptr;
  227. lbAddr index = lb_add_local_generated(p, t_int, false);
  228. lb_addr_store(p, index, lb_const_int(m, t_int, cast(u64)-1));
  229. loop = lb_create_block(p, "for.index.loop");
  230. lb_emit_jump(p, loop);
  231. lb_start_block(p, loop);
  232. lbValue incr = lb_emit_arith(p, Token_Add, lb_addr_load(p, index), lb_const_int(m, t_int, 1), t_int);
  233. lb_addr_store(p, index, incr);
  234. body = lb_create_block(p, "for.index.body");
  235. done = lb_create_block(p, "for.index.done");
  236. if (count.value == nullptr) {
  237. GB_ASSERT(count_ptr.value != nullptr);
  238. count = lb_emit_load(p, count_ptr);
  239. }
  240. lbValue cond = lb_emit_comp(p, Token_Lt, incr, count);
  241. lb_emit_if(p, cond, body, done);
  242. lb_start_block(p, body);
  243. idx = lb_addr_load(p, index);
  244. switch (expr_type->kind) {
  245. case Type_Array: {
  246. if (val_type != nullptr) {
  247. val = lb_emit_load(p, lb_emit_array_ep(p, expr, idx));
  248. }
  249. break;
  250. }
  251. case Type_EnumeratedArray: {
  252. if (val_type != nullptr) {
  253. val = lb_emit_load(p, lb_emit_array_ep(p, expr, idx));
  254. // NOTE(bill): Override the idx value for the enumeration
  255. Type *index_type = expr_type->EnumeratedArray.index;
  256. if (compare_exact_values(Token_NotEq, *expr_type->EnumeratedArray.min_value, exact_value_u64(0))) {
  257. idx = lb_emit_arith(p, Token_Add, idx, lb_const_value(m, index_type, *expr_type->EnumeratedArray.min_value), index_type);
  258. }
  259. }
  260. break;
  261. }
  262. case Type_Slice: {
  263. if (val_type != nullptr) {
  264. lbValue elem = lb_slice_elem(p, expr);
  265. val = lb_emit_load(p, lb_emit_ptr_offset(p, elem, idx));
  266. }
  267. break;
  268. }
  269. case Type_DynamicArray: {
  270. if (val_type != nullptr) {
  271. lbValue elem = lb_emit_struct_ep(p, expr, 0);
  272. elem = lb_emit_load(p, elem);
  273. val = lb_emit_load(p, lb_emit_ptr_offset(p, elem, idx));
  274. }
  275. break;
  276. }
  277. case Type_Struct: {
  278. GB_ASSERT(is_type_soa_struct(expr_type));
  279. break;
  280. }
  281. default:
  282. GB_PANIC("Cannot do range_indexed of %s", type_to_string(expr_type));
  283. break;
  284. }
  285. if (val_) *val_ = val;
  286. if (idx_) *idx_ = idx;
  287. if (loop_) *loop_ = loop;
  288. if (done_) *done_ = done;
  289. }
  290. lbValue lb_map_cell_index_static(lbProcedure *p, Type *type, lbValue cells_ptr, lbValue index) {
  291. i64 size, len;
  292. i64 elem_sz = type_size_of(type);
  293. map_cell_size_and_len(type, &size, &len);
  294. index = lb_emit_conv(p, index, t_uintptr);
  295. if (size == len*elem_sz) {
  296. lbValue elems_ptr = lb_emit_conv(p, cells_ptr, alloc_type_pointer(type));
  297. return lb_emit_ptr_offset(p, elems_ptr, index);
  298. }
  299. lbValue cell_index = {};
  300. lbValue data_index = {};
  301. lbValue size_const = lb_const_int(p->module, t_uintptr, size);
  302. lbValue len_const = lb_const_int(p->module, t_uintptr, len);
  303. if (is_power_of_two(len)) {
  304. u64 log2_len = floor_log2(cast(u64)len);
  305. cell_index = log2_len == 0 ? index : lb_emit_arith(p, Token_Shr, index, lb_const_int(p->module, t_uintptr, log2_len), t_uintptr);
  306. data_index = lb_emit_arith(p, Token_And, index, lb_const_int(p->module, t_uintptr, len-1), t_uintptr);
  307. } else {
  308. cell_index = lb_emit_arith(p, Token_Quo, index, len_const, t_uintptr);
  309. data_index = lb_emit_arith(p, Token_Mod, index, len_const, t_uintptr);
  310. }
  311. lbValue elems_ptr = lb_emit_conv(p, cells_ptr, t_uintptr);
  312. lbValue cell_offset = lb_emit_arith(p, Token_Mul, size_const, cell_index, t_uintptr);
  313. elems_ptr = lb_emit_arith(p, Token_Add, elems_ptr, cell_offset, t_uintptr);
  314. elems_ptr = lb_emit_conv(p, elems_ptr, alloc_type_pointer(type));
  315. return lb_emit_ptr_offset(p, elems_ptr, data_index);
  316. }
  317. void lb_map_kvh_data_static(lbProcedure *p, lbValue map_value, lbValue *ks_, lbValue *vs_, lbValue *hs_) {
  318. lbValue capacity = lb_map_cap(p, map_value);
  319. lbValue ks = lb_map_data_uintptr(p, map_value);
  320. lbValue vs = {};
  321. lbValue hs = {};
  322. if (ks_) *ks_ = ks;
  323. if (vs_) *vs_ = vs;
  324. if (hs_) *hs_ = hs;
  325. }
  326. lbValue lb_map_hash_is_valid(lbProcedure *p, lbValue hash) {
  327. // N :: size_of(uintptr)*8 - 1
  328. // (hash != 0) & (hash>>N == 0)
  329. u64 top_bit_index = cast(u64)(type_size_of(t_uintptr)*8 - 1);
  330. lbValue shift_amount = lb_const_int(p->module, t_uintptr, top_bit_index);
  331. lbValue zero = lb_const_int(p->module, t_uintptr, 0);
  332. lbValue not_empty = lb_emit_comp(p, Token_NotEq, hash, zero);
  333. lbValue not_deleted = lb_emit_arith(p, Token_Shr, hash, shift_amount, t_uintptr);
  334. not_deleted = lb_emit_comp(p, Token_CmpEq, not_deleted, zero);
  335. return lb_emit_arith(p, Token_And, not_deleted, not_empty, t_uintptr);
  336. }
  337. void lb_build_range_map(lbProcedure *p, lbValue expr, Type *val_type,
  338. lbValue *val_, lbValue *key_, lbBlock **loop_, lbBlock **done_) {
  339. lbModule *m = p->module;
  340. Type *type = base_type(type_deref(expr.type));
  341. GB_ASSERT(type->kind == Type_Map);
  342. lbValue idx = {};
  343. lbBlock *loop = nullptr;
  344. lbBlock *done = nullptr;
  345. lbBlock *body = nullptr;
  346. lbBlock *hash_check = nullptr;
  347. lbAddr index = lb_add_local_generated(p, t_int, false);
  348. lb_addr_store(p, index, lb_const_int(m, t_int, cast(u64)-1));
  349. loop = lb_create_block(p, "for.index.loop");
  350. lb_emit_jump(p, loop);
  351. lb_start_block(p, loop);
  352. lbValue incr = lb_emit_arith(p, Token_Add, lb_addr_load(p, index), lb_const_int(m, t_int, 1), t_int);
  353. lb_addr_store(p, index, incr);
  354. hash_check = lb_create_block(p, "for.index.hash_check");
  355. body = lb_create_block(p, "for.index.body");
  356. done = lb_create_block(p, "for.index.done");
  357. lbValue map_value = lb_emit_load(p, expr);
  358. lbValue capacity = lb_map_cap(p, map_value);
  359. lbValue cond = lb_emit_comp(p, Token_Lt, incr, capacity);
  360. lb_emit_if(p, cond, hash_check, done);
  361. lb_start_block(p, hash_check);
  362. idx = lb_addr_load(p, index);
  363. lbValue ks = lb_map_data_uintptr(p, map_value);
  364. lbValue vs = lb_emit_conv(p, lb_map_cell_index_static(p, type->Map.key, ks, capacity), alloc_type_pointer(type->Map.value));
  365. lbValue hs = lb_emit_conv(p, lb_map_cell_index_static(p, type->Map.value, vs, capacity), alloc_type_pointer(t_uintptr));
  366. // NOTE(bill): no need to use lb_map_cell_index_static for that hashes
  367. // since it will always be packed without padding into the cells
  368. lbValue hash = lb_emit_load(p, lb_emit_ptr_offset(p, hs, idx));
  369. lbValue hash_cond = lb_map_hash_is_valid(p, hash);
  370. lb_emit_if(p, hash_cond, body, loop);
  371. lb_start_block(p, body);
  372. lbValue key_ptr = lb_map_cell_index_static(p, type->Map.key, ks, idx);
  373. lbValue val_ptr = lb_map_cell_index_static(p, type->Map.value, vs, idx);
  374. lbValue key = lb_emit_load(p, key_ptr);
  375. lbValue val = lb_emit_load(p, val_ptr);
  376. if (val_) *val_ = val;
  377. if (key_) *key_ = key;
  378. if (loop_) *loop_ = loop;
  379. if (done_) *done_ = done;
  380. }
  381. void lb_build_range_string(lbProcedure *p, lbValue expr, Type *val_type,
  382. lbValue *val_, lbValue *idx_, lbBlock **loop_, lbBlock **done_) {
  383. lbModule *m = p->module;
  384. lbValue count = lb_const_int(m, t_int, 0);
  385. Type *expr_type = base_type(expr.type);
  386. switch (expr_type->kind) {
  387. case Type_Basic:
  388. count = lb_string_len(p, expr);
  389. break;
  390. default:
  391. GB_PANIC("Cannot do range_string of %s", type_to_string(expr_type));
  392. break;
  393. }
  394. lbValue val = {};
  395. lbValue idx = {};
  396. lbBlock *loop = nullptr;
  397. lbBlock *done = nullptr;
  398. lbBlock *body = nullptr;
  399. lbAddr offset_ = lb_add_local_generated(p, t_int, false);
  400. lb_addr_store(p, offset_, lb_const_int(m, t_int, 0));
  401. loop = lb_create_block(p, "for.string.loop");
  402. lb_emit_jump(p, loop);
  403. lb_start_block(p, loop);
  404. body = lb_create_block(p, "for.string.body");
  405. done = lb_create_block(p, "for.string.done");
  406. lbValue offset = lb_addr_load(p, offset_);
  407. lbValue cond = lb_emit_comp(p, Token_Lt, offset, count);
  408. lb_emit_if(p, cond, body, done);
  409. lb_start_block(p, body);
  410. lbValue str_elem = lb_emit_ptr_offset(p, lb_string_elem(p, expr), offset);
  411. lbValue str_len = lb_emit_arith(p, Token_Sub, count, offset, t_int);
  412. auto args = array_make<lbValue>(permanent_allocator(), 1);
  413. args[0] = lb_emit_string(p, str_elem, str_len);
  414. lbValue rune_and_len = lb_emit_runtime_call(p, "string_decode_rune", args);
  415. lbValue len = lb_emit_struct_ev(p, rune_and_len, 1);
  416. lb_addr_store(p, offset_, lb_emit_arith(p, Token_Add, offset, len, t_int));
  417. idx = offset;
  418. if (val_type != nullptr) {
  419. val = lb_emit_struct_ev(p, rune_and_len, 0);
  420. }
  421. if (val_) *val_ = val;
  422. if (idx_) *idx_ = idx;
  423. if (loop_) *loop_ = loop;
  424. if (done_) *done_ = done;
  425. }
  426. void lb_build_range_interval(lbProcedure *p, AstBinaryExpr *node,
  427. AstRangeStmt *rs, Scope *scope) {
  428. bool ADD_EXTRA_WRAPPING_CHECK = true;
  429. lbModule *m = p->module;
  430. lb_open_scope(p, scope);
  431. Type *val0_type = nullptr;
  432. Type *val1_type = nullptr;
  433. if (rs->vals.count > 0 && rs->vals[0] != nullptr && !is_blank_ident(rs->vals[0])) {
  434. val0_type = type_of_expr(rs->vals[0]);
  435. }
  436. if (rs->vals.count > 1 && rs->vals[1] != nullptr && !is_blank_ident(rs->vals[1])) {
  437. val1_type = type_of_expr(rs->vals[1]);
  438. }
  439. TokenKind op = Token_Lt;
  440. switch (node->op.kind) {
  441. case Token_Ellipsis: op = Token_LtEq; break;
  442. case Token_RangeFull: op = Token_LtEq; break;
  443. case Token_RangeHalf: op = Token_Lt; break;
  444. default: GB_PANIC("Invalid interval operator"); break;
  445. }
  446. lbValue lower = lb_build_expr(p, node->left);
  447. lbValue upper = {}; // initialized each time in the loop
  448. lbAddr value;
  449. if (val0_type != nullptr) {
  450. Entity *e = entity_of_node(rs->vals[0]);
  451. value = lb_add_local(p, val0_type, e, false);
  452. } else {
  453. value = lb_add_local_generated(p, lower.type, false);
  454. }
  455. lb_addr_store(p, value, lower);
  456. lbAddr index;
  457. if (val1_type != nullptr) {
  458. Entity *e = entity_of_node(rs->vals[1]);
  459. index = lb_add_local(p, val1_type, e, false);
  460. } else {
  461. index = lb_add_local_generated(p, t_int, false);
  462. }
  463. lb_addr_store(p, index, lb_const_int(m, t_int, 0));
  464. lbBlock *loop = lb_create_block(p, "for.interval.loop");
  465. lbBlock *body = lb_create_block(p, "for.interval.body");
  466. lbBlock *done = lb_create_block(p, "for.interval.done");
  467. lb_emit_jump(p, loop);
  468. lb_start_block(p, loop);
  469. upper = lb_build_expr(p, node->right);
  470. lbValue curr_value = lb_addr_load(p, value);
  471. lbValue cond = lb_emit_comp(p, op, curr_value, upper);
  472. lb_emit_if(p, cond, body, done);
  473. lb_start_block(p, body);
  474. lbValue val = lb_addr_load(p, value);
  475. lbValue idx = lb_addr_load(p, index);
  476. if (val0_type) lb_store_range_stmt_val(p, rs->vals[0], val);
  477. if (val1_type) lb_store_range_stmt_val(p, rs->vals[1], idx);
  478. {
  479. // NOTE: this check block will most likely be optimized out, and is here
  480. // to make this code easier to read
  481. lbBlock *check = nullptr;
  482. lbBlock *post = lb_create_block(p, "for.interval.post");
  483. lbBlock *continue_block = post;
  484. if (ADD_EXTRA_WRAPPING_CHECK &&
  485. op == Token_LtEq) {
  486. check = lb_create_block(p, "for.interval.check");
  487. continue_block = check;
  488. }
  489. lb_push_target_list(p, rs->label, done, continue_block, nullptr);
  490. lb_build_stmt(p, rs->body);
  491. lb_close_scope(p, lbDeferExit_Default, nullptr);
  492. lb_pop_target_list(p);
  493. if (check != nullptr) {
  494. lb_emit_jump(p, check);
  495. lb_start_block(p, check);
  496. lbValue check_cond = lb_emit_comp(p, Token_NotEq, curr_value, upper);
  497. lb_emit_if(p, check_cond, post, done);
  498. } else {
  499. lb_emit_jump(p, post);
  500. }
  501. lb_start_block(p, post);
  502. lb_emit_increment(p, value.addr);
  503. lb_emit_increment(p, index.addr);
  504. lb_emit_jump(p, loop);
  505. }
  506. lb_start_block(p, done);
  507. }
  508. void lb_build_range_enum(lbProcedure *p, Type *enum_type, Type *val_type, lbValue *val_, lbValue *idx_, lbBlock **loop_, lbBlock **done_) {
  509. lbModule *m = p->module;
  510. Type *t = enum_type;
  511. GB_ASSERT(is_type_enum(t));
  512. t = base_type(t);
  513. Type *core_elem = core_type(t);
  514. GB_ASSERT(t->kind == Type_Enum);
  515. i64 enum_count = t->Enum.fields.count;
  516. lbValue max_count = lb_const_int(m, t_int, enum_count);
  517. lbValue ti = lb_type_info(m, t);
  518. lbValue variant = lb_emit_struct_ep(p, ti, 4);
  519. lbValue eti_ptr = lb_emit_conv(p, variant, t_type_info_enum_ptr);
  520. lbValue values = lb_emit_load(p, lb_emit_struct_ep(p, eti_ptr, 2));
  521. lbValue values_data = lb_slice_elem(p, values);
  522. lbAddr offset_ = lb_add_local_generated(p, t_int, false);
  523. lb_addr_store(p, offset_, lb_const_int(m, t_int, 0));
  524. lbBlock *loop = lb_create_block(p, "for.enum.loop");
  525. lb_emit_jump(p, loop);
  526. lb_start_block(p, loop);
  527. lbBlock *body = lb_create_block(p, "for.enum.body");
  528. lbBlock *done = lb_create_block(p, "for.enum.done");
  529. lbValue offset = lb_addr_load(p, offset_);
  530. lbValue cond = lb_emit_comp(p, Token_Lt, offset, max_count);
  531. lb_emit_if(p, cond, body, done);
  532. lb_start_block(p, body);
  533. lbValue val_ptr = lb_emit_ptr_offset(p, values_data, offset);
  534. lb_emit_increment(p, offset_.addr);
  535. lbValue val = {};
  536. if (val_type != nullptr) {
  537. GB_ASSERT(are_types_identical(enum_type, val_type));
  538. if (is_type_integer(core_elem)) {
  539. lbValue i = lb_emit_load(p, lb_emit_conv(p, val_ptr, t_i64_ptr));
  540. val = lb_emit_conv(p, i, t);
  541. } else {
  542. GB_PANIC("TODO(bill): enum core type %s", type_to_string(core_elem));
  543. }
  544. }
  545. if (val_) *val_ = val;
  546. if (idx_) *idx_ = offset;
  547. if (loop_) *loop_ = loop;
  548. if (done_) *done_ = done;
  549. }
  550. void lb_build_range_tuple(lbProcedure *p, Ast *expr, Type *val0_type, Type *val1_type,
  551. lbValue *val0_, lbValue *val1_, lbBlock **loop_, lbBlock **done_) {
  552. lbBlock *loop = lb_create_block(p, "for.tuple.loop");
  553. lb_emit_jump(p, loop);
  554. lb_start_block(p, loop);
  555. lbBlock *body = lb_create_block(p, "for.tuple.body");
  556. lbBlock *done = lb_create_block(p, "for.tuple.done");
  557. lbValue tuple_value = lb_build_expr(p, expr);
  558. Type *tuple = tuple_value.type;
  559. GB_ASSERT(tuple->kind == Type_Tuple);
  560. i32 tuple_count = cast(i32)tuple->Tuple.variables.count;
  561. i32 cond_index = tuple_count-1;
  562. lbValue cond = lb_emit_tuple_ev(p, tuple_value, cond_index);
  563. lb_emit_if(p, cond, body, done);
  564. lb_start_block(p, body);
  565. if (val0_) *val0_ = lb_emit_tuple_ev(p, tuple_value, 0);
  566. if (val1_) *val1_ = lb_emit_tuple_ev(p, tuple_value, 1);
  567. if (loop_) *loop_ = loop;
  568. if (done_) *done_ = done;
  569. }
  570. void lb_build_range_stmt_struct_soa(lbProcedure *p, AstRangeStmt *rs, Scope *scope) {
  571. Ast *expr = unparen_expr(rs->expr);
  572. TypeAndValue tav = type_and_value_of_expr(expr);
  573. lbBlock *loop = nullptr;
  574. lbBlock *body = nullptr;
  575. lbBlock *done = nullptr;
  576. lb_open_scope(p, scope);
  577. Type *val_types[2] = {};
  578. if (rs->vals.count > 0 && rs->vals[0] != nullptr && !is_blank_ident(rs->vals[0])) {
  579. val_types[0] = type_of_expr(rs->vals[0]);
  580. }
  581. if (rs->vals.count > 1 && rs->vals[1] != nullptr && !is_blank_ident(rs->vals[1])) {
  582. val_types[1] = type_of_expr(rs->vals[1]);
  583. }
  584. lbAddr array = lb_build_addr(p, expr);
  585. if (is_type_pointer(lb_addr_type(array))) {
  586. array = lb_addr(lb_addr_load(p, array));
  587. }
  588. lbValue count = lb_soa_struct_len(p, lb_addr_load(p, array));
  589. lbAddr index = lb_add_local_generated(p, t_int, false);
  590. lb_addr_store(p, index, lb_const_int(p->module, t_int, cast(u64)-1));
  591. loop = lb_create_block(p, "for.soa.loop");
  592. lb_emit_jump(p, loop);
  593. lb_start_block(p, loop);
  594. lbValue incr = lb_emit_arith(p, Token_Add, lb_addr_load(p, index), lb_const_int(p->module, t_int, 1), t_int);
  595. lb_addr_store(p, index, incr);
  596. body = lb_create_block(p, "for.soa.body");
  597. done = lb_create_block(p, "for.soa.done");
  598. lbValue cond = lb_emit_comp(p, Token_Lt, incr, count);
  599. lb_emit_if(p, cond, body, done);
  600. lb_start_block(p, body);
  601. if (val_types[0]) {
  602. Entity *e = entity_of_node(rs->vals[0]);
  603. if (e != nullptr) {
  604. lbAddr soa_val = lb_addr_soa_variable(array.addr, lb_addr_load(p, index), nullptr);
  605. map_set(&p->module->soa_values, e, soa_val);
  606. }
  607. }
  608. if (val_types[1]) {
  609. lb_store_range_stmt_val(p, rs->vals[1], lb_addr_load(p, index));
  610. }
  611. lb_push_target_list(p, rs->label, done, loop, nullptr);
  612. lb_build_stmt(p, rs->body);
  613. lb_close_scope(p, lbDeferExit_Default, nullptr);
  614. lb_pop_target_list(p);
  615. lb_emit_jump(p, loop);
  616. lb_start_block(p, done);
  617. }
  618. void lb_build_range_stmt(lbProcedure *p, AstRangeStmt *rs, Scope *scope) {
  619. Ast *expr = unparen_expr(rs->expr);
  620. if (is_ast_range(expr)) {
  621. lb_build_range_interval(p, &expr->BinaryExpr, rs, scope);
  622. return;
  623. }
  624. Type *expr_type = type_of_expr(expr);
  625. if (expr_type != nullptr) {
  626. Type *et = base_type(type_deref(expr_type));
  627. if (is_type_soa_struct(et)) {
  628. lb_build_range_stmt_struct_soa(p, rs, scope);
  629. return;
  630. }
  631. }
  632. lb_open_scope(p, scope);
  633. Type *val0_type = nullptr;
  634. Type *val1_type = nullptr;
  635. if (rs->vals.count > 0 && rs->vals[0] != nullptr && !is_blank_ident(rs->vals[0])) {
  636. val0_type = type_of_expr(rs->vals[0]);
  637. }
  638. if (rs->vals.count > 1 && rs->vals[1] != nullptr && !is_blank_ident(rs->vals[1])) {
  639. val1_type = type_of_expr(rs->vals[1]);
  640. }
  641. if (val0_type != nullptr) {
  642. Entity *e = entity_of_node(rs->vals[0]);
  643. lb_add_local(p, e->type, e, true);
  644. }
  645. if (val1_type != nullptr) {
  646. Entity *e = entity_of_node(rs->vals[1]);
  647. lb_add_local(p, e->type, e, true);
  648. }
  649. lbValue val = {};
  650. lbValue key = {};
  651. lbBlock *loop = nullptr;
  652. lbBlock *done = nullptr;
  653. bool is_map = false;
  654. TypeAndValue tav = type_and_value_of_expr(expr);
  655. if (tav.mode == Addressing_Type) {
  656. lb_build_range_enum(p, type_deref(tav.type), val0_type, &val, &key, &loop, &done);
  657. } else {
  658. Type *expr_type = type_of_expr(expr);
  659. Type *et = base_type(type_deref(expr_type));
  660. switch (et->kind) {
  661. case Type_Map: {
  662. is_map = true;
  663. lbValue map = lb_build_addr_ptr(p, expr);
  664. if (is_type_pointer(type_deref(map.type))) {
  665. map = lb_emit_load(p, map);
  666. }
  667. lb_build_range_map(p, map, val1_type, &val, &key, &loop, &done);
  668. break;
  669. }
  670. case Type_Array: {
  671. lbValue array = lb_build_addr_ptr(p, expr);
  672. if (is_type_pointer(type_deref(array.type))) {
  673. array = lb_emit_load(p, array);
  674. }
  675. lbAddr count_ptr = lb_add_local_generated(p, t_int, false);
  676. lb_addr_store(p, count_ptr, lb_const_int(p->module, t_int, et->Array.count));
  677. lb_build_range_indexed(p, array, val0_type, count_ptr.addr, &val, &key, &loop, &done);
  678. break;
  679. }
  680. case Type_EnumeratedArray: {
  681. lbValue array = lb_build_addr_ptr(p, expr);
  682. if (is_type_pointer(type_deref(array.type))) {
  683. array = lb_emit_load(p, array);
  684. }
  685. lbAddr count_ptr = lb_add_local_generated(p, t_int, false);
  686. lb_addr_store(p, count_ptr, lb_const_int(p->module, t_int, et->EnumeratedArray.count));
  687. lb_build_range_indexed(p, array, val0_type, count_ptr.addr, &val, &key, &loop, &done);
  688. break;
  689. }
  690. case Type_DynamicArray: {
  691. lbValue count_ptr = {};
  692. lbValue array = lb_build_addr_ptr(p, expr);
  693. if (is_type_pointer(type_deref(array.type))) {
  694. array = lb_emit_load(p, array);
  695. }
  696. count_ptr = lb_emit_struct_ep(p, array, 1);
  697. lb_build_range_indexed(p, array, val0_type, count_ptr, &val, &key, &loop, &done);
  698. break;
  699. }
  700. case Type_Slice: {
  701. lbValue count_ptr = {};
  702. lbValue slice = lb_build_expr(p, expr);
  703. if (is_type_pointer(slice.type)) {
  704. count_ptr = lb_emit_struct_ep(p, slice, 1);
  705. slice = lb_emit_load(p, slice);
  706. } else {
  707. count_ptr = lb_add_local_generated(p, t_int, false).addr;
  708. lb_emit_store(p, count_ptr, lb_slice_len(p, slice));
  709. }
  710. lb_build_range_indexed(p, slice, val0_type, count_ptr, &val, &key, &loop, &done);
  711. break;
  712. }
  713. case Type_Basic: {
  714. lbValue string = lb_build_expr(p, expr);
  715. if (is_type_pointer(string.type)) {
  716. string = lb_emit_load(p, string);
  717. }
  718. if (is_type_untyped(expr_type)) {
  719. lbAddr s = lb_add_local_generated(p, default_type(string.type), false);
  720. lb_addr_store(p, s, string);
  721. string = lb_addr_load(p, s);
  722. }
  723. Type *t = base_type(string.type);
  724. GB_ASSERT(!is_type_cstring(t));
  725. lb_build_range_string(p, string, val0_type, &val, &key, &loop, &done);
  726. break;
  727. }
  728. case Type_Tuple:
  729. lb_build_range_tuple(p, expr, val0_type, val1_type, &val, &key, &loop, &done);
  730. break;
  731. default:
  732. GB_PANIC("Cannot range over %s", type_to_string(expr_type));
  733. break;
  734. }
  735. }
  736. if (is_map) {
  737. if (val0_type) lb_store_range_stmt_val(p, rs->vals[0], key);
  738. if (val1_type) lb_store_range_stmt_val(p, rs->vals[1], val);
  739. } else {
  740. if (val0_type) lb_store_range_stmt_val(p, rs->vals[0], val);
  741. if (val1_type) lb_store_range_stmt_val(p, rs->vals[1], key);
  742. }
  743. lb_push_target_list(p, rs->label, done, loop, nullptr);
  744. lb_build_stmt(p, rs->body);
  745. lb_close_scope(p, lbDeferExit_Default, nullptr);
  746. lb_pop_target_list(p);
  747. lb_emit_jump(p, loop);
  748. lb_start_block(p, done);
  749. }
  750. void lb_build_unroll_range_stmt(lbProcedure *p, AstUnrollRangeStmt *rs, Scope *scope) {
  751. lbModule *m = p->module;
  752. lb_open_scope(p, scope); // Open scope here
  753. Type *val0_type = nullptr;
  754. Type *val1_type = nullptr;
  755. if (rs->val0 != nullptr && !is_blank_ident(rs->val0)) {
  756. val0_type = type_of_expr(rs->val0);
  757. }
  758. if (rs->val1 != nullptr && !is_blank_ident(rs->val1)) {
  759. val1_type = type_of_expr(rs->val1);
  760. }
  761. if (val0_type != nullptr) {
  762. Entity *e = entity_of_node(rs->val0);
  763. lb_add_local(p, e->type, e, true);
  764. }
  765. if (val1_type != nullptr) {
  766. Entity *e = entity_of_node(rs->val1);
  767. lb_add_local(p, e->type, e, true);
  768. }
  769. lbValue val = {};
  770. lbValue key = {};
  771. Ast *expr = unparen_expr(rs->expr);
  772. TypeAndValue tav = type_and_value_of_expr(expr);
  773. if (is_ast_range(expr)) {
  774. lbAddr val0_addr = {};
  775. lbAddr val1_addr = {};
  776. if (val0_type) val0_addr = lb_build_addr(p, rs->val0);
  777. if (val1_type) val1_addr = lb_build_addr(p, rs->val1);
  778. TokenKind op = expr->BinaryExpr.op.kind;
  779. Ast *start_expr = expr->BinaryExpr.left;
  780. Ast *end_expr = expr->BinaryExpr.right;
  781. GB_ASSERT(start_expr->tav.mode == Addressing_Constant);
  782. GB_ASSERT(end_expr->tav.mode == Addressing_Constant);
  783. ExactValue start = start_expr->tav.value;
  784. ExactValue end = end_expr->tav.value;
  785. if (op != Token_RangeHalf) { // .. [start, end] (or ..=)
  786. ExactValue index = exact_value_i64(0);
  787. for (ExactValue val = start;
  788. compare_exact_values(Token_LtEq, val, end);
  789. val = exact_value_increment_one(val), index = exact_value_increment_one(index)) {
  790. if (val0_type) lb_addr_store(p, val0_addr, lb_const_value(m, val0_type, val));
  791. if (val1_type) lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, index));
  792. lb_build_stmt(p, rs->body);
  793. }
  794. } else { // ..< [start, end)
  795. ExactValue index = exact_value_i64(0);
  796. for (ExactValue val = start;
  797. compare_exact_values(Token_Lt, val, end);
  798. val = exact_value_increment_one(val), index = exact_value_increment_one(index)) {
  799. if (val0_type) lb_addr_store(p, val0_addr, lb_const_value(m, val0_type, val));
  800. if (val1_type) lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, index));
  801. lb_build_stmt(p, rs->body);
  802. }
  803. }
  804. } else if (tav.mode == Addressing_Type) {
  805. GB_ASSERT(is_type_enum(type_deref(tav.type)));
  806. Type *et = type_deref(tav.type);
  807. Type *bet = base_type(et);
  808. lbAddr val0_addr = {};
  809. lbAddr val1_addr = {};
  810. if (val0_type) val0_addr = lb_build_addr(p, rs->val0);
  811. if (val1_type) val1_addr = lb_build_addr(p, rs->val1);
  812. for_array(i, bet->Enum.fields) {
  813. Entity *field = bet->Enum.fields[i];
  814. GB_ASSERT(field->kind == Entity_Constant);
  815. if (val0_type) lb_addr_store(p, val0_addr, lb_const_value(m, val0_type, field->Constant.value));
  816. if (val1_type) lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, exact_value_i64(i)));
  817. lb_build_stmt(p, rs->body);
  818. }
  819. } else {
  820. lbAddr val0_addr = {};
  821. lbAddr val1_addr = {};
  822. if (val0_type) val0_addr = lb_build_addr(p, rs->val0);
  823. if (val1_type) val1_addr = lb_build_addr(p, rs->val1);
  824. GB_ASSERT(expr->tav.mode == Addressing_Constant);
  825. Type *t = base_type(expr->tav.type);
  826. switch (t->kind) {
  827. case Type_Basic:
  828. GB_ASSERT(is_type_string(t));
  829. {
  830. ExactValue value = expr->tav.value;
  831. GB_ASSERT(value.kind == ExactValue_String);
  832. String str = value.value_string;
  833. Rune codepoint = 0;
  834. isize offset = 0;
  835. do {
  836. isize width = utf8_decode(str.text+offset, str.len-offset, &codepoint);
  837. if (val0_type) lb_addr_store(p, val0_addr, lb_const_value(m, val0_type, exact_value_i64(codepoint)));
  838. if (val1_type) lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, exact_value_i64(offset)));
  839. lb_build_stmt(p, rs->body);
  840. offset += width;
  841. } while (offset < str.len);
  842. }
  843. break;
  844. case Type_Array:
  845. if (t->Array.count > 0) {
  846. lbValue val = lb_build_expr(p, expr);
  847. lbValue val_addr = lb_address_from_load_or_generate_local(p, val);
  848. for (i64 i = 0; i < t->Array.count; i++) {
  849. if (val0_type) {
  850. // NOTE(bill): Due to weird legacy issues in LLVM, this needs to be an i32
  851. lbValue elem = lb_emit_array_epi(p, val_addr, cast(i32)i);
  852. lb_addr_store(p, val0_addr, lb_emit_load(p, elem));
  853. }
  854. if (val1_type) lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, exact_value_i64(i)));
  855. lb_build_stmt(p, rs->body);
  856. }
  857. }
  858. break;
  859. case Type_EnumeratedArray:
  860. if (t->EnumeratedArray.count > 0) {
  861. lbValue val = lb_build_expr(p, expr);
  862. lbValue val_addr = lb_address_from_load_or_generate_local(p, val);
  863. for (i64 i = 0; i < t->EnumeratedArray.count; i++) {
  864. if (val0_type) {
  865. // NOTE(bill): Due to weird legacy issues in LLVM, this needs to be an i32
  866. lbValue elem = lb_emit_array_epi(p, val_addr, cast(i32)i);
  867. lb_addr_store(p, val0_addr, lb_emit_load(p, elem));
  868. }
  869. if (val1_type) {
  870. ExactValue idx = exact_value_add(exact_value_i64(i), *t->EnumeratedArray.min_value);
  871. lb_addr_store(p, val1_addr, lb_const_value(m, val1_type, idx));
  872. }
  873. lb_build_stmt(p, rs->body);
  874. }
  875. }
  876. break;
  877. default:
  878. GB_PANIC("Invalid '#unroll for' type");
  879. break;
  880. }
  881. }
  882. lb_close_scope(p, lbDeferExit_Default, nullptr);
  883. }
  884. bool lb_switch_stmt_can_be_trivial_jump_table(AstSwitchStmt *ss, bool *default_found_) {
  885. if (ss->tag == nullptr) {
  886. return false;
  887. }
  888. bool is_typeid = false;
  889. TypeAndValue tv = type_and_value_of_expr(ss->tag);
  890. if (is_type_integer(core_type(tv.type))) {
  891. // okay
  892. } else if (is_type_typeid(tv.type)) {
  893. // okay
  894. is_typeid = true;
  895. } else {
  896. return false;
  897. }
  898. ast_node(body, BlockStmt, ss->body);
  899. for_array(i, body->stmts) {
  900. Ast *clause = body->stmts[i];
  901. ast_node(cc, CaseClause, clause);
  902. if (cc->list.count == 0) {
  903. if (default_found_) *default_found_ = true;
  904. continue;
  905. }
  906. for_array(j, cc->list) {
  907. Ast *expr = unparen_expr(cc->list[j]);
  908. if (is_ast_range(expr)) {
  909. return false;
  910. }
  911. if (expr->tav.mode == Addressing_Type) {
  912. GB_ASSERT(is_typeid);
  913. continue;
  914. }
  915. tv = type_and_value_of_expr(expr);
  916. if (tv.mode != Addressing_Constant) {
  917. return false;
  918. }
  919. if (!is_type_integer(core_type(tv.type))) {
  920. return false;
  921. }
  922. }
  923. }
  924. return true;
  925. }
  926. void lb_build_switch_stmt(lbProcedure *p, AstSwitchStmt *ss, Scope *scope) {
  927. lb_open_scope(p, scope);
  928. if (ss->init != nullptr) {
  929. lb_build_stmt(p, ss->init);
  930. }
  931. lbValue tag = lb_const_bool(p->module, t_llvm_bool, true);
  932. if (ss->tag != nullptr) {
  933. tag = lb_build_expr(p, ss->tag);
  934. }
  935. lbBlock *done = lb_create_block(p, "switch.done"); // NOTE(bill): Append later
  936. ast_node(body, BlockStmt, ss->body);
  937. isize case_count = body->stmts.count;
  938. Slice<Ast *> default_stmts = {};
  939. lbBlock *default_fall = nullptr;
  940. lbBlock *default_block = nullptr;
  941. lbBlock *fall = nullptr;
  942. bool default_found = false;
  943. bool is_trivial = lb_switch_stmt_can_be_trivial_jump_table(ss, &default_found);
  944. auto body_blocks = slice_make<lbBlock *>(permanent_allocator(), body->stmts.count);
  945. for_array(i, body->stmts) {
  946. Ast *clause = body->stmts[i];
  947. ast_node(cc, CaseClause, clause);
  948. body_blocks[i] = lb_create_block(p, cc->list.count == 0 ? "switch.default.body" : "switch.case.body");
  949. if (cc->list.count == 0) {
  950. default_block = body_blocks[i];
  951. }
  952. }
  953. LLVMValueRef switch_instr = nullptr;
  954. if (is_trivial) {
  955. isize num_cases = 0;
  956. for_array(i, body->stmts) {
  957. Ast *clause = body->stmts[i];
  958. ast_node(cc, CaseClause, clause);
  959. num_cases += cc->list.count;
  960. }
  961. LLVMBasicBlockRef end_block = done->block;
  962. if (default_block) {
  963. end_block = default_block->block;
  964. }
  965. switch_instr = LLVMBuildSwitch(p->builder, tag.value, end_block, cast(unsigned)num_cases);
  966. }
  967. for_array(i, body->stmts) {
  968. Ast *clause = body->stmts[i];
  969. ast_node(cc, CaseClause, clause);
  970. lbBlock *body = body_blocks[i];
  971. fall = done;
  972. if (i+1 < case_count) {
  973. fall = body_blocks[i+1];
  974. }
  975. if (cc->list.count == 0) {
  976. // default case
  977. default_stmts = cc->stmts;
  978. default_fall = fall;
  979. if (switch_instr == nullptr) {
  980. default_block = body;
  981. } else {
  982. GB_ASSERT(default_block != nullptr);
  983. }
  984. continue;
  985. }
  986. lbBlock *next_cond = nullptr;
  987. for_array(j, cc->list) {
  988. Ast *expr = unparen_expr(cc->list[j]);
  989. if (switch_instr != nullptr) {
  990. lbValue on_val = {};
  991. if (expr->tav.mode == Addressing_Type) {
  992. GB_ASSERT(is_type_typeid(tag.type));
  993. lbValue e = lb_typeid(p->module, expr->tav.type);
  994. on_val = lb_emit_conv(p, e, tag.type);
  995. } else {
  996. GB_ASSERT(expr->tav.mode == Addressing_Constant);
  997. GB_ASSERT(!is_ast_range(expr));
  998. on_val = lb_build_expr(p, expr);
  999. on_val = lb_emit_conv(p, on_val, tag.type);
  1000. }
  1001. GB_ASSERT(LLVMIsConstant(on_val.value));
  1002. LLVMAddCase(switch_instr, on_val.value, body->block);
  1003. continue;
  1004. }
  1005. next_cond = lb_create_block(p, "switch.case.next");
  1006. lbValue cond = {};
  1007. if (is_ast_range(expr)) {
  1008. ast_node(ie, BinaryExpr, expr);
  1009. TokenKind op = Token_Invalid;
  1010. switch (ie->op.kind) {
  1011. case Token_Ellipsis: op = Token_LtEq; break;
  1012. case Token_RangeFull: op = Token_LtEq; break;
  1013. case Token_RangeHalf: op = Token_Lt; break;
  1014. default: GB_PANIC("Invalid interval operator"); break;
  1015. }
  1016. lbValue lhs = lb_build_expr(p, ie->left);
  1017. lbValue rhs = lb_build_expr(p, ie->right);
  1018. lbValue cond_lhs = lb_emit_comp(p, Token_LtEq, lhs, tag);
  1019. lbValue cond_rhs = lb_emit_comp(p, op, tag, rhs);
  1020. cond = lb_emit_arith(p, Token_And, cond_lhs, cond_rhs, t_bool);
  1021. } else {
  1022. if (expr->tav.mode == Addressing_Type) {
  1023. GB_ASSERT(is_type_typeid(tag.type));
  1024. lbValue e = lb_typeid(p->module, expr->tav.type);
  1025. e = lb_emit_conv(p, e, tag.type);
  1026. cond = lb_emit_comp(p, Token_CmpEq, tag, e);
  1027. } else {
  1028. cond = lb_emit_comp(p, Token_CmpEq, tag, lb_build_expr(p, expr));
  1029. }
  1030. }
  1031. lb_emit_if(p, cond, body, next_cond);
  1032. lb_start_block(p, next_cond);
  1033. }
  1034. lb_start_block(p, body);
  1035. lb_push_target_list(p, ss->label, done, nullptr, fall);
  1036. lb_open_scope(p, body->scope);
  1037. lb_build_stmt_list(p, cc->stmts);
  1038. lb_close_scope(p, lbDeferExit_Default, body);
  1039. lb_pop_target_list(p);
  1040. lb_emit_jump(p, done);
  1041. if (switch_instr == nullptr) {
  1042. lb_start_block(p, next_cond);
  1043. }
  1044. }
  1045. if (default_block != nullptr) {
  1046. if (switch_instr == nullptr) {
  1047. lb_emit_jump(p, default_block);
  1048. }
  1049. lb_start_block(p, default_block);
  1050. lb_push_target_list(p, ss->label, done, nullptr, default_fall);
  1051. lb_open_scope(p, default_block->scope);
  1052. lb_build_stmt_list(p, default_stmts);
  1053. lb_close_scope(p, lbDeferExit_Default, default_block);
  1054. lb_pop_target_list(p);
  1055. }
  1056. lb_emit_jump(p, done);
  1057. lb_start_block(p, done);
  1058. lb_close_scope(p, lbDeferExit_Default, done);
  1059. }
  1060. void lb_store_type_case_implicit(lbProcedure *p, Ast *clause, lbValue value) {
  1061. Entity *e = implicit_entity_of_node(clause);
  1062. GB_ASSERT(e != nullptr);
  1063. if (e->flags & EntityFlag_Value) {
  1064. // by value
  1065. GB_ASSERT(are_types_identical(e->type, value.type));
  1066. lbAddr x = lb_add_local(p, e->type, e, false);
  1067. lb_addr_store(p, x, value);
  1068. } else {
  1069. // by reference
  1070. GB_ASSERT(are_types_identical(e->type, type_deref(value.type)));
  1071. lb_add_entity(p->module, e, value);
  1072. }
  1073. }
  1074. lbAddr lb_store_range_stmt_val(lbProcedure *p, Ast *stmt_val, lbValue value) {
  1075. Entity *e = entity_of_node(stmt_val);
  1076. if (e == nullptr) {
  1077. return {};
  1078. }
  1079. if ((e->flags & EntityFlag_Value) == 0) {
  1080. if (LLVMIsALoadInst(value.value)) {
  1081. lbValue ptr = lb_address_from_load_or_generate_local(p, value);
  1082. lb_add_entity(p->module, e, ptr);
  1083. return lb_addr(ptr);
  1084. }
  1085. }
  1086. // by value
  1087. lbAddr addr = lb_add_local(p, e->type, e, false);
  1088. lb_addr_store(p, addr, value);
  1089. return addr;
  1090. }
  1091. void lb_type_case_body(lbProcedure *p, Ast *label, Ast *clause, lbBlock *body, lbBlock *done) {
  1092. ast_node(cc, CaseClause, clause);
  1093. lb_push_target_list(p, label, done, nullptr, nullptr);
  1094. lb_build_stmt_list(p, cc->stmts);
  1095. lb_close_scope(p, lbDeferExit_Default, body);
  1096. lb_pop_target_list(p);
  1097. lb_emit_jump(p, done);
  1098. }
  1099. void lb_build_type_switch_stmt(lbProcedure *p, AstTypeSwitchStmt *ss) {
  1100. lbModule *m = p->module;
  1101. lb_open_scope(p, ss->scope);
  1102. ast_node(as, AssignStmt, ss->tag);
  1103. GB_ASSERT(as->lhs.count == 1);
  1104. GB_ASSERT(as->rhs.count == 1);
  1105. lbValue parent = lb_build_expr(p, as->rhs[0]);
  1106. bool is_parent_ptr = is_type_pointer(parent.type);
  1107. Type *parent_base_type = type_deref(parent.type);
  1108. TypeSwitchKind switch_kind = check_valid_type_switch_type(parent.type);
  1109. GB_ASSERT(switch_kind != TypeSwitch_Invalid);
  1110. lbValue parent_value = parent;
  1111. lbValue parent_ptr = parent;
  1112. if (!is_parent_ptr) {
  1113. parent_ptr = lb_address_from_load_or_generate_local(p, parent);
  1114. }
  1115. lbValue tag = {};
  1116. lbValue union_data = {};
  1117. if (switch_kind == TypeSwitch_Union) {
  1118. union_data = lb_emit_conv(p, parent_ptr, t_rawptr);
  1119. Type *union_type = type_deref(parent_ptr.type);
  1120. if (is_type_union_maybe_pointer(union_type)) {
  1121. tag = lb_emit_conv(p, lb_emit_comp_against_nil(p, Token_NotEq, union_data), t_int);
  1122. } else if (union_tag_size(union_type) == 0) {
  1123. tag = {}; // there is no tag for a zero sized union
  1124. } else {
  1125. lbValue tag_ptr = lb_emit_union_tag_ptr(p, parent_ptr);
  1126. tag = lb_emit_load(p, tag_ptr);
  1127. }
  1128. } else if (switch_kind == TypeSwitch_Any) {
  1129. tag = lb_emit_load(p, lb_emit_struct_ep(p, parent_ptr, 1));
  1130. } else {
  1131. GB_PANIC("Unknown switch kind");
  1132. }
  1133. ast_node(body, BlockStmt, ss->body);
  1134. lbBlock *done = lb_create_block(p, "typeswitch.done");
  1135. lbBlock *else_block = done;
  1136. lbBlock *default_block = nullptr;
  1137. isize num_cases = 0;
  1138. for_array(i, body->stmts) {
  1139. Ast *clause = body->stmts[i];
  1140. ast_node(cc, CaseClause, clause);
  1141. num_cases += cc->list.count;
  1142. if (cc->list.count == 0) {
  1143. GB_ASSERT(default_block == nullptr);
  1144. default_block = lb_create_block(p, "typeswitch.default.body");
  1145. else_block = default_block;
  1146. }
  1147. }
  1148. LLVMValueRef switch_instr = nullptr;
  1149. if (type_size_of(parent_base_type) == 0) {
  1150. GB_ASSERT(tag.value == nullptr);
  1151. switch_instr = LLVMBuildSwitch(p->builder, lb_const_bool(p->module, t_llvm_bool, false).value, else_block->block, cast(unsigned)num_cases);
  1152. } else {
  1153. GB_ASSERT(tag.value != nullptr);
  1154. switch_instr = LLVMBuildSwitch(p->builder, tag.value, else_block->block, cast(unsigned)num_cases);
  1155. }
  1156. for_array(i, body->stmts) {
  1157. Ast *clause = body->stmts[i];
  1158. ast_node(cc, CaseClause, clause);
  1159. lb_open_scope(p, cc->scope);
  1160. if (cc->list.count == 0) {
  1161. lb_start_block(p, default_block);
  1162. lb_store_type_case_implicit(p, clause, parent_value);
  1163. lb_type_case_body(p, ss->label, clause, p->curr_block, done);
  1164. continue;
  1165. }
  1166. lbBlock *body = lb_create_block(p, "typeswitch.body");
  1167. if (p->debug_info != nullptr) {
  1168. LLVMSetCurrentDebugLocation2(p->builder, lb_debug_location_from_ast(p, clause));
  1169. }
  1170. Type *case_type = nullptr;
  1171. for_array(type_index, cc->list) {
  1172. case_type = type_of_expr(cc->list[type_index]);
  1173. lbValue on_val = {};
  1174. if (switch_kind == TypeSwitch_Union) {
  1175. Type *ut = base_type(type_deref(parent.type));
  1176. on_val = lb_const_union_tag(m, ut, case_type);
  1177. } else if (switch_kind == TypeSwitch_Any) {
  1178. on_val = lb_typeid(m, case_type);
  1179. }
  1180. GB_ASSERT(on_val.value != nullptr);
  1181. LLVMAddCase(switch_instr, on_val.value, body->block);
  1182. }
  1183. Entity *case_entity = implicit_entity_of_node(clause);
  1184. lbValue value = parent_value;
  1185. lb_start_block(p, body);
  1186. bool by_reference = (case_entity->flags & EntityFlag_Value) == 0;
  1187. if (cc->list.count == 1) {
  1188. lbValue data = {};
  1189. if (switch_kind == TypeSwitch_Union) {
  1190. data = union_data;
  1191. } else if (switch_kind == TypeSwitch_Any) {
  1192. data = lb_emit_load(p, lb_emit_struct_ep(p, parent_ptr, 0));
  1193. }
  1194. Type *ct = case_entity->type;
  1195. Type *ct_ptr = alloc_type_pointer(ct);
  1196. value = lb_emit_conv(p, data, ct_ptr);
  1197. if (!by_reference) {
  1198. value = lb_emit_load(p, value);
  1199. }
  1200. }
  1201. lb_store_type_case_implicit(p, clause, value);
  1202. lb_type_case_body(p, ss->label, clause, body, done);
  1203. }
  1204. lb_emit_jump(p, done);
  1205. lb_start_block(p, done);
  1206. lb_close_scope(p, lbDeferExit_Default, done);
  1207. }
  1208. void lb_build_static_variables(lbProcedure *p, AstValueDecl *vd) {
  1209. for_array(i, vd->names) {
  1210. lbValue value = {};
  1211. if (vd->values.count > 0) {
  1212. GB_ASSERT(vd->names.count == vd->values.count);
  1213. Ast *ast_value = vd->values[i];
  1214. GB_ASSERT(ast_value->tav.mode == Addressing_Constant ||
  1215. ast_value->tav.mode == Addressing_Invalid);
  1216. bool allow_local = false;
  1217. value = lb_const_value(p->module, ast_value->tav.type, ast_value->tav.value, allow_local);
  1218. }
  1219. Ast *ident = vd->names[i];
  1220. GB_ASSERT(!is_blank_ident(ident));
  1221. Entity *e = entity_of_node(ident);
  1222. GB_ASSERT(e->flags & EntityFlag_Static);
  1223. String name = e->token.string;
  1224. String mangled_name = {};
  1225. {
  1226. gbString str = gb_string_make_length(permanent_allocator(), p->name.text, p->name.len);
  1227. str = gb_string_appendc(str, "-");
  1228. str = gb_string_append_fmt(str, ".%.*s-%llu", LIT(name), cast(long long)e->id);
  1229. mangled_name.text = cast(u8 *)str;
  1230. mangled_name.len = gb_string_length(str);
  1231. }
  1232. char *c_name = alloc_cstring(permanent_allocator(), mangled_name);
  1233. LLVMValueRef global = LLVMAddGlobal(p->module->mod, lb_type(p->module, e->type), c_name);
  1234. LLVMSetInitializer(global, LLVMConstNull(lb_type(p->module, e->type)));
  1235. if (value.value != nullptr) {
  1236. LLVMSetInitializer(global, value.value);
  1237. } else {
  1238. }
  1239. if (e->Variable.thread_local_model != "") {
  1240. LLVMSetThreadLocal(global, true);
  1241. String m = e->Variable.thread_local_model;
  1242. LLVMThreadLocalMode mode = LLVMGeneralDynamicTLSModel;
  1243. if (m == "default") {
  1244. mode = LLVMGeneralDynamicTLSModel;
  1245. } else if (m == "localdynamic") {
  1246. mode = LLVMLocalDynamicTLSModel;
  1247. } else if (m == "initialexec") {
  1248. mode = LLVMInitialExecTLSModel;
  1249. } else if (m == "localexec") {
  1250. mode = LLVMLocalExecTLSModel;
  1251. } else {
  1252. GB_PANIC("Unhandled thread local mode %.*s", LIT(m));
  1253. }
  1254. LLVMSetThreadLocalMode(global, mode);
  1255. } else {
  1256. LLVMSetLinkage(global, LLVMInternalLinkage);
  1257. }
  1258. lbValue global_val = {global, alloc_type_pointer(e->type)};
  1259. lb_add_entity(p->module, e, global_val);
  1260. lb_add_member(p->module, mangled_name, global_val);
  1261. }
  1262. }
  1263. void lb_append_tuple_values(lbProcedure *p, Array<lbValue> *dst_values, lbValue src_value) {
  1264. Type *t = src_value.type;
  1265. if (t->kind == Type_Tuple) {
  1266. lbTupleFix *tf = map_get(&p->tuple_fix_map, src_value.value);
  1267. if (tf) {
  1268. for_array(j, tf->values) {
  1269. array_add(dst_values, tf->values[j]);
  1270. }
  1271. } else {
  1272. for_array(i, t->Tuple.variables) {
  1273. lbValue v = lb_emit_tuple_ev(p, src_value, cast(i32)i);
  1274. array_add(dst_values, v);
  1275. }
  1276. }
  1277. } else {
  1278. array_add(dst_values, src_value);
  1279. }
  1280. }
  1281. void lb_build_assignment(lbProcedure *p, Array<lbAddr> &lvals, Slice<Ast *> const &values) {
  1282. if (values.count == 0) {
  1283. return;
  1284. }
  1285. auto inits = array_make<lbValue>(permanent_allocator(), 0, lvals.count);
  1286. for_array(i, values) {
  1287. Ast *rhs = values[i];
  1288. lbValue init = lb_build_expr(p, rhs);
  1289. lb_append_tuple_values(p, &inits, init);
  1290. }
  1291. GB_ASSERT(lvals.count == inits.count);
  1292. for_array(i, inits) {
  1293. lbAddr lval = lvals[i];
  1294. lbValue init = inits[i];
  1295. lb_addr_store(p, lval, init);
  1296. }
  1297. }
  1298. void lb_build_return_stmt_internal(lbProcedure *p, lbValue res) {
  1299. lbFunctionType *ft = lb_get_function_type(p->module, p->type);
  1300. bool return_by_pointer = ft->ret.kind == lbArg_Indirect;
  1301. bool split_returns = ft->multiple_return_original_type != nullptr;
  1302. if (split_returns) {
  1303. GB_ASSERT(res.value == nullptr || !is_type_tuple(res.type));
  1304. }
  1305. if (return_by_pointer) {
  1306. if (res.value != nullptr) {
  1307. LLVMValueRef res_val = res.value;
  1308. i64 sz = type_size_of(res.type);
  1309. if (LLVMIsALoadInst(res_val) && sz > build_context.word_size) {
  1310. lbValue ptr = lb_address_from_load_or_generate_local(p, res);
  1311. lb_mem_copy_non_overlapping(p, p->return_ptr.addr, ptr, lb_const_int(p->module, t_int, sz));
  1312. } else {
  1313. LLVMBuildStore(p->builder, res_val, p->return_ptr.addr.value);
  1314. }
  1315. } else {
  1316. LLVMBuildStore(p->builder, LLVMConstNull(p->abi_function_type->ret.type), p->return_ptr.addr.value);
  1317. }
  1318. lb_emit_defer_stmts(p, lbDeferExit_Return, nullptr);
  1319. LLVMBuildRetVoid(p->builder);
  1320. } else {
  1321. LLVMValueRef ret_val = res.value;
  1322. ret_val = OdinLLVMBuildTransmute(p, ret_val, p->abi_function_type->ret.type);
  1323. if (p->abi_function_type->ret.cast_type != nullptr) {
  1324. ret_val = OdinLLVMBuildTransmute(p, ret_val, p->abi_function_type->ret.cast_type);
  1325. }
  1326. lb_emit_defer_stmts(p, lbDeferExit_Return, nullptr);
  1327. LLVMBuildRet(p->builder, ret_val);
  1328. }
  1329. }
  1330. void lb_build_return_stmt(lbProcedure *p, Slice<Ast *> const &return_results) {
  1331. lb_ensure_abi_function_type(p->module, p);
  1332. lbValue res = {};
  1333. TypeTuple *tuple = &p->type->Proc.results->Tuple;
  1334. isize return_count = p->type->Proc.result_count;
  1335. isize res_count = return_results.count;
  1336. lbFunctionType *ft = lb_get_function_type(p->module, p->type);
  1337. bool return_by_pointer = ft->ret.kind == lbArg_Indirect;
  1338. if (return_count == 0) {
  1339. // No return values
  1340. lb_emit_defer_stmts(p, lbDeferExit_Return, nullptr);
  1341. LLVMBuildRetVoid(p->builder);
  1342. return;
  1343. } else if (return_count == 1) {
  1344. Entity *e = tuple->variables[0];
  1345. if (res_count == 0) {
  1346. lbValue found = map_must_get(&p->module->values, e);
  1347. res = lb_emit_load(p, found);
  1348. } else {
  1349. res = lb_build_expr(p, return_results[0]);
  1350. res = lb_emit_conv(p, res, e->type);
  1351. }
  1352. if (p->type->Proc.has_named_results) {
  1353. // NOTE(bill): store the named values before returning
  1354. if (e->token.string != "") {
  1355. lbValue found = map_must_get(&p->module->values, e);
  1356. lb_emit_store(p, found, lb_emit_conv(p, res, e->type));
  1357. }
  1358. }
  1359. } else {
  1360. auto results = array_make<lbValue>(permanent_allocator(), 0, return_count);
  1361. if (res_count != 0) {
  1362. for (isize res_index = 0; res_index < res_count; res_index++) {
  1363. lbValue res = lb_build_expr(p, return_results[res_index]);
  1364. lb_append_tuple_values(p, &results, res);
  1365. }
  1366. } else {
  1367. for (isize res_index = 0; res_index < return_count; res_index++) {
  1368. Entity *e = tuple->variables[res_index];
  1369. lbValue found = map_must_get(&p->module->values, e);
  1370. lbValue res = lb_emit_load(p, found);
  1371. array_add(&results, res);
  1372. }
  1373. }
  1374. GB_ASSERT(results.count == return_count);
  1375. if (p->type->Proc.has_named_results) {
  1376. auto named_results = slice_make<lbValue>(temporary_allocator(), results.count);
  1377. auto values = slice_make<lbValue>(temporary_allocator(), results.count);
  1378. // NOTE(bill): store the named values before returning
  1379. for_array(i, p->type->Proc.results->Tuple.variables) {
  1380. Entity *e = p->type->Proc.results->Tuple.variables[i];
  1381. if (e->kind != Entity_Variable) {
  1382. continue;
  1383. }
  1384. if (e->token.string == "") {
  1385. continue;
  1386. }
  1387. named_results[i] = map_must_get(&p->module->values, e);
  1388. values[i] = lb_emit_conv(p, results[i], e->type);
  1389. }
  1390. for_array(i, named_results) {
  1391. lb_emit_store(p, named_results[i], values[i]);
  1392. }
  1393. }
  1394. bool split_returns = ft->multiple_return_original_type != nullptr;
  1395. if (split_returns) {
  1396. auto result_values = slice_make<lbValue>(temporary_allocator(), results.count);
  1397. auto result_eps = slice_make<lbValue>(temporary_allocator(), results.count-1);
  1398. for_array(i, results) {
  1399. result_values[i] = lb_emit_conv(p, results[i], tuple->variables[i]->type);
  1400. }
  1401. isize param_offset = return_by_pointer ? 1 : 0;
  1402. param_offset += ft->original_arg_count;
  1403. for_array(i, result_eps) {
  1404. lbValue result_ep = {};
  1405. result_ep.value = LLVMGetParam(p->value, cast(unsigned)(param_offset+i));
  1406. result_ep.type = alloc_type_pointer(tuple->variables[i]->type);
  1407. result_eps[i] = result_ep;
  1408. }
  1409. for_array(i, result_eps) {
  1410. lb_emit_store(p, result_eps[i], result_values[i]);
  1411. }
  1412. if (return_by_pointer) {
  1413. GB_ASSERT(result_values.count-1 == result_eps.count);
  1414. lb_addr_store(p, p->return_ptr, result_values[result_values.count-1]);
  1415. lb_emit_defer_stmts(p, lbDeferExit_Return, nullptr);
  1416. LLVMBuildRetVoid(p->builder);
  1417. return;
  1418. } else {
  1419. return lb_build_return_stmt_internal(p, result_values[result_values.count-1]);
  1420. }
  1421. } else {
  1422. Type *ret_type = p->type->Proc.results;
  1423. // NOTE(bill): Doesn't need to be zero because it will be initialized in the loops
  1424. if (return_by_pointer) {
  1425. res = p->return_ptr.addr;
  1426. } else {
  1427. res = lb_add_local_generated(p, ret_type, false).addr;
  1428. }
  1429. auto result_values = slice_make<lbValue>(temporary_allocator(), results.count);
  1430. auto result_eps = slice_make<lbValue>(temporary_allocator(), results.count);
  1431. for_array(i, results) {
  1432. result_values[i] = lb_emit_conv(p, results[i], tuple->variables[i]->type);
  1433. }
  1434. for_array(i, results) {
  1435. result_eps[i] = lb_emit_struct_ep(p, res, cast(i32)i);
  1436. }
  1437. for_array(i, result_eps) {
  1438. lb_emit_store(p, result_eps[i], result_values[i]);
  1439. }
  1440. if (return_by_pointer) {
  1441. lb_emit_defer_stmts(p, lbDeferExit_Return, nullptr);
  1442. LLVMBuildRetVoid(p->builder);
  1443. return;
  1444. }
  1445. res = lb_emit_load(p, res);
  1446. }
  1447. }
  1448. lb_build_return_stmt_internal(p, res);
  1449. }
  1450. void lb_build_if_stmt(lbProcedure *p, Ast *node) {
  1451. ast_node(is, IfStmt, node);
  1452. lb_open_scope(p, is->scope); // Scope #1
  1453. defer (lb_close_scope(p, lbDeferExit_Default, nullptr));
  1454. if (is->init != nullptr) {
  1455. // TODO(bill): Should this have a separate block to begin with?
  1456. #if 1
  1457. lbBlock *init = lb_create_block(p, "if.init");
  1458. lb_emit_jump(p, init);
  1459. lb_start_block(p, init);
  1460. #endif
  1461. lb_build_stmt(p, is->init);
  1462. }
  1463. lbBlock *then = lb_create_block(p, "if.then");
  1464. lbBlock *done = lb_create_block(p, "if.done");
  1465. lbBlock *else_ = done;
  1466. if (is->else_stmt != nullptr) {
  1467. else_ = lb_create_block(p, "if.else");
  1468. }
  1469. lbValue cond = lb_build_cond(p, is->cond, then, else_);
  1470. // Note `cond.value` only set for non-and/or conditions and const negs so that the `LLVMIsConstant()`
  1471. // and `LLVMConstIntGetZExtValue()` calls below will be valid and `LLVMInstructionEraseFromParent()`
  1472. // will target the correct (& only) branch statement
  1473. if (is->label != nullptr) {
  1474. lbTargetList *tl = lb_push_target_list(p, is->label, done, nullptr, nullptr);
  1475. tl->is_block = true;
  1476. }
  1477. if (cond.value && LLVMIsConstant(cond.value)) {
  1478. // NOTE(bill): Do a compile time short circuit for when the condition is constantly known.
  1479. // This done manually rather than relying on the SSA passes because sometimes the SSA passes
  1480. // miss some even if they are constantly known, especially with few optimization passes.
  1481. bool const_cond = LLVMConstIntGetZExtValue(cond.value) != 0;
  1482. LLVMValueRef if_instr = LLVMGetLastInstruction(p->curr_block->block);
  1483. GB_ASSERT(LLVMGetInstructionOpcode(if_instr) == LLVMBr);
  1484. GB_ASSERT(LLVMIsConditional(if_instr));
  1485. LLVMInstructionEraseFromParent(if_instr);
  1486. if (const_cond) {
  1487. lb_emit_jump(p, then);
  1488. lb_start_block(p, then);
  1489. lb_build_stmt(p, is->body);
  1490. lb_emit_jump(p, done);
  1491. } else {
  1492. if (is->else_stmt != nullptr) {
  1493. lb_emit_jump(p, else_);
  1494. lb_start_block(p, else_);
  1495. lb_open_scope(p, scope_of_node(is->else_stmt));
  1496. lb_build_stmt(p, is->else_stmt);
  1497. lb_close_scope(p, lbDeferExit_Default, nullptr);
  1498. }
  1499. lb_emit_jump(p, done);
  1500. }
  1501. } else {
  1502. lb_start_block(p, then);
  1503. lb_build_stmt(p, is->body);
  1504. lb_emit_jump(p, done);
  1505. if (is->else_stmt != nullptr) {
  1506. lb_start_block(p, else_);
  1507. lb_open_scope(p, scope_of_node(is->else_stmt));
  1508. lb_build_stmt(p, is->else_stmt);
  1509. lb_close_scope(p, lbDeferExit_Default, nullptr);
  1510. lb_emit_jump(p, done);
  1511. }
  1512. }
  1513. if (is->label != nullptr) {
  1514. lb_pop_target_list(p);
  1515. }
  1516. lb_start_block(p, done);
  1517. }
  1518. void lb_build_for_stmt(lbProcedure *p, Ast *node) {
  1519. ast_node(fs, ForStmt, node);
  1520. lb_open_scope(p, fs->scope); // Open Scope here
  1521. if (p->debug_info != nullptr) {
  1522. LLVMSetCurrentDebugLocation2(p->builder, lb_debug_location_from_ast(p, node));
  1523. }
  1524. if (fs->init != nullptr) {
  1525. #if 1
  1526. lbBlock *init = lb_create_block(p, "for.init");
  1527. lb_emit_jump(p, init);
  1528. lb_start_block(p, init);
  1529. #endif
  1530. lb_build_stmt(p, fs->init);
  1531. }
  1532. lbBlock *body = lb_create_block(p, "for.body");
  1533. lbBlock *done = lb_create_block(p, "for.done"); // NOTE(bill): Append later
  1534. lbBlock *loop = body;
  1535. if (fs->cond != nullptr) {
  1536. loop = lb_create_block(p, "for.loop");
  1537. }
  1538. lbBlock *post = loop;
  1539. if (fs->post != nullptr) {
  1540. post = lb_create_block(p, "for.post");
  1541. }
  1542. lb_emit_jump(p, loop);
  1543. lb_start_block(p, loop);
  1544. if (loop != body) {
  1545. // right now the condition (all expressions) will not set it's debug location, so we will do it here
  1546. if (p->debug_info != nullptr) {
  1547. LLVMSetCurrentDebugLocation2(p->builder, lb_debug_location_from_ast(p, fs->cond));
  1548. }
  1549. lb_build_cond(p, fs->cond, body, done);
  1550. lb_start_block(p, body);
  1551. }
  1552. lb_push_target_list(p, fs->label, done, post, nullptr);
  1553. lb_build_stmt(p, fs->body);
  1554. lb_pop_target_list(p);
  1555. if (p->debug_info != nullptr) {
  1556. LLVMSetCurrentDebugLocation2(p->builder, lb_debug_end_location_from_ast(p, fs->body));
  1557. }
  1558. lb_emit_jump(p, post);
  1559. if (fs->post != nullptr) {
  1560. lb_start_block(p, post);
  1561. lb_build_stmt(p, fs->post);
  1562. lb_emit_jump(p, loop);
  1563. }
  1564. lb_start_block(p, done);
  1565. lb_close_scope(p, lbDeferExit_Default, nullptr);
  1566. }
  1567. void lb_build_assign_stmt_array(lbProcedure *p, TokenKind op, lbAddr const &lhs, lbValue const &value) {
  1568. GB_ASSERT(op != Token_Eq);
  1569. Type *lhs_type = lb_addr_type(lhs);
  1570. Type *array_type = base_type(lhs_type);
  1571. GB_ASSERT(is_type_array_like(array_type));
  1572. i64 count = get_array_type_count(array_type);
  1573. Type *elem_type = base_array_type(array_type);
  1574. lbValue rhs = lb_emit_conv(p, value, lhs_type);
  1575. bool inline_array_arith = lb_can_try_to_inline_array_arith(array_type);
  1576. if (lhs.kind == lbAddr_Swizzle) {
  1577. GB_ASSERT(is_type_array(lhs_type));
  1578. struct ValueAndIndex {
  1579. lbValue value;
  1580. u8 index;
  1581. };
  1582. bool indices_handled[4] = {};
  1583. i32 indices[4] = {};
  1584. i32 index_count = 0;
  1585. for (u8 i = 0; i < lhs.swizzle.count; i++) {
  1586. u8 index = lhs.swizzle.indices[i];
  1587. if (indices_handled[index]) {
  1588. continue;
  1589. }
  1590. indices[index_count++] = index;
  1591. }
  1592. lbValue lhs_ptrs[4] = {};
  1593. lbValue x_loads[4] = {};
  1594. lbValue y_loads[4] = {};
  1595. lbValue ops[4] = {};
  1596. for (i32 i = 0; i < index_count; i++) {
  1597. lhs_ptrs[i] = lb_emit_array_epi(p, lhs.addr, indices[i]);
  1598. }
  1599. for (i32 i = 0; i < index_count; i++) {
  1600. x_loads[i] = lb_emit_load(p, lhs_ptrs[i]);
  1601. }
  1602. for (i32 i = 0; i < index_count; i++) {
  1603. y_loads[i].value = LLVMBuildExtractValue(p->builder, rhs.value, i, "");
  1604. y_loads[i].type = elem_type;
  1605. }
  1606. for (i32 i = 0; i < index_count; i++) {
  1607. ops[i] = lb_emit_arith(p, op, x_loads[i], y_loads[i], elem_type);
  1608. }
  1609. for (i32 i = 0; i < index_count; i++) {
  1610. lb_emit_store(p, lhs_ptrs[i], ops[i]);
  1611. }
  1612. return;
  1613. } else if (lhs.kind == lbAddr_SwizzleLarge) {
  1614. GB_ASSERT(is_type_array(lhs_type));
  1615. struct ValueAndIndex {
  1616. lbValue value;
  1617. u32 index;
  1618. };
  1619. Type *bt = base_type(lhs_type);
  1620. GB_ASSERT(bt->kind == Type_Array);
  1621. auto indices_handled = slice_make<bool>(temporary_allocator(), bt->Array.count);
  1622. auto indices = slice_make<i32>(temporary_allocator(), bt->Array.count);
  1623. i32 index_count = 0;
  1624. for_array(i, lhs.swizzle_large.indices) {
  1625. i32 index = lhs.swizzle_large.indices[i];
  1626. if (indices_handled[index]) {
  1627. continue;
  1628. }
  1629. indices[index_count++] = index;
  1630. }
  1631. lbValue lhs_ptrs[4] = {};
  1632. lbValue x_loads[4] = {};
  1633. lbValue y_loads[4] = {};
  1634. lbValue ops[4] = {};
  1635. for (i32 i = 0; i < index_count; i++) {
  1636. lhs_ptrs[i] = lb_emit_array_epi(p, lhs.addr, indices[i]);
  1637. }
  1638. for (i32 i = 0; i < index_count; i++) {
  1639. x_loads[i] = lb_emit_load(p, lhs_ptrs[i]);
  1640. }
  1641. for (i32 i = 0; i < index_count; i++) {
  1642. y_loads[i].value = LLVMBuildExtractValue(p->builder, rhs.value, i, "");
  1643. y_loads[i].type = elem_type;
  1644. }
  1645. for (i32 i = 0; i < index_count; i++) {
  1646. ops[i] = lb_emit_arith(p, op, x_loads[i], y_loads[i], elem_type);
  1647. }
  1648. for (i32 i = 0; i < index_count; i++) {
  1649. lb_emit_store(p, lhs_ptrs[i], ops[i]);
  1650. }
  1651. return;
  1652. }
  1653. lbValue x = lb_addr_get_ptr(p, lhs);
  1654. if (inline_array_arith) {
  1655. unsigned n = cast(unsigned)count;
  1656. auto lhs_ptrs = slice_make<lbValue>(temporary_allocator(), n);
  1657. auto x_loads = slice_make<lbValue>(temporary_allocator(), n);
  1658. auto y_loads = slice_make<lbValue>(temporary_allocator(), n);
  1659. auto ops = slice_make<lbValue>(temporary_allocator(), n);
  1660. for (unsigned i = 0; i < n; i++) {
  1661. lhs_ptrs[i] = lb_emit_array_epi(p, x, i);
  1662. }
  1663. for (unsigned i = 0; i < n; i++) {
  1664. x_loads[i] = lb_emit_load(p, lhs_ptrs[i]);
  1665. }
  1666. for (unsigned i = 0; i < n; i++) {
  1667. y_loads[i].value = LLVMBuildExtractValue(p->builder, rhs.value, i, "");
  1668. y_loads[i].type = elem_type;
  1669. }
  1670. for (unsigned i = 0; i < n; i++) {
  1671. ops[i] = lb_emit_arith(p, op, x_loads[i], y_loads[i], elem_type);
  1672. }
  1673. for (unsigned i = 0; i < n; i++) {
  1674. lb_emit_store(p, lhs_ptrs[i], ops[i]);
  1675. }
  1676. } else {
  1677. lbValue y = lb_address_from_load_or_generate_local(p, rhs);
  1678. auto loop_data = lb_loop_start(p, cast(isize)count, t_i32);
  1679. lbValue a_ptr = lb_emit_array_ep(p, x, loop_data.idx);
  1680. lbValue b_ptr = lb_emit_array_ep(p, y, loop_data.idx);
  1681. lbValue a = lb_emit_load(p, a_ptr);
  1682. lbValue b = lb_emit_load(p, b_ptr);
  1683. lbValue c = lb_emit_arith(p, op, a, b, elem_type);
  1684. lb_emit_store(p, a_ptr, c);
  1685. lb_loop_end(p, loop_data);
  1686. }
  1687. }
  1688. void lb_build_assign_stmt(lbProcedure *p, AstAssignStmt *as) {
  1689. if (as->op.kind == Token_Eq) {
  1690. auto lvals = array_make<lbAddr>(permanent_allocator(), 0, as->lhs.count);
  1691. for_array(i, as->lhs) {
  1692. Ast *lhs = as->lhs[i];
  1693. lbAddr lval = {};
  1694. if (!is_blank_ident(lhs)) {
  1695. lval = lb_build_addr(p, lhs);
  1696. }
  1697. array_add(&lvals, lval);
  1698. }
  1699. lb_build_assignment(p, lvals, as->rhs);
  1700. return;
  1701. }
  1702. GB_ASSERT(as->lhs.count == 1);
  1703. GB_ASSERT(as->rhs.count == 1);
  1704. // NOTE(bill): Only 1 += 1 is allowed, no tuples
  1705. // +=, -=, etc
  1706. i32 op_ = cast(i32)as->op.kind;
  1707. op_ += Token_Add - Token_AddEq; // Convert += to +
  1708. TokenKind op = cast(TokenKind)op_;
  1709. if (op == Token_CmpAnd || op == Token_CmpOr) {
  1710. Type *type = as->lhs[0]->tav.type;
  1711. lbValue new_value = lb_emit_logical_binary_expr(p, op, as->lhs[0], as->rhs[0], type);
  1712. lbAddr lhs = lb_build_addr(p, as->lhs[0]);
  1713. lb_addr_store(p, lhs, new_value);
  1714. } else {
  1715. lbAddr lhs = lb_build_addr(p, as->lhs[0]);
  1716. lbValue value = lb_build_expr(p, as->rhs[0]);
  1717. Type *lhs_type = lb_addr_type(lhs);
  1718. // NOTE(bill): Allow for the weird edge case of:
  1719. // array *= matrix
  1720. if (op == Token_Mul && is_type_matrix(value.type) && is_type_array(lhs_type)) {
  1721. lbValue old_value = lb_addr_load(p, lhs);
  1722. Type *type = old_value.type;
  1723. lbValue new_value = lb_emit_vector_mul_matrix(p, old_value, value, type);
  1724. lb_addr_store(p, lhs, new_value);
  1725. return;
  1726. }
  1727. if (is_type_array(lhs_type)) {
  1728. lb_build_assign_stmt_array(p, op, lhs, value);
  1729. return;
  1730. } else {
  1731. lbValue old_value = lb_addr_load(p, lhs);
  1732. Type *type = old_value.type;
  1733. lbValue change = lb_emit_conv(p, value, type);
  1734. lbValue new_value = lb_emit_arith(p, op, old_value, change, type);
  1735. lb_addr_store(p, lhs, new_value);
  1736. }
  1737. }
  1738. }
  1739. void lb_build_stmt(lbProcedure *p, Ast *node) {
  1740. Ast *prev_stmt = p->curr_stmt;
  1741. defer (p->curr_stmt = prev_stmt);
  1742. p->curr_stmt = node;
  1743. if (p->curr_block != nullptr) {
  1744. LLVMValueRef last_instr = LLVMGetLastInstruction(p->curr_block->block);
  1745. if (lb_is_instr_terminating(last_instr)) {
  1746. return;
  1747. }
  1748. }
  1749. if (p->debug_info != nullptr) {
  1750. LLVMSetCurrentDebugLocation2(p->builder, lb_debug_location_from_ast(p, node));
  1751. }
  1752. u16 prev_state_flags = p->state_flags;
  1753. defer (p->state_flags = prev_state_flags);
  1754. if (node->state_flags != 0) {
  1755. u16 in = node->state_flags;
  1756. u16 out = p->state_flags;
  1757. if (in & StateFlag_bounds_check) {
  1758. out |= StateFlag_bounds_check;
  1759. out &= ~StateFlag_no_bounds_check;
  1760. } else if (in & StateFlag_no_bounds_check) {
  1761. out |= StateFlag_no_bounds_check;
  1762. out &= ~StateFlag_bounds_check;
  1763. }
  1764. if (in & StateFlag_no_type_assert) {
  1765. out |= StateFlag_no_type_assert;
  1766. out &= ~StateFlag_type_assert;
  1767. } else if (in & StateFlag_type_assert) {
  1768. out |= StateFlag_type_assert;
  1769. out &= ~StateFlag_no_type_assert;
  1770. }
  1771. p->state_flags = out;
  1772. }
  1773. switch (node->kind) {
  1774. case_ast_node(bs, EmptyStmt, node);
  1775. case_end;
  1776. case_ast_node(us, UsingStmt, node);
  1777. case_end;
  1778. case_ast_node(ws, WhenStmt, node);
  1779. lb_build_when_stmt(p, ws);
  1780. case_end;
  1781. case_ast_node(bs, BlockStmt, node);
  1782. lbBlock *done = nullptr;
  1783. if (bs->label != nullptr) {
  1784. done = lb_create_block(p, "block.done");
  1785. lbTargetList *tl = lb_push_target_list(p, bs->label, done, nullptr, nullptr);
  1786. tl->is_block = true;
  1787. }
  1788. lb_open_scope(p, bs->scope);
  1789. lb_build_stmt_list(p, bs->stmts);
  1790. lb_close_scope(p, lbDeferExit_Default, nullptr);
  1791. if (done != nullptr) {
  1792. lb_emit_jump(p, done);
  1793. lb_start_block(p, done);
  1794. }
  1795. if (bs->label != nullptr) {
  1796. lb_pop_target_list(p);
  1797. }
  1798. case_end;
  1799. case_ast_node(vd, ValueDecl, node);
  1800. if (!vd->is_mutable) {
  1801. return;
  1802. }
  1803. bool is_static = false;
  1804. if (vd->names.count > 0) {
  1805. for_array(i, vd->names) {
  1806. Ast *name = vd->names[i];
  1807. if (!is_blank_ident(name)) {
  1808. Entity *e = entity_of_node(name);
  1809. TokenPos pos = ast_token(name).pos;
  1810. GB_ASSERT_MSG(e != nullptr, "%s", token_pos_to_string(pos));
  1811. if (e->flags & EntityFlag_Static) {
  1812. // NOTE(bill): If one of the entities is static, they all are
  1813. is_static = true;
  1814. break;
  1815. }
  1816. }
  1817. }
  1818. }
  1819. if (is_static) {
  1820. lb_build_static_variables(p, vd);
  1821. return;
  1822. }
  1823. auto lvals = array_make<lbAddr>(permanent_allocator(), 0, vd->names.count);
  1824. for_array(i, vd->names) {
  1825. Ast *name = vd->names[i];
  1826. lbAddr lval = {};
  1827. if (!is_blank_ident(name)) {
  1828. Entity *e = entity_of_node(name);
  1829. // bool zero_init = true; // Always do it
  1830. bool zero_init = vd->values.count == 0;
  1831. lval = lb_add_local(p, e->type, e, zero_init);
  1832. }
  1833. array_add(&lvals, lval);
  1834. }
  1835. lb_build_assignment(p, lvals, vd->values);
  1836. case_end;
  1837. case_ast_node(as, AssignStmt, node);
  1838. lb_build_assign_stmt(p, as);
  1839. case_end;
  1840. case_ast_node(es, ExprStmt, node);
  1841. lb_build_expr(p, es->expr);
  1842. case_end;
  1843. case_ast_node(ds, DeferStmt, node);
  1844. lb_add_defer_node(p, p->scope_index, ds->stmt);
  1845. case_end;
  1846. case_ast_node(rs, ReturnStmt, node);
  1847. lb_build_return_stmt(p, rs->results);
  1848. case_end;
  1849. case_ast_node(is, IfStmt, node);
  1850. lb_build_if_stmt(p, node);
  1851. case_end;
  1852. case_ast_node(fs, ForStmt, node);
  1853. lb_build_for_stmt(p, node);
  1854. case_end;
  1855. case_ast_node(rs, RangeStmt, node);
  1856. lb_build_range_stmt(p, rs, rs->scope);
  1857. case_end;
  1858. case_ast_node(rs, UnrollRangeStmt, node);
  1859. lb_build_unroll_range_stmt(p, rs, rs->scope);
  1860. case_end;
  1861. case_ast_node(ss, SwitchStmt, node);
  1862. lb_build_switch_stmt(p, ss, ss->scope);
  1863. case_end;
  1864. case_ast_node(ss, TypeSwitchStmt, node);
  1865. lb_build_type_switch_stmt(p, ss);
  1866. case_end;
  1867. case_ast_node(bs, BranchStmt, node);
  1868. lbBlock *block = nullptr;
  1869. if (bs->label != nullptr) {
  1870. lbBranchBlocks bb = lb_lookup_branch_blocks(p, bs->label);
  1871. switch (bs->token.kind) {
  1872. case Token_break: block = bb.break_; break;
  1873. case Token_continue: block = bb.continue_; break;
  1874. case Token_fallthrough:
  1875. GB_PANIC("fallthrough cannot have a label");
  1876. break;
  1877. }
  1878. } else {
  1879. for (lbTargetList *t = p->target_list; t != nullptr && block == nullptr; t = t->prev) {
  1880. if (t->is_block) {
  1881. continue;
  1882. }
  1883. switch (bs->token.kind) {
  1884. case Token_break: block = t->break_; break;
  1885. case Token_continue: block = t->continue_; break;
  1886. case Token_fallthrough: block = t->fallthrough_; break;
  1887. }
  1888. }
  1889. }
  1890. if (block != nullptr) {
  1891. lb_emit_defer_stmts(p, lbDeferExit_Branch, block);
  1892. }
  1893. lb_emit_jump(p, block);
  1894. lb_start_block(p, lb_create_block(p, "unreachable"));
  1895. case_end;
  1896. }
  1897. }
  1898. void lb_build_defer_stmt(lbProcedure *p, lbDefer const &d) {
  1899. if (p->curr_block == nullptr) {
  1900. return;
  1901. }
  1902. // NOTE(bill): The prev block may defer injection before it's terminator
  1903. LLVMValueRef last_instr = LLVMGetLastInstruction(p->curr_block->block);
  1904. if (last_instr != nullptr && LLVMIsAReturnInst(last_instr)) {
  1905. // NOTE(bill): ReturnStmt defer stuff will be handled previously
  1906. return;
  1907. }
  1908. isize prev_context_stack_count = p->context_stack.count;
  1909. GB_ASSERT(prev_context_stack_count <= p->context_stack.capacity);
  1910. defer (p->context_stack.count = prev_context_stack_count);
  1911. p->context_stack.count = d.context_stack_count;
  1912. lbBlock *b = lb_create_block(p, "defer");
  1913. if (last_instr == nullptr || !LLVMIsATerminatorInst(last_instr)) {
  1914. lb_emit_jump(p, b);
  1915. }
  1916. lb_start_block(p, b);
  1917. if (d.kind == lbDefer_Node) {
  1918. lb_build_stmt(p, d.stmt);
  1919. } else if (d.kind == lbDefer_Proc) {
  1920. lb_emit_call(p, d.proc.deferred, d.proc.result_as_args);
  1921. }
  1922. }
  1923. void lb_emit_defer_stmts(lbProcedure *p, lbDeferExitKind kind, lbBlock *block) {
  1924. isize count = p->defer_stmts.count;
  1925. isize i = count;
  1926. while (i --> 0) {
  1927. lbDefer const &d = p->defer_stmts[i];
  1928. if (kind == lbDeferExit_Default) {
  1929. if (p->scope_index == d.scope_index &&
  1930. d.scope_index > 0) { // TODO(bill): Which is correct: > 0 or > 1?
  1931. lb_build_defer_stmt(p, d);
  1932. array_pop(&p->defer_stmts);
  1933. continue;
  1934. } else {
  1935. break;
  1936. }
  1937. } else if (kind == lbDeferExit_Return) {
  1938. lb_build_defer_stmt(p, d);
  1939. } else if (kind == lbDeferExit_Branch) {
  1940. GB_ASSERT(block != nullptr);
  1941. isize lower_limit = block->scope_index;
  1942. if (lower_limit < d.scope_index) {
  1943. lb_build_defer_stmt(p, d);
  1944. }
  1945. }
  1946. }
  1947. }
  1948. void lb_add_defer_node(lbProcedure *p, isize scope_index, Ast *stmt) {
  1949. Type *pt = base_type(p->type);
  1950. GB_ASSERT(pt->kind == Type_Proc);
  1951. if (pt->Proc.calling_convention == ProcCC_Odin) {
  1952. GB_ASSERT(p->context_stack.count != 0);
  1953. }
  1954. lbDefer *d = array_add_and_get(&p->defer_stmts);
  1955. d->kind = lbDefer_Node;
  1956. d->scope_index = scope_index;
  1957. d->context_stack_count = p->context_stack.count;
  1958. d->block = p->curr_block;
  1959. d->stmt = stmt;
  1960. }
  1961. void lb_add_defer_proc(lbProcedure *p, isize scope_index, lbValue deferred, Array<lbValue> const &result_as_args) {
  1962. Type *pt = base_type(p->type);
  1963. GB_ASSERT(pt->kind == Type_Proc);
  1964. if (pt->Proc.calling_convention == ProcCC_Odin) {
  1965. GB_ASSERT(p->context_stack.count != 0);
  1966. }
  1967. lbDefer *d = array_add_and_get(&p->defer_stmts);
  1968. d->kind = lbDefer_Proc;
  1969. d->scope_index = p->scope_index;
  1970. d->block = p->curr_block;
  1971. d->context_stack_count = p->context_stack.count;
  1972. d->proc.deferred = deferred;
  1973. d->proc.result_as_args = result_as_args;
  1974. }