| ... | ... | @@ -43,9 +43,7 @@ static void set_root_export_version(CodeGen *g, Buf *version_buf, AstNode *node) |
| 43 | 43 | } |
| 44 | 44 | } |
| 45 | 45 | |
| 46 | | static void find_declarations(CodeGen *g, AstNode *node); |
| 47 | | |
| 48 | | static void resolve_type_and_recurse(CodeGen *g, AstNode *node) { |
| 46 | static void resolve_type(CodeGen *g, AstNode *node) { |
| 49 | 47 | assert(!node->codegen_node); |
| 50 | 48 | node->codegen_node = allocate<CodeGenNode>(1); |
| 51 | 49 | TypeNode *type_node = &node->codegen_node->data.type_node; |
| ... | ... | @@ -65,7 +63,7 @@ static void resolve_type_and_recurse(CodeGen *g, AstNode *node) { |
| 65 | 63 | } |
| 66 | 64 | case AstNodeTypeTypePointer: |
| 67 | 65 | { |
| 68 | | find_declarations(g, node->data.type.child_type); |
| 66 | resolve_type(g, node->data.type.child_type); |
| 69 | 67 | TypeNode *child_type_node = &node->data.type.child_type->codegen_node->data.type_node; |
| 70 | 68 | if (child_type_node->entry->id == TypeIdUnreachable) { |
| 71 | 69 | add_node_error(g, node, |
| ... | ... | @@ -94,7 +92,29 @@ static void resolve_type_and_recurse(CodeGen *g, AstNode *node) { |
| 94 | 92 | } |
| 95 | 93 | } |
| 96 | 94 | |
| 97 | | static void find_declarations(CodeGen *g, AstNode *node) { |
| 95 | static void resolve_function_proto(CodeGen *g, AstNode *node) { |
| 96 | assert(node->type == NodeTypeFnProto); |
| 97 | |
| 98 | for (int i = 0; i < node->data.fn_proto.directives->length; i += 1) { |
| 99 | AstNode *directive_node = node->data.fn_proto.directives->at(i); |
| 100 | Buf *name = &directive_node->data.directive.name; |
| 101 | add_node_error(g, directive_node, |
| 102 | buf_sprintf("invalid directive: '%s'", buf_ptr(name))); |
| 103 | } |
| 104 | |
| 105 | for (int i = 0; i < node->data.fn_proto.params.length; i += 1) { |
| 106 | AstNode *child = node->data.fn_proto.params.at(i); |
| 107 | assert(child->type == NodeTypeParamDecl); |
| 108 | |
| 109 | // parameter names are not important here. |
| 110 | |
| 111 | resolve_type(g, child->data.param_decl.type); |
| 112 | } |
| 113 | |
| 114 | resolve_type(g, node->data.fn_proto.return_type); |
| 115 | } |
| 116 | |
| 117 | static void preview_function_declarations(CodeGen *g, AstNode *node) { |
| 98 | 118 | switch (node->type) { |
| 99 | 119 | case NodeTypeExternBlock: |
| 100 | 120 | for (int i = 0; i < node->data.extern_block.directives->length; i += 1) { |
| ... | ... | @@ -113,7 +133,7 @@ static void find_declarations(CodeGen *g, AstNode *node) { |
| 113 | 133 | AstNode *fn_decl = node->data.extern_block.fn_decls.at(fn_decl_i); |
| 114 | 134 | assert(fn_decl->type == NodeTypeFnDecl); |
| 115 | 135 | AstNode *fn_proto = fn_decl->data.fn_decl.fn_proto; |
| 116 | | find_declarations(g, fn_proto); |
| 136 | resolve_function_proto(g, fn_proto); |
| 117 | 137 | Buf *name = &fn_proto->data.fn_proto.name; |
| 118 | 138 | |
| 119 | 139 | FnTableEntry *fn_table_entry = allocate<FnTableEntry>(1); |
| ... | ... | @@ -148,35 +168,10 @@ static void find_declarations(CodeGen *g, AstNode *node) { |
| 148 | 168 | g->fn_table.put(proto_name, fn_table_entry); |
| 149 | 169 | g->fn_defs.append(fn_table_entry); |
| 150 | 170 | |
| 151 | | find_declarations(g, proto_node); |
| 152 | | } |
| 153 | | break; |
| 154 | | } |
| 155 | | case NodeTypeFnProto: |
| 156 | | { |
| 157 | | for (int i = 0; i < node->data.fn_proto.directives->length; i += 1) { |
| 158 | | AstNode *directive_node = node->data.fn_proto.directives->at(i); |
| 159 | | Buf *name = &directive_node->data.directive.name; |
| 160 | | add_node_error(g, directive_node, |
| 161 | | buf_sprintf("invalid directive: '%s'", buf_ptr(name))); |
| 162 | | } |
| 163 | | for (int i = 0; i < node->data.fn_proto.params.length; i += 1) { |
| 164 | | AstNode *child = node->data.fn_proto.params.at(i); |
| 165 | | find_declarations(g, child); |
| 171 | resolve_function_proto(g, proto_node); |
| 166 | 172 | } |
| 167 | | find_declarations(g, node->data.fn_proto.return_type); |
| 168 | | break; |
| 169 | 173 | } |
| 170 | 174 | break; |
| 171 | | case NodeTypeParamDecl: |
| 172 | | find_declarations(g, node->data.param_decl.type); |
| 173 | | break; |
| 174 | | case NodeTypeType: |
| 175 | | resolve_type_and_recurse(g, node); |
| 176 | | break; |
| 177 | | case NodeTypeDirective: |
| 178 | | // we handled directives in the parent function |
| 179 | | break; |
| 180 | 175 | case NodeTypeRootExportDecl: |
| 181 | 176 | for (int i = 0; i < node->data.root_export_decl.directives->length; i += 1) { |
| 182 | 177 | AstNode *directive_node = node->data.root_export_decl.directives->at(i); |
| ... | ... | @@ -189,7 +184,36 @@ static void find_declarations(CodeGen *g, AstNode *node) { |
| 189 | 184 | buf_sprintf("invalid directive: '%s'", buf_ptr(name))); |
| 190 | 185 | } |
| 191 | 186 | } |
| 187 | |
| 188 | if (g->root_export_decl) { |
| 189 | add_node_error(g, node, |
| 190 | buf_sprintf("only one root export declaration allowed")); |
| 191 | } else { |
| 192 | g->root_export_decl = node; |
| 193 | |
| 194 | if (!g->out_name) |
| 195 | g->out_name = &node->data.root_export_decl.name; |
| 196 | |
| 197 | Buf *out_type = &node->data.root_export_decl.type; |
| 198 | OutType export_out_type; |
| 199 | if (buf_eql_str(out_type, "executable")) { |
| 200 | export_out_type = OutTypeExe; |
| 201 | } else if (buf_eql_str(out_type, "library")) { |
| 202 | export_out_type = OutTypeLib; |
| 203 | } else if (buf_eql_str(out_type, "object")) { |
| 204 | export_out_type = OutTypeObj; |
| 205 | } else { |
| 206 | add_node_error(g, node, |
| 207 | buf_sprintf("invalid export type: '%s'", buf_ptr(out_type))); |
| 208 | } |
| 209 | if (g->out_type == OutTypeUnknown) |
| 210 | g->out_type = export_out_type; |
| 211 | } |
| 192 | 212 | break; |
| 213 | case NodeTypeDirective: |
| 214 | case NodeTypeParamDecl: |
| 215 | case NodeTypeFnProto: |
| 216 | case NodeTypeType: |
| 193 | 217 | case NodeTypeFnDecl: |
| 194 | 218 | case NodeTypeReturnExpr: |
| 195 | 219 | case NodeTypeRoot: |
| ... | ... | @@ -260,113 +284,22 @@ static void check_fn_def_control_flow(CodeGen *g, AstNode *node) { |
| 260 | 284 | } |
| 261 | 285 | } |
| 262 | 286 | |
| 263 | | static void analyze_node(CodeGen *g, AstNode *node) { |
| 287 | static void analyze_expression(CodeGen *g, AstNode *node) { |
| 264 | 288 | switch (node->type) { |
| 265 | | case NodeTypeRoot: |
| 266 | | { |
| 267 | | // Iterate once over the top level declarations to build the function table |
| 268 | | for (int i = 0; i < node->data.root.top_level_decls.length; i += 1) { |
| 269 | | AstNode *child = node->data.root.top_level_decls.at(i); |
| 270 | | find_declarations(g, child); |
| 271 | | } |
| 272 | | for (int i = 0; i < node->data.root.top_level_decls.length; i += 1) { |
| 273 | | AstNode *child = node->data.root.top_level_decls.at(i); |
| 274 | | analyze_node(g, child); |
| 275 | | } |
| 276 | | if (!g->out_name) { |
| 277 | | add_node_error(g, node, |
| 278 | | buf_sprintf("missing export declaration and output name not provided")); |
| 279 | | } else if (g->out_type == OutTypeUnknown) { |
| 280 | | add_node_error(g, node, |
| 281 | | buf_sprintf("missing export declaration and export type not provided")); |
| 282 | | } |
| 283 | | break; |
| 284 | | } |
| 285 | | case NodeTypeRootExportDecl: |
| 286 | | if (g->root_export_decl) { |
| 287 | | add_node_error(g, node, |
| 288 | | buf_sprintf("only one root export declaration allowed")); |
| 289 | | } else { |
| 290 | | g->root_export_decl = node; |
| 291 | | |
| 292 | | if (!g->out_name) |
| 293 | | g->out_name = &node->data.root_export_decl.name; |
| 294 | | |
| 295 | | Buf *out_type = &node->data.root_export_decl.type; |
| 296 | | OutType export_out_type; |
| 297 | | if (buf_eql_str(out_type, "executable")) { |
| 298 | | export_out_type = OutTypeExe; |
| 299 | | } else if (buf_eql_str(out_type, "library")) { |
| 300 | | export_out_type = OutTypeLib; |
| 301 | | } else if (buf_eql_str(out_type, "object")) { |
| 302 | | export_out_type = OutTypeObj; |
| 303 | | } else { |
| 304 | | add_node_error(g, node, |
| 305 | | buf_sprintf("invalid export type: '%s'", buf_ptr(out_type))); |
| 306 | | } |
| 307 | | if (g->out_type == OutTypeUnknown) |
| 308 | | g->out_type = export_out_type; |
| 309 | | } |
| 310 | | break; |
| 311 | | case NodeTypeExternBlock: |
| 312 | | for (int fn_decl_i = 0; fn_decl_i < node->data.extern_block.fn_decls.length; fn_decl_i += 1) { |
| 313 | | AstNode *fn_decl = node->data.extern_block.fn_decls.at(fn_decl_i); |
| 314 | | analyze_node(g, fn_decl); |
| 315 | | } |
| 316 | | break; |
| 317 | | case NodeTypeFnDef: |
| 318 | | { |
| 319 | | if (node->codegen_node && node->codegen_node->data.fn_def_node.skip) { |
| 320 | | // we detected an error with this function definition which prevents us |
| 321 | | // from further analyzing it. |
| 322 | | break; |
| 323 | | } |
| 324 | | |
| 325 | | AstNode *proto_node = node->data.fn_def.fn_proto; |
| 326 | | assert(proto_node->type == NodeTypeFnProto); |
| 327 | | analyze_node(g, proto_node); |
| 328 | | |
| 329 | | check_fn_def_control_flow(g, node); |
| 330 | | analyze_node(g, node->data.fn_def.body); |
| 331 | | break; |
| 332 | | } |
| 333 | | case NodeTypeFnDecl: |
| 334 | | { |
| 335 | | AstNode *proto_node = node->data.fn_decl.fn_proto; |
| 336 | | assert(proto_node->type == NodeTypeFnProto); |
| 337 | | analyze_node(g, proto_node); |
| 338 | | break; |
| 339 | | } |
| 340 | | case NodeTypeFnProto: |
| 341 | | { |
| 342 | | for (int i = 0; i < node->data.fn_proto.params.length; i += 1) { |
| 343 | | AstNode *child = node->data.fn_proto.params.at(i); |
| 344 | | analyze_node(g, child); |
| 345 | | } |
| 346 | | analyze_node(g, node->data.fn_proto.return_type); |
| 347 | | break; |
| 348 | | } |
| 349 | | case NodeTypeParamDecl: |
| 350 | | analyze_node(g, node->data.param_decl.type); |
| 351 | | break; |
| 352 | | |
| 353 | | case NodeTypeType: |
| 354 | | // ignore; we handled types with find_declarations |
| 355 | | break; |
| 356 | 289 | case NodeTypeBlock: |
| 357 | 290 | for (int i = 0; i < node->data.block.statements.length; i += 1) { |
| 358 | 291 | AstNode *child = node->data.block.statements.at(i); |
| 359 | | analyze_node(g, child); |
| 292 | analyze_expression(g, child); |
| 360 | 293 | } |
| 361 | 294 | break; |
| 362 | 295 | case NodeTypeReturnExpr: |
| 363 | 296 | if (node->data.return_expr.expr) { |
| 364 | | analyze_node(g, node->data.return_expr.expr); |
| 297 | analyze_expression(g, node->data.return_expr.expr); |
| 365 | 298 | } |
| 366 | 299 | break; |
| 367 | 300 | case NodeTypeBinOpExpr: |
| 368 | | analyze_node(g, node->data.bin_op_expr.op1); |
| 369 | | analyze_node(g, node->data.bin_op_expr.op2); |
| 301 | analyze_expression(g, node->data.bin_op_expr.op1); |
| 302 | analyze_expression(g, node->data.bin_op_expr.op2); |
| 370 | 303 | break; |
| 371 | 304 | case NodeTypeFnCallExpr: |
| 372 | 305 | { |
| ... | ... | @@ -390,13 +323,10 @@ static void analyze_node(CodeGen *g, AstNode *node) { |
| 390 | 323 | |
| 391 | 324 | for (int i = 0; i < node->data.fn_call_expr.params.length; i += 1) { |
| 392 | 325 | AstNode *child = node->data.fn_call_expr.params.at(i); |
| 393 | | analyze_node(g, child); |
| 326 | analyze_expression(g, child); |
| 394 | 327 | } |
| 395 | 328 | break; |
| 396 | 329 | } |
| 397 | | case NodeTypeDirective: |
| 398 | | // we looked at directives in the parent node |
| 399 | | break; |
| 400 | 330 | case NodeTypeCastExpr: |
| 401 | 331 | zig_panic("TODO"); |
| 402 | 332 | break; |
| ... | ... | @@ -409,10 +339,93 @@ static void analyze_node(CodeGen *g, AstNode *node) { |
| 409 | 339 | case NodeTypeSymbol: |
| 410 | 340 | // nothing to do |
| 411 | 341 | break; |
| 342 | case NodeTypeDirective: |
| 343 | case NodeTypeFnDecl: |
| 344 | case NodeTypeFnProto: |
| 345 | case NodeTypeParamDecl: |
| 346 | case NodeTypeType: |
| 347 | case NodeTypeRoot: |
| 348 | case NodeTypeRootExportDecl: |
| 349 | case NodeTypeExternBlock: |
| 350 | case NodeTypeFnDef: |
| 351 | zig_unreachable(); |
| 352 | } |
| 353 | } |
| 354 | |
| 355 | static void analyze_top_level_declaration(CodeGen *g, AstNode *node) { |
| 356 | switch (node->type) { |
| 357 | case NodeTypeFnDef: |
| 358 | { |
| 359 | if (node->codegen_node && node->codegen_node->data.fn_def_node.skip) { |
| 360 | // we detected an error with this function definition which prevents us |
| 361 | // from further analyzing it. |
| 362 | break; |
| 363 | } |
| 364 | |
| 365 | AstNode *fn_proto_node = node->data.fn_def.fn_proto; |
| 366 | assert(fn_proto_node->type == NodeTypeFnProto); |
| 367 | |
| 368 | AstNodeFnProto *fn_proto = &fn_proto_node->data.fn_proto; |
| 369 | for (int i = 0; i < fn_proto->params.length; i += 1) { |
| 370 | AstNode *param_decl_node = fn_proto->params.at(i); |
| 371 | assert(param_decl_node->type == NodeTypeParamDecl); |
| 372 | // TODO: define local variables for parameters |
| 373 | } |
| 374 | |
| 375 | check_fn_def_control_flow(g, node); |
| 376 | analyze_expression(g, node->data.fn_def.body); |
| 377 | } |
| 378 | break; |
| 379 | |
| 380 | case NodeTypeRootExportDecl: |
| 381 | case NodeTypeExternBlock: |
| 382 | // already looked at these in the preview pass |
| 383 | break; |
| 384 | |
| 385 | case NodeTypeDirective: |
| 386 | case NodeTypeParamDecl: |
| 387 | case NodeTypeFnProto: |
| 388 | case NodeTypeType: |
| 389 | case NodeTypeFnDecl: |
| 390 | case NodeTypeReturnExpr: |
| 391 | case NodeTypeRoot: |
| 392 | case NodeTypeBlock: |
| 393 | case NodeTypeBinOpExpr: |
| 394 | case NodeTypeFnCallExpr: |
| 395 | case NodeTypeNumberLiteral: |
| 396 | case NodeTypeStringLiteral: |
| 397 | case NodeTypeUnreachable: |
| 398 | case NodeTypeSymbol: |
| 399 | case NodeTypeCastExpr: |
| 400 | case NodeTypePrefixOpExpr: |
| 401 | zig_unreachable(); |
| 402 | } |
| 403 | } |
| 404 | |
| 405 | static void analyze_root(CodeGen *g, AstNode *node) { |
| 406 | assert(node->type == NodeTypeRoot); |
| 407 | |
| 408 | // find function declarations |
| 409 | for (int i = 0; i < node->data.root.top_level_decls.length; i += 1) { |
| 410 | AstNode *child = node->data.root.top_level_decls.at(i); |
| 411 | preview_function_declarations(g, child); |
| 412 | } |
| 413 | |
| 414 | for (int i = 0; i < node->data.root.top_level_decls.length; i += 1) { |
| 415 | AstNode *child = node->data.root.top_level_decls.at(i); |
| 416 | analyze_top_level_declaration(g, child); |
| 417 | } |
| 418 | |
| 419 | if (!g->out_name) { |
| 420 | add_node_error(g, node, |
| 421 | buf_sprintf("missing export declaration and output name not provided")); |
| 422 | } else if (g->out_type == OutTypeUnknown) { |
| 423 | add_node_error(g, node, |
| 424 | buf_sprintf("missing export declaration and export type not provided")); |
| 412 | 425 | } |
| 413 | 426 | } |
| 414 | 427 | |
| 415 | | static void add_types(CodeGen *g) { |
| 428 | static void define_primitive_types(CodeGen *g) { |
| 416 | 429 | { |
| 417 | 430 | TypeTableEntry *entry = allocate<TypeTableEntry>(1); |
| 418 | 431 | entry->id = TypeIdU8; |
| ... | ... | @@ -491,8 +504,8 @@ void semantic_analyze(CodeGen *g) { |
| 491 | 504 | g->dbuilder = new llvm::DIBuilder(*llvm::unwrap(g->module), true); |
| 492 | 505 | |
| 493 | 506 | |
| 494 | | add_types(g); |
| 507 | define_primitive_types(g); |
| 495 | 508 | |
| 496 | | analyze_node(g, g->root); |
| 509 | analyze_root(g, g->root); |
| 497 | 510 | } |
| 498 | 511 | |