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@@ -527,13 +527,6 @@ gb_internal void check_type_decl(CheckerContext *ctx, Entity *e, Ast *init_expr,
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if (e->kind == Entity_TypeName && ac.objc_class != "") {
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- mutex_lock(&ctx->info->objc_class_name_mutex);
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- bool class_exists = string_set_update(&ctx->info->obcj_class_name_set, ac.objc_class);
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- mutex_unlock(&ctx->info->objc_class_name_mutex);
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- if (class_exists) {
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- error(e->token, "@(objc_class) '%s' has already been used elsewhere", ac.objc_class);
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- }
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-
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e->TypeName.objc_class_name = ac.objc_class;
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if (ac.objc_is_implementation) {
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@@ -542,6 +535,13 @@ gb_internal void check_type_decl(CheckerContext *ctx, Entity *e, Ast *init_expr,
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e->TypeName.objc_ivar = ac.objc_ivar;
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e->TypeName.objc_context_provider = ac.objc_context_provider;
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+ mutex_lock(&ctx->info->objc_class_name_mutex);
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+ bool class_exists = string_set_update(&ctx->info->obcj_class_name_set, ac.objc_class);
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+ mutex_unlock(&ctx->info->objc_class_name_mutex);
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+ if (class_exists) {
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+ error(e->token, "@(objc_class) name '%.*s' has already been used elsewhere", LIT(ac.objc_class));
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+ }
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+
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mpsc_enqueue(&ctx->info->objc_class_implementations, e);
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GB_ASSERT(e->TypeName.objc_ivar == nullptr || e->TypeName.objc_ivar->kind == Type_Named);
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@@ -574,21 +574,20 @@ gb_internal void check_type_decl(CheckerContext *ctx, Entity *e, Ast *init_expr,
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check_single_global_entity(ctx->checker, super->Named.type_name, super->Named.type_name->decl_info);
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if (super->kind != Type_Named) {
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- // TODO(harold): Show the current superclass token too
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error(e->token, "@(objc_superclass) Referenced type must be a named struct");
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break;
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}
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- Type* named_type = base_type(super->Named.type_name->type);
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+ Type* named_type = base_named_type(super);
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+ GB_ASSERT(named_type->kind == Type_Named);
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+
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if (!is_type_objc_object(named_type)) {
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- // TODO(harold): Show the current superclass token too
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- error(e->token, "@(objc_superclass) Superclass must be an Objective-C class");
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+ error(e->token, "@(objc_superclass) Superclass '%.*s' must be an Objective-C class", LIT(named_type->Named.name));
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break;
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}
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if (named_type->Named.type_name->TypeName.objc_class_name == "") {
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- // TODO(harold): Show the current superclass token too
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- error(e->token, "@(objc_superclass) Superclass must be have a valid @(objc_class) attribute");
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+ error(e->token, "@(objc_superclass) Superclass '%.*s' must have a valid @(objc_class) attribute", LIT(named_type->Named.name));
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break;
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}
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@@ -1013,6 +1012,7 @@ gb_internal void check_objc_methods(CheckerContext *ctx, Entity *e, AttributeCon
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error(e->token, "@(objc_name) is required with @(objc_type)");
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} else {
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Type *t = ac.objc_type;
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+
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if (t->kind == Type_Named) { // TODO(harold): Shouldn't this be an error otherwise? Or is it checked elsehwere?
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Entity *tn = t->Named.type_name;
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@@ -1033,11 +1033,11 @@ gb_internal void check_objc_methods(CheckerContext *ctx, Entity *e, AttributeCon
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GB_ASSERT(e->kind == Entity_Procedure);
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auto &proc = e->type->Proc;
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- Type &first_param = proc.param_count > 0 ? proc.params[0] : *t_untyped_nil;
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+ Type *first_param = proc.param_count > 0 ? proc.params->Tuple.variables[0]->type : t_untyped_nil;
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if (!tn->TypeName.objc_is_implementation) {
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error(e->token, "@(objc_is_implement) attribute may only be applied to procedures whose class also have @(objc_is_implement) applied");
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- } else if (!ac.objc_is_class_method && !(first_param.kind == Type_Pointer && first_param.Pointer.elem == t)) {
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+ } else if (!ac.objc_is_class_method && !(first_param->kind == Type_Pointer && internal_check_is_assignable_to(t, first_param->Pointer.elem))) {
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error(e->token, "Objective-C instance methods implementations require the first parameter to be a pointer to the class type set by @(objc_type)");
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} else if (proc.calling_convention == ProcCC_Odin && !tn->TypeName.objc_context_provider) {
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error(e->token, "Objective-C methods with Odin calling convention can only be used with classes that have @(objc_context_provider) set");
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