mirror of
https://github.com/odin-lang/Odin.git
synced 2026-02-14 07:13:14 +00:00
v0.6.0
This commit is contained in:
@@ -66,6 +66,7 @@ general_stuff :: proc() {
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}
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f := Foo{137, true};
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x, b := expand_to_tuple(f);
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fmt.println(f);
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fmt.println(x, b);
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fmt.println(expand_to_tuple(f));
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}
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@@ -371,7 +372,7 @@ parametric_polymorphism :: proc() {
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return t;
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}
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copy :: proc(dst, src: []$T) -> int {
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copy_slice :: proc(dst, src: []$T) -> int {
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n := min(len(dst), len(src));
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if n > 0 {
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mem.copy(&dst[0], &src[0], n*size_of(T));
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@@ -553,7 +554,7 @@ threading_example :: proc() {
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for iteration in 1...5 {
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fmt.printf("Thread %d is on iteration %d\n", t.user_index, iteration);
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fmt.printf("`%s`: iteration %d\n", prefix_table[t.user_index], iteration);
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win32.sleep(1);
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// win32.sleep(1);
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}
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return 0;
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}
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@@ -588,15 +589,13 @@ threading_example :: proc() {
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main :: proc() {
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when false {
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if true {
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fmt.println("\ngeneral_stuff:"); general_stuff();
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fmt.println("\nnested_struct_declarations:"); nested_struct_declarations();
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fmt.println("\ndefault_struct_values:"); default_struct_values();
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fmt.println("\nunion_type:"); union_type();
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fmt.println("\nparametric_polymorphism:"); parametric_polymorphism();
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when true {
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fmt.println("\n# general_stuff"); general_stuff();
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fmt.println("\n# nested_struct_declarations"); nested_struct_declarations();
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fmt.println("\n# default_struct_values"); default_struct_values();
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fmt.println("\n# union_type"); union_type();
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fmt.println("\n# parametric_polymorphism"); parametric_polymorphism();
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fmt.println("\n# threading_example"); threading_example();
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}
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fmt.println("\nthreading_example:"); threading_example();
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}
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}
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@@ -711,8 +711,11 @@ void check_proc_body(Checker *c, Token token, DeclInfo *decl, Type *type, AstNod
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bool is_immutable = e->Variable.is_immutable;
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String name = e->token.string;
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Type *t = base_type(type_deref(e->type));
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if (is_type_struct(t) || is_type_raw_union(t)) {
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Scope *scope = scope_of_node(&c->info, t->Struct.node);
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if (t->kind == Type_Struct) {
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Scope *scope = t->Struct.scope;
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if (scope == nullptr) {
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scope = scope_of_node(&c->info, t->Struct.node);
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}
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GB_ASSERT(scope != nullptr);
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for_array(i, scope->elements.entries) {
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Entity *f = scope->elements.entries[i].value;
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@@ -727,7 +730,7 @@ void check_proc_body(Checker *c, Token token, DeclInfo *decl, Type *type, AstNod
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}
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}
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} else {
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error(e->token, "`using` can only be applied to variables of type struct or raw_union");
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error(e->token, "`using` can only be applied to variables of type struct");
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break;
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}
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}
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@@ -749,7 +752,6 @@ void check_proc_body(Checker *c, Token token, DeclInfo *decl, Type *type, AstNod
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}
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pop_procedure(c);
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check_scope_usage(c, c->context.scope);
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if (decl->parent != nullptr) {
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@@ -31,6 +31,18 @@ struct PolyProcData {
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ProcedureInfo proc_info;
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};
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struct ValidIndexAndScore {
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isize index;
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i64 score;
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};
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int valid_index_and_score_cmp(void const *a, void const *b) {
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i64 si = (cast(ValidIndexAndScore const *)a)->score;
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i64 sj = (cast(ValidIndexAndScore const *)b)->score;
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return sj < si ? -1 : sj > si;
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}
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#define CALL_ARGUMENT_CHECKER(name) CallArgumentError name(Checker *c, AstNode *call, Type *proc_type, Entity *entity, Array<Operand> operands, CallArgumentErrorMode show_error_mode, CallArgumentData *data)
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@@ -4386,44 +4398,61 @@ void convert_to_typed(Checker *c, Operand *operand, Type *target_type, i32 level
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gbTempArenaMemory tmp = gb_temp_arena_memory_begin(&c->tmp_arena);
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defer (gb_temp_arena_memory_end(tmp));
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isize count = t->Union.variants.count;
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i64 *scores = gb_alloc_array(c->tmp_allocator, i64, count);
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i32 success_count = 0;
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ValidIndexAndScore *valids = gb_alloc_array(c->tmp_allocator, ValidIndexAndScore, count);
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i32 valid_count = 0;
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i32 first_success_index = -1;
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for_array(i, t->Union.variants) {
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Type *vt = t->Union.variants[i];
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i64 score = 0;
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if (check_is_assignable_to_with_score(c, operand, vt, &score)) {
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scores[i] = score;
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success_count += 1;
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valids[valid_count].index = i;
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valids[valid_count].score = score;
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valid_count += 1;
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if (first_success_index < 0) {
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first_success_index = i;
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}
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}
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}
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if (valid_count > 1) {
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gb_sort_array(valids, valid_count, valid_index_and_score_cmp);
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i64 best_score = valids[0].score;
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Type *best_type = t->Union.variants[valids[0].index];
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for (isize i = 1; i < valid_count; i++) {
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auto v = valids[i];
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Type *vt = t->Union.variants[v.index];
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if (best_score > v.score) {
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valid_count = i;
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break;
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}
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best_score = v.score;
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}
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first_success_index = valids[0].index;
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}
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gbString type_str = type_to_string(target_type);
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defer (gb_string_free(type_str));
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if (success_count == 1) {
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if (valid_count == 1) {
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operand->mode = Addressing_Value;
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operand->type = t->Union.variants[first_success_index];
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target_type = t->Union.variants[first_success_index];
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break;
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} else if (success_count > 1) {
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} else if (valid_count > 1) {
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GB_ASSERT(first_success_index >= 0);
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operand->mode = Addressing_Invalid;
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convert_untyped_error(c, operand, target_type);
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gb_printf_err("Ambiguous type conversion to `%s`, which variant did you mean:\n\t", type_str);
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i32 j = 0;
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for (i32 i = first_success_index; i < count; i++) {
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if (scores[i] == 0) continue;
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if (j > 0 && success_count > 2) gb_printf_err(", ");
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if (j == success_count-1) {
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if (success_count == 2) gb_printf_err(" ");
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for (i32 i = 0; i < valid_count; i++) {
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ValidIndexAndScore valid = valids[i];
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if (j > 0 && valid_count > 2) gb_printf_err(", ");
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if (j == valid_count-1) {
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if (valid_count == 2) gb_printf_err(" ");
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gb_printf_err("or ");
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}
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gbString str = type_to_string(t->Union.variants[i]);
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gbString str = type_to_string(t->Union.variants[valid.index]);
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gb_printf_err("`%s`", str);
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gb_string_free(str);
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j++;
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@@ -5988,16 +6017,7 @@ bool check_builtin_procedure(Checker *c, Operand *operand, AstNode *call, i32 id
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}
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struct ValidProcAndScore {
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isize index;
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i64 score;
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};
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int valid_proc_and_score_cmp(void const *a, void const *b) {
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i64 si = (cast(ValidProcAndScore const *)a)->score;
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i64 sj = (cast(ValidProcAndScore const *)b)->score;
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return sj < si ? -1 : sj > si;
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}
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bool check_unpack_arguments(Checker *c, isize lhs_count, Array<Operand> *operands, Array<AstNode *> rhs, bool allow_ok) {
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@@ -6439,10 +6459,10 @@ CallArgumentData check_call_arguments(Checker *c, Operand *operand, Type *proc_t
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if (operand->mode == Addressing_Overload) {
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GB_ASSERT(operand->overload_entities != nullptr &&
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operand->overload_count > 0);
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isize overload_count = operand->overload_count;
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Entity ** procs = operand->overload_entities;
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ValidProcAndScore *valids = gb_alloc_array(heap_allocator(), ValidProcAndScore, overload_count);
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isize valid_count = 0;
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isize overload_count = operand->overload_count;
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Entity ** procs = operand->overload_entities;
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ValidIndexAndScore *valids = gb_alloc_array(heap_allocator(), ValidIndexAndScore, overload_count);
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isize valid_count = 0;
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defer (gb_free(heap_allocator(), procs));
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defer (gb_free(heap_allocator(), valids));
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@@ -6478,7 +6498,7 @@ CallArgumentData check_call_arguments(Checker *c, Operand *operand, Type *proc_t
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}
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if (valid_count > 1) {
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gb_sort_array(valids, valid_count, valid_proc_and_score_cmp);
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gb_sort_array(valids, valid_count, valid_index_and_score_cmp);
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i64 best_score = valids[0].score;
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Entity *best_entity = procs[valids[0].index];
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for (isize i = 1; i < valid_count; i++) {
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@@ -1,4 +1,5 @@
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#define USE_CUSTOM_BACKEND 0
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#define USE_THREADED_PARSER 1
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// #define NO_ARRAY_BOUNDS_CHECK
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#include "common.cpp"
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@@ -3262,7 +3262,7 @@ AstNode *parse_value_decl(AstFile *f, Array<AstNode *> names, CommentGroup docs)
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AstNode *type = nullptr;
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Array<AstNode *> values = {};
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Token colon = expect_token_after(f, Token_Colon, "identifier list");
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expect_token_after(f, Token_Colon, "identifier list");
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if (f->curr_token.kind == Token_type) {
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type = ast_type_type(f, advance_token(f), nullptr);
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is_mutable = false;
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@@ -3378,7 +3378,7 @@ AstNode *parse_simple_stmt(AstFile *f, StmtAllowFlag flags) {
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switch (next) {
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case Token_for:
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case Token_match: {
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advance_token(f);
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expect_token_after(f, Token_Colon, "identifier list");
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AstNode *name = lhs[0];
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AstNode *label = ast_label_decl(f, ast_node_token(name), name);
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AstNode *stmt = parse_stmt(f);
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@@ -5092,7 +5092,7 @@ ParseFileError parse_files(Parser *p, String init_filename) {
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p->init_fullpath = init_fullpath;
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#if 1
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#if USE_THREADED_PARSER
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isize thread_count = gb_max(build_context.thread_count, 1);
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if (thread_count > 1) {
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Array<gbThread> worker_threads = {};
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