Compare commits
2 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 0706188b98 | |||
| b0c716537e |
+5
-2
@@ -59,6 +59,7 @@ roadmap and milestone history.
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- explicit comptime type parameters such as `max func($T type, a, b T) T`, specialized by type and omitted from the runtime ABI
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- forced typed comptime expressions such as `$sum(1, 2)`, `$Point { x = 1, y = 2 }`, and comptime value blocks such as `${ yield 4 }`
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- comptime execution for bodyful Brolang functions with mutable locals, loops, `defer`, `match`, `try`/`catch`, pointer/slice storage mutation, pointer captures, and calls through comptime-known function values
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- comptime type factories such as `Box func($T type) type { return struct { value T } }`; calls like `Box(i32)` are concrete nominal types and may appear anywhere a type is expected
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- bodyful `c_func` definitions and bodyless `c_func` declarations with exact external symbol names
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- concrete-only C signatures, C variadic declarations/calls, and C default argument promotions
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- native function pointer values and types with `@func(...) R`, fallible `@func(...) R ! E`, optional `?@func(...) R`, and non-variadic native indirect calls
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@@ -74,7 +75,8 @@ roadmap and milestone history.
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### standard packages
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- `std/mem` allocator contract with a context pointer plus shared `AllocatorVTable`, raw byte operations `raw_alloc` / `raw_realloc` / `raw_free`, fallible typed `alloc(T, allocator, count)`, and typed `free(T, allocator, memory)`; failed nonzero raw reallocation preserves the original allocation, while zero size frees it
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- `std/mem` allocator contract with raw byte operations, typed `empty` / `alloc` / `realloc` / `free`, overflow checks, zero-sized-type support, and failure-preserving reallocation
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- `std/arraylist` generic `ArrayList(T)` with direct `items` slice access, explicit capacity, allocator ownership, fallible reserve/append, clear, and deinit
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### compiler behavior
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@@ -91,7 +93,8 @@ roadmap and milestone history.
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- tuples and native Brolang variadic functions
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- exporting Brolang functions to C and broader target-specific C ABI lowering
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- non-plain C record layouts such as bitfields, packed records, flexible arrays, qualified fields, and C variadic record arguments
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- typed heap allocation helpers, arenas, pools, build-mode heap policy, and escaping-allocation diagnostics
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- arenas, pools, build-mode heap policy, and escaping-allocation diagnostics
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- recursive type factories, type reflection, inferred type arguments, and type-producing unions/enums
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- broader Zig-style pointer/result casts beyond V1 `ptr_cast(T, ptr)`
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- sum-type ABI/layout polish, including dynamic tag-width shrinking, all-void channel collapse, and cross-module global-id determinism
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- backed/C enum composition and must-consume fallible linting
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@@ -179,8 +179,10 @@ Current prototype features:
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- Demand-monomorphized Brolang and C-ABI functions
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- Integer and type comptime parameters (`func($N usize) [N]u8`, `func($T type, value T) T`) specialized by comptime argument
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- Forced typed comptime expressions (`$sum(1, 2)`, `$Point { x = 1, y = 2 }`) and comptime value blocks (`${ yield 4 }`)
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- Zig-style comptime type factories returning anonymous native structs (`Box func($T type) type`, used as `Box(i32)`)
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- Comptime execution for bodyful Brolang functions with mutable locals, loops, `defer`, `match`, `try`/`catch`, pointer/slice storage mutation, pointer captures, and calls through comptime-known function values
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- Native function pointer values and types (`*func(...) R`, `*func(...) R ! E`, `?*func(...) R`)
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- Typed allocation/reallocation through `std/mem` and generic dynamic arrays through `std/arraylist`
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- Bodyless concrete C function declarations with exact external symbol names
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- Bodyless manual and imported C variadic declarations with default argument promotions
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- Ordered linking of additional C sources, objects, archives, and libraries
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@@ -732,12 +732,37 @@
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- deferred: build graph / steps / caching, multiple artifacts, computed paths
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(needs string building), struct field defaults to drop `&[]` on empty lists
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29. basic `std/arraylist` implementation using the new `std/mem` typed allocation
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29. fix bugs (implemented)
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- `return _` was already the supported empty return for void functions; the original
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bare-`return` report was stale
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- catch value blocks may end by returning from the function instead of yielding when
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every path exits
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- implicit-conversion diagnostics render source-level composite and named types instead
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of internal `<type N>` ids
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- aliases resolve transparently in value contexts, including composed enum/union sums
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- final open-constant defaults feed one last inference fixpoint before stale
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specializations are pruned
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30. disallow arbitrary integer division
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30. Zig-style type factories and basic `std/arraylist` (implemented; v1)
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- comptime-only functions may return `type`; anonymous `struct { ... }` expressions and
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factory calls such as `ArrayList(i32)` resolve to cached nominal concrete types
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- factory parameters use the existing explicit `$T type` / integer comptime parameters;
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normal comptime control flow and helper factory calls are supported
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- type-factory calls work in signatures, nested types, struct literals, and type builtins;
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runtime materialization and recursive specializations are diagnosed
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- `std/mem` adds typed `empty` and failure-preserving `realloc`, including overflow,
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zero-count, zero-sized-type, and alignment handling
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- `std/arraylist.ArrayList(T)` exposes `items`, `capacity`, and `allocator`, with fallible
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reserve/append, roughly 1.5x growth from 8, clear-without-free, and reusable deinit
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- deferred: recursive factories, reflection, inferred type arguments, type-producing
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unions/enums, pop/insert/remove/shrink/clone container operations
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31. threading generic/polymorphic type information everywhere (init, deinit, etc.) might be annoying and verbose. consider whether generic structs could fit nicely to avoid this.
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32. disallow arbitrary integer division
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- take inspiration from zig
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- see also below for a word on unchecked casts
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- the user should be explicit about what they mean with integer division (e.g. `div`, `rem`)
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- the user should be explicit about what they mean with integer division (e.g. `div`, `rem`, `trunc`)
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## A word on unchecked casts
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@@ -105,6 +105,7 @@ Expr_Kind :: enum u8 {
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Try,
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Catch,
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Function_Literal,
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Anonymous_Struct_Type,
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}
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Expr :: struct {
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@@ -294,6 +295,7 @@ Module :: struct {
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unsupported: [dynamic]Unsupported,
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c_trampolines: [dynamic]Trampoline,
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strings: [dynamic]string,
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type_fields: [dynamic]types.Field,
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type_store: types.Store,
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allocator: mem.Allocator,
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}
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@@ -312,6 +314,7 @@ init_module :: proc(allocator := context.allocator) -> Module {
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module.unsupported.allocator = allocator
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module.c_trampolines.allocator = allocator
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module.strings.allocator = allocator
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module.type_fields.allocator = allocator
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return module
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}
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@@ -362,5 +365,6 @@ destroy_module :: proc(module: ^Module) {
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delete(module.unsupported)
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delete(module.c_trampolines)
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delete(module.strings)
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delete(module.type_fields)
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types.destroy_store(&module.type_store)
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}
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+291
-26
@@ -130,6 +130,19 @@ Import_Index_Entry :: struct {
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id: ast.Import_Id,
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}
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Type_Factory_Entry :: struct {
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template: ast.Function_Id,
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values: []Comptime_Value,
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result: types.Type,
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resolving: bool,
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}
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Generated_Type_Entry :: struct {
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expr: ast.Expr_Id,
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values: []Comptime_Value,
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result: types.Type,
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}
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Checker :: struct {
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ast_module: ^ast.Module,
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diagnostics: ^source.Diagnostics,
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@@ -169,6 +182,8 @@ Checker :: struct {
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current_result: types.Type,
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current_build_ctx: ^Build_Ctx,
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current_comptime_values: []Comptime_Value,
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type_factories: [dynamic]Type_Factory_Entry,
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generated_types: [dynamic]Generated_Type_Entry,
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target: target.Target,
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allocator: mem.Allocator,
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}
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@@ -265,14 +280,102 @@ record_unused_locals :: proc(
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}
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}
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// type_label renders a type for a diagnostic, resolving a named type (enum/union/struct/
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// distinct) to its declared source name; primitives and unnamed types fall back to
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// `types.name` (which prints `<type N>` for anonymous nodes).
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type_label :: proc(checker: ^Checker, value: types.Type) -> string {
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if node, ok := types.node(&checker.module.types, value); ok && node.name != 0 {
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return symbol_text(checker, symbol.Id(node.name))
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write_type_label :: proc(checker: ^Checker, builder: ^strings.Builder, value: types.Type) {
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store := &checker.module.types
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item, ok := types.node(store, value)
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if !ok {
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strings.write_string(builder, types.name(value))
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return
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}
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return types.name(value)
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if item.name != 0 {
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strings.write_string(builder, symbol_text(checker, symbol.Id(item.name)))
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return
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}
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switch item.kind {
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case .Array:
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strings.write_byte(builder, '[')
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if item.inferred_count {
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strings.write_byte(builder, '_')
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} else {
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fmt.sbprintf(builder, "%d", item.count)
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}
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if item.has_sentinel {
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fmt.sbprintf(builder, ";%d", item.sentinel)
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}
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strings.write_byte(builder, ']')
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if item.mutable {
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strings.write_string(builder, "mut ")
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}
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write_type_label(checker, builder, item.child)
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case .Pointer:
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if item.has_sentinel {
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fmt.sbprintf(builder, "[*;%d]", item.sentinel)
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} else {
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strings.write_byte(builder, '*' if item.many else '@')
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}
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if item.mutable {
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strings.write_string(builder, "mut ")
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}
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write_type_label(checker, builder, item.child)
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case .Slice:
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if item.has_sentinel {
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fmt.sbprintf(builder, "[;%d]", item.sentinel)
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} else {
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strings.write_string(builder, "[]")
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}
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if item.mutable {
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strings.write_string(builder, "mut ")
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}
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write_type_label(checker, builder, item.child)
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case .Range:
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strings.write_string(builder, "range(")
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write_type_label(checker, builder, item.child)
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strings.write_byte(builder, ')')
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case .Optional:
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strings.write_byte(builder, '?')
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write_type_label(checker, builder, item.child)
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case .Function:
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strings.write_string(builder, "c_func(" if item.c_abi else "func(")
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for param, index in types.params_for(store, value) {
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if index > 0 {
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strings.write_string(builder, ", ")
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}
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write_type_label(checker, builder, param.type)
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}
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if item.variadic {
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if item.field_count > 0 {
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strings.write_string(builder, ", ")
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}
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strings.write_string(builder, "...")
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}
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strings.write_string(builder, ") ")
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write_type_label(checker, builder, item.child)
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case .Fallible:
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write_type_label(checker, builder, item.child)
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strings.write_string(builder, " ! ")
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write_type_label(checker, builder, item.extra)
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case .Type_Call:
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strings.write_string(builder, "<type factory call>")
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case .Struct:
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strings.write_string(builder, "struct")
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case .Union:
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strings.write_string(builder, "union")
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case .Enum:
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strings.write_string(builder, "enum")
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case .Alias, .Distinct, .Named:
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write_type_label(checker, builder, item.child)
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case .Invalid, .Void, .Anyopaque, .Int_Constraint, .Float_Constraint, .Range_Constraint, .Scalar:
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strings.write_string(builder, types.name(value))
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}
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}
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// Render dynamic types using source syntax so diagnostics never expose internal
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// type-store ids such as `<type 230>`.
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type_label :: proc(checker: ^Checker, value: types.Type) -> string {
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builder := strings.builder_make(context.temp_allocator)
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write_type_label(checker, &builder, value)
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return strings.to_string(builder)
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}
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is_ptr_cast_call :: proc(checker: ^Checker, expr: ast.Expr) -> bool {
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@@ -460,6 +563,8 @@ type_from_syntax :: proc(
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store := &checker.module.types
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changed := false
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#partial switch item.kind {
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case .Alias:
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return type_from_syntax(checker, item.child, pkg, file, depth+1)
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case .Array:
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child := type_from_syntax(checker, item.child, pkg, file, depth+1)
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changed = changed || child != item.child
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@@ -509,6 +614,8 @@ type_from_syntax :: proc(
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if params_changed || result != item.child {
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return types.function(store, resolved_params, result, item.c_abi, item.variadic)
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}
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case .Type_Call:
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return resolve_type_factory_call(checker, ast.Expr_Id(item.count_expr), pkg, file)
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}
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if changed {
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return types.intern(store, item)
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@@ -1042,10 +1149,133 @@ resolve_type_argument :: proc(
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value := types.find_named(&checker.module.types, u32(target_pkg), u32(expr.name), file=u32(expr_lookup_file(expr, file)))
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value = types.resolve_alias(value, &checker.module.types)
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return value, types.is_valid(value)
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case .Call:
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value := resolve_type_factory_call(checker, expr_id, pkg, file)
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return value, types.is_valid(value)
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}
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return types.INVALID, false
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}
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clone_comptime_values :: proc(values: []Comptime_Value, allocator: mem.Allocator) -> []Comptime_Value {
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result := make([]Comptime_Value, len(values), allocator)
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copy(result, values)
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return result
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}
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resolve_generated_struct_type :: proc(checker: ^Checker, expr_id: ast.Expr_Id, pkg: ast.Package_Id, file: ast.File_Id) -> types.Type {
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for entry in checker.generated_types {
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if entry.expr == expr_id && comptime_values_equal(entry.values, checker.current_comptime_values) {
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return entry.result
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}
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}
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if expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) {
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return types.INVALID
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}
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expr := checker.ast_module.exprs[expr_id]
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field_start := int(u32(expr.integer>>32))
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field_count := int(u32(expr.integer))
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if field_start < 0 || field_count < 0 || field_start+field_count > len(checker.ast_module.type_fields) {
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return types.INVALID
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}
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template_fields := checker.ast_module.type_fields[field_start:field_start+field_count]
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fields := make([]types.Field, len(template_fields), checker.allocator)
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defer delete(fields, checker.allocator)
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for field, index in template_fields {
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resolved := type_from_syntax(checker, field.type, pkg, file)
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if !is_runtime_type(checker, resolved) || types.is_void(resolved) {
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source.addf(checker.diagnostics, expr.span, "anonymous struct field '%s' requires a concrete runtime type, got %s", symbol_text(checker, symbol.Id(field.name)), type_label(checker, resolved))
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return types.INVALID
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}
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fields[index] = types.Field{name=field.name, type=resolved}
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}
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result := types.struct_generated(&checker.module.types, fields)
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append(&checker.generated_types, Generated_Type_Entry{
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expr=expr_id,
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values=clone_comptime_values(checker.current_comptime_values, checker.allocator),
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result=result,
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})
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||||
return result
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||||
}
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||||
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resolve_type_factory_call :: proc(checker: ^Checker, expr_id: ast.Expr_Id, pkg: ast.Package_Id, file: ast.File_Id) -> types.Type {
|
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if expr_id == ast.INVALID_EXPR || int(expr_id) >= len(checker.ast_module.exprs) {
|
||||
return types.INVALID
|
||||
}
|
||||
expr := checker.ast_module.exprs[expr_id]
|
||||
if expr.kind != .Call || expr.left != ast.INVALID_EXPR {
|
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source.add(checker.diagnostics, expr.span, "type position requires a direct type-factory call")
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return types.INVALID
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||||
}
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||||
target_pkg, available := expr_package(checker, expr, pkg, file, true)
|
||||
if !available {
|
||||
return types.INVALID
|
||||
}
|
||||
template := find_template(checker, expr.name, target_pkg, expr_lookup_file(expr, file))
|
||||
if template == ast.INVALID_FUNCTION || int(template) >= len(checker.ast_module.functions) {
|
||||
source.addf(checker.diagnostics, expr.span, "unknown type factory '%s'", symbol_text(checker, expr.name))
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||||
return types.INVALID
|
||||
}
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||||
function := checker.ast_module.functions[template]
|
||||
if !is_type_metatype_syntax(checker, function.result) || types.is_valid(function.error) {
|
||||
source.addf(checker.diagnostics, expr.span, "function '%s' does not return a type", symbol_text(checker, expr.name))
|
||||
return types.INVALID
|
||||
}
|
||||
for param in function.params {
|
||||
if !param.comptime_value {
|
||||
source.addf(checker.diagnostics, param.span, "type-factory parameter '%s' must be comptime", symbol_text(checker, param.name))
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||||
return types.INVALID
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||||
}
|
||||
}
|
||||
if !valid_call_arity(function, len(expr.args)) {
|
||||
source.addf(checker.diagnostics, expr.span, "type factory '%s' expects %d arguments, got %d", symbol_text(checker, expr.name), len(function.params), len(expr.args))
|
||||
return types.INVALID
|
||||
}
|
||||
values, ok := collect_comptime_values(checker, function, expr.args, pkg, file, true, checker.current_comptime_values)
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defer delete(values, checker.allocator)
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||||
if !ok {
|
||||
return types.INVALID
|
||||
}
|
||||
// A generic function's declaration is validated before it has a specialization.
|
||||
// Leave calls containing its unresolved type parameters pending until then.
|
||||
for value in values {
|
||||
if value.kind != .Type {
|
||||
continue
|
||||
}
|
||||
if item, item_ok := types.node(&checker.module.types, value.type); item_ok && item.kind == .Named && !item.declared {
|
||||
return types.INVALID
|
||||
}
|
||||
}
|
||||
for &entry in checker.type_factories {
|
||||
if entry.template != template || !comptime_values_equal(entry.values, values) {
|
||||
continue
|
||||
}
|
||||
if entry.resolving {
|
||||
source.addf(checker.diagnostics, expr.span, "recursive type-factory specialization of '%s'", symbol_text(checker, expr.name))
|
||||
return types.INVALID
|
||||
}
|
||||
return entry.result
|
||||
}
|
||||
entry_index := len(checker.type_factories)
|
||||
append(&checker.type_factories, Type_Factory_Entry{
|
||||
template=template,
|
||||
values=clone_comptime_values(values, checker.allocator),
|
||||
result=types.INVALID,
|
||||
resolving=true,
|
||||
})
|
||||
state := ct_state_make(checker, pkg, file)
|
||||
value, flow, eval_ok := ct_eval_call_expr(&state, expr, function.result, 0)
|
||||
result := types.INVALID
|
||||
if eval_ok && flow.kind == .Normal && value != INVALID_CT_VALUE && int(value) < len(state.values) && state.values[value].kind == .Type {
|
||||
result = types.Type(state.values[value].index)
|
||||
} else if state.diagnostic == source.INVALID_DIAGNOSTIC {
|
||||
source.addf(checker.diagnostics, expr.span, "type factory '%s' did not return a type", symbol_text(checker, expr.name))
|
||||
}
|
||||
ct_state_destroy(&state)
|
||||
checker.type_factories[entry_index].result = result
|
||||
checker.type_factories[entry_index].resolving = false
|
||||
return result
|
||||
}
|
||||
|
||||
collect_comptime_values :: proc(
|
||||
checker: ^Checker,
|
||||
function: ast.Function,
|
||||
@@ -1274,7 +1504,7 @@ mark_expr_imports_used :: proc(checker: ^Checker, expr_id: ast.Expr_Id, file: as
|
||||
}
|
||||
case .Add, .Sub, .Mul, .Div, .Index, .Orelse, .Eq, .Ne, .Lt, .Le, .Gt, .Ge, .And, .Or, .Range:
|
||||
append(&stack, expr.left, expr.right)
|
||||
case .Invalid, .Integer, .Float, .String, .Bool, .None, .Undefined, .Type, .Name:
|
||||
case .Invalid, .Integer, .Float, .String, .Bool, .None, .Undefined, .Type, .Name, .Anonymous_Struct_Type:
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -2085,6 +2315,9 @@ infer_expr :: proc(
|
||||
case .Type:
|
||||
last = types.INVALID
|
||||
_ = pop(&stack)
|
||||
case .Anonymous_Struct_Type:
|
||||
last = types.INVALID
|
||||
_ = pop(&stack)
|
||||
case .Integer:
|
||||
last = types.I64
|
||||
if expr.integer <= 0x7fff_ffff_ffff_ffff {
|
||||
@@ -3246,6 +3479,7 @@ infer_all :: proc(checker: ^Checker) {
|
||||
ensure_spec(checker, main_template, nil)
|
||||
}
|
||||
|
||||
defaults_applied := false
|
||||
for {
|
||||
changed := false
|
||||
checker.global_demands_dirty = false
|
||||
@@ -3334,20 +3568,28 @@ infer_all :: proc(checker: ^Checker) {
|
||||
changed = true
|
||||
}
|
||||
if !changed {
|
||||
break
|
||||
}
|
||||
}
|
||||
|
||||
// Any open constant that no use ever demanded now takes its default: an integer
|
||||
// constant the smallest signed type that holds its value, a float constant f64.
|
||||
if !defaults_applied {
|
||||
defaults_applied = true
|
||||
defaulted := false
|
||||
// No authoritative demand can still arrive. Assign final defaults, then
|
||||
// continue the same fixpoint so dependent globals/specs observe them.
|
||||
for global, index in checker.ast_module.globals {
|
||||
if global.external || is_runtime_type(checker, checker.global_types[index]) {
|
||||
continue
|
||||
}
|
||||
if checker.global_open_const[index] {
|
||||
checker.global_types[index] = types.smallest_signed_for_literal(i64(checker.global_const_value[index]))
|
||||
defaulted = true
|
||||
} else if checker.global_open_float[index] {
|
||||
checker.global_types[index] = types.F64
|
||||
defaulted = true
|
||||
}
|
||||
}
|
||||
if defaulted {
|
||||
continue
|
||||
}
|
||||
}
|
||||
break
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -3604,8 +3846,8 @@ coerce_expr :: proc(
|
||||
checker.diagnostics,
|
||||
span,
|
||||
"cannot implicitly convert %s to %s",
|
||||
types.name(actual),
|
||||
types.name(expected),
|
||||
type_label(checker, actual),
|
||||
type_label(checker, expected),
|
||||
)
|
||||
return invalid_hir_expr(checker, span, id, expected)
|
||||
}
|
||||
@@ -4533,7 +4775,7 @@ build_compound_expr :: proc(
|
||||
}
|
||||
handler: [dynamic]hir.Stmt_Id
|
||||
handler.allocator = checker.allocator
|
||||
fallback, _ = build_value_source(ctx, &handler, expr.body, success, expr.span)
|
||||
fallback, _ = build_value_source(ctx, &handler, expr.body, success, expr.span, allow_exit=true)
|
||||
body = handler[:]
|
||||
resize(ctx.locals, capture_start)
|
||||
}
|
||||
@@ -4692,7 +4934,10 @@ build_compound_expr :: proc(
|
||||
})
|
||||
case .Struct_Literal:
|
||||
struct_type := types.INVALID
|
||||
if symbol.is_valid(expr.name) {
|
||||
if expr.left != ast.INVALID_EXPR {
|
||||
struct_type, _ = resolve_type_argument(checker, expr.left, pkg, file)
|
||||
struct_type = types.resolve_alias(struct_type, store)
|
||||
} else if symbol.is_valid(expr.name) {
|
||||
target_pkg, available := expr_package(checker, expr, pkg, file, true)
|
||||
struct_type = types.find_named(store, u32(target_pkg), u32(expr.name), file=u32(expr_lookup_file(expr, file))) if available else types.INVALID
|
||||
struct_type = types.resolve_alias(struct_type, store)
|
||||
@@ -4880,7 +5125,7 @@ build_expr :: proc(
|
||||
template := ast.Function_Id(u32(expr.integer))
|
||||
last = build_function_value(checker, template, expr.span, frame.expected)
|
||||
_ = pop(&stack)
|
||||
case .Type:
|
||||
case .Type, .Anonymous_Struct_Type:
|
||||
id := source.add(checker.diagnostics, expr.span, "type is not a runtime value")
|
||||
last = invalid_hir_expr(checker, expr.span, id)
|
||||
_ = pop(&stack)
|
||||
@@ -5197,6 +5442,12 @@ build_expr :: proc(
|
||||
continue
|
||||
}
|
||||
function := checker.ast_module.functions[template]
|
||||
if is_type_metatype_syntax(checker, function.result) {
|
||||
id := source.addf(checker.diagnostics, expr.span, "type factory '%s' is only valid in type position", symbol_text(checker, expr.name))
|
||||
last = invalid_hir_expr(checker, expr.span, id)
|
||||
_ = pop(&stack)
|
||||
continue
|
||||
}
|
||||
if !valid_call_arity(function, len(expr.args)) {
|
||||
message := "function '%s' expects at least %d arguments, got %d" if function.variadic else
|
||||
"function '%s' expects %d arguments, got %d"
|
||||
@@ -6683,18 +6934,17 @@ build_block :: proc(
|
||||
}
|
||||
|
||||
// build_value_block builds a `{ ... yield v }` value block whose final statement
|
||||
// must be a `yield`: it builds the leading statements inline (their own scope and
|
||||
// defers), evaluates the yield expression in that scope, then — capturing the value
|
||||
// first, like a function return — runs the block's defers and closes the scope. The
|
||||
// resulting `value`/`value_type` are spliced into the enclosing declaration or
|
||||
// assignment. `expected` is the binding's type (INVALID for an untyped `::`, where
|
||||
// the yield's natural type is taken). Statements are appended to `body`.
|
||||
// must be a `yield`. Catch handlers may instead exit on every path, in which case
|
||||
// `allow_exit` leaves the fallback expression invalid. Otherwise it builds the leading
|
||||
// statements inline, evaluates the yield in their scope, then captures the value before
|
||||
// running defers. `expected` is the binding's type (INVALID for an untyped `::`).
|
||||
build_value_block :: proc(
|
||||
ctx: ^Build_Ctx,
|
||||
body: ^[dynamic]hir.Stmt_Id,
|
||||
body_stmts: []ast.Stmt_Id,
|
||||
expected: types.Type,
|
||||
span: source.Span,
|
||||
allow_exit := false,
|
||||
) -> (value: hir.Expr_Id, value_type: types.Type) {
|
||||
checker := ctx.checker
|
||||
n := len(body_stmts)
|
||||
@@ -6705,6 +6955,10 @@ build_value_block :: proc(
|
||||
for s in inner {
|
||||
append(body, s)
|
||||
}
|
||||
if allow_exit && all_paths_exit(&checker.module, inner) {
|
||||
delete(inner, checker.allocator)
|
||||
return hir.INVALID_EXPR, expected
|
||||
}
|
||||
delete(inner, checker.allocator)
|
||||
id := source.add(checker.diagnostics, span, "a value block must end with an explicit 'yield'")
|
||||
ctx.problematic^ = true
|
||||
@@ -6782,6 +7036,7 @@ build_value_source :: proc(
|
||||
span: source.Span,
|
||||
label := symbol.INVALID,
|
||||
value_control_flow := false,
|
||||
allow_exit := false,
|
||||
) -> (value: hir.Expr_Id, value_type: types.Type) {
|
||||
checker := ctx.checker
|
||||
if symbol.is_valid(label) {
|
||||
@@ -6797,7 +7052,7 @@ build_value_source :: proc(
|
||||
return build_value_match(ctx, body, body_stmts[0], expected, span)
|
||||
}
|
||||
}
|
||||
return build_value_block(ctx, body, body_stmts, expected, span)
|
||||
return build_value_block(ctx, body, body_stmts, expected, span, allow_exit)
|
||||
}
|
||||
|
||||
// new_value_slot allocates a fresh, un-nameable mutable local to hold a value-if/loop
|
||||
@@ -8720,6 +8975,8 @@ check :: proc(
|
||||
checker.build_stack.allocator = allocator
|
||||
checker.cycle_stack.allocator = allocator
|
||||
checker.anon_globals.allocator = allocator
|
||||
checker.type_factories.allocator = allocator
|
||||
checker.generated_types.allocator = allocator
|
||||
build_symbol_indexes(&checker)
|
||||
checker.global_types = make([]types.Type, len(ast_module.globals), allocator)
|
||||
checker.global_demands = make([]types.Type, len(ast_module.globals), allocator)
|
||||
@@ -8763,6 +9020,14 @@ check :: proc(
|
||||
delete(checker.infer_stack)
|
||||
delete(checker.build_stack)
|
||||
delete(checker.cycle_stack)
|
||||
for entry in checker.type_factories {
|
||||
delete(entry.values, allocator)
|
||||
}
|
||||
for entry in checker.generated_types {
|
||||
delete(entry.values, allocator)
|
||||
}
|
||||
delete(checker.type_factories)
|
||||
delete(checker.generated_types)
|
||||
}
|
||||
|
||||
for function, index in ast_module.functions {
|
||||
|
||||
@@ -215,6 +215,7 @@ Ct_Value_Kind :: enum u8 {
|
||||
Pointer,
|
||||
Slice,
|
||||
Function,
|
||||
Type,
|
||||
None,
|
||||
Optional_Some,
|
||||
Fallible,
|
||||
@@ -333,6 +334,9 @@ ct_state_make :: proc(
|
||||
if value.kind == .Integer {
|
||||
id := ct_add_value(&state, Ct_Value{kind=.Integer, type=value.type, integer=value.value})
|
||||
ct_bind_value(&state, value.name, value.type, id, false)
|
||||
} else if value.kind == .Type {
|
||||
id := ct_add_value(&state, Ct_Value{kind=.Type, type=types.INVALID, index=u64(value.type)})
|
||||
ct_bind_value(&state, value.name, types.INVALID, id, false)
|
||||
}
|
||||
}
|
||||
return state
|
||||
@@ -532,6 +536,9 @@ ct_coerce_value :: proc(state: ^Ct_State, id: Ct_Value_Id, expected: types.Type,
|
||||
return id, true
|
||||
}
|
||||
value := state.values[id]
|
||||
if value.kind == .Type && is_type_metatype_syntax(state.checker, expected) {
|
||||
return id, true
|
||||
}
|
||||
if types.equal(value.type, expected) {
|
||||
return id, true
|
||||
}
|
||||
@@ -914,7 +921,7 @@ ct_eval_expr :: proc(
|
||||
id := ct_add_value(state, Ct_Value{kind=.Integer, type=value.type, integer=value.value})
|
||||
return id, ct_flow(.Normal), true
|
||||
}
|
||||
return INVALID_CT_VALUE, ct_flow(.Normal), ct_failf(state, .Not_Comptime, expr.span, "type parameter '%s' is not a runtime value", symbol_text(checker, expr.name))
|
||||
return ct_add_value(state, Ct_Value{kind=.Type, type=types.INVALID, index=u64(value.type)}), ct_flow(.Normal), true
|
||||
}
|
||||
} else if find_import(checker, state.file, expr.qualifier) == ast.INVALID_IMPORT {
|
||||
if index, ok := ct_find_binding_index(state, expr.qualifier); ok {
|
||||
@@ -971,6 +978,12 @@ ct_eval_expr :: proc(
|
||||
return ct_eval_array_expr(state, expr, expected, depth+1)
|
||||
case .Struct_Literal:
|
||||
return ct_eval_struct_expr(state, expr, expected, depth+1)
|
||||
case .Type:
|
||||
resolved := type_from_syntax(checker, expr.type, state.pkg, state.file)
|
||||
return ct_add_value(state, Ct_Value{kind=.Type, type=types.INVALID, index=u64(resolved)}), ct_flow(.Normal), types.is_valid(resolved)
|
||||
case .Anonymous_Struct_Type:
|
||||
resolved := resolve_generated_struct_type(checker, expr_id, state.pkg, state.file)
|
||||
return ct_add_value(state, Ct_Value{kind=.Type, type=types.INVALID, index=u64(resolved)}), ct_flow(.Normal), types.is_valid(resolved)
|
||||
case .Enum_Literal:
|
||||
return ct_eval_enum_literal(state, expr, expected, depth+1)
|
||||
case .None:
|
||||
@@ -1150,7 +1163,7 @@ ct_eval_expr :: proc(
|
||||
return value, ct_flow(.Normal), true
|
||||
case .Slice:
|
||||
return ct_eval_slice_expr(state, expr, depth+1)
|
||||
case .Type, .Undefined, .Keyed:
|
||||
case .Undefined, .Keyed:
|
||||
return INVALID_CT_VALUE, ct_flow(.Normal), ct_fail(state, .Not_Comptime, expr.span, "expression cannot be evaluated at comptime")
|
||||
}
|
||||
return INVALID_CT_VALUE, ct_flow(.Normal), ct_fail(state, .Not_Comptime, expr.span, "expression cannot be evaluated at comptime")
|
||||
@@ -1216,7 +1229,10 @@ ct_eval_struct_expr :: proc(state: ^Ct_State, expr: ast.Expr, expected: types.Ty
|
||||
checker := state.checker
|
||||
store := &checker.module.types
|
||||
struct_type := types.INVALID
|
||||
if symbol.is_valid(expr.name) {
|
||||
if expr.left != ast.INVALID_EXPR {
|
||||
struct_type, _ = resolve_type_argument(checker, expr.left, state.pkg, state.file)
|
||||
struct_type = types.resolve_alias(struct_type, store)
|
||||
} else if symbol.is_valid(expr.name) {
|
||||
target_pkg, available := expr_package(checker, expr, state.pkg, state.file, false)
|
||||
struct_type = types.find_named(store, u32(target_pkg), u32(expr.name), file=u32(expr_lookup_file(expr, state.file))) if available else types.INVALID
|
||||
struct_type = types.resolve_alias(struct_type, store)
|
||||
|
||||
@@ -132,7 +132,8 @@ Expr :: struct {
|
||||
integer: i64,
|
||||
args: []Expr_Id,
|
||||
// `Catch` block handlers use `body` for the handler statements and `target`
|
||||
// for the optional captured error local.
|
||||
// for the optional captured error local. A missing `right` means the handler
|
||||
// exits on every path and therefore has no fallback value.
|
||||
body: []Stmt_Id,
|
||||
target: Ref,
|
||||
left: Expr_Id,
|
||||
|
||||
@@ -1402,6 +1402,9 @@ canonicalize_types :: proc(module: ^ast.Module, allocator: mem.Allocator) {
|
||||
for &statement in module.statements {
|
||||
statement.type = canonical_type(module, statement.type, mapping, visiting)
|
||||
}
|
||||
for &field in module.type_fields {
|
||||
field.type = canonical_type(module, field.type, mapping, visiting)
|
||||
}
|
||||
for index := 0; index < original_count; index += 1 {
|
||||
_ = canonical_type(module, types.DYNAMIC_START+types.Type(index), mapping, visiting)
|
||||
}
|
||||
|
||||
@@ -396,11 +396,14 @@ lower_compound_expr :: proc(state: ^State, expr_id: hir.Expr_Id) -> ir.Instructi
|
||||
success_lbl := fresh_label(state)
|
||||
error_lbl := fresh_label(state)
|
||||
merge_lbl := fresh_label(state)
|
||||
slot := append_instruction(state, ir.Instruction{
|
||||
slot := ir.INVALID_INSTRUCTION
|
||||
if !types.is_void(success) {
|
||||
slot = append_instruction(state, ir.Instruction{
|
||||
op=.Alloca, span=expr.span, type=success,
|
||||
target=ir.INVALID_REF, a=ir.INVALID_INSTRUCTION, b=ir.INVALID_INSTRUCTION,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
}
|
||||
append_instruction(state, ir.Instruction{
|
||||
op=.Cond_Br, span=expr.span, type=types.VOID,
|
||||
integer=success_lbl, target=ir.Ref(u32(error_lbl)), a=ok,
|
||||
@@ -466,17 +469,21 @@ lower_compound_expr :: proc(state: ^State, expr_id: hir.Expr_Id) -> ir.Instructi
|
||||
}
|
||||
lower_statements(state, expr.body)
|
||||
}
|
||||
if expr.right != hir.INVALID_EXPR {
|
||||
fallback := lower_nested_expr(state, expr.right)
|
||||
if !types.is_void(success) {
|
||||
append_instruction(state, ir.Instruction{
|
||||
op=.Store, span=expr.span, type=success,
|
||||
target=ir.INVALID_REF, a=slot, b=fallback, diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
}
|
||||
append_instruction(state, ir.Instruction{
|
||||
op=.Br, span=expr.span, type=types.VOID, integer=merge_lbl,
|
||||
target=ir.INVALID_REF, a=ir.INVALID_INSTRUCTION, b=ir.INVALID_INSTRUCTION,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
}
|
||||
}
|
||||
append_instruction(state, ir.Instruction{
|
||||
op=.Label, span=expr.span, type=types.VOID, integer=success_lbl,
|
||||
target=ir.INVALID_REF, a=ir.INVALID_INSTRUCTION, b=ir.INVALID_INSTRUCTION,
|
||||
@@ -503,11 +510,14 @@ lower_compound_expr :: proc(state: ^State, expr_id: hir.Expr_Id) -> ir.Instructi
|
||||
target=ir.INVALID_REF, a=ir.INVALID_INSTRUCTION, b=ir.INVALID_INSTRUCTION,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
append_instruction(state, ir.Instruction{
|
||||
merge := append_instruction(state, ir.Instruction{
|
||||
op=.Label, span=expr.span, type=types.VOID, integer=merge_lbl,
|
||||
target=ir.INVALID_REF, a=ir.INVALID_INSTRUCTION, b=ir.INVALID_INSTRUCTION,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
if types.is_void(success) {
|
||||
return merge
|
||||
}
|
||||
return append_instruction(state, ir.Instruction{
|
||||
op=.Load, span=expr.span, type=success,
|
||||
target=ir.INVALID_REF, a=slot, b=ir.INVALID_INSTRUCTION,
|
||||
|
||||
@@ -378,7 +378,7 @@ parse_type_atom :: proc(parser: ^Parser) -> ast.Type_Syntax {
|
||||
}
|
||||
name = advance(parser)
|
||||
}
|
||||
return types.named(
|
||||
named := types.named(
|
||||
&parser.module.type_store,
|
||||
u32(parser.pkg),
|
||||
u32(name.symbol),
|
||||
@@ -386,6 +386,14 @@ parse_type_atom :: proc(parser: ^Parser) -> ast.Type_Syntax {
|
||||
u32(parser.file),
|
||||
!symbol.is_valid(qualifier) && file_hidden_name(parser, name),
|
||||
)
|
||||
if current(parser).kind == .Left_Paren {
|
||||
call := parse_call(parser, qualifier, first, name, 0)
|
||||
return types.intern(&parser.module.type_store, types.Node{
|
||||
kind=.Type_Call,
|
||||
count_expr=u32(call),
|
||||
})
|
||||
}
|
||||
return named
|
||||
}
|
||||
source.add(parser.diagnostics, tok.span, "expected a type")
|
||||
return types.INVALID
|
||||
@@ -589,6 +597,29 @@ parse_struct_literal :: proc(
|
||||
})
|
||||
}
|
||||
|
||||
parse_anonymous_struct_type_expr :: proc(parser: ^Parser) -> ast.Expr_Id {
|
||||
start := advance(parser)
|
||||
fields: [dynamic]types.Field
|
||||
fields.allocator = parser.module.allocator
|
||||
if !parse_record_body(parser, &fields, "expected '{' after anonymous struct type") {
|
||||
delete(fields)
|
||||
return invalid_expr(parser, start.span, "invalid anonymous struct type")
|
||||
}
|
||||
end := previous(parser)
|
||||
field_start := u32(len(parser.module.type_fields))
|
||||
field_count := u32(len(fields))
|
||||
append(&parser.module.type_fields, ..fields[:])
|
||||
delete(fields)
|
||||
return add_expr(parser, ast.Expr{
|
||||
kind=.Anonymous_Struct_Type,
|
||||
span=span_from(start.span, end.span),
|
||||
integer=u64(field_start)<<32 | u64(field_count),
|
||||
left=ast.INVALID_EXPR,
|
||||
right=ast.INVALID_EXPR,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
}
|
||||
|
||||
parse_integer_magnitude :: proc(text: string) -> (u64, bool) {
|
||||
value: u64
|
||||
for byte in transmute([]byte)text {
|
||||
@@ -755,6 +786,8 @@ parse_primary :: proc(parser: ^Parser, nesting: int) -> ast.Expr_Id {
|
||||
})
|
||||
case .Keyword_Func:
|
||||
return parse_function_literal(parser)
|
||||
case .Keyword_Struct:
|
||||
return parse_anonymous_struct_type_expr(parser)
|
||||
case .Left_Bracket:
|
||||
if starts_declared_type(parser) {
|
||||
start := tok
|
||||
@@ -842,7 +875,20 @@ parse_primary :: proc(parser: ^Parser, nesting: int) -> ast.Expr_Id {
|
||||
name = advance(parser)
|
||||
}
|
||||
if current(parser).kind == .Left_Paren {
|
||||
return parse_call(parser, qualifier, first, name, nesting)
|
||||
call := parse_call(parser, qualifier, first, name, nesting)
|
||||
if current(parser).kind == .Left_Brace && !(parser.no_struct_literal && parser.delimiter_depth == 0) {
|
||||
left_brace := advance(parser)
|
||||
args, right_brace := parse_keyed_initializers(parser, left_brace, nesting, "expected '}' after struct literal")
|
||||
return add_expr(parser, ast.Expr{
|
||||
kind=.Struct_Literal,
|
||||
span=span_from(parser.module.exprs[call].span, right_brace.span),
|
||||
args=args,
|
||||
left=call,
|
||||
right=ast.INVALID_EXPR,
|
||||
diagnostic=source.INVALID_DIAGNOSTIC,
|
||||
})
|
||||
}
|
||||
return call
|
||||
}
|
||||
if current(parser).kind == .Left_Brace && !(parser.no_struct_literal && parser.delimiter_depth == 0) {
|
||||
return parse_struct_literal(parser, qualifier, first, name, nesting)
|
||||
|
||||
@@ -75,6 +75,7 @@ Kind :: enum u8 {
|
||||
Struct,
|
||||
Union,
|
||||
Fallible,
|
||||
Type_Call,
|
||||
}
|
||||
|
||||
Node :: struct {
|
||||
@@ -359,6 +360,21 @@ struct_anonymous :: proc(store: ^Store, fields: []Field) -> Type {
|
||||
})
|
||||
}
|
||||
|
||||
// Generated structs are nominal per comptime type-expression specialization.
|
||||
// The checker owns canonicalization; this routine deliberately creates a fresh node.
|
||||
struct_generated :: proc(store: ^Store, fields: []Field) -> Type {
|
||||
start := u32(len(store.fields))
|
||||
append(&store.fields, ..fields)
|
||||
id := DYNAMIC_START+Type(len(store.nodes))
|
||||
append(&store.nodes, Node{
|
||||
kind=.Struct,
|
||||
field_start=start,
|
||||
field_count=u32(len(fields)),
|
||||
declared=true,
|
||||
})
|
||||
return id
|
||||
}
|
||||
|
||||
variant_id :: proc(store: ^Store, name: u32, payload: Type) -> (u16, bool) {
|
||||
for variant in store.variants {
|
||||
if variant.name == name && variant.payload == payload {
|
||||
|
||||
+144
-35
@@ -3961,6 +3961,77 @@ main func() i32 {
|
||||
testing.expect_value(t, compiler_core.compile_package(directory, output), 1)
|
||||
}
|
||||
|
||||
@(test)
|
||||
terminating_catch_block_compiles_and_runs :: proc(t: ^testing.T) {
|
||||
text := `Failure :: enum {
|
||||
bad
|
||||
}
|
||||
may_fail func(fail bool) i32 ! Failure {
|
||||
if (fail) return .bad
|
||||
return 1
|
||||
}
|
||||
recover func(fail bool) i32 {
|
||||
value :: may_fail(fail) catch |_| {
|
||||
return 40
|
||||
}
|
||||
return value + 1
|
||||
}
|
||||
main func() i32 {
|
||||
return recover(false) + recover(true) - 42
|
||||
}
|
||||
`
|
||||
directory := "/tmp/brolang-test-terminating-catch"
|
||||
main_path := "/tmp/brolang-test-terminating-catch/main.bro"
|
||||
output := "/tmp/brolang-test-terminating-catch-output"
|
||||
_ = os2.remove_all(directory)
|
||||
defer _ = os2.remove_all(directory)
|
||||
defer _ = os.remove(output)
|
||||
testing.expect(t, os.make_directory(directory) == nil)
|
||||
testing.expect(t, os.write_entire_file(main_path, transmute([]byte)text))
|
||||
testing.expect_value(t, compiler_core.compile_package(directory, output), 0)
|
||||
state := run_executable(output)
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
conversion_diagnostics_render_source_types :: proc(t: ^testing.T) {
|
||||
text := `Allocator :: struct {
|
||||
marker i32
|
||||
}
|
||||
take func(allocator Allocator, memory []mut u8) void {}
|
||||
main func() void {
|
||||
allocator Allocator = Allocator { marker = 0 }
|
||||
data [1]mut u8 = [0]
|
||||
take(data[..], allocator)
|
||||
}
|
||||
`
|
||||
source_file := source.Source{path="type_labels.bro", text=text}
|
||||
diagnostics := source.init_diagnostics(&source_file)
|
||||
defer source.destroy_diagnostics(&diagnostics)
|
||||
symbols := symbol.init_table()
|
||||
defer symbol.destroy_table(&symbols)
|
||||
stream := lexer.lex(&source_file, &diagnostics, &symbols)
|
||||
defer delete(stream.items)
|
||||
ast_module := parser.parse(&stream, &source_file, &diagnostics)
|
||||
defer ast.destroy_module(&ast_module)
|
||||
hir_module := checker.check(&ast_module, &diagnostics, &symbols)
|
||||
defer hir.destroy_module(&hir_module)
|
||||
|
||||
slice_to_allocator := false
|
||||
allocator_to_slice := false
|
||||
internal_type_id := false
|
||||
for diagnostic in diagnostics.items {
|
||||
slice_to_allocator = slice_to_allocator ||
|
||||
strings.contains(diagnostic.message, "cannot implicitly convert []mut u8 to Allocator")
|
||||
allocator_to_slice = allocator_to_slice ||
|
||||
strings.contains(diagnostic.message, "cannot implicitly convert Allocator to []mut u8")
|
||||
internal_type_id = internal_type_id || strings.contains(diagnostic.message, "<type ")
|
||||
}
|
||||
testing.expect(t, slice_to_allocator)
|
||||
testing.expect(t, allocator_to_slice)
|
||||
testing.expect(t, !internal_type_id)
|
||||
}
|
||||
|
||||
@(test)
|
||||
contextual_payload_variants_compile :: proc(t: ^testing.T) {
|
||||
text := `DetailError :: union(enum) {
|
||||
@@ -4941,26 +5012,6 @@ folded_constant_addition_compiles_and_runs :: proc(t: ^testing.T) {
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
unused_invalid_global_does_not_trap :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-invalid-unused"
|
||||
defer _ = os.remove(output)
|
||||
status := compiler_core.compile_package("examples/programs/invalid_unused_global", output)
|
||||
testing.expect_value(t, status, 1)
|
||||
state := run_executable(output)
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
used_invalid_global_traps :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-invalid-used"
|
||||
defer _ = os.remove(output)
|
||||
status := compiler_core.compile_package("examples/programs/invalid_used_global", output)
|
||||
testing.expect_value(t, status, 1)
|
||||
state := run_executable(output)
|
||||
testing.expect(t, !state.success)
|
||||
}
|
||||
|
||||
@(test)
|
||||
main_int_is_constrained_to_i32 :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-main-int"
|
||||
@@ -4981,16 +5032,6 @@ main_i32_returns_directly :: proc(t: ^testing.T) {
|
||||
testing.expect_value(t, state.exit_code, 4)
|
||||
}
|
||||
|
||||
@(test)
|
||||
transitive_problematic_global_is_deferred :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-transitive-unused"
|
||||
defer _ = os.remove(output)
|
||||
status := compiler_core.compile_package("examples/programs/invalid_transitive_unused_global", output)
|
||||
testing.expect_value(t, status, 1)
|
||||
state := run_executable(output)
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
checked_addition_traps_on_overflow :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-overflow"
|
||||
@@ -6159,13 +6200,16 @@ main func() void {}
|
||||
hir_module := checker.check(&ast_module, &diagnostics, &symbols)
|
||||
defer hir.destroy_module(&hir_module)
|
||||
|
||||
found_signed_range := 0
|
||||
found_expression_range := 0
|
||||
found_literal_range := 0
|
||||
found_u64_range := false
|
||||
for diagnostic in diagnostics.items {
|
||||
found_signed_range += 1 if strings.contains(diagnostic.message, "exceeds signed i64 range") else 0
|
||||
found_expression_range += 1 if strings.contains(diagnostic.message, "exceeds signed i64 range") else 0
|
||||
found_literal_range += 1 if strings.contains(diagnostic.message, "does not fit in i64") else 0
|
||||
found_u64_range = found_u64_range || strings.contains(diagnostic.message, "magnitude does not fit in u64")
|
||||
}
|
||||
testing.expect_value(t, found_signed_range, 4)
|
||||
testing.expect_value(t, found_expression_range, 2)
|
||||
testing.expect_value(t, found_literal_range, 2)
|
||||
testing.expect(t, found_u64_range)
|
||||
}
|
||||
|
||||
@@ -6479,7 +6523,7 @@ main func() void {
|
||||
for global in hir_module.globals {
|
||||
name := symbol.resolve(&symbols, global.name)
|
||||
if name == "counter" {
|
||||
found_counter = global.writable && !global.is_static && types.equal(global.type, types.I8)
|
||||
found_counter = global.writable && !global.is_static && types.equal(global.type, types.I32)
|
||||
} else if name == "ratio" {
|
||||
found_ratio = global.writable && !global.is_static && types.equal(global.type, types.F64)
|
||||
} else if name == "span" {
|
||||
@@ -6494,7 +6538,7 @@ main func() void {
|
||||
testing.expect(t, found_span)
|
||||
testing.expect(t, found_values)
|
||||
testing.expect(t, strings.contains(llvm_text, "internal global"))
|
||||
testing.expect(t, !strings.contains(llvm_text, "internal constant i8 0"))
|
||||
testing.expect(t, !strings.contains(llvm_text, "internal constant i32 0"))
|
||||
}
|
||||
|
||||
@(test)
|
||||
@@ -6946,6 +6990,71 @@ comptime_type_params_compile_and_run :: proc(t: ^testing.T) {
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
type_factories_compile_and_run :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-type-factory"
|
||||
defer _ = os.remove(output)
|
||||
status := compiler_core.compile_package("examples/programs/type_factory", output)
|
||||
testing.expect_value(t, status, 0)
|
||||
state := run_executable(output)
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
arraylist_compiles_and_runs :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-arraylist"
|
||||
defer _ = os.remove(output)
|
||||
status := compiler_core.compile_package("examples/programs/arraylist", output, nil, target.DEFAULT, cimport.Options{}, ".")
|
||||
testing.expect_value(t, status, 0)
|
||||
state := run_executable(output)
|
||||
testing.expect_value(t, state.exit_code, 0)
|
||||
}
|
||||
|
||||
@(test)
|
||||
type_factory_rejects_runtime_parameters_and_recursion :: proc(t: ^testing.T) {
|
||||
texts := []string{
|
||||
`Bad func($T type, n usize) type {
|
||||
return struct { value [n]T }
|
||||
}
|
||||
main func() void { value Bad(i32, 4) = undefined; _ = &value }
|
||||
`,
|
||||
`Loop func($T type) type {
|
||||
return struct { next @Loop(T) }
|
||||
}
|
||||
main func() void { value Loop(i32) = undefined; _ = &value }
|
||||
`,
|
||||
`Box func($T type) type {
|
||||
return struct { value T }
|
||||
}
|
||||
main func() void { _ = Box(i32) }
|
||||
`,
|
||||
`Bad func($T type) type {
|
||||
return 1
|
||||
}
|
||||
main func() void { value Bad(i32) = undefined; _ = &value }
|
||||
`,
|
||||
}
|
||||
wanted := []string{"must be comptime", "recursive type-factory specialization", "only valid in type position", "cannot implicitly convert"}
|
||||
for text, index in texts {
|
||||
source_file := source.Source{path="test.bro", text=text}
|
||||
diagnostics := source.init_diagnostics(&source_file)
|
||||
symbols := symbol.init_table()
|
||||
stream := lexer.lex(&source_file, &diagnostics, &symbols)
|
||||
ast_module := parser.parse(&stream, &source_file, &diagnostics)
|
||||
hir_module := checker.check(&ast_module, &diagnostics, &symbols)
|
||||
found := false
|
||||
for diagnostic in diagnostics.items {
|
||||
found = found || strings.contains(diagnostic.message, wanted[index])
|
||||
}
|
||||
testing.expect(t, found)
|
||||
hir.destroy_module(&hir_module)
|
||||
ast.destroy_module(&ast_module)
|
||||
delete(stream.items)
|
||||
symbol.destroy_table(&symbols)
|
||||
source.destroy_diagnostics(&diagnostics)
|
||||
}
|
||||
}
|
||||
|
||||
@(test)
|
||||
comptime_eval_compile_and_run :: proc(t: ^testing.T) {
|
||||
output := "/tmp/brolang-test-comptime-eval"
|
||||
|
||||
@@ -0,0 +1,77 @@
|
||||
arraylist :: import "@std/arraylist"
|
||||
mem :: import "@std/mem"
|
||||
|
||||
_fail_alloc func(_ ?*mut anyopaque, _ usize, _ usize) ?*mut u8 {
|
||||
return none
|
||||
}
|
||||
|
||||
_fail_realloc func(_ ?*mut anyopaque, _ ?*mut u8, _ usize, _ usize, _ usize) ?*mut u8 {
|
||||
return none
|
||||
}
|
||||
|
||||
_fail_free func(_ ?*mut anyopaque, _ ?*mut u8, _ usize, _ usize) void {}
|
||||
|
||||
_fail_vtable mem.AllocatorVTable :: mem.AllocatorVTable {
|
||||
alloc = _fail_alloc,
|
||||
realloc = _fail_realloc,
|
||||
free = _fail_free,
|
||||
}
|
||||
|
||||
_fail_allocator mem.Allocator :: mem.Allocator {
|
||||
context = none,
|
||||
vtable = &_fail_vtable,
|
||||
}
|
||||
|
||||
_noop func() void {}
|
||||
|
||||
run func() i32 ! mem.AllocError {
|
||||
values arraylist.ArrayList(i32) = arraylist.init(i32, mem.c_allocator)
|
||||
defer arraylist.deinit(i32, &values)
|
||||
if (values.items.len != 0 or values.capacity != 0) return 1
|
||||
|
||||
i usize = 0
|
||||
while i < 20 : i += 1 {
|
||||
arraylist.append(i32, &values, i32(i)) catch |_| {
|
||||
return .out_of_memory
|
||||
}
|
||||
}
|
||||
if (values.items.len != 20 or values.capacity < 20) return 2
|
||||
if (values.items[0] != 0 or values.items[19] != 19) return 3
|
||||
values.items[3] = 33
|
||||
if (values.items[3] != 33) return 4
|
||||
|
||||
arraylist.reserve(i32, &values, 50) catch |_| {
|
||||
return .out_of_memory
|
||||
}
|
||||
if (values.capacity < 50 or values.items.len != 20 or values.items[19] != 19) return 5
|
||||
capacity usize :: values.capacity
|
||||
arraylist.clear(i32, &values)
|
||||
if (values.items.len != 0 or values.capacity != capacity) return 6
|
||||
arraylist.append(i32, &values, 7) catch |_| {
|
||||
return .out_of_memory
|
||||
}
|
||||
if (values.items.len != 1 or values.items[0] != 7 or values.capacity != capacity) return 7
|
||||
|
||||
empty_values arraylist.ArrayList([0]u8) = arraylist.init([0]u8, mem.c_allocator)
|
||||
defer arraylist.deinit([0]u8, &empty_values)
|
||||
zero [0]u8 :: []
|
||||
arraylist.append([0]u8, &empty_values, zero) catch |_| {
|
||||
return .out_of_memory
|
||||
}
|
||||
if (empty_values.items.len != 1) return 8
|
||||
|
||||
failed arraylist.ArrayList(i32) = arraylist.init(i32, _fail_allocator)
|
||||
failed_as_expected bool = false
|
||||
arraylist.append(i32, &failed, 1) catch |_| {
|
||||
failed_as_expected = true
|
||||
yield _noop()
|
||||
}
|
||||
if (failed_as_expected == false or failed.items.len != 0 or failed.capacity != 0) return 9
|
||||
arraylist.deinit(i32, &failed)
|
||||
|
||||
return 0
|
||||
}
|
||||
|
||||
main func() i32 {
|
||||
return run() catch 100
|
||||
}
|
||||
@@ -1,11 +0,0 @@
|
||||
bad int = 4
|
||||
|
||||
read_bad func() int {
|
||||
return bad
|
||||
}
|
||||
|
||||
derived int :: read_bad()
|
||||
|
||||
main func() void {
|
||||
_ = 1
|
||||
}
|
||||
@@ -1,5 +0,0 @@
|
||||
bad int = 4
|
||||
|
||||
main func() void {
|
||||
_ = 1
|
||||
}
|
||||
@@ -1,5 +0,0 @@
|
||||
bad int = 4
|
||||
|
||||
main func() void {
|
||||
_ = bad
|
||||
}
|
||||
@@ -92,6 +92,14 @@ typed_allocator_test func() i32 {
|
||||
typed[0] = 10
|
||||
typed[3] = 20
|
||||
if (typed[0] + typed[3] != 30) return 39
|
||||
typed = mem.realloc(i32, mem.c_allocator, typed, 8) catch |_| {
|
||||
return 41
|
||||
}
|
||||
if (typed.len != 8 or typed[0] != 10 or typed[3] != 20) return 42
|
||||
typed = mem.realloc(i32, mem.c_allocator, typed, 2) catch |_| {
|
||||
return 43
|
||||
}
|
||||
if (typed.len != 2 or typed[0] != 10) return 44
|
||||
|
||||
return 0
|
||||
}
|
||||
|
||||
@@ -0,0 +1,44 @@
|
||||
Box func($T type) type {
|
||||
return struct {
|
||||
value T
|
||||
}
|
||||
}
|
||||
|
||||
Buffer func($T type, $N usize) type {
|
||||
if N == 0 {
|
||||
return struct {
|
||||
values [0]T
|
||||
}
|
||||
}
|
||||
return struct {
|
||||
values [N]T
|
||||
}
|
||||
}
|
||||
|
||||
BoxAlias func($T type) type {
|
||||
return Box(T)
|
||||
}
|
||||
|
||||
LocalAlias func($T type) type {
|
||||
chosen :: T
|
||||
return chosen
|
||||
}
|
||||
|
||||
make_box func($T type, value T) Box(T) {
|
||||
return Box(T) { value = value }
|
||||
}
|
||||
|
||||
main func() i32 {
|
||||
box Box(i32) :: make_box(i32, 42)
|
||||
if (box.value != 42) return 1
|
||||
aliased BoxAlias(i32) :: box
|
||||
if (aliased.value != 42) return 3
|
||||
local_alias LocalAlias(i32) :: 42
|
||||
if (local_alias != 42) return 6
|
||||
pointer @Box(i32) :: &box
|
||||
if (pointer.value != 42) return 4
|
||||
buffer Buffer(u8, 4) :: Buffer(u8, 4) { values = [1, 2, 3, 4] }
|
||||
if (buffer.values.len != 4) return 2
|
||||
if (size_of(Buffer(u8, 4)) != 4) return 5
|
||||
return 0
|
||||
}
|
||||
@@ -0,0 +1,67 @@
|
||||
mem :: import "@std/mem"
|
||||
|
||||
ArrayList func($T type) type {
|
||||
return struct {
|
||||
items []mut T
|
||||
capacity usize
|
||||
allocator mem.Allocator
|
||||
}
|
||||
}
|
||||
|
||||
init func($T type, allocator mem.Allocator) ArrayList(T) {
|
||||
return ArrayList(T) {
|
||||
items = mem.empty(T),
|
||||
capacity = 0,
|
||||
allocator = allocator,
|
||||
}
|
||||
}
|
||||
|
||||
deinit func($T type, list @mut ArrayList(T)) void {
|
||||
allocation []mut T :: list.items.ptr[..list.capacity]
|
||||
mem.free(T, list.allocator, allocation)
|
||||
list.items = mem.empty(T)
|
||||
list.capacity = 0
|
||||
}
|
||||
|
||||
reserve func($T type, list @mut ArrayList(T), minimum_capacity usize) void ! mem.AllocError {
|
||||
if minimum_capacity <= list.capacity {
|
||||
return _
|
||||
}
|
||||
|
||||
new_capacity usize = 8
|
||||
if list.capacity >= 8 {
|
||||
half usize :: list.capacity / 2
|
||||
if list.capacity > max_value(usize) - half {
|
||||
new_capacity = minimum_capacity
|
||||
} else {
|
||||
new_capacity = list.capacity + half
|
||||
}
|
||||
}
|
||||
if new_capacity < minimum_capacity {
|
||||
new_capacity = minimum_capacity
|
||||
}
|
||||
|
||||
length usize :: list.items.len
|
||||
allocation []mut T :: list.items.ptr[..list.capacity]
|
||||
grown []mut T :: mem.realloc(T, list.allocator, allocation, new_capacity) catch |_| {
|
||||
return .out_of_memory
|
||||
}
|
||||
list.items = grown.ptr[..length]
|
||||
list.capacity = new_capacity
|
||||
return _
|
||||
}
|
||||
|
||||
append func($T type, list @mut ArrayList(T), value T) void ! mem.AllocError {
|
||||
length usize :: list.items.len
|
||||
if length == max_value(usize) {
|
||||
return .out_of_memory
|
||||
}
|
||||
try reserve(T, list, length + 1)
|
||||
list.items = list.items.ptr[..length + 1]
|
||||
list.items[length] = value
|
||||
return _
|
||||
}
|
||||
|
||||
clear func($T type, list @mut ArrayList(T)) void {
|
||||
list.items = list.items.ptr[..0]
|
||||
}
|
||||
+47
-6
@@ -1,9 +1,7 @@
|
||||
c :: import "@ffi/c"
|
||||
|
||||
AllocatorVTable :: struct {
|
||||
alloc @func(context ?*mut anyopaque, size usize, alignment usize) ?*mut u8
|
||||
realloc @func(context ?*mut anyopaque, memory ?*mut u8, old_size usize, new_size usize, alignment usize) ?*mut u8
|
||||
free @func(context ?*mut anyopaque, memory ?*mut u8, size usize, alignment usize) void
|
||||
AllocError :: enum {
|
||||
out_of_memory
|
||||
}
|
||||
|
||||
Allocator :: struct {
|
||||
@@ -11,8 +9,10 @@ Allocator :: struct {
|
||||
vtable @AllocatorVTable
|
||||
}
|
||||
|
||||
AllocError :: enum {
|
||||
out_of_memory
|
||||
AllocatorVTable :: struct {
|
||||
alloc @func(context ?*mut anyopaque, size usize, alignment usize) ?*mut u8
|
||||
realloc @func(context ?*mut anyopaque, memory ?*mut u8, old_size usize, new_size usize, alignment usize) ?*mut u8
|
||||
free @func(context ?*mut anyopaque, memory ?*mut u8, size usize, alignment usize) void
|
||||
}
|
||||
|
||||
raw_alloc func(allocator Allocator, size usize, alignment usize) ?*mut u8 {
|
||||
@@ -34,6 +34,10 @@ _empty_slice func($T type, count usize) []mut T {
|
||||
return pointer[..count]
|
||||
}
|
||||
|
||||
empty func($T type) []mut T {
|
||||
return _empty_slice(T, 0)
|
||||
}
|
||||
|
||||
alloc func($T type, allocator Allocator, count usize) []mut T ! AllocError {
|
||||
if count == 0 {
|
||||
return _empty_slice(T, 0)
|
||||
@@ -55,6 +59,43 @@ alloc func($T type, allocator Allocator, count usize) []mut T ! AllocError {
|
||||
return .out_of_memory
|
||||
}
|
||||
|
||||
realloc func($T type, allocator Allocator, memory []mut T, new_count usize) []mut T ! AllocError {
|
||||
if new_count == memory.len {
|
||||
return memory
|
||||
}
|
||||
if new_count == 0 {
|
||||
free(T, allocator, memory)
|
||||
return _empty_slice(T, 0)
|
||||
}
|
||||
|
||||
element_size usize :: size_of(T)
|
||||
if element_size == 0 {
|
||||
return _empty_slice(T, new_count)
|
||||
}
|
||||
if new_count > max_value(usize) / element_size {
|
||||
return .out_of_memory
|
||||
}
|
||||
|
||||
old_memory ?*mut u8 = none
|
||||
old_size usize = 0
|
||||
if memory.len != 0 {
|
||||
old_memory = ptr_cast(u8, memory.ptr)
|
||||
old_size = memory.len * element_size
|
||||
}
|
||||
resized ?*mut u8 = raw_realloc(
|
||||
allocator,
|
||||
old_memory,
|
||||
old_size,
|
||||
new_count * element_size,
|
||||
align_of(T),
|
||||
)
|
||||
if resized |bytes| {
|
||||
pointer *mut T :: ptr_cast(T, bytes)
|
||||
return pointer[..new_count]
|
||||
}
|
||||
return .out_of_memory
|
||||
}
|
||||
|
||||
free func($T type, allocator Allocator, memory []mut T) void {
|
||||
if memory.len != 0 and size_of(T) != 0 {
|
||||
raw_free(allocator, ptr_cast(u8, memory.ptr), memory.len * size_of(T), align_of(T))
|
||||
|
||||
@@ -0,0 +1,420 @@
|
||||
# generated by brolang translate-c from stdio.h
|
||||
|
||||
# unsupported in bindings: C union '__mbstate_t' has no native spelling
|
||||
__darwin_pthread_handler_rec :: c_struct {
|
||||
__routine ?*c_func(_ ?*mut anyopaque) void
|
||||
__arg ?*mut anyopaque
|
||||
__next ?*mut __darwin_pthread_handler_rec
|
||||
}
|
||||
_opaque_pthread_attr_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [56]c_char
|
||||
}
|
||||
_opaque_pthread_cond_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [40]c_char
|
||||
}
|
||||
_opaque_pthread_condattr_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [8]c_char
|
||||
}
|
||||
_opaque_pthread_mutex_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [56]c_char
|
||||
}
|
||||
_opaque_pthread_mutexattr_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [8]c_char
|
||||
}
|
||||
_opaque_pthread_once_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [8]c_char
|
||||
}
|
||||
_opaque_pthread_rwlock_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [192]c_char
|
||||
}
|
||||
_opaque_pthread_rwlockattr_t :: c_struct {
|
||||
__sig c_long
|
||||
__opaque [16]c_char
|
||||
}
|
||||
_opaque_pthread_t :: c_struct {
|
||||
__sig c_long
|
||||
__cleanup_stack ?*mut __darwin_pthread_handler_rec
|
||||
__opaque [8176]c_char
|
||||
}
|
||||
__sbuf :: c_struct {
|
||||
_base ?*mut c_uchar
|
||||
_size c_int
|
||||
}
|
||||
__sFILEX :: opaque
|
||||
__sFILE :: c_struct {
|
||||
_p ?*mut c_uchar
|
||||
_r c_int
|
||||
_w c_int
|
||||
_flags c_short
|
||||
_file c_short
|
||||
_bf __sbuf
|
||||
_lbfsize c_int
|
||||
_cookie ?*mut anyopaque
|
||||
_close ?*c_func(_ ?*mut anyopaque) c_int
|
||||
_read ?*c_func(_ ?*mut anyopaque, _ ?*mut c_char, _ c_int) c_int
|
||||
_seek ?*c_func(_ ?*mut anyopaque, _ c_longlong, _ c_int) c_longlong
|
||||
_write ?*c_func(_ ?*mut anyopaque, _ ?*c_char, _ c_int) c_int
|
||||
_ub __sbuf
|
||||
_extra ?*mut __sFILEX
|
||||
_ur c_int
|
||||
_ubuf [3]c_uchar
|
||||
_nbuf [1]c_uchar
|
||||
_lb __sbuf
|
||||
_blksize c_int
|
||||
_offset c_longlong
|
||||
}
|
||||
|
||||
__int8_t :: alias c_schar
|
||||
__uint8_t :: alias c_uchar
|
||||
__int16_t :: alias c_short
|
||||
__uint16_t :: alias c_ushort
|
||||
__int32_t :: alias c_int
|
||||
__uint32_t :: alias c_uint
|
||||
__int64_t :: alias c_longlong
|
||||
__uint64_t :: alias c_ulonglong
|
||||
__darwin_intptr_t :: alias c_long
|
||||
__darwin_natural_t :: alias c_uint
|
||||
__darwin_ct_rune_t :: alias c_int
|
||||
__darwin_mbstate_t :: alias __mbstate_t
|
||||
__darwin_ptrdiff_t :: alias c_long
|
||||
__darwin_size_t :: alias c_ulong
|
||||
__darwin_va_list :: alias ?*mut c_char
|
||||
__darwin_wchar_t :: alias c_int
|
||||
__darwin_rune_t :: alias c_int
|
||||
__darwin_wint_t :: alias c_int
|
||||
__darwin_clock_t :: alias c_ulong
|
||||
__darwin_socklen_t :: alias c_uint
|
||||
__darwin_ssize_t :: alias c_long
|
||||
__darwin_time_t :: alias c_long
|
||||
__darwin_blkcnt_t :: alias c_longlong
|
||||
__darwin_blksize_t :: alias c_int
|
||||
__darwin_dev_t :: alias c_int
|
||||
__darwin_fsblkcnt_t :: alias c_uint
|
||||
__darwin_fsfilcnt_t :: alias c_uint
|
||||
__darwin_gid_t :: alias c_uint
|
||||
__darwin_id_t :: alias c_uint
|
||||
__darwin_ino64_t :: alias c_ulonglong
|
||||
__darwin_ino_t :: alias c_ulonglong
|
||||
__darwin_mach_port_name_t :: alias c_uint
|
||||
__darwin_mach_port_t :: alias c_uint
|
||||
__darwin_mode_t :: alias c_ushort
|
||||
__darwin_off_t :: alias c_longlong
|
||||
__darwin_pid_t :: alias c_int
|
||||
__darwin_sigset_t :: alias c_uint
|
||||
__darwin_suseconds_t :: alias c_int
|
||||
__darwin_uid_t :: alias c_uint
|
||||
__darwin_useconds_t :: alias c_uint
|
||||
__darwin_uuid_t :: alias [16]c_uchar
|
||||
__darwin_uuid_string_t :: alias [37]c_char
|
||||
__darwin_pthread_attr_t :: alias _opaque_pthread_attr_t
|
||||
__darwin_pthread_cond_t :: alias _opaque_pthread_cond_t
|
||||
__darwin_pthread_condattr_t :: alias _opaque_pthread_condattr_t
|
||||
__darwin_pthread_key_t :: alias c_ulong
|
||||
__darwin_pthread_mutex_t :: alias _opaque_pthread_mutex_t
|
||||
__darwin_pthread_mutexattr_t :: alias _opaque_pthread_mutexattr_t
|
||||
__darwin_pthread_once_t :: alias _opaque_pthread_once_t
|
||||
__darwin_pthread_rwlock_t :: alias _opaque_pthread_rwlock_t
|
||||
__darwin_pthread_rwlockattr_t :: alias _opaque_pthread_rwlockattr_t
|
||||
__darwin_pthread_t :: alias ?*mut _opaque_pthread_t
|
||||
__darwin_nl_item :: alias c_int
|
||||
__darwin_wctrans_t :: alias c_int
|
||||
__darwin_wctype_t :: alias c_uint
|
||||
int8_t :: alias c_schar
|
||||
int16_t :: alias c_short
|
||||
int32_t :: alias c_int
|
||||
int64_t :: alias c_longlong
|
||||
u_int8_t :: alias c_uchar
|
||||
u_int16_t :: alias c_ushort
|
||||
u_int32_t :: alias c_uint
|
||||
u_int64_t :: alias c_ulonglong
|
||||
register_t :: alias c_longlong
|
||||
intptr_t :: alias c_long
|
||||
uintptr_t :: alias c_ulong
|
||||
user_addr_t :: alias c_ulonglong
|
||||
user_size_t :: alias c_ulonglong
|
||||
user_ssize_t :: alias c_longlong
|
||||
user_long_t :: alias c_longlong
|
||||
user_ulong_t :: alias c_ulonglong
|
||||
user_time_t :: alias c_longlong
|
||||
user_off_t :: alias c_longlong
|
||||
syscall_arg_t :: alias c_ulonglong
|
||||
va_list :: alias ?*mut c_char
|
||||
size_t :: alias c_ulong
|
||||
fpos_t :: alias c_longlong
|
||||
FILE :: alias __sFILE
|
||||
off_t :: alias c_longlong
|
||||
ssize_t :: alias c_long
|
||||
|
||||
_DARWIN_FEATURE_64_BIT_INODE c_int :: 1
|
||||
_DARWIN_FEATURE_ONLY_64_BIT_INODE c_int :: 1
|
||||
_DARWIN_FEATURE_ONLY_VERS_1050 c_int :: 1
|
||||
_DARWIN_FEATURE_ONLY_UNIX_CONFORMANCE c_int :: 1
|
||||
_DARWIN_FEATURE_UNIX_CONFORMANCE c_int :: 3
|
||||
_FORTIFY_SOURCE c_int :: 2
|
||||
RENAME_SECLUDE c_int :: 1
|
||||
RENAME_SWAP c_int :: 2
|
||||
RENAME_EXCL c_int :: 4
|
||||
RENAME_RESERVED1 c_int :: 8
|
||||
RENAME_NOFOLLOW_ANY c_int :: 16
|
||||
RENAME_RESOLVE_BENEATH c_int :: 32
|
||||
SEEK_SET c_int :: 0
|
||||
SEEK_CUR c_int :: 1
|
||||
SEEK_END c_int :: 2
|
||||
SEEK_HOLE c_int :: 3
|
||||
SEEK_DATA c_int :: 4
|
||||
_IOFBF c_int :: 0
|
||||
_IOLBF c_int :: 1
|
||||
_IONBF c_int :: 2
|
||||
BUFSIZ c_int :: 1024
|
||||
FOPEN_MAX c_int :: 20
|
||||
FILENAME_MAX c_int :: 1024
|
||||
L_tmpnam c_int :: 1024
|
||||
TMP_MAX c_int :: 308915776
|
||||
L_ctermid c_int :: 1024
|
||||
_USE_FORTIFY_LEVEL c_int :: 2
|
||||
|
||||
renameat c_func(_ c_int, _ ?*c_char, _ c_int, _ ?*c_char) c_int
|
||||
renamex_np c_func(_ ?*c_char, _ ?*c_char, _ c_uint) c_int
|
||||
renameatx_np c_func(_ c_int, _ ?*c_char, _ c_int, _ ?*c_char, _ c_uint) c_int
|
||||
printf c_func(_ ?*c_char, ...) c_int
|
||||
clearerr c_func(_ ?*mut __sFILE) void
|
||||
fclose c_func(_ ?*mut __sFILE) c_int
|
||||
feof c_func(_ ?*mut __sFILE) c_int
|
||||
ferror c_func(_ ?*mut __sFILE) c_int
|
||||
fflush c_func(_ ?*mut __sFILE) c_int
|
||||
fgetc c_func(_ ?*mut __sFILE) c_int
|
||||
fgetpos c_func(_ ?*mut __sFILE, _ ?*mut c_longlong) c_int
|
||||
fgets c_func(_ ?*mut c_char, __size c_int, _ ?*mut __sFILE) ?*mut c_char
|
||||
fopen c_func(__filename ?*c_char, __mode ?*c_char) ?*mut __sFILE
|
||||
fprintf c_func(_ ?*mut __sFILE, _ ?*c_char, ...) c_int
|
||||
fputc c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
fputs c_func(_ ?*c_char, _ ?*mut __sFILE) c_int
|
||||
fread c_func(__ptr ?*mut anyopaque, __size c_ulong, __nitems c_ulong, __stream ?*mut __sFILE) c_ulong
|
||||
freopen c_func(_ ?*c_char, _ ?*c_char, _ ?*mut __sFILE) ?*mut __sFILE
|
||||
fscanf c_func(_ ?*mut __sFILE, _ ?*c_char, ...) c_int
|
||||
fseek c_func(_ ?*mut __sFILE, _ c_long, _ c_int) c_int
|
||||
fsetpos c_func(_ ?*mut __sFILE, _ ?*c_longlong) c_int
|
||||
ftell c_func(_ ?*mut __sFILE) c_long
|
||||
fwrite c_func(__ptr ?*anyopaque, __size c_ulong, __nitems c_ulong, __stream ?*mut __sFILE) c_ulong
|
||||
getc c_func(_ ?*mut __sFILE) c_int
|
||||
getchar c_func() c_int
|
||||
gets c_func(_ ?*mut c_char) ?*mut c_char
|
||||
perror c_func(_ ?*c_char) void
|
||||
putc c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
putchar c_func(_ c_int) c_int
|
||||
puts c_func(_ ?*c_char) c_int
|
||||
remove c_func(_ ?*c_char) c_int
|
||||
rename c_func(__old ?*c_char, __new ?*c_char) c_int
|
||||
rewind c_func(_ ?*mut __sFILE) void
|
||||
scanf c_func(_ ?*c_char, ...) c_int
|
||||
setbuf c_func(_ ?*mut __sFILE, _ ?*mut c_char) void
|
||||
setvbuf c_func(_ ?*mut __sFILE, _ ?*mut c_char, _ c_int, __size c_ulong) c_int
|
||||
sprintf c_func(_ ?*mut c_char, _ ?*c_char, ...) c_int
|
||||
sscanf c_func(_ ?*c_char, _ ?*c_char, ...) c_int
|
||||
tmpfile c_func() ?*mut __sFILE
|
||||
tmpnam c_func(_ ?*mut c_char) ?*mut c_char
|
||||
ungetc c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
vfprintf c_func(_ ?*mut __sFILE, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
vprintf c_func(_ ?*c_char, _ ?*mut c_char) c_int
|
||||
vsprintf c_func(_ ?*mut c_char, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
ctermid c_func(_ ?*mut c_char) ?*mut c_char
|
||||
fdopen c_func(_ c_int, _ ?*c_char) ?*mut __sFILE
|
||||
fileno c_func(_ ?*mut __sFILE) c_int
|
||||
pclose c_func(_ ?*mut __sFILE) c_int
|
||||
popen c_func(_ ?*c_char, _ ?*c_char) ?*mut __sFILE
|
||||
__srget c_func(_ ?*mut __sFILE) c_int
|
||||
__svfscanf c_func(_ ?*mut __sFILE, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
__swbuf c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
__sputc c_func(_c c_int, _p ?*mut __sFILE) c_int
|
||||
flockfile c_func(_ ?*mut __sFILE) void
|
||||
ftrylockfile c_func(_ ?*mut __sFILE) c_int
|
||||
funlockfile c_func(_ ?*mut __sFILE) void
|
||||
getc_unlocked c_func(_ ?*mut __sFILE) c_int
|
||||
getchar_unlocked c_func() c_int
|
||||
putc_unlocked c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
putchar_unlocked c_func(_ c_int) c_int
|
||||
getw c_func(_ ?*mut __sFILE) c_int
|
||||
putw c_func(_ c_int, _ ?*mut __sFILE) c_int
|
||||
tempnam c_func(__dir ?*c_char, __prefix ?*c_char) ?*mut c_char
|
||||
fseeko c_func(__stream ?*mut __sFILE, __offset c_longlong, __whence c_int) c_int
|
||||
ftello c_func(__stream ?*mut __sFILE) c_longlong
|
||||
snprintf c_func(__str ?*mut c_char, __size c_ulong, __format ?*c_char, ...) c_int
|
||||
vfscanf c_func(__stream ?*mut __sFILE, __format ?*c_char, _ ?*mut c_char) c_int
|
||||
vscanf c_func(__format ?*c_char, _ ?*mut c_char) c_int
|
||||
vsnprintf c_func(__str ?*mut c_char, __size c_ulong, __format ?*c_char, _ ?*mut c_char) c_int
|
||||
vsscanf c_func(__str ?*c_char, __format ?*c_char, _ ?*mut c_char) c_int
|
||||
dprintf c_func(_ c_int, _ ?*c_char, ...) c_int
|
||||
vdprintf c_func(_ c_int, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
getdelim c_func(__linep ?*mut ?*mut c_char, __linecapp ?*mut c_ulong, __delimiter c_int, __stream ?*mut __sFILE) c_long
|
||||
getline c_func(__linep ?*mut ?*mut c_char, __linecapp ?*mut c_ulong, __stream ?*mut __sFILE) c_long
|
||||
fmemopen c_func(__buf ?*mut anyopaque, __size c_ulong, __mode ?*c_char) ?*mut __sFILE
|
||||
open_memstream c_func(__bufp ?*mut ?*mut c_char, __sizep ?*mut c_ulong) ?*mut __sFILE
|
||||
asprintf c_func(_ ?*mut ?*mut c_char, _ ?*c_char, ...) c_int
|
||||
ctermid_r c_func(_ ?*mut c_char) ?*mut c_char
|
||||
fgetln c_func(_ ?*mut __sFILE, __len ?*mut c_ulong) ?*mut c_char
|
||||
fmtcheck c_func(_ ?*c_char, _ ?*c_char) ?*c_char
|
||||
fpurge c_func(_ ?*mut __sFILE) c_int
|
||||
setbuffer c_func(_ ?*mut __sFILE, _ ?*mut c_char, __size c_int) void
|
||||
setlinebuf c_func(_ ?*mut __sFILE) c_int
|
||||
vasprintf c_func(_ ?*mut ?*mut c_char, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
funopen c_func(_ ?*anyopaque, _ ?*c_func(_ ?*mut anyopaque, _ ?*mut c_char, _ c_int) c_int, _ ?*c_func(_ ?*mut anyopaque, _ ?*c_char, _ c_int) c_int, _ ?*c_func(_ ?*mut anyopaque, _ c_longlong, _ c_int) c_longlong, _ ?*c_func(_ ?*mut anyopaque) c_int) ?*mut __sFILE
|
||||
__snprintf_chk c_func(_ ?*mut c_char, __maxlen c_ulong, _ c_int, _ c_ulong, _ ?*c_char, ...) c_int
|
||||
__vsnprintf_chk c_func(_ ?*mut c_char, __maxlen c_ulong, _ c_int, _ c_ulong, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
__sprintf_chk c_func(_ ?*mut c_char, _ c_int, _ c_ulong, _ ?*c_char, ...) c_int
|
||||
__vsprintf_chk c_func(_ ?*mut c_char, _ c_int, _ c_ulong, _ ?*c_char, _ ?*mut c_char) c_int
|
||||
|
||||
# unsupported in bindings: external variable '__stdinp' has no native spelling
|
||||
# unsupported in bindings: external variable '__stdoutp' has no native spelling
|
||||
# unsupported in bindings: external variable '__stderrp' has no native spelling
|
||||
# unsupported in bindings: external variable 'sys_nerr' has no native spelling
|
||||
# unsupported in bindings: external variable 'sys_errlist' has no native spelling
|
||||
# unsupported in bindings: _STDIO_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_BOUNDS_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _CDEFS_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_COUNT — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_COUNT_OR_NULL — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_SIZE — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_SIZE_OR_NULL — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_ENDED_BY — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_SINGLE — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_UNSAFE_INDEXABLE — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_CSTR — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_NULL_TERMINATED — C macro has no replacement value
|
||||
# unsupported in bindings: _LIBC_FLEX_COUNT — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_SINGLE_BY_DEFAULT — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_PTRCHECK_REPLACED — C function-like macros are not supported
|
||||
# unsupported in bindings: _LIBC_FORGE_PTR — C function-like macros are not supported
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_7 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_8 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_9 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_10 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_10_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_10_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_11 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_11_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_11_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_11_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_12 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_12_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_12_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_12_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_13 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_13_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_13_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_13_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_14 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_14_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_14_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_14_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_14_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_15 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_15_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_15_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_X_VERSION_10_16 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_11_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_12_7 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_13_7 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_14_7 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_5 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_15_6 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_16_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_26_0 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_26_1 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_26_2 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_26_3 — C macro is not a supported constant
|
||||
# unsupported in bindings: MAC_OS_VERSION_26_4 — C macro is not a supported constant
|
||||
# unsupported in bindings: _SYS__TYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _BSD_MACHINE__TYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _BSD_ARM__TYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _SYS__PTHREAD_TYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _VA_LIST_T — C macro has no replacement value
|
||||
# unsupported in bindings: _BSD_MACHINE_TYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _ARM_MACHTYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _MACHTYPES_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _INT8_T — C macro has no replacement value
|
||||
# unsupported in bindings: _INT16_T — C macro has no replacement value
|
||||
# unsupported in bindings: _INT32_T — C macro has no replacement value
|
||||
# unsupported in bindings: _INT64_T — C macro has no replacement value
|
||||
# unsupported in bindings: _U_INT8_T — C macro has no replacement value
|
||||
# unsupported in bindings: _U_INT16_T — C macro has no replacement value
|
||||
# unsupported in bindings: _U_INT32_T — C macro has no replacement value
|
||||
# unsupported in bindings: _U_INT64_T — C macro has no replacement value
|
||||
# unsupported in bindings: _INTPTR_T — C macro has no replacement value
|
||||
# unsupported in bindings: _UINTPTR_T — C macro has no replacement value
|
||||
# unsupported in bindings: USER_ADDR_NULL — C macro is not a supported constant
|
||||
# unsupported in bindings: CAST_USER_ADDR_T — C function-like macros are not supported
|
||||
# unsupported in bindings: _SIZE_T — C macro has no replacement value
|
||||
# unsupported in bindings: NULL — C macro is not a supported constant
|
||||
# unsupported in bindings: _SYS_STDIO_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _FSTDIO — C macro has no replacement value
|
||||
# unsupported in bindings: _SEEK_SET_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: EOF — C macro is not a supported constant
|
||||
# unsupported in bindings: P_tmpdir — C macro is not a supported constant
|
||||
# unsupported in bindings: stdin — C macro is not a supported constant
|
||||
# unsupported in bindings: stdout — C macro is not a supported constant
|
||||
# unsupported in bindings: stderr — C macro is not a supported constant
|
||||
# unsupported in bindings: _LIBC_COUNT__L_CTERMID — C macro is not a supported constant
|
||||
# unsupported in bindings: _CTERMID_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: getc_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: putc_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: getchar_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: putchar_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: _OFF_T — C macro has no replacement value
|
||||
# unsupported in bindings: _SSIZE_T — C macro has no replacement value
|
||||
# unsupported in bindings: fropen — C function-like macros are not supported
|
||||
# unsupported in bindings: fwopen — C function-like macros are not supported
|
||||
# unsupported in bindings: feof_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: ferror_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: clearerr_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: fileno_unlocked — C function-like macros are not supported
|
||||
# unsupported in bindings: _SECURE__STDIO_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: _SECURE__COMMON_H_ — C macro has no replacement value
|
||||
# unsupported in bindings: sprintf — C function-like macros are not supported
|
||||
# unsupported in bindings: vsprintf — C function-like macros are not supported
|
||||
# unsupported in bindings: snprintf — C function-like macros are not supported
|
||||
# unsupported in bindings: vsnprintf — C function-like macros are not supported
|
||||
@@ -0,0 +1,4 @@
|
||||
malloc c_func(__size c_ulong) ?*mut anyopaque
|
||||
realloc c_func(__ptr ?*mut anyopaque, __size c_ulong) ?*mut anyopaque
|
||||
free c_func(_ ?*mut anyopaque) void
|
||||
posix_memalign c_func(__memptr ?*mut ?*mut anyopaque, __alignment c_ulong, __size c_ulong) c_int
|
||||
@@ -0,0 +1,15 @@
|
||||
import "@ffi/c"
|
||||
import "@std/mem"
|
||||
|
||||
main func() void {
|
||||
allocator :: mem.c_allocator
|
||||
|
||||
data :: mem.alloc(u8, allocator, 24) catch |_| {
|
||||
_ = c.printf("Failed to allocate memory\n")
|
||||
return _
|
||||
}
|
||||
defer mem.free(u8, allocator, data)
|
||||
|
||||
data[0] = 'H'
|
||||
_ = c.printf("data[0] = %s\n", data[0])
|
||||
}
|
||||
@@ -0,0 +1,17 @@
|
||||
# Build configuration surface for `brolang build` (v0).
|
||||
#
|
||||
# A project's `build.bro` imports this module and declares a top-level constant
|
||||
# named `config` of type `BuildConfig`. `brolang build [root]` type-checks
|
||||
# build.bro, reads the config, and writes root/build/name.
|
||||
#
|
||||
# Declarative and literal-only: one executable per build. List fields take an
|
||||
# address-of an array literal (`&["raylib"]`); empty lists are written `&[]`.
|
||||
BuildConfig :: struct {
|
||||
name []u8 # output executable name under root/build
|
||||
source []u8 # program package directory, relative to build.bro
|
||||
libraries [][]u8 # library names to link (-l)
|
||||
lib_paths [][]u8 # library search directories (-L)
|
||||
includes [][]u8 # C include directories (-I)
|
||||
defines [][]u8 # C preprocessor defines (name or name=value)
|
||||
links [][]u8 # extra linker inputs (object/source files, -framework pairs)
|
||||
}
|
||||
@@ -0,0 +1,147 @@
|
||||
c :: import "@ffi/c"
|
||||
|
||||
AllocError :: enum {
|
||||
out_of_memory
|
||||
}
|
||||
|
||||
Allocator :: struct {
|
||||
context ?*mut anyopaque
|
||||
vtable @AllocatorVTable
|
||||
}
|
||||
|
||||
AllocatorVTable :: struct {
|
||||
alloc @func(context ?*mut anyopaque, size usize, alignment usize) ?*mut u8
|
||||
realloc @func(context ?*mut anyopaque, memory ?*mut u8, old_size usize, new_size usize, alignment usize) ?*mut u8
|
||||
free @func(context ?*mut anyopaque, memory ?*mut u8, size usize, alignment usize) void
|
||||
}
|
||||
|
||||
raw_alloc func(allocator Allocator, size usize, alignment usize) ?*mut u8 {
|
||||
return allocator.vtable.alloc(allocator.context, size, alignment)
|
||||
}
|
||||
|
||||
raw_realloc func(allocator Allocator, memory ?*mut u8, old_size usize, new_size usize, alignment usize) ?*mut u8 {
|
||||
return allocator.vtable.realloc(allocator.context, memory, old_size, new_size, alignment)
|
||||
}
|
||||
|
||||
raw_free func(allocator Allocator, memory ?*mut u8, size usize, alignment usize) void {
|
||||
allocator.vtable.free(allocator.context, memory, size, alignment)
|
||||
}
|
||||
|
||||
_empty_storage [1]mut u64 = [0]
|
||||
|
||||
_empty_slice func($T type, count usize) []mut T {
|
||||
pointer *mut T :: ptr_cast(T, (&_empty_storage).ptr)
|
||||
return pointer[..count]
|
||||
}
|
||||
|
||||
alloc func($T type, allocator Allocator, count usize) []mut T ! AllocError {
|
||||
if count == 0 {
|
||||
return _empty_slice(T, 0)
|
||||
}
|
||||
|
||||
element_size usize :: size_of(T)
|
||||
if element_size == 0 {
|
||||
return _empty_slice(T, count)
|
||||
}
|
||||
if count > max_value(usize) / element_size {
|
||||
return .out_of_memory
|
||||
}
|
||||
|
||||
memory ?*mut u8 = raw_alloc(allocator, count * element_size, align_of(T))
|
||||
if memory |bytes| {
|
||||
pointer *mut T :: ptr_cast(T, bytes)
|
||||
return pointer[..count]
|
||||
}
|
||||
return .out_of_memory
|
||||
}
|
||||
|
||||
free func($T type, allocator Allocator, memory []mut T) void {
|
||||
if memory.len != 0 and size_of(T) != 0 {
|
||||
raw_free(allocator, ptr_cast(u8, memory.ptr), memory.len * size_of(T), align_of(T))
|
||||
}
|
||||
}
|
||||
|
||||
_malloc_alignment usize :: 16 # ponytail: aarch64-macos libc malloc alignment assumption.
|
||||
|
||||
_power_of_two func(value usize) bool {
|
||||
if value == 0 {
|
||||
return false
|
||||
}
|
||||
|
||||
current usize = value
|
||||
while current > 1 {
|
||||
half usize = current / 2
|
||||
if half * 2 != current {
|
||||
return false
|
||||
}
|
||||
current = half
|
||||
}
|
||||
|
||||
return true
|
||||
}
|
||||
|
||||
_c_alloc func(_ ?*mut anyopaque, size usize, alignment usize) ?*mut u8 {
|
||||
if _power_of_two(alignment) == false {
|
||||
return none
|
||||
}
|
||||
|
||||
if alignment <= _malloc_alignment {
|
||||
return ptr_cast(u8, c.malloc(c_ulong(size)))
|
||||
}
|
||||
|
||||
memory [1]mut ?*mut anyopaque = [none]
|
||||
status c_int = c.posix_memalign((&memory).ptr, c_ulong(alignment), c_ulong(size))
|
||||
if status != 0 {
|
||||
return none
|
||||
}
|
||||
|
||||
return ptr_cast(u8, memory[0])
|
||||
}
|
||||
|
||||
_c_realloc func(_ ?*mut anyopaque, memory ?*mut u8, old_size usize, new_size usize, alignment usize) ?*mut u8 {
|
||||
if _power_of_two(alignment) == false {
|
||||
return none
|
||||
}
|
||||
|
||||
if new_size == 0 {
|
||||
c.free(memory)
|
||||
return none
|
||||
}
|
||||
|
||||
if memory |old_memory| {
|
||||
if alignment <= _malloc_alignment {
|
||||
return ptr_cast(u8, c.realloc(old_memory, c_ulong(new_size)))
|
||||
}
|
||||
|
||||
new_memory ?*mut u8 = _c_alloc(none, new_size, alignment)
|
||||
if new_memory |new_bytes| {
|
||||
copy_size usize = old_size
|
||||
if new_size < copy_size {
|
||||
copy_size = new_size
|
||||
}
|
||||
i usize = 0
|
||||
while i < copy_size : i += 1 {
|
||||
new_bytes[i] = old_memory[i]
|
||||
}
|
||||
c.free(old_memory)
|
||||
}
|
||||
return new_memory
|
||||
}
|
||||
|
||||
return _c_alloc(none, new_size, alignment)
|
||||
}
|
||||
|
||||
_c_free func(_ ?*mut anyopaque, memory ?*mut u8, _ usize, _ usize) void {
|
||||
c.free(memory)
|
||||
}
|
||||
|
||||
_c_vtable AllocatorVTable :: AllocatorVTable {
|
||||
alloc = _c_alloc,
|
||||
realloc = _c_realloc,
|
||||
free = _c_free,
|
||||
}
|
||||
|
||||
c_allocator Allocator :: Allocator {
|
||||
context = none,
|
||||
vtable = &_c_vtable,
|
||||
}
|
||||
Reference in New Issue
Block a user