Introduce the welded comptime `compiler` library (`#library "compiler"` +
`abi(.zig) extern compiler`), per design/comptime-compiler-api.md, and unify
`callconv(...)` into the new `abi(...)` annotation.
abi(...) replaces callconv(...):
- New ABI enum { default, c, zig, pure }; `abi(.c|.zig|.pure)` parses in the
postfix slot before extern/export (and standalone). `kw_callconv` -> `kw_abi`.
- Migrated 52 sx files, the call-convention-mismatch diagnostic, and docs
(readme/specs) from `callconv(.c)` to `abi(.c)`.
Phase 1 — welded compiler library (parse -> registry -> validation -> bridge):
- `abi(.zig) extern compiler` parses on fn decls (carries abi/extern_lib) and
struct decls (StructDecl.abi/extern_lib).
- `#library "compiler"` is the comptime-only internal surface — never dlopen'd.
- src/ir/compiler_lib.zig: the binding registry (the safety boundary). `Field`
welded to StructInfo.Field with layout baked from the real Zig type
(@offsetOf/@sizeOf); `findType`/`findFn`. Welded structs are layout-validated
at registration (field set + total size) as a header checked against the impl.
- Host-call bridge: a `fn abi(.zig) extern compiler` dispatches under the
comptime interp to its registered Zig handler (intern/text_of round-trip),
never dlsym. IR Function.compiler_welded; validated in declareFunction.
- Comptime-only enforcement: a runtime call to a welded fn is a clean
build-gating error (emitCall), not an undefined-symbol link failure.
Phase 2.1 — byte-layout weld foundation:
- Decision: full byte-layout weld (sx struct laid out byte-identically to the
bound Zig type). Registered StructInfo (first non-natural / Zig-reordered
layout). `computeWeldPlan` — pure offset-ordered element plan + padding +
sx-field->LLVM-element remap; unit-tested. Emit/interp wiring is the next
sub-step (2.2+, see current/CHECKPOINT-COMPILER-API.md).
Examples: 0625/0626 (welded struct + fn round-trip), 1183/1184/1185
(layout-mismatch, unexported-fn, runtime-call diagnostics).
141 lines
5.8 KiB
Plaintext
141 lines
5.8 KiB
Plaintext
// Obj-C blocks bridged to sx closures.
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//
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// Apple's block ABI (clang's "Block Implementation Specification"): a block
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// pointer is a struct whose first five fields are { isa, flags, reserved,
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// invoke, descriptor } followed by per-block captured state. When an API
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// like `[UIView animateWithDuration:animations:]` receives a block, the
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// runtime reads `invoke` and calls it with the block pointer as the first
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// argument. UIKit / Foundation callers always `_Block_copy` synchronously
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// before returning, so a stack-allocated block is safe to pass directly.
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//
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// We layer the sx closure onto Apple's layout by appending two pointer
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// fields to the standard 32-byte header: `sx_env` (the closure's captured
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// environment pointer) and `sx_fn` (the closure trampoline). The per-
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// signature `__block_invoke_*` C-ABI fn knows the offsets and calls
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// through to `sx_fn(sx_env, args...)`.
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//
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// ── Lifetime contract ───────────────────────────────────────────────────
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// `xx <closure> : *Block` returns a pointer into the surrounding sx
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// function's stack frame. Same rule as `&local_var`: pass it directly to
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// a callee that consumes it immediately or `_Block_copy`s internally
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// (UIKit/Foundation always do). Don't store the pointer to use after the
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// caller returns. If you need that, ship a `Block_copy`-backed sibling
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// API and use it instead.
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// `build_block_convert` (below) is a comptime metaprogram that emits sx source
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// with `concat` / `int_to_string`; those live in std.sx. A metaprogram body
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// resolves its bare names in its OWN module (issue 0106), so this module must
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// import std.sx itself rather than relying on the call site's visibility.
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#import "modules/std.sx";
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// Standard 32-byte block header plus two trailing slots for the sx closure
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// it wraps. Total = 48 bytes.
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Block :: struct {
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isa: *void;
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flags: i32;
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reserved: i32;
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invoke: *void;
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descriptor: *void;
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sx_env: *void;
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sx_fn: *void;
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}
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// Per-block-shape metadata. The runtime reads `size` when copying the
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// block to the heap, so it must equal the actual instance size.
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BlockDescriptor :: struct {
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reserved: u64;
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size: u64;
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}
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// libSystem isa pointer for stack-allocated blocks. Resolved at link time
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// (auto-linked on every Apple target via libSystem).
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_NSConcreteStackBlock : *void extern;
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// Shared descriptor for the 48-byte sx-block layout. All Into impls below
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// point their `descriptor` field at this.
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__sx_block_descriptor : BlockDescriptor = .{
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reserved = 0,
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size = 48,
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};
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// Single generic impl covers every closure shape. The compiler
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// monomorphises this body per call shape; inside each mono,
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// `$args` is the bound pack of arg types and `$R` is the bound
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// return type. The `#insert` evaluates `build_block_convert` at
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// comptime and substitutes the resulting source — a nested
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// `abi(.c)` trampoline + the Block literal that points its
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// `invoke` slot at it. One impl in stdlib replaces every per-
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// signature hand-rolled `__block_invoke_*` + `Into(Block)` pair.
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impl Into(Block) for Closure(..$args) -> $R {
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convert :: (self: Closure(..$args) -> $R) -> Block {
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#insert build_block_convert($args, $R);
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}
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}
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// Comptime builder for the generic `Into(Block) for Closure(..$args)
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// -> $R` impl body. Receives the closure's per-position pack types
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// (`args`, a comptime `[]Type`) and the closure's return type
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// (`$ret`), emits source that:
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//
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// 1. Declares a nested `__invoke` `abi(.c)` trampoline whose
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// signature matches the per-shape Apple Block ABI: first arg is
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// `block_self: *Block`, then the pack types verbatim. The body
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// reconstructs a typed fn-pointer from `block_self.sx_fn`,
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// prepends `block_self.sx_env`, and tail-calls the sx closure.
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// 2. Returns a stack Block literal whose `invoke` slot points at
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// the nested trampoline via `xx @__invoke`.
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//
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// The host impl wraps the emitted source via `#insert
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// build_block_convert($args, $R);`. Per-call-shape monomorphisation
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// of the impl body re-runs this builder with the concrete types
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// bound, so each closure shape gets its own dedicated trampoline.
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//
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// Void return type emits `typed_fn(...)`; non-void emits
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// `return typed_fn(...)`.
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build_block_convert :: (args: []Type, $ret: Type) -> string {
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ret_name := type_name(ret);
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code := "__invoke :: (block_self: *Block";
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i : i64 = 0;
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while i < args.len {
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code = concat(code, ", arg");
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code = concat(code, int_to_string(i));
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code = concat(code, ": ");
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code = concat(code, type_name(args[i]));
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i = i + 1;
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}
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code = concat(code, ") -> ");
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code = concat(code, ret_name);
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code = concat(code, " abi(.c) { typed_fn : (*void");
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i = 0;
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while i < args.len {
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code = concat(code, ", ");
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code = concat(code, type_name(args[i]));
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i = i + 1;
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}
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code = concat(code, ") -> ");
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code = concat(code, ret_name);
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code = concat(code, " = xx block_self.sx_fn; ");
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if ret_name == "void" {
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code = concat(code, "typed_fn(block_self.sx_env");
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} else {
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code = concat(code, "return typed_fn(block_self.sx_env");
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}
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i = 0;
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while i < args.len {
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code = concat(code, ", arg");
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code = concat(code, int_to_string(i));
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i = i + 1;
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}
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code = concat(code, "); } ");
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code = concat(code, "return .{ ");
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code = concat(code, "isa = @_NSConcreteStackBlock, ");
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code = concat(code, "flags = 0, ");
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code = concat(code, "reserved = 0, ");
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code = concat(code, "invoke = xx @__invoke, ");
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code = concat(code, "descriptor = xx @__sx_block_descriptor, ");
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code = concat(code, "sx_env = self.env, ");
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code = concat(code, "sx_fn = self.fn_ptr, ");
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code = concat(code, "};");
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return code;
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}
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