Files
AILang/runtime/str.c
T
Brummel e7e67e1a40 iter str-concat: heap-Str concatenation primitive in four-site lockstep
Closes fieldtest-form-a friction finding #4. `str_concat : (borrow Str,
borrow Str) -> Str` ships in the four-site-lockstep pattern established
by `str_clone` / `int_to_str` / `bool_to_str` (iter 24.1). The
LLM-natural Show-MyType body
`(app str_concat "label=" (app int_to_str x))` now parses, checks,
builds, and runs end-to-end.

Sites touched (lockstep):
- runtime/str.c — `ailang_str_concat(a, b)` slab-allocates and
  memcpys both source payloads into a new heap-Str.
- ailang-check/src/builtins.rs — `env.globals.insert("str_concat",
  Fn { 2x Str borrow, ret Str own, effects [] })` + `list()` row +
  `install_str_concat_signature` unit test.
- ailang-codegen/src/lib.rs — `declare ptr @ailang_str_concat(ptr,
  ptr)` extern + `lower_app` arm after str_clone + `is_builtin_callable`
  extension + IR-pin unit test `str_concat_emits_call_to_ailang_str_concat`.
- examples/show_user_adt_with_label.ail (new) + crates/ail/tests/
  str_concat_e2e.rs (new) — corpus fixture exercising the LLM-natural
  Show body shape + E2E pin asserting check + build + run produce
  `Item 42\n`.

Lockstep collision repaired: examples/bug_unbound_in_instance_method.ail
used `str_concat` as its UNBOUND name (because that was the literal
fieldtester repro). Renamed to `format_label` (LLM-author-realistic
helper name that will never become a builtin) and updated the pin test
`crates/ail/tests/unbound_in_instance_method_pin.rs` accordingly,
preserving the regression guard's intent (instance-method-body walked
through unbound-var check).

DESIGN.md amended: new §"Heap-Str primitives" subsection between the
milestone-24 Show-backer enumeration and the existing
`Primitive output goes through ...` paragraph, cataloguing all five
heap-Str primitives (`int_to_str`, `bool_to_str`, `float_to_str`,
`str_clone`, `str_concat`) with signatures, iter origins, and the
user-visible-vs-prelude-internal distinction. Show-backer block
unchanged.

IR snapshots regenerated (hello, list, max3, sum, ws_main) to absorb
the new `declare ptr @ailang_str_concat(ptr, ptr)` line in the
unconditional extern header — same upkeep pattern as hs.4 which
regenerated the same 5 snapshots for the same reason
(unconditional declares dead-stripped by clang -O2 when unused).

Tests: 559 + 3 = 562 green (E2E pin + builtin-signature test + IR-pin
test). Zero re-loops across all 7 tasks.
2026-05-13 12:43:10 +02:00

214 lines
8.7 KiB
C

/* AILang Str runtime primitives.
*
* Provides ABI-stable string operations against the existing
* constant-Str layout (NUL-terminated byte buffer, passed as
* `ptr` in LLVM IR). Lives separately from runtime/rc.c so that
* a future heap-Str ABI milestone can swap the implementations
* without touching the RC runtime.
*
* Linked unconditionally by `ail build` (Gc, Bump, Rc) so that
* any program that monomorphises `eq__Str` (auto-loaded from
* the prelude) finds the symbol. Programs that never call
* `eq` on Str leave @ail_str_eq as a dead-stripped no-op at
* link time under clang -O2.
*/
#include <stdbool.h>
#include <string.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
/* Defined in runtime/rc.c — exposed with default external linkage.
* Returns a zero-initialised payload whose `rc_header` sits at
* `payload - 8` and is initialised to refcount 1. str.c's heap-Str
* helpers call this regardless of the program's --alloc strategy,
* because heap-Str values are always refcounted (the global
* `--alloc` flag governs ADT allocation, not Str allocation).
*
* Declared `__attribute__((weak))` in hs.3 so the publicly-visible
* `ailang_int_to_str` / `ailang_float_to_str` symbols can link into
* binaries that do not pull in `runtime/rc.c` (i.e. `--alloc=gc` and
* `--alloc=bump` targets in hs.3, where `rc.c` is not linked). Under
* such targets the reference resolves to NULL; the heap-Str helpers
* are not yet called from any IR site (hs.4 wires the lowering), so
* the NULL is never dereferenced at runtime. Under `--alloc=rc` the
* strong definition in `rc.c` wins as usual. Once hs.4 lands the
* unconditional `rc.c` link the `weak` attribute becomes a no-op
* (strong definitions always satisfy weak references); the attribute
* is intentionally retained so str.c remains link-safe in isolation.
*/
extern void *ailang_rc_alloc(size_t size) __attribute__((weak));
/* Byte-equality on NUL-terminated strings. Mirrors strcmp(...) == 0
* but exposed under a stable AILang-namespaced ABI so the codegen
* caller does not assume libc's strcmp shape. Heap-Str ABI milestone
* will replace the body with length-prefixed comparison without
* changing the signature. */
bool ail_str_eq(const char *a, const char *b) {
return strcmp(a, b) == 0;
}
/* Three-way comparison of NUL-terminated strings. Normalises libc
* strcmp's signed-int output to exactly -1 / 0 / +1 so the codegen
* caller can branch on `icmp slt i32 result, 0` and
* `icmp eq i32 result, 0` against constants directly without
* worrying about strcmp implementations that return values outside
* {-1, 0, +1}. Heap-Str ABI milestone will replace the body with
* length-prefixed comparison without changing the signature. */
int ail_str_compare(const char *a, const char *b) {
int r = strcmp(a, b);
if (r < 0) return -1;
if (r > 0) return 1;
return 0;
}
/* Heap-Str slab allocator. Lays out:
*
* [ rc_header (8B) | len (8B) | bytes... | NUL ]
* ^ ^
* payload-8 payload (returned)
*
* Calls `ailang_rc_alloc(8 + len + 1)`. The +8 is the len field;
* the +1 is the trailing NUL byte that keeps `@strcmp` and `@puts`
* happy under the shared consumer ABI. Writes `len` into the first
* 8 bytes of the payload and returns the payload pointer; the
* caller is responsible for filling bytes [8 .. 8 + len) and the
* `NUL` byte at offset `8 + len`.
*
* Private (static linkage) — callers within this TU only.
*/
static char *str_alloc(uint64_t len) {
char *payload = (char *)ailang_rc_alloc(8 + len + 1);
*(uint64_t *)payload = len;
return payload;
}
/* Convert an i64 into a heap-allocated Str. Format `"%lld"`. The
* worst-case width is 20 chars (i64::MIN = "-9223372036854775808");
* a 64-byte stack buffer is comfortably oversized. `snprintf`'s
* return tells us how many bytes *would* have been written; if that
* exceeds the buffer we abort() defensively — this should be
* unreachable for any valid i64 input but survives format-string
* widening if a future change ever swaps `%lld` for something more
* verbose without re-sizing the buffer.
*
* Returns the payload pointer of a fresh heap-Str slab. Caller owns
* the refcount (init to 1 by `ailang_rc_alloc`); standard RC
* discipline (`ailang_rc_inc` / `ailang_rc_dec`) applies.
*/
char *ailang_int_to_str(int64_t n) {
char buf[64];
int written = snprintf(buf, sizeof(buf), "%lld", (long long)n);
if (written < 0 || (size_t)written >= sizeof(buf)) {
fprintf(stderr,
"ailang_int_to_str: snprintf truncation/error "
"(written=%d, buffer=%zu) — should be unreachable for any valid i64; aborting\n",
written, sizeof(buf));
abort();
}
uint64_t len = (uint64_t)written;
char *payload = str_alloc(len);
memcpy(payload + 8, buf, len);
payload[8 + len] = '\0';
return payload;
}
/* Convert a double into a heap-allocated Str. Format `"%g"` —
* matches `io/print_float`'s libc rendering for IEEE consistency.
* NaN renders as libc-default (`nan`/`-nan`/etc.); ±Inf as `inf`
* /`-inf`. Worst-case width for `%g` on a `double` is bounded by
* the libc default precision (`%.6g` ⇒ at most ~13 chars including
* sign and exponent); the 64-byte stack buffer is comfortably
* oversized. Defensive `abort()` on truncation, same shape as
* `ailang_int_to_str`.
*
* Returns the payload pointer of a fresh heap-Str slab.
*/
char *ailang_float_to_str(double x) {
char buf[64];
int written = snprintf(buf, sizeof(buf), "%g", x);
if (written < 0 || (size_t)written >= sizeof(buf)) {
fprintf(stderr,
"ailang_float_to_str: snprintf truncation/error "
"(written=%d, buffer=%zu) — should be unreachable for any finite double; aborting\n",
written, sizeof(buf));
abort();
}
uint64_t len = (uint64_t)written;
char *payload = str_alloc(len);
memcpy(payload + 8, buf, len);
payload[8 + len] = '\0';
return payload;
}
/* Convert a bool into a heap-allocated Str — "true" (4 bytes) or
* "false" (5 bytes). Heap-allocates every call; the static-Str
* literal alternative (used by a hypothetical `\x -> if x then "true"
* else "false"` schema body) would require phi-of-static-Str
* through the drop-elision pipeline which is not load-bearing-
* ratified today (see parent spec §"Out of scope" / `bool_to_str` as
* schema-if).
*
* Returns the payload pointer of a fresh heap-Str slab.
*/
char *ailang_bool_to_str(bool b) {
const char *lit = b ? "true" : "false";
uint64_t len = b ? 4 : 5;
char *payload = str_alloc(len);
memcpy(payload + 8, lit, len);
payload[8 + len] = '\0';
return payload;
}
/* Clone a Str into a fresh heap-Str slab. Reads `len` from the
* first 8 bytes of the source payload, allocates a new slab of the
* same length via `str_alloc`, and memcpy's the payload bytes plus
* the trailing NUL. Works uniformly on static-Str and heap-Str
* inputs because the consumer ABI (i64 len at offset 0, bytes
* starting at offset 8, NUL at offset 8 + len) is identical
* between realisations (see DESIGN.md §"Str ABI"); the rc_header at
* offset -8 — present only on heap-Str — is never consulted.
*
* Used by `show__Str` (parent spec milestone 24): converts a
* borrowed Str input into an Owned heap-Str output, preserving
* the uniform `show : forall a. Show a => (a borrow) -> Str Own`
* signature.
*
* Returns the payload pointer of a fresh heap-Str slab.
*/
char *ailang_str_clone(const char *src) {
uint64_t len = *(const uint64_t *)src;
char *payload = str_alloc(len);
memcpy(payload + 8, src + 8, len);
payload[8 + len] = '\0';
return payload;
}
/*
* `ailang_str_concat(a, b)` — heap-Str concatenation primitive
* shipped in iter str-concat (2026-05-13). Reads `len` headers from
* both source Str payloads (offset 0 of each), allocates a fresh
* heap-Str slab sized for the combined bytes via `str_alloc`,
* memcpys both payloads in order, NUL-terminates, returns the new
* payload pointer. Like `str_clone`, this works uniformly on static-
* Str and heap-Str inputs because the consumer ABI is identical
* between realisations (see DESIGN.md §"Heap-Str primitives").
*
* Used by Show bodies that want labelled output (e.g.
* `"Item " ++ int_to_str n`) and by any caller that needs to
* combine two existing Str values into a new owned Str.
*
* Returns the payload pointer of a fresh heap-Str slab. The rc
* header is initialised to 1 by `str_alloc`.
*/
char *ailang_str_concat(const char *a, const char *b) {
uint64_t la = *(const uint64_t *)a;
uint64_t lb = *(const uint64_t *)b;
char *payload = str_alloc(la + lb);
memcpy(payload + 8, a + 8, la);
memcpy(payload + 8 + la, b + 8, lb);
payload[8 + la + lb] = '\0';
return payload;
}