The first formal-links milestone shipped clause-5 + 8 links across the
existing file layout. Browsing surfaced that file-only granularity is
only as precise as the file boundaries — three files mixed two or
three navigation targets under one address, so the 8 links could not
multiply without ambiguity. This commit fixes the substrate, then
applies the sweep the original milestone deferred.
Splits (each extracts an already-self-contained section into its own
file so links land on the topic, not the parent doc's TOC):
contracts/typeclasses.md
→ +contracts/prelude-classes.md (Eq/Ord/Show ships, polymorphic `print`)
→ +contracts/method-dispatch.md (5-step dispatch rule, candidate index)
contracts/memory-model.md
→ +contracts/language-constraints.md (the 4 binding constraints
making RC sound without a
cycle collector)
models/authoring-surface.md
→ +models/prose-projection.md (Form-B / `ail prose` / merge-prose)
Each new file enters design/INDEX.md as its own row (three contracts
share show_no_instance_e2e.rs / uniqueness.rs as ratifying tests;
prose-projection is a model). Two pre-existing links rebind to the
new topic-files (memory-model.md → method-dispatch.md;
float-semantics.md → prelude-classes.md).
Link sweep: 8 → 88 formal Markdown links over 23 files. Every file
in design/contracts/ + design/models/ now has at least one outgoing
link; the tree is fully connected. Links are file-relative
`[label](path)` per the established convention, fenced code blocks
are skipped (a `](` inside ```jsonc``` is literal text), the durable
tier (design/ + crates/ + runtime/) is enforced by clause-5.
Tests:
- design_index_pin.rs (5/5 clauses): clean-cut, INDEX resolution,
ratifying-test resolution, no decision-record prose in contracts/,
body links durable + resolving.
- docs_honesty_pin.rs (5/5): one assertion rebinds from typeclasses.md
to prelude-classes.md (where the gated sentence now lives);
design_corpus widens to include the 4 new files so the Wunschdenken
/ doc-archaeology sweeps continue to cover everything that used to
live in the parents.
No spec/plan/journal for this batch — interactive collaboration after
the milestone closed; the user gated the splits explicitly before the
sweep.
5.3 KiB
Float semantics
Float semantics
Float is IEEE-754 binary64 (LLVM double). One float type ships;
no f32 variant. The runtime / codegen contract:
Guaranteed:
- Every individual builtin (
+/-/*///neg/</==/...) lowers to a single LLVM IR instruction on the Float arm:fadd/fsub/fmul/fdiv double,fneg double,fcmp olt/ole/ogt/oge double,fcmp oeq double,fcmp une double(for!=). On a fixed(target triple, LLVM version)pair, the bit pattern of the result of any single op is reproducible. - NaN and ±Inf propagate per IEEE 754 — no silent collapse to zero,
no trap. Arithmetic on a NaN operand produces NaN; division by
zero produces ±Inf;
0.0 / 0.0produces NaN. -0.0and+0.0are distinct bit patterns at the canonical-JSON hash level ({"bits":"0000000000000000",...}vs{"bits":"8000000000000000",...}— distinctdef_hashs) but compare equal via==per IEEE (fcmp oeq doublereturns true for+0 == -0). This asymmetry is the correct IEEE behaviour; it does meandef_hash-equality is finer than==-equality on Float.==returnsfalsewhenever either operand is NaN (fcmp oeqis the ordered-equal predicate; ordered = both operands non-NaN).!=returnstruewhenever either operand is NaN (fcmp uneis the unordered-or-not-equal predicate). This matches Rustf64::neand IEEE-!=exactly.is_nan(fcmp uno double %x, %x) returnstrueiffxis NaN. Bit-pattern-based NaN detection without dependence on the payload bits.int_to_float(sitofp) is exact for|n| < 2^53, round-to-nearest-even otherwise.float_to_int_truncate(@llvm.fptosi.sat.i64.f64) is total: NaN → 0, +Inf → i64::MAX, -Inf → i64::MIN, finite-out-of-range saturates, finite-in-range truncates toward zero. Matches Rustas i64semantics (since 1.45).
Unspecified:
- FMA contraction. LLVM may fold
fadd (fmul a b) cintofma a b c. Bit results may differ between an op-emitted-in- isolation pattern and an op-folded-into-FMA pattern. - Reassociation. The compiler may reorder a chain like
(a + b) + cintoa + (b + c), producing a bit-different result on numerically sensitive inputs. - Subnormal flushing modes. If the target enables FTZ (flush-to- zero) or DAZ (denormals-are-zero), subnormal results round to zero; AILang does not enable these flags but does not forbid the target from doing so.
- The exact NaN bit pattern produced by an op. Any quiet NaN bit
pattern is conformant;
0.0 / 0.0may produce0x7ff8000000000000on one target and a different qNaN on another. - The textual rendering of NaN through
float_to_str(the runtime C helper that backsinstance Show Floatand, post-iter-rpe.1, every Float-typedprintcall). The libcprintf("%g", nan)glue used byfloat_to_stris permitted to emitnan/-nan/NaNetc. depending on libc version and the NaN's sign bit; AILang does not normalise this, since the prose / surface-print paths render NaN as the explicit"NaN"spelling and Float rendering is for human-readable output, not round-trip.
The same libc-%g rendering applies to show 1.5 / show nan /
show inf via instance Show Float (which calls float_to_str
internally — see Prelude (built-in) classes for the Show ship).
The NaN-spelling caveat above is observable via do print x for
Float-typed x; the rendering is libc-version-dependent and
target-libc-specific. AILang does NOT canonicalise Float textual
representation; the LLM-author who needs deterministic Float
rendering for cross-platform test fixtures should bypass show /
print and emit a custom formatter.
These are the Rust / Swift / standard-LLVM defaults — not
research-grade reproducibility guarantees. The stronger guarantee
(e.g. Pythonic float.fromhex-level bit reproducibility across
ops) would require -ffp-contract=off plus per-op intrinsic
selection — out of scope for the milestone; revisit only if a real
use case appears.
Form-A serialisation: Float literals carry the IEEE-754
bit pattern as a 16-character lowercase hex string in the canonical
JSON: {"kind":"float","bits":"<16-hex>"} (see
Data model for the literal schema). Routing through the
JSON string path (not serde_json::Number) preserves bit
stability across serde_json versions and lets NaN / ±Inf
round-trip through Form-A — JSON numbers cannot represent them.
This bits-hex encoding is what keeps Floats inside the
Roundtrip Invariant.
Pattern matching: Pattern::Lit on Literal::Float (see
Data model for the pattern schema) is hard-
rejected at typecheck (CheckError::FloatPatternNotAllowed). IEEE
semantics make Float patterns semantically dubious — NaN never
matches via IEEE-==, and bit-exact equality is rarely what an
LLM-author wants. Use ordering operators (<, >, ...) and
is_nan to discriminate Floats.
float_to_str (Float → Str) and int_to_str (Int → Str) are
fully wired through checker, codegen, and runtime. Both allocate
a fresh heap-Str slab at the call site (see Str ABI
for the dual realisation) and carry ret_mode: Own so the let-binder
for the call result is RC-tracked and the slab is freed at scope
close.
Ratified by: crates/ail/tests/eq_float_noinstance.rs.