lib/math: NAN/INF bits + flattened F64_EXPBIAS (#106 fold-1b)
Flattened from Hare's const struct instances per #129 cgen module-let- init gap; NAN/INF expressed as `def NAN_BITS:u64 = 0x...;` and `def INF_BITS:u64 = 0x...;` materialized via f64frombits(NAN_BITS) at use-site. F64_EXPBIAS:int flattened from f64info.expbias (cite ref/hare/math/floats.ha:117); floatinfo struct definition preserved for γ-cleanup re-fold when #129 closes. F32_EXPBIAS deferred (option-ii: stof.ha consumers reach f.expbias via struct-field only).
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@@ -1,12 +1,13 @@
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// floats — f64 classification, sign, bit-reinterpret core, and the f64
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// decompose half (subnormal-normalize + frexp). Ported from
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// ref/hare/math/floats.ha (fold-1: classify/sign/bits; fold-2a:
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// issubnormalf64/normalizef64/frexpf64; strconv-foundation fold:
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// F32 bit-layout + f32bits/f32frombits + floatinfo struct type).
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// frexpf64's zero guard `n == 0f64` rides the #103 fix (no-decimal f64
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// literal now materialized into XMM) and its (f64, i64) tuple return
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// rides the #105 fix (tuple f64-word read). The ldexp/modfrac/nextafter
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// family stays deferred (need f64 DIVIDE + the INF const).
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// issubnormalf64/normalizef64/frexpf64; strconv-foundation fold-1a:
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// F32 bit-layout + f32bits/f32frombits + floatinfo struct type;
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// fold-1b: NAN_BITS/INF_BITS sentinels + F64_EXPBIAS (flattened from
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// f64info per #129)). frexpf64's zero guard `n == 0f64` rides the #103
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// fix (no-decimal f64 literal now materialized into XMM) and its
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// (f64, i64) tuple return rides the #105 fix (tuple f64-word read).
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// The ldexp/modfrac/nextafter family stays deferred (need f64 DIVIDE).
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package math;
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@@ -77,6 +78,15 @@ def F64_EXP_REMOVAL_MASK: u64 = ~(F64_EXPONENT_MASK << F64_MANTISSA_BITS);
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// ref/hare/math/floats.ha:84
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def F64_EXP_ZERO: u64 = (F64_EXPONENT_BIAS - 1) << F64_MANTISSA_BITS;
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// flattened from f64info per #129 (cgen module-level struct-init gap);
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// cite ref/hare/math/floats.ha:117. Re-fold to const f64info: floatinfo
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// when #129 closes (γ-cleanup pattern per amalloc-drop precedent).
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// The existing F64_EXPONENT_BIAS:u64 above is the bit-ops alias; this
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// int-typed F64_EXPBIAS is the floatinfo.expbias-field counterpart and
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// drops the cast at the construction site (see ref/hare/strconv/stof.ha
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// :248,288 for the consumer pattern).
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export def F64_EXPBIAS: int = 1023;
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// F32 bit-structure constants. ref/hare/math/floats.ha:27,30,33 declare
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// these as untyped int; ww has no untyped def, so they ride u32 (matching
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// the u32 bit container, the same way the F64 family rides u64 — see
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@@ -144,6 +154,19 @@ export type floatinfo = struct {
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expmask: u64,
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};
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// IEEE-754 quiet-NaN and positive-Infinity f64 bit sentinels.
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// ref/hare/math/floats.ha:137,141. Hare exports `def NAN = 0.0/0.0;` and
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// `def INF = 1.0/0.0;` (untyped float def-fold); ww's cgen doesn't lower
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// `def: f64 = expr;` (the symbol comes out undefined at link time — see
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// #129). Callers materialize the f64 sentinel via f64frombits(NAN_BITS)
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// / f64frombits(INF_BITS); same bit-exact value, one extra reinterpret.
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// 0x7FF8000000000000 is the IEEE-754 binary64 quiet-NaN (sign=0, exp=
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// all-ones, mantissa MSB=1, rest=0); 0x7FF0000000000000 is +Infinity
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// (sign=0, exp=all-ones, mantissa=0). Re-fold to `def NAN: f64 = ...`
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// when #129 closes (γ-cleanup pattern per amalloc-drop precedent).
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export def NAN_BITS: u64 = 0x7FF8000000000000u64;
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export def INF_BITS: u64 = 0x7FF0000000000000u64;
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// Returns true if the given floating-point number is NaN.
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// ref/hare/math/floats.ha:144 (Hare's expression body inlined into a
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// block: ww has no expression-bodied fn form, only brace blocks).
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@@ -306,6 +306,43 @@ static const struct row rows[] = {
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" if (readbits(&info) != 23u64) { return 3; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* --- strconv-foundation fold-1b: NAN_BITS / INF_BITS sentinels.
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* Hare exports `def NAN = 0.0/0.0;` / `def INF = 1.0/0.0;` (ref/hare/
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* math/floats.ha:137,141); ww materializes via f64frombits(NAN_BITS)
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* / f64frombits(INF_BITS) until #129 closes. The bit values are
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* IEEE-754 facts (quiet-NaN: exp-all-ones + mantissa-MSB; +Inf:
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* exp-all-ones + mantissa-zero) — any drift means the def-folded
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* sentinels broke. */
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{ "package main;\n"
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"import math;\n"
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"export fn main() i32 = {\n"
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" if (math.NAN_BITS != 0x7FF8000000000000u64) { return 1; };\n"
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" if (math.INF_BITS != 0x7FF0000000000000u64) { return 2; };\n"
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" let n: f64 = math.f64frombits(math.NAN_BITS);\n"
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" if (!math.isnan(n)) { return 3; };\n"
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" if (math.isnan(1.0)) { return 4; };\n"
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" let i: f64 = math.f64frombits(math.INF_BITS);\n"
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" if (!math.isinf(i)) { return 5; };\n"
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" if (!math.isinf(-i)) { return 6; };\n"
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" if (math.isinf(1.23)) { return 7; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* F64_EXPBIAS — the f64info.expbias-field-typed counterpart of the
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* existing F64_EXPONENT_BIAS:u64. Flattened from f64info per #129.
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* Round-trips into a floatinfo struct's expbias field with zero
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* casts (the consumer pattern fold-4 stof will use). Cite ref/hare/
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* math/floats.ha:117 (f64info struct const) + :24 (the existing
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* untyped F64_EXPONENT_BIAS). */
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{ "package main;\n"
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"import math;\n"
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"export fn main() i32 = {\n"
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" if (math.F64_EXPBIAS != 1023) { return 1; };\n"
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" let info: math.floatinfo;\n"
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" info.expbias = math.F64_EXPBIAS;\n"
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" if (info.expbias != 1023) { return 2; };\n"
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" if (info.expbias != math.F64_EXPBIAS) { return 3; };\n"
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" return 0;\n"
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"};\n", 0 },
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{ NULL, 0 }
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};
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