- Category pages linked each family as `<slug>.md`, relative to categories/, where no family page lives. They now link `../<category>/<slug>.md`. - Form pages linked a member into its *own* category directory, so every VMX128 sibling (`vsldoi128`) pointed at vmx128/ although its family page is under vmx/. They now link into the family's directory. - Hand-written "Related" and sibling mentions linked other categories' pages as if they were in the same directory. 109 are retargeted through the page index; 29 that pointed a family page at itself (`vrefp128` on vrefp.md) and 6 naming instructions the manual has no page for are plain text now. Regenerated at the existing Canary pin (f21ebd49e): upstream has moved on, and re-pinning belongs in its own change. The generator reports 0 family pages changed and is idempotent; the only dead links left are TEMPLATE.md's placeholders. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
7.1 KiB
7.1 KiB
vrefp — Vector Reciprocal Estimate Floating Point
Category: VMX (Altivec) · Form: VX · Opcode:
0x1000010a
Assembler Mnemonics
| Mnemonic | XML entry | Flags | Description |
|---|---|---|---|
vrefp |
vrefp |
— | Vector Reciprocal Estimate Floating Point |
vrefp128 |
vrefp128 |
— | Vector128 Reciprocal Estimate Floating Point |
Syntax
vrefp [VD], [VB]
vrefp128 [VD], [VB]
Encoding
vrefp — form VX
- Opcode word:
0x1000010a - Primary opcode (bits 0–5):
4 - Extended opcode:
266 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode (4) |
| 6–10 | VRT/VD |
destination vector register |
| 11–15 | VRA/VA |
source A vector register |
| 16–20 | VRB/VB |
source B vector register |
| 21–31 | XO |
extended opcode (11 bits) |
vrefp128 — form VX128_3
- Opcode word:
0x18000630 - Primary opcode (bits 0–5):
6 - Extended opcode:
1584 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode (6) |
| 6–10 | VD128l |
destination low 5 bits |
| 11–15 | IMM |
5-bit immediate |
| 16–20 | VB128l |
source B low 5 bits |
| 21–27 | XO |
extended opcode |
| 28–29 | VD128h |
destination high 2 bits |
| 30–31 | VB128h |
source B high 2 bits |
Operands
| Field | Role | Description |
|---|---|---|
VB |
vrefp: read; vrefp128: read | Source B vector register. |
VD |
vrefp: write; vrefp128: write | Destination vector register. |
Register Effects
vrefp
- Reads (always):
VB - Reads (conditional): none
- Writes (always):
VD - Writes (conditional): none
vrefp128
- Reads (always):
VB - Reads (conditional): none
- Writes (always):
VD - Writes (conditional): none
Status-Register Effects
No condition-register or status-register effects.
Operation (pseudocode)
; No hand-written pseudocode for this instruction yet.
; The authoritative semantics are the Canary emitter snapshot under
; Implementation References; about half of Canary's emitters open
; with the PPC-style definition as a comment (`RD <- (RA) + (RB)`).
; Every side effect is also enumerated in the Register Effects and
; Status-Register Effects tables above.
C Translation Example
/* No hand-written C yet. Translate the Canary emitter snapshot */
/* under Implementation References; its HIR maps directly: */
/* f.LoadGPR(n) / f.StoreGPR(n, v) -> r[n] / r[n] = v */
/* f.LoadFPR / StoreFPR, f.LoadVR / StoreVR -> f[n], v[n] */
/* f.Load(ea, T), f.Store(ea, v) -> raw read / write; emitters */
/* wrap them in f.ByteSwap for the big-endian guest value */
/* f.UpdateCR(n, v) -> CR field n from v's LOW 32 BITS vs 0 */
/* f.LoadCA / f.StoreCA -> xer.CA; f.StoreSAT -> vscr.SAT */
/* i.XO.RA, i.D.DS, ... -> the bit-fields listed under Operands */
/* The Register Effects and Status-Register Effects tables above */
/* enumerate every side effect a faithful translation must emit. */
Implementation References
vrefp
- Canary XML:
tools/ppc-instructions.xml— search formnem="vrefp" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_altivec.cc:1203 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:421 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:572
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_vrefp(PPCHIRBuilder& f, const InstrData& i) {
return InstrEmit_vrefp_(f, i.VX.VD, i.VX.VB);
}
// ── delegates to (src/xenia/cpu/ppc/ppc_emit_altivec.cc:1197) ──
int InstrEmit_vrefp_(PPCHIRBuilder& f, uint32_t vd, uint32_t vb) {
// (VD) <- 1/(VB)
Value* v = f.Recip(f.LoadVR(vb));
f.StoreVR(vd, v);
return 0;
}
vrefp128
- Canary XML:
tools/ppc-instructions.xml— search formnem="vrefp128" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_altivec.cc:1206 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:422 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:779
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_vrefp128(PPCHIRBuilder& f, const InstrData& i) {
return InstrEmit_vrefp_(f, VX128_3_VD128, VX128_3_VB128);
}
// ── delegates to (src/xenia/cpu/ppc/ppc_emit_altivec.cc:1197) ──
int InstrEmit_vrefp_(PPCHIRBuilder& f, uint32_t vd, uint32_t vb) {
// (VD) <- 1/(VB)
Value* v = f.Recip(f.LoadVR(vb));
f.StoreVR(vd, v);
return 0;
}
Special Cases & Edge Conditions
- Lane-wise reciprocal estimate. Each 32-bit float lane of
VBis approximated by1.0 / VB[i]. The PowerPC spec permits an estimate accurate to about 1/4096 (≈12 bits); Canary divides exactly (vdivpsinto1.0) — its comment notes that AVXrcppsmisses that 1/4096 bound and broke gameplay in one title. Game code that cares about bit-reproducible behaviour should Newton-iterate withvnmsubfpregardless of which backend computes the seed. - Standard Newton iteration.
x₁ = x₀ * (2 − VB * x₀), expressible asvnmsubfp x₁, x₀, VB, 2.0ffollowed byvmaddfp x₁, x₀, x₁, 0.0f(or similar). One iteration roughly doubles the valid bit count. - IEEE-754 binary32 lanes;
VSCR[NJ]honoured (denormals flush to zero whenNJ = 1). - No VSCR[SAT] update, no FPSCR update, no exception. Division by zero yields ±∞; division of zero yields ±∞ too (same sign convention).
- Big-endian lane indexing.
- VMX128 sibling
vrefp128.
Related Instructions
vrsqrtefp— reciprocal square root estimate, used with the same Newton scheme.vmaddfp,vnmsubfp— the building blocks of the Newton iteration.vexptefp,vlogefp— other "estimate"-style transcendentals.vaddfp,vsubfp— the float add/sub.