Files
Sylpheed/tools/ppc-manual/fpu/fnmsubsx.md
sim f3c512f2ab docs(ppc-manual): check every xenia-rs claim against Canary's source
The hand-written parts of the manual still described how the retired
xenia-rs interpreter behaved: its snapshots, Rust casts and helpers. Each of
those 490 statements is now either restated as what Canary's emitters and
x64 backend actually do (at the pinned canary_experimental commit), or
dropped where it only made sense for xenia-rs.

Checking them turned up claims that were wrong, not just outdated:

- VSCR[SAT] is never modelled in Canary (DID_SATURATE is a stub and mfvscr
  cannot see it); the pages said saturating ops set it stickily.
- Canary does not implement lswi/lswx/stswi/stswx, dcbi, mtfsb0/mtfsb1,
  vmsum*, vmhaddshs, vupkhpx/vupklpx, and most SPRs; pages described them
  as working.
- Traps evaluate TO in Canary; stvebx/stvehx/stvewx store one element, not
  16 bytes; mtmsrd writes only EE; fres/frsqrte/vrsqrtefp precision claims
  and the stfs "rounds under RN / sets FPSCR" claim contradicted the spec.
- Reservations are a 64 KiB block bitmap plus a value compare, not
  per-address tracking.

Claims that neither Canary's source nor a public spec settles are marked
unverified (NI at boot, vmaddcfp128 operand order, estimate bit-exactness).

Generated regions are untouched; re-running the generator changes nothing.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-16 21:52:38 +02:00

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fnmsubsx — Floating Negative Multiply-Subtract Single

Category: Floating-Point · Form: A · Opcode: 0xec00003c

Assembler Mnemonics

Mnemonic XML entry Flags Description
fnmsubs fnmsubsx Floating Negative Multiply-Subtract Single
fnmsubs. fnmsubsx Rc=1 Floating Negative Multiply-Subtract Single

Syntax

fnmsubs[Rc] [FD], [FA], [FC], [FB]

Encoding

fnmsubsx — form A

  • Opcode word: 0xec00003c
  • Primary opcode (bits 05): 59
  • Extended opcode: 30
  • Synchronising: no
Bits Field Meaning
05 OPCD primary opcode (59 or 63)
610 FRT destination FPR
1115 FRA source A FPR
1620 FRB source B FPR
2125 FRC source C FPR (multiplier for madd-style ops)
2630 XO extended opcode (5 bits)
31 Rc record-form flag (updates CR1)

Operands

Field Role Description
FA fnmsubsx: read Source A floating-point register (fr0fr31).
FC fnmsubsx: read Source C floating-point register (for madd-style ops).
FB fnmsubsx: read Source B floating-point register.
FD fnmsubsx: write Destination floating-point register.
CR fnmsubsx: write (conditional) Condition-register update. When Rc=1, CR field 0 (or CR6 for vector compares, CR1 for FPU) is updated from the result.
FPSCR fnmsubsx: write Floating-Point Status and Control Register.

Register Effects

fnmsubsx

  • Reads (always): FA, FC, FB
  • Reads (conditional): none
  • Writes (always): FD, FPSCR
  • Writes (conditional): CR

Status-Register Effects

  • fnmsubsx: CR1 ← FPSCR[FX, FEX, VX, OX] when Rc=1.; FPSCR updated per IEEE-754 flags (FX, FEX, FPRF, FR, FI, exceptions).

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

fnmsubsx

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_fnmsubsx(PPCHIRBuilder& f, const InstrData& i) {
  // frD <- -([frA x frC] - frB)
  Value* v = f.Neg(
      f.MulSub(f.LoadFPR(i.A.FRA), f.LoadFPR(i.A.FRC), f.LoadFPR(i.A.FRB)));
  v = f.ToSingle(v);
  f.StoreFPR(i.A.FRT, v);
  f.UpdateFPSCR(v, i.A.Rc);
  return 0;
}

Special Cases & Edge Conditions

  • Single rounding then negate then round-to-single. Computes ((FRA × FRC) FRB) = FRB (FRA × FRC) and rounds to binary32. Canary emits ToSingle(Neg(MulSub(a, c, b))), the multiply-subtract fused only on FMA3 hosts (vfmsub213sd, otherwise vmulsd + vsubsd).
  • NaN sign behaviour. PowerISA: the negation does not flip a NaN's sign bit. Canary's Neg (vxorpd) does. Observable only by bit-level inspection. Canary quirk.
  • Operand order. Assembler: FD, FA, FC, FB.
  • Invalid operations. 0×VXIMZ; same-signed-infinity collision → VXISI. Quiet NaN result.
  • FPSCR side effects. Hardware updates FPRF, FR, FI, FX, OX, UX, XX, VXIMZ, VXISI, VXSNAN. Canary does not (UpdateFPSCR is a stub).
  • Rc=1 (fnmsubs.) copies FPSCR[FX, FEX, VX, OX] into CR1.
  • NaN propagation. Quiet-NaN result for any NaN operand; signalling NaNs are quietened.
  • Single-precision overflow returns ±∞ and sets OX/XX/FX.
  • Use case. Single-precision Newton-Raphson divide refinement: x_new = x*(2 - d*x) is implemented as a fnmsubs/fmuls pair throughout Xbox 360 graphics code.
  • Denormal flush. That Xenon boots with FPSCR[NI]=1 is unverified. Canary starts every guest thread in IEEE mode (MXCSR 0x1F80; its init comment flags the startup state as unchecked) and turns on the host's flush-to-zero (MXCSR.FZ) only when the guest sets NI through mtfsf/mtfsfi.
  • fnmsubx — double-precision sibling.
  • fmaddsx, fmsubsx, fnmaddsx — other single-precision fused-multiply variants.
  • fresx, frsqrtex — reciprocal estimates whose Newton-Raphson refinement leans on fnmsubs.
  • fmulsx, fsubsx — non-fused decomposition.
  • frspx — explicit double→single rounding.

IBM Reference