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Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-16 22:37:12 +02:00

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fcmpu — Floating Compare Unordered

Category: Floating-Point · Form: X · Opcode: 0xfc000000

Assembler Mnemonics

Mnemonic XML entry Flags Description
fcmpu fcmpu Floating Compare Unordered

Syntax

fcmpu [CRFD], [FA], [FB]

Encoding

fcmpu — form X

  • Opcode word: 0xfc000000
  • Primary opcode (bits 05): 63
  • Extended opcode: 0
  • Synchronising: no
Bits Field Meaning
05 OPCD primary opcode
610 RT/FRT/VRT destination
1115 RA/FRA/VRA source A
1620 RB/FRB/VRB source B
2130 XO extended opcode (10 bits)
31 Rc record-form flag

Operands

Field Role Description
FA fcmpu: read Source A floating-point register (fr0fr31).
FB fcmpu: read Source B floating-point register.
CRFD fcmpu: write CR destination field (crf, 07).
FPSCR fcmpu: write Floating-Point Status and Control Register.

Register Effects

fcmpu

  • Reads (always): FA, FB
  • Reads (conditional): none
  • Writes (always): CRFD, FPSCR
  • Writes (conditional): none

Status-Register Effects

  • fcmpu: 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

fcmpu

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_fcmpu(PPCHIRBuilder& f, const InstrData& i) {
  return InstrEmit_fcmpx_(f, i, false);
}

// ── delegates to (src/xenia/cpu/ppc/ppc_emit_fpu.cc:329) ──
int InstrEmit_fcmpx_(PPCHIRBuilder& f, const InstrData& i, bool ordered) {
  // if (FRA) is a NaN or (FRB) is a NaN then
  //   c <- 0b0001
  // else if (FRA) < (FRB) then
  //   c <- 0b1000
  // else if (FRA) > (FRB) then
  //   c <- 0b0100
  // else {
  //   c <- 0b0010
  // }
  // FPCC <- c
  // CR[4*BF:4*BF+3] <- c
  // if (FRA) is an SNaN or (FRB) is an SNaN then
  //   VXSNAN <- 1

  // TODO(benvanik): update FPCC for mffsx/etc
  // TODO(benvanik): update VXSNAN
  const uint32_t crf = i.X.RT >> 2;
  Value* ra = f.LoadFPR(i.X.RA);
  Value* rb = f.LoadFPR(i.X.RB);

  Value* nan = f.Or(f.IsNan(ra), f.IsNan(rb));
  f.StoreContext(offsetof(PPCContext, cr0) + (4 * crf) + 3, nan);
  Value* not_nan = f.Xor(nan, f.LoadConstantInt8(0x01));

  Value* lt = f.And(not_nan, f.CompareSLT(ra, rb));
  f.StoreContext(offsetof(PPCContext, cr0) + (4 * crf) + 0, lt);
  Value* gt = f.And(not_nan, f.CompareSGT(ra, rb));
  f.StoreContext(offsetof(PPCContext, cr0) + (4 * crf) + 1, gt);
  Value* eq = f.And(not_nan, f.CompareEQ(ra, rb));
  f.StoreContext(offsetof(PPCContext, cr0) + (4 * crf) + 2, eq);
  return 0;
}

Special Cases & Edge Conditions

  • Unordered compare. "Unordered" means NaN inputs do not signal an invalid-operation exception — they merely set the unordered (SO) bit in the destination CR field. Use fcmpox when NaN should raise VXSNAN/VXVC.
  • CR field bits. Writes the 4-bit CR field selected by BF (crfd):
    • LT (bit 0) — FRA < FRB
    • GT (bit 1) — FRA > FRB
    • EQ (bit 2) — FRA == FRB
    • SO (bit 3) — unordered (one or both operands is NaN)
  • NaN handling. Either operand NaN → set SO=1, clear LT/GT/EQ. Canary matches: it stores IsNan(A) | IsNan(B) in the field's fourth bit and ANDs LT/GT/EQ with its complement.
  • Signalling NaN. Per PowerISA, fcmpu sets FPSCR[VXSNAN] if either operand is a signalling NaN, but does not set FPSCR[VXVC] (the difference vs fcmpo). Canary models neither, so fcmpu and fcmpo are observationally identical there.
  • +0 and -0 compare equal. Standard IEEE rule; Canary's host float compares match.
  • No Rc bit. The CR field destination is encoded in the instruction (BF); there's no record-form variant.
  • FPSCR side effects. Hardware updates FPSCR[FPCC] (the four-bit floating-point condition code) and FPSCR[FX]. Canary does not maintain FPCC.
  • Precision-agnostic. Compares the full binary64 values; works equally for single-precision values stored in FPRs (they are bit-identical to their double-precision representation).
  • Encoding. X-form, primary 63, XO 0. Bits 910 of BF are unused (reserved 0).
  • fcmpox — ordered compare; raises VXSNAN/VXVC on NaN/SNaN.
  • mcrf, mcrfs, mfcr — copy CR fields, useful after fcmpu to fan out the result.
  • bc, bclr, bcctr — conditional branches consume the CR fields written by fcmpu.
  • fselx — branch-free alternative when only the sign of FRA - FRB is needed.
  • mcrfs, mffsx — move FPSCR data into the CR.

IBM Reference