# `fsubx` — Floating Subtract > **Category:** [Floating-Point](../categories/fpu.md) · **Form:** [A](../forms/A.md) · **Opcode:** `0xfc000028` ## Assembler Mnemonics | Mnemonic | XML entry | Flags | Description | | --- | --- | --- | --- | | `fsub` | `fsubx` | — | Floating Subtract | | `fsub.` | `fsubx` | Rc=1 | Floating Subtract | ## Syntax ```asm fsub[Rc] [FD], [FA], [FB] ``` ## Encoding ### `fsubx` — form `A` - **Opcode word:** `0xfc000028` - **Primary opcode (bits 0–5):** `63` - **Extended opcode:** `20` - **Synchronising:** no | Bits | Field | Meaning | | --- | --- | --- | | 0–5 | `OPCD` | primary opcode (59 or 63) | | 6–10 | `FRT` | destination FPR | | 11–15 | `FRA` | source A FPR | | 16–20 | `FRB` | source B FPR | | 21–25 | `FRC` | source C FPR (multiplier for madd-style ops) | | 26–30 | `XO` | extended opcode (5 bits) | | 31 | `Rc` | record-form flag (updates CR1) | ## Operands | Field | Role | Description | | --- | --- | --- | | `FA` | fsubx: read | Source A floating-point register (`fr0`–`fr31`). | | `FB` | fsubx: read | Source B floating-point register. | | `FD` | fsubx: write | Destination floating-point register. | | `CR` | fsubx: 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` | fsubx: write | Floating-Point Status and Control Register. | ## Register Effects ### `fsubx` - **Reads (always):** `FA`, `FB` - **Reads (conditional):** _none_ - **Writes (always):** `FD`, `FPSCR` - **Writes (conditional):** `CR` ## Status-Register Effects - `fsubx`: **CR1** ← FPSCR[FX, FEX, VX, OX] when `Rc=1`.; **FPSCR** updated per IEEE-754 flags (FX, FEX, FPRF, FR, FI, exceptions). ## Operation (pseudocode) ``` FRT <- FRA − FRB ``` ## C Translation Example ```c /* 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 **`fsubx`** - Canary XML: [`tools/ppc-instructions.xml` — search for `mnem="fsubx"`](https://github.com/xenia-canary/xenia-canary/blob/f21ebd49e979e44f081f474df78c3fbfee9cb3f2/tools/ppc-instructions.xml) - Canary emitter: [`src/xenia/cpu/ppc/ppc_emit_fpu.cc:127`](https://github.com/xenia-canary/xenia-canary/blob/f21ebd49e979e44f081f474df78c3fbfee9cb3f2/src/xenia/cpu/ppc/ppc_emit_fpu.cc#L127) - Sylpheed opcode: [`crates/sylpheed-ppc/src/opcode.rs:96`](../../../crates/sylpheed-ppc/src/opcode.rs#L96) - Sylpheed decoder: [`crates/sylpheed-ppc/src/decoder.rs:1036`](../../../crates/sylpheed-ppc/src/decoder.rs#L1036)
Canary emitter (frozen snapshot @ f21ebd49e9) ```cpp int InstrEmit_fsubx(PPCHIRBuilder& f, const InstrData& i) { // frD <- (frA) - (frB) Value* v = f.Sub(f.LoadFPR(i.A.FRA), f.LoadFPR(i.A.FRB)); f.StoreFPR(i.A.FRT, v); f.UpdateFPSCR(v, i.A.Rc); return 0; } ```
## Special Cases & Edge Conditions - **Double precision.** `fsub` operates on IEEE-754 binary64. The single-precision sibling is [`fsubsx`](fsubsx.md), which rounds the result to binary32 before re-encoding it into the 64-bit FPR. - **`±∞ − ±∞` is the canonical invalid case.** Same-signed infinity subtraction (or opposite-signed addition) yields `QNaN(VXISI)` and sets `FPSCR[VXISI, VX, FX]`. - **FPSCR side effects.** Hardware updates `FPRF`, `FR`, `FI`, `FX` plus exception bits `OX`, `UX`, `XX`, `VXISI`, `VXSNAN` as appropriate. Canary does **not** model FPSCR updates (`UpdateFPSCR` is a stub) — a divergence that almost never matters in practice. - **`Rc=1` (`fsub.`)** writes `CR1` from `FPSCR[FX, FEX, VX, OX]`. - **NaN propagation.** Any NaN operand yields a quiet NaN; a signalling NaN input is quietened (signalling bit cleared) per PowerISA. Host `f64 -` is relied on for the value. - **Sign of zero.** `+0 − +0 = +0` in round-to-nearest, `−0` in round-toward-negative-infinity. Canary's `vsubsd` follows the host rounding mode, which it loads from `FPSCR[RN]`. - **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`. - **Encoding.** A-form, primary 63, XO 20. `FRC` is don't-care for sub. ## Related Instructions - [`fsubsx`](fsubsx.md) — single-precision subtract (rounds to binary32). - [`faddx`](faddx.md), [`faddsx`](faddsx.md) — add counterparts; subtract is implemented as add-with-negated-B on most cores. - [`fnegx`](fnegx.md) — sign flip (the bit-pattern operation behind `−FRB`). - [`fmsubx`](fmsubx.md), [`fnmsubx`](fnmsubx.md) — fused multiply-subtract (single rounding step). - [`mffsx`](../control/mffsx.md), [`mtfsfx`](../control/mtfsfx.md), [`mtfsb0x`](../control/mtfsb0x.md), [`mtfsb1x`](../control/mtfsb1x.md) — FPSCR control. ## IBM Reference - [AIX 7.3 — `fsub` (Floating Subtract)](https://www.ibm.com/docs/en/aix/7.3.0?topic=set-fs-fsub-floating-subtract-instruction) - [PowerISA v2.07B, Book I, Chapter 4 — Floating-Point Processor](https://openpowerfoundation.org/specifications/isa/).