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Sylpheed/tools/ppc-manual/alu/cmpi.md
MechaCat02 10dc260f0c chore(tools): adopt the PPC manual and a canary launcher that works anywhere
CONSOLIDATION.md Phase 6. Both lived untracked in the project root -- on one
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  tools/ppc-manual/   393 files, 3.7 MB. 455 instructions, 350 family pages,
                      598 mnemonics resolvable through index.json, plus the
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🔴 THE LAUNCHER WAS BROKEN IN TWO WAYS AND IS REWRITTEN, not copied:

  * it pointed at `xenia-rs/sylpheed.iso`, a SYMLINK. Wine cannot resolve one
    and says "path invalid", which reads as a corrupt image rather than a path
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  * it hardcoded one machine's absolute paths, and named `xenia-rs`, which this
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The standing constraints are in its header where someone will read them: one
emulator at a time, Canary runs MUTED, and never judge a crash or a hang from
a Bash-launched run -- a SIGKILL that looked like the binary was the editor's
process supervisor.

⚠️ The manual's GENERATOR reads the xenia-rs source tree, which is going away.
Its decoder now lives here as crates/sylpheed-ppc, so the generator must be
repointed before it is run again. Recorded in the README rather than left for
someone to discover; the manual's content is checked in and regenerates from
nothing implicitly.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-13 21:18:00 +02:00

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cmpi — Compare Immediate

Category: Integer ALU · Form: D · Opcode: 0x2c000000

Assembler Mnemonics

Mnemonic XML entry Flags Description
cmpi cmpi Compare Immediate

Syntax

cmpi [CRFD], [L], [RA], [SIMM]

Encoding

cmpi — form D

  • Opcode word: 0x2c000000
  • Primary opcode (bits 05): 11
  • Extended opcode:
  • Synchronising: no
Bits Field Meaning
05 OPCD primary opcode
610 RT destination GPR (or RS when storing)
1115 RA source GPR (0 ⇒ literal 0 for RA0 forms)
1631 D/SI/UI 16-bit signed or unsigned immediate

Operands

Field Role Description
L cmpi: read Operand-length bit for compare instructions (0 ⇒ 32-bit, 1 ⇒ 64-bit).
RA cmpi: read Source GPR (r0r31).
SIMM cmpi: read 16-bit signed immediate. Sign-extended to 64 bits before use.
RD cmpi: write Destination GPR.
CRFD cmpi: write CR destination field (crf, 07).

Register Effects

cmpi

  • Reads (always): L, RA, SIMM
  • Reads (conditional): none
  • Writes (always): RD, CRFD
  • Writes (conditional): none

Status-Register Effects

No condition-register or status-register effects.

Operation (pseudocode)

if L = 0 then a,b <- EXTS((RA)[32:63]), EXTS(SIMM)
else             a,b <- (RA), EXTS(SIMM)
CR[BF] <- signed_compare(a, b) || XER[SO]

C Translation Example

/* C translation: the xenia-rs interpreter arm below in           */
/* Implementation References is the authoritative semantic        */
/* snapshot. Translate it line-by-line:                            */
/*   - ctx.gpr[N]  -> r[N]       (or f[]/v[] for FPRs/VRs)        */
/*   - mem.read_u*/write_u* -> mem_read_u*_be / mem_write_u*_be   */
/*   - ctx.update_cr_signed(fld, v) -> update_cr_signed(fld, v)   */
/*   - ctx.xer_ca / xer_ov / xer_so -> xer.CA / xer.OV / xer.SO   */
/* The Register Effects and Status-Register Effects tables above  */
/* enumerate every side effect a faithful translation must emit.  */

Implementation References

cmpi

xenia-rs interpreter body (frozen snapshot)
        PpcOpcode::cmpi => {
            let bf = instr.crfd();
            if instr.l() {
                // 64-bit compare. Compare directly so boundary i64 values
                // (e.g. ra=i64::MIN, imm=1) don't mis-sign through a
                // wrapped subtract.
                let ra = ctx.gpr[instr.ra()] as i64;
                let imm = instr.simm16() as i64;
                ctx.cr[bf] = crate::context::CrField {
                    lt: ra < imm,
                    gt: ra > imm,
                    eq: ra == imm,
                    so: ctx.xer_so != 0,
                };
            } else {
                let ra = ctx.gpr[instr.ra()] as i32;
                let imm = instr.simm16() as i32;
                ctx.cr[bf] = crate::context::CrField {
                    lt: ra < imm,
                    gt: ra > imm,
                    eq: ra == imm,
                    so: ctx.xer_so != 0,
                };
            }
            ctx.pc += 4;
        }

Special Cases & Edge Conditions

  • Immediate is sign-extended. SIMM is treated as a signed 16-bit value in the range [-32768, 32767] and sign-extended to the operand width. Use cmpli for unsigned comparisons against a 16-bit value.
  • L bit selects width. L = 0 (the usual cmpwi) compares the low 32 bits of RA (sign-extended) against EXTS(SIMM); L = 1 (cmpdi) does a full 64-bit signed compare. Most Xbox 360 code uses cmpwi because pointers and counters are 32-bit ABI.
  • Simplified mnemonics dominate disassembly. cmpwi crN, RA, SIMMcmpi crN, 0, RA, SIMM and cmpdi crN, RA, SIMMcmpi crN, 1, RA, SIMM. The default CR field is cr0 if omitted.
  • BF is a CR field (07), not a bit. Same convention as cmp. Distinct standalone compares should target cr1..cr7 to avoid clobbering the implicit cr0 chain set up by Rc=1 arithmetic.
  • SO is copied from XER[SO]. This makes overflow observable downstream of an addo. / mulo. etc. via bso/bns.
  • Xenia-rs quirk. The interpreter recomputes EQ after the signed subtract, defending against the same 32-bit narrowing edge case noted in cmp. Functionally equivalent to spec.
  • No register written other than the 4-bit CR field — there is no Rc or OE bit.
  • cmp — register-register signed compare.
  • cmpli — unsigned compare against immediate (zero-extended).
  • cmpl — unsigned register compare.
  • cmpwi, cmpdi (simplified mnemonics) — select L=0 / L=1.
  • mcrxr — clear sticky overflow before a fresh compare sequence.

IBM Reference