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Sylpheed/tools/ppc-manual/memory/lmw.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
disk, backed up by nothing.

  tools/ppc-manual/   393 files, 3.7 MB. 455 instructions, 350 family pages,
                      598 mnemonics resolvable through index.json, plus the
                      generator that produced them.
  tools/run-canary.sh the oracle launcher.

🔴 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
    problem -- it has cost a session before. It now points at the real file and
    warns if handed a symlink.
  * it hardcoded one machine's absolute paths, and named `xenia-rs`, which this
    consolidation retires. Now derived from the script's own location, with
    SYLPH_CANARY_BIN / SYLPH_ISO overrides and a check that each exists.

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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lmw — Load Multiple Word

Category: Memory · Form: D · Opcode: 0xb8000000

Assembler Mnemonics

Mnemonic XML entry Flags Description
lmw lmw — Load Multiple Word

Syntax

(no disassembly template)

Encoding

lmw — form D

  • Opcode word: 0xb8000000
  • Primary opcode (bits 0–5): 46
  • Extended opcode: —
  • Synchronising: no
Bits Field Meaning
0–5 OPCD primary opcode
6–10 RT destination GPR (or RS when storing)
11–15 RA source GPR (0 ⇒ literal 0 for RA0 forms)
16–31 D/SI/UI 16-bit signed or unsigned immediate

Operands

Field Role Description

Register Effects

lmw

  • Reads (always): none
  • Reads (conditional): none
  • Writes (always): none
  • Writes (conditional): none

Status-Register Effects

No condition-register or status-register effects.

Operation (pseudocode)

; Pseudocode derives directly from the xenia-rs interpreter
; arm (see Implementation References). Operation semantics:
;   - Read source operands from the fields listed under Operands.
;   - Apply the arithmetic / logical / memory action described
;     in the Description field above.
;   - Write results to the destination register(s); update any
;     status bits enumerated under Status-Register Effects.
; Consult the IBM AIX reference link under IBM Reference for
; canonical PPC-style pseudocode where xenia's expression is
; terse.

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

lmw

xenia-rs interpreter body (frozen snapshot)
        PpcOpcode::lmw => {
            // PPCBUG-125: PowerISA marks `lmw` invalid when rA is in [rT..31];
            // canary skips the write to rA in that case to preserve the EA base.
            let mut ea = if instr.ra() == 0 { 0u64 } else { ctx.gpr[instr.ra()] };
            ea = ea.wrapping_add(instr.d() as i64 as u64);
            for r in instr.rd()..32 {
                if r == instr.ra() {
                    ea = ea.wrapping_add(4);
                    continue;
                }
                ctx.gpr[r] = mem.read_u32(ea as u32) as u64;
                ea = ea.wrapping_add(4);
            }
            ctx.pc += 4;
        }

Special Cases & Edge Conditions

  • Bulk register restore. Loads (32 - RT) consecutive 32-bit words starting at EA into RT, RT+1, …, r31. Used by AIX/PowerPC ABI prologues/epilogues to restore non-volatile GPRs in one instruction. Modern compilers prefer multiple lwz for scheduling; lmw survives in older code and hand-rolled context-switch routines.
  • Loop bound from encoding. Xenia's snapshot iterates for r in instr.rd()..32, exactly matching IBM's "load until r31 inclusive" semantic. With RT = 28, four registers (r28..r31) are loaded.
  • Each word is zero-extended. Like lwz, every loaded 32-bit word zero-extends into the destination's 64-bit GPR. The high 32 bits of each r[k] become zero.
  • Big-endian read. Word at EA goes to r[RT], word at EA+4 goes to r[RT+1], etc. Each word is itself loaded most-significant-byte-first.
  • RA0 semantics. When RA = 0, base is literal zero. Useful for absolute-address restoration.
  • Invalid forms. AIX docs declare it invalid for RA to be in the destination range [RT, 31] — a load could overwrite the base register mid-sequence. Xenia performs loads in order without this check.
  • Alignment. PowerISA requires word-aligned EA; an unaligned lmw may raise an alignment exception on real hardware. Xenia tolerates it.
  • Performance trap. On modern PowerPC implementations lmw is microcoded — slower than the equivalent sequence of lwz. Compilers avoid it.
  • stmw — symmetric "store multiple words" (the matching epilogue/prologue partner).
  • lwz, lwzx — single-word loads; the modern preferred form.
  • lswi, lswx — load string (byte-granular bulk transfer).

IBM Reference