The generator had not been able to run correctly since the manual moved into
`tools/ppc-manual/`: it computed the repository root as `HERE.parent.parent`,
which now names `tools/`, so the XML, Canary's emitters and xenia-rs all stopped
resolving — silently, because both scrapers skipped what they could not find.
Every page's references had been pointing at paths that exist nowhere.
What each source contributed, measured on the 350 pages before this change:
Operation (pseudocode) 251 pages: fixed boilerplate "derives from the xenia-rs
interpreter"; 99 carry real hand-written seeds
C translation 337 pages: the same kind of boilerplate
xenia-rs snapshot 336 pages: the interpreter arm, pasted in — the only
per-instruction semantics on unseeded pages
links xenia-rs opcode/decoder/interpreter + Canary emitter
Now:
* semantics come from **Xenia Canary**, the reference emulator, read through
`git show` at a pinned upstream commit (`origin/canary_experimental`,
f21ebd49e9). Not our checkout: it carries instrumentation and lacked
upstream's `mcrf` fix, so it would have published probes and a wrong `mcrf`.
Each page embeds the emitter (`InstrEmit_<mnem>`), and for the 128 pure
one-line delegations also the helper that holds the semantics.
* decode references point at `crates/sylpheed-ppc` — the decoder that
produces `sylpheed.db` — as in-repo relative links.
* the boilerplate now says what is true, and the C translation guide maps
Canary's actual HIR calls, checked against `ppc_hir_builder.h` (including
that `UpdateCR(n, v)` truncates to 32 bits).
* `rust_scraper.py` -> `decoder_scraper.py` (interpreter half dropped);
missing sources are now errors, not empty results.
Verified:
consistency checks 455 XML entries, 350 families, 598 index keys
hand-written tails 386/386 byte-identical after regeneration
xenia-rs in generated 0
pages with a snapshot 349/350 (was 336) — `dcbi` has no Canary emitter at all
in-repo decoder links 910/910 resolve to a line holding the identifier
emitter boundaries brace counter == column-0 `}` rule on 521/521;
preprocessor model unit-tested (#if 0/#else/#elif)
idempotency re-run: 0 pages updated, 0 working-tree changes
Hand-written notes (outside the generated regions) are not rewritten here:
* 110 links into `../../xenia-rs/...` were dead; they now point at the file in
the archived repository (git.mc02.dev/fabi/xenia-rs @ 8401d4d). Line anchors
were dropped because the notes predate that commit — 0 of 441 old line
ranges match it — and a precise-looking wrong anchor is worse than none. The
link text, which carries the author's line numbers, is unchanged.
* 140 prose claims about xenia-rs's behaviour remain. 23 are verified to hold
for Canary too (the 32-bit CR0 truncation, OE left unimplemented); the other
114 need checking one by one, and some invert — e.g. `divdx` notes a correct
64-bit CR0 update in xenia-rs where Canary's `UpdateCR` truncates. Left for
a deliberate pass rather than a blind substitution.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
8.1 KiB
8.1 KiB
vsldoi — Vector Shift Left Double by Octet Immediate
Category: VMX (Altivec) · Form: VA · Opcode:
0x1000002c
Assembler Mnemonics
| Mnemonic | XML entry | Flags | Description |
|---|---|---|---|
vsldoi |
vsldoi |
— | Vector Shift Left Double by Octet Immediate |
vsldoi128 |
vsldoi128 |
— | Vector128 Shift Left Double by Octet Immediate |
Syntax
vsldoi [VD], [VA], [VB], [SHB]
vsldoi128 [VD], [VA], [VB], [SHB]
Encoding
vsldoi — form VA
- Opcode word:
0x1000002c - Primary opcode (bits 0–5):
4 - Extended opcode:
44 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode (4) |
| 6–10 | VRT |
destination vector register |
| 11–15 | VRA |
source A |
| 16–20 | VRB |
source B |
| 21–25 | VRC |
source C / shift |
| 26–31 | XO |
extended opcode (6 bits) |
vsldoi128 — form VX128_5
- Opcode word:
0x10000010 - Primary opcode (bits 0–5):
4 - Extended opcode:
16 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode (4) |
| 6–10 | VD128l |
destination low 5 bits |
| 11–15 | VA128l |
source A low 5 bits |
| 16–20 | VB128l |
source B low 5 bits |
| 21 | VA128H |
source A high bit |
| 22–25 | SH |
4-bit shift amount |
| 26 | VA128h |
source A middle bit |
| 28–29 | VD128h |
destination high 2 bits |
| 30–31 | VB128h |
source B high 2 bits |
Operands
| Field | Role | Description |
|---|---|---|
VA |
vsldoi: read; vsldoi128: read | Source A vector register. |
VB |
vsldoi: read; vsldoi128: read | Source B vector register. |
SHB |
vsldoi: read; vsldoi128: read | Shift amount (byte granularity, vsldoi). |
VD |
vsldoi: write; vsldoi128: write | Destination vector register. |
Register Effects
vsldoi
- Reads (always):
VA,VB,SHB - Reads (conditional): none
- Writes (always):
VD - Writes (conditional): none
vsldoi128
- Reads (always):
VA,VB,SHB - Reads (conditional): none
- Writes (always):
VD - Writes (conditional): none
Status-Register Effects
No condition-register or status-register effects.
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
vsldoi
- Canary XML:
tools/ppc-instructions.xml— search formnem="vsldoi" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_altivec.cc:1463 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:442 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:702
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_vsldoi(PPCHIRBuilder& f, const InstrData& i) {
return InstrEmit_vsldoi_(f, i.VXA.VD, i.VXA.VA, i.VXA.VB, i.VXA.VC & 0xF);
}
// ── delegates to (src/xenia/cpu/ppc/ppc_emit_altivec.cc:1434) ──
int InstrEmit_vsldoi_(PPCHIRBuilder& f, uint32_t vd, uint32_t va, uint32_t vb,
uint32_t sh) {
// (VD) <- ((VA) || (VB)) << (SH << 3)
if (!sh) {
f.StoreVR(vd, f.LoadVR(va));
return 0;
} else if (sh == 16) {
f.StoreVR(vd, f.LoadVR(vb));
return 0;
}
Value* v;
if (!(sh & 3)) {
// Word-aligned shifts can use the cheaper 32-bit permute.
uint32_t control = 0;
uint32_t source_word = sh >> 2;
for (uint32_t output_word = 0; output_word < 4;
++output_word, ++source_word) {
control |= ((source_word & 3) | ((source_word & 4) ? 4 : 0))
<< (output_word * 8);
}
v = f.Permute(f.LoadConstantUint32(control), f.LoadVR(va), f.LoadVR(vb),
INT32_TYPE);
} else {
Value* control = f.LoadConstantVec128(__vsldoi_table[sh]);
v = f.Permute(control, f.LoadVR(va), f.LoadVR(vb), INT8_TYPE);
}
f.StoreVR(vd, v);
return 0;
}
vsldoi128
- Canary XML:
tools/ppc-instructions.xml— search formnem="vsldoi128" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_altivec.cc:1466 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:443 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:710
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_vsldoi128(PPCHIRBuilder& f, const InstrData& i) {
return InstrEmit_vsldoi_(f, VX128_5_VD128, VX128_5_VA128, VX128_5_VB128,
VX128_5_SH);
}
Special Cases & Edge Conditions
- Static byte-level shift of
VA ‖ VB. The 4-bitSHBimmediate names a byte offset into the 32-byte concatenationVA ‖ VB. The destinationVDis the 16-byte window starting at that offset. Equivalently:VD = (VA << (8 * SHB)) | (VB >> (8 * (16 − SHB))), treating the 32-byte concatenation as a single big-endian value. SHB = 0is a register move fromVAtoVD.SHB = 16is ill-formed; the field is 4 bits (0..15) so the range isSHB ∈ 0..=15.- Compile-time shift only. Unlike
vperm/vslo/vsro, the shift is an immediate. When the shift is known at compile time,vsldoiis strictly cheaper than anlvsl+vpermpair. - Unaligned-load idiom.
vsldoiis the static-offset counterpart to the dynamiclvsl+vpermpattern. When the misalignment is known, emitvsldoi vD, vAL, vAH, SHBafter two alignedlvxloads. - Big-endian byte indexing. Lane 0 is the MSB.
- No flags, no VSCR.
- VMX128 sibling
vsldoi128with the wider register file; same 4-bitSHBimmediate.
Related Instructions
vslo,vsro— byte-level (octet) shifts using a per-register count, dynamic.vsl,vsr— bit-level whole-register shifts.vperm— general-purpose programmable byte permute.lvsl,lvsr— dynamic permute-control generators.vmrghb,vmrglb— byte-granularity merges.