The hand-written parts of the manual still described how the retired xenia-rs interpreter behaved: its snapshots, Rust casts and helpers. Each of those 490 statements is now either restated as what Canary's emitters and x64 backend actually do (at the pinned canary_experimental commit), or dropped where it only made sense for xenia-rs. Checking them turned up claims that were wrong, not just outdated: - VSCR[SAT] is never modelled in Canary (DID_SATURATE is a stub and mfvscr cannot see it); the pages said saturating ops set it stickily. - Canary does not implement lswi/lswx/stswi/stswx, dcbi, mtfsb0/mtfsb1, vmsum*, vmhaddshs, vupkhpx/vupklpx, and most SPRs; pages described them as working. - Traps evaluate TO in Canary; stvebx/stvehx/stvewx store one element, not 16 bytes; mtmsrd writes only EE; fres/frsqrte/vrsqrtefp precision claims and the stfs "rounds under RN / sets FPSCR" claim contradicted the spec. - Reservations are a 64 KiB block bitmap plus a value compare, not per-address tracking. Claims that neither Canary's source nor a public spec settles are marked unverified (NI at boot, vmaddcfp128 operand order, estimate bit-exactness). Generated regions are untouched; re-running the generator changes nothing. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
11 KiB
11 KiB
std — Store Doubleword
Assembler Mnemonics
| Mnemonic | XML entry | Flags | Description |
|---|---|---|---|
std |
std |
— | Store Doubleword |
stdu |
stdu |
— | Store Doubleword with Update |
stdux |
stdux |
— | Store Doubleword with Update Indexed |
stdx |
stdx |
— | Store Doubleword Indexed |
Syntax
std [RS], [ds]([RA0])
stdu [RS], [ds]([RA])
stdux [RS], [RA], [RB]
stdx [RS], [RA0], [RB]
Encoding
std — form DS
- Opcode word:
0xf8000000 - Primary opcode (bits 0–5):
62 - Extended opcode: —
- Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode |
| 6–10 | RT |
destination GPR (or RS) |
| 11–15 | RA |
source GPR (0 ⇒ literal 0) |
| 16–29 | DS |
14-bit signed word-scaled displacement |
| 30–31 | XO |
extended opcode |
stdu — form DS
- Opcode word:
0xf8000001 - Primary opcode (bits 0–5):
62 - Extended opcode: —
- Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode |
| 6–10 | RT |
destination GPR (or RS) |
| 11–15 | RA |
source GPR (0 ⇒ literal 0) |
| 16–29 | DS |
14-bit signed word-scaled displacement |
| 30–31 | XO |
extended opcode |
stdux — form X
- Opcode word:
0x7c00016a - Primary opcode (bits 0–5):
31 - Extended opcode:
181 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode |
| 6–10 | RT/FRT/VRT |
destination |
| 11–15 | RA/FRA/VRA |
source A |
| 16–20 | RB/FRB/VRB |
source B |
| 21–30 | XO |
extended opcode (10 bits) |
| 31 | Rc |
record-form flag |
stdx — form X
- Opcode word:
0x7c00012a - Primary opcode (bits 0–5):
31 - Extended opcode:
149 - Synchronising: no
| Bits | Field | Meaning |
|---|---|---|
| 0–5 | OPCD |
primary opcode |
| 6–10 | RT/FRT/VRT |
destination |
| 11–15 | RA/FRA/VRA |
source A |
| 16–20 | RB/FRB/VRB |
source B |
| 21–30 | XO |
extended opcode (10 bits) |
| 31 | Rc |
record-form flag |
Operands
| Field | Role | Description |
|---|---|---|
RS |
std: read; stdu: read; stdux: read; stdx: read | Source GPR (alias for RD in some stores). |
RA |
std: read; stdu: read; stdu: write; stdux: read; stdux: write | Source GPR (r0–r31). |
ds |
std: read; stdu: read | 14-bit signed word-aligned displacement (DS << 2). |
RB |
stdux: read; stdx: read | Source GPR. |
RA0 |
stdx: read | Source GPR; when the encoded register number is 0 the operand is the literal 64-bit zero, not r0. |
Register Effects
std
- Reads (always):
RS,RA,ds - Reads (conditional): none
- Writes (always): none
- Writes (conditional): none
stdu
- Reads (always):
RS,RA,ds - Reads (conditional): none
- Writes (always):
RA - Writes (conditional): none
stdux
- Reads (always):
RS,RA,RB - Reads (conditional): none
- Writes (always):
RA - Writes (conditional): none
stdx
- Reads (always):
RS,RA0,RB - Reads (conditional): none
- Writes (always): none
- Writes (conditional): none
Status-Register Effects
No condition-register or status-register effects.
Operation (pseudocode)
EA <- (RA|0) + EXTS(ds || 0b00)
MEM(EA, 8) <- (RS)
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
std
- Canary XML:
tools/ppc-instructions.xml— search formnem="std" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_memory.cc:575 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:230 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:514
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_std(PPCHIRBuilder& f, const InstrData& i) {
// if RA = 0 then
// b <- 0
// else
// b <- (RA)
// EA <- b + EXTS(DS || 0b00)
// MEM(EA, 8) <- (RS)
Value* b;
if (i.DS.RA == 0) {
b = f.LoadZeroInt64();
} else {
b = f.LoadGPR(i.DS.RA);
}
Value* offset = f.LoadConstantInt64(XEEXTS16(i.DS.DS << 2));
f.StoreOffset(b, offset, f.ByteSwap(f.LoadGPR(i.DS.RT)));
return 0;
}
stdu
- Canary XML:
tools/ppc-instructions.xml— search formnem="stdu" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_memory.cc:594 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:233 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:515
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_stdu(PPCHIRBuilder& f, const InstrData& i) {
// EA <- (RA) + EXTS(DS || 0b00)
// MEM(EA, 8) <- (RS)
// RA <- EA
Value* ea = CalculateEA_i(f, i.DS.RA, XEEXTS16(i.DS.DS << 2));
f.Store(ea, f.ByteSwap(f.LoadGPR(i.DS.RT)));
StoreEA(f, i.DS.RA, ea);
return 0;
}
stdux
- Canary XML:
tools/ppc-instructions.xml— search formnem="stdux" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_memory.cc:604 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:234 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:901
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_stdux(PPCHIRBuilder& f, const InstrData& i) {
// EA <- (RA) + (RB)
// MEM(EA, 8) <- (RS)
// RA <- EA
Value* ea = CalculateEA(f, i.X.RA, i.X.RB);
f.Store(ea, f.ByteSwap(f.LoadGPR(i.X.RT)));
StoreEA(f, i.X.RA, ea);
return 0;
}
stdx
- Canary XML:
tools/ppc-instructions.xml— search formnem="stdx" - Canary emitter:
src/xenia/cpu/ppc/ppc_emit_memory.cc:614 - Sylpheed opcode:
crates/sylpheed-ppc/src/opcode.rs:235 - Sylpheed decoder:
crates/sylpheed-ppc/src/decoder.rs:896
Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_stdx(PPCHIRBuilder& f, const InstrData& i) {
// if RA = 0 then
// b <- 0
// else
// b <- (RA)
// EA <- b + (RB)
// MEM(EA, 8) <- (RS)
Value* ea = CalculateEA_0(f, i.X.RA, i.X.RB);
f.Store(ea, f.ByteSwap(f.LoadGPR(i.X.RT)));
return 0;
}
Special Cases & Edge Conditions
- DS-form, not D-form. Like
ld,stduses a 14-bit signed displacement scaled by 4 (EXTS(ds || 0b00)). Bits 30–31 are the extended opcode used to distinguishstd(XO=0) fromstdu(XO=1). Assemblers verify the byte displacement is a multiple of 4. - Big-endian write. The 64-bit value of
RSis written most-significant-byte-first:RS[0:7]toEA,RS[56:63]toEA+7. Canary byte-swapsRSbefore the host store. RA0forstdandstdx. WhenRA = 0, base is the literal zero. Update formsstdu/stduxinvokeRA = 0as an invalid form (noRA = RScollision possible —RSandRAare independent encoding fields, and even if equal the store readsRSfirst).- Update-form post-write.
stdu/stduxwriteEAtoRAafter the store. Order is store-then-update. - Alignment. Xenon tolerates unaligned doubleword stores. PowerISA permits implementations to raise alignment exceptions; portable code keeps doublewords 8-byte aligned. Cache-inhibited storage may force alignment.
- Cache-line behaviour. A doubleword store fits inside one Xenon cache line (128 B), so it's a single line write. A doubleword store that straddles a line boundary triggers two line accesses — keep doublewords 8-byte aligned to avoid the cost.
- 64-bit pointer / counter stores. Xbox 360 user code is 32-bit, but kernel structures, TOC entries, and 64-bit counters are stored with
std.
Related Instructions
stw,sth,stb— narrower integer stores.stdbrx— byte-reversed doubleword store.stdcx— store-conditional (the doubleword reservation pair end).ld,ldu,ldx,ldux— corresponding loads.stfd— FP doubleword store (same width, different register file).