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Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-16 22:37:12 +02:00

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lha — Load Half Word Algebraic

Category: Memory · Form: D · Opcode: 0xa8000000

Assembler Mnemonics

Mnemonic XML entry Flags Description
lha lha Load Half Word Algebraic
lhau lhau Load Half Word Algebraic with Update
lhaux lhaux Load Half Word Algebraic with Update Indexed
lhax lhax Load Half Word Algebraic Indexed

Syntax

lha [RD], [d]([RA0])
lhau [RD], [d]([RA])
lhaux [RD], [RA], [RB]
lhax [RD], [RA0], [RB]

Encoding

lha — form D

  • Opcode word: 0xa8000000
  • Primary opcode (bits 05): 42
  • 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

lhau — form D

  • Opcode word: 0xac000000
  • Primary opcode (bits 05): 43
  • 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

lhaux — form X

  • Opcode word: 0x7c0002ee
  • Primary opcode (bits 05): 31
  • Extended opcode: 375
  • Synchronising: no
Bits Field Meaning
05 OPCD primary opcode
610 RT/FRT/VRT destination
1115 RA/FRA/VRA source A
1620 RB/FRB/VRB source B
2130 XO extended opcode (10 bits)
31 Rc record-form flag

lhax — form X

  • Opcode word: 0x7c0002ae
  • Primary opcode (bits 05): 31
  • Extended opcode: 343
  • Synchronising: no
Bits Field Meaning
05 OPCD primary opcode
610 RT/FRT/VRT destination
1115 RA/FRA/VRA source A
1620 RB/FRB/VRB source B
2130 XO extended opcode (10 bits)
31 Rc record-form flag

Operands

Field Role Description
RA0 lha: read; lhax: read Source GPR; when the encoded register number is 0 the operand is the literal 64-bit zero, not r0.
d lha: read; lhau: read 16-bit signed displacement (d) added to the base address register.
RD lha: write; lhau: write; lhaux: write; lhax: write Destination GPR.
RA lhau: read; lhau: write; lhaux: read; lhaux: write Source GPR (r0r31).
RB lhaux: read; lhax: read Source GPR.

Register Effects

lha

  • Reads (always): RA0, d
  • Reads (conditional): none
  • Writes (always): RD
  • Writes (conditional): none

lhau

  • Reads (always): RA, d
  • Reads (conditional): none
  • Writes (always): RD, RA
  • Writes (conditional): none

lhaux

  • Reads (always): RA, RB
  • Reads (conditional): none
  • Writes (always): RD, RA
  • Writes (conditional): none

lhax

  • Reads (always): RA0, RB
  • Reads (conditional): none
  • Writes (always): RD
  • Writes (conditional): none

Status-Register Effects

No condition-register or status-register effects.

Operation (pseudocode)

EA <- (RA|0) + EXTS(d)
RT <- SEXT16_to_64(MEM(EA, 2))

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

lha

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_lha(PPCHIRBuilder& f, const InstrData& i) {
  // if RA = 0 then
  //   b <- 0
  // else
  //   b <- (RA)
  // EA <- b + EXTS(D)
  // RT <- EXTS(MEM(EA, 2))
  Value* b;
  if (i.D.RA == 0) {
    b = f.LoadZeroInt64();
  } else {
    b = f.LoadGPR(i.D.RA);
  }

  Value* offset = f.LoadConstantInt64(XEEXTS16(i.D.DS));
  Value* rt =
      f.SignExtend(f.ByteSwap(f.LoadOffset(b, offset, INT16_TYPE)), INT64_TYPE);
  f.StoreGPR(i.D.RT, rt);
  return 0;
}

lhau

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_lhau(PPCHIRBuilder& f, const InstrData& i) {
  // EA <- (RA) + EXTS(D)
  // RT <- EXTS(MEM(EA, 2))
  // RA <- EA
  Value* ra = f.LoadGPR(i.D.RA);
  Value* offset = f.LoadConstantInt64(XEEXTS16(i.D.DS));
  Value* rt = f.SignExtend(f.ByteSwap(f.LoadOffset(ra, offset, INT16_TYPE)),
                           INT64_TYPE);
  f.StoreGPR(i.D.RT, rt);
  StoreEA(f, i.D.RA, f.Add(ra, offset));
  return 0;
}

lhaux

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_lhaux(PPCHIRBuilder& f, const InstrData& i) {
  // EA <- (RA) + (RB)
  // RT <- EXTS(MEM(EA, 2))
  // RA <- EA
  Value* ea = CalculateEA(f, i.X.RA, i.X.RB);
  Value* rt = f.SignExtend(f.ByteSwap(f.Load(ea, INT16_TYPE)), INT64_TYPE);
  f.StoreGPR(i.X.RT, rt);
  StoreEA(f, i.X.RA, ea);
  return 0;
}

lhax

Canary emitter (frozen snapshot @ f21ebd49e9)
int InstrEmit_lhax(PPCHIRBuilder& f, const InstrData& i) {
  // if RA = 0 then
  //   b <- 0
  // else
  //   b <- (RA)
  // EA <- b + (RB)
  // RT <- EXTS(MEM(EA, 2))
  Value* ea = CalculateEA_0(f, i.X.RA, i.X.RB);
  Value* rt = f.SignExtend(f.ByteSwap(f.Load(ea, INT16_TYPE)), INT64_TYPE);
  f.StoreGPR(i.X.RT, rt);
  return 0;
}

Special Cases & Edge Conditions

  • Sign-extending half-word load. Reads 2 bytes big-endian, treats them as a signed 16-bit integer, sign-extends to 64 bits. Compare with lhz, which zero-extends. Canary emits SignExtend(ByteSwap(LoadOffset(…, INT16)), INT64).
  • Big-endian read. Byte at EA is the most-significant 8 bits of the half; byte at EA+1 is the least-significant. On little-endian hosts mem.read_u16 returns the big-endian word in host-native form already.
  • RA0 (non-update forms). RA = 0 in lha and lhax selects literal zero — useful for absolute-address access patterns.
  • Update-form invalid forms. lhau / lhaux invoke RA = 0 and RA = RT as invalid forms; Canary performs the load before writing back RA ← EA, so an RA = RT collision silently destroys the loaded value.
  • No alignment requirement. Xenon executes unaligned half-word loads without a fault.
  • Common in audio / graphics code. lha is the standard load for signed 16-bit PCM samples and signed 16-bit packed vertex deltas.
  • Use lha rather than lhz + extsh. Both produce the same result, but lha is one fused instruction and the compiler will pick it whenever the source type is int16_t / short.
  • lhz, lhzu, lhzx, lhzux — zero-extending counterparts.
  • lwa, lwax, lwaux — sign-extending word loads (32→64).
  • lbz — byte load (no sign-extending byte load exists; use lbz + extsb).
  • lhbrx — byte-reversed half-word load (zero-extending).
  • sth, sthu, sthx, sthux — corresponding stores.

IBM Reference