Commit Graph
414 Commits
Author SHA1 Message Date
petrbalvin a829b8f321 fix(parser): read the segment-absolute rendering FS:0
The toolchain's disassembler prints the segment-prefixed disp32
absolute as FS:0, but the bare-name branch read the segment register
alone and dropped the offset, so MOVQ FS:0, DX silently encoded a
register move.  The colon-offset form now lowers to the same
segment-absolute operand the 0(FS) spelling takes.

Assisted-by: GLM 5.3 Flash
2026-10-07 02:12:21 +02:00
petrbalvin abc2d32b83 fix(asm): encode the CMOV condition the renderer prints
The renderer spells a conditional move CMOV plus the condition alone
(CMOVLE, CMOVG), the width carried by the operand registers, so
CMOVLE parsed as the size L and the condition E and encoded CMOVE.
A suffix that is itself a condition name now reads as that condition
with the width from the destination register, and the Plan 9
size-prefixed spellings keep their parse.

Assisted-by: GLM 5.3 Flash
2026-10-07 02:12:21 +02:00
petrbalvin 11cac26508 feat(arch): add the scaled index to the amd64 memory operands
Assisted-by: GLM 5.3 Flash
2026-10-07 02:06:11 +02:00
petrbalvin ccb155437e feat(arch): add the {1toN} broadcast to the packed amd64 memory sources
Assisted-by: GLM 5.3 Flash
2026-10-07 02:06:11 +02:00
petrbalvin 9c1392dfc3 test(disasm): pin the amd64 lines the objdump listing fragments
Assisted-by: GLM 5.3 Flash
2026-10-07 01:57:04 +02:00
petrbalvin 8d611bfdaf feat(arch): add the remaining scalar FP16 memory forms to the extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 01:35:48 +02:00
petrbalvin 454a21f5b7 feat(arch): add the packed FP16 and BF16 memory forms to the extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 01:35:48 +02:00
petrbalvin d275dee3ae feat(arch): add the scalar FP16 memory forms to the amd64 extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 01:35:48 +02:00
petrbalvin 7d69dda874 feat(arch): add the amd64 memory-operand mechanism to the extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 01:35:48 +02:00
petrbalvin d1030a1788 test(verify): prove the arm64 lse atomics through the link-parity kernel
Assisted-by: GLM 5.3 Flash
2026-10-07 01:31:28 +02:00
petrbalvin 8e3b7f1caa test(verify): prove the amd64 sse families through the link-parity kernel
Assisted-by: GLM 5.3 Flash
2026-10-07 01:31:28 +02:00
petrbalvin b22abf512f test(verify): prove the riscv64 vector families through the link-parity kernel
Assisted-by: GLM 5.3 Flash
2026-10-07 01:31:28 +02:00
petrbalvin ffc23929c6 refactor(verify): extract the shared goobj link-parity harness
Assisted-by: GLM 5.3 Flash
2026-10-07 01:31:28 +02:00
petrbalvin a4a77b3168 build(justfile): lower the fuzz worker default to the fence the assembler target holds
Assisted-by: GLM 5.3 Flash
2026-10-07 01:15:42 +02:00
petrbalvin 380314a05f test(asm): keep the data-section ceiling out of the seed corpus
Assisted-by: GLM 5.3 Flash
2026-10-07 01:14:58 +02:00
petrbalvin de2f28504a test(asm): parse once and assemble twice in the fuzz body
Assisted-by: GLM 5.3 Flash
2026-10-07 01:14:58 +02:00
petrbalvin 7878112b93 fix(asm): bound the data section to what the image can materialise
Assisted-by: GLM 5.3 Flash
2026-10-07 01:14:58 +02:00
petrbalvin dd074dbafd fix(asm): reject an out-of-range GLOBL size with a diagnostic
Assisted-by: GLM 5.3 Flash
2026-10-07 01:13:40 +02:00
petrbalvin 14de1dd287 test(asm): fuzz the parse-and-assemble pipeline for amd64
Assisted-by: GLM 5.3 Flash
2026-10-07 01:12:27 +02:00
petrbalvin ea8b02b190 test(disasm): pin decode parity with the toolchain and the round-trip invariant
Assisted-by: GLM 5.3 Flash
2026-10-07 01:00:45 +02:00
petrbalvin b394551af8 fix(disasm): render amd64 in the toolchain's Go syntax
Assisted-by: GLM 5.3 Flash
2026-10-07 01:00:45 +02:00
petrbalvin 9b751f6e58 feat(asm): encode the riscv64 quad-precision family and fix the fp cvt paths
Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin 955bc6643e fix(asm): carry the riscv64 scalar pseudos and the swapped branches
Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin 82e8919208 feat(asm): encode the riscv64 privileged instructions
Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin 778c297214 feat(asm): encode the riscv64 vector arithmetic families
Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin 5de9e985f8 feat(asm): encode the riscv64 vector load and store families
The vector memory section stopped at the three hand-written shapes the
GOROOT kernels use: every other spelling the toolchain accepts, the
width variants, the constant-stride and indexed accesses, the segment
families, the fault-only-first loads, the whole-register moves and the
bit-mask pair were names without an encoder.  The mnemonic now parses
into its own fields (direction, segment count, addressing mode, width,
fault-only-first and whole-register markers) and one encoder lays the
word down, with the optional V0 mask operand and the toolchain's
operand shapes.  VSETVL joins the configuration settings.  The
toolchain's whole vector memory section, six hundred and twenty-eight
statements of masked and unmasked forms, is a differential test against
the oracle, word for word.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin e43fa39dc9 feat(asm): encode the explicit riscv64 compressed instructions
The C extension's own spellings were names the table carried and the
encoder refused: CLWSP stopped the corpus audit's riscv64 file first.
Thirty-eight mnemonics now encode directly to their halfword, with the
toolchain's operand spellings and validation: the stack loads and stores
pin their base to SP, the register-based loads, stores and arithmetic
carry prime registers, CLUI refuses zero and SP, CADDI4SPN scales by
four, CADDI16SP by sixteen, and CJ, CBEQZ and CBNEZ resolve their N(PC)
targets against the final layout, taking a two-byte placeholder in the
early passes so the offsets stay honest.  CAND with an immediate is the
toolchain's C.ANDI spelling.  The toolchain's whole C extension testdata
block is a differential test, halfword for halfword, beside a range test
at the toolchain's own boundaries.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin ddfa33ccc1 feat(asm): encode the riscv64 bit-manipulation families
The Zba address generation, Zbb unary bit operations, Zbc carry-less
multiplication and Zbs single-bit families were names the table carried
and the encoder refused: thirty spellings plus RORI and XNOR fell over.
The register and immediate forms now encode as the toolchain does, the
unary operations carry their fixed rs2 constant, RORI lowers to ROR's
expansion (its reverse shift compressing like ROR's), XNOR XORs and
inverts in place, and ROL/ROLW rotate left through the same temporary
the toolchain uses, taking a register amount only as its own expansion
requires.  The toolchain's whole testdata block for these families is
now a differential test: every word must agree byte for byte.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin d82ef33fa9 fix(asm): bound the riscv64 shift immediate at the instruction width
SLLI $64 assembled with the amount silently masked into the six-bit
field where the toolchain rejects it, and the word forms took 0-63 where
they take 0-31.  Both families now validate against their own width and
the check reads the immediate at full width, so a value the source
spelled beyond int32 cannot wrap into the range; the boundary is pinned
in a test.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin c3540f0549 fix(asm): read the riscv64 raw-data immediates at full width
WORD and BYTE read their immediate through the truncating helper, so the
int32 wrap turned WORD $0xffffffff into -1 and rejected it, while WORD
$0x100000000 and BYTE $0x100000001 arrived pre-truncated and slipped
past the range check as small values.  Both statements now read the
immediate the source wrote and bound it at the toolchain's own limits:
[0, 0xffffffff] for WORD, [0, 0xff] for BYTE, with the bounds pinned in
a test.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin bffe408afa feat(asm): resolve every CSR name the toolchain knows
The riscv64 assembler carried fourteen hand-picked CSR names where the
toolchain resolves three hundred and twenty-nine: a CSRR/CSRW family
instruction naming any privileged register beyond the few base ones came
out as unknown CSR.  The table now carries the RISC-V privileged
specification's register set exactly as go tool asm spells it, and a
differential test assembles every name through both assemblers and
requires the words to agree byte for byte.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:47:27 +02:00
petrbalvin 103864e8b2 feat(arch): add the VL packed FP16 forms to the amd64 extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 00:37:41 +02:00
petrbalvin aa9c7ca030 feat(arch): add the imm8 scalar FP16 controls to the amd64 extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 00:33:30 +02:00
petrbalvin 0354a1f4c1 feat(arch): scale and exponent-extract the scalar FP16 in the extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin 127e52de69 test(verify): accumulate the BF16 dot product on the metal
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin 22055b9bf3 feat(arch): add the packed FP16 arithmetic to the amd64 extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin a2301b52de test(verify): run the amd64 extension encodings on the metal
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin bc37ea5b79 feat(arch): add the AVX512-FP16 scalar family to the amd64 extension layer
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin 28bea95128 feat(arch): add the amd64 extended-instruction layer with BF16 and VP2INTERSECT
Assisted-by: GLM 5.3 Flash
2026-10-07 00:07:58 +02:00
petrbalvin 2d803e38d8 feat(lsp): leave the extension verdicts to the registry
Diagnostics no longer repeat the generated table's ignorance of a
registered mnemonic: unknown-instruction and unencodable-instruction
against a statement the registry encodes are filtered from the server's
own presentation, driven by asm.LookupExtension directly.  The filter is
a no-op once lint learns the registry, so the two compose unchanged.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:06:05 +02:00
petrbalvin dadeda144a feat(lsp): offer and document the registered extended mnemonics
Completion merges the extension registry's mnemonics beside the toolchain
entries, with operand shapes measured against the layer's own encoder, and
hover documents a registered mnemonic from its metadata: the extension
notice, the forms, the features, the fixed encodings and the manual
references.

Assisted-by: GLM 5.3 Flash
2026-10-07 00:06:05 +02:00
petrbalvin a90ec84bee fix(arch): narrow file names by go/build's suffix rule
Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin c107b45933 fix(asm): reject duplicate symbol declarations like the toolchain
Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin a69f8cf4a8 fix(asm): match the toolchain's bytes across the corpus sweep
A line-for-line byte comparison of the whole amd64enc.s corpus against
go tool asm surfaced divergences the pass-only accounting never showed:
PEXTRW's GPR form swapped its fields, PUSHW took an imm32 where the
toolchain bounds the immediate to 16 bits, the double shift wrote the
unmasked register number into the reg field, VCOMISS carried a 0x66
prefix, RORX dropped the destination's R bit, and the variable bit
shifts used the manual's per-width opcodes where the toolchain
consolidates each row on one opcode with the W bit.  The VEX forms the
toolchain prefers for plain vector registers (the SSE2/SSSE3/SSE4.1
AVX twins, the compare-with-predicate family, VMOVUPS, VSHUFPS, the
variable shifts) now encode under VEX, with EVEX left to the ZMM,
opmask and index-16+ spellings, and the mnemonics whose rows never
offer the 2-byte prefix force it.  Every line is pinned through the new
corpus parity test (793 lines); the whole corpus file now assembles to
the toolchain's bytes at every commented line (10022 of 10022).

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin cfc3abb752 feat(asm): encode the remaining amd64 VEX families
The SSE3 horizontal and add-subtract pairs, the SSSE3 sign and
horizontal integers, the masked moves in both directions, the
reciprocity and test pairs, the AVX imm8 tail (blends, dot products,
inserts, rounds, MPSADBW, the string compares), the four-operand
variable blends with their /is4 mask byte, the scalar three-operand
moves, the MXCSR accessors, the VPERMIL register controls and the
variable word shifts, plus the BMI2 count forms over memory.  Every
encoding is pinned byte for byte against go tool asm through every
corpus line the toolchain's own amd64enc.s carries for the families
(852 lines); the /is4 byte carries the mask register number in its high
nibble, the layout the toolchain emits.

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin 6af3fd60d5 feat(asm): encode the legacy amd64 SSE and MMX families
The packed integer and float binaries, the imm8-controlled SSE4.1 forms,
the variable blends with their X0 mask, the high/low half moves, the
sign-mask extractions, the non-temporal stores, the MOVQ bank crossings
and their odd spellings, the MMX shifts and shuffle and the cache-line
mask stores, plus the scalar leaves LEAVE, INVPCID and the RTM controls.
Every encoding is pinned byte for byte against go tool asm through every
corpus line the toolchain's own amd64enc.s carries for the families
(1465 lines).  Two corpus-wide gaps fell out of the comparison: the
64-bit MOV immediate uses the zero-extending form across the unsigned
32-bit span, and the MMX-to-GPR MOVQ puts the bank register in reg.

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin 257feace6e feat(asm): encode the amd64 XSAVE family
XSAVE, XSAVEOPT, XSAVEC and XSAVES with their restore twins, plain and
64, each pinned byte for byte against go tool asm through every corpus
line the toolchain's own amd64enc.s carries for the family (24 lines).
The toolchain emits XSAVEOPT without the manual's 0x66 prefix; the bytes
are the oracle, so the family carries none.

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin f83bc8ddef feat(asm): encode the amd64 system, string and segment families
The no-operand flag and system controls, the sign-extension pair, the
string primitives, the multi-byte no-ops, the cache controls, MOVBE, the
compare-exchange doubles, the random source and FS/GS base pairs, the
descriptor-table accesses, the 0F 00/01 register controls and the
LAR/LSL selector reads and far-segment loads, each pinned byte for byte
against go tool asm through every corpus line the toolchain's own
amd64enc.s carries for the families (279 lines).

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin f0b08ccea0 feat(asm): encode the amd64 x87 family
The x87 stack controls, the D8/DC arithmetic pair, the conditional moves,
the register compares, FADDDP, the memory loads and the FXSAVE pair, each
pinned byte for byte against go tool asm through every corpus line the
toolchain's own amd64enc.s carries for the family (78 lines).

Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:47 +02:00
petrbalvin 1040739fbb fix(asm): validate the loong64 ll/sc offset span like the toolchain
Assisted-by: GLM 5.3 Flash
2026-10-06 23:59:27 +02:00