操作数与参数
RegDst0- sign-extended result[31:0] Reg5 destination
RegDst1- sign-extended result[63:32] Reg5 destination
SrcD- addend Reg5 source
SrcL- left multiplicand or additive Reg5 source
SrcR- right multiplicand Reg5 source
HL.MADDW computes a signed 64-bit word multiply-add result and publishes its sign-extended low and high 32-bit halves.
PTO-SCALAR-HL-MADDWhl.maddw SrcL, SrcR, SrcD, ->Dst0, Dst1| 字段 | 位宽 | 有符号性 | 架构角色 | 编码零 |
|---|---|---|---|---|
RegDst0 | 5 | encoding-defined | sign-extended result[31:0] Reg5 destination | Encoded zero discards the low result. |
RegDst1 | 5 | encoding-defined | sign-extended result[63:32] Reg5 destination | Encoded zero discards the high result. |
SrcD | 5 | encoding-defined | addend Reg5 source | Encoded zero reads the architectural zero GPR. |
SrcL | 5 | encoding-defined | left multiplicand or additive Reg5 source | Encoded zero reads the architectural zero GPR. |
SrcR | 5 | encoding-defined | right multiplicand Reg5 source | Encoded zero reads the architectural zero GPR. |
Loading WaveDrom diagram… The encoding table and WaveJSON remain available below.
| Decoded item | Bit range | Value |
|---|---|---|
| SrcD | 47:43 | variable |
| Constant | 42:41 | 2'b00 |
| SrcR | 40:36 | variable |
| SrcL | 35:31 | variable |
| Constant | 30:28 | 3'b111 |
| RegDst0 | 27:23 | variable |
| Constant | 22:16 | 7'b1000111 |
| RegDst1 | 15:11 | variable |
| Constant | 10:0 | 11'b00000001110 |
{
"reg": [
{
"bits": 11,
"name": "11'b00000001110"
},
{
"bits": 5,
"name": "RegDst1"
},
{
"bits": 7,
"name": "7'b1000111"
},
{
"bits": 5,
"name": "RegDst0"
},
{
"bits": 3,
"name": "3'b111"
},
{
"bits": 5,
"name": "SrcL"
},
{
"bits": 5,
"name": "SrcR"
},
{
"bits": 2,
"name": "2'b00"
},
{
"bits": 5,
"name": "SrcD"
}
],
"config": {
"bits": 48,
"fontsize": 13,
"hspace": 900,
"lanes": 2,
"offset": 0
}
}hl.maddw SrcL, SrcR, SrcD, ->Dst0, Dst1
RegDst0RegDst1SrcDSrcLSrcR下面是该指令所有者中的 Operation;页面没有重写这段行为。
readonly func InstructionContractOperation_HL_MADDW() => ScalarOperationbegin return ScalarOperation_HL_MADDW;end;readonly func InstructionContractHandler_HL_MADDW() => ScalarSemanticHandlerbegin return ScalarHandler_ExecuteScalarMultiplyAddPair;end;pure func InstructionContractResult_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin let effective_addend = SignExtend{PTO_XLEN}(addend[31:0]); let effective_left = SignExtend{PTO_XLEN}(left[31:0]); let effective_right = SignExtend{PTO_XLEN}(right[31:0]); let product = MultiplyWideSigned(effective_left, effective_right); return product[63:0] + effective_addend;end;
pure func InstructionContractLow_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin return SignExtend{PTO_XLEN}( InstructionContractResult_HL_MADDW(addend, left, right)[31:0]);end;
pure func InstructionContractHigh_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin return SignExtend{PTO_XLEN}( InstructionContractResult_HL_MADDW(addend, left, right)[63:32]);end;// PTO-INSTRUCTION: {"assembly":["hl.maddw SrcL, SrcR, SrcD, ->Dst0, Dst1"],"block":[],"catalog_indices":[221],"catalog_records":[{"asm":"hl.maddw SrcL, SrcR, SrcD, ->Dst0, Dst1","constraints":[],"encoding":[{"index":0,"mask":"0x0600707f07ff","match":"0x00007047000e","width_bits":48}],"encoding_kind":"HL48","fields":[{"name":"RegDst0","pieces":[{"instruction_lsb":23,"value_lsb":0,"width":5}],"signedness":"encoding-defined","width":5},{"name":"RegDst1","pieces":[{"instruction_lsb":11,"value_lsb":0,"width":5}],"signedness":"encoding-defined","width":5},{"name":"SrcD","pieces":[{"instruction_lsb":43,"value_lsb":0,"width":5}],"signedness":"encoding-defined","width":5},{"name":"SrcL","pieces":[{"instruction_lsb":31,"value_lsb":0,"width":5}],"signedness":"encoding-defined","width":5},{"name":"SrcR","pieces":[{"instruction_lsb":36,"value_lsb":0,"width":5}],"signedness":"encoding-defined","width":5}],"form_id":"hl_maddw_48_6fac897f0264","length_bits":48,"mnemonic":"HL.MADDW","semantic_family":"ALU","semantic_group":"ALU","semantic_handler":"ExecuteScalarMultiplyAddPair","semantic_summary":"HL.MADDW computes a signed 64-bit word multiply-add result and publishes its sign-extended low and high 32-bit halves.","status":"accepted"}],"classification":["alu"],"contract":{"block_composition":["none"],"canonical_assembly":["hl.maddw SrcL, SrcR, SrcD, ->Dst0, Dst1"],"defaults":["Every encoded operand and destination field is required; no field can be omitted.","The mnemonic fixes signedness, effective operand width, single-versus-pair result shape, and add-versus-subtract behavior; there is no encoded arithmetic mode."],"encoding_class":"standalone-encoded","examples":["hl.maddw srcl, srcr, srcd, ->dst0, dst1"],"exceptions":["Multiplication and accumulation are fixed-width and raise no arithmetic exception; discarded overflow wraps modulo the defined result width.","An unavailable selected T/U source raises Fault_IllegalInstruction before any destination effect and before TPC advances."],"field_contracts":{},"field_zero_meanings":{"SrcD":"Encoded zero reads the architectural zero GPR.","SrcL":"Encoded zero reads the architectural zero GPR.","SrcR":"Encoded zero reads the architectural zero GPR.","RegDst0":"Encoded zero discards the low result.","RegDst1":"Encoded zero discards the high result."},"legality":["Every source Reg5 code is assigned: 0..23 select absolute GPRs, 24..27 select T#1..T#4, and 28..31 select U#1..U#4 without consumption.","Each destination independently uses the common map: codes 0 and 24..29 discard, codes 1..23 write GPRs, code 30 pushes U, and code 31 pushes T.","Fixed encoding bits must match the canonical form; every encoded source, destination, and immediate value otherwise has assigned behavior."],"memory_effects":["none"],"operands":[{"field":"RegDst0","role":"sign-extended result[31:0] Reg5 destination"},{"field":"RegDst1","role":"sign-extended result[63:32] Reg5 destination"},{"field":"SrcD","role":"addend Reg5 source"},{"field":"SrcL","role":"left multiplicand or additive Reg5 source"},{"field":"SrcR","role":"right multiplicand Reg5 source"}],"ordering":["Snapshot every source before any destination effect so duplicate selectors and destination aliases observe pre-instruction values.","Publish SignExtend(result[31:0]) to RegDst0, publish SignExtend(result[63:32]) to RegDst1, then advance TPC by six bytes."],"standalone_opcode":true,"state_effects":["Interpret SrcD[31:0], SrcL[31:0], and SrcR[31:0] as signed two-complement values; compute signed32(SrcL) * signed32(SrcR) + signed32(SrcD) modulo 2^64.","Snapshot every source and compute the complete 64-bit result before destinations. Publish SignExtend(result[31:0]) to RegDst0, then SignExtend(result[63:32]) to RegDst1.","Duplicate destinations are legal and retain the second high-word result. No memory, reservation, descriptor, numeric-status, block, privilege, branch-target, or other control state changes. Successful execution advances TPC by six bytes."]},"depends_on":["PTO-BLOCK-MODEL-SCHEMA-PROFILE-ENCODING"],"id":"PTO-SCALAR-HL-MADDW","mnemonic":"HL.MADDW","summary":"HL.MADDW computes a signed 64-bit word multiply-add result and publishes its sign-extended low and high 32-bit halves.","surface":"scalar"}// PTO-REVIEW: {"review_method":"formal-definition-read","outcome":"FORMAL-COMPLETE","reviewed_fields":["assembly","encoding","defaults","operation","state","memory","ordering","faults","reserved"]}// NDF-BEGIN: PTO-HL-MADDW-WORD-HALVES-001// ndf: kind=contract level=L1 layer=scalar status=accepted// HL.MADDW MUST interpret the low 32 bits of all three sources as signed values// and MUST compute their multiply-add result modulo 2^64.// RegDst0 MUST receive SignExtend(result[31:0]) before RegDst1 receives// SignExtend(result[63:32]). Sources MUST be snapshotted before either write.// NDF-END: PTO-HL-MADDW-WORD-HALVES-001// DOC-BEGIN: decodereadonly func InstructionContractOperation_HL_MADDW() => ScalarOperationbegin return ScalarOperation_HL_MADDW;end;// DOC-END: decode// DOC-BEGIN: operationreadonly func InstructionContractHandler_HL_MADDW() => ScalarSemanticHandlerbegin return ScalarHandler_ExecuteScalarMultiplyAddPair;end;pure func InstructionContractResult_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin let effective_addend = SignExtend{PTO_XLEN}(addend[31:0]); let effective_left = SignExtend{PTO_XLEN}(left[31:0]); let effective_right = SignExtend{PTO_XLEN}(right[31:0]); let product = MultiplyWideSigned(effective_left, effective_right); return product[63:0] + effective_addend;end;
pure func InstructionContractLow_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin return SignExtend{PTO_XLEN}( InstructionContractResult_HL_MADDW(addend, left, right)[31:0]);end;
pure func InstructionContractHigh_HL_MADDW( addend: Word, left: Word, right: Word) => Wordbegin return SignExtend{PTO_XLEN}( InstructionContractResult_HL_MADDW(addend, left, right)[63:32]);end;// DOC-END: operation
HL.MADDW 是一条 48 位标量 ALU 指令。它把所选加数加入有符号乘积,再把宽结果拆分为低、高字两半;当前指令契约定义结果发布路径以及任何额外状态效果。
执行时先对编码输入做快照,然后把所选加数加入有符号乘积,再把宽结果拆分为低、高字两半,最后才产生目标效果。
RegDst0 是 5 位字段,选择符号扩展后 result[31:0] 的 Reg5 目标。RegDst1 是 5 位字段,选择符号扩展后 result[63:32] 的 Reg5 目标。SrcD 是 5 位字段,通过 Reg5 选择加数。SrcL 是 5 位字段,通过 Reg5 选择左乘数或加法操作数。SrcR 是 5 位字段,通过 Reg5 选择右乘数。这些角色来自当前指令契约;T/U 源只被读取和快照,不会因源选择而出队。编码零的精确含义列在下方生成的默认值章节中。
所有结果都在发布前计算完成。随后按编码顺序(RegDst0, RegDst1)更新目标;目标重复指向同一寄存器或队列时也采用这一顺序。
该 ALU 操作不产生内存效果。成功完成架构效果后,TPC 前进 6 字节。
该操作不会产生隐藏的标量发布目标或隐式内存访问。架构变化仅限于当前契约列出的状态效果。
固定宽度算术按当前操作规则回绕,不产生算术异常;固定编码位不匹配或所选 T/U 源不可用时,会在结果发布和 TPC 前进之前触发 Fault_IllegalInstruction。
下方生成的合法性表是已分配字段值、保留编码和目标丢弃编码的权威说明。解码与源可用性检查先于架构效果完成。
本示例只用于演示当前 ASL 所有者,不替代规范操作。
以一个小型 HL.MADDW 示例说明:乘数 6 与 7 加上加数 1 得到累加值 43;宽结果对形式把 43 放入低部结果,把 0 放入高部结果。
正文来自 owning ASL。拖拽或按钮只临时改变当前页面显示顺序。
HL.MADDW MUST interpret the low 32 bits of all three sources as signed values and MUST compute their multiply-add result modulo 2^64. RegDst0 MUST receive SignExtend(result[31:0]) before RegDst1 receives SignExtend(result[63:32]). Sources MUST be snapshotted before either write.
PTO-HL-MADDW-WORD-HALVES-001asl/scalar/alu/HL.MADDW.asl9c6eaa55469c21915ed4d48b68063c860b0ddd5736dd91da136bb3d35753aef2e6aab84bfc1cd38999ab774e39097b282d1370577749c405d74db3931bf78e9e11 matching entries
PTO-AVS-SCALAR-HL-MADDW-ACCUMULATE-001tests/asl/scalar/alu/HL.MADDW/scalar-exec-hl-maddw-accumulate-001.aslbf2eddf771f1da0e6d34717bc67fc0bacaf19995c25d1bd8711993f3387c26c7PTO-AVS-SCALAR-HL-MADDW-DECODE-001tests/asl/scalar/alu/HL.MADDW/scalar-decode-hl-maddw-canonical-001.asl15c46959216fd1d1881336564fad9b42907198de50bdffbd9768727bb6d217d8PTO-AVS-SCALAR-HL-MADDW-HALVES-002tests/asl/scalar/alu/HL.MADDW/scalar-exec-hl-maddw-halves-002.asla36eb880903716599aa598c54477b93dc0a73ad00ca462fb4911c248c079af87PTO-EVIDENCE-RELEASE-TRACEABILITYPTO-EVIDENCE-RELEASE-TRACEABILITYspec/evidence/release-traceability-readiness.jsonc7327021d39dc67ac5564bc55073b3870a397d79ac8d9648284d56e33bc14a3ePTO-EVIDENCE-INSTRUCTION-CONTRACT-CLOSUREPTO-EVIDENCE-INSTRUCTION-CONTRACT-CLOSUREspec/evidence/instruction-contract-closure.json3ef2bb62421c79dff8fa77a1c7983923b523244b8090812883ef81286ca8106aPTO-EVIDENCE-ARCHITECTURE-READINESSPTO-EVIDENCE-ARCHITECTURE-READINESSspec/evidence/architecture-readiness.json4b0b85199101251bea744e0f3591cc31906909dc80d5ab651c417a936036a004PTO-EVIDENCE-RELEASE-GATE-READINESSPTO-EVIDENCE-RELEASE-GATE-READINESSspec/evidence/release-gate-readiness.jsona0f4d2b6920c08981ea55fd8ef820708a40d4feb5402c5150e8e9ab532d84ce0PTO-EVIDENCE-RELEASE-MANIFESTPTO-EVIDENCE-RELEASE-MANIFESTspec/release-manifest.json1a64c109ed7a90351c41e2a418b3c0ebaf8ad975838986d2101385186b85c0d8Loading ADR-0026…
ADR-0026docs/status/decisions/0026-scalar-alu-totality-and-alias-order.md41d126f224dddc371832120f1b02eab64e426872fdcbea452bad77c90bdec349Loading ADR-0059…
ADR-0059docs/status/decisions/0059-mnemonic-field-encoding-closure.mdf18d13f735cfaf9f2803c754c5818f4af33d1cc42c489f0d9ce060b07bb3a196Loading ADR-0084…
ADR-0084docs/status/decisions/0084-scalar-system-and-queue-operations.mde068992fa81e2c4ac46e492391a2f784141d68e041bf0b9e0586c37217d1e08c{
"classification": [
"alu"
],
"documentation": "docs/scalar/alu/HL.MADDW.md",
"id": "PTO-SCALAR-HL-MADDW",
"instruction_contract": {
"artifact": "spec/evidence/instruction-contract-closure.json",
"mnemonic": "HL.MADDW",
"ndf_clause": "PTO-INST-SCALAR-HL-MADDW"
},
"mnemonic": "HL.MADDW",
"readiness_subjects": [
"ADR-0026",
"ADR-0059",
"ADR-0084"
],
"semantic_tests": [
"PTO-AVS-SCALAR-HL-MADDW-ACCUMULATE-001",
"PTO-AVS-SCALAR-HL-MADDW-HALVES-002"
],
"source": "asl/scalar/alu/HL.MADDW.asl",
"surface": "scalar",
"tests": [
"PTO-AVS-SCALAR-HL-MADDW-ACCUMULATE-001",
"PTO-AVS-SCALAR-HL-MADDW-DECODE-001",
"PTO-AVS-SCALAR-HL-MADDW-HALVES-002"
]
}0.58.5 · 候选发布7dc8b7e5b121d2b2499a2273bebff29e2cd868129c6eaa55469c21915ed4d48b68063c860b0ddd5736dd91da136bb3d35753aef2e8687f2057fa5356ef9258a40e03ab0f10c5998b216b3c0e1e6e57376b75bb27asl/scalar/alu/HL.MADDW.aslasl/scalar/alu/HL.MADDW.aslasl/scalar/alu/HL.MADDW.asl