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PTO-TILE-MODEL-EXECUTION-UNARY

PTO-TILE-MODEL-EXECUTION-UNARY

ASL pseudocode

The complete ASL owner is shown directly below.

// PTO-UNIT: {"id":"PTO-TILE-MODEL-EXECUTION-UNARY","surface":"tile","classification":["model","execution","unary"],"depends_on":["PTO-TILE-MODEL-EXECUTION-ELEMENTWISE"]}
pure func TileIntegerUnaryValue(    operation: TileUnaryOperation,    data_type: TileDataType,    value: Word) => Wordbegin    assert TileDataTypeIsInteger(data_type);
    let unsigned_value = TileUnsignedElementValue(value, data_type);    let signed_value = TileIntegerOperandValue(value, data_type);    case operation of        when TileUnary_ABS =>            if TileDataTypeIsSigned(data_type) &&               SInt(signed_value) < 0 then                return TileUnsignedElementValue(                    Zeros{PTO_XLEN} - signed_value,                    data_type);            else                return unsigned_value;            end;        when TileUnary_NOT =>            return TileUnsignedElementValue(                NOT unsigned_value,                data_type);        when TileUnary_NEG =>            return TileUnsignedElementValue(                Zeros{PTO_XLEN} - unsigned_value,                data_type);        when TileUnary_RELU =>            if TileDataTypeIsSigned(data_type) &&               SInt(signed_value) < 0 then                return Zeros{PTO_XLEN};            else                return unsigned_value;            end;        otherwise =>            unreachable;    end;end;
pure func TileUnaryUsesClosedElementwiseContract(    operation: TileUnaryOperation) => booleanbegin    return operation == TileUnary_ABS ||           operation == TileUnary_NOT ||           operation == TileUnary_NEG ||           operation == TileUnary_RELU;end;
pure func TileUnaryUsesSFUElementwiseContract(    operation: TileUnaryOperation) => booleanbegin    return operation == TileUnary_EXP ||           operation == TileUnary_LOG ||           operation == TileUnary_RECIP ||           operation == TileUnary_SQRT ||           operation == TileUnary_RSQRT;end;
pure func TileUnaryUsesCompleteElementwiseSchema(    operation: TileUnaryOperation) => booleanbegin    return TileUnaryUsesClosedElementwiseContract(operation) ||           TileUnaryUsesSFUElementwiseContract(operation);end;
pure func TileUnaryScalarIntegerDataType(    data_type: TileDataType) => booleanbegin    return data_type == TileDataType_S64 ||           data_type == TileDataType_S32 ||           data_type == TileDataType_S16 ||           data_type == TileDataType_S8 ||           data_type == TileDataType_U64 ||           data_type == TileDataType_U32 ||           data_type == TileDataType_U16 ||           data_type == TileDataType_U8;end;
pure func TileUnaryDataTypeSupported(    operation: TileUnaryOperation,    data_type: TileDataType) => booleanbegin    if operation == TileUnary_NOT then        return TileVecScalarIntegerDataTypeSupported(data_type);    end;    if operation == TileUnary_ABS then        return TileVecArithmeticDataTypeSupported(data_type);    end;    if operation == TileUnary_NEG then        return TileTNegDataTypeSupported(data_type);    end;    if operation == TileUnary_RELU then        return TileTReluDataTypeSupported(data_type);    end;    if TileUnaryUsesSFUElementwiseContract(operation) then        return TileFloatingElementwiseDataTypeSupported(data_type);    end;    return FALSE;end;
pure func TileFloatingUnaryCarrier(    data_type: TileDataType,    value: Word) => Wordbegin    case data_type of        when TileDataType_FP64 =>            return value;        when TileDataType_FP32, TileDataType_TF32, TileDataType_HF32 =>            return ZeroExtend{PTO_XLEN}(value[31:0]);        when TileDataType_FP16, TileDataType_BF16 =>            return ZeroExtend{PTO_XLEN}(value[15:0]);        when TileDataType_E4M3, TileDataType_E5M2 =>            return ZeroExtend{PTO_XLEN}(value[7:0]);        otherwise =>            unreachable;    end;end;
pure func TileFloatingUnarySignMask(    data_type: TileDataType) => Wordbegin    case data_type of        when TileDataType_FP64 =>            return Zeros{PTO_XLEN} + 0x8000000000000000;        when TileDataType_FP32, TileDataType_TF32, TileDataType_HF32 =>            return Zeros{PTO_XLEN} + 0x80000000;        when TileDataType_FP16, TileDataType_BF16 =>            return Zeros{PTO_XLEN} + 0x8000;        when TileDataType_E4M3, TileDataType_E5M2 =>            return Zeros{PTO_XLEN} + 0x80;        otherwise =>            unreachable;    end;end;
pure func TileFloatingUnaryOneEncoding(    data_type: TileDataType) => Wordbegin    case data_type of        when TileDataType_FP64 =>            return Zeros{PTO_XLEN} + 0x3ff0000000000000;        when TileDataType_FP32, TileDataType_TF32,             TileDataType_HF32 =>            return Zeros{PTO_XLEN} + 0x3f800000;        when TileDataType_FP16 =>            return Zeros{PTO_XLEN} + 0x3c00;        when TileDataType_BF16 =>            return Zeros{PTO_XLEN} + 0x3f80;        when TileDataType_E4M3 =>            return Zeros{PTO_XLEN} + 0x38;        when TileDataType_E5M2 =>            return Zeros{PTO_XLEN} + 0x3c;        otherwise =>            unreachable;    end;end;
pure func TileFloatingUnaryInfinityEncoding(    data_type: TileDataType,    negative: boolean) => (boolean, Word)begin    var positive = Zeros{PTO_XLEN};    case data_type of        when TileDataType_FP64 =>            positive = Zeros{PTO_XLEN} + 0x7ff0000000000000;        when TileDataType_FP32, TileDataType_TF32,             TileDataType_HF32 =>            positive = Zeros{PTO_XLEN} + 0x7f800000;        when TileDataType_FP16 =>            positive = Zeros{PTO_XLEN} + 0x7c00;        when TileDataType_BF16 =>            positive = Zeros{PTO_XLEN} + 0x7f80;        when TileDataType_E5M2 =>            positive = Zeros{PTO_XLEN} + 0x7c;        when TileDataType_E4M3 =>            return (FALSE, Zeros{PTO_XLEN});        otherwise =>            unreachable;    end;    if negative then        return (            TRUE,            positive OR TileFloatingUnarySignMask(data_type));    end;    return (TRUE, positive);end;
pure func TileFloatingUnaryUnboundedResult(    data_type: TileDataType,    negative: boolean) => Wordbegin    let (infinity_available, infinity) =        TileFloatingUnaryInfinityEncoding(            data_type,            negative);    if infinity_available then        return infinity;    end;
    // E4M3 has no infinity encoding.  These SFU operations do not admit    // saturation, so the OFP8 non-saturating destination result is NaN.    let (nan_available, quiet_nan) =        HardwareNumericCanonicalNaNResult(data_type);    assert nan_available;    return quiet_nan;end;
pure func TileNumericValueClassIsNegative(    value_class: NumericValueClass) => booleanbegin    return value_class == NumericValue_NegativeZero ||           value_class == NumericValue_NegativeSubnormal ||           value_class == NumericValue_NegativeNormal ||           value_class == NumericValue_NegativeInfinity;end;
pure func TileSFUUnarySpecialValue(    operation: TileUnaryOperation,    data_type: TileDataType,    value: Word) => (boolean, Word, bits(5))begin    assert TileUnaryUsesSFUElementwiseContract(operation);    assert TileUnaryDataTypeSupported(operation, data_type);    assert TileNumericEncodingValid(data_type, value);
    let carrier = TileFloatingUnaryCarrier(data_type, value);    let value_class = TileNumericValueClass(data_type, carrier);    let (nan_available, quiet_nan) =        HardwareNumericCanonicalNaNResult(data_type);    let (zero_available, positive_zero, negative_zero) =        HardwareNumericSignedZeroEncodings(data_type);    assert nan_available;    assert zero_available;
    if NumericValueClassIsNaN(value_class) then        var nan_flags = Zeros{5};        if value_class == NumericValue_SignalingNaN then            nan_flags = Zeros{5} + 1;        end;        return (TRUE, quiet_nan, nan_flags);    end;
    if operation == TileUnary_EXP then        if NumericValueClassIsZero(value_class) then            return (                TRUE,                TileFloatingUnaryOneEncoding(data_type),                Zeros{5});        elsif value_class == NumericValue_PositiveInfinity then            return (TRUE, carrier, Zeros{5});        elsif value_class == NumericValue_NegativeInfinity then            return (TRUE, positive_zero, Zeros{5});        end;    elsif operation == TileUnary_LOG then        if carrier == TileFloatingUnaryOneEncoding(data_type) then            return (TRUE, positive_zero, Zeros{5});        elsif NumericValueClassIsZero(value_class) then            return (                TRUE,                TileFloatingUnaryUnboundedResult(data_type, TRUE),                Zeros{5} + 2);        elsif value_class == NumericValue_PositiveInfinity then            return (TRUE, carrier, Zeros{5});        elsif TileNumericValueClassIsNegative(value_class) then            return (TRUE, quiet_nan, Zeros{5} + 1);        end;    elsif operation == TileUnary_RECIP then        if NumericValueClassIsZero(value_class) then            let negative = value_class == NumericValue_NegativeZero;            return (                TRUE,                TileFloatingUnaryUnboundedResult(data_type, negative),                Zeros{5} + 2);        elsif NumericValueClassIsInfinity(value_class) then            if value_class == NumericValue_NegativeInfinity then                return (TRUE, negative_zero, Zeros{5});            end;            return (TRUE, positive_zero, Zeros{5});        end;    elsif operation == TileUnary_SQRT then        if NumericValueClassIsZero(value_class) ||           value_class == NumericValue_PositiveInfinity then            return (TRUE, carrier, Zeros{5});        elsif TileNumericValueClassIsNegative(value_class) then            return (TRUE, quiet_nan, Zeros{5} + 1);        end;    else        assert operation == TileUnary_RSQRT;        if NumericValueClassIsZero(value_class) then            let negative = value_class == NumericValue_NegativeZero;            return (                TRUE,                TileFloatingUnaryUnboundedResult(data_type, negative),                Zeros{5} + 2);        elsif value_class == NumericValue_PositiveInfinity then            return (TRUE, positive_zero, Zeros{5});        elsif TileNumericValueClassIsNegative(value_class) then            return (TRUE, quiet_nan, Zeros{5} + 1);        end;    end;    return (FALSE, Zeros{PTO_XLEN}, Zeros{5});end;
pure func TileFloatingUnaryValue(    operation: TileUnaryOperation,    data_type: TileDataType,    value: Word) => (Word, boolean)begin    assert TileDataTypeIsFloating(data_type);    assert TileNumericEncodingValid(data_type, value);
    let carrier = TileFloatingUnaryCarrier(data_type, value);    let sign_mask = TileFloatingUnarySignMask(data_type);    if operation == TileUnary_ABS then        return (carrier AND NOT sign_mask, FALSE);    elsif operation == TileUnary_NEG then        return (carrier XOR sign_mask, FALSE);    end;
    assert operation == TileUnary_RELU;    let value_class = TileNumericValueClass(data_type, carrier);    case value_class of        when NumericValue_NegativeZero,             NumericValue_NegativeSubnormal,             NumericValue_NegativeNormal,             NumericValue_NegativeInfinity,             NumericValue_PositiveZero =>            return (Zeros{PTO_XLEN}, FALSE);        when NumericValue_PositiveSubnormal,             NumericValue_PositiveNormal,             NumericValue_PositiveInfinity =>            return (carrier, FALSE);        when NumericValue_QuietNaN, NumericValue_SignalingNaN =>            let (available, quiet_nan) =                HardwareNumericCanonicalNaNResult(data_type);            assert available;            return (                quiet_nan,                value_class == NumericValue_SignalingNaN);        otherwise =>            unreachable;    end;end;
pure func TileFixedUnaryValue(    operation: TileUnaryOperation,    data_type: TileDataType,    value: Word) => (Word, boolean)begin    assert TileUnaryUsesClosedElementwiseContract(operation);    assert TileUnaryDataTypeSupported(operation, data_type);    if TileDataTypeIsInteger(data_type) then        return (            TileIntegerUnaryValue(operation, data_type, value),            FALSE);    end;    return TileFloatingUnaryValue(operation, data_type, value);end;
func TileUnaryValue(operation: TileUnaryOperation, value: Word) => Wordbegin    case operation of        when TileUnary_ABS =>            if SInt(value) < 0 then                return Zeros{PTO_XLEN} - value;            else                return value;            end;        when TileUnary_NOT =>            return NOT value;        when TileUnary_NEG =>            return Zeros{PTO_XLEN} - value;        when TileUnary_RELU =>            if SInt(value) < 0 then                return Zeros{PTO_XLEN};            else                return value;            end;        when TileUnary_SQRT =>            return TileSquareRoot(value);        when TileUnary_LOG =>            return TileLogarithm(value);        when TileUnary_RECIP =>            return TileReciprocal(value);        when TileUnary_EXP =>            return TileExponential(value);        when TileUnary_RSQRT =>            return TileReciprocalSquareRoot(value);    end;end;
impdef func TileProfileUnary(    op: TileUnaryOperation,    data_type: TileDataType,    value: Word) => (Word, bits(5))begin    if TileUnaryUsesClosedElementwiseContract(op) then        let (result, invalid) = TileFixedUnaryValue(            op,            data_type,            value);        return (            result,            if invalid then Zeros{5} + 1 else Zeros{5});    end;    return (        TileUnaryValue(op, value),        Zeros{5});end;
func ExecuteTileUnary(    operation: TileUnaryOperation,    destination: TileIndex,    source: TileIndex)begin    let source_tile = _Tiles[[source]];    assert source_tile.allocated;    assert TileShapesMatch(_Tiles[[destination]], source_tile);    assert _Tiles[[destination]].data_type == source_tile.data_type;
    var result_tile = _Tiles[[destination]];    var flags = Zeros{5};    for row = 0 to source_tile.valid_rows - 1 looplimit 65536 do        for column = 0 to source_tile.valid_columns - 1 looplimit 65536 do            let element = TileLogicalLinearIndex(                source_tile,                row as integer {0..65535},                column as integer {0..65535});            if TileUnaryUsesClosedElementwiseContract(operation) then                let (result, element_invalid) = TileFixedUnaryValue(                    operation,                    source_tile.data_type,                    TileReadLogicalElement(source_tile, element));                result_tile = TileInfoWithLogicalElement(                    result_tile, element, result);                if element_invalid then                    flags = flags OR (Zeros{5} + 1);                end;            else                let (handled, special_result, special_flags) =                    TileSFUUnarySpecialValue(                        operation,                        source_tile.data_type,                        TileReadLogicalElement(source_tile, element));                var result = special_result;                var element_flags = special_flags;                if !handled then                    let (profile_result, profile_flags) = TileProfileUnary(                        operation,                        source_tile.data_type,                        TileReadLogicalElement(source_tile, element));                    result = profile_result;                    element_flags = profile_flags;                end;                result_tile = TileInfoWithLogicalElement(                    result_tile, element, result);                flags = flags OR element_flags;            end;        end;    end;    _Tiles[[destination]] = result_tile;    MarkTileValidRegionDefined(destination);    if TileUnaryUsesCompleteElementwiseSchema(operation) then        ApplyTilePadding(destination, CurrentBundlePadValue());    end;    ScalarFPRecordFlags(flags);end;

Architecture behavior

This internal model unit is documented through its normative ASL/NDF owners and validation evidence; it has no reader-guide migration target.

NDF clauses

Bodies come from owning ASL. Dragging or buttons change only this page-session view order.

No NDF clause is attached to this unit.

Evidence index

8 matching entries

Executable evidence1
  • PTO-TILE-MODEL-EXECUTION-UNARY compiles as an independent normative unit
    1. surfaceTILE
    2. ownerPTO-TILE-MODEL-EXECUTION-UNARY
    3. categorySTATIC-INVARIANT
    4. case001
    Show exact test source
    Sources and references
    Complete stable ID
    PTO-AVS-TILE-MODEL-EXECUTION-UNARY-STATIC-001
    Path
    tests/asl/tile/model/execution/unary/tile-static-unary-contract-001.asl
    Kind / role
    static-invariant
    Pass condition
    the complete model and this unit's static invariant compile
    SHA-256
    317d4cecb38d480e77ff4063b385bbfd3dd453be65e2f7533e56ff1d7cbc7b0c
    Open exact source ↗ for PTO-AVS-TILE-MODEL-EXECUTION-UNARY-STATIC-001
Commit-scoped evidence5
  • spec/evidence/release-traceability-readiness.json · closedPTO-EVIDENCE-RELEASE-TRACEABILITY
    Sources and references
    Complete stable ID
    PTO-EVIDENCE-RELEASE-TRACEABILITY
    Path
    spec/evidence/release-traceability-readiness.json
    Kind / role
    ASL/NDF/documentation/AVS traceability
    SHA-256
    c7327021d39dc67ac5564bc55073b3870a397d79ac8d9648284d56e33bc14a3e
    Open exact source ↗ for PTO-EVIDENCE-RELEASE-TRACEABILITY
  • spec/evidence/instruction-contract-closure.json · closedPTO-EVIDENCE-INSTRUCTION-CONTRACT-CLOSURE
    Sources and references
    Complete stable ID
    PTO-EVIDENCE-INSTRUCTION-CONTRACT-CLOSURE
    Path
    spec/evidence/instruction-contract-closure.json
    Kind / role
    mnemonic and encoding contract closure
    SHA-256
    3ef2bb62421c79dff8fa77a1c7983923b523244b8090812883ef81286ca8106a
    Open exact source ↗ for PTO-EVIDENCE-INSTRUCTION-CONTRACT-CLOSURE
  • spec/evidence/architecture-readiness.json · openPTO-EVIDENCE-ARCHITECTURE-READINESS
    Sources and references
    Complete stable ID
    PTO-EVIDENCE-ARCHITECTURE-READINESS
    Path
    spec/evidence/architecture-readiness.json
    Kind / role
    architecture maturity and blockers
    SHA-256
    4b0b85199101251bea744e0f3591cc31906909dc80d5ab651c417a936036a004
    Open exact source ↗ for PTO-EVIDENCE-ARCHITECTURE-READINESS
  • spec/evidence/release-gate-readiness.json · ready-for-exact-head-verificationPTO-EVIDENCE-RELEASE-GATE-READINESS
    Sources and references
    Complete stable ID
    PTO-EVIDENCE-RELEASE-GATE-READINESS
    Path
    spec/evidence/release-gate-readiness.json
    Kind / role
    exact-head gate readiness
    SHA-256
    a0f4d2b6920c08981ea55fd8ef820708a40d4feb5402c5150e8e9ab532d84ce0
    Open exact source ↗ for PTO-EVIDENCE-RELEASE-GATE-READINESS
  • spec/release-manifest.json · draftPTO-EVIDENCE-RELEASE-MANIFEST
    Sources and references
    Complete stable ID
    PTO-EVIDENCE-RELEASE-MANIFEST
    Path
    spec/release-manifest.json
    Kind / role
    release content and encoding fingerprints
    SHA-256
    1a64c109ed7a90351c41e2a418b3c0ebaf8ad975838986d2101385186b85c0d8
    Open exact source ↗ for PTO-EVIDENCE-RELEASE-MANIFEST
Decision history2
  • Numeric format value classification · accepted
    1. decision recordADR
    2. case0048

    Decision record

    Loading ADR-0048…

    Sources and references
    Complete stable ID
    ADR-0048
    Path
    docs/status/decisions/0048-numeric-format-value-classification.md
    Affected units
    PTO-ARCH-DATA-TYPES-FORMAT-BF16, PTO-ARCH-DATA-TYPES-FORMAT-DESCRIPTOR, PTO-ARCH-DATA-TYPES-FORMAT-E1M2X2, PTO-ARCH-DATA-TYPES-FORMAT-E2M1X2, PTO-ARCH-DATA-TYPES-FORMAT-E2M3, PTO-ARCH-DATA-TYPES-FORMAT-E3M2, PTO-ARCH-DATA-TYPES-FORMAT-E4M3, PTO-ARCH-DATA-TYPES-FORMAT-E5M2, PTO-ARCH-DATA-TYPES-FORMAT-E8M0, PTO-ARCH-DATA-TYPES-FORMAT-FP16, PTO-ARCH-DATA-TYPES-FORMAT-FP32, PTO-ARCH-DATA-TYPES-FORMAT-FP64, PTO-ARCH-DATA-TYPES-FORMAT-HF32, PTO-ARCH-DATA-TYPES-FORMAT-HIF4X2, PTO-ARCH-DATA-TYPES-FORMAT-HIF8, PTO-ARCH-DATA-TYPES-FORMAT-TF32, PTO-ARCH-DATA-TYPES-NUMERIC-CLASSIFICATION, PTO-ARCH-DATA-TYPES-NUMERIC-FORMATS, PTO-SCALAR-FMAX, PTO-SCALAR-FMIN, PTO-SCALAR-MODEL-FSU-PROFILE, PTO-TILE-MODEL-EXECUTION-COMPARISON, PTO-TILE-MODEL-EXECUTION-FUSED-MULTIPLY-ADD, PTO-TILE-MODEL-EXECUTION-UNARY, PTO-TILE-MODEL-NUMERIC-FORMATS, PTO-TILE-MODEL-ORDERING-SORTING, PTO-TILE-TMAX, PTO-TILE-TMIN
    Affected NDF
    PTO-FMAX-DECISION-BINDING-001, PTO-FMIN-DECISION-BINDING-001, PTO-NUMERIC-FINITE-DECOMPOSITION-001, PTO-NUMERIC-FORMAT-DESCRIPTOR-001, PTO-TMAX-CONTRACT-001, PTO-TMIN-CONTRACT-001
    SHA-256
    ce3ecd1851e22b5517d07076ab8bd2db36b6b4582111c761db19240275853d9c
    Open exact decision source ↗ for ADR-0048
  • Re-encode B.IOT and B.IOS size and PE mode fields · accepted
    1. decision recordADR
    2. case0096

    Decision record

    Loading ADR-0096…

    Sources and references
    Complete stable ID
    ADR-0096
    Path
    docs/status/decisions/0096-b-iot-b-ios-sizecode-pemode.md
    Affected units
    PTO-ARCH-DATA-TYPES-INTEGER, PTO-ARCH-FEATURES-TILE-ALLOCATION, PTO-ARCH-MEMORY-MODEL-GLOBAL-MEMORY-ACCESS, PTO-ARCH-PROFILE-RESET, PTO-ARCH-PROGRAMMING-MODEL-CORE-PE-TOPOLOGY, PTO-BLOCK-B-IOS, PTO-BLOCK-B-IOT, PTO-BLOCK-MODEL-DISPATCH-COMMANDS, PTO-BLOCK-MODEL-DISPATCH-CUBE-TMATMUL, PTO-BLOCK-MODEL-DISPATCH-DESTINATION-SHAPE, PTO-BLOCK-MODEL-DISPATCH-SHARED-CUBE-MATRIX, PTO-BLOCK-MODEL-DISPATCH-SHARED-TLSU, PTO-BLOCK-MODEL-OPERANDS-SHARED-BINDINGS, PTO-BLOCK-MODEL-OPERANDS-TILE-BINDINGS, PTO-BLOCK-MODEL-SCHEMA-PROFILE-ENCODING, PTO-BLOCK-MODEL-STATE-TYPES, PTO-TILE-MODEL-DEFINEDNESS-ELEMENTS, PTO-TILE-MODEL-DEFINEDNESS-PACKED-BOUNDARY, PTO-TILE-MODEL-EXECUTION-COMPARISON, PTO-TILE-MODEL-EXECUTION-COMPLEX, PTO-TILE-MODEL-EXECUTION-CUBE, PTO-TILE-MODEL-EXECUTION-ELEMENTWISE, PTO-TILE-MODEL-EXECUTION-EXPANSION, PTO-TILE-MODEL-EXECUTION-FUSED-MULTIPLY-ADD, PTO-TILE-MODEL-EXECUTION-GENERATION, PTO-TILE-MODEL-EXECUTION-IMAGE-TO-COLUMN, PTO-TILE-MODEL-EXECUTION-INDEXED-REARRANGEMENT, PTO-TILE-MODEL-EXECUTION-REARRANGEMENT, PTO-TILE-MODEL-EXECUTION-REDUCTION, PTO-TILE-MODEL-EXECUTION-SORTING, PTO-TILE-MODEL-EXECUTION-UNARY, PTO-TILE-MODEL-LEGALITY-ALLOCATION-CAPACITY, PTO-TILE-MODEL-LEGALITY-DESCRIPTOR-SHAPE, PTO-TILE-MODEL-LEGALITY-IMAGE-TO-COLUMN, PTO-TILE-MODEL-LEGALITY-INDEXED-REARRANGEMENT, PTO-TILE-MODEL-LEGALITY-MATRIX-INFO-DESCRIPTOR, PTO-TILE-MODEL-LEGALITY-MATRIX-POSTPROCESS, PTO-TILE-MODEL-LEGALITY-PE-MASK, PTO-TILE-MODEL-MEMORY-LOAD-STORE, PTO-TILE-MODEL-MEMORY-SHARED-MOVEMENT, PTO-TILE-MODEL-NUMERIC-FORMATS, PTO-TILE-MODEL-ORDERING-SORTING, PTO-TILE-MODEL-SHAPE-VALID-REGION, PTO-TILE-MODEL-STATE-ALLOCATION, PTO-TILE-MODEL-STATE-DESCRIPTORS, PTO-TILE-MODEL-STATE-FEATURE-MAP-DESCRIPTORS, PTO-TILE-MODEL-STATE-SHARED-REGISTERS, PTO-TILE-MODEL-STATE-TYPES, PTO-TILE-TLOAD
    Affected NDF
    PTO-ARCH-GM-ACCESS-001, PTO-B-IOS-SHARED-STATE-001, PTO-B-IOT-STREAM-001, PTO-CUBE-ACCUMULATOR-OUTPUT-001, PTO-TLOAD-CUBE-001, PTO-TLOAD-MEMORY-001
    SHA-256
    c4b4fb7bc17878f710015207dc19ddaf22a0cf6989d185b16844714c71e23f62
    Open exact decision source ↗ for ADR-0096

Unit metadata

Open 4 generated metadata fields
id
PTO-TILE-MODEL-EXECUTION-UNARY
surface
tile
classification
[
  "model",
  "execution",
  "unary"
]
depends_on
[
  "PTO-TILE-MODEL-EXECUTION-ELEMENTWISE"
]
Open generated traceability record
{
  "classification": [
    "model",
    "execution",
    "unary"
  ],
  "documentation": "docs/tile/model/execution/unary.md",
  "id": "PTO-TILE-MODEL-EXECUTION-UNARY",
  "mnemonic": null,
  "readiness_subjects": [
    "ADR-0048",
    "ADR-0096"
  ],
  "semantic_tests": [],
  "source": "asl/tile/model/execution/unary.asl",
  "surface": "tile",
  "tests": [
    "PTO-AVS-TILE-MODEL-EXECUTION-UNARY-STATIC-001"
  ]
}

Sources and release identity

Show commit, paths, hashes, version, and canonical owners
Release
0.58.5 · Release candidate
Commit
7dc8b7e5b121d2b2499a2273bebff29e2cd86812
ASL SHA-256
0fd814f9b7c4b49414d10e4523ee28258fa76a01c3f05a2ac550af9f71760429
Generated documentation
docs/tile/model/execution/unary.md · embedded in this page
Documentation SHA-256
fcb49b0037f24dbadacd9fec796f06026c991ea5e500860b8d24af0ea0da66c9

Exact owners