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#ifndef FLATBUFFERS_GENERATED_MPSSCHEMA_MPSGRAPH_H_
#define FLATBUFFERS_GENERATED_MPSSCHEMA_MPSGRAPH_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 24 &&
FLATBUFFERS_VERSION_MINOR == 3 &&
FLATBUFFERS_VERSION_REVISION == 25,
"Non-compatible flatbuffers version included");
namespace mpsgraph {
struct _MPSNode1x1;
struct _MPSNode1x1Builder;
struct _MPSNode2x1;
struct _MPSNode2x1Builder;
struct _MPSDivNode2x1;
struct _MPSDivNode2x1Builder;
struct _MPSNodeWithAlpha2x1;
struct _MPSNodeWithAlpha2x1Builder;
struct _MPSNode3x1;
struct _MPSNode3x1Builder;
struct MPSMinMax;
struct MPSMinMaxBuilder;
struct MPSPooling2D;
struct MPSPooling2DBuilder;
struct MPSHardTanh;
struct MPSHardTanhBuilder;
struct MPSGELU;
struct MPSGELUBuilder;
struct MPSLeakyReLU;
struct MPSLeakyReLUBuilder;
struct MPSSoftmax;
struct MPSSoftmaxBuilder;
struct MPSClamp;
struct MPSClampBuilder;
struct MPSMean;
struct MPSMeanBuilder;
struct MPSIndexSelect;
struct MPSIndexSelectBuilder;
struct MPSEmbedding;
struct MPSEmbeddingBuilder;
struct MPSIndexTensor;
struct MPSIndexTensorBuilder;
struct MPSIndexPut;
struct MPSIndexPutBuilder;
struct MPSScatter;
struct MPSScatterBuilder;
struct MPSPermute;
struct MPSPermuteBuilder;
struct MPSView;
struct MPSViewBuilder;
struct MPSCat;
struct MPSCatBuilder;
struct MPSSqueeze;
struct MPSSqueezeBuilder;
struct MPSUnsqueeze;
struct MPSUnsqueezeBuilder;
struct MPSSelect;
struct MPSSelectBuilder;
struct MPSSlice;
struct MPSSliceBuilder;
struct MPSPixelShuffle;
struct MPSPixelShuffleBuilder;
struct MPSSplitWithSizes;
struct MPSSplitWithSizesBuilder;
struct MPSCast;
struct MPSCastBuilder;
struct MPSAddmm;
struct MPSAddmmBuilder;
struct _MPSFull;
struct _MPSFullBuilder;
struct MPSConv;
struct MPSConvBuilder;
struct MPSBatchNorm;
struct MPSBatchNormBuilder;
struct MPSLayerNorm;
struct MPSLayerNormBuilder;
struct MPSConstantPadND;
struct MPSConstantPadNDBuilder;
struct MPSArange;
struct MPSArangeBuilder;
struct MPSDequantizePerChannelGroup;
struct MPSDequantizePerChannelGroupBuilder;
struct MPSNode;
struct MPSNodeBuilder;
struct Buffer;
struct BufferBuilder;
struct MPSTensor;
struct MPSTensorBuilder;
struct DataSegment;
struct DataSegmentBuilder;
struct MPSGraph;
struct MPSGraphBuilder;
enum MPSDataType : int16_t {
MPSDataType_mps_data_type_invalid = 0,
MPSDataType_mps_data_type_float16 = 1,
MPSDataType_mps_data_type_float32 = 2,
MPSDataType_mps_data_type_float64 = 3,
MPSDataType_mps_data_type_bfloat16 = 4,
MPSDataType_mps_data_type_int4 = 5,
MPSDataType_mps_data_type_int8 = 6,
MPSDataType_mps_data_type_int16 = 7,
MPSDataType_mps_data_type_int32 = 8,
MPSDataType_mps_data_type_int64 = 9,
MPSDataType_mps_data_type_uint4 = 10,
MPSDataType_mps_data_type_uint8 = 11,
MPSDataType_mps_data_type_uint16 = 12,
MPSDataType_mps_data_type_uint32 = 13,
MPSDataType_mps_data_type_uint64 = 14,
MPSDataType_mps_data_type_bool = 15,
MPSDataType_mps_data_type_complex_float16 = 16,
MPSDataType_mps_data_type_complex_float32 = 17,
MPSDataType_MIN = MPSDataType_mps_data_type_invalid,
MPSDataType_MAX = MPSDataType_mps_data_type_complex_float32
};
inline const MPSDataType (&EnumValuesMPSDataType())[18] {
static const MPSDataType values[] = {
MPSDataType_mps_data_type_invalid,
MPSDataType_mps_data_type_float16,
MPSDataType_mps_data_type_float32,
MPSDataType_mps_data_type_float64,
MPSDataType_mps_data_type_bfloat16,
MPSDataType_mps_data_type_int4,
MPSDataType_mps_data_type_int8,
MPSDataType_mps_data_type_int16,
MPSDataType_mps_data_type_int32,
MPSDataType_mps_data_type_int64,
MPSDataType_mps_data_type_uint4,
MPSDataType_mps_data_type_uint8,
MPSDataType_mps_data_type_uint16,
MPSDataType_mps_data_type_uint32,
MPSDataType_mps_data_type_uint64,
MPSDataType_mps_data_type_bool,
MPSDataType_mps_data_type_complex_float16,
MPSDataType_mps_data_type_complex_float32
};
return values;
}
inline const char * const *EnumNamesMPSDataType() {
static const char * const names[19] = {
"mps_data_type_invalid",
"mps_data_type_float16",
"mps_data_type_float32",
"mps_data_type_float64",
"mps_data_type_bfloat16",
"mps_data_type_int4",
"mps_data_type_int8",
"mps_data_type_int16",
"mps_data_type_int32",
"mps_data_type_int64",
"mps_data_type_uint4",
"mps_data_type_uint8",
"mps_data_type_uint16",
"mps_data_type_uint32",
"mps_data_type_uint64",
"mps_data_type_bool",
"mps_data_type_complex_float16",
"mps_data_type_complex_float32",
nullptr
};
return names;
}
inline const char *EnumNameMPSDataType(MPSDataType e) {
if (::flatbuffers::IsOutRange(e, MPSDataType_mps_data_type_invalid, MPSDataType_mps_data_type_complex_float32)) return "";
const size_t index = static_cast<size_t>(e);
return EnumNamesMPSDataType()[index];
}
enum OpType : int16_t {
OpType_mps_graph = 0,
OpType_metal_kernel = 1,
OpType_MIN = OpType_mps_graph,
OpType_MAX = OpType_metal_kernel
};
inline const OpType (&EnumValuesOpType())[2] {
static const OpType values[] = {
OpType_mps_graph,
OpType_metal_kernel
};
return values;
}
inline const char * const *EnumNamesOpType() {
static const char * const names[3] = {
"mps_graph",
"metal_kernel",
nullptr
};
return names;
}
inline const char *EnumNameOpType(OpType e) {
if (::flatbuffers::IsOutRange(e, OpType_mps_graph, OpType_metal_kernel)) return "";
const size_t index = static_cast<size_t>(e);
return EnumNamesOpType()[index];
}
enum MPSNodeUnion : uint8_t {
MPSNodeUnion_NONE = 0,
MPSNodeUnion_MPSHardTanh = 1,
MPSNodeUnion_MPSReLU = 2,
MPSNodeUnion_MPSGELU = 3,
MPSNodeUnion_MPSLeakyReLU = 4,
MPSNodeUnion_MPSSoftmax = 5,
MPSNodeUnion_MPSLogSoftmax = 6,
MPSNodeUnion_MPSAdd = 7,
MPSNodeUnion_MPSSub = 8,
MPSNodeUnion_MPSMul = 9,
MPSNodeUnion_MPSDiv = 10,
MPSNodeUnion_MPSFmod = 11,
MPSNodeUnion_MPSRemainder = 12,
MPSNodeUnion_MPSMin = 13,
MPSNodeUnion_MPSMax = 14,
MPSNodeUnion_MPSPow = 15,
MPSNodeUnion_MPSAtan2 = 16,
MPSNodeUnion_MPSBitwiseAnd = 17,
MPSNodeUnion_MPSBitwiseOr = 18,
MPSNodeUnion_MPSBitwiseXor = 19,
MPSNodeUnion_MPSMinimum = 20,
MPSNodeUnion_MPSExp = 21,
MPSNodeUnion_MPSExp2 = 22,
MPSNodeUnion_MPSReciprocal = 23,
MPSNodeUnion_MPSSqrt = 24,
MPSNodeUnion_MPSNeg = 25,
MPSNodeUnion_MPSLog = 26,
MPSNodeUnion_MPSLog10 = 27,
MPSNodeUnion_MPSLog2 = 28,
MPSNodeUnion_MPSErf = 29,
MPSNodeUnion_MPSFloor = 30,
MPSNodeUnion_MPSCeil = 31,
MPSNodeUnion_MPSRsqrt = 32,
MPSNodeUnion_MPSSigmoid = 33,
MPSNodeUnion_MPSSin = 34,
MPSNodeUnion_MPSSign = 35,
MPSNodeUnion_MPSCos = 36,
MPSNodeUnion_MPSTan = 37,
MPSNodeUnion_MPSAbs = 38,
MPSNodeUnion_MPSAsin = 39,
MPSNodeUnion_MPSAcos = 40,
MPSNodeUnion_MPSAtan = 41,
MPSNodeUnion_MPSSinh = 42,
MPSNodeUnion_MPSCosh = 43,
MPSNodeUnion_MPSTanh = 44,
MPSNodeUnion_MPSAsinh = 45,
MPSNodeUnion_MPSAcosh = 46,
MPSNodeUnion_MPSAtanh = 47,
MPSNodeUnion_MPSBitwiseNot = 48,
MPSNodeUnion_MPSIsnan = 49,
MPSNodeUnion_MPSIsinf = 50,
MPSNodeUnion_MPSRound = 51,
MPSNodeUnion_MPSLogicalNot = 52,
MPSNodeUnion_MPSMatMul = 53,
MPSNodeUnion_MPSAddmm = 54,
MPSNodeUnion_MPSFull = 55,
MPSNodeUnion_MPSFullLike = 56,
MPSNodeUnion_MPSClamp = 57,
MPSNodeUnion_MPSWhere = 58,
MPSNodeUnion_MPSIndexSelect = 59,
MPSNodeUnion_MPSEmbedding = 60,
MPSNodeUnion_MPSIndexTensor = 61,
MPSNodeUnion_MPSIndexPut = 62,
MPSNodeUnion_MPSScatter = 63,
MPSNodeUnion_MPSMean = 64,
MPSNodeUnion_MPSPermute = 65,
MPSNodeUnion_MPSView = 66,
MPSNodeUnion_MPSExpand = 67,
MPSNodeUnion_MPSCat = 68,
MPSNodeUnion_MPSSqueeze = 69,
MPSNodeUnion_MPSUnsqueeze = 70,
MPSNodeUnion_MPSSelect = 71,
MPSNodeUnion_MPSSlice = 72,
MPSNodeUnion_MPSPixelShuffle = 73,
MPSNodeUnion_MPSSplitWithSizes = 74,
MPSNodeUnion_MPSCast = 75,
MPSNodeUnion_MPSConv2D = 76,
MPSNodeUnion_MPSDepthwiseConv2D = 77,
MPSNodeUnion_MPSEq = 78,
MPSNodeUnion_MPSNe = 79,
MPSNodeUnion_MPSGe = 80,
MPSNodeUnion_MPSGt = 81,
MPSNodeUnion_MPSLe = 82,
MPSNodeUnion_MPSLt = 83,
MPSNodeUnion_MPSBatchNorm = 84,
MPSNodeUnion_MPSLayerNorm = 85,
MPSNodeUnion_MPSMaxPool2DWithIndices = 86,
MPSNodeUnion_MPSAvgPool2D = 87,
MPSNodeUnion_MPSConstantPadND = 88,
MPSNodeUnion_MPSArange = 89,
MPSNodeUnion_MPSDequantizePerChannelGroup = 90,
MPSNodeUnion_MIN = MPSNodeUnion_NONE,
MPSNodeUnion_MAX = MPSNodeUnion_MPSDequantizePerChannelGroup
};
inline const MPSNodeUnion (&EnumValuesMPSNodeUnion())[91] {
static const MPSNodeUnion values[] = {
MPSNodeUnion_NONE,
MPSNodeUnion_MPSHardTanh,
MPSNodeUnion_MPSReLU,
MPSNodeUnion_MPSGELU,
MPSNodeUnion_MPSLeakyReLU,
MPSNodeUnion_MPSSoftmax,
MPSNodeUnion_MPSLogSoftmax,
MPSNodeUnion_MPSAdd,
MPSNodeUnion_MPSSub,
MPSNodeUnion_MPSMul,
MPSNodeUnion_MPSDiv,
MPSNodeUnion_MPSFmod,
MPSNodeUnion_MPSRemainder,
MPSNodeUnion_MPSMin,
MPSNodeUnion_MPSMax,
MPSNodeUnion_MPSPow,
MPSNodeUnion_MPSAtan2,
MPSNodeUnion_MPSBitwiseAnd,
MPSNodeUnion_MPSBitwiseOr,
MPSNodeUnion_MPSBitwiseXor,
MPSNodeUnion_MPSMinimum,
MPSNodeUnion_MPSExp,
MPSNodeUnion_MPSExp2,
MPSNodeUnion_MPSReciprocal,
MPSNodeUnion_MPSSqrt,
MPSNodeUnion_MPSNeg,
MPSNodeUnion_MPSLog,
MPSNodeUnion_MPSLog10,
MPSNodeUnion_MPSLog2,
MPSNodeUnion_MPSErf,
MPSNodeUnion_MPSFloor,
MPSNodeUnion_MPSCeil,
MPSNodeUnion_MPSRsqrt,
MPSNodeUnion_MPSSigmoid,
MPSNodeUnion_MPSSin,
MPSNodeUnion_MPSSign,
MPSNodeUnion_MPSCos,
MPSNodeUnion_MPSTan,
MPSNodeUnion_MPSAbs,
MPSNodeUnion_MPSAsin,
MPSNodeUnion_MPSAcos,
MPSNodeUnion_MPSAtan,
MPSNodeUnion_MPSSinh,
MPSNodeUnion_MPSCosh,
MPSNodeUnion_MPSTanh,
MPSNodeUnion_MPSAsinh,
MPSNodeUnion_MPSAcosh,
MPSNodeUnion_MPSAtanh,
MPSNodeUnion_MPSBitwiseNot,
MPSNodeUnion_MPSIsnan,
MPSNodeUnion_MPSIsinf,
MPSNodeUnion_MPSRound,
MPSNodeUnion_MPSLogicalNot,
MPSNodeUnion_MPSMatMul,
MPSNodeUnion_MPSAddmm,
MPSNodeUnion_MPSFull,
MPSNodeUnion_MPSFullLike,
MPSNodeUnion_MPSClamp,
MPSNodeUnion_MPSWhere,
MPSNodeUnion_MPSIndexSelect,
MPSNodeUnion_MPSEmbedding,
MPSNodeUnion_MPSIndexTensor,
MPSNodeUnion_MPSIndexPut,
MPSNodeUnion_MPSScatter,
MPSNodeUnion_MPSMean,
MPSNodeUnion_MPSPermute,
MPSNodeUnion_MPSView,
MPSNodeUnion_MPSExpand,
MPSNodeUnion_MPSCat,
MPSNodeUnion_MPSSqueeze,
MPSNodeUnion_MPSUnsqueeze,
MPSNodeUnion_MPSSelect,
MPSNodeUnion_MPSSlice,
MPSNodeUnion_MPSPixelShuffle,
MPSNodeUnion_MPSSplitWithSizes,
MPSNodeUnion_MPSCast,
MPSNodeUnion_MPSConv2D,
MPSNodeUnion_MPSDepthwiseConv2D,
MPSNodeUnion_MPSEq,
MPSNodeUnion_MPSNe,
MPSNodeUnion_MPSGe,
MPSNodeUnion_MPSGt,
MPSNodeUnion_MPSLe,
MPSNodeUnion_MPSLt,
MPSNodeUnion_MPSBatchNorm,
MPSNodeUnion_MPSLayerNorm,
MPSNodeUnion_MPSMaxPool2DWithIndices,
MPSNodeUnion_MPSAvgPool2D,
MPSNodeUnion_MPSConstantPadND,
MPSNodeUnion_MPSArange,
MPSNodeUnion_MPSDequantizePerChannelGroup
};
return values;
}
inline const char * const *EnumNamesMPSNodeUnion() {
static const char * const names[92] = {
"NONE",
"MPSHardTanh",
"MPSReLU",
"MPSGELU",
"MPSLeakyReLU",
"MPSSoftmax",
"MPSLogSoftmax",
"MPSAdd",
"MPSSub",
"MPSMul",
"MPSDiv",
"MPSFmod",
"MPSRemainder",
"MPSMin",
"MPSMax",
"MPSPow",
"MPSAtan2",
"MPSBitwiseAnd",
"MPSBitwiseOr",
"MPSBitwiseXor",
"MPSMinimum",
"MPSExp",
"MPSExp2",
"MPSReciprocal",
"MPSSqrt",
"MPSNeg",
"MPSLog",
"MPSLog10",
"MPSLog2",
"MPSErf",
"MPSFloor",
"MPSCeil",
"MPSRsqrt",
"MPSSigmoid",
"MPSSin",
"MPSSign",
"MPSCos",
"MPSTan",
"MPSAbs",
"MPSAsin",
"MPSAcos",
"MPSAtan",
"MPSSinh",
"MPSCosh",
"MPSTanh",
"MPSAsinh",
"MPSAcosh",
"MPSAtanh",
"MPSBitwiseNot",
"MPSIsnan",
"MPSIsinf",
"MPSRound",
"MPSLogicalNot",
"MPSMatMul",
"MPSAddmm",
"MPSFull",
"MPSFullLike",
"MPSClamp",
"MPSWhere",
"MPSIndexSelect",
"MPSEmbedding",
"MPSIndexTensor",
"MPSIndexPut",
"MPSScatter",
"MPSMean",
"MPSPermute",
"MPSView",
"MPSExpand",
"MPSCat",
"MPSSqueeze",
"MPSUnsqueeze",
"MPSSelect",
"MPSSlice",
"MPSPixelShuffle",
"MPSSplitWithSizes",
"MPSCast",
"MPSConv2D",
"MPSDepthwiseConv2D",
"MPSEq",
"MPSNe",
"MPSGe",
"MPSGt",
"MPSLe",
"MPSLt",
"MPSBatchNorm",
"MPSLayerNorm",
"MPSMaxPool2DWithIndices",
"MPSAvgPool2D",
"MPSConstantPadND",
"MPSArange",
"MPSDequantizePerChannelGroup",
nullptr
};
return names;
}
inline const char *EnumNameMPSNodeUnion(MPSNodeUnion e) {
if (::flatbuffers::IsOutRange(e, MPSNodeUnion_NONE, MPSNodeUnion_MPSDequantizePerChannelGroup)) return "";
const size_t index = static_cast<size_t>(e);
return EnumNamesMPSNodeUnion()[index];
}
bool VerifyMPSNodeUnion(::flatbuffers::Verifier &verifier, const void *obj, MPSNodeUnion type);
bool VerifyMPSNodeUnionVector(::flatbuffers::Verifier &verifier, const ::flatbuffers::Vector<::flatbuffers::Offset<void>> *values, const ::flatbuffers::Vector<uint8_t> *types);
struct _MPSNode1x1 FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSNode1x1Builder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct _MPSNode1x1Builder {
typedef _MPSNode1x1 Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSNode1x1::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSNode1x1::VT_OUTPUT_ID, output_id, 0);
}
explicit _MPSNode1x1Builder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSNode1x1> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSNode1x1>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSNode1x1> Create_MPSNode1x1(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0) {
_MPSNode1x1Builder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct _MPSNode2x1 FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSNode2x1Builder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_OUTPUT_ID = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct _MPSNode2x1Builder {
typedef _MPSNode2x1 Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSNode2x1::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(_MPSNode2x1::VT_INPUT2_ID, input2_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSNode2x1::VT_OUTPUT_ID, output_id, 0);
}
explicit _MPSNode2x1Builder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSNode2x1> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSNode2x1>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSNode2x1> Create_MPSNode2x1(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t output_id = 0) {
_MPSNode2x1Builder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct _MPSDivNode2x1 FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSDivNode2x1Builder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_OUTPUT_ID = 8,
VT_ROUNDING_MODE = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
const ::flatbuffers::String *rounding_mode() const {
return GetPointer<const ::flatbuffers::String *>(VT_ROUNDING_MODE);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyOffset(verifier, VT_ROUNDING_MODE) &&
verifier.VerifyString(rounding_mode()) &&
verifier.EndTable();
}
};
struct _MPSDivNode2x1Builder {
typedef _MPSDivNode2x1 Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSDivNode2x1::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(_MPSDivNode2x1::VT_INPUT2_ID, input2_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSDivNode2x1::VT_OUTPUT_ID, output_id, 0);
}
void add_rounding_mode(::flatbuffers::Offset<::flatbuffers::String> rounding_mode) {
fbb_.AddOffset(_MPSDivNode2x1::VT_ROUNDING_MODE, rounding_mode);
}
explicit _MPSDivNode2x1Builder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSDivNode2x1> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSDivNode2x1>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSDivNode2x1> Create_MPSDivNode2x1(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t output_id = 0,
::flatbuffers::Offset<::flatbuffers::String> rounding_mode = 0) {
_MPSDivNode2x1Builder builder_(_fbb);
builder_.add_rounding_mode(rounding_mode);
builder_.add_output_id(output_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<_MPSDivNode2x1> Create_MPSDivNode2x1Direct(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t output_id = 0,
const char *rounding_mode = nullptr) {
auto rounding_mode__ = rounding_mode ? _fbb.CreateString(rounding_mode) : 0;
return mpsgraph::Create_MPSDivNode2x1(
_fbb,
input1_id,
input2_id,
output_id,
rounding_mode__);
}
struct _MPSNodeWithAlpha2x1 FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSNodeWithAlpha2x1Builder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_OUTPUT_ID = 8,
VT_ALPHA = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
float alpha() const {
return GetField<float>(VT_ALPHA, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<float>(verifier, VT_ALPHA, 4) &&
verifier.EndTable();
}
};
struct _MPSNodeWithAlpha2x1Builder {
typedef _MPSNodeWithAlpha2x1 Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSNodeWithAlpha2x1::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(_MPSNodeWithAlpha2x1::VT_INPUT2_ID, input2_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSNodeWithAlpha2x1::VT_OUTPUT_ID, output_id, 0);
}
void add_alpha(float alpha) {
fbb_.AddElement<float>(_MPSNodeWithAlpha2x1::VT_ALPHA, alpha, 0.0f);
}
explicit _MPSNodeWithAlpha2x1Builder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSNodeWithAlpha2x1> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSNodeWithAlpha2x1>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSNodeWithAlpha2x1> Create_MPSNodeWithAlpha2x1(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t output_id = 0,
float alpha = 0.0f) {
_MPSNodeWithAlpha2x1Builder builder_(_fbb);
builder_.add_alpha(alpha);
builder_.add_output_id(output_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct _MPSNode3x1 FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSNode3x1Builder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_INPUT3_ID = 8,
VT_OUTPUT_ID = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t input3_id() const {
return GetField<int32_t>(VT_INPUT3_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT3_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct _MPSNode3x1Builder {
typedef _MPSNode3x1 Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSNode3x1::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(_MPSNode3x1::VT_INPUT2_ID, input2_id, 0);
}
void add_input3_id(int32_t input3_id) {
fbb_.AddElement<int32_t>(_MPSNode3x1::VT_INPUT3_ID, input3_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSNode3x1::VT_OUTPUT_ID, output_id, 0);
}
explicit _MPSNode3x1Builder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSNode3x1> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSNode3x1>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSNode3x1> Create_MPSNode3x1(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t input3_id = 0,
int32_t output_id = 0) {
_MPSNode3x1Builder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_input3_id(input3_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSMinMax FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSMinMaxBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_MIN_VALUE = 4,
VT_MAX_VALUE = 6
};
float min_value() const {
return GetField<float>(VT_MIN_VALUE, 0.0f);
}
float max_value() const {
return GetField<float>(VT_MAX_VALUE, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<float>(verifier, VT_MIN_VALUE, 4) &&
VerifyField<float>(verifier, VT_MAX_VALUE, 4) &&
verifier.EndTable();
}
};
struct MPSMinMaxBuilder {
typedef MPSMinMax Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_min_value(float min_value) {
fbb_.AddElement<float>(MPSMinMax::VT_MIN_VALUE, min_value, 0.0f);
}
void add_max_value(float max_value) {
fbb_.AddElement<float>(MPSMinMax::VT_MAX_VALUE, max_value, 0.0f);
}
explicit MPSMinMaxBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSMinMax> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSMinMax>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSMinMax> CreateMPSMinMax(
::flatbuffers::FlatBufferBuilder &_fbb,
float min_value = 0.0f,
float max_value = 0.0f) {
MPSMinMaxBuilder builder_(_fbb);
builder_.add_max_value(max_value);
builder_.add_min_value(min_value);
return builder_.Finish();
}
struct MPSPooling2D FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSPooling2DBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_KERNEL_HEIGHT = 6,
VT_KERNEL_WIDTH = 8,
VT_STRIDE_HEIGHT = 10,
VT_STRIDE_WIDTH = 12,
VT_PADDING_LEFT = 14,
VT_PADDING_RIGHT = 16,
VT_PADDING_TOP = 18,
VT_PADDING_BOTTOM = 20,
VT_DILATION_HEIGHT = 22,
VT_DILATION_WIDTH = 24,
VT_CEIL_MODE = 26,
VT_COUNT_INCLUDE_PAD = 28,
VT_DIVISOR_OVERRIDE = 30,
VT_OUTPUT1_ID = 32,
VT_OUTPUT2_ID = 34
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t kernel_height() const {
return GetField<int32_t>(VT_KERNEL_HEIGHT, 0);
}
int32_t kernel_width() const {
return GetField<int32_t>(VT_KERNEL_WIDTH, 0);
}
int32_t stride_height() const {
return GetField<int32_t>(VT_STRIDE_HEIGHT, 0);
}
int32_t stride_width() const {
return GetField<int32_t>(VT_STRIDE_WIDTH, 0);
}
int32_t padding_left() const {
return GetField<int32_t>(VT_PADDING_LEFT, 0);
}
int32_t padding_right() const {
return GetField<int32_t>(VT_PADDING_RIGHT, 0);
}
int32_t padding_top() const {
return GetField<int32_t>(VT_PADDING_TOP, 0);
}
int32_t padding_bottom() const {
return GetField<int32_t>(VT_PADDING_BOTTOM, 0);
}
int32_t dilation_height() const {
return GetField<int32_t>(VT_DILATION_HEIGHT, 0);
}
int32_t dilation_width() const {
return GetField<int32_t>(VT_DILATION_WIDTH, 0);
}
bool ceil_mode() const {
return GetField<uint8_t>(VT_CEIL_MODE, 0) != 0;
}
bool count_include_pad() const {
return GetField<uint8_t>(VT_COUNT_INCLUDE_PAD, 0) != 0;
}
int32_t divisor_override() const {
return GetField<int32_t>(VT_DIVISOR_OVERRIDE, 0);
}
int32_t output1_id() const {
return GetField<int32_t>(VT_OUTPUT1_ID, 0);
}
int32_t output2_id() const {
return GetField<int32_t>(VT_OUTPUT2_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_KERNEL_HEIGHT, 4) &&
VerifyField<int32_t>(verifier, VT_KERNEL_WIDTH, 4) &&
VerifyField<int32_t>(verifier, VT_STRIDE_HEIGHT, 4) &&
VerifyField<int32_t>(verifier, VT_STRIDE_WIDTH, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_LEFT, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_RIGHT, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_TOP, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_BOTTOM, 4) &&
VerifyField<int32_t>(verifier, VT_DILATION_HEIGHT, 4) &&
VerifyField<int32_t>(verifier, VT_DILATION_WIDTH, 4) &&
VerifyField<uint8_t>(verifier, VT_CEIL_MODE, 1) &&
VerifyField<uint8_t>(verifier, VT_COUNT_INCLUDE_PAD, 1) &&
VerifyField<int32_t>(verifier, VT_DIVISOR_OVERRIDE, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT2_ID, 4) &&
verifier.EndTable();
}
};
struct MPSPooling2DBuilder {
typedef MPSPooling2D Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_INPUT1_ID, input1_id, 0);
}
void add_kernel_height(int32_t kernel_height) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_KERNEL_HEIGHT, kernel_height, 0);
}
void add_kernel_width(int32_t kernel_width) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_KERNEL_WIDTH, kernel_width, 0);
}
void add_stride_height(int32_t stride_height) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_STRIDE_HEIGHT, stride_height, 0);
}
void add_stride_width(int32_t stride_width) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_STRIDE_WIDTH, stride_width, 0);
}
void add_padding_left(int32_t padding_left) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_PADDING_LEFT, padding_left, 0);
}
void add_padding_right(int32_t padding_right) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_PADDING_RIGHT, padding_right, 0);
}
void add_padding_top(int32_t padding_top) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_PADDING_TOP, padding_top, 0);
}
void add_padding_bottom(int32_t padding_bottom) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_PADDING_BOTTOM, padding_bottom, 0);
}
void add_dilation_height(int32_t dilation_height) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_DILATION_HEIGHT, dilation_height, 0);
}
void add_dilation_width(int32_t dilation_width) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_DILATION_WIDTH, dilation_width, 0);
}
void add_ceil_mode(bool ceil_mode) {
fbb_.AddElement<uint8_t>(MPSPooling2D::VT_CEIL_MODE, static_cast<uint8_t>(ceil_mode), 0);
}
void add_count_include_pad(bool count_include_pad) {
fbb_.AddElement<uint8_t>(MPSPooling2D::VT_COUNT_INCLUDE_PAD, static_cast<uint8_t>(count_include_pad), 0);
}
void add_divisor_override(int32_t divisor_override) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_DIVISOR_OVERRIDE, divisor_override, 0);
}
void add_output1_id(int32_t output1_id) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_OUTPUT1_ID, output1_id, 0);
}
void add_output2_id(int32_t output2_id) {
fbb_.AddElement<int32_t>(MPSPooling2D::VT_OUTPUT2_ID, output2_id, 0);
}
explicit MPSPooling2DBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSPooling2D> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSPooling2D>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSPooling2D> CreateMPSPooling2D(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t kernel_height = 0,
int32_t kernel_width = 0,
int32_t stride_height = 0,
int32_t stride_width = 0,
int32_t padding_left = 0,
int32_t padding_right = 0,
int32_t padding_top = 0,
int32_t padding_bottom = 0,
int32_t dilation_height = 0,
int32_t dilation_width = 0,
bool ceil_mode = false,
bool count_include_pad = false,
int32_t divisor_override = 0,
int32_t output1_id = 0,
int32_t output2_id = 0) {
MPSPooling2DBuilder builder_(_fbb);
builder_.add_output2_id(output2_id);
builder_.add_output1_id(output1_id);
builder_.add_divisor_override(divisor_override);
builder_.add_dilation_width(dilation_width);
builder_.add_dilation_height(dilation_height);
builder_.add_padding_bottom(padding_bottom);
builder_.add_padding_top(padding_top);
builder_.add_padding_right(padding_right);
builder_.add_padding_left(padding_left);
builder_.add_stride_width(stride_width);
builder_.add_stride_height(stride_height);
builder_.add_kernel_width(kernel_width);
builder_.add_kernel_height(kernel_height);
builder_.add_input1_id(input1_id);
builder_.add_count_include_pad(count_include_pad);
builder_.add_ceil_mode(ceil_mode);
return builder_.Finish();
}
struct MPSHardTanh FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSHardTanhBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_MIN_VALUE = 8,
VT_MAX_VALUE = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
float min_value() const {
return GetField<float>(VT_MIN_VALUE, 0.0f);
}
float max_value() const {
return GetField<float>(VT_MAX_VALUE, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<float>(verifier, VT_MIN_VALUE, 4) &&
VerifyField<float>(verifier, VT_MAX_VALUE, 4) &&
verifier.EndTable();
}
};
struct MPSHardTanhBuilder {
typedef MPSHardTanh Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSHardTanh::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSHardTanh::VT_OUTPUT_ID, output_id, 0);
}
void add_min_value(float min_value) {
fbb_.AddElement<float>(MPSHardTanh::VT_MIN_VALUE, min_value, 0.0f);
}
void add_max_value(float max_value) {
fbb_.AddElement<float>(MPSHardTanh::VT_MAX_VALUE, max_value, 0.0f);
}
explicit MPSHardTanhBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSHardTanh> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSHardTanh>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSHardTanh> CreateMPSHardTanh(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
float min_value = 0.0f,
float max_value = 0.0f) {
MPSHardTanhBuilder builder_(_fbb);
builder_.add_max_value(max_value);
builder_.add_min_value(min_value);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSGELU FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSGELUBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_APPROXIMATE = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
const ::flatbuffers::String *approximate() const {
return GetPointer<const ::flatbuffers::String *>(VT_APPROXIMATE);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyOffset(verifier, VT_APPROXIMATE) &&
verifier.VerifyString(approximate()) &&
verifier.EndTable();
}
};
struct MPSGELUBuilder {
typedef MPSGELU Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSGELU::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSGELU::VT_OUTPUT_ID, output_id, 0);
}
void add_approximate(::flatbuffers::Offset<::flatbuffers::String> approximate) {
fbb_.AddOffset(MPSGELU::VT_APPROXIMATE, approximate);
}
explicit MPSGELUBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSGELU> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSGELU>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSGELU> CreateMPSGELU(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
::flatbuffers::Offset<::flatbuffers::String> approximate = 0) {
MPSGELUBuilder builder_(_fbb);
builder_.add_approximate(approximate);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSGELU> CreateMPSGELUDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
const char *approximate = nullptr) {
auto approximate__ = approximate ? _fbb.CreateString(approximate) : 0;
return mpsgraph::CreateMPSGELU(
_fbb,
input1_id,
output_id,
approximate__);
}
struct MPSLeakyReLU FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSLeakyReLUBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_NEGATIVE_SLOPE = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
float negative_slope() const {
return GetField<float>(VT_NEGATIVE_SLOPE, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<float>(verifier, VT_NEGATIVE_SLOPE, 4) &&
verifier.EndTable();
}
};
struct MPSLeakyReLUBuilder {
typedef MPSLeakyReLU Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSLeakyReLU::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSLeakyReLU::VT_OUTPUT_ID, output_id, 0);
}
void add_negative_slope(float negative_slope) {
fbb_.AddElement<float>(MPSLeakyReLU::VT_NEGATIVE_SLOPE, negative_slope, 0.0f);
}
explicit MPSLeakyReLUBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSLeakyReLU> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSLeakyReLU>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSLeakyReLU> CreateMPSLeakyReLU(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
float negative_slope = 0.0f) {
MPSLeakyReLUBuilder builder_(_fbb);
builder_.add_negative_slope(negative_slope);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSSoftmax FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSSoftmaxBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8,
VT_HALF_TO_FLOAT = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
bool half_to_float() const {
return GetField<uint8_t>(VT_HALF_TO_FLOAT, 0) != 0;
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
VerifyField<uint8_t>(verifier, VT_HALF_TO_FLOAT, 1) &&
verifier.EndTable();
}
};
struct MPSSoftmaxBuilder {
typedef MPSSoftmax Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSSoftmax::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSSoftmax::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSSoftmax::VT_DIM, dim, 0);
}
void add_half_to_float(bool half_to_float) {
fbb_.AddElement<uint8_t>(MPSSoftmax::VT_HALF_TO_FLOAT, static_cast<uint8_t>(half_to_float), 0);
}
explicit MPSSoftmaxBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSSoftmax> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSSoftmax>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSSoftmax> CreateMPSSoftmax(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t dim = 0,
bool half_to_float = false) {
MPSSoftmaxBuilder builder_(_fbb);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
builder_.add_half_to_float(half_to_float);
return builder_.Finish();
}
struct MPSClamp FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSClampBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct MPSClampBuilder {
typedef MPSClamp Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSClamp::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSClamp::VT_OUTPUT_ID, output_id, 0);
}
explicit MPSClampBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSClamp> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSClamp>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSClamp> CreateMPSClamp(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0) {
MPSClampBuilder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSMean FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSMeanBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_NUM_DIMS = 8,
VT_DIMS = 10,
VT_KEEP_DIMS = 12
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t num_dims() const {
return GetField<int32_t>(VT_NUM_DIMS, 0);
}
const ::flatbuffers::Vector<int32_t> *dims() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_DIMS);
}
bool keep_dims() const {
return GetField<uint8_t>(VT_KEEP_DIMS, 0) != 0;
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_NUM_DIMS, 4) &&
VerifyOffset(verifier, VT_DIMS) &&
verifier.VerifyVector(dims()) &&
VerifyField<uint8_t>(verifier, VT_KEEP_DIMS, 1) &&
verifier.EndTable();
}
};
struct MPSMeanBuilder {
typedef MPSMean Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSMean::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSMean::VT_OUTPUT_ID, output_id, 0);
}
void add_num_dims(int32_t num_dims) {
fbb_.AddElement<int32_t>(MPSMean::VT_NUM_DIMS, num_dims, 0);
}
void add_dims(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims) {
fbb_.AddOffset(MPSMean::VT_DIMS, dims);
}
void add_keep_dims(bool keep_dims) {
fbb_.AddElement<uint8_t>(MPSMean::VT_KEEP_DIMS, static_cast<uint8_t>(keep_dims), 0);
}
explicit MPSMeanBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSMean> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSMean>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSMean> CreateMPSMean(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims = 0,
bool keep_dims = false) {
MPSMeanBuilder builder_(_fbb);
builder_.add_dims(dims);
builder_.add_num_dims(num_dims);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
builder_.add_keep_dims(keep_dims);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSMean> CreateMPSMeanDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
const std::vector<int32_t> *dims = nullptr,
bool keep_dims = false) {
auto dims__ = dims ? _fbb.CreateVector<int32_t>(*dims) : 0;
return mpsgraph::CreateMPSMean(
_fbb,
input1_id,
output_id,
num_dims,
dims__,
keep_dims);
}
struct MPSIndexSelect FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSIndexSelectBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8,
VT_INDEX_ID = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
int32_t index_id() const {
return GetField<int32_t>(VT_INDEX_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
VerifyField<int32_t>(verifier, VT_INDEX_ID, 4) &&
verifier.EndTable();
}
};
struct MPSIndexSelectBuilder {
typedef MPSIndexSelect Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSIndexSelect::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSIndexSelect::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSIndexSelect::VT_DIM, dim, 0);
}
void add_index_id(int32_t index_id) {
fbb_.AddElement<int32_t>(MPSIndexSelect::VT_INDEX_ID, index_id, 0);
}
explicit MPSIndexSelectBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSIndexSelect> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSIndexSelect>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSIndexSelect> CreateMPSIndexSelect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t dim = 0,
int32_t index_id = 0) {
MPSIndexSelectBuilder builder_(_fbb);
builder_.add_index_id(index_id);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSEmbedding FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSEmbeddingBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_OUTPUT_ID = 8,
VT_PADDING_IDX = 10,
VT_SCALE_GRAD_BY_FREQ = 12,
VT_SPARSE = 14
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t padding_idx() const {
return GetField<int32_t>(VT_PADDING_IDX, 0);
}
bool scale_grad_by_freq() const {
return GetField<uint8_t>(VT_SCALE_GRAD_BY_FREQ, 0) != 0;
}
bool sparse() const {
return GetField<uint8_t>(VT_SPARSE, 0) != 0;
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_IDX, 4) &&
VerifyField<uint8_t>(verifier, VT_SCALE_GRAD_BY_FREQ, 1) &&
VerifyField<uint8_t>(verifier, VT_SPARSE, 1) &&
verifier.EndTable();
}
};
struct MPSEmbeddingBuilder {
typedef MPSEmbedding Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSEmbedding::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(MPSEmbedding::VT_INPUT2_ID, input2_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSEmbedding::VT_OUTPUT_ID, output_id, 0);
}
void add_padding_idx(int32_t padding_idx) {
fbb_.AddElement<int32_t>(MPSEmbedding::VT_PADDING_IDX, padding_idx, 0);
}
void add_scale_grad_by_freq(bool scale_grad_by_freq) {
fbb_.AddElement<uint8_t>(MPSEmbedding::VT_SCALE_GRAD_BY_FREQ, static_cast<uint8_t>(scale_grad_by_freq), 0);
}
void add_sparse(bool sparse) {
fbb_.AddElement<uint8_t>(MPSEmbedding::VT_SPARSE, static_cast<uint8_t>(sparse), 0);
}
explicit MPSEmbeddingBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSEmbedding> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSEmbedding>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSEmbedding> CreateMPSEmbedding(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t output_id = 0,
int32_t padding_idx = 0,
bool scale_grad_by_freq = false,
bool sparse = false) {
MPSEmbeddingBuilder builder_(_fbb);
builder_.add_padding_idx(padding_idx);
builder_.add_output_id(output_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
builder_.add_sparse(sparse);
builder_.add_scale_grad_by_freq(scale_grad_by_freq);
return builder_.Finish();
}
struct MPSIndexTensor FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSIndexTensorBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INDICES_ID = 6,
VT_OUTPUT_ID = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *indices_id() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_INDICES_ID);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyOffset(verifier, VT_INDICES_ID) &&
verifier.VerifyVector(indices_id()) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct MPSIndexTensorBuilder {
typedef MPSIndexTensor Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSIndexTensor::VT_INPUT1_ID, input1_id, 0);
}
void add_indices_id(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> indices_id) {
fbb_.AddOffset(MPSIndexTensor::VT_INDICES_ID, indices_id);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSIndexTensor::VT_OUTPUT_ID, output_id, 0);
}
explicit MPSIndexTensorBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSIndexTensor> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSIndexTensor>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSIndexTensor> CreateMPSIndexTensor(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> indices_id = 0,
int32_t output_id = 0) {
MPSIndexTensorBuilder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_indices_id(indices_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSIndexTensor> CreateMPSIndexTensorDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
const std::vector<int32_t> *indices_id = nullptr,
int32_t output_id = 0) {
auto indices_id__ = indices_id ? _fbb.CreateVector<int32_t>(*indices_id) : 0;
return mpsgraph::CreateMPSIndexTensor(
_fbb,
input1_id,
indices_id__,
output_id);
}
struct MPSIndexPut FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSIndexPutBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INDICES_ID = 6,
VT_VALUES_SHAPE = 8,
VT_VALUES_ID = 10,
VT_OUTPUT_ID = 12
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *indices_id() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_INDICES_ID);
}
const ::flatbuffers::Vector<int32_t> *values_shape() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_VALUES_SHAPE);
}
int32_t values_id() const {
return GetField<int32_t>(VT_VALUES_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyOffset(verifier, VT_INDICES_ID) &&
verifier.VerifyVector(indices_id()) &&
VerifyOffset(verifier, VT_VALUES_SHAPE) &&
verifier.VerifyVector(values_shape()) &&
VerifyField<int32_t>(verifier, VT_VALUES_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
verifier.EndTable();
}
};
struct MPSIndexPutBuilder {
typedef MPSIndexPut Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSIndexPut::VT_INPUT1_ID, input1_id, 0);
}
void add_indices_id(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> indices_id) {
fbb_.AddOffset(MPSIndexPut::VT_INDICES_ID, indices_id);
}
void add_values_shape(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> values_shape) {
fbb_.AddOffset(MPSIndexPut::VT_VALUES_SHAPE, values_shape);
}
void add_values_id(int32_t values_id) {
fbb_.AddElement<int32_t>(MPSIndexPut::VT_VALUES_ID, values_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSIndexPut::VT_OUTPUT_ID, output_id, 0);
}
explicit MPSIndexPutBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSIndexPut> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSIndexPut>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSIndexPut> CreateMPSIndexPut(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> indices_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> values_shape = 0,
int32_t values_id = 0,
int32_t output_id = 0) {
MPSIndexPutBuilder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_values_id(values_id);
builder_.add_values_shape(values_shape);
builder_.add_indices_id(indices_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSIndexPut> CreateMPSIndexPutDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
const std::vector<int32_t> *indices_id = nullptr,
const std::vector<int32_t> *values_shape = nullptr,
int32_t values_id = 0,
int32_t output_id = 0) {
auto indices_id__ = indices_id ? _fbb.CreateVector<int32_t>(*indices_id) : 0;
auto values_shape__ = values_shape ? _fbb.CreateVector<int32_t>(*values_shape) : 0;
return mpsgraph::CreateMPSIndexPut(
_fbb,
input1_id,
indices_id__,
values_shape__,
values_id,
output_id);
}
struct MPSScatter FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSScatterBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8,
VT_IDX_ID = 10,
VT_SRC_ID = 12
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int64_t dim() const {
return GetField<int64_t>(VT_DIM, 0);
}
int32_t idx_id() const {
return GetField<int32_t>(VT_IDX_ID, 0);
}
int32_t src_id() const {
return GetField<int32_t>(VT_SRC_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int64_t>(verifier, VT_DIM, 8) &&
VerifyField<int32_t>(verifier, VT_IDX_ID, 4) &&
VerifyField<int32_t>(verifier, VT_SRC_ID, 4) &&
verifier.EndTable();
}
};
struct MPSScatterBuilder {
typedef MPSScatter Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSScatter::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSScatter::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int64_t dim) {
fbb_.AddElement<int64_t>(MPSScatter::VT_DIM, dim, 0);
}
void add_idx_id(int32_t idx_id) {
fbb_.AddElement<int32_t>(MPSScatter::VT_IDX_ID, idx_id, 0);
}
void add_src_id(int32_t src_id) {
fbb_.AddElement<int32_t>(MPSScatter::VT_SRC_ID, src_id, 0);
}
explicit MPSScatterBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSScatter> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSScatter>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSScatter> CreateMPSScatter(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int64_t dim = 0,
int32_t idx_id = 0,
int32_t src_id = 0) {
MPSScatterBuilder builder_(_fbb);
builder_.add_dim(dim);
builder_.add_src_id(src_id);
builder_.add_idx_id(idx_id);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSPermute FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSPermuteBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_NUM_DIMS = 8,
VT_PERM = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t num_dims() const {
return GetField<int32_t>(VT_NUM_DIMS, 0);
}
const ::flatbuffers::Vector<int32_t> *perm() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_PERM);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_NUM_DIMS, 4) &&
VerifyOffset(verifier, VT_PERM) &&
verifier.VerifyVector(perm()) &&
verifier.EndTable();
}
};
struct MPSPermuteBuilder {
typedef MPSPermute Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSPermute::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSPermute::VT_OUTPUT_ID, output_id, 0);
}
void add_num_dims(int32_t num_dims) {
fbb_.AddElement<int32_t>(MPSPermute::VT_NUM_DIMS, num_dims, 0);
}
void add_perm(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> perm) {
fbb_.AddOffset(MPSPermute::VT_PERM, perm);
}
explicit MPSPermuteBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSPermute> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSPermute>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSPermute> CreateMPSPermute(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> perm = 0) {
MPSPermuteBuilder builder_(_fbb);
builder_.add_perm(perm);
builder_.add_num_dims(num_dims);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSPermute> CreateMPSPermuteDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
const std::vector<int32_t> *perm = nullptr) {
auto perm__ = perm ? _fbb.CreateVector<int32_t>(*perm) : 0;
return mpsgraph::CreateMPSPermute(
_fbb,
input1_id,
output_id,
num_dims,
perm__);
}
struct MPSView FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSViewBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_NUM_DIMS = 8,
VT_SHAPE = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t num_dims() const {
return GetField<int32_t>(VT_NUM_DIMS, 0);
}
const ::flatbuffers::Vector<int32_t> *shape() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_SHAPE);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_NUM_DIMS, 4) &&
VerifyOffset(verifier, VT_SHAPE) &&
verifier.VerifyVector(shape()) &&
verifier.EndTable();
}
};
struct MPSViewBuilder {
typedef MPSView Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSView::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSView::VT_OUTPUT_ID, output_id, 0);
}
void add_num_dims(int32_t num_dims) {
fbb_.AddElement<int32_t>(MPSView::VT_NUM_DIMS, num_dims, 0);
}
void add_shape(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> shape) {
fbb_.AddOffset(MPSView::VT_SHAPE, shape);
}
explicit MPSViewBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSView> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSView>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSView> CreateMPSView(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> shape = 0) {
MPSViewBuilder builder_(_fbb);
builder_.add_shape(shape);
builder_.add_num_dims(num_dims);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSView> CreateMPSViewDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t num_dims = 0,
const std::vector<int32_t> *shape = nullptr) {
auto shape__ = shape ? _fbb.CreateVector<int32_t>(*shape) : 0;
return mpsgraph::CreateMPSView(
_fbb,
input1_id,
output_id,
num_dims,
shape__);
}
struct MPSCat FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSCatBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT_IDS = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8
};
const ::flatbuffers::Vector<int32_t> *input_ids() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_INPUT_IDS);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffset(verifier, VT_INPUT_IDS) &&
verifier.VerifyVector(input_ids()) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
verifier.EndTable();
}
};
struct MPSCatBuilder {
typedef MPSCat Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input_ids(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> input_ids) {
fbb_.AddOffset(MPSCat::VT_INPUT_IDS, input_ids);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSCat::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSCat::VT_DIM, dim, 0);
}
explicit MPSCatBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSCat> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSCat>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSCat> CreateMPSCat(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> input_ids = 0,
int32_t output_id = 0,
int32_t dim = 0) {
MPSCatBuilder builder_(_fbb);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input_ids(input_ids);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSCat> CreateMPSCatDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
const std::vector<int32_t> *input_ids = nullptr,
int32_t output_id = 0,
int32_t dim = 0) {
auto input_ids__ = input_ids ? _fbb.CreateVector<int32_t>(*input_ids) : 0;
return mpsgraph::CreateMPSCat(
_fbb,
input_ids__,
output_id,
dim);
}
struct MPSSqueeze FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSSqueezeBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIMS = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *dims() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_DIMS);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyOffset(verifier, VT_DIMS) &&
verifier.VerifyVector(dims()) &&
verifier.EndTable();
}
};
struct MPSSqueezeBuilder {
typedef MPSSqueeze Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSSqueeze::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSSqueeze::VT_OUTPUT_ID, output_id, 0);
}
void add_dims(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims) {
fbb_.AddOffset(MPSSqueeze::VT_DIMS, dims);
}
explicit MPSSqueezeBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSSqueeze> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSSqueeze>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSSqueeze> CreateMPSSqueeze(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims = 0) {
MPSSqueezeBuilder builder_(_fbb);
builder_.add_dims(dims);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSSqueeze> CreateMPSSqueezeDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
const std::vector<int32_t> *dims = nullptr) {
auto dims__ = dims ? _fbb.CreateVector<int32_t>(*dims) : 0;
return mpsgraph::CreateMPSSqueeze(
_fbb,
input1_id,
output_id,
dims__);
}
struct MPSUnsqueeze FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSUnsqueezeBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
verifier.EndTable();
}
};
struct MPSUnsqueezeBuilder {
typedef MPSUnsqueeze Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSUnsqueeze::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSUnsqueeze::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSUnsqueeze::VT_DIM, dim, 0);
}
explicit MPSUnsqueezeBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSUnsqueeze> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSUnsqueeze>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSUnsqueeze> CreateMPSUnsqueeze(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t dim = 0) {
MPSUnsqueezeBuilder builder_(_fbb);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSSelect FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSSelectBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8,
VT_INDEX = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
int32_t index() const {
return GetField<int32_t>(VT_INDEX, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
VerifyField<int32_t>(verifier, VT_INDEX, 4) &&
verifier.EndTable();
}
};
struct MPSSelectBuilder {
typedef MPSSelect Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSSelect::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSSelect::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSSelect::VT_DIM, dim, 0);
}
void add_index(int32_t index) {
fbb_.AddElement<int32_t>(MPSSelect::VT_INDEX, index, 0);
}
explicit MPSSelectBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSSelect> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSSelect>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSSelect> CreateMPSSelect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t dim = 0,
int32_t index = 0) {
MPSSelectBuilder builder_(_fbb);
builder_.add_index(index);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSSlice FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSSliceBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DIM = 8,
VT_START = 10,
VT_END = 12,
VT_STEP = 14
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int64_t dim() const {
return GetField<int64_t>(VT_DIM, 0);
}
int64_t start() const {
return GetField<int64_t>(VT_START, 0);
}
int64_t end() const {
return GetField<int64_t>(VT_END, 0);
}
int64_t step() const {
return GetField<int64_t>(VT_STEP, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int64_t>(verifier, VT_DIM, 8) &&
VerifyField<int64_t>(verifier, VT_START, 8) &&
VerifyField<int64_t>(verifier, VT_END, 8) &&
VerifyField<int64_t>(verifier, VT_STEP, 8) &&
verifier.EndTable();
}
};
struct MPSSliceBuilder {
typedef MPSSlice Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSSlice::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSSlice::VT_OUTPUT_ID, output_id, 0);
}
void add_dim(int64_t dim) {
fbb_.AddElement<int64_t>(MPSSlice::VT_DIM, dim, 0);
}
void add_start(int64_t start) {
fbb_.AddElement<int64_t>(MPSSlice::VT_START, start, 0);
}
void add_end(int64_t end) {
fbb_.AddElement<int64_t>(MPSSlice::VT_END, end, 0);
}
void add_step(int64_t step) {
fbb_.AddElement<int64_t>(MPSSlice::VT_STEP, step, 0);
}
explicit MPSSliceBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSSlice> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSSlice>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSSlice> CreateMPSSlice(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int64_t dim = 0,
int64_t start = 0,
int64_t end = 0,
int64_t step = 0) {
MPSSliceBuilder builder_(_fbb);
builder_.add_step(step);
builder_.add_end(end);
builder_.add_start(start);
builder_.add_dim(dim);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSPixelShuffle FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSPixelShuffleBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_UPSCALE_FACTOR = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t upscale_factor() const {
return GetField<int32_t>(VT_UPSCALE_FACTOR, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_UPSCALE_FACTOR, 4) &&
verifier.EndTable();
}
};
struct MPSPixelShuffleBuilder {
typedef MPSPixelShuffle Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSPixelShuffle::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSPixelShuffle::VT_OUTPUT_ID, output_id, 0);
}
void add_upscale_factor(int32_t upscale_factor) {
fbb_.AddElement<int32_t>(MPSPixelShuffle::VT_UPSCALE_FACTOR, upscale_factor, 0);
}
explicit MPSPixelShuffleBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSPixelShuffle> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSPixelShuffle>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSPixelShuffle> CreateMPSPixelShuffle(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t upscale_factor = 0) {
MPSPixelShuffleBuilder builder_(_fbb);
builder_.add_upscale_factor(upscale_factor);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSSplitWithSizes FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSSplitWithSizesBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_IDS = 6,
VT_SPLIT_SIZES = 8,
VT_DIM = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *output_ids() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_OUTPUT_IDS);
}
const ::flatbuffers::Vector<int32_t> *split_sizes() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_SPLIT_SIZES);
}
int32_t dim() const {
return GetField<int32_t>(VT_DIM, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyOffset(verifier, VT_OUTPUT_IDS) &&
verifier.VerifyVector(output_ids()) &&
VerifyOffset(verifier, VT_SPLIT_SIZES) &&
verifier.VerifyVector(split_sizes()) &&
VerifyField<int32_t>(verifier, VT_DIM, 4) &&
verifier.EndTable();
}
};
struct MPSSplitWithSizesBuilder {
typedef MPSSplitWithSizes Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSSplitWithSizes::VT_INPUT1_ID, input1_id, 0);
}
void add_output_ids(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> output_ids) {
fbb_.AddOffset(MPSSplitWithSizes::VT_OUTPUT_IDS, output_ids);
}
void add_split_sizes(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> split_sizes) {
fbb_.AddOffset(MPSSplitWithSizes::VT_SPLIT_SIZES, split_sizes);
}
void add_dim(int32_t dim) {
fbb_.AddElement<int32_t>(MPSSplitWithSizes::VT_DIM, dim, 0);
}
explicit MPSSplitWithSizesBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSSplitWithSizes> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSSplitWithSizes>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSSplitWithSizes> CreateMPSSplitWithSizes(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> output_ids = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> split_sizes = 0,
int32_t dim = 0) {
MPSSplitWithSizesBuilder builder_(_fbb);
builder_.add_dim(dim);
builder_.add_split_sizes(split_sizes);
builder_.add_output_ids(output_ids);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSSplitWithSizes> CreateMPSSplitWithSizesDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
const std::vector<int32_t> *output_ids = nullptr,
const std::vector<int32_t> *split_sizes = nullptr,
int32_t dim = 0) {
auto output_ids__ = output_ids ? _fbb.CreateVector<int32_t>(*output_ids) : 0;
auto split_sizes__ = split_sizes ? _fbb.CreateVector<int32_t>(*split_sizes) : 0;
return mpsgraph::CreateMPSSplitWithSizes(
_fbb,
input1_id,
output_ids__,
split_sizes__,
dim);
}
struct MPSCast FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSCastBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_DTYPE = 8
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
mpsgraph::MPSDataType dtype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_DTYPE, 0));
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int16_t>(verifier, VT_DTYPE, 2) &&
verifier.EndTable();
}
};
struct MPSCastBuilder {
typedef MPSCast Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSCast::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSCast::VT_OUTPUT_ID, output_id, 0);
}
void add_dtype(mpsgraph::MPSDataType dtype) {
fbb_.AddElement<int16_t>(MPSCast::VT_DTYPE, static_cast<int16_t>(dtype), 0);
}
explicit MPSCastBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSCast> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSCast>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSCast> CreateMPSCast(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
mpsgraph::MPSDataType dtype = mpsgraph::MPSDataType_mps_data_type_invalid) {
MPSCastBuilder builder_(_fbb);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
builder_.add_dtype(dtype);
return builder_.Finish();
}
struct MPSAddmm FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSAddmmBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_INPUT3_ID = 8,
VT_OUTPUT_ID = 10,
VT_BETA = 12,
VT_ALPHA = 14
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t input3_id() const {
return GetField<int32_t>(VT_INPUT3_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
float beta() const {
return GetField<float>(VT_BETA, 0.0f);
}
float alpha() const {
return GetField<float>(VT_ALPHA, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT3_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<float>(verifier, VT_BETA, 4) &&
VerifyField<float>(verifier, VT_ALPHA, 4) &&
verifier.EndTable();
}
};
struct MPSAddmmBuilder {
typedef MPSAddmm Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSAddmm::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(MPSAddmm::VT_INPUT2_ID, input2_id, 0);
}
void add_input3_id(int32_t input3_id) {
fbb_.AddElement<int32_t>(MPSAddmm::VT_INPUT3_ID, input3_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSAddmm::VT_OUTPUT_ID, output_id, 0);
}
void add_beta(float beta) {
fbb_.AddElement<float>(MPSAddmm::VT_BETA, beta, 0.0f);
}
void add_alpha(float alpha) {
fbb_.AddElement<float>(MPSAddmm::VT_ALPHA, alpha, 0.0f);
}
explicit MPSAddmmBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSAddmm> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSAddmm>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSAddmm> CreateMPSAddmm(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t input3_id = 0,
int32_t output_id = 0,
float beta = 0.0f,
float alpha = 0.0f) {
MPSAddmmBuilder builder_(_fbb);
builder_.add_alpha(alpha);
builder_.add_beta(beta);
builder_.add_output_id(output_id);
builder_.add_input3_id(input3_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct _MPSFull FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef _MPSFullBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_SHAPE = 8,
VT_FILL_VALUE = 10,
VT_DTYPE = 12
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *shape() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_SHAPE);
}
float fill_value() const {
return GetField<float>(VT_FILL_VALUE, 0.0f);
}
mpsgraph::MPSDataType dtype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_DTYPE, 0));
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyOffset(verifier, VT_SHAPE) &&
verifier.VerifyVector(shape()) &&
VerifyField<float>(verifier, VT_FILL_VALUE, 4) &&
VerifyField<int16_t>(verifier, VT_DTYPE, 2) &&
verifier.EndTable();
}
};
struct _MPSFullBuilder {
typedef _MPSFull Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(_MPSFull::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(_MPSFull::VT_OUTPUT_ID, output_id, 0);
}
void add_shape(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> shape) {
fbb_.AddOffset(_MPSFull::VT_SHAPE, shape);
}
void add_fill_value(float fill_value) {
fbb_.AddElement<float>(_MPSFull::VT_FILL_VALUE, fill_value, 0.0f);
}
void add_dtype(mpsgraph::MPSDataType dtype) {
fbb_.AddElement<int16_t>(_MPSFull::VT_DTYPE, static_cast<int16_t>(dtype), 0);
}
explicit _MPSFullBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<_MPSFull> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<_MPSFull>(end);
return o;
}
};
inline ::flatbuffers::Offset<_MPSFull> Create_MPSFull(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> shape = 0,
float fill_value = 0.0f,
mpsgraph::MPSDataType dtype = mpsgraph::MPSDataType_mps_data_type_invalid) {
_MPSFullBuilder builder_(_fbb);
builder_.add_fill_value(fill_value);
builder_.add_shape(shape);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
builder_.add_dtype(dtype);
return builder_.Finish();
}
inline ::flatbuffers::Offset<_MPSFull> Create_MPSFullDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
const std::vector<int32_t> *shape = nullptr,
float fill_value = 0.0f,
mpsgraph::MPSDataType dtype = mpsgraph::MPSDataType_mps_data_type_invalid) {
auto shape__ = shape ? _fbb.CreateVector<int32_t>(*shape) : 0;
return mpsgraph::Create_MPSFull(
_fbb,
input1_id,
output_id,
shape__,
fill_value,
dtype);
}
struct MPSConv FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSConvBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_INPUT2_ID = 6,
VT_INPUT3_ID = 8,
VT_OUTPUT_ID = 10,
VT_STRIDE_X = 12,
VT_STRIDE_Y = 14,
VT_DILATION_X = 16,
VT_DILATION_Y = 18,
VT_GROUPS = 20,
VT_PADDING_LEFT = 22,
VT_PADDING_RIGHT = 24,
VT_PADDING_TOP = 26,
VT_PADDING_BOTTOM = 28
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t input2_id() const {
return GetField<int32_t>(VT_INPUT2_ID, 0);
}
int32_t input3_id() const {
return GetField<int32_t>(VT_INPUT3_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t stride_x() const {
return GetField<int32_t>(VT_STRIDE_X, 0);
}
int32_t stride_y() const {
return GetField<int32_t>(VT_STRIDE_Y, 0);
}
int32_t dilation_x() const {
return GetField<int32_t>(VT_DILATION_X, 0);
}
int32_t dilation_y() const {
return GetField<int32_t>(VT_DILATION_Y, 0);
}
int32_t groups() const {
return GetField<int32_t>(VT_GROUPS, 0);
}
int32_t padding_left() const {
return GetField<int32_t>(VT_PADDING_LEFT, 0);
}
int32_t padding_right() const {
return GetField<int32_t>(VT_PADDING_RIGHT, 0);
}
int32_t padding_top() const {
return GetField<int32_t>(VT_PADDING_TOP, 0);
}
int32_t padding_bottom() const {
return GetField<int32_t>(VT_PADDING_BOTTOM, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_INPUT3_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_STRIDE_X, 4) &&
VerifyField<int32_t>(verifier, VT_STRIDE_Y, 4) &&
VerifyField<int32_t>(verifier, VT_DILATION_X, 4) &&
VerifyField<int32_t>(verifier, VT_DILATION_Y, 4) &&
VerifyField<int32_t>(verifier, VT_GROUPS, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_LEFT, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_RIGHT, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_TOP, 4) &&
VerifyField<int32_t>(verifier, VT_PADDING_BOTTOM, 4) &&
verifier.EndTable();
}
};
struct MPSConvBuilder {
typedef MPSConv Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSConv::VT_INPUT1_ID, input1_id, 0);
}
void add_input2_id(int32_t input2_id) {
fbb_.AddElement<int32_t>(MPSConv::VT_INPUT2_ID, input2_id, 0);
}
void add_input3_id(int32_t input3_id) {
fbb_.AddElement<int32_t>(MPSConv::VT_INPUT3_ID, input3_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSConv::VT_OUTPUT_ID, output_id, 0);
}
void add_stride_x(int32_t stride_x) {
fbb_.AddElement<int32_t>(MPSConv::VT_STRIDE_X, stride_x, 0);
}
void add_stride_y(int32_t stride_y) {
fbb_.AddElement<int32_t>(MPSConv::VT_STRIDE_Y, stride_y, 0);
}
void add_dilation_x(int32_t dilation_x) {
fbb_.AddElement<int32_t>(MPSConv::VT_DILATION_X, dilation_x, 0);
}
void add_dilation_y(int32_t dilation_y) {
fbb_.AddElement<int32_t>(MPSConv::VT_DILATION_Y, dilation_y, 0);
}
void add_groups(int32_t groups) {
fbb_.AddElement<int32_t>(MPSConv::VT_GROUPS, groups, 0);
}
void add_padding_left(int32_t padding_left) {
fbb_.AddElement<int32_t>(MPSConv::VT_PADDING_LEFT, padding_left, 0);
}
void add_padding_right(int32_t padding_right) {
fbb_.AddElement<int32_t>(MPSConv::VT_PADDING_RIGHT, padding_right, 0);
}
void add_padding_top(int32_t padding_top) {
fbb_.AddElement<int32_t>(MPSConv::VT_PADDING_TOP, padding_top, 0);
}
void add_padding_bottom(int32_t padding_bottom) {
fbb_.AddElement<int32_t>(MPSConv::VT_PADDING_BOTTOM, padding_bottom, 0);
}
explicit MPSConvBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSConv> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSConv>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSConv> CreateMPSConv(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t input2_id = 0,
int32_t input3_id = 0,
int32_t output_id = 0,
int32_t stride_x = 0,
int32_t stride_y = 0,
int32_t dilation_x = 0,
int32_t dilation_y = 0,
int32_t groups = 0,
int32_t padding_left = 0,
int32_t padding_right = 0,
int32_t padding_top = 0,
int32_t padding_bottom = 0) {
MPSConvBuilder builder_(_fbb);
builder_.add_padding_bottom(padding_bottom);
builder_.add_padding_top(padding_top);
builder_.add_padding_right(padding_right);
builder_.add_padding_left(padding_left);
builder_.add_groups(groups);
builder_.add_dilation_y(dilation_y);
builder_.add_dilation_x(dilation_x);
builder_.add_stride_y(stride_y);
builder_.add_stride_x(stride_x);
builder_.add_output_id(output_id);
builder_.add_input3_id(input3_id);
builder_.add_input2_id(input2_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
struct MPSBatchNorm FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSBatchNormBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT_ID = 4,
VT_MEAN_ID = 6,
VT_VAR_ID = 8,
VT_WEIGHT_ID = 10,
VT_BIAS_ID = 12,
VT_MOMENTUM = 14,
VT_EPSILON = 16,
VT_OUTPUT2_ID = 18,
VT_OUTPUT1_ID = 20,
VT_OUTPUT3_ID = 22
};
int32_t input_id() const {
return GetField<int32_t>(VT_INPUT_ID, 0);
}
int32_t mean_id() const {
return GetField<int32_t>(VT_MEAN_ID, 0);
}
int32_t var_id() const {
return GetField<int32_t>(VT_VAR_ID, 0);
}
int32_t weight_id() const {
return GetField<int32_t>(VT_WEIGHT_ID, 0);
}
int32_t bias_id() const {
return GetField<int32_t>(VT_BIAS_ID, 0);
}
float momentum() const {
return GetField<float>(VT_MOMENTUM, 0.0f);
}
float epsilon() const {
return GetField<float>(VT_EPSILON, 0.0f);
}
int32_t output2_id() const {
return GetField<int32_t>(VT_OUTPUT2_ID, 0);
}
int32_t output1_id() const {
return GetField<int32_t>(VT_OUTPUT1_ID, 0);
}
int32_t output3_id() const {
return GetField<int32_t>(VT_OUTPUT3_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_MEAN_ID, 4) &&
VerifyField<int32_t>(verifier, VT_VAR_ID, 4) &&
VerifyField<int32_t>(verifier, VT_WEIGHT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_BIAS_ID, 4) &&
VerifyField<float>(verifier, VT_MOMENTUM, 4) &&
VerifyField<float>(verifier, VT_EPSILON, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT3_ID, 4) &&
verifier.EndTable();
}
};
struct MPSBatchNormBuilder {
typedef MPSBatchNorm Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input_id(int32_t input_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_INPUT_ID, input_id, 0);
}
void add_mean_id(int32_t mean_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_MEAN_ID, mean_id, 0);
}
void add_var_id(int32_t var_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_VAR_ID, var_id, 0);
}
void add_weight_id(int32_t weight_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_WEIGHT_ID, weight_id, 0);
}
void add_bias_id(int32_t bias_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_BIAS_ID, bias_id, 0);
}
void add_momentum(float momentum) {
fbb_.AddElement<float>(MPSBatchNorm::VT_MOMENTUM, momentum, 0.0f);
}
void add_epsilon(float epsilon) {
fbb_.AddElement<float>(MPSBatchNorm::VT_EPSILON, epsilon, 0.0f);
}
void add_output2_id(int32_t output2_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_OUTPUT2_ID, output2_id, 0);
}
void add_output1_id(int32_t output1_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_OUTPUT1_ID, output1_id, 0);
}
void add_output3_id(int32_t output3_id) {
fbb_.AddElement<int32_t>(MPSBatchNorm::VT_OUTPUT3_ID, output3_id, 0);
}
explicit MPSBatchNormBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSBatchNorm> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSBatchNorm>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSBatchNorm> CreateMPSBatchNorm(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input_id = 0,
int32_t mean_id = 0,
int32_t var_id = 0,
int32_t weight_id = 0,
int32_t bias_id = 0,
float momentum = 0.0f,
float epsilon = 0.0f,
int32_t output2_id = 0,
int32_t output1_id = 0,
int32_t output3_id = 0) {
MPSBatchNormBuilder builder_(_fbb);
builder_.add_output3_id(output3_id);
builder_.add_output1_id(output1_id);
builder_.add_output2_id(output2_id);
builder_.add_epsilon(epsilon);
builder_.add_momentum(momentum);
builder_.add_bias_id(bias_id);
builder_.add_weight_id(weight_id);
builder_.add_var_id(var_id);
builder_.add_mean_id(mean_id);
builder_.add_input_id(input_id);
return builder_.Finish();
}
struct MPSLayerNorm FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSLayerNormBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_NORMALIZED_SHAPE = 6,
VT_WEIGHT_ID = 8,
VT_BIAS_ID = 10,
VT_EPS = 12,
VT_OUTPUT2_ID = 14,
VT_OUTPUT1_ID = 16,
VT_OUTPUT3_ID = 18
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *normalized_shape() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_NORMALIZED_SHAPE);
}
int32_t weight_id() const {
return GetField<int32_t>(VT_WEIGHT_ID, 0);
}
int32_t bias_id() const {
return GetField<int32_t>(VT_BIAS_ID, 0);
}
float eps() const {
return GetField<float>(VT_EPS, 0.0f);
}
int32_t output2_id() const {
return GetField<int32_t>(VT_OUTPUT2_ID, 0);
}
int32_t output1_id() const {
return GetField<int32_t>(VT_OUTPUT1_ID, 0);
}
int32_t output3_id() const {
return GetField<int32_t>(VT_OUTPUT3_ID, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyOffset(verifier, VT_NORMALIZED_SHAPE) &&
verifier.VerifyVector(normalized_shape()) &&
VerifyField<int32_t>(verifier, VT_WEIGHT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_BIAS_ID, 4) &&
VerifyField<float>(verifier, VT_EPS, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT2_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT3_ID, 4) &&
verifier.EndTable();
}
};
struct MPSLayerNormBuilder {
typedef MPSLayerNorm Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_INPUT1_ID, input1_id, 0);
}
void add_normalized_shape(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> normalized_shape) {
fbb_.AddOffset(MPSLayerNorm::VT_NORMALIZED_SHAPE, normalized_shape);
}
void add_weight_id(int32_t weight_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_WEIGHT_ID, weight_id, 0);
}
void add_bias_id(int32_t bias_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_BIAS_ID, bias_id, 0);
}
void add_eps(float eps) {
fbb_.AddElement<float>(MPSLayerNorm::VT_EPS, eps, 0.0f);
}
void add_output2_id(int32_t output2_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_OUTPUT2_ID, output2_id, 0);
}
void add_output1_id(int32_t output1_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_OUTPUT1_ID, output1_id, 0);
}
void add_output3_id(int32_t output3_id) {
fbb_.AddElement<int32_t>(MPSLayerNorm::VT_OUTPUT3_ID, output3_id, 0);
}
explicit MPSLayerNormBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSLayerNorm> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSLayerNorm>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSLayerNorm> CreateMPSLayerNorm(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> normalized_shape = 0,
int32_t weight_id = 0,
int32_t bias_id = 0,
float eps = 0.0f,
int32_t output2_id = 0,
int32_t output1_id = 0,
int32_t output3_id = 0) {
MPSLayerNormBuilder builder_(_fbb);
builder_.add_output3_id(output3_id);
builder_.add_output1_id(output1_id);
builder_.add_output2_id(output2_id);
builder_.add_eps(eps);
builder_.add_bias_id(bias_id);
builder_.add_weight_id(weight_id);
builder_.add_normalized_shape(normalized_shape);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSLayerNorm> CreateMPSLayerNormDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
const std::vector<int32_t> *normalized_shape = nullptr,
int32_t weight_id = 0,
int32_t bias_id = 0,
float eps = 0.0f,
int32_t output2_id = 0,
int32_t output1_id = 0,
int32_t output3_id = 0) {
auto normalized_shape__ = normalized_shape ? _fbb.CreateVector<int32_t>(*normalized_shape) : 0;
return mpsgraph::CreateMPSLayerNorm(
_fbb,
input1_id,
normalized_shape__,
weight_id,
bias_id,
eps,
output2_id,
output1_id,
output3_id);
}
struct MPSConstantPadND FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSConstantPadNDBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_PAD = 8,
VT_VALUE = 10
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
const ::flatbuffers::Vector<int32_t> *pad() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_PAD);
}
float value() const {
return GetField<float>(VT_VALUE, 0.0f);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyOffset(verifier, VT_PAD) &&
verifier.VerifyVector(pad()) &&
VerifyField<float>(verifier, VT_VALUE, 4) &&
verifier.EndTable();
}
};
struct MPSConstantPadNDBuilder {
typedef MPSConstantPadND Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSConstantPadND::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSConstantPadND::VT_OUTPUT_ID, output_id, 0);
}
void add_pad(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> pad) {
fbb_.AddOffset(MPSConstantPadND::VT_PAD, pad);
}
void add_value(float value) {
fbb_.AddElement<float>(MPSConstantPadND::VT_VALUE, value, 0.0f);
}
explicit MPSConstantPadNDBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSConstantPadND> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSConstantPadND>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSConstantPadND> CreateMPSConstantPadND(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> pad = 0,
float value = 0.0f) {
MPSConstantPadNDBuilder builder_(_fbb);
builder_.add_value(value);
builder_.add_pad(pad);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSConstantPadND> CreateMPSConstantPadNDDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
const std::vector<int32_t> *pad = nullptr,
float value = 0.0f) {
auto pad__ = pad ? _fbb.CreateVector<int32_t>(*pad) : 0;
return mpsgraph::CreateMPSConstantPadND(
_fbb,
input1_id,
output_id,
pad__,
value);
}
struct MPSArange FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSArangeBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_OUTPUT_ID = 4,
VT_START = 6,
VT_END = 8,
VT_STEP = 10,
VT_DTYPE = 12
};
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
float start() const {
return GetField<float>(VT_START, 0.0f);
}
float end() const {
return GetField<float>(VT_END, 0.0f);
}
float step() const {
return GetField<float>(VT_STEP, 0.0f);
}
mpsgraph::MPSDataType dtype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_DTYPE, 0));
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<float>(verifier, VT_START, 4) &&
VerifyField<float>(verifier, VT_END, 4) &&
VerifyField<float>(verifier, VT_STEP, 4) &&
VerifyField<int16_t>(verifier, VT_DTYPE, 2) &&
verifier.EndTable();
}
};
struct MPSArangeBuilder {
typedef MPSArange Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSArange::VT_OUTPUT_ID, output_id, 0);
}
void add_start(float start) {
fbb_.AddElement<float>(MPSArange::VT_START, start, 0.0f);
}
void add_end(float end) {
fbb_.AddElement<float>(MPSArange::VT_END, end, 0.0f);
}
void add_step(float step) {
fbb_.AddElement<float>(MPSArange::VT_STEP, step, 0.0f);
}
void add_dtype(mpsgraph::MPSDataType dtype) {
fbb_.AddElement<int16_t>(MPSArange::VT_DTYPE, static_cast<int16_t>(dtype), 0);
}
explicit MPSArangeBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSArange> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSArange>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSArange> CreateMPSArange(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t output_id = 0,
float start = 0.0f,
float end = 0.0f,
float step = 0.0f,
mpsgraph::MPSDataType dtype = mpsgraph::MPSDataType_mps_data_type_invalid) {
MPSArangeBuilder builder_(_fbb);
builder_.add_step(step);
builder_.add_end(end);
builder_.add_start(start);
builder_.add_output_id(output_id);
builder_.add_dtype(dtype);
return builder_.Finish();
}
struct MPSDequantizePerChannelGroup FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSDequantizePerChannelGroupBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INPUT1_ID = 4,
VT_OUTPUT_ID = 6,
VT_SCALES_ID = 8,
VT_ZERO_POINTS_ID = 10,
VT_QUANT_MIN = 12,
VT_QUANT_MAX = 14,
VT_DTYPE = 16,
VT_GROUP_SIZE = 18,
VT_OUTPUT_DTYPE = 20
};
int32_t input1_id() const {
return GetField<int32_t>(VT_INPUT1_ID, 0);
}
int32_t output_id() const {
return GetField<int32_t>(VT_OUTPUT_ID, 0);
}
int32_t scales_id() const {
return GetField<int32_t>(VT_SCALES_ID, 0);
}
int32_t zero_points_id() const {
return GetField<int32_t>(VT_ZERO_POINTS_ID, 0);
}
int32_t quant_min() const {
return GetField<int32_t>(VT_QUANT_MIN, 0);
}
int32_t quant_max() const {
return GetField<int32_t>(VT_QUANT_MAX, 0);
}
mpsgraph::MPSDataType dtype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_DTYPE, 0));
}
int32_t group_size() const {
return GetField<int32_t>(VT_GROUP_SIZE, 0);
}
mpsgraph::MPSDataType output_dtype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_OUTPUT_DTYPE, 0));
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int32_t>(verifier, VT_INPUT1_ID, 4) &&
VerifyField<int32_t>(verifier, VT_OUTPUT_ID, 4) &&
VerifyField<int32_t>(verifier, VT_SCALES_ID, 4) &&
VerifyField<int32_t>(verifier, VT_ZERO_POINTS_ID, 4) &&
VerifyField<int32_t>(verifier, VT_QUANT_MIN, 4) &&
VerifyField<int32_t>(verifier, VT_QUANT_MAX, 4) &&
VerifyField<int16_t>(verifier, VT_DTYPE, 2) &&
VerifyField<int32_t>(verifier, VT_GROUP_SIZE, 4) &&
VerifyField<int16_t>(verifier, VT_OUTPUT_DTYPE, 2) &&
verifier.EndTable();
}
};
struct MPSDequantizePerChannelGroupBuilder {
typedef MPSDequantizePerChannelGroup Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_input1_id(int32_t input1_id) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_INPUT1_ID, input1_id, 0);
}
void add_output_id(int32_t output_id) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_OUTPUT_ID, output_id, 0);
}
void add_scales_id(int32_t scales_id) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_SCALES_ID, scales_id, 0);
}
void add_zero_points_id(int32_t zero_points_id) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_ZERO_POINTS_ID, zero_points_id, 0);
}
void add_quant_min(int32_t quant_min) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_QUANT_MIN, quant_min, 0);
}
void add_quant_max(int32_t quant_max) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_QUANT_MAX, quant_max, 0);
}
void add_dtype(mpsgraph::MPSDataType dtype) {
fbb_.AddElement<int16_t>(MPSDequantizePerChannelGroup::VT_DTYPE, static_cast<int16_t>(dtype), 0);
}
void add_group_size(int32_t group_size) {
fbb_.AddElement<int32_t>(MPSDequantizePerChannelGroup::VT_GROUP_SIZE, group_size, 0);
}
void add_output_dtype(mpsgraph::MPSDataType output_dtype) {
fbb_.AddElement<int16_t>(MPSDequantizePerChannelGroup::VT_OUTPUT_DTYPE, static_cast<int16_t>(output_dtype), 0);
}
explicit MPSDequantizePerChannelGroupBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSDequantizePerChannelGroup> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSDequantizePerChannelGroup>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSDequantizePerChannelGroup> CreateMPSDequantizePerChannelGroup(
::flatbuffers::FlatBufferBuilder &_fbb,
int32_t input1_id = 0,
int32_t output_id = 0,
int32_t scales_id = 0,
int32_t zero_points_id = 0,
int32_t quant_min = 0,
int32_t quant_max = 0,
mpsgraph::MPSDataType dtype = mpsgraph::MPSDataType_mps_data_type_invalid,
int32_t group_size = 0,
mpsgraph::MPSDataType output_dtype = mpsgraph::MPSDataType_mps_data_type_invalid) {
MPSDequantizePerChannelGroupBuilder builder_(_fbb);
builder_.add_group_size(group_size);
builder_.add_quant_max(quant_max);
builder_.add_quant_min(quant_min);
builder_.add_zero_points_id(zero_points_id);
builder_.add_scales_id(scales_id);
builder_.add_output_id(output_id);
builder_.add_input1_id(input1_id);
builder_.add_output_dtype(output_dtype);
builder_.add_dtype(dtype);
return builder_.Finish();
}
struct MPSNode FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSNodeBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_MPSNODE_UNION_TYPE = 4,
VT_MPSNODE_UNION = 6,
VT_MIN_MAX = 8
};
mpsgraph::MPSNodeUnion mpsnode_union_type() const {
return static_cast<mpsgraph::MPSNodeUnion>(GetField<uint8_t>(VT_MPSNODE_UNION_TYPE, 0));
}
const void *mpsnode_union() const {
return GetPointer<const void *>(VT_MPSNODE_UNION);
}
const mpsgraph::MPSHardTanh *mpsnode_union_as_MPSHardTanh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSHardTanh ? static_cast<const mpsgraph::MPSHardTanh *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSReLU() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSReLU ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSGELU *mpsnode_union_as_MPSGELU() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSGELU ? static_cast<const mpsgraph::MPSGELU *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSLeakyReLU *mpsnode_union_as_MPSLeakyReLU() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLeakyReLU ? static_cast<const mpsgraph::MPSLeakyReLU *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSoftmax *mpsnode_union_as_MPSSoftmax() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSoftmax ? static_cast<const mpsgraph::MPSSoftmax *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSoftmax *mpsnode_union_as_MPSLogSoftmax() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLogSoftmax ? static_cast<const mpsgraph::MPSSoftmax *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNodeWithAlpha2x1 *mpsnode_union_as_MPSAdd() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAdd ? static_cast<const mpsgraph::_MPSNodeWithAlpha2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNodeWithAlpha2x1 *mpsnode_union_as_MPSSub() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSub ? static_cast<const mpsgraph::_MPSNodeWithAlpha2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSMul() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMul ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSDivNode2x1 *mpsnode_union_as_MPSDiv() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSDiv ? static_cast<const mpsgraph::_MPSDivNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSDivNode2x1 *mpsnode_union_as_MPSFmod() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSFmod ? static_cast<const mpsgraph::_MPSDivNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSDivNode2x1 *mpsnode_union_as_MPSRemainder() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSRemainder ? static_cast<const mpsgraph::_MPSDivNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSMin() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMin ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSMax() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMax ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSPow() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSPow ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSAtan2() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAtan2 ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSBitwiseAnd() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSBitwiseAnd ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSBitwiseOr() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSBitwiseOr ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSBitwiseXor() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSBitwiseXor ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSMinimum() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMinimum ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSExp() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSExp ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSExp2() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSExp2 ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSReciprocal() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSReciprocal ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSSqrt() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSqrt ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSNeg() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSNeg ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSLog() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLog ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSLog10() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLog10 ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSLog2() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLog2 ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSErf() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSErf ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSFloor() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSFloor ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSCeil() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSCeil ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSRsqrt() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSRsqrt ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSSigmoid() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSigmoid ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSSin() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSin ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSSign() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSign ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSCos() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSCos ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSTan() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSTan ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAbs() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAbs ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAsin() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAsin ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAcos() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAcos ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAtan() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAtan ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSSinh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSinh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSCosh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSCosh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSTanh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSTanh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAsinh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAsinh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAcosh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAcosh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSAtanh() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAtanh ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSBitwiseNot() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSBitwiseNot ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSIsnan() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSIsnan ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSIsinf() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSIsinf ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSRound() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSRound ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode1x1 *mpsnode_union_as_MPSLogicalNot() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLogicalNot ? static_cast<const mpsgraph::_MPSNode1x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSMatMul() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMatMul ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSAddmm *mpsnode_union_as_MPSAddmm() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAddmm ? static_cast<const mpsgraph::MPSAddmm *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSFull *mpsnode_union_as_MPSFull() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSFull ? static_cast<const mpsgraph::_MPSFull *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSFull *mpsnode_union_as_MPSFullLike() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSFullLike ? static_cast<const mpsgraph::_MPSFull *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSClamp *mpsnode_union_as_MPSClamp() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSClamp ? static_cast<const mpsgraph::MPSClamp *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode3x1 *mpsnode_union_as_MPSWhere() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSWhere ? static_cast<const mpsgraph::_MPSNode3x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSIndexSelect *mpsnode_union_as_MPSIndexSelect() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSIndexSelect ? static_cast<const mpsgraph::MPSIndexSelect *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSEmbedding *mpsnode_union_as_MPSEmbedding() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSEmbedding ? static_cast<const mpsgraph::MPSEmbedding *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSIndexTensor *mpsnode_union_as_MPSIndexTensor() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSIndexTensor ? static_cast<const mpsgraph::MPSIndexTensor *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSIndexPut *mpsnode_union_as_MPSIndexPut() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSIndexPut ? static_cast<const mpsgraph::MPSIndexPut *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSScatter *mpsnode_union_as_MPSScatter() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSScatter ? static_cast<const mpsgraph::MPSScatter *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSMean *mpsnode_union_as_MPSMean() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMean ? static_cast<const mpsgraph::MPSMean *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSPermute *mpsnode_union_as_MPSPermute() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSPermute ? static_cast<const mpsgraph::MPSPermute *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSView *mpsnode_union_as_MPSView() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSView ? static_cast<const mpsgraph::MPSView *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSView *mpsnode_union_as_MPSExpand() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSExpand ? static_cast<const mpsgraph::MPSView *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSCat *mpsnode_union_as_MPSCat() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSCat ? static_cast<const mpsgraph::MPSCat *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSqueeze *mpsnode_union_as_MPSSqueeze() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSqueeze ? static_cast<const mpsgraph::MPSSqueeze *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSUnsqueeze *mpsnode_union_as_MPSUnsqueeze() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSUnsqueeze ? static_cast<const mpsgraph::MPSUnsqueeze *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSelect *mpsnode_union_as_MPSSelect() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSelect ? static_cast<const mpsgraph::MPSSelect *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSlice *mpsnode_union_as_MPSSlice() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSlice ? static_cast<const mpsgraph::MPSSlice *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSPixelShuffle *mpsnode_union_as_MPSPixelShuffle() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSPixelShuffle ? static_cast<const mpsgraph::MPSPixelShuffle *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSSplitWithSizes *mpsnode_union_as_MPSSplitWithSizes() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSSplitWithSizes ? static_cast<const mpsgraph::MPSSplitWithSizes *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSCast *mpsnode_union_as_MPSCast() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSCast ? static_cast<const mpsgraph::MPSCast *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSConv *mpsnode_union_as_MPSConv2D() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSConv2D ? static_cast<const mpsgraph::MPSConv *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSConv *mpsnode_union_as_MPSDepthwiseConv2D() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSDepthwiseConv2D ? static_cast<const mpsgraph::MPSConv *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSEq() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSEq ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSNe() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSNe ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSGe() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSGe ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSGt() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSGt ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSLe() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLe ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::_MPSNode2x1 *mpsnode_union_as_MPSLt() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLt ? static_cast<const mpsgraph::_MPSNode2x1 *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSBatchNorm *mpsnode_union_as_MPSBatchNorm() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSBatchNorm ? static_cast<const mpsgraph::MPSBatchNorm *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSLayerNorm *mpsnode_union_as_MPSLayerNorm() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSLayerNorm ? static_cast<const mpsgraph::MPSLayerNorm *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSPooling2D *mpsnode_union_as_MPSMaxPool2DWithIndices() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSMaxPool2DWithIndices ? static_cast<const mpsgraph::MPSPooling2D *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSPooling2D *mpsnode_union_as_MPSAvgPool2D() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSAvgPool2D ? static_cast<const mpsgraph::MPSPooling2D *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSConstantPadND *mpsnode_union_as_MPSConstantPadND() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSConstantPadND ? static_cast<const mpsgraph::MPSConstantPadND *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSArange *mpsnode_union_as_MPSArange() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSArange ? static_cast<const mpsgraph::MPSArange *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSDequantizePerChannelGroup *mpsnode_union_as_MPSDequantizePerChannelGroup() const {
return mpsnode_union_type() == mpsgraph::MPSNodeUnion_MPSDequantizePerChannelGroup ? static_cast<const mpsgraph::MPSDequantizePerChannelGroup *>(mpsnode_union()) : nullptr;
}
const mpsgraph::MPSMinMax *min_max() const {
return GetPointer<const mpsgraph::MPSMinMax *>(VT_MIN_MAX);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<uint8_t>(verifier, VT_MPSNODE_UNION_TYPE, 1) &&
VerifyOffset(verifier, VT_MPSNODE_UNION) &&
VerifyMPSNodeUnion(verifier, mpsnode_union(), mpsnode_union_type()) &&
VerifyOffset(verifier, VT_MIN_MAX) &&
verifier.VerifyTable(min_max()) &&
verifier.EndTable();
}
};
struct MPSNodeBuilder {
typedef MPSNode Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_mpsnode_union_type(mpsgraph::MPSNodeUnion mpsnode_union_type) {
fbb_.AddElement<uint8_t>(MPSNode::VT_MPSNODE_UNION_TYPE, static_cast<uint8_t>(mpsnode_union_type), 0);
}
void add_mpsnode_union(::flatbuffers::Offset<void> mpsnode_union) {
fbb_.AddOffset(MPSNode::VT_MPSNODE_UNION, mpsnode_union);
}
void add_min_max(::flatbuffers::Offset<mpsgraph::MPSMinMax> min_max) {
fbb_.AddOffset(MPSNode::VT_MIN_MAX, min_max);
}
explicit MPSNodeBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSNode> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSNode>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSNode> CreateMPSNode(
::flatbuffers::FlatBufferBuilder &_fbb,
mpsgraph::MPSNodeUnion mpsnode_union_type = mpsgraph::MPSNodeUnion_NONE,
::flatbuffers::Offset<void> mpsnode_union = 0,
::flatbuffers::Offset<mpsgraph::MPSMinMax> min_max = 0) {
MPSNodeBuilder builder_(_fbb);
builder_.add_min_max(min_max);
builder_.add_mpsnode_union(mpsnode_union);
builder_.add_mpsnode_union_type(mpsnode_union_type);
return builder_.Finish();
}
struct Buffer FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef BufferBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_STORAGE = 4
};
const ::flatbuffers::Vector<uint8_t> *storage() const {
return GetPointer<const ::flatbuffers::Vector<uint8_t> *>(VT_STORAGE);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffset(verifier, VT_STORAGE) &&
verifier.VerifyVector(storage()) &&
verifier.EndTable();
}
};
struct BufferBuilder {
typedef Buffer Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_storage(::flatbuffers::Offset<::flatbuffers::Vector<uint8_t>> storage) {
fbb_.AddOffset(Buffer::VT_STORAGE, storage);
}
explicit BufferBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<Buffer> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<Buffer>(end);
return o;
}
};
inline ::flatbuffers::Offset<Buffer> CreateBuffer(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<::flatbuffers::Vector<uint8_t>> storage = 0) {
BufferBuilder builder_(_fbb);
builder_.add_storage(storage);
return builder_.Finish();
}
inline ::flatbuffers::Offset<Buffer> CreateBufferDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
const std::vector<uint8_t> *storage = nullptr) {
if (storage) { _fbb.ForceVectorAlignment(storage->size(), sizeof(uint8_t), 16); }
auto storage__ = storage ? _fbb.CreateVector<uint8_t>(*storage) : 0;
return mpsgraph::CreateBuffer(
_fbb,
storage__);
}
struct MPSTensor FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSTensorBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_DATATYPE = 4,
VT_NUM_DIMS = 6,
VT_DIMS = 8,
VT_CONSTANT_BUFFER_SIZE = 10,
VT_CONSTANT_BUFFER = 12,
VT_SEGMENT_OFFSET = 14
};
mpsgraph::MPSDataType datatype() const {
return static_cast<mpsgraph::MPSDataType>(GetField<int16_t>(VT_DATATYPE, 0));
}
int32_t num_dims() const {
return GetField<int32_t>(VT_NUM_DIMS, 0);
}
const ::flatbuffers::Vector<int32_t> *dims() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_DIMS);
}
uint64_t constant_buffer_size() const {
return GetField<uint64_t>(VT_CONSTANT_BUFFER_SIZE, 0);
}
const mpsgraph::Buffer *constant_buffer() const {
return GetPointer<const mpsgraph::Buffer *>(VT_CONSTANT_BUFFER);
}
uint64_t segment_offset() const {
return GetField<uint64_t>(VT_SEGMENT_OFFSET, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<int16_t>(verifier, VT_DATATYPE, 2) &&
VerifyField<int32_t>(verifier, VT_NUM_DIMS, 4) &&
VerifyOffset(verifier, VT_DIMS) &&
verifier.VerifyVector(dims()) &&
VerifyField<uint64_t>(verifier, VT_CONSTANT_BUFFER_SIZE, 8) &&
VerifyOffset(verifier, VT_CONSTANT_BUFFER) &&
verifier.VerifyTable(constant_buffer()) &&
VerifyField<uint64_t>(verifier, VT_SEGMENT_OFFSET, 8) &&
verifier.EndTable();
}
};
struct MPSTensorBuilder {
typedef MPSTensor Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_datatype(mpsgraph::MPSDataType datatype) {
fbb_.AddElement<int16_t>(MPSTensor::VT_DATATYPE, static_cast<int16_t>(datatype), 0);
}
void add_num_dims(int32_t num_dims) {
fbb_.AddElement<int32_t>(MPSTensor::VT_NUM_DIMS, num_dims, 0);
}
void add_dims(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims) {
fbb_.AddOffset(MPSTensor::VT_DIMS, dims);
}
void add_constant_buffer_size(uint64_t constant_buffer_size) {
fbb_.AddElement<uint64_t>(MPSTensor::VT_CONSTANT_BUFFER_SIZE, constant_buffer_size, 0);
}
void add_constant_buffer(::flatbuffers::Offset<mpsgraph::Buffer> constant_buffer) {
fbb_.AddOffset(MPSTensor::VT_CONSTANT_BUFFER, constant_buffer);
}
void add_segment_offset(uint64_t segment_offset) {
fbb_.AddElement<uint64_t>(MPSTensor::VT_SEGMENT_OFFSET, segment_offset, 0);
}
explicit MPSTensorBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSTensor> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSTensor>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSTensor> CreateMPSTensor(
::flatbuffers::FlatBufferBuilder &_fbb,
mpsgraph::MPSDataType datatype = mpsgraph::MPSDataType_mps_data_type_invalid,
int32_t num_dims = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> dims = 0,
uint64_t constant_buffer_size = 0,
::flatbuffers::Offset<mpsgraph::Buffer> constant_buffer = 0,
uint64_t segment_offset = 0) {
MPSTensorBuilder builder_(_fbb);
builder_.add_segment_offset(segment_offset);
builder_.add_constant_buffer_size(constant_buffer_size);
builder_.add_constant_buffer(constant_buffer);
builder_.add_dims(dims);
builder_.add_num_dims(num_dims);
builder_.add_datatype(datatype);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSTensor> CreateMPSTensorDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
mpsgraph::MPSDataType datatype = mpsgraph::MPSDataType_mps_data_type_invalid,
int32_t num_dims = 0,
const std::vector<int32_t> *dims = nullptr,
uint64_t constant_buffer_size = 0,
::flatbuffers::Offset<mpsgraph::Buffer> constant_buffer = 0,
uint64_t segment_offset = 0) {
auto dims__ = dims ? _fbb.CreateVector<int32_t>(*dims) : 0;
return mpsgraph::CreateMPSTensor(
_fbb,
datatype,
num_dims,
dims__,
constant_buffer_size,
constant_buffer,
segment_offset);
}
struct DataSegment FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef DataSegmentBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_OFFSET = 4,
VT_SIZE = 6
};
uint64_t offset() const {
return GetField<uint64_t>(VT_OFFSET, 0);
}
uint64_t size() const {
return GetField<uint64_t>(VT_SIZE, 0);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<uint64_t>(verifier, VT_OFFSET, 8) &&
VerifyField<uint64_t>(verifier, VT_SIZE, 8) &&
verifier.EndTable();
}
};
struct DataSegmentBuilder {
typedef DataSegment Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_offset(uint64_t offset) {
fbb_.AddElement<uint64_t>(DataSegment::VT_OFFSET, offset, 0);
}
void add_size(uint64_t size) {
fbb_.AddElement<uint64_t>(DataSegment::VT_SIZE, size, 0);
}
explicit DataSegmentBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<DataSegment> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<DataSegment>(end);
return o;
}
};
inline ::flatbuffers::Offset<DataSegment> CreateDataSegment(
::flatbuffers::FlatBufferBuilder &_fbb,
uint64_t offset = 0,
uint64_t size = 0) {
DataSegmentBuilder builder_(_fbb);
builder_.add_size(size);
builder_.add_offset(offset);
return builder_.Finish();
}
struct MPSGraph FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef MPSGraphBuilder Builder;
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_VERSION = 4,
VT_MPS_NODES = 6,
VT_MPS_VALUES = 8,
VT_INPUT_IDS = 10,
VT_OUTPUT_IDS = 12,
VT_CONSTANT_IDS = 14,
VT_GRAPH_TYPE = 16,
VT_CONSTANT_SEGMENT = 18
};
const ::flatbuffers::String *version() const {
return GetPointer<const ::flatbuffers::String *>(VT_VERSION);
}
const ::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSNode>> *mps_nodes() const {
return GetPointer<const ::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSNode>> *>(VT_MPS_NODES);
}
const ::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSTensor>> *mps_values() const {
return GetPointer<const ::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSTensor>> *>(VT_MPS_VALUES);
}
const ::flatbuffers::Vector<int32_t> *input_ids() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_INPUT_IDS);
}
const ::flatbuffers::Vector<int32_t> *output_ids() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_OUTPUT_IDS);
}
const ::flatbuffers::Vector<int32_t> *constant_ids() const {
return GetPointer<const ::flatbuffers::Vector<int32_t> *>(VT_CONSTANT_IDS);
}
mpsgraph::OpType graph_type() const {
return static_cast<mpsgraph::OpType>(GetField<int16_t>(VT_GRAPH_TYPE, 0));
}
const mpsgraph::DataSegment *constant_segment() const {
return GetPointer<const mpsgraph::DataSegment *>(VT_CONSTANT_SEGMENT);
}
bool Verify(::flatbuffers::Verifier &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffset(verifier, VT_VERSION) &&
verifier.VerifyString(version()) &&
VerifyOffset(verifier, VT_MPS_NODES) &&
verifier.VerifyVector(mps_nodes()) &&
verifier.VerifyVectorOfTables(mps_nodes()) &&
VerifyOffset(verifier, VT_MPS_VALUES) &&
verifier.VerifyVector(mps_values()) &&
verifier.VerifyVectorOfTables(mps_values()) &&
VerifyOffset(verifier, VT_INPUT_IDS) &&
verifier.VerifyVector(input_ids()) &&
VerifyOffset(verifier, VT_OUTPUT_IDS) &&
verifier.VerifyVector(output_ids()) &&
VerifyOffset(verifier, VT_CONSTANT_IDS) &&
verifier.VerifyVector(constant_ids()) &&
VerifyField<int16_t>(verifier, VT_GRAPH_TYPE, 2) &&
VerifyOffset(verifier, VT_CONSTANT_SEGMENT) &&
verifier.VerifyTable(constant_segment()) &&
verifier.EndTable();
}
};
struct MPSGraphBuilder {
typedef MPSGraph Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_version(::flatbuffers::Offset<::flatbuffers::String> version) {
fbb_.AddOffset(MPSGraph::VT_VERSION, version);
}
void add_mps_nodes(::flatbuffers::Offset<::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSNode>>> mps_nodes) {
fbb_.AddOffset(MPSGraph::VT_MPS_NODES, mps_nodes);
}
void add_mps_values(::flatbuffers::Offset<::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSTensor>>> mps_values) {
fbb_.AddOffset(MPSGraph::VT_MPS_VALUES, mps_values);
}
void add_input_ids(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> input_ids) {
fbb_.AddOffset(MPSGraph::VT_INPUT_IDS, input_ids);
}
void add_output_ids(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> output_ids) {
fbb_.AddOffset(MPSGraph::VT_OUTPUT_IDS, output_ids);
}
void add_constant_ids(::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> constant_ids) {
fbb_.AddOffset(MPSGraph::VT_CONSTANT_IDS, constant_ids);
}
void add_graph_type(mpsgraph::OpType graph_type) {
fbb_.AddElement<int16_t>(MPSGraph::VT_GRAPH_TYPE, static_cast<int16_t>(graph_type), 0);
}
void add_constant_segment(::flatbuffers::Offset<mpsgraph::DataSegment> constant_segment) {
fbb_.AddOffset(MPSGraph::VT_CONSTANT_SEGMENT, constant_segment);
}
explicit MPSGraphBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<MPSGraph> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<MPSGraph>(end);
return o;
}
};
inline ::flatbuffers::Offset<MPSGraph> CreateMPSGraph(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<::flatbuffers::String> version = 0,
::flatbuffers::Offset<::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSNode>>> mps_nodes = 0,
::flatbuffers::Offset<::flatbuffers::Vector<::flatbuffers::Offset<mpsgraph::MPSTensor>>> mps_values = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> input_ids = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> output_ids = 0,
::flatbuffers::Offset<::flatbuffers::Vector<int32_t>> constant_ids = 0,
mpsgraph::OpType graph_type = mpsgraph::OpType_mps_graph,
::flatbuffers::Offset<mpsgraph::DataSegment> constant_segment = 0) {
MPSGraphBuilder builder_(_fbb);
builder_.add_constant_segment(constant_segment);
builder_.add_constant_ids(constant_ids);
builder_.add_output_ids(output_ids);
builder_.add_input_ids(input_ids);
builder_.add_mps_values(mps_values);
builder_.add_mps_nodes(mps_nodes);
builder_.add_version(version);
builder_.add_graph_type(graph_type);
return builder_.Finish();
}
inline ::flatbuffers::Offset<MPSGraph> CreateMPSGraphDirect(
::flatbuffers::FlatBufferBuilder &_fbb,
const char *version = nullptr,
const std::vector<::flatbuffers::Offset<mpsgraph::MPSNode>> *mps_nodes = nullptr,
const std::vector<::flatbuffers::Offset<mpsgraph::MPSTensor>> *mps_values = nullptr,
const std::vector<int32_t> *input_ids = nullptr,
const std::vector<int32_t> *output_ids = nullptr,
const std::vector<int32_t> *constant_ids = nullptr,
mpsgraph::OpType graph_type = mpsgraph::OpType_mps_graph,
::flatbuffers::Offset<mpsgraph::DataSegment> constant_segment = 0) {
auto version__ = version ? _fbb.CreateString(version) : 0;
auto mps_nodes__ = mps_nodes ? _fbb.CreateVector<::flatbuffers::Offset<mpsgraph::MPSNode>>(*mps_nodes) : 0;
auto mps_values__ = mps_values ? _fbb.CreateVector<::flatbuffers::Offset<mpsgraph::MPSTensor>>(*mps_values) : 0;
auto input_ids__ = input_ids ? _fbb.CreateVector<int32_t>(*input_ids) : 0;
auto output_ids__ = output_ids ? _fbb.CreateVector<int32_t>(*output_ids) : 0;
auto constant_ids__ = constant_ids ? _fbb.CreateVector<int32_t>(*constant_ids) : 0;
return mpsgraph::CreateMPSGraph(
_fbb,
version__,
mps_nodes__,
mps_values__,
input_ids__,
output_ids__,
constant_ids__,
graph_type,
constant_segment);
}
inline bool VerifyMPSNodeUnion(::flatbuffers::Verifier &verifier, const void *obj, MPSNodeUnion type) {
switch (type) {
case MPSNodeUnion_NONE: {
return true;
}
case MPSNodeUnion_MPSHardTanh: {
auto ptr = reinterpret_cast<const mpsgraph::MPSHardTanh *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSReLU: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSGELU: {
auto ptr = reinterpret_cast<const mpsgraph::MPSGELU *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLeakyReLU: {
auto ptr = reinterpret_cast<const mpsgraph::MPSLeakyReLU *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSoftmax: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSoftmax *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLogSoftmax: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSoftmax *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAdd: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNodeWithAlpha2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSub: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNodeWithAlpha2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMul: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSDiv: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSDivNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSFmod: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSDivNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSRemainder: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSDivNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMin: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMax: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSPow: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAtan2: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSBitwiseAnd: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSBitwiseOr: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSBitwiseXor: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMinimum: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSExp: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSExp2: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSReciprocal: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSqrt: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSNeg: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLog: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLog10: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLog2: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSErf: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSFloor: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSCeil: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSRsqrt: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSigmoid: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSin: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSign: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSCos: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSTan: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAbs: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAsin: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAcos: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAtan: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSinh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSCosh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSTanh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAsinh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAcosh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAtanh: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSBitwiseNot: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSIsnan: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSIsinf: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSRound: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLogicalNot: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode1x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMatMul: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAddmm: {
auto ptr = reinterpret_cast<const mpsgraph::MPSAddmm *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSFull: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSFull *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSFullLike: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSFull *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSClamp: {
auto ptr = reinterpret_cast<const mpsgraph::MPSClamp *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSWhere: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode3x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSIndexSelect: {
auto ptr = reinterpret_cast<const mpsgraph::MPSIndexSelect *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSEmbedding: {
auto ptr = reinterpret_cast<const mpsgraph::MPSEmbedding *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSIndexTensor: {
auto ptr = reinterpret_cast<const mpsgraph::MPSIndexTensor *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSIndexPut: {
auto ptr = reinterpret_cast<const mpsgraph::MPSIndexPut *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSScatter: {
auto ptr = reinterpret_cast<const mpsgraph::MPSScatter *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMean: {
auto ptr = reinterpret_cast<const mpsgraph::MPSMean *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSPermute: {
auto ptr = reinterpret_cast<const mpsgraph::MPSPermute *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSView: {
auto ptr = reinterpret_cast<const mpsgraph::MPSView *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSExpand: {
auto ptr = reinterpret_cast<const mpsgraph::MPSView *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSCat: {
auto ptr = reinterpret_cast<const mpsgraph::MPSCat *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSqueeze: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSqueeze *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSUnsqueeze: {
auto ptr = reinterpret_cast<const mpsgraph::MPSUnsqueeze *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSelect: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSelect *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSlice: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSlice *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSPixelShuffle: {
auto ptr = reinterpret_cast<const mpsgraph::MPSPixelShuffle *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSSplitWithSizes: {
auto ptr = reinterpret_cast<const mpsgraph::MPSSplitWithSizes *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSCast: {
auto ptr = reinterpret_cast<const mpsgraph::MPSCast *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSConv2D: {
auto ptr = reinterpret_cast<const mpsgraph::MPSConv *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSDepthwiseConv2D: {
auto ptr = reinterpret_cast<const mpsgraph::MPSConv *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSEq: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSNe: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSGe: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSGt: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLe: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLt: {
auto ptr = reinterpret_cast<const mpsgraph::_MPSNode2x1 *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSBatchNorm: {
auto ptr = reinterpret_cast<const mpsgraph::MPSBatchNorm *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSLayerNorm: {
auto ptr = reinterpret_cast<const mpsgraph::MPSLayerNorm *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSMaxPool2DWithIndices: {
auto ptr = reinterpret_cast<const mpsgraph::MPSPooling2D *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSAvgPool2D: {
auto ptr = reinterpret_cast<const mpsgraph::MPSPooling2D *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSConstantPadND: {
auto ptr = reinterpret_cast<const mpsgraph::MPSConstantPadND *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSArange: {
auto ptr = reinterpret_cast<const mpsgraph::MPSArange *>(obj);
return verifier.VerifyTable(ptr);
}
case MPSNodeUnion_MPSDequantizePerChannelGroup: {
auto ptr = reinterpret_cast<const mpsgraph::MPSDequantizePerChannelGroup *>(obj);
return verifier.VerifyTable(ptr);
}
default: return true;
}
}
inline bool VerifyMPSNodeUnionVector(::flatbuffers::Verifier &verifier, const ::flatbuffers::Vector<::flatbuffers::Offset<void>> *values, const ::flatbuffers::Vector<uint8_t> *types) {
if (!values || !types) return !values && !types;
if (values->size() != types->size()) return false;
for (::flatbuffers::uoffset_t i = 0; i < values->size(); ++i) {
if (!VerifyMPSNodeUnion(
verifier, values->Get(i), types->GetEnum<MPSNodeUnion>(i))) {
return false;
}
}
return true;
}
inline const mpsgraph::MPSGraph *GetMPSGraph(const void *buf) {
return ::flatbuffers::GetRoot<mpsgraph::MPSGraph>(buf);
}
inline const mpsgraph::MPSGraph *GetSizePrefixedMPSGraph(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<mpsgraph::MPSGraph>(buf);
}
inline const char *MPSGraphIdentifier() {
return "MP00";
}
inline bool MPSGraphBufferHasIdentifier(const void *buf) {
return ::flatbuffers::BufferHasIdentifier(
buf, MPSGraphIdentifier());
}
inline bool SizePrefixedMPSGraphBufferHasIdentifier(const void *buf) {
return ::flatbuffers::BufferHasIdentifier(
buf, MPSGraphIdentifier(), true);
}
inline bool VerifyMPSGraphBuffer(
::flatbuffers::Verifier &verifier) {
return verifier.VerifyBuffer<mpsgraph::MPSGraph>(MPSGraphIdentifier());
}
inline bool VerifySizePrefixedMPSGraphBuffer(
::flatbuffers::Verifier &verifier) {
return verifier.VerifySizePrefixedBuffer<mpsgraph::MPSGraph>(MPSGraphIdentifier());
}
inline void FinishMPSGraphBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<mpsgraph::MPSGraph> root) {
fbb.Finish(root, MPSGraphIdentifier());
}
inline void FinishSizePrefixedMPSGraphBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<mpsgraph::MPSGraph> root) {
fbb.FinishSizePrefixed(root, MPSGraphIdentifier());
}
} // namespace mpsgraph
#endif // FLATBUFFERS_GENERATED_MPSSCHEMA_MPSGRAPH_H_
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