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// clang-format off
// Generated file (from: tile_2.mod.py). Do not edit
void CreateModel(Model *model) {
OperandType type0(Type::TENSOR_FLOAT32, {2, 3});
OperandType type1(Type::TENSOR_INT32, {2});
OperandType type2(Type::TENSOR_FLOAT32, {4, 3});
// Phase 1, operands
auto input0 = model->addOperand(&type0);
auto multipliers = model->addOperand(&type1);
auto output0 = model->addOperand(&type2);
// Phase 2, operations
model->addOperation(ANEURALNETWORKS_TILE, {input0, multipliers}, {output0});
// Phase 3, inputs and outputs
model->identifyInputsAndOutputs(
{input0, multipliers},
{output0});
assert(model->isValid());
}
inline bool is_ignored(int i) {
static std::set<int> ignore = {};
return ignore.find(i) != ignore.end();
}
void CreateModel_relaxed(Model *model) {
OperandType type0(Type::TENSOR_FLOAT32, {2, 3});
OperandType type1(Type::TENSOR_INT32, {2});
OperandType type2(Type::TENSOR_FLOAT32, {4, 3});
// Phase 1, operands
auto input0 = model->addOperand(&type0);
auto multipliers = model->addOperand(&type1);
auto output0 = model->addOperand(&type2);
// Phase 2, operations
model->addOperation(ANEURALNETWORKS_TILE, {input0, multipliers}, {output0});
// Phase 3, inputs and outputs
model->identifyInputsAndOutputs(
{input0, multipliers},
{output0});
// Phase 4: set relaxed execution
model->relaxComputationFloat32toFloat16(true);
assert(model->isValid());
}
inline bool is_ignored_relaxed(int i) {
static std::set<int> ignore = {};
return ignore.find(i) != ignore.end();
}
void CreateModel_float16(Model *model) {
OperandType type1(Type::TENSOR_INT32, {2});
OperandType type3(Type::TENSOR_FLOAT16, {2, 3});
OperandType type4(Type::TENSOR_FLOAT16, {4, 3});
// Phase 1, operands
auto input0 = model->addOperand(&type3);
auto multipliers = model->addOperand(&type1);
auto output0 = model->addOperand(&type4);
// Phase 2, operations
model->addOperation(ANEURALNETWORKS_TILE, {input0, multipliers}, {output0});
// Phase 3, inputs and outputs
model->identifyInputsAndOutputs(
{input0, multipliers},
{output0});
assert(model->isValid());
}
inline bool is_ignored_float16(int i) {
static std::set<int> ignore = {};
return ignore.find(i) != ignore.end();
}
void CreateModel_quant8(Model *model) {
OperandType type1(Type::TENSOR_INT32, {2});
OperandType type5(Type::TENSOR_QUANT8_ASYMM, {2, 3}, 0.5f, 127);
OperandType type6(Type::TENSOR_QUANT8_ASYMM, {4, 3}, 0.5f, 127);
// Phase 1, operands
auto input0 = model->addOperand(&type5);
auto multipliers = model->addOperand(&type1);
auto output0 = model->addOperand(&type6);
// Phase 2, operations
model->addOperation(ANEURALNETWORKS_TILE, {input0, multipliers}, {output0});
// Phase 3, inputs and outputs
model->identifyInputsAndOutputs(
{input0, multipliers},
{output0});
assert(model->isValid());
}
inline bool is_ignored_quant8(int i) {
static std::set<int> ignore = {};
return ignore.find(i) != ignore.end();
}
void CreateModel_int32(Model *model) {
OperandType type1(Type::TENSOR_INT32, {2});
OperandType type7(Type::TENSOR_INT32, {2, 3});
OperandType type8(Type::TENSOR_INT32, {4, 3});
// Phase 1, operands
auto input0 = model->addOperand(&type7);
auto multipliers = model->addOperand(&type1);
auto output0 = model->addOperand(&type8);
// Phase 2, operations
model->addOperation(ANEURALNETWORKS_TILE, {input0, multipliers}, {output0});
// Phase 3, inputs and outputs
model->identifyInputsAndOutputs(
{input0, multipliers},
{output0});
assert(model->isValid());
}
inline bool is_ignored_int32(int i) {
static std::set<int> ignore = {};
return ignore.find(i) != ignore.end();
}