run_permute_bundle_example.inc 3.45 KB
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// SPDX-License-Identifier: MIT
// Copyright (c) 2018-2022, Advanced Micro Devices, Inc. All rights reserved.

#pragma once

bool run_permute_bundle(const Problem& problem)
{
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    constexpr std::size_t NumElemsInBundle = sizeof(BundleType) / sizeof(DataType);
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    using std::begin, std::end;

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    const auto& input_bundle_shape = problem.shape;
    const auto& input_bundle_axes  = problem.axes;
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    const auto output_bundle_shape = transpose(input_bundle_shape, input_bundle_axes);
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    Tensor<BundleType> input_bundle_tensor(input_bundle_shape);
    Tensor<BundleType> output_bundle_tensor(output_bundle_shape);
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    // initialize tensor by assigning DataType values
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    using std::data, std::size;
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    ck::utils::FillUniformDistribution<DataType>{-1.f, 1.f}(
        ck::span<DataType>{reinterpret_cast<DataType*>(data(input_bundle_tensor)),
                           input_bundle_tensor.GetElementSpaceSize() * NumElemsInBundle});
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    DeviceMem input_device_buf(input_bundle_tensor.GetElementSpaceSizeInBytes());
    DeviceMem output_device_buf(output_bundle_tensor.GetElementSpaceSizeInBytes());
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    input_device_buf.ToDevice(data(input_bundle_tensor));
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    const void* input_bundle_data = input_device_buf.GetDeviceBuffer();
    void* output_bundle_data      = output_device_buf.GetDeviceBuffer();
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    static_assert(std::is_default_constructible_v<DevicePermuteInstance>);

    auto permute  = DevicePermuteInstance{};
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    auto argument = permute.MakeArgument(to_array(input_bundle_shape),
                                         to_array(input_bundle_tensor.GetStrides()),
                                         to_array(output_bundle_shape),
                                         to_array(output_bundle_tensor.GetStrides()),
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                                         input_bundle_data,
                                         output_bundle_data,
                                         PassThrough{});
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    if(!permute.IsSupportedArgument(argument))
    {
        std::cerr << "The runtime parameters seems not supported by the device instance, exiting!"
                  << std::endl;
        return false;
    };

    auto invoker   = permute.MakeInvoker();
    float ave_time = invoker.Run(argument, StreamConfig{nullptr, true});

    std::cout << "Perf: " << ave_time << " ms" << std::endl;

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    output_device_buf.FromDevice(data(output_bundle_tensor));
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    // extend tensor shape from [N, H, W] to [N, H, W, NumElemsInBundle]
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    //               axes  from [0, 2, 1] to [0, 2, 1, 3]
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    const auto input_shape = extend_shape(input_bundle_shape, NumElemsInBundle);
    const auto input_axes  = extend_axes(input_bundle_axes);
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    Tensor<DataType> input_tensor(input_shape);
    std::memcpy(data(input_tensor),
                data(input_bundle_tensor),
                input_bundle_tensor.GetElementSpaceSizeInBytes());
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    Tensor<DataType> output_tensor(transpose(input_shape, input_axes));
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    if(!host_permute(input_tensor, input_axes, PassThrough{}, output_tensor))
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    {
        return false;
    }

    return ck::utils::check_err(
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        ck::span<const DataType>{reinterpret_cast<DataType*>(data(output_bundle_tensor)),
                                 output_bundle_tensor.GetElementSpaceSize() * NumElemsInBundle},
        ck::span<const DataType>{output_tensor},
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        "Error: incorrect results in output tensor",
        1e-6,
        1e-6);
}

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bool run_permute_bundle_example(const Problem::Shape& shape, const Problem::Axes& axes)
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{
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    return run_permute_bundle(Problem{shape, axes});
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}