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#include <cstring> |
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#include <iostream> |
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#include <sstream> |
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#include "mlx/mlx.h" |
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#include "time_utils.h" |
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namespace mx = mlx::core; |
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void time_irregular_binary_ops_1D() { |
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auto device = mx::default_device(); |
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int size = 1000000; |
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int step = 2; |
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auto a = mx::random::uniform({size}); |
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auto b = mx::random::uniform({size}); |
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mx::eval(a, b); |
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a = slice(a, {0}, {size}, {step}); |
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b = slice(b, {0}, {size}, {step}); |
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TIMEM("1D strided", mx::add, a, b, device); |
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} |
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void time_irregular_binary_ops_2D() { |
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auto device = mx::default_device(); |
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int size = 2048; |
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auto a = mx::random::uniform({size, size}); |
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auto b = mx::random::uniform({size, size}); |
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mx::eval(a, b); |
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TIMEM("2D regular", mx::add, a, b, device); |
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b = mx::transpose(b); |
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mx::eval(b); |
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TIMEM("2D mx::transpose", mx::add, a, b, device); |
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b = mx::random::uniform({size}); |
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mx::eval(b); |
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TIMEM("2D broadcast dim 0", mx::add, a, b, device); |
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b = mx::reshape(b, {size, 1}); |
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mx::eval(b); |
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TIMEM("2D broadcast dim 1", mx::add, a, b, device); |
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} |
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void time_irregular_binary_ops_3D() { |
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auto device = mx::default_device(); |
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int d0 = 32; |
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int d1 = 512; |
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int d2 = 512; |
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auto a = mx::random::uniform({d0, d1, d2}); |
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auto b = mx::random::uniform({d0, d1, d2}); |
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TIMEM("3D regular", mx::add, a, b, device); |
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b = mx::transpose(b, {0, 2, 1}); |
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TIMEM("3D mx::transpose", mx::add, a, b, device); |
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b = mx::random::uniform({d1, d2}); |
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TIMEM("3D broadcast dim 0", mx::add, a, b, device); |
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b = mx::random::uniform({d0, 1, d2}); |
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TIMEM("3D broadcast dim 1", mx::add, a, b, device); |
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b = mx::random::uniform({d0, d1, 1}); |
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TIMEM("3D broadcast dim 2", mx::add, a, b, device); |
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b = mx::random::uniform({d2}); |
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TIMEM("3D broadcast dims 0, 1", mx::add, a, b, device); |
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b = mx::random::uniform({d1, 1}); |
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TIMEM("3D broadcast dims 0, 2", mx::add, a, b, device); |
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b = mx::random::uniform({d0, 1, 1}); |
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TIMEM("3D broadcast dims 1, 2", mx::add, a, b, device); |
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} |
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void time_irregular_binary_ops_4D() { |
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auto device = mx::default_device(); |
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std::vector<int> shape = {8, 8, 512, 512}; |
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auto a = mx::random::uniform(shape); |
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auto b = mx::random::uniform(shape); |
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TIMEM("4D regular", mx::add, a, b, device); |
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b = mx::transpose(b, {0, 1, 3, 2}); |
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TIMEM("4D mx::transpose", mx::add, a, b, device); |
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std::string om = "4D broadcast dims "; |
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for (int i = 0; i < shape.size(); ++i) { |
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shape[i] = 1; |
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b = mx::random::uniform(shape); |
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std::ostringstream msg; |
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msg << om << i; |
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TIMEM(msg.str(), mx::add, a, b, device); |
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for (int j = i + 1; j < shape.size(); ++j) { |
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shape[j] = 1; |
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std::ostringstream msg; |
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msg << om << i << ", " << j; |
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b = mx::random::uniform(shape); |
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TIMEM(msg.str(), mx::add, a, b, device); |
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shape[j] = a.shape(j); |
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for (int k = j + 1; k < shape.size(); ++k) { |
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shape[k] = 1; |
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std::ostringstream msg; |
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msg << om << i << ", " << j << ", " << k; |
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b = mx::random::uniform(shape); |
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TIMEM(msg.str(), mx::add, a, b, device); |
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shape[k] = a.shape(k); |
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} |
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} |
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shape[i] = a.shape(i); |
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} |
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} |
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void time_irregular_reshape() { |
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auto device = mx::default_device(); |
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std::vector<int> shape; |
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auto reshape_fn = [&shape, device](const mx::array& a) { |
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return mx::reshape(a, shape, device); |
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}; |
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int size = 64; |
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int d = 2 * size; |
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auto a = mx::random::uniform({d, d, d}); |
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shape = {8 * size, size, size}; |
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TIMEM("3D contiguous", reshape_fn, a); |
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a = mx::transpose(a); |
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shape = {8 * size, size, size}; |
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TIMEM("3D mx::transpose", reshape_fn, a); |
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a = mx::transpose(a, {1, 2, 0}); |
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shape = {8 * size, size, size}; |
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TIMEM("3D mx::transpose dims 1 2", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d, d}), {d, d, d}); |
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TIMEM("3D broadcast dim 0", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d, 1, d}), {d, d, d}); |
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TIMEM("3D broadcast dim 1", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d, d, 1}), {d, d, d}); |
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TIMEM("3D broadcast dim 2", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d}), {d, d, d}); |
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TIMEM("3D broadcast dims 0, 1", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d, 1}), {d, d, d}); |
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TIMEM("3D broadcast dims 0, 2", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({d, 1, 1}), {d, d, d}); |
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TIMEM("3D broadcast dims 1, 2", reshape_fn, a); |
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a = mx::broadcast_to(mx::random::uniform({1, 1, 1}), {d, d, d}); |
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TIMEM("3D broadcast dims 1, 2, 3", reshape_fn, a); |
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} |
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void time_irregular_astype_1D() { |
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auto device = mx::default_device(); |
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int size = 1000000; |
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int step = 2; |
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auto a = mx::random::uniform({size}); |
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a = slice(a, {0}, {size}, {step}); |
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TIMEM("1D strided", mx::astype, a, mx::int32, device); |
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} |
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void time_irregular_astype_2D() { |
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auto device = mx::default_device(); |
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int size = 2048; |
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std::vector<int> shape = {size, size}; |
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auto a = mx::random::uniform(shape); |
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TIMEM("2D regular", mx::astype, a, mx::int32, device); |
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a = mx::transpose(a); |
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TIMEM("2D mx::transpose", mx::astype, a, mx::int32, device); |
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a = mx::broadcast_to(mx::random::uniform({size}), shape); |
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TIMEM("2D broadcast dim 0", mx::astype, a, mx::int32, device); |
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a = mx::broadcast_to(mx::random::uniform({size, 1}), shape); |
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TIMEM("2D broadcast dim 1", mx::astype, a, mx::int32, device); |
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} |
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int main(int argc, char** argv) { |
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if (argc > 1) { |
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bool use_gpu = !strcmp(argv[1], "gpu"); |
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set_default_device(use_gpu ? mx::Device::gpu : mx::Device::cpu); |
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} |
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std::cout << "Benchmarks for " << mx::default_device() << std::endl; |
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time_irregular_binary_ops_1D(); |
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time_irregular_binary_ops_2D(); |
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time_irregular_binary_ops_3D(); |
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time_irregular_binary_ops_4D(); |
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time_irregular_reshape(); |
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time_irregular_astype_1D(); |
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time_irregular_astype_2D(); |
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} |
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