use ebcandle_metal_kernels::{call_affine, Kernels}; use metal::objc::rc::autoreleasepool; use metal::{Device, MTLResourceOptions}; use rand; use std::any::type_name; use std::time::Instant; fn main() { let device = Device::system_default().unwrap(); let kernels = Kernels::new(); let f32_1k = (0..1000).map(|_| rand::random::()).collect::>(); let f32_10k = (0..10000) .map(|_| rand::random::()) .collect::>(); let f32_100k = (0..100000) .map(|_| rand::random::()) .collect::>(); println!( "{0: <5} | {1: <19} | {2: <6} | {3: <5} | {4: <11} | {5: <11}", "dtype", "kernel", "size", "runs", "total time", "avg time" ); // f32 run_affine_bench(&device, &kernels, &f32_1k); run_affine_bench(&device, &kernels, &f32_10k); run_affine_bench(&device, &kernels, &f32_100k); } fn run_affine_bench(device: &Device, kernels: &Kernels, v: &[T]) { let command_queue = device.new_command_queue(); let options = MTLResourceOptions::StorageModeManaged; let iterations = 10000; let input = device.new_buffer_with_data( v.as_ptr() as *const core::ffi::c_void, core::mem::size_of_val(v) as u64, options, ); let mut output = device.new_buffer(core::mem::size_of_val(v) as u64, options); let mul: f32 = 1.2345; let add: f32 = 2.3456; let total_time = autoreleasepool(|| { let command_buffer = command_queue.new_command_buffer(); let start = Instant::now(); for _ in 0..iterations { call_affine( &device, command_buffer, &kernels, "affine_float", v.len(), &input, &mut output, mul, add, ) .unwrap(); } command_buffer.commit(); command_buffer.wait_until_completed(); start.elapsed() }); println!( "{0: <5} | {1: <19} | {2: <6} | {3: <5} | {4: <11?} | {5: <11?}", type_name::().split("::").last().unwrap(), "affine", v.len(), iterations, total_time, total_time / iterations ); }