Bigger dimensions
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149
benches.py
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149
benches.py
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@@ -0,0 +1,149 @@
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import torch
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import sys
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import torch.utils.benchmark as benchmark
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import numpy as np
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import json
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import polars as pl
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import dataclasses
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import workloads as wl
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from config import Statistics, Configuration
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device = torch.device("cuda:0")
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ITERATIONS = 100_000
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def run_gemv_bench(workload, level):
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match level:
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case "X1":
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ROWS = 1024 * 1
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case "X2":
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ROWS = 1024 * 2
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case "X3":
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ROWS = 1024 * 4
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case "X4":
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ROWS = 1024 * 8
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match level:
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case "X1":
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COLUMNS = 1024 * 4
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case "X2":
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COLUMNS = 1024 * 4
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case "X3":
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COLUMNS = 1024 * 8
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case "X4":
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COLUMNS = 1024 * 8
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matrix = torch.rand(
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(ROWS, COLUMNS),
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dtype=torch.float16,
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device=device,
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)
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input_vector = torch.rand(COLUMNS, dtype=torch.float16, device=device)
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start = torch.cuda.Event(enable_timing=True)
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end = torch.cuda.Event(enable_timing=True)
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start.record()
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for _ in range(ITERATIONS):
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torch.matmul(matrix, input_vector)
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end.record()
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torch.cuda.synchronize()
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runtime = int(start.elapsed_time(end) * 1e9 / ITERATIONS)
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return runtime
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def run_gemv_layers_bench(workload, level):
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match level:
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case "X1":
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DIMENSIONS = 256
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case "X2":
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DIMENSIONS = 512
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case "X3":
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DIMENSIONS = 1024
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case "X4":
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DIMENSIONS = 2048
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matrix = torch.rand(
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(DIMENSIONS, DIMENSIONS),
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dtype=torch.float16,
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device=device,
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)
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input_vector = torch.rand(DIMENSIONS, dtype=torch.float16, device=device)
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start = torch.cuda.Event(enable_timing=True)
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end = torch.cuda.Event(enable_timing=True)
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start.record()
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for _ in range(ITERATIONS):
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for _ in range(5):
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input_vector = torch.matmul(matrix, input_vector)
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input_vector.relu()
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end.record()
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torch.cuda.synchronize()
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runtime = int(start.elapsed_time(end) * 1e9 / ITERATIONS)
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return runtime
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def run_vector_bench(workload, level):
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match level:
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case "X1":
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ROWS = 2097152 * 1
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case "X2":
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ROWS = 2097152 * 2
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case "X3":
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ROWS = 2097152 * 4
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case "X4":
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ROWS = 2097152 * 8
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vector_a = torch.rand(ROWS, dtype=torch.float16, device=device)
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vector_b = torch.rand(ROWS, dtype=torch.float16, device=device)
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func = getattr(wl, workload)
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start = torch.cuda.Event(enable_timing=True)
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end = torch.cuda.Event(enable_timing=True)
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start.record()
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for _ in range(ITERATIONS):
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match workload:
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case "vadd":
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torch.add(vector_a, vector_b)
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case "vmul":
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torch.mul(vector_a, vector_b)
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case "haxpy":
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torch.add(vector_a, vector_b, alpha=2)
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end.record()
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torch.cuda.synchronize()
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runtime = int(start.elapsed_time(end) * 1e9 / ITERATIONS)
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return runtime
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workloads = [
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("vadd", run_vector_bench),
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("vmul", run_vector_bench),
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("haxpy", run_vector_bench),
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("gemv", run_gemv_bench),
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("gemv_layers", run_gemv_layers_bench),
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]
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config = Configuration(**json.loads(sys.argv[1]))
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match config.workload:
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case "vadd" | "vmul" | "haxpy":
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runtime = run_vector_bench(config.workload, config.level)
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case "gemv":
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runtime = run_gemv_bench(config.workload, config.level)
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case "gemv_layers":
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runtime = run_gemv_layers_bench(config.workload, config.level)
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print(json.dumps(dataclasses.asdict(Statistics(runtime))))
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@@ -2,6 +2,7 @@ from dataclasses import dataclass
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@dataclass
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class Configuration:
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workload: str
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level: str
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@dataclass
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@@ -1,120 +0,0 @@
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import torch
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import sys
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import torch.utils.benchmark as benchmark
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import numpy as np
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import json
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import polars as pl
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import dataclasses
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from config import Statistics, Configuration
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# device = torch.device("cuda:0")
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device = torch.device("cpu")
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# ITERATIONS = 1_000_000
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ITERATIONS = 1_000
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def run_gemv_bench(workload, level):
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match level:
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case "X1":
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ROWS = 16
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case "X2":
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ROWS = 32
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case "X3":
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ROWS = 64
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case "X4":
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ROWS = 128
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COLUMNS = 128
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matrix = torch.rand(
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(ROWS, COLUMNS),
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dtype=torch.float16,
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device=device,
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)
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input_vector = torch.rand(COLUMNS, dtype=torch.float16, device=device)
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timer = benchmark.Timer(
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stmt="gemv(matrix, input_vector)",
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setup="from workloads import gemv",
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globals={"input_vector": input_vector, "matrix": matrix},
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)
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return int(timer.timeit(ITERATIONS).mean * 1e12)
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def run_gemv_layers_bench(workload, level):
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LESS_ITERATIONS = int(ITERATIONS / 100)
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match level:
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case "X1":
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DIMENSIONS = 128
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case "X2":
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DIMENSIONS = 256
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case "X3":
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DIMENSIONS = 512
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case "X4":
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DIMENSIONS = 1024
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matrix = torch.rand(
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(DIMENSIONS, DIMENSIONS),
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dtype=torch.float16,
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device=device,
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)
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input_vector = torch.rand(DIMENSIONS, dtype=torch.float16, device=device)
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timer = benchmark.Timer(
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stmt="gemv_layers(matrix, input_vector)",
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setup="from workloads import gemv_layers",
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globals={"input_vector": input_vector, "matrix": matrix},
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)
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return int(timer.timeit(LESS_ITERATIONS).mean * 1e12)
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def run_vector_bench(workload, level):
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match level:
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case "X1":
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ROWS = 256
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case "X2":
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ROWS = 512
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case "X3":
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ROWS = 1024
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case "X4":
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ROWS = 2048
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vector_a = torch.rand(ROWS, dtype=torch.float16, device=device)
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vector_b = torch.rand(ROWS, dtype=torch.float16, device=device)
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timer = benchmark.Timer(
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stmt=f"{workload}(vector_a, vector_b)",
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setup=f"from workloads import {workload}",
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globals={"vector_a": vector_a, "vector_b": vector_b},
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)
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return int(timer.timeit(ITERATIONS).mean * 1e12)
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workloads = [
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("vadd", run_vector_bench),
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("vmul", run_vector_bench),
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("haxpy", run_vector_bench),
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("gemv", run_gemv_bench),
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("gemv_layers", run_gemv_layers_bench),
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]
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levels = ["X1", "X2", "X3", "X4"]
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results: list[dict] = []
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for workload, workload_callback in workloads:
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for level in levels:
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runtime = workload_callback(workload, level)
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element = {"workload": workload, "level": level, "runtime": runtime}
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results.append(element)
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print(element)
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df = pl.DataFrame(results)
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df.write_csv("rocm_results.csv")
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36
run_microbenchmarks.py
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36
run_microbenchmarks.py
Normal file
@@ -0,0 +1,36 @@
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import dataclasses
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import json
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import polars as pl
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import subprocess
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from config import Configuration, Statistics
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workloads = [
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"vadd",
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"vmul",
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"haxpy",
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"gemv",
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"gemv_layers"
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]
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levels = ["X1", "X2", "X3", "X4"]
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results: list[dict] = []
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for workload in workloads:
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for level in levels:
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config = Configuration(workload, level)
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serialized_config = json.dumps(dataclasses.asdict(config))
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out = subprocess.run(
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["python3", "benches.py", serialized_config], capture_output=True
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)
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statistics = Statistics(**json.loads(out.stdout))
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result = {"workload": workload, "level": level, "runtime": statistics.runtime}
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results.append(result)
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print(result)
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df = pl.DataFrame(results)
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df.write_csv("rocm_results.csv")
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