torch.compile (inductor)
PyTorch · python · MIT
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83_conv_depthwise_2D_square_input_asymmetric_kernel.py
curl "https://kernelindex.com/api/v1/implementations/kernelbench-l1-83-conv-depthwise-2d-square-input-asymmetric-kernel-torch-compile-inductor?include=source"interfacepython · torch_compile_inductor
symbolModel.forward
Compatibility
measured onNVIDIA H100
declared hardwaredeclared only
architectures—
dtypes
Benchmark evidence
2 measurements across 1 GPU, fastest first.
Operation / workload
Hardware
Latency
Rank
Observed
conv depthwise 2D square input asymmetric kernelfp32 · [64, 8, 512, 512]
NVIDIA H100
7.63ms±0.02
#2 of 2
2026-03-05
conv depthwise 2D square input asymmetric kernelfp32 · [64, 8, 512, 512]
NVIDIA H100
28.9ms±0.03
#2 of 2
2026-03-05
Reported · How evidence levels are derived →
Source and license
sourceavailable
revision digestsha256:5b58fc58f3321ff53724ddc4d9b2d8ddc04903a1e9d905a31a523e9031e71ed7
license declaredMIT
license concludedMIT
imported2026-08-26
Kernel source
83_conv_depthwise_2D_square_input_asymmetric_kernel.py47 lines
import torch
import torch.nn as nn
class Model(nn.Module):
"""
Performs a depthwise 2D convolution with a square input and an asymmetric kernel.
Args:
in_channels (int): Number of channels in the input tensor.
kernel_size (int): Size of the convolution kernel.
stride (int, optional): Stride of the convolution. Defaults to 1.
padding (int, optional): Padding applied to the input. Defaults to 0.
dilation (int, optional): Spacing between kernel elements. Defaults to 1.
bias (bool, optional): If `True`, adds a learnable bias to the output. Defaults to `False`.
"""
def __init__(self, in_channels: int, kernel_size: int, stride: int = 1, padding: int = 0, dilation: int = 1, bias: bool = False):
super(Model, self).__init__()
self.conv2d = nn.Conv2d(in_channels, in_channels, kernel_size=(kernel_size, 1), stride=stride, padding=padding, dilation=dilation, groups=in_channels, bias=bias)
def forward(self, x: torch.Tensor) -> torch.Tensor:
"""
Performs the depthwise 2D convolution.
Args:
x (torch.Tensor): Input tensor of shape (batch_size, in_channels, height, width).
Returns:
torch.Tensor: Output tensor of shape (batch_size, in_channels, height_out, width_out).
"""
return self.conv2d(x)
# Test code
batch_size = 64
in_channels = 8
kernel_size = 3
width = 512
height = 512
stride = 1
padding = 0
dilation = 1
def get_inputs():
x = torch.rand(batch_size, in_channels, height, width)
return [x]
def get_init_inputs():
return [in_channels, kernel_size, stride, padding, dilation]scrolls · 47 lines total
Source code from KernelBench, © 2023 Anne Ouyang, Simon Guo, Azalia Mirhoseini (Scaling Intelligence Lab, Stanford University), MIT License · MIT
Best evidence level for this revision: reported
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