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pcdet/ops/pointnet2/pointnet2_batch/src/ball_query_gpu.cu
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73
pcdet/ops/pointnet2/pointnet2_batch/src/ball_query_gpu.cu
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/*
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batch version of ball query, modified from the original implementation of official PointNet++ codes.
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Written by Shaoshuai Shi
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All Rights Reserved 2018.
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*/
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#include <math.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include "ball_query_gpu.h"
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#include "cuda_utils.h"
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__global__ void ball_query_kernel_fast(int b, int n, int m, float radius, int nsample,
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const float *__restrict__ new_xyz, const float *__restrict__ xyz, int *__restrict__ idx) {
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// new_xyz: (B, M, 3)
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// xyz: (B, N, 3)
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// output:
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// idx: (B, M, nsample)
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int bs_idx = blockIdx.y;
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int pt_idx = blockIdx.x * blockDim.x + threadIdx.x;
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if (bs_idx >= b || pt_idx >= m) return;
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new_xyz += bs_idx * m * 3 + pt_idx * 3;
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xyz += bs_idx * n * 3;
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idx += bs_idx * m * nsample + pt_idx * nsample;
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float radius2 = radius * radius;
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float new_x = new_xyz[0];
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float new_y = new_xyz[1];
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float new_z = new_xyz[2];
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int cnt = 0;
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for (int k = 0; k < n; ++k) {
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float x = xyz[k * 3 + 0];
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float y = xyz[k * 3 + 1];
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float z = xyz[k * 3 + 2];
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float d2 = (new_x - x) * (new_x - x) + (new_y - y) * (new_y - y) + (new_z - z) * (new_z - z);
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if (d2 < radius2){
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if (cnt == 0){
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for (int l = 0; l < nsample; ++l) {
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idx[l] = k;
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}
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}
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idx[cnt] = k;
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++cnt;
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if (cnt >= nsample) break;
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}
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}
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}
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void ball_query_kernel_launcher_fast(int b, int n, int m, float radius, int nsample, \
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const float *new_xyz, const float *xyz, int *idx) {
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// new_xyz: (B, M, 3)
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// xyz: (B, N, 3)
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// output:
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// idx: (B, M, nsample)
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cudaError_t err;
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dim3 blocks(DIVUP(m, THREADS_PER_BLOCK), b); // blockIdx.x(col), blockIdx.y(row)
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dim3 threads(THREADS_PER_BLOCK);
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ball_query_kernel_fast<<<blocks, threads>>>(b, n, m, radius, nsample, new_xyz, xyz, idx);
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// cudaDeviceSynchronize(); // for using printf in kernel function
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err = cudaGetLastError();
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if (cudaSuccess != err) {
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fprintf(stderr, "CUDA kernel failed : %s\n", cudaGetErrorString(err));
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exit(-1);
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}
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}
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