// Tencent is pleased to support the open source community by making ncnn available. // // Copyright (C) 2020 THL A29 Limited, a Tencent company. All rights reserved. // // Licensed under the BSD 3-Clause License (the "License"); you may not use this file except // in compliance with the License. You may obtain a copy of the License at // // https://opensource.org/licenses/BSD-3-Clause // // Unless required by applicable law or agreed to in writing, software distributed // under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR // CONDITIONS OF ANY KIND, either express or implied. See the License for the // specific language governing permissions and limitations under the License. #version 450 #if NCNN_fp16_storage #extension GL_EXT_shader_16bit_storage: require struct sfpvec8 { f16vec4 abcd; f16vec4 efgh; }; #endif #if NCNN_fp16_arithmetic #extension GL_EXT_shader_explicit_arithmetic_types_float16: require #endif layout (constant_id = 0) const int axis = 0; #define shape_constant_id_offset 1 layout (constant_id = shape_constant_id_offset + 0) const int dims = 0; layout (constant_id = shape_constant_id_offset + 1) const int w = 0; layout (constant_id = shape_constant_id_offset + 2) const int h = 0; layout (constant_id = shape_constant_id_offset + 3) const int d = 0; layout (constant_id = shape_constant_id_offset + 4) const int c = 0; layout (constant_id = shape_constant_id_offset + 5) const int cstep = 0; layout (constant_id = shape_constant_id_offset + 6) const int outdims = 0; layout (constant_id = shape_constant_id_offset + 7) const int outw = 0; layout (constant_id = shape_constant_id_offset + 8) const int outh = 0; layout (constant_id = shape_constant_id_offset + 9) const int outd = 0; layout (constant_id = shape_constant_id_offset + 10) const int outc = 0; layout (constant_id = shape_constant_id_offset + 11) const int outcstep = 0; #if NCNN_image_shader layout (binding = 0) uniform unfp sampler3D bottom_blob_3d; layout (binding = 1, imfmtc1) writeonly uniform unfp image3D top_blob_3d; #else layout (binding = 0) readonly buffer bottom_blob { sfpvec8 bottom_blob_data[]; }; layout (binding = 1) writeonly buffer top_blob { sfp top_blob_data[]; }; #endif layout (push_constant) uniform parameter { int dims; int w; int h; int d; int c; int cstep; int outdims; int outw; int outh; int outd; int outc; int outcstep; int offset; } p; void main() { int gx = int(gl_GlobalInvocationID.x); int gy = int(gl_GlobalInvocationID.y); int gz = int(gl_GlobalInvocationID.z); if (gx >= psc(w) || gy >= psc(h) * psc(d) || gz >= psc(c)) return; int positive_axis = axis < 0 ? psc(dims) + axis : axis; ivec3 gxyz; if (psc(dims) == 4) { int yd = gy / psc(h); int yh = gy % psc(h); ivec4 gxydz = ivec4(gx, yh, yd, gz); gxydz[psc(dims) - 1] *= 8; gxydz[psc(dims) - 1 - positive_axis] += p.offset; gxyz = ivec3(gxydz.r, gxydz.g + gxydz.b * psc(outh), gxydz.a); } else { gxyz = ivec3(gx, gy, gz); gxyz[psc(dims) - 1] *= 8; gxyz[psc(dims) - 1 - positive_axis] += p.offset; } #if NCNN_image_shader afpvec8 v = image3d_ld8(bottom_blob_3d, ivec3(gx, gy, gz)); if (psc(dims) == 1) { image3d_st1(top_blob_3d, ivec3(gxyz.x + 0, 0, 0), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 1, 0, 0), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 2, 0, 0), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 3, 0, 0), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x + 4, 0, 0), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 5, 0, 0), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 6, 0, 0), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 7, 0, 0), v[1].a); } else if (psc(dims) == 2) { if (positive_axis == 0) { image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 0, 0), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 1, 0), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 2, 0), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 3, 0), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 4, 0), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 5, 0), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 6, 0), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 7, 0), v[1].a); } if (positive_axis == 1) { image3d_st1(top_blob_3d, ivec3(gxyz.x + 0, gxyz.y, 0), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 1, gxyz.y, 0), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 2, gxyz.y, 0), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 3, gxyz.y, 0), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x + 4, gxyz.y, 0), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 5, gxyz.y, 0), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 6, gxyz.y, 0), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 7, gxyz.y, 0), v[1].a); } } else // if (psc(dims) == 3) { if (positive_axis == 0) { image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 0), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 1), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 2), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 3), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 4), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 5), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 6), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y, gxyz.z + 7), v[1].a); } if (positive_axis == 1) { image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 0, gxyz.z), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 1, gxyz.z), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 2, gxyz.z), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 3, gxyz.z), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 4, gxyz.z), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 5, gxyz.z), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 6, gxyz.z), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x, gxyz.y + 7, gxyz.z), v[1].a); } if (positive_axis == 2) { image3d_st1(top_blob_3d, ivec3(gxyz.x + 0, gxyz.y, gxyz.z), v[0].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 1, gxyz.y, gxyz.z), v[0].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 2, gxyz.y, gxyz.z), v[0].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 3, gxyz.y, gxyz.z), v[0].a); image3d_st1(top_blob_3d, ivec3(gxyz.x + 4, gxyz.y, gxyz.z), v[1].r); image3d_st1(top_blob_3d, ivec3(gxyz.x + 5, gxyz.y, gxyz.z), v[1].g); image3d_st1(top_blob_3d, ivec3(gxyz.x + 6, gxyz.y, gxyz.z), v[1].b); image3d_st1(top_blob_3d, ivec3(gxyz.x + 7, gxyz.y, gxyz.z), v[1].a); } } #else const int gi = gz * psc(cstep) + gy * psc(w) + gx; int v_offset_0 = gxyz.z * psc(outcstep) + gxyz.y * psc(outw) + gxyz.x; ivec4 gxydz4; if (psc(dims) == 4) { gxydz4 = ivec4(1, psc(outw), psc(outw) * psc(outh), psc(outcstep)); } else { gxydz4 = ivec4(1, psc(outw), psc(outcstep), 0); } ivec4 v_offset = v_offset_0 + ivec4(0, 1, 2, 3) * gxydz4[psc(dims) - 1 - positive_axis]; ivec4 vv_offset = v_offset + 4 * gxydz4[psc(dims) - 1 - positive_axis]; buffer_cp8to1(top_blob_data, v_offset, vv_offset, bottom_blob_data, gi); #endif }