| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| |
|
| | #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 op_type = 0; |
| |
|
| | #define shape_constant_id_offset 1 |
| | layout (constant_id = shape_constant_id_offset + 0) const int adims = 0; |
| | layout (constant_id = shape_constant_id_offset + 1) const int aw = 0; |
| | layout (constant_id = shape_constant_id_offset + 2) const int ah = 0; |
| | layout (constant_id = shape_constant_id_offset + 3) const int ad = 0; |
| | layout (constant_id = shape_constant_id_offset + 4) const int ac = 0; |
| | layout (constant_id = shape_constant_id_offset + 5) const int acstep = 0; |
| |
|
| | layout (constant_id = shape_constant_id_offset + 6) const int bdims = 0; |
| | layout (constant_id = shape_constant_id_offset + 7) const int bw = 0; |
| | layout (constant_id = shape_constant_id_offset + 8) const int bh = 0; |
| | layout (constant_id = shape_constant_id_offset + 9) const int bd = 0; |
| | layout (constant_id = shape_constant_id_offset + 10) const int bc = 0; |
| | layout (constant_id = shape_constant_id_offset + 11) const int bcstep = 0; |
| |
|
| | layout (constant_id = shape_constant_id_offset + 12) const int outdims = 0; |
| | layout (constant_id = shape_constant_id_offset + 13) const int outw = 0; |
| | layout (constant_id = shape_constant_id_offset + 14) const int outh = 0; |
| | layout (constant_id = shape_constant_id_offset + 15) const int outd = 0; |
| | layout (constant_id = shape_constant_id_offset + 16) const int outc = 0; |
| | layout (constant_id = shape_constant_id_offset + 17) const int outcstep = 0; |
| |
|
| | #if NCNN_image_shader |
| | layout (binding = 0) uniform unfp sampler3D a_blob_3d; |
| | layout (binding = 1) uniform unfp sampler3D b_blob_3d; |
| | layout (binding = 2, imfmtc4) writeonly uniform unfp image3D top_blob_3d; |
| | #else |
| | layout (binding = 0) readonly buffer a_blob { sfpvec8 a_blob_data[]; }; |
| | layout (binding = 1) readonly buffer b_blob { sfp b_blob_data[]; }; |
| | layout (binding = 2) writeonly buffer top_blob { sfpvec8 top_blob_data[]; }; |
| | #endif |
| |
|
| | layout (push_constant) uniform parameter |
| | { |
| | int adims; |
| | int aw; |
| | int ah; |
| | int ad; |
| | int ac; |
| | int acstep; |
| |
|
| | int bdims; |
| | int bw; |
| | int bh; |
| | int bd; |
| | int bc; |
| | int bcstep; |
| |
|
| | int outdims; |
| | int outw; |
| | int outh; |
| | int outd; |
| | int outc; |
| | int outcstep; |
| | } p; |
| |
|
| | void main() |
| | { |
| | int gx = int(gl_GlobalInvocationID.x); |
| | int gy = int(gl_GlobalInvocationID.y); |
| | int gz = int(gl_GlobalInvocationID.z); |
| |
|
| | if (gx >= psc(outw) || gy >= psc(outh) * psc(outd) || gz >= psc(outc)) |
| | return; |
| |
|
| | int yd = gy / psc(outh); |
| | int yh = gy % psc(outh); |
| |
|
| | |
| | int ax = min(gx, psc(aw) - 1); |
| | int ay = min(yd, psc(ad) - 1) * psc(ah) + min(yh, psc(ah) - 1); |
| | int az = min(gz, psc(ac) - 1); |
| |
|
| | int bx = min(gx, psc(bw) - 1); |
| | int by = min(yd, psc(bd) - 1) * psc(bh) + min(yh, psc(bh) - 1); |
| | int bz = min(gz, psc(bc) - 1); |
| |
|
| | #if NCNN_image_shader |
| | afpvec8 v1 = image3d_ld8(a_blob_3d, ivec3(ax, ay, az)); |
| | afp b = image3d_ld1(b_blob_3d, ivec3(bx, by, bz)); |
| | #else |
| | int ai = az * psc(acstep) + ay * psc(aw) + ax; |
| | int bi = bz * psc(bcstep) + by * psc(bw) + bx; |
| |
|
| | afpvec8 v1 = buffer_ld8(a_blob_data, ai); |
| | afp b = buffer_ld1(b_blob_data, bi); |
| | #endif |
| | afpvec8 v2; |
| | v2[0] = afpvec4(b); |
| | v2[1] = afpvec4(b); |
| |
|
| | afpvec8 res; |
| |
|
| | if (op_type == 0) |
| | { |
| | res[0] = v1[0] + v2[0]; |
| | res[1] = v1[1] + v2[1]; |
| | } |
| | if (op_type == 1) |
| | { |
| | res[0] = v1[0] - v2[0]; |
| | res[1] = v1[1] - v2[1]; |
| | } |
| | if (op_type == 2) |
| | { |
| | res[0] = v1[0] * v2[0]; |
| | res[1] = v1[1] * v2[1]; |
| | } |
| | if (op_type == 3) |
| | { |
| | res[0] = v1[0] / v2[0]; |
| | res[1] = v1[1] / v2[1]; |
| | } |
| | if (op_type == 4) |
| | { |
| | res[0] = max(v1[0], v2[0]); |
| | res[1] = max(v1[1], v2[1]); |
| | } |
| | if (op_type == 5) |
| | { |
| | res[0] = min(v1[0], v2[0]); |
| | res[1] = min(v1[1], v2[1]); |
| | } |
| | if (op_type == 6) |
| | { |
| | res[0] = pow(v1[0], v2[0]); |
| | res[1] = pow(v1[1], v2[1]); |
| | } |
| | if (op_type == 7) |
| | { |
| | res[0] = v2[0] - v1[0]; |
| | res[1] = v2[1] - v1[1]; |
| | } |
| | if (op_type == 8) |
| | { |
| | res[0] = v2[0] / v1[0]; |
| | res[1] = v2[1] / v1[1]; |
| | } |
| | if (op_type == 9) |
| | { |
| | res[0] = pow(v2[0], v1[0]); |
| | res[1] = pow(v2[1], v1[1]); |
| | } |
| | if (op_type == 10) |
| | { |
| | #if NCNN_moltenvk |
| | res[0] = afpvec4(atan(vec4(v1[0]), vec4(v2[0]))); |
| | res[1] = afpvec4(atan(vec4(v1[1]), vec4(v2[1]))); |
| | #else |
| | res[0] = atan(v1[0], v2[0]); |
| | res[1] = atan(v1[1], v2[1]); |
| | #endif |
| | } |
| | if (op_type == 11) |
| | { |
| | #if NCNN_moltenvk |
| | res[0] = afpvec4(atan(vec4(v2[0]), vec4(v1[0]))); |
| | res[1] = afpvec4(atan(vec4(v2[1]), vec4(v1[1]))); |
| | #else |
| | res[0] = atan(v2[0], v1[0]); |
| | res[1] = atan(v2[1], v1[1]); |
| | #endif |
| | } |
| |
|
| | #if NCNN_image_shader |
| | image3d_st8(top_blob_3d, ivec3(gx, gy, gz), res); |
| | #else |
| | int gi = gz * psc(outcstep) + gy * psc(outw) + gx; |
| | buffer_st8(top_blob_data, gi, res); |
| | #endif |
| | } |
| |
|