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@ -79,15 +79,73 @@ |
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#define ADDR_B(i, b_edge, addr) ((i) >= (b_edge) ? (i)-(b_edge) : (addr)) |
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#endif |
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#define THREADS 256 |
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#define ELEM(i, l_edge, r_edge, elem1, elem2) (i) >= (l_edge) && (i) < (r_edge) ? (elem1) : (elem2) |
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inline void update_dst_C1_D0(__global uchar *dst, __local uint* temp, |
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int dst_rows, int dst_cols, |
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int dst_startX, int dst_x_off, |
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float alpha) |
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{ |
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if(get_local_id(0) < anX || get_local_id(0) >= (THREADS-ksX+anX+1)) |
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{ |
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return; |
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} |
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uint4 tmp_sum = 0; |
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int posX = dst_startX - dst_x_off + (get_local_id(0)-anX)*4; |
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int posY = (get_group_id(1) << 1); |
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for(int i=-anX; i<=anX; i++) |
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{ |
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tmp_sum += vload4(get_local_id(0), temp+i); |
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} |
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if(posY < dst_rows && posX < dst_cols) |
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{ |
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tmp_sum /= (uint4) alpha; |
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if(posX >= 0 && posX < dst_cols) |
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*(dst) = tmp_sum.x; |
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if(posX+1 >= 0 && posX+1 < dst_cols) |
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*(dst + 1) = tmp_sum.y; |
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if(posX+2 >= 0 && posX+2 < dst_cols) |
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*(dst + 2) = tmp_sum.z; |
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if(posX+3 >= 0 && posX+3 < dst_cols) |
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*(dst + 3) = tmp_sum.w; |
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} |
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} |
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inline void update_dst_C4_D0(__global uchar4 *dst, __local uint4* temp, |
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int dst_rows, int dst_cols, |
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int dst_startX, int dst_x_off, |
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float alpha) |
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{ |
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if(get_local_id(0) >= (THREADS-ksX+1)) |
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{ |
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return; |
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} |
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int posX = dst_startX - dst_x_off + get_local_id(0); |
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int posY = (get_group_id(1) << 1); |
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uint4 temp_sum = 0; |
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for(int i=-anX; i<=anX; i++) |
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{ |
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temp_sum += temp[get_local_id(0) + anX + i]; |
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} |
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if(posX >= 0 && posX < dst_cols && posY >= 0 && posY < dst_rows) |
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*dst = convert_uchar4(convert_float4(temp_sum)/alpha); |
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} |
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/////////////////////////////////////////////////////////////////////////////////////////////////// |
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/////////////////////////////////////////8uC1//////////////////////////////////////////////////////// |
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//////////////////////////////////////////////////////////////////////////////////////////////////// |
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#define THREADS 256 |
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#define ELEM(i, l_edge, r_edge, elem1, elem2) (i) >= (l_edge) && (i) < (r_edge) ? (elem1) : (elem2) |
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__kernel void boxFilter_C1_D0(__global const uchar * restrict src, __global uchar *dst, float alpha, |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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{ |
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int col = get_local_id(0); |
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@ -105,115 +163,84 @@ __kernel void boxFilter_C1_D0(__global const uchar * restrict src, __global ucha |
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int dst_startY = (gY << 1) + dst_y_off; |
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uint4 data[ksY+1]; |
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__local uint4 temp[(THREADS<<1)]; |
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__local uint4 temp[2][THREADS]; |
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#ifdef BORDER_CONSTANT |
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for(int i=0; i < ksY+1; i++) |
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for(int i=0; i < ksY+1; i++) |
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{ |
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if(startY+i >=0 && startY+i < src_whole_rows && startX+col*4 >=0 && startX+col*4+3<src_whole_cols) |
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{ |
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if(startY+i >=0 && startY+i < src_whole_rows && startX+col*4 >=0 && startX+col*4+3<src_whole_cols) |
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data[i] = convert_uint4(vload4(col,(__global uchar*)(src+(startY+i)*src_step + startX))); |
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else |
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{ |
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data[i]=0; |
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int con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4 >=0 && startX+col*4<src_whole_cols; |
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if(con)data[i].s0 = *(src+(startY+i)*src_step + startX + col*4); |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+1 >=0 && startX+col*4+1<src_whole_cols; |
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if(con)data[i].s1 = *(src+(startY+i)*src_step + startX + col*4+1) ; |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+2 >=0 && startX+col*4+2<src_whole_cols; |
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if(con)data[i].s2 = *(src+(startY+i)*src_step + startX + col*4+2); |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+3 >=0 && startX+col*4+3<src_whole_cols; |
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if(con)data[i].s3 = *(src+(startY+i)*src_step + startX + col*4+3); |
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} |
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data[i].x = *(src+(startY+i)*src_step + startX + col * 4); |
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data[i].y = *(src+(startY+i)*src_step + startX + col * 4 + 1); |
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data[i].z = *(src+(startY+i)*src_step + startX + col * 4 + 2); |
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data[i].w = *(src+(startY+i)*src_step + startX + col * 4 + 3); |
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} |
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else |
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{ |
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data[i]=0; |
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int con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4 >=0 && startX+col*4<src_whole_cols; |
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if(con)data[i].s0 = *(src+(startY+i)*src_step + startX + col*4); |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+1 >=0 && startX+col*4+1<src_whole_cols; |
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if(con)data[i].s1 = *(src+(startY+i)*src_step + startX + col*4+1) ; |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+2 >=0 && startX+col*4+2<src_whole_cols; |
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if(con)data[i].s2 = *(src+(startY+i)*src_step + startX + col*4+2); |
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con = startY+i >=0 && startY+i < src_whole_rows && startX+col*4+3 >=0 && startX+col*4+3<src_whole_cols; |
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if(con)data[i].s3 = *(src+(startY+i)*src_step + startX + col*4+3); |
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} |
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} |
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#else |
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int not_all_in_range; |
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for(int i=0; i < ksY+1; i++) |
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{ |
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not_all_in_range = (startX+col*4<0) | (startX+col*4+3>src_whole_cols-1) |
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| (startY+i<0) | (startY+i>src_whole_rows-1); |
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if(not_all_in_range) |
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{ |
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int selected_row; |
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int4 selected_col; |
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selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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selected_col.x = ADDR_L(startX+col*4, 0, src_whole_cols); |
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selected_col.x = ADDR_R(startX+col*4, src_whole_cols, selected_col.x); |
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selected_col.y = ADDR_L(startX+col*4+1, 0, src_whole_cols); |
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selected_col.y = ADDR_R(startX+col*4+1, src_whole_cols, selected_col.y); |
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selected_col.z = ADDR_L(startX+col*4+2, 0, src_whole_cols); |
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selected_col.z = ADDR_R(startX+col*4+2, src_whole_cols, selected_col.z); |
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selected_col.w = ADDR_L(startX+col*4+3, 0, src_whole_cols); |
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selected_col.w = ADDR_R(startX+col*4+3, src_whole_cols, selected_col.w); |
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data[i].x = *(src + selected_row * src_step + selected_col.x); |
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data[i].y = *(src + selected_row * src_step + selected_col.y); |
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data[i].z = *(src + selected_row * src_step + selected_col.z); |
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data[i].w = *(src + selected_row * src_step + selected_col.w); |
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} |
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else |
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{ |
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data[i] = convert_uint4(vload4(col,(__global uchar*)(src+(startY+i)*src_step + startX))); |
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} |
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} |
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#endif |
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uint4 sum0 = 0, sum1 = 0, sum2 = 0; |
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for(int i=1; i < ksY; i++) |
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int not_all_in_range; |
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for(int i=0; i < ksY+1; i++) |
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{ |
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sum0 += (data[i]); |
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} |
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sum1 = sum0 + (data[0]); |
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sum2 = sum0 + (data[ksY]); |
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not_all_in_range = (startX+col*4<0) | (startX+col*4+3>src_whole_cols-1) |
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| (startY+i<0) | (startY+i>src_whole_rows-1); |
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if(not_all_in_range) |
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{ |
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int selected_row; |
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int4 selected_col; |
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selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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temp[col] = sum1; |
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temp[col+THREADS] = sum2; |
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barrier(CLK_LOCAL_MEM_FENCE); |
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selected_col.x = ADDR_L(startX+col*4, 0, src_whole_cols); |
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selected_col.x = ADDR_R(startX+col*4, src_whole_cols, selected_col.x); |
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if(col >= anX && col < (THREADS-ksX+anX+1)) |
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{ |
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int posX = dst_startX - dst_x_off + (col-anX)*4; |
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int posY = (gY << 1); |
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uint4 tmp_sum1=0, tmp_sum2=0; |
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for(int i=-anX; i<=anX; i++) |
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{ |
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tmp_sum1 += vload4(col, (__local uint*)temp+i); |
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} |
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selected_col.y = ADDR_L(startX+col*4+1, 0, src_whole_cols); |
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selected_col.y = ADDR_R(startX+col*4+1, src_whole_cols, selected_col.y); |
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for(int i=-anX; i<=anX; i++) |
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{ |
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tmp_sum2 += vload4(col, (__local uint*)(temp+THREADS)+i); |
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} |
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selected_col.z = ADDR_L(startX+col*4+2, 0, src_whole_cols); |
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selected_col.z = ADDR_R(startX+col*4+2, src_whole_cols, selected_col.z); |
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if(posY < dst_rows && posX < dst_cols) |
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{ |
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if(posX >= 0 && posX < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX + (col-anX)*4) = tmp_sum1.x/alpha; |
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if(posX+1 >= 0 && posX+1 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+1 + (col-anX)*4) = tmp_sum1.y/alpha; |
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if(posX+2 >= 0 && posX+2 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+2 + (col-anX)*4) = tmp_sum1.z/alpha; |
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if(posX+3 >= 0 && posX+3 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+3 + (col-anX)*4) = tmp_sum1.w/alpha; |
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selected_col.w = ADDR_L(startX+col*4+3, 0, src_whole_cols); |
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selected_col.w = ADDR_R(startX+col*4+3, src_whole_cols, selected_col.w); |
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data[i].x = *(src + selected_row * src_step + selected_col.x); |
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data[i].y = *(src + selected_row * src_step + selected_col.y); |
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data[i].z = *(src + selected_row * src_step + selected_col.z); |
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data[i].w = *(src + selected_row * src_step + selected_col.w); |
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} |
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if(posY+1 < dst_rows && posX < dst_cols) |
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else |
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{ |
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dst_startY+=1; |
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if(posX >= 0 && posX < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX + (col-anX)*4) = tmp_sum2.x/alpha; |
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if(posX+1 >= 0 && posX+1 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+1 + (col-anX)*4) = tmp_sum2.y/alpha; |
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if(posX+2 >= 0 && posX+2 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+2 + (col-anX)*4) = tmp_sum2.z/alpha; |
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if(posX+3 >= 0 && posX+3 < dst_cols) |
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*(dst+dst_startY * dst_step + dst_startX+3 + (col-anX)*4) = tmp_sum2.w/alpha; |
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data[i] = convert_uint4(vload4(col,(__global uchar*)(src+(startY+i)*src_step + startX))); |
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} |
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} |
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#endif |
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uint4 tmp_sum = 0; |
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for(int i=1; i < ksY; i++) |
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{ |
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tmp_sum += (data[i]); |
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} |
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int index = dst_startY * dst_step + dst_startX + (col-anX)*4; |
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temp[0][col] = tmp_sum + (data[0]); |
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temp[1][col] = tmp_sum + (data[ksY]); |
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barrier(CLK_LOCAL_MEM_FENCE); |
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update_dst_C1_D0(dst+index, (__local uint *)(temp[0]), |
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dst_rows, dst_cols, dst_startX, dst_x_off, alpha); |
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update_dst_C1_D0(dst+index+dst_step, (__local uint *)(temp[1]), |
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dst_rows, dst_cols, dst_startX, dst_x_off, alpha); |
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} |
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@ -221,9 +248,9 @@ __kernel void boxFilter_C1_D0(__global const uchar * restrict src, __global ucha |
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/////////////////////////////////////////8uC4//////////////////////////////////////////////////////// |
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//////////////////////////////////////////////////////////////////////////////////////////////////// |
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__kernel void boxFilter_C4_D0(__global const uchar4 * restrict src, __global uchar4 *dst, float alpha, |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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{ |
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int col = get_local_id(0); |
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const int gX = get_group_id(0); |
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@ -238,81 +265,63 @@ __kernel void boxFilter_C4_D0(__global const uchar4 * restrict src, __global uch |
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int startY = (gY << 1) - anY + src_y_off; |
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int dst_startX = gX * (THREADS-ksX+1) + dst_x_off; |
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int dst_startY = (gY << 1) + dst_y_off; |
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//int end_addr = (src_whole_rows-1)*(src_step>>2) + src_whole_cols-4; |
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int end_addr = src_whole_cols-4; |
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uint4 data[ksY+1]; |
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__local uint4 temp[2][THREADS]; |
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#ifdef BORDER_CONSTANT |
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bool con; |
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uint4 ss; |
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for(int i=0; i < ksY+1; i++) |
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{ |
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con = startX+col >= 0 && startX+col < src_whole_cols && startY+i >= 0 && startY+i < src_whole_rows; |
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//int cur_addr = clamp((startY+i)*(src_step>>2)+(startX+col),0,end_addr); |
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//ss = convert_uint4(src[cur_addr]); |
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int cur_col = clamp(startX + col, 0, src_whole_cols); |
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if(con) |
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ss = convert_uint4(src[(startY+i)*(src_step>>2) + cur_col]); |
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data[i] = con ? ss : 0; |
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data[i].x = con ? src[(startY+i)*(src_step>>2) + cur_col].x : 0; |
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data[i].y = con ? src[(startY+i)*(src_step>>2) + cur_col].y : 0; |
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data[i].z = con ? src[(startY+i)*(src_step>>2) + cur_col].z : 0; |
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data[i].w = con ? src[(startY+i)*(src_step>>2) + cur_col].w : 0; |
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} |
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#else |
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for(int i=0; i < ksY+1; i++) |
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{ |
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int selected_row; |
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int selected_col; |
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selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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for(int i=0; i < ksY+1; i++) |
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{ |
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int selected_row; |
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int selected_col; |
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selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
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selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
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selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
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selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
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data[i] = convert_uint4(src[selected_row * (src_step>>2) + selected_col]); |
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} |
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data[i] = convert_uint4(src[selected_row * (src_step>>2) + selected_col]); |
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} |
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#endif |
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uint4 sum0 = 0, sum1 = 0, sum2 = 0; |
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uint4 tmp_sum = 0; |
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for(int i=1; i < ksY; i++) |
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{ |
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sum0 += (data[i]); |
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tmp_sum += (data[i]); |
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} |
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sum1 = sum0 + (data[0]); |
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sum2 = sum0 + (data[ksY]); |
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temp[0][col] = sum1; |
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temp[1][col] = sum2; |
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barrier(CLK_LOCAL_MEM_FENCE); |
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if(col < (THREADS-(ksX-1))) |
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{ |
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col += anX; |
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int posX = dst_startX - dst_x_off + col - anX; |
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int posY = (gY << 1); |
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uint4 tmp_sum[2]={(uint4)(0,0,0,0),(uint4)(0,0,0,0)}; |
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for(int k=0; k<2; k++) |
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for(int i=-anX; i<=anX; i++) |
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{ |
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tmp_sum[k] += temp[k][col+i]; |
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} |
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for(int i=0; i<2; i++) |
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{ |
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if(posX >= 0 && posX < dst_cols && (posY+i) >= 0 && (posY+i) < dst_rows) |
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dst[(dst_startY+i) * (dst_step>>2)+ dst_startX + col - anX] = convert_uchar4(convert_float4(tmp_sum[i])/alpha); |
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} |
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int index = dst_startY * (dst_step>>2)+ dst_startX + col; |
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temp[0][col] = tmp_sum + (data[0]); |
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temp[1][col] = tmp_sum + (data[ksY]); |
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barrier(CLK_LOCAL_MEM_FENCE); |
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update_dst_C4_D0(dst+index, (__local uint4 *)(temp[0]), |
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dst_rows, dst_cols, dst_startX, dst_x_off, alpha); |
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update_dst_C4_D0(dst+index+(dst_step>>2), (__local uint4 *)(temp[1]), |
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dst_rows, dst_cols, dst_startX, dst_x_off, alpha); |
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} |
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} |
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/////////////////////////////////////////////////////////////////////////////////////////////////// |
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/////////////////////////////////////////32fC1//////////////////////////////////////////////////////// |
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//////////////////////////////////////////////////////////////////////////////////////////////////// |
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__kernel void boxFilter_C1_D5(__global const float *restrict src, __global float *dst, float alpha, |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
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int dst_offset, int dst_rows, int dst_cols, int dst_step |
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) |
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{ |
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int col = get_local_id(0); |
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const int gX = get_group_id(0); |
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@ -327,7 +336,6 @@ __kernel void boxFilter_C1_D5(__global const float *restrict src, __global float |
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int startY = (gY << 1) - anY + src_y_off; |
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int dst_startX = gX * (THREADS-ksX+1) + dst_x_off; |
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int dst_startY = (gY << 1) + dst_y_off; |
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int end_addr = (src_whole_rows-1)*(src_step>>2) + src_whole_cols-4; |
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float data[ksY+1]; |
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__local float temp[2][THREADS]; |
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#ifdef BORDER_CONSTANT |
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@ -336,28 +344,25 @@ __kernel void boxFilter_C1_D5(__global const float *restrict src, __global float |
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for(int i=0; i < ksY+1; i++) |
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{ |
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con = startX+col >= 0 && startX+col < src_whole_cols && startY+i >= 0 && startY+i < src_whole_rows; |
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//int cur_addr = clamp((startY+i)*(src_step>>2)+(startX+col),0,end_addr); |
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//ss = src[cur_addr]; |
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int cur_col = clamp(startX + col, 0, src_whole_cols); |
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//ss = src[(startY+i)*(src_step>>2) + cur_col]; |
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ss = (startY+i)<src_whole_rows&&(startY+i)>=0&&cur_col>=0&&cur_col<src_whole_cols?src[(startY+i)*(src_step>>2) + cur_col]:0; |
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ss = (startY+i)<src_whole_rows&&(startY+i)>=0&&cur_col>=0&&cur_col<src_whole_cols?src[(startY+i)*(src_step>>2) + cur_col]:(float)0; |
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data[i] = con ? ss : 0.f; |
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} |
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|
#else |
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for(int i=0; i < ksY+1; i++) |
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|
{ |
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|
int selected_row; |
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|
int selected_col; |
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|
selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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|
selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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|
for(int i=0; i < ksY+1; i++) |
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|
{ |
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|
int selected_row; |
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|
int selected_col; |
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|
selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
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|
selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
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|
selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
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|
selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
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|
selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
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|
selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
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|
data[i] = src[selected_row * (src_step>>2) + selected_col]; |
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|
} |
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|
|
data[i] = src[selected_row * (src_step>>2) + selected_col]; |
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|
|
} |
|
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|
|
#endif |
|
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|
|
float sum0 = 0.0, sum1 = 0.0, sum2 = 0.0; |
|
|
|
@ -376,7 +381,7 @@ __kernel void boxFilter_C1_D5(__global const float *restrict src, __global float |
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|
|
int posX = dst_startX - dst_x_off + col - anX; |
|
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|
|
int posY = (gY << 1); |
|
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|
|
float tmp_sum[2]={0.0, 0.0}; |
|
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|
|
float tmp_sum[2]= {0.0, 0.0}; |
|
|
|
|
for(int k=0; k<2; k++) |
|
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|
|
for(int i=-anX; i<=anX; i++) |
|
|
|
|
{ |
|
|
|
@ -395,9 +400,9 @@ __kernel void boxFilter_C1_D5(__global const float *restrict src, __global float |
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|
|
/////////////////////////////////////////32fC4//////////////////////////////////////////////////////// |
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////////////// |
|
|
|
|
__kernel void boxFilter_C4_D5(__global const float4 *restrict src, __global float4 *dst, float alpha, |
|
|
|
|
int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
|
|
|
|
int dst_offset, int dst_rows, int dst_cols, int dst_step |
|
|
|
|
) |
|
|
|
|
int src_offset, int src_whole_rows, int src_whole_cols, int src_step, |
|
|
|
|
int dst_offset, int dst_rows, int dst_cols, int dst_step |
|
|
|
|
) |
|
|
|
|
{ |
|
|
|
|
int col = get_local_id(0); |
|
|
|
|
const int gX = get_group_id(0); |
|
|
|
@ -412,7 +417,6 @@ __kernel void boxFilter_C4_D5(__global const float4 *restrict src, __global floa |
|
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|
|
int startY = (gY << 1) - anY + src_y_off; |
|
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|
|
int dst_startX = gX * (THREADS-ksX+1) + dst_x_off; |
|
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|
|
int dst_startY = (gY << 1) + dst_y_off; |
|
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|
|
int end_addr = (src_whole_rows-1)*(src_step>>4) + src_whole_cols-16; |
|
|
|
|
float4 data[ksY+1]; |
|
|
|
|
__local float4 temp[2][THREADS]; |
|
|
|
|
#ifdef BORDER_CONSTANT |
|
|
|
@ -421,28 +425,25 @@ __kernel void boxFilter_C4_D5(__global const float4 *restrict src, __global floa |
|
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|
|
for(int i=0; i < ksY+1; i++) |
|
|
|
|
{ |
|
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|
|
con = startX+col >= 0 && startX+col < src_whole_cols && startY+i >= 0 && startY+i < src_whole_rows; |
|
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|
|
//int cur_addr = clamp((startY+i)*(src_step>>4)+(startX+col),0,end_addr); |
|
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|
|
//ss = src[cur_addr]; |
|
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|
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|
|
int cur_col = clamp(startX + col, 0, src_whole_cols); |
|
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|
|
//ss = src[(startY+i)*(src_step>>4) + cur_col]; |
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|
|
ss = (startY+i)<src_whole_rows&&(startY+i)>=0&&cur_col>=0&&cur_col<src_whole_cols?src[(startY+i)*(src_step>>4) + cur_col]:0; |
|
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|
|
ss = (startY+i)<src_whole_rows&&(startY+i)>=0&&cur_col>=0&&cur_col<src_whole_cols?src[(startY+i)*(src_step>>4) + cur_col]:(float4)0; |
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|
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|
|
data[i] = con ? ss : (float4)(0.0,0.0,0.0,0.0); |
|
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|
|
} |
|
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|
|
#else |
|
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|
|
for(int i=0; i < ksY+1; i++) |
|
|
|
|
{ |
|
|
|
|
int selected_row; |
|
|
|
|
int selected_col; |
|
|
|
|
selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
|
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|
|
selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
|
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|
|
for(int i=0; i < ksY+1; i++) |
|
|
|
|
{ |
|
|
|
|
int selected_row; |
|
|
|
|
int selected_col; |
|
|
|
|
selected_row = ADDR_H(startY+i, 0, src_whole_rows); |
|
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|
|
selected_row = ADDR_B(startY+i, src_whole_rows, selected_row); |
|
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|
|
|
|
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|
|
selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
|
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|
|
selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
|
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|
|
selected_col = ADDR_L(startX+col, 0, src_whole_cols); |
|
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|
|
selected_col = ADDR_R(startX+col, src_whole_cols, selected_col); |
|
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|
|
|
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|
|
data[i] = src[selected_row * (src_step>>4) + selected_col]; |
|
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|
|
} |
|
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|
|
data[i] = src[selected_row * (src_step>>4) + selected_col]; |
|
|
|
|
} |
|
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|
|
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|
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|
|
#endif |
|
|
|
|
float4 sum0 = 0.0, sum1 = 0.0, sum2 = 0.0; |
|
|
|
@ -461,7 +462,7 @@ __kernel void boxFilter_C4_D5(__global const float4 *restrict src, __global floa |
|
|
|
|
int posX = dst_startX - dst_x_off + col - anX; |
|
|
|
|
int posY = (gY << 1); |
|
|
|
|
|
|
|
|
|
float4 tmp_sum[2]={(float4)(0.0,0.0,0.0,0.0), (float4)(0.0,0.0,0.0,0.0)}; |
|
|
|
|
float4 tmp_sum[2]= {(float4)(0.0,0.0,0.0,0.0), (float4)(0.0,0.0,0.0,0.0)}; |
|
|
|
|
for(int k=0; k<2; k++) |
|
|
|
|
for(int i=-anX; i<=anX; i++) |
|
|
|
|
{ |
|
|
|
|