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Anthony Barbier6ff3b192017-09-04 18:44:23 +01001/*
Giorgio Arenae36208c2021-01-21 14:53:56 +00002 * Copyright (c) 2016-2021 Arm Limited.
Anthony Barbier6ff3b192017-09-04 18:44:23 +01003 *
4 * SPDX-License-Identifier: MIT
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to
8 * deal in the Software without restriction, including without limitation the
9 * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
10 * sell copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in all
14 * copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22 * SOFTWARE.
23 */
24#ifndef ARM_COMPUTE_HELPER_H
25#define ARM_COMPUTE_HELPER_H
26
Giorgio Arenad304adb2020-10-02 10:20:11 +010027#include "load_store_utility.h"
28
Georgios Pinitasdaa38552018-08-28 17:43:18 +010029#if defined(ARM_COMPUTE_OPENCL_FP16_ENABLED) && defined(cl_khr_fp16)
Anthony Barbier6ff3b192017-09-04 18:44:23 +010030#pragma OPENCL EXTENSION cl_khr_fp16 : enable
Georgios Pinitasdaa38552018-08-28 17:43:18 +010031#endif // defined(ARM_COMPUTE_OPENCL_FP16_ENABLED) && defined(cl_khr_fp16)
Matthew Bentham6f31f8c2017-10-27 11:50:06 +010032
Georgios Pinitasdaa38552018-08-28 17:43:18 +010033#if defined(ARM_COMPUTE_OPENCL_DOT8_ENABLED) && defined(cl_arm_integer_dot_product_int8)
Michalis Spyroue03342e2018-01-15 14:39:13 +000034#pragma OPENCL EXTENSION cl_arm_integer_dot_product_int8 : enable
Georgios Pinitasdaa38552018-08-28 17:43:18 +010035#endif // defined(ARM_COMPUTE_OPENCL_DOT8_ENABLED) && defined(cl_arm_integer_dot_product_int8)
Michalis Spyroue03342e2018-01-15 14:39:13 +000036
Georgios Pinitasdaa38552018-08-28 17:43:18 +010037#if defined(ARM_COMPUTE_OPENCL_DOT8_ACC_ENABLED) && defined(cl_arm_integer_dot_product_accumulate_int8)
Giorgio Arenaeff8d952018-07-02 15:29:57 +010038#pragma OPENCL EXTENSION cl_arm_integer_dot_product_accumulate_int8 : enable
Georgios Pinitasdaa38552018-08-28 17:43:18 +010039#endif // defined(ARM_COMPUTE_OPENCL_DOT8_ACC_ENABLED) && defined(cl_arm_integer_dot_product_accumulate_int8)
Giorgio Arenaeff8d952018-07-02 15:29:57 +010040
Georgios Pinitasdaa38552018-08-28 17:43:18 +010041#if defined(ARM_COMPUTE_DEBUG_ENABLED) && defined(cl_arm_printf)
steniu01f01f9de2017-09-27 17:00:11 +010042#pragma OPENCL EXTENSION cl_arm_printf : enable
Georgios Pinitas238c97c2018-08-31 17:28:29 +010043#endif // defined(ARM_COMPUTE_DEBUG_ENABLED) && defined(cl_arm_printf)
Anthony Barbier6ff3b192017-09-04 18:44:23 +010044
Usama Arife2428a02019-05-09 11:03:17 +010045#define GPU_ARCH_MIDGARD 0x100
46#define GPU_ARCH_BIFROST 0x200
47
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000048/** Concatenate two inputs.
49 *
50 * @param[in] a The first input to be concatenated
51 * @param[in] b The second input to be concatenated
52 *
53 * @return The concatenated output
54 */
Gian Marco Iodice43a129e2019-05-14 10:14:08 +010055#define CONCAT(a, b) a##b
56
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000057/** Expand the given vector
58 *
59 * @param[in] x The vector to be expanded
60 *
61 * @return The expanded output
62 */
Georgios Pinitase5f8fd62017-06-23 18:03:44 +010063#define EXPAND(x) x
64
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000065/** Clamp the given value between an upper and lower bound.
66 *
67 * @param[in] x The value to be clamped
68 * @param[in] min_val The lower bound
69 * @param[in] max_val The upper bound
70 *
71 * @return The clamped value.
72 */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010073#define CLAMP(x, min_val, max_val) min(max(x, min_val), max_val)
74
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000075/** REVn reverses the given vector whose size is n.
76 * @name REVn
77 *
78 * @param[in] x The vector to be reversed
79 *
80 * @return The reversed vector
81 * @{
82 */
Giorgio Arena5c4a8e92019-08-28 17:55:07 +010083#define REV1(x) ((x))
84#define REV2(x) ((x).s10)
85#define REV3(x) ((x).s210)
86#define REV4(x) ((x).s3210)
87#define REV8(x) ((x).s76543210)
88#define REV16(x) ((x).sFEDCBA9876543210)
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000089/** @} */ // end of group REVn
Giorgio Arena5c4a8e92019-08-28 17:55:07 +010090
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +000091/** Reverse the given vector.
92 * @name REVERSE
93 *
94 * @param[in] x The vector to be reversed
95 * @param[in] s The size of the vector
96 *
97 * @return The reversed vector
98 * @{
99 */
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100100#define REVERSE_STR(x, s) REV##s((x))
101#define REVERSE(x, s) REVERSE_STR(x, s)
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000102/** @} */ // end of group REVERSE
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100103
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000104/** Circular-right-shift (rotate-right) the vector of size s by the amount of n.
105 * @name ROTs_n
106 *
107 * @param[in] x The vector to be shifted
108 *
109 * @return The shifted vector
110 * @{
111 */
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100112#define ROT1_0(x) ((x))
Giorgio Arena93240222020-12-23 11:55:29 +0000113#define ROT1_1(x) ((x))
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100114
115#define ROT2_0(x) ((x))
116#define ROT2_1(x) ((x).s10)
Giorgio Arena93240222020-12-23 11:55:29 +0000117#define ROT2_2(x) ((x))
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100118
119#define ROT3_0(x) ((x))
120#define ROT3_1(x) ((x).s201)
121#define ROT3_2(x) ((x).s120)
Giorgio Arena93240222020-12-23 11:55:29 +0000122#define ROT3_3(x) ((x))
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100123
124#define ROT4_0(x) ((x))
125#define ROT4_1(x) ((x).s3012)
126#define ROT4_2(x) ((x).s2301)
127#define ROT4_3(x) ((x).s1230)
Giorgio Arena93240222020-12-23 11:55:29 +0000128#define ROT4_4(x) ((x))
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100129
130#define ROT8_0(x) ((x))
131#define ROT8_1(x) ((x).s70123456)
132#define ROT8_2(x) ((x).s67012345)
133#define ROT8_3(x) ((x).s56701234)
134#define ROT8_4(x) ((x).s45670123)
135#define ROT8_5(x) ((x).s34567012)
136#define ROT8_6(x) ((x).s23456701)
137#define ROT8_7(x) ((x).s12345670)
Giorgio Arena93240222020-12-23 11:55:29 +0000138#define ROT8_8(x) ((x))
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100139
140#define ROT16_0(x) ((x))
141#define ROT16_1(x) ((x).sF0123456789ABCDE)
142#define ROT16_2(x) ((x).sEF0123456789ABCD)
143#define ROT16_3(x) ((x).sDEF0123456789ABC)
144#define ROT16_4(x) ((x).sCDEF0123456789AB)
145#define ROT16_5(x) ((x).sBCDEF0123456789A)
146#define ROT16_6(x) ((x).sABCDEF0123456789)
147#define ROT16_7(x) ((x).s9ABCDEF012345678)
148#define ROT16_8(x) ((x).s89ABCDEF01234567)
149#define ROT16_9(x) ((x).s789ABCDEF0123456)
150#define ROT16_10(x) ((x).s6789ABCDEF012345)
151#define ROT16_11(x) ((x).s56789ABCDEF01234)
152#define ROT16_12(x) ((x).s456789ABCDEF0123)
153#define ROT16_13(x) ((x).s3456789ABCDEF012)
154#define ROT16_14(x) ((x).s23456789ABCDEF01)
155#define ROT16_15(x) ((x).s123456789ABCDEF0)
Giorgio Arena93240222020-12-23 11:55:29 +0000156#define ROT16_16(x) ((x))
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000157/** @} */ // end of group ROTs_n
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100158
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000159/** Circular-right-shift (rotate-right) the given vector by the given amount.
160 * @name ROTATE
161 *
162 * @param[in] x The vector to be shifted
163 * @param[in] s The size of the vector
164 * @param[in] n The amount to be shifted
165 *
166 * @return The shifted vector
167 * @{
168 */
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100169#define ROTATE_STR(x, s, n) ROT##s##_##n(x)
170#define ROTATE(x, s, n) ROTATE_STR(x, s, n)
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000171/** @} */ // end of group ROTATE
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100172
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000173/** Creates a vector of size n filled with offset values corresponding to the location of each element.
174 * @name V_OFFSn
175 *
176 * @param[in] dt The data type of the output vector
177 *
178 * @return The vector filled with offset values
179 * @{
180 */
Giorgio Arena2d1a8352020-10-26 15:04:08 +0000181#define V_OFFS1(dt) (dt##1)(0)
182#define V_OFFS2(dt) (dt##2)(0, 1)
183#define V_OFFS3(dt) (dt##3)(0, 1, 2)
184#define V_OFFS4(dt) (dt##4)(0, 1, 2, 3)
185#define V_OFFS8(dt) (dt##8)(0, 1, 2, 3, 4, 5, 6, 7)
186#define V_OFFS16(dt) (dt##16)(0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15)
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000187/** @} */ // end of group V_OFFSn
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100188
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000189/** Create a vector filled with offset values corresponding to the location of each element.
190 * @name VEC_OFFS
191 *
192 * @param[in] dt The data type of the output vector
193 * @param[in] s The size of the output vector
194 *
195 * @return The vector filled with offset values
196 * @{
197 */
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100198#define VEC_OFFS_STR(dt, s) V_OFFS##s(dt)
199#define VEC_OFFS(dt, s) VEC_OFFS_STR(dt, s)
Sang-Hoon Parkbfd75d62019-10-30 14:56:17 +0000200/** @} */ // end of group VEC_OFFS
Giorgio Arena5c4a8e92019-08-28 17:55:07 +0100201
Georgios Pinitasac4e8732017-07-05 17:02:25 +0100202#define VLOAD_STR(size) vload##size
203#define VLOAD(size) VLOAD_STR(size)
204
Gian Marco Iodicee3a849a2020-06-10 17:59:30 +0100205#define PIXEL_UNIT4 1
206#define PIXEL_UNIT8 2
207#define PIXEL_UNIT16 4
208
209/** Utility macro to convert a vector size in pixel unit.
210 *
211 * @name CONVERT_VECTOR_SIZE_TO_PIXEL_UNIT
212 *
213 * @param[in] vec_size Vector size. Only 4,8 and 16 is supported
214 *
215 * @return The pixel unit (number of pixels)
216 * @{
217 */
218#define CONVERT_VECTOR_SIZE_TO_PIXEL_UNIT_STR(vec_size) PIXEL_UNIT##vec_size
219#define CONVERT_VECTOR_SIZE_TO_PIXEL_UNIT(vec_size) CONVERT_VECTOR_SIZE_TO_PIXEL_UNIT_STR(vec_size)
220/** @} */ // end of group CONVERT_VECTOR_SIZE_TO_PIXEL_UNIT
221
222#define read_image2d_floatx1(img, x_coord, y_coord) (float4)(read_imagef(img, (int2)(x_coord, y_coord)));
223#define read_image2d_floatx2(img, x_coord, y_coord) (float8)(read_imagef(img, (int2)(x_coord, y_coord)), read_imagef(img, (int2)(x_coord + 1, y_coord)));
224#define read_image2d_floatx4(img, x_coord, y_coord) (float16)(read_imagef(img, (int2)(x_coord, y_coord)), read_imagef(img, (int2)(x_coord + 1, y_coord)), read_imagef(img, (int2)(x_coord + 2, y_coord)), read_imagef(img, (int2)(x_coord + 3, y_coord)));
225
226#if defined(ARM_COMPUTE_OPENCL_FP16_ENABLED) && defined(cl_khr_fp16)
227#define read_image2d_halfx1(img, x_coord, y_coord) (half4)(read_imageh(img, (int2)(x_coord, y_coord)));
228#define read_image2d_halfx2(img, x_coord, y_coord) (half8)(read_imageh(img, (int2)(x_coord, y_coord)), read_imageh(img, (int2)(x_coord + 1, y_coord)));
229#define read_image2d_halfx4(img, x_coord, y_coord) (half16)(read_imageh(img, (int2)(x_coord, y_coord)), read_imageh(img, (int2)(x_coord + 1, y_coord)), read_imageh(img, (int2)(x_coord + 2, y_coord)), read_imageh(img, (int2)(x_coord + 3, y_coord)));
230#endif // defined(ARM_COMPUTE_OPENCL_FP16_ENABLED) && defined(cl_khr_fp16)
231
232/** Utility macro to read a 2D OpenCL image object.
233 *
234 * @note Coordinates are not normalized
235 *
236 * @param[in] data_type Data type
237 * @param[in] n0 Number of pixel to read. Only 1,2 and 4 is supported
238 * @param[in] img OpenCL image object
239 * @param[in] x_coord The x coordinate for the top-left pixel
240 * @param[in] y_coord The y coordinate for the top-left pixel
241 *
242 * @return Pixels from the 2D OpenCL image object
243 * @{
244 */
245#define READ_IMAGE2D_STR(data_type, n0, img, x_coord, y_coord) read_image2d_##data_type##x##n0(img, x_coord, y_coord)
246#define READ_IMAGE2D(data_type, n0, img, x_coord, y_coord) READ_IMAGE2D_STR(data_type, n0, img, x_coord, y_coord)
247
Georgios Pinitasac4e8732017-07-05 17:02:25 +0100248#define VSTORE_STR(size) vstore##size
249#define VSTORE(size) VSTORE_STR(size)
250
Manuel Bottini0d0028c2018-10-02 16:41:52 +0100251#define float1 float
252#define half1 half
Usama Arif0681e3b2019-04-25 14:28:07 +0100253#define char1 char
254#define uchar1 uchar
255#define short1 short
256#define ushort1 ushort
257#define int1 int
258#define uint1 uint
259#define long1 long
260#define ulong1 ulong
261#define double1 double
262
263#define vload1(OFFSET, PTR) *(OFFSET + PTR)
Gian Marco Iodice9285adb2019-09-05 16:10:27 +0100264#define vstore1(DATA, OFFSET, PTR) *(OFFSET + PTR) = DATA
Manuel Bottini0d0028c2018-10-02 16:41:52 +0100265
SiCong Li3a501662020-06-26 10:02:06 +0100266/** Extended partial vstore that correctly handles scalar values as well.
267 * Store the **lower** 0 to (n-1)th elements of the given vector while minimising the amount of vstore ops
268 * @name VSTORE_PARTIAL
269 *
270 * @note With this macro, the passed data can be both a vector and a scalar
271 * @note @p store_size needs to be <= @p size
272 * eg 1: Valid
273 * VSTORE_PARTIAL(16, 15) ...;
274 * eg 2: Invalid
275 * VSTORE_PARTIAL(4, 7) ...;
276 *
277 * @param[in] size The width of @p DATA. Supported values: 1(scalar), 2, 3, 4, 8, 16
278 * @param[in] store_size The number of lower elements to store. Supported values: 1-16, but has to be <= @p size
279 * @{
280 */
281#define VSTORE_PARTIAL_STR(size, store_size) vstore_partial_##size##_##store_size
282#define VSTORE_PARTIAL(size, store_size) VSTORE_PARTIAL_STR(size, store_size)
283
Giorgio Arenad304adb2020-10-02 10:20:11 +0100284#define NO_STORE(data, offs, ptr) \
285 { \
286 }
287
SiCong Li3a501662020-06-26 10:02:06 +0100288// Size == 1 (scalar)
Giorgio Arenad304adb2020-10-02 10:20:11 +0100289#define vstore_partial_1_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100290#define vstore_partial_1_1 vstore1
SiCong Li0ea50e32020-11-05 09:18:11 +0000291#define vstore_partial_1_2 NO_STORE
292#define vstore_partial_1_3 NO_STORE
293#define vstore_partial_1_4 NO_STORE
294#define vstore_partial_1_5 NO_STORE
295#define vstore_partial_1_6 NO_STORE
296#define vstore_partial_1_7 NO_STORE
297#define vstore_partial_1_8 NO_STORE
298#define vstore_partial_1_9 NO_STORE
299#define vstore_partial_1_10 NO_STORE
300#define vstore_partial_1_11 NO_STORE
301#define vstore_partial_1_12 NO_STORE
302#define vstore_partial_1_13 NO_STORE
303#define vstore_partial_1_14 NO_STORE
304#define vstore_partial_1_15 NO_STORE
305#define vstore_partial_1_16 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100306// Size == 2
Giorgio Arenad304adb2020-10-02 10:20:11 +0100307#define vstore_partial_2_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100308#define vstore_partial_2_1 vstore_partial_1
309#define vstore_partial_2_2 vstore_partial_2
SiCong Li0ea50e32020-11-05 09:18:11 +0000310#define vstore_partial_2_3 NO_STORE
311#define vstore_partial_2_4 NO_STORE
312#define vstore_partial_2_5 NO_STORE
313#define vstore_partial_2_6 NO_STORE
314#define vstore_partial_2_7 NO_STORE
315#define vstore_partial_2_8 NO_STORE
316#define vstore_partial_2_9 NO_STORE
317#define vstore_partial_2_10 NO_STORE
318#define vstore_partial_2_11 NO_STORE
319#define vstore_partial_2_12 NO_STORE
320#define vstore_partial_2_13 NO_STORE
321#define vstore_partial_2_14 NO_STORE
322#define vstore_partial_2_15 NO_STORE
323#define vstore_partial_2_16 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100324// Size == 3
Giorgio Arenad304adb2020-10-02 10:20:11 +0100325#define vstore_partial_3_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100326#define vstore_partial_3_1 vstore_partial_1
327#define vstore_partial_3_2 vstore_partial_2
328#define vstore_partial_3_3 vstore_partial_3
SiCong Li0ea50e32020-11-05 09:18:11 +0000329#define vstore_partial_3_4 NO_STORE
330#define vstore_partial_3_5 NO_STORE
331#define vstore_partial_3_6 NO_STORE
332#define vstore_partial_3_7 NO_STORE
333#define vstore_partial_3_8 NO_STORE
334#define vstore_partial_3_9 NO_STORE
335#define vstore_partial_3_10 NO_STORE
336#define vstore_partial_3_11 NO_STORE
337#define vstore_partial_3_12 NO_STORE
338#define vstore_partial_3_13 NO_STORE
339#define vstore_partial_3_14 NO_STORE
340#define vstore_partial_3_15 NO_STORE
341#define vstore_partial_3_16 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100342// Size == 4
Giorgio Arenad304adb2020-10-02 10:20:11 +0100343#define vstore_partial_4_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100344#define vstore_partial_4_1 vstore_partial_1
345#define vstore_partial_4_2 vstore_partial_2
346#define vstore_partial_4_3 vstore_partial_3
347#define vstore_partial_4_4 vstore_partial_4
SiCong Li0ea50e32020-11-05 09:18:11 +0000348#define vstore_partial_4_5 NO_STORE
349#define vstore_partial_4_6 NO_STORE
350#define vstore_partial_4_7 NO_STORE
351#define vstore_partial_4_8 NO_STORE
352#define vstore_partial_4_9 NO_STORE
353#define vstore_partial_4_10 NO_STORE
354#define vstore_partial_4_11 NO_STORE
355#define vstore_partial_4_12 NO_STORE
356#define vstore_partial_4_13 NO_STORE
357#define vstore_partial_4_14 NO_STORE
358#define vstore_partial_4_15 NO_STORE
359#define vstore_partial_4_16 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100360// Size == 8
Giorgio Arenad304adb2020-10-02 10:20:11 +0100361#define vstore_partial_8_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100362#define vstore_partial_8_1 vstore_partial_1
363#define vstore_partial_8_2 vstore_partial_2
364#define vstore_partial_8_3 vstore_partial_3
365#define vstore_partial_8_4 vstore_partial_4
366#define vstore_partial_8_5 vstore_partial_5
367#define vstore_partial_8_6 vstore_partial_6
368#define vstore_partial_8_7 vstore_partial_7
369#define vstore_partial_8_8 vstore_partial_8
SiCong Li0ea50e32020-11-05 09:18:11 +0000370#define vstore_partial_8_9 NO_STORE
371#define vstore_partial_8_10 NO_STORE
372#define vstore_partial_8_11 NO_STORE
373#define vstore_partial_8_12 NO_STORE
374#define vstore_partial_8_13 NO_STORE
375#define vstore_partial_8_14 NO_STORE
376#define vstore_partial_8_15 NO_STORE
377#define vstore_partial_8_16 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100378// Size == 16
Giorgio Arenad304adb2020-10-02 10:20:11 +0100379#define vstore_partial_16_0 NO_STORE
SiCong Li3a501662020-06-26 10:02:06 +0100380#define vstore_partial_16_1 vstore_partial_1
381#define vstore_partial_16_2 vstore_partial_2
382#define vstore_partial_16_3 vstore_partial_3
383#define vstore_partial_16_4 vstore_partial_4
384#define vstore_partial_16_5 vstore_partial_5
385#define vstore_partial_16_6 vstore_partial_6
386#define vstore_partial_16_7 vstore_partial_7
387#define vstore_partial_16_8 vstore_partial_8
388#define vstore_partial_16_9 vstore_partial_9
389#define vstore_partial_16_10 vstore_partial_10
390#define vstore_partial_16_11 vstore_partial_11
391#define vstore_partial_16_12 vstore_partial_12
392#define vstore_partial_16_13 vstore_partial_13
393#define vstore_partial_16_14 vstore_partial_14
394#define vstore_partial_16_15 vstore_partial_15
395#define vstore_partial_16_16 vstore_partial_16
396
397/** Partial vstore. Store the **lower** 0 to (n-1)th elements of the given vector while minimising the amount of vstore ops
398 * @name vstore_partial_n
399 *
400 * @note @p DATA needs to be a vector not a scalar
401 * @note n needs to be <= the vector width of the input variable @p DATA
402 * eg 1: Valid
403 * vstore_partial_15(var:float16, 0, 0xabcd);
404 * eg 2: Invalid
405 * vstore_partial_7(var:float4, 0, 0xabcd);
406 *
407 * @note in cases n == 1, 2, 3, 4, 8, 16, no extra vstore is invoked, thus there's no performance penalty.
408 *
409 * @param[in] DATA The name of the variable
410 * @param[in] OFFSET Offset in n
411 * @param[in] PTR The base pointer
412 * @{
413 */
414#define vstore_partial_1(DATA, OFFSET, PTR) \
415 vstore1(DATA.s0, OFFSET, PTR);
416
417#define vstore_partial_2(DATA, OFFSET, PTR) \
418 vstore2(DATA.s01, OFFSET, PTR);
419
420#define vstore_partial_3(DATA, OFFSET, PTR) \
421 vstore3(DATA.s012, OFFSET, PTR);
422
423#define vstore_partial_4(DATA, OFFSET, PTR) \
424 vstore4(DATA.s0123, OFFSET, PTR);
425
426#define vstore_partial_5(DATA, OFFSET, PTR) \
427 vstore_partial_4(DATA.s0123, OFFSET, PTR); \
SiCong Li3b64e3e2020-07-28 09:01:28 +0100428 vstore1(DATA.s4, OFFSET, PTR + 4);
SiCong Li3a501662020-06-26 10:02:06 +0100429
430#define vstore_partial_6(DATA, OFFSET, PTR) \
431 vstore_partial_4(DATA.s0123, OFFSET, PTR); \
432 vstore_partial_2(DATA.s45, OFFSET, PTR + 4);
433
434#define vstore_partial_7(DATA, OFFSET, PTR) \
435 vstore_partial_4(DATA.s0123, OFFSET, PTR); \
436 vstore_partial_3(DATA.s456, OFFSET, PTR + 4);
437
438#define vstore_partial_8(DATA, OFFSET, PTR) \
439 vstore8(DATA.s01234567, OFFSET, PTR);
440
441#define vstore_partial_9(DATA, OFFSET, PTR) \
442 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
SiCong Li3b64e3e2020-07-28 09:01:28 +0100443 vstore1(DATA.s8, OFFSET, PTR + 8);
SiCong Li3a501662020-06-26 10:02:06 +0100444
445#define vstore_partial_10(DATA, OFFSET, PTR) \
446 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
447 vstore_partial_2(DATA.s89, OFFSET, PTR + 8);
448
449#define vstore_partial_11(DATA, OFFSET, PTR) \
450 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
451 vstore_partial_3(DATA.s89a, OFFSET, PTR + 8);
452
453#define vstore_partial_12(DATA, OFFSET, PTR) \
454 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
455 vstore_partial_4(DATA.s89ab, OFFSET, PTR + 8);
456
457#define vstore_partial_13(DATA, OFFSET, PTR) \
458 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
Giorgio Arenad304adb2020-10-02 10:20:11 +0100459 vstore_partial_5(DATA.s89abcdef, OFFSET, PTR + 8);
SiCong Li3a501662020-06-26 10:02:06 +0100460
461#define vstore_partial_14(DATA, OFFSET, PTR) \
462 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
Giorgio Arenad304adb2020-10-02 10:20:11 +0100463 vstore_partial_6(DATA.s89abcdef, OFFSET, PTR + 8);
SiCong Li3a501662020-06-26 10:02:06 +0100464
465#define vstore_partial_15(DATA, OFFSET, PTR) \
466 vstore_partial_8(DATA.s01234567, OFFSET, PTR); \
Giorgio Arenad304adb2020-10-02 10:20:11 +0100467 vstore_partial_7(DATA.s89abcdef, OFFSET, PTR + 8);
SiCong Li3a501662020-06-26 10:02:06 +0100468
469#define vstore_partial_16(DATA, OFFSET, PTR) \
470 vstore16(DATA, OFFSET, PTR);
471/** @} */ // end of groupd vstore_partial_n
472/** @} */ // end of groupd VSTORE_PARTIAL
473
Gian Marco Iodice0c17aa22019-09-27 09:23:15 +0100474// Convert built-in functions with _sat modifier are not supported in floating point so we create defines
475// without _sat to overcome this issue
476#define convert_float_sat convert_float
477#define convert_float1_sat convert_float
478#define convert_float2_sat convert_float2
479#define convert_float3_sat convert_float3
480#define convert_float4_sat convert_float4
481#define convert_float8_sat convert_float8
482#define convert_float16_sat convert_float16
483#define convert_half_sat convert_float
484#define convert_half1_sat convert_half
485#define convert_half2_sat convert_half2
486#define convert_half3_sat convert_half3
487#define convert_half4_sat convert_half4
488#define convert_half8_sat convert_half8
489#define convert_half16_sat convert_half16
490
Michele Di Giorgioa046e162019-10-08 09:36:26 +0100491#define convert_float1 convert_float
492#define convert_half1 convert_half
493#define convert_char1 convert_char
494#define convert_uchar1 convert_uchar
495#define convert_short1 convert_short
496#define convert_ushort1 convert_ushort
497#define convert_int1 convert_int
498#define convert_uint1 convert_uint
499#define convert_long1 convert_long
500#define convert_ulong1 convert_ulong
501#define convert_double1 convert_double
502
503#define convert_char1_sat convert_char_sat
504#define convert_uchar1_sat convert_uchar_sat
505#define convert_short1_sat convert_short_sat
506#define convert_ushort1_sat convert_ushort_sat
507#define convert_int1_sat convert_int_sat
508#define convert_uint1_sat convert_uint_sat
509#define convert_long1_sat convert_long_sat
510#define convert_ulong1_sat convert_ulong_sat
511#define convert_double1_sat convert_double_sat
512
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100513#define VEC_DATA_TYPE_STR(type, size) type##size
514#define VEC_DATA_TYPE(type, size) VEC_DATA_TYPE_STR(type, size)
515
516#define CONVERT_STR(x, type) (convert_##type((x)))
517#define CONVERT(x, type) CONVERT_STR(x, type)
518
519#define CONVERT_SAT_STR(x, type) (convert_##type##_sat((x)))
520#define CONVERT_SAT(x, type) CONVERT_SAT_STR(x, type)
521
522#define CONVERT_SAT_ROUND_STR(x, type, round) (convert_##type##_sat_##round((x)))
523#define CONVERT_SAT_ROUND(x, type, round) CONVERT_SAT_ROUND_STR(x, type, round)
524
Giorgio Arena2d1a8352020-10-26 15:04:08 +0000525#define select_vec_dt_uchar(size) uchar##size
526#define select_vec_dt_char(size) char##size
527#define select_vec_dt_ushort(size) ushort##size
528#define select_vec_dt_short(size) short##size
529#define select_vec_dt_half(size) short##size
530#define select_vec_dt_uint(size) uint##size
531#define select_vec_dt_int(size) int##size
532#define select_vec_dt_float(size) int##size
533#define select_vec_dt_ulong(size) ulong##size
534#define select_vec_dt_long(size) long##size
Giorgio Arenad056e572020-10-12 11:53:51 +0100535
Giorgio Arena2d1a8352020-10-26 15:04:08 +0000536#define SELECT_VEC_DATA_TYPE_STR(type, size) select_vec_dt_##type(size)
537#define SELECT_VEC_DATA_TYPE(type, size) SELECT_VEC_DATA_TYPE_STR(type, size)
538#define SELECT_DATA_TYPE(type) SELECT_VEC_DATA_TYPE_STR(type, 1)
539
Giorgio Arenae36208c2021-01-21 14:53:56 +0000540#define signed_int_vec_dt_uchar(size) char##size
541#define signed_int_vec_dt_char(size) char##size
542#define signed_int_vec_dt_ushort(size) short##size
543#define signed_int_vec_dt_short(size) short##size
544#define signed_int_vec_dt_half(size) short##size
545#define signed_int_vec_dt_uint(size) int##size
546#define signed_int_vec_dt_int(size) int##size
547#define signed_int_vec_dt_float(size) int##size
548#define signed_int_vec_dt_ulong(size) long##size
549#define signed_int_vec_dt_long(size) long##size
550
551#define SIGNED_INT_VEC_DATA_TYPE_STR(type, size) signed_int_vec_dt_##type(size)
552#define SIGNED_INT_VEC_DATA_TYPE(type, size) SIGNED_INT_VEC_DATA_TYPE_STR(type, size)
553#define SIGNED_INT_DATA_TYPE(type) SIGNED_INT_VEC_DATA_TYPE_STR(type, 1)
554
Giorgio Arena2d1a8352020-10-26 15:04:08 +0000555#define sum_reduce_1(x) (x)
556#define sum_reduce_2(x) ((x).s0) + ((x).s1)
557#define sum_reduce_3(x) sum_reduce_2((x).s01) + ((x).s2)
558#define sum_reduce_4(x) sum_reduce_2((x).s01) + sum_reduce_2((x).s23)
559#define sum_reduce_8(x) sum_reduce_4((x).s0123) + sum_reduce_4((x).s4567)
560#define sum_reduce_16(x) sum_reduce_8((x).s01234567) + sum_reduce_8((x).s89ABCDEF)
561
562#define SUM_REDUCE_STR(x, size) sum_reduce_##size(x)
563#define SUM_REDUCE(x, size) SUM_REDUCE_STR(x, size)
564
565#define max_reduce_1(x) (x)
566#define max_reduce_2(x) max(((x).s0), ((x).s1))
567#define max_reduce_3(x) max(max_reduce_2((x).s01), ((x).s2))
568#define max_reduce_4(x) max(max_reduce_2((x).s01), max_reduce_2((x).s23))
569#define max_reduce_8(x) max(max_reduce_4((x).s0123), max_reduce_4((x).s4567))
570#define max_reduce_16(x) max(max_reduce_8((x).s01234567), max_reduce_8((x).s89ABCDEF))
571
572#define MAX_REDUCE_STR(x, size) max_reduce_##size(x)
573#define MAX_REDUCE(x, size) MAX_REDUCE_STR(x, size)
Giorgio Arenad056e572020-10-12 11:53:51 +0100574
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100575#define VECTOR_DECLARATION(name) \
576 __global uchar *name##_ptr, \
577 uint name##_stride_x, \
578 uint name##_step_x, \
579 uint name##_offset_first_element_in_bytes
580
581#define IMAGE_DECLARATION(name) \
582 __global uchar *name##_ptr, \
583 uint name##_stride_x, \
584 uint name##_step_x, \
585 uint name##_stride_y, \
586 uint name##_step_y, \
587 uint name##_offset_first_element_in_bytes
588
589#define TENSOR3D_DECLARATION(name) \
590 __global uchar *name##_ptr, \
591 uint name##_stride_x, \
592 uint name##_step_x, \
593 uint name##_stride_y, \
594 uint name##_step_y, \
595 uint name##_stride_z, \
596 uint name##_step_z, \
597 uint name##_offset_first_element_in_bytes
598
steniu01868e5412017-07-17 23:16:00 +0100599#define TENSOR4D_DECLARATION(name) \
600 __global uchar *name##_ptr, \
601 uint name##_stride_x, \
602 uint name##_step_x, \
603 uint name##_stride_y, \
604 uint name##_step_y, \
605 uint name##_stride_z, \
606 uint name##_step_z, \
607 uint name##_stride_w, \
608 uint name##_step_w, \
609 uint name##_offset_first_element_in_bytes
610
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100611#define CONVERT_TO_VECTOR_STRUCT(name) \
612 update_vector_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x)
613
614#define CONVERT_TO_VECTOR_STRUCT_NO_STEP(name) \
615 update_vector_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, 0)
616
617#define CONVERT_TO_IMAGE_STRUCT(name) \
618 update_image_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y)
619
620#define CONVERT_TO_IMAGE_STRUCT_NO_STEP(name) \
621 update_image_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, 0, name##_stride_y, 0)
622
steniu01868e5412017-07-17 23:16:00 +0100623#define CONVERT_TENSOR3D_TO_IMAGE_STRUCT(name) \
624 update_image_from_tensor3D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y, name##_stride_z, name##_step_z)
625
Anthony Barbier7ff47a32017-07-11 16:54:04 +0100626#define CONVERT_TENSOR3D_TO_IMAGE_STRUCT_NO_STEP(name) \
627 update_image_from_tensor3D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, 0, name##_stride_y, 0, name##_stride_z, name##_step_z)
628
steniu010d523cc2017-07-13 14:24:23 +0100629#define CONVERT_TENSOR3D_TO_IMAGE_STRUCT(name) \
630 update_image_from_tensor3D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y, name##_stride_z, name##_step_z)
631
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100632#define CONVERT_TO_TENSOR3D_STRUCT(name) \
633 update_tensor3D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y, \
634 name##_stride_z, name##_step_z)
635
636#define CONVERT_TO_TENSOR3D_STRUCT_NO_STEP(name) \
637 update_tensor3D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, 0, name##_stride_y, 0, name##_stride_z, 0)
638
steniu01868e5412017-07-17 23:16:00 +0100639#define CONVERT_TO_TENSOR4D_STRUCT(name, mod_size) \
640 update_tensor4D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y, \
Michalis Spyrou5237e012018-01-17 09:40:27 +0000641 name##_stride_z, name##_step_z, name##_stride_w, name##_step_w, mod_size)
steniu01868e5412017-07-17 23:16:00 +0100642
643#define CONVERT_TO_TENSOR4D_STRUCT_NO_STEP(name, mod_size) \
644 update_tensor4D_workitem_ptr(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, 0, name##_stride_y, 0, name##_stride_z, 0, name##_stride_w, 0, mod_size)
645
Gian Marco Iodice4d81d752020-07-14 15:05:31 +0100646#define CONVERT_TO_TENSOR3D_STRUCT_NO_UPDATE_PTR(name) \
647 tensor3D_ptr_no_update(name##_ptr, name##_offset_first_element_in_bytes, name##_stride_x, name##_step_x, name##_stride_y, name##_step_y, \
648 name##_stride_z, name##_step_z)
649
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100650/** Structure to hold Vector information */
651typedef struct Vector
652{
653 __global uchar *ptr; /**< Pointer to the starting postion of the buffer */
654 int offset_first_element_in_bytes; /**< The offset of the first element in the source image */
655 int stride_x; /**< Stride of the image in X dimension (in bytes) */
656} Vector;
657
658/** Structure to hold Image information */
659typedef struct Image
660{
661 __global uchar *ptr; /**< Pointer to the starting postion of the buffer */
662 int offset_first_element_in_bytes; /**< The offset of the first element in the source image */
663 int stride_x; /**< Stride of the image in X dimension (in bytes) */
664 int stride_y; /**< Stride of the image in Y dimension (in bytes) */
665} Image;
666
667/** Structure to hold 3D tensor information */
668typedef struct Tensor3D
669{
670 __global uchar *ptr; /**< Pointer to the starting postion of the buffer */
671 int offset_first_element_in_bytes; /**< The offset of the first element in the source image */
672 int stride_x; /**< Stride of the image in X dimension (in bytes) */
673 int stride_y; /**< Stride of the image in Y dimension (in bytes) */
674 int stride_z; /**< Stride of the image in Z dimension (in bytes) */
675} Tensor3D;
676
steniu01868e5412017-07-17 23:16:00 +0100677/** Structure to hold 4D tensor information */
678typedef struct Tensor4D
679{
680 __global uchar *ptr; /**< Pointer to the starting postion of the buffer */
681 int offset_first_element_in_bytes; /**< The offset of the first element in the source image */
682 int stride_x; /**< Stride of the image in X dimension (in bytes) */
683 int stride_y; /**< Stride of the image in Y dimension (in bytes) */
684 int stride_z; /**< Stride of the image in Z dimension (in bytes) */
685 int stride_w; /**< Stride of the image in W dimension (in bytes) */
686} Tensor4D;
687
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100688/** Wrap vector information into an Vector structure, and make the pointer point at this workitem's data.
689 *
690 * @param[in] ptr Pointer to the starting postion of the buffer
691 * @param[in] offset_first_element_in_bytes The offset of the first element in the source vector
692 * @param[in] stride_x Stride of the vector in X dimension (in bytes)
693 * @param[in] step_x stride_x * number of elements along X processed per workitem(in bytes)
694 *
695 * @return An image object
696 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100697inline Vector update_vector_workitem_ptr(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100698{
699 Vector vector =
700 {
701 .ptr = ptr,
702 .offset_first_element_in_bytes = offset_first_element_in_bytes,
703 .stride_x = stride_x,
704 };
705 vector.ptr += vector.offset_first_element_in_bytes + get_global_id(0) * step_x;
706 return vector;
707}
708
709/** Wrap image information into an Image structure, and make the pointer point at this workitem's data.
710 *
711 * @param[in] ptr Pointer to the starting postion of the buffer
712 * @param[in] offset_first_element_in_bytes The offset of the first element in the source image
713 * @param[in] stride_x Stride of the image in X dimension (in bytes)
714 * @param[in] step_x stride_x * number of elements along X processed per workitem(in bytes)
715 * @param[in] stride_y Stride of the image in Y dimension (in bytes)
716 * @param[in] step_y stride_y * number of elements along Y processed per workitem(in bytes)
717 *
718 * @return An image object
719 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100720inline Image update_image_workitem_ptr(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x, uint stride_y, uint step_y)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100721{
722 Image img =
723 {
724 .ptr = ptr,
725 .offset_first_element_in_bytes = offset_first_element_in_bytes,
726 .stride_x = stride_x,
727 .stride_y = stride_y
728 };
729 img.ptr += img.offset_first_element_in_bytes + get_global_id(0) * step_x + get_global_id(1) * step_y;
730 return img;
731}
732
Anthony Barbier7ff47a32017-07-11 16:54:04 +0100733/** Wrap 3D tensor information into an image structure, and make the pointer point at this workitem's data.
734 *
735 * @param[in] ptr Pointer to the starting postion of the buffer
736 * @param[in] offset_first_element_in_bytes The offset of the first element in the source image
737 * @param[in] stride_x Stride of the image in X dimension (in bytes)
738 * @param[in] step_x stride_x * number of elements along X processed per workitem(in bytes)
739 * @param[in] stride_y Stride of the image in Y dimension (in bytes)
740 * @param[in] step_y stride_y * number of elements along Y processed per workitem(in bytes)
741 * @param[in] stride_z Stride of the image in Z dimension (in bytes)
742 * @param[in] step_z stride_z * number of elements along Z processed per workitem(in bytes)
743 *
744 * @return A 3D tensor object
745 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100746inline Image update_image_from_tensor3D_workitem_ptr(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x, uint stride_y, uint step_y, uint stride_z, uint step_z)
Anthony Barbier7ff47a32017-07-11 16:54:04 +0100747{
748 Image img =
749 {
750 .ptr = ptr,
751 .offset_first_element_in_bytes = offset_first_element_in_bytes,
752 .stride_x = stride_x,
753 .stride_y = stride_y
754 };
755 img.ptr += img.offset_first_element_in_bytes + get_global_id(0) * step_x + get_global_id(1) * step_y + get_global_id(2) * step_z;
756 return img;
757}
758
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100759/** Wrap 3D tensor information into an tensor structure, and make the pointer point at this workitem's data.
760 *
761 * @param[in] ptr Pointer to the starting postion of the buffer
762 * @param[in] offset_first_element_in_bytes The offset of the first element in the source image
763 * @param[in] stride_x Stride of the image in X dimension (in bytes)
764 * @param[in] step_x stride_x * number of elements along X processed per workitem(in bytes)
765 * @param[in] stride_y Stride of the image in Y dimension (in bytes)
766 * @param[in] step_y stride_y * number of elements along Y processed per workitem(in bytes)
767 * @param[in] stride_z Stride of the image in Z dimension (in bytes)
768 * @param[in] step_z stride_z * number of elements along Z processed per workitem(in bytes)
769 *
770 * @return A 3D tensor object
771 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100772inline Tensor3D update_tensor3D_workitem_ptr(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x, uint stride_y, uint step_y, uint stride_z, uint step_z)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100773{
774 Tensor3D tensor =
775 {
776 .ptr = ptr,
777 .offset_first_element_in_bytes = offset_first_element_in_bytes,
778 .stride_x = stride_x,
779 .stride_y = stride_y,
780 .stride_z = stride_z
781 };
782 tensor.ptr += tensor.offset_first_element_in_bytes + get_global_id(0) * step_x + get_global_id(1) * step_y + get_global_id(2) * step_z;
783 return tensor;
784}
785
Gian Marco Iodice4d81d752020-07-14 15:05:31 +0100786/** Wrap 3D tensor information into an tensor structure.
787 *
788 * @param[in] ptr Pointer to the starting postion of the buffer
789 * @param[in] offset_first_element_in_bytes The offset of the first element in the source image
790 * @param[in] stride_x Stride of the image in X dimension (in bytes)
791 * @param[in] step_x stride_x * number of elements along X processed per workitem(in bytes)
792 * @param[in] stride_y Stride of the image in Y dimension (in bytes)
793 * @param[in] step_y stride_y * number of elements along Y processed per workitem(in bytes)
794 * @param[in] stride_z Stride of the image in Z dimension (in bytes)
795 * @param[in] step_z stride_z * number of elements along Z processed per workitem(in bytes)
796 *
797 * @return A 3D tensor object
798 */
799inline Tensor3D tensor3D_ptr_no_update(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x, uint stride_y, uint step_y, uint stride_z, uint step_z)
800{
801 Tensor3D tensor =
802 {
803 .ptr = ptr,
804 .offset_first_element_in_bytes = offset_first_element_in_bytes,
805 .stride_x = stride_x,
806 .stride_y = stride_y,
807 .stride_z = stride_z
808 };
809 return tensor;
810}
811
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100812inline Tensor4D update_tensor4D_workitem_ptr(__global uchar *ptr, uint offset_first_element_in_bytes, uint stride_x, uint step_x, uint stride_y, uint step_y, uint stride_z, uint step_z, uint stride_w,
steniu01868e5412017-07-17 23:16:00 +0100813 uint step_w,
814 uint mod_size)
815{
816 Tensor4D tensor =
817 {
818 .ptr = ptr,
819 .offset_first_element_in_bytes = offset_first_element_in_bytes,
820 .stride_x = stride_x,
821 .stride_y = stride_y,
822 .stride_z = stride_z,
823 .stride_w = stride_w
824 };
825
826 tensor.ptr += tensor.offset_first_element_in_bytes + get_global_id(0) * step_x + get_global_id(1) * step_y + (get_global_id(2) % mod_size) * step_z + (get_global_id(2) / mod_size) * step_w;
827 return tensor;
828}
829
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100830/** Get the pointer position of a Vector
831 *
832 * @param[in] vec Pointer to the starting position of the buffer
833 * @param[in] x Relative X position
834 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100835inline __global const uchar *vector_offset(const Vector *vec, int x)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100836{
837 return vec->ptr + x * vec->stride_x;
838}
839
840/** Get the pointer position of a Image
841 *
842 * @param[in] img Pointer to the starting position of the buffer
843 * @param[in] x Relative X position
844 * @param[in] y Relative Y position
845 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100846inline __global uchar *offset(const Image *img, int x, int y)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100847{
848 return img->ptr + x * img->stride_x + y * img->stride_y;
849}
850
851/** Get the pointer position of a Tensor3D
852 *
Gian Marco Iodice3a623242017-07-25 10:25:53 +0100853 * @param[in] tensor Pointer to the starting position of the buffer
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100854 * @param[in] x Relative X position
855 * @param[in] y Relative Y position
856 * @param[in] z Relative Z position
857 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100858inline __global const uchar *tensor3D_offset(const Tensor3D *tensor, int x, int y, int z)
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100859{
860 return tensor->ptr + x * tensor->stride_x + y * tensor->stride_y + z * tensor->stride_z;
861}
862
steniu01868e5412017-07-17 23:16:00 +0100863/** Get the pointer position of a Tensor4D
864 *
865 * @param[in] tensor Pointer to the starting position of the buffer
866 * @param[in] x Relative X position
867 * @param[in] y Relative Y position
868 * @param[in] z Relative Z position
869 * @param[in] w Relative W position
870 */
Georgios Pinitasaf7f7402018-10-25 16:04:40 +0100871inline __global const uchar *tensor4D_offset(const Tensor4D *tensor, int x, int y, int z, int w)
steniu01868e5412017-07-17 23:16:00 +0100872{
873 return tensor->ptr + x * tensor->stride_x + y * tensor->stride_y + z * tensor->stride_z + w * tensor->stride_w;
874}
875
Gian Marco Iodice4d81d752020-07-14 15:05:31 +0100876/** Get the offset for a given linear index of a Tensor3D
877 *
878 * @param[in] tensor Pointer to the starting position of the buffer
879 * @param[in] width Width of the input tensor
880 * @param[in] height Height of the input tensor
881 * @param[in] depth Depth of the input tensor
882 * @param[in] index Linear index
883 */
884inline __global const uchar *tensor3D_index2ptr(const Tensor3D *tensor, uint width, uint height, uint depth, uint index)
885{
886 uint num_elements = width * height;
887
888 const uint z = index / num_elements;
889
890 index %= num_elements;
891
892 const uint y = index / width;
893
894 index %= width;
895
896 const uint x = index;
897
898 return tensor->ptr + x * tensor->stride_x + y * tensor->stride_y + z * tensor->stride_z + tensor->offset_first_element_in_bytes;
899}
900
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100901#endif // _HELPER_H