blob: 611449e614a92015ef6449ab12141cac9310e72f [file] [log] [blame]
Anthony Barbier6ff3b192017-09-04 18:44:23 +01001/*
Vidhya Sudhan Loganathan7485d5a2018-07-04 09:34:00 +01002 * Copyright (c) 2016-2018 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#include "helpers.h"
25
26#ifdef SATURATE
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010027#if defined(IS_DATA_TYPE_FLOAT)
28#define CONVERT_RTE(x, type) (convert_##type##_rte((x)))
29#define CONVERT_DOWN(x, type) CONVERT_RTE(x, type)
30#else /* defined(IS_DATA_TYPE_FLOAT) */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010031#define CONVERT_DOWN(x, type) CONVERT_SAT(x, type)
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010032#endif /* defined(IS_DATA_TYPE_FLOAT) */
33#else /* SATURATE */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010034#define CONVERT_DOWN(x, type) CONVERT(x, type)
Anthony Barbierac69aa12017-07-03 17:39:37 +010035#endif /* SATURATE */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010036
steniu01da37e2f2017-06-29 10:14:58 +010037#define CONVERT_UP(x, type) CONVERT(x, type)
38
Anthony Barbier6ff3b192017-09-04 18:44:23 +010039/** This function performs a down-scaling depth conversion.
40 *
41 * @attention The input and output data_types need to be passed at compile time using -DDATA_TYPE_IN and -DDATA_TYPE_OUT:
42 * e.g. -DDATA_TYPE_IN=uchar -DDATA_TYPE_OUT=short
43 *
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010044 * @param[in] in_ptr Pointer to the source image. Supported data types: U8/U16/S16/U32/S32/F16/F32
Anthony Barbier6ff3b192017-09-04 18:44:23 +010045 * @param[in] in_stride_x Stride of the source image in X dimension (in bytes)
46 * @param[in] in_step_x in_stride_x * number of elements along X processed per workitem(in bytes)
47 * @param[in] in_stride_y Stride of the source image in Y dimension (in bytes)
48 * @param[in] in_step_y in_stride_y * number of elements along Y processed per workitem(in bytes)
49 * @param[in] in_offset_first_element_in_bytes The offset of the first element in the source image
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010050 * @param[out] out_ptr Pointer to the destination image. Supported data types: U8/U16/S16/U32/S32/F16/F32
Anthony Barbier6ff3b192017-09-04 18:44:23 +010051 * @param[in] out_stride_x Stride of the destination image in X dimension (in bytes)
52 * @param[in] out_step_x out_stride_x * number of elements along X processed per workitem(in bytes)
53 * @param[in] out_stride_y Stride of the destination image in Y dimension (in bytes)
54 * @param[in] out_step_y out_stride_y * number of elements along Y processed per workitem(in bytes)
55 * @param[in] out_offset_first_element_in_bytes The offset of the first element in the destination image
56 * @param[in] shift The integer shift amount value. Supported data types: S32
57 */
58__kernel void convert_depth_down(
59 IMAGE_DECLARATION(in),
60 IMAGE_DECLARATION(out),
61 const int shift)
62{
63 // Get pixels pointer
64 Image in = CONVERT_TO_IMAGE_STRUCT(in);
65 Image out = CONVERT_TO_IMAGE_STRUCT(out);
66
67 // Load data
68 VEC_DATA_TYPE(DATA_TYPE_IN, 16)
69 in_data = vload16(0, (__global DATA_TYPE_IN *)in.ptr);
steniu01da37e2f2017-06-29 10:14:58 +010070
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010071#if defined(IS_DATA_TYPE_FLOAT)
72 const DATA_TYPE_IN scale = (DATA_TYPE_IN)(1 << shift);
73 vstore16(CONVERT_DOWN(in_data / scale, VEC_DATA_TYPE(DATA_TYPE_OUT, 16)), 0, (__global DATA_TYPE_OUT *)out.ptr);
74#else /* defined(IS_DATA_TYPE_FLOAT) */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010075 vstore16(CONVERT_DOWN(in_data >> shift, VEC_DATA_TYPE(DATA_TYPE_OUT, 16)), 0, (__global DATA_TYPE_OUT *)out.ptr);
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010076#endif /* defined(IS_DATA_TYPE_FLOAT) */
Anthony Barbier6ff3b192017-09-04 18:44:23 +010077}
78
79/** This function performs a up-scaling depth conversion.
80 *
81 * @attention The input and output data_types need to be passed at compile time using -DDATA_TYPE_IN and -DDATA_TYPE_OUT:
82 * e.g. -DDATA_TYPE_IN=uchar -DDATA_TYPE_OUT=short
83 *
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010084 * @param[in] in_ptr Pointer to the source image. Supported data types: U8/U16/S16/U32/S32/F16/F32
Anthony Barbier6ff3b192017-09-04 18:44:23 +010085 * @param[in] in_stride_x Stride of the source image in X dimension (in bytes)
86 * @param[in] in_step_x in_stride_x * number of elements along X processed per workitem(in bytes)
87 * @param[in] in_stride_y Stride of the source image in Y dimension (in bytes)
88 * @param[in] in_step_y in_stride_y * number of elements along Y processed per workitem(in bytes)
89 * @param[in] in_offset_first_element_in_bytes The offset of the first element in the source image
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +010090 * @param[out] out_ptr Pointer to the destination image. Supported data types: U8/U16/S16/U32/S32/F16/F32
Anthony Barbier6ff3b192017-09-04 18:44:23 +010091 * @param[in] out_stride_x Stride of the destination image in X dimension (in bytes)
92 * @param[in] out_step_x out_stride_x * number of elements along X processed per workitem(in bytes)
93 * @param[in] out_stride_y Stride of the destination image in Y dimension (in bytes)
94 * @param[in] out_step_y out_stride_y * number of elements along Y processed per workitem(in bytes)
95 * @param[in] out_offset_first_element_in_bytes The offset of the first element in the destination image
96 * @param[in] shift The integer shift amount value. Supported data types: S32
97 */
98__kernel void convert_depth_up(
99 IMAGE_DECLARATION(in),
100 IMAGE_DECLARATION(out),
101 const int shift)
102{
103 // Get pixels pointer
104 Image in = CONVERT_TO_IMAGE_STRUCT(in);
105 Image out = CONVERT_TO_IMAGE_STRUCT(out);
106
107 // Load data
steniu01da37e2f2017-06-29 10:14:58 +0100108 VEC_DATA_TYPE(DATA_TYPE_IN, 16)
109 in_data = vload16(0, (__global DATA_TYPE_IN *)in.ptr);
110
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +0100111#if defined(IS_DATA_TYPE_FLOAT)
112 const DATA_TYPE_OUT scale = (DATA_TYPE_OUT)(1 << shift);
113 vstore16(CONVERT_UP(in_data, VEC_DATA_TYPE(DATA_TYPE_OUT, 16)) * scale, 0, (__global DATA_TYPE_OUT *)out.ptr);
114#else /* defined(IS_DATA_TYPE_FLOAT) */
steniu01da37e2f2017-06-29 10:14:58 +0100115 vstore16(CONVERT_UP(in_data, VEC_DATA_TYPE(DATA_TYPE_OUT, 16)) << shift, 0, (__global DATA_TYPE_OUT *)out.ptr);
Michele Di Giorgio6b4e6042018-08-02 12:02:48 +0100116#endif /* defined(IS_DATA_TYPE_FLOAT) */
Anthony Barbier6ff3b192017-09-04 18:44:23 +0100117}