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/*M///////////////////////////////////////////////////////////////////////////////////////
//
//  IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
//
//  By downloading, copying, installing or using the software you agree to this license.
//  If you do not agree to this license, do not download, install,
//  copy or use the software.
//
//
//                           License Agreement
//                For Open Source Computer Vision Library
//
// Copyright (C) 2013, OpenCV Foundation, all rights reserved.
// Third party copyrights are property of their respective owners.
//
// Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met:
//
//   * Redistribution's of source code must retain the above copyright notice,
//     this list of conditions and the following disclaimer.
//
//   * Redistribution's in binary form must reproduce the above copyright notice,
//     this list of conditions and the following disclaimer in the documentation
//     and/or other materials provided with the distribution.
//
//   * The name of the copyright holders may not be used to endorse or promote products
//     derived from this software without specific prior written permission.
//
// This software is provided by the copyright holders and contributors "as is" and
// any express or implied warranties, including, but not limited to, the implied
// warranties of merchantability and fitness for a particular purpose are disclaimed.
// In no event shall the OpenCV Foundation or contributors be liable for any direct,
// indirect, incidental, special, exemplary, or consequential damages
// (including, but not limited to, procurement of substitute goods or services;
// loss of use, data, or profits; or business interruption) however caused
// and on any theory of liability, whether in contract, strict liability,
// or tort (including negligence or otherwise) arising in any way out of
// the use of this software, even if advised of the possibility of such damage.
//
//M*/

#include "precomp.hpp"
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#include <list>
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#include <map>
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#include <string>
#include <sstream>
#include <iostream> // std::cerr
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#define CV_OPENCL_ALWAYS_SHOW_BUILD_LOG 0
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#define CV_OPENCL_SHOW_RUN_ERRORS       0
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#include "opencv2/core/bufferpool.hpp"
#ifndef LOG_BUFFER_POOL
# if 0
#   define LOG_BUFFER_POOL printf
# else
#   define LOG_BUFFER_POOL(...)
# endif
#endif

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// TODO Move to some common place
static bool getBoolParameter(const char* name, bool defaultValue)
{
    const char* envValue = getenv(name);
    if (envValue == NULL)
    {
        return defaultValue;
    }
    cv::String value = envValue;
    if (value == "1" || value == "True" || value == "true" || value == "TRUE")
    {
        return true;
    }
    if (value == "0" || value == "False" || value == "false" || value == "FALSE")
    {
        return false;
    }
    CV_ErrorNoReturn(cv::Error::StsBadArg, cv::format("Invalid value for %s parameter: %s", name, value.c_str()));
}


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// TODO Move to some common place
static size_t getConfigurationParameterForSize(const char* name, size_t defaultValue)
{
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#ifdef HAVE_WINRT
    const char* envValue = NULL;
#else
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    const char* envValue = getenv(name);
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#endif
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    if (envValue == NULL)
    {
        return defaultValue;
    }
    cv::String value = envValue;
    size_t pos = 0;
    for (; pos < value.size(); pos++)
    {
        if (!isdigit(value[pos]))
            break;
    }
    cv::String valueStr = value.substr(0, pos);
    cv::String suffixStr = value.substr(pos, value.length() - pos);
    int v = atoi(valueStr.c_str());
    if (suffixStr.length() == 0)
        return v;
    else if (suffixStr == "MB" || suffixStr == "Mb" || suffixStr == "mb")
        return v * 1024 * 1024;
    else if (suffixStr == "KB" || suffixStr == "Kb" || suffixStr == "kb")
        return v * 1024;
    CV_ErrorNoReturn(cv::Error::StsBadArg, cv::format("Invalid value for %s parameter: %s", name, value.c_str()));
}

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#include "opencv2/core/opencl/runtime/opencl_clamdblas.hpp"
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#include "opencv2/core/opencl/runtime/opencl_clamdfft.hpp"
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#ifdef HAVE_OPENCL
#include "opencv2/core/opencl/runtime/opencl_core.hpp"
#else
// TODO FIXIT: This file can't be build without OPENCL

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/*
  Part of the file is an extract from the standard OpenCL headers from Khronos site.
  Below is the original copyright.
*/

/*******************************************************************************
 * Copyright (c) 2008 - 2012 The Khronos Group Inc.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and/or associated documentation files (the
 * "Materials"), to deal in the Materials without restriction, including
 * without limitation the rights to use, copy, modify, merge, publish,
 * distribute, sublicense, and/or sell copies of the Materials, and to
 * permit persons to whom the Materials are furnished to do so, subject to
 * the following conditions:
 *
 * The above copyright notice and this permission notice shall be included
 * in all copies or substantial portions of the Materials.
 *
 * THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
 * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
 * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
 * MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
 ******************************************************************************/

#if 0 //defined __APPLE__
#define HAVE_OPENCL 1
#else
#undef HAVE_OPENCL
#endif

#define OPENCV_CL_NOT_IMPLEMENTED -1000

#ifdef HAVE_OPENCL

#if defined __APPLE__
#include <OpenCL/opencl.h>
#else
#include <CL/opencl.h>
#endif

static const bool g_haveOpenCL = true;

#else

extern "C" {

struct _cl_platform_id { int dummy; };
struct _cl_device_id { int dummy; };
struct _cl_context { int dummy; };
struct _cl_command_queue { int dummy; };
struct _cl_mem { int dummy; };
struct _cl_program { int dummy; };
struct _cl_kernel { int dummy; };
struct _cl_event { int dummy; };
struct _cl_sampler { int dummy; };

typedef struct _cl_platform_id *    cl_platform_id;
typedef struct _cl_device_id *      cl_device_id;
typedef struct _cl_context *        cl_context;
typedef struct _cl_command_queue *  cl_command_queue;
typedef struct _cl_mem *            cl_mem;
typedef struct _cl_program *        cl_program;
typedef struct _cl_kernel *         cl_kernel;
typedef struct _cl_event *          cl_event;
typedef struct _cl_sampler *        cl_sampler;

typedef int cl_int;
typedef unsigned cl_uint;
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#if defined (_WIN32) && defined(_MSC_VER)
    typedef __int64 cl_long;
    typedef unsigned __int64 cl_ulong;
#else
    typedef long cl_long;
    typedef unsigned long cl_ulong;
#endif
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typedef cl_uint             cl_bool; /* WARNING!  Unlike cl_ types in cl_platform.h, cl_bool is not guaranteed to be the same size as the bool in kernels. */
typedef cl_ulong            cl_bitfield;
typedef cl_bitfield         cl_device_type;
typedef cl_uint             cl_platform_info;
typedef cl_uint             cl_device_info;
typedef cl_bitfield         cl_device_fp_config;
typedef cl_uint             cl_device_mem_cache_type;
typedef cl_uint             cl_device_local_mem_type;
typedef cl_bitfield         cl_device_exec_capabilities;
typedef cl_bitfield         cl_command_queue_properties;
typedef intptr_t            cl_device_partition_property;
typedef cl_bitfield         cl_device_affinity_domain;

typedef intptr_t            cl_context_properties;
typedef cl_uint             cl_context_info;
typedef cl_uint             cl_command_queue_info;
typedef cl_uint             cl_channel_order;
typedef cl_uint             cl_channel_type;
typedef cl_bitfield         cl_mem_flags;
typedef cl_uint             cl_mem_object_type;
typedef cl_uint             cl_mem_info;
typedef cl_bitfield         cl_mem_migration_flags;
typedef cl_uint             cl_image_info;
typedef cl_uint             cl_buffer_create_type;
typedef cl_uint             cl_addressing_mode;
typedef cl_uint             cl_filter_mode;
typedef cl_uint             cl_sampler_info;
typedef cl_bitfield         cl_map_flags;
typedef cl_uint             cl_program_info;
typedef cl_uint             cl_program_build_info;
typedef cl_uint             cl_program_binary_type;
typedef cl_int              cl_build_status;
typedef cl_uint             cl_kernel_info;
typedef cl_uint             cl_kernel_arg_info;
typedef cl_uint             cl_kernel_arg_address_qualifier;
typedef cl_uint             cl_kernel_arg_access_qualifier;
typedef cl_bitfield         cl_kernel_arg_type_qualifier;
typedef cl_uint             cl_kernel_work_group_info;
typedef cl_uint             cl_event_info;
typedef cl_uint             cl_command_type;
typedef cl_uint             cl_profiling_info;


typedef struct _cl_image_format {
    cl_channel_order        image_channel_order;
    cl_channel_type         image_channel_data_type;
} cl_image_format;

typedef struct _cl_image_desc {
    cl_mem_object_type      image_type;
    size_t                  image_width;
    size_t                  image_height;
    size_t                  image_depth;
    size_t                  image_array_size;
    size_t                  image_row_pitch;
    size_t                  image_slice_pitch;
    cl_uint                 num_mip_levels;
    cl_uint                 num_samples;
    cl_mem                  buffer;
} cl_image_desc;

typedef struct _cl_buffer_region {
    size_t                  origin;
    size_t                  size;
} cl_buffer_region;


//////////////////////////////////////////////////////////

#define CL_SUCCESS                                  0
#define CL_DEVICE_NOT_FOUND                         -1
#define CL_DEVICE_NOT_AVAILABLE                     -2
#define CL_COMPILER_NOT_AVAILABLE                   -3
#define CL_MEM_OBJECT_ALLOCATION_FAILURE            -4
#define CL_OUT_OF_RESOURCES                         -5
#define CL_OUT_OF_HOST_MEMORY                       -6
#define CL_PROFILING_INFO_NOT_AVAILABLE             -7
#define CL_MEM_COPY_OVERLAP                         -8
#define CL_IMAGE_FORMAT_MISMATCH                    -9
#define CL_IMAGE_FORMAT_NOT_SUPPORTED               -10
#define CL_BUILD_PROGRAM_FAILURE                    -11
#define CL_MAP_FAILURE                              -12
#define CL_MISALIGNED_SUB_BUFFER_OFFSET             -13
#define CL_EXEC_STATUS_ERROR_FOR_EVENTS_IN_WAIT_LIST -14
#define CL_COMPILE_PROGRAM_FAILURE                  -15
#define CL_LINKER_NOT_AVAILABLE                     -16
#define CL_LINK_PROGRAM_FAILURE                     -17
#define CL_DEVICE_PARTITION_FAILED                  -18
#define CL_KERNEL_ARG_INFO_NOT_AVAILABLE            -19

#define CL_INVALID_VALUE                            -30
#define CL_INVALID_DEVICE_TYPE                      -31
#define CL_INVALID_PLATFORM                         -32
#define CL_INVALID_DEVICE                           -33
#define CL_INVALID_CONTEXT                          -34
#define CL_INVALID_QUEUE_PROPERTIES                 -35
#define CL_INVALID_COMMAND_QUEUE                    -36
#define CL_INVALID_HOST_PTR                         -37
#define CL_INVALID_MEM_OBJECT                       -38
#define CL_INVALID_IMAGE_FORMAT_DESCRIPTOR          -39
#define CL_INVALID_IMAGE_SIZE                       -40
#define CL_INVALID_SAMPLER                          -41
#define CL_INVALID_BINARY                           -42
#define CL_INVALID_BUILD_OPTIONS                    -43
#define CL_INVALID_PROGRAM                          -44
#define CL_INVALID_PROGRAM_EXECUTABLE               -45
#define CL_INVALID_KERNEL_NAME                      -46
#define CL_INVALID_KERNEL_DEFINITION                -47
#define CL_INVALID_KERNEL                           -48
#define CL_INVALID_ARG_INDEX                        -49
#define CL_INVALID_ARG_VALUE                        -50
#define CL_INVALID_ARG_SIZE                         -51
#define CL_INVALID_KERNEL_ARGS                      -52
#define CL_INVALID_WORK_DIMENSION                   -53
#define CL_INVALID_WORK_GROUP_SIZE                  -54
#define CL_INVALID_WORK_ITEM_SIZE                   -55
#define CL_INVALID_GLOBAL_OFFSET                    -56
#define CL_INVALID_EVENT_WAIT_LIST                  -57
#define CL_INVALID_EVENT                            -58
#define CL_INVALID_OPERATION                        -59
#define CL_INVALID_GL_OBJECT                        -60
#define CL_INVALID_BUFFER_SIZE                      -61
#define CL_INVALID_MIP_LEVEL                        -62
#define CL_INVALID_GLOBAL_WORK_SIZE                 -63
#define CL_INVALID_PROPERTY                         -64
#define CL_INVALID_IMAGE_DESCRIPTOR                 -65
#define CL_INVALID_COMPILER_OPTIONS                 -66
#define CL_INVALID_LINKER_OPTIONS                   -67
#define CL_INVALID_DEVICE_PARTITION_COUNT           -68

/*#define CL_VERSION_1_0                              1
#define CL_VERSION_1_1                              1
#define CL_VERSION_1_2                              1*/

#define CL_FALSE                                    0
#define CL_TRUE                                     1
#define CL_BLOCKING                                 CL_TRUE
#define CL_NON_BLOCKING                             CL_FALSE

#define CL_PLATFORM_PROFILE                         0x0900
#define CL_PLATFORM_VERSION                         0x0901
#define CL_PLATFORM_NAME                            0x0902
#define CL_PLATFORM_VENDOR                          0x0903
#define CL_PLATFORM_EXTENSIONS                      0x0904

#define CL_DEVICE_TYPE_DEFAULT                      (1 << 0)
#define CL_DEVICE_TYPE_CPU                          (1 << 1)
#define CL_DEVICE_TYPE_GPU                          (1 << 2)
#define CL_DEVICE_TYPE_ACCELERATOR                  (1 << 3)
#define CL_DEVICE_TYPE_CUSTOM                       (1 << 4)
#define CL_DEVICE_TYPE_ALL                          0xFFFFFFFF
#define CL_DEVICE_TYPE                              0x1000
#define CL_DEVICE_VENDOR_ID                         0x1001
#define CL_DEVICE_MAX_COMPUTE_UNITS                 0x1002
#define CL_DEVICE_MAX_WORK_ITEM_DIMENSIONS          0x1003
#define CL_DEVICE_MAX_WORK_GROUP_SIZE               0x1004
#define CL_DEVICE_MAX_WORK_ITEM_SIZES               0x1005
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_CHAR       0x1006
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_SHORT      0x1007
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_INT        0x1008
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_LONG       0x1009
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_FLOAT      0x100A
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_DOUBLE     0x100B
#define CL_DEVICE_MAX_CLOCK_FREQUENCY               0x100C
#define CL_DEVICE_ADDRESS_BITS                      0x100D
#define CL_DEVICE_MAX_READ_IMAGE_ARGS               0x100E
#define CL_DEVICE_MAX_WRITE_IMAGE_ARGS              0x100F
#define CL_DEVICE_MAX_MEM_ALLOC_SIZE                0x1010
#define CL_DEVICE_IMAGE2D_MAX_WIDTH                 0x1011
#define CL_DEVICE_IMAGE2D_MAX_HEIGHT                0x1012
#define CL_DEVICE_IMAGE3D_MAX_WIDTH                 0x1013
#define CL_DEVICE_IMAGE3D_MAX_HEIGHT                0x1014
#define CL_DEVICE_IMAGE3D_MAX_DEPTH                 0x1015
#define CL_DEVICE_IMAGE_SUPPORT                     0x1016
#define CL_DEVICE_MAX_PARAMETER_SIZE                0x1017
#define CL_DEVICE_MAX_SAMPLERS                      0x1018
#define CL_DEVICE_MEM_BASE_ADDR_ALIGN               0x1019
#define CL_DEVICE_MIN_DATA_TYPE_ALIGN_SIZE          0x101A
#define CL_DEVICE_SINGLE_FP_CONFIG                  0x101B
#define CL_DEVICE_GLOBAL_MEM_CACHE_TYPE             0x101C
#define CL_DEVICE_GLOBAL_MEM_CACHELINE_SIZE         0x101D
#define CL_DEVICE_GLOBAL_MEM_CACHE_SIZE             0x101E
#define CL_DEVICE_GLOBAL_MEM_SIZE                   0x101F
#define CL_DEVICE_MAX_CONSTANT_BUFFER_SIZE          0x1020
#define CL_DEVICE_MAX_CONSTANT_ARGS                 0x1021
#define CL_DEVICE_LOCAL_MEM_TYPE                    0x1022
#define CL_DEVICE_LOCAL_MEM_SIZE                    0x1023
#define CL_DEVICE_ERROR_CORRECTION_SUPPORT          0x1024
#define CL_DEVICE_PROFILING_TIMER_RESOLUTION        0x1025
#define CL_DEVICE_ENDIAN_LITTLE                     0x1026
#define CL_DEVICE_AVAILABLE                         0x1027
#define CL_DEVICE_COMPILER_AVAILABLE                0x1028
#define CL_DEVICE_EXECUTION_CAPABILITIES            0x1029
#define CL_DEVICE_QUEUE_PROPERTIES                  0x102A
#define CL_DEVICE_NAME                              0x102B
#define CL_DEVICE_VENDOR                            0x102C
#define CL_DRIVER_VERSION                           0x102D
#define CL_DEVICE_PROFILE                           0x102E
#define CL_DEVICE_VERSION                           0x102F
#define CL_DEVICE_EXTENSIONS                        0x1030
#define CL_DEVICE_PLATFORM                          0x1031
#define CL_DEVICE_DOUBLE_FP_CONFIG                  0x1032
#define CL_DEVICE_HALF_FP_CONFIG                    0x1033
#define CL_DEVICE_PREFERRED_VECTOR_WIDTH_HALF       0x1034
#define CL_DEVICE_HOST_UNIFIED_MEMORY               0x1035
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_CHAR          0x1036
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_SHORT         0x1037
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_INT           0x1038
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_LONG          0x1039
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_FLOAT         0x103A
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_DOUBLE        0x103B
#define CL_DEVICE_NATIVE_VECTOR_WIDTH_HALF          0x103C
#define CL_DEVICE_OPENCL_C_VERSION                  0x103D
#define CL_DEVICE_LINKER_AVAILABLE                  0x103E
#define CL_DEVICE_BUILT_IN_KERNELS                  0x103F
#define CL_DEVICE_IMAGE_MAX_BUFFER_SIZE             0x1040
#define CL_DEVICE_IMAGE_MAX_ARRAY_SIZE              0x1041
#define CL_DEVICE_PARENT_DEVICE                     0x1042
#define CL_DEVICE_PARTITION_MAX_SUB_DEVICES         0x1043
#define CL_DEVICE_PARTITION_PROPERTIES              0x1044
#define CL_DEVICE_PARTITION_AFFINITY_DOMAIN         0x1045
#define CL_DEVICE_PARTITION_TYPE                    0x1046
#define CL_DEVICE_REFERENCE_COUNT                   0x1047
#define CL_DEVICE_PREFERRED_INTEROP_USER_SYNC       0x1048
#define CL_DEVICE_PRINTF_BUFFER_SIZE                0x1049
#define CL_DEVICE_IMAGE_PITCH_ALIGNMENT             0x104A
#define CL_DEVICE_IMAGE_BASE_ADDRESS_ALIGNMENT      0x104B

#define CL_FP_DENORM                                (1 << 0)
#define CL_FP_INF_NAN                               (1 << 1)
#define CL_FP_ROUND_TO_NEAREST                      (1 << 2)
#define CL_FP_ROUND_TO_ZERO                         (1 << 3)
#define CL_FP_ROUND_TO_INF                          (1 << 4)
#define CL_FP_FMA                                   (1 << 5)
#define CL_FP_SOFT_FLOAT                            (1 << 6)
#define CL_FP_CORRECTLY_ROUNDED_DIVIDE_SQRT         (1 << 7)

#define CL_NONE                                     0x0
#define CL_READ_ONLY_CACHE                          0x1
#define CL_READ_WRITE_CACHE                         0x2
#define CL_LOCAL                                    0x1
#define CL_GLOBAL                                   0x2
#define CL_EXEC_KERNEL                              (1 << 0)
#define CL_EXEC_NATIVE_KERNEL                       (1 << 1)
#define CL_QUEUE_OUT_OF_ORDER_EXEC_MODE_ENABLE      (1 << 0)
#define CL_QUEUE_PROFILING_ENABLE                   (1 << 1)

#define CL_CONTEXT_REFERENCE_COUNT                  0x1080
#define CL_CONTEXT_DEVICES                          0x1081
#define CL_CONTEXT_PROPERTIES                       0x1082
#define CL_CONTEXT_NUM_DEVICES                      0x1083
#define CL_CONTEXT_PLATFORM                         0x1084
#define CL_CONTEXT_INTEROP_USER_SYNC                0x1085

#define CL_DEVICE_PARTITION_EQUALLY                 0x1086
#define CL_DEVICE_PARTITION_BY_COUNTS               0x1087
#define CL_DEVICE_PARTITION_BY_COUNTS_LIST_END      0x0
#define CL_DEVICE_PARTITION_BY_AFFINITY_DOMAIN      0x1088
#define CL_DEVICE_AFFINITY_DOMAIN_NUMA                     (1 << 0)
#define CL_DEVICE_AFFINITY_DOMAIN_L4_CACHE                 (1 << 1)
#define CL_DEVICE_AFFINITY_DOMAIN_L3_CACHE                 (1 << 2)
#define CL_DEVICE_AFFINITY_DOMAIN_L2_CACHE                 (1 << 3)
#define CL_DEVICE_AFFINITY_DOMAIN_L1_CACHE                 (1 << 4)
#define CL_DEVICE_AFFINITY_DOMAIN_NEXT_PARTITIONABLE       (1 << 5)
#define CL_QUEUE_CONTEXT                            0x1090
#define CL_QUEUE_DEVICE                             0x1091
#define CL_QUEUE_REFERENCE_COUNT                    0x1092
#define CL_QUEUE_PROPERTIES                         0x1093
#define CL_MEM_READ_WRITE                           (1 << 0)
#define CL_MEM_WRITE_ONLY                           (1 << 1)
#define CL_MEM_READ_ONLY                            (1 << 2)
#define CL_MEM_USE_HOST_PTR                         (1 << 3)
#define CL_MEM_ALLOC_HOST_PTR                       (1 << 4)
#define CL_MEM_COPY_HOST_PTR                        (1 << 5)
476
// reserved                                         (1 << 6)
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#define CL_MEM_HOST_WRITE_ONLY                      (1 << 7)
#define CL_MEM_HOST_READ_ONLY                       (1 << 8)
#define CL_MEM_HOST_NO_ACCESS                       (1 << 9)
#define CL_MIGRATE_MEM_OBJECT_HOST                  (1 << 0)
#define CL_MIGRATE_MEM_OBJECT_CONTENT_UNDEFINED     (1 << 1)

#define CL_R                                        0x10B0
#define CL_A                                        0x10B1
#define CL_RG                                       0x10B2
#define CL_RA                                       0x10B3
#define CL_RGB                                      0x10B4
#define CL_RGBA                                     0x10B5
#define CL_BGRA                                     0x10B6
#define CL_ARGB                                     0x10B7
#define CL_INTENSITY                                0x10B8
#define CL_LUMINANCE                                0x10B9
#define CL_Rx                                       0x10BA
#define CL_RGx                                      0x10BB
#define CL_RGBx                                     0x10BC
#define CL_DEPTH                                    0x10BD
#define CL_DEPTH_STENCIL                            0x10BE

#define CL_SNORM_INT8                               0x10D0
#define CL_SNORM_INT16                              0x10D1
#define CL_UNORM_INT8                               0x10D2
#define CL_UNORM_INT16                              0x10D3
#define CL_UNORM_SHORT_565                          0x10D4
#define CL_UNORM_SHORT_555                          0x10D5
#define CL_UNORM_INT_101010                         0x10D6
#define CL_SIGNED_INT8                              0x10D7
#define CL_SIGNED_INT16                             0x10D8
#define CL_SIGNED_INT32                             0x10D9
#define CL_UNSIGNED_INT8                            0x10DA
#define CL_UNSIGNED_INT16                           0x10DB
#define CL_UNSIGNED_INT32                           0x10DC
#define CL_HALF_FLOAT                               0x10DD
#define CL_FLOAT                                    0x10DE
#define CL_UNORM_INT24                              0x10DF

#define CL_MEM_OBJECT_BUFFER                        0x10F0
#define CL_MEM_OBJECT_IMAGE2D                       0x10F1
#define CL_MEM_OBJECT_IMAGE3D                       0x10F2
#define CL_MEM_OBJECT_IMAGE2D_ARRAY                 0x10F3
#define CL_MEM_OBJECT_IMAGE1D                       0x10F4
#define CL_MEM_OBJECT_IMAGE1D_ARRAY                 0x10F5
#define CL_MEM_OBJECT_IMAGE1D_BUFFER                0x10F6

#define CL_MEM_TYPE                                 0x1100
#define CL_MEM_FLAGS                                0x1101
#define CL_MEM_SIZE                                 0x1102
#define CL_MEM_HOST_PTR                             0x1103
#define CL_MEM_MAP_COUNT                            0x1104
#define CL_MEM_REFERENCE_COUNT                      0x1105
#define CL_MEM_CONTEXT                              0x1106
#define CL_MEM_ASSOCIATED_MEMOBJECT                 0x1107
#define CL_MEM_OFFSET                               0x1108

#define CL_IMAGE_FORMAT                             0x1110
#define CL_IMAGE_ELEMENT_SIZE                       0x1111
#define CL_IMAGE_ROW_PITCH                          0x1112
#define CL_IMAGE_SLICE_PITCH                        0x1113
#define CL_IMAGE_WIDTH                              0x1114
#define CL_IMAGE_HEIGHT                             0x1115
#define CL_IMAGE_DEPTH                              0x1116
#define CL_IMAGE_ARRAY_SIZE                         0x1117
#define CL_IMAGE_BUFFER                             0x1118
#define CL_IMAGE_NUM_MIP_LEVELS                     0x1119
#define CL_IMAGE_NUM_SAMPLES                        0x111A

#define CL_ADDRESS_NONE                             0x1130
#define CL_ADDRESS_CLAMP_TO_EDGE                    0x1131
#define CL_ADDRESS_CLAMP                            0x1132
#define CL_ADDRESS_REPEAT                           0x1133
#define CL_ADDRESS_MIRRORED_REPEAT                  0x1134

#define CL_FILTER_NEAREST                           0x1140
#define CL_FILTER_LINEAR                            0x1141

#define CL_SAMPLER_REFERENCE_COUNT                  0x1150
#define CL_SAMPLER_CONTEXT                          0x1151
#define CL_SAMPLER_NORMALIZED_COORDS                0x1152
#define CL_SAMPLER_ADDRESSING_MODE                  0x1153
#define CL_SAMPLER_FILTER_MODE                      0x1154

#define CL_MAP_READ                                 (1 << 0)
#define CL_MAP_WRITE                                (1 << 1)
#define CL_MAP_WRITE_INVALIDATE_REGION              (1 << 2)

#define CL_PROGRAM_REFERENCE_COUNT                  0x1160
#define CL_PROGRAM_CONTEXT                          0x1161
#define CL_PROGRAM_NUM_DEVICES                      0x1162
#define CL_PROGRAM_DEVICES                          0x1163
#define CL_PROGRAM_SOURCE                           0x1164
#define CL_PROGRAM_BINARY_SIZES                     0x1165
#define CL_PROGRAM_BINARIES                         0x1166
#define CL_PROGRAM_NUM_KERNELS                      0x1167
#define CL_PROGRAM_KERNEL_NAMES                     0x1168
#define CL_PROGRAM_BUILD_STATUS                     0x1181
#define CL_PROGRAM_BUILD_OPTIONS                    0x1182
#define CL_PROGRAM_BUILD_LOG                        0x1183
#define CL_PROGRAM_BINARY_TYPE                      0x1184
#define CL_PROGRAM_BINARY_TYPE_NONE                 0x0
#define CL_PROGRAM_BINARY_TYPE_COMPILED_OBJECT      0x1
#define CL_PROGRAM_BINARY_TYPE_LIBRARY              0x2
#define CL_PROGRAM_BINARY_TYPE_EXECUTABLE           0x4

#define CL_BUILD_SUCCESS                            0
#define CL_BUILD_NONE                               -1
#define CL_BUILD_ERROR                              -2
#define CL_BUILD_IN_PROGRESS                        -3

#define CL_KERNEL_FUNCTION_NAME                     0x1190
#define CL_KERNEL_NUM_ARGS                          0x1191
#define CL_KERNEL_REFERENCE_COUNT                   0x1192
#define CL_KERNEL_CONTEXT                           0x1193
#define CL_KERNEL_PROGRAM                           0x1194
#define CL_KERNEL_ATTRIBUTES                        0x1195
#define CL_KERNEL_ARG_ADDRESS_QUALIFIER             0x1196
#define CL_KERNEL_ARG_ACCESS_QUALIFIER              0x1197
#define CL_KERNEL_ARG_TYPE_NAME                     0x1198
#define CL_KERNEL_ARG_TYPE_QUALIFIER                0x1199
#define CL_KERNEL_ARG_NAME                          0x119A
#define CL_KERNEL_ARG_ADDRESS_GLOBAL                0x119B
#define CL_KERNEL_ARG_ADDRESS_LOCAL                 0x119C
#define CL_KERNEL_ARG_ADDRESS_CONSTANT              0x119D
#define CL_KERNEL_ARG_ADDRESS_PRIVATE               0x119E
#define CL_KERNEL_ARG_ACCESS_READ_ONLY              0x11A0
#define CL_KERNEL_ARG_ACCESS_WRITE_ONLY             0x11A1
#define CL_KERNEL_ARG_ACCESS_READ_WRITE             0x11A2
#define CL_KERNEL_ARG_ACCESS_NONE                   0x11A3
#define CL_KERNEL_ARG_TYPE_NONE                     0
#define CL_KERNEL_ARG_TYPE_CONST                    (1 << 0)
#define CL_KERNEL_ARG_TYPE_RESTRICT                 (1 << 1)
#define CL_KERNEL_ARG_TYPE_VOLATILE                 (1 << 2)
#define CL_KERNEL_WORK_GROUP_SIZE                   0x11B0
#define CL_KERNEL_COMPILE_WORK_GROUP_SIZE           0x11B1
#define CL_KERNEL_LOCAL_MEM_SIZE                    0x11B2
#define CL_KERNEL_PREFERRED_WORK_GROUP_SIZE_MULTIPLE 0x11B3
#define CL_KERNEL_PRIVATE_MEM_SIZE                  0x11B4
#define CL_KERNEL_GLOBAL_WORK_SIZE                  0x11B5

#define CL_EVENT_COMMAND_QUEUE                      0x11D0
#define CL_EVENT_COMMAND_TYPE                       0x11D1
#define CL_EVENT_REFERENCE_COUNT                    0x11D2
#define CL_EVENT_COMMAND_EXECUTION_STATUS           0x11D3
#define CL_EVENT_CONTEXT                            0x11D4

#define CL_COMMAND_NDRANGE_KERNEL                   0x11F0
#define CL_COMMAND_TASK                             0x11F1
#define CL_COMMAND_NATIVE_KERNEL                    0x11F2
#define CL_COMMAND_READ_BUFFER                      0x11F3
#define CL_COMMAND_WRITE_BUFFER                     0x11F4
#define CL_COMMAND_COPY_BUFFER                      0x11F5
#define CL_COMMAND_READ_IMAGE                       0x11F6
#define CL_COMMAND_WRITE_IMAGE                      0x11F7
#define CL_COMMAND_COPY_IMAGE                       0x11F8
#define CL_COMMAND_COPY_IMAGE_TO_BUFFER             0x11F9
#define CL_COMMAND_COPY_BUFFER_TO_IMAGE             0x11FA
#define CL_COMMAND_MAP_BUFFER                       0x11FB
#define CL_COMMAND_MAP_IMAGE                        0x11FC
#define CL_COMMAND_UNMAP_MEM_OBJECT                 0x11FD
#define CL_COMMAND_MARKER                           0x11FE
#define CL_COMMAND_ACQUIRE_GL_OBJECTS               0x11FF
#define CL_COMMAND_RELEASE_GL_OBJECTS               0x1200
#define CL_COMMAND_READ_BUFFER_RECT                 0x1201
#define CL_COMMAND_WRITE_BUFFER_RECT                0x1202
#define CL_COMMAND_COPY_BUFFER_RECT                 0x1203
#define CL_COMMAND_USER                             0x1204
#define CL_COMMAND_BARRIER                          0x1205
#define CL_COMMAND_MIGRATE_MEM_OBJECTS              0x1206
#define CL_COMMAND_FILL_BUFFER                      0x1207
#define CL_COMMAND_FILL_IMAGE                       0x1208

#define CL_COMPLETE                                 0x0
#define CL_RUNNING                                  0x1
#define CL_SUBMITTED                                0x2
#define CL_QUEUED                                   0x3
#define CL_BUFFER_CREATE_TYPE_REGION                0x1220

#define CL_PROFILING_COMMAND_QUEUED                 0x1280
#define CL_PROFILING_COMMAND_SUBMIT                 0x1281
#define CL_PROFILING_COMMAND_START                  0x1282
#define CL_PROFILING_COMMAND_END                    0x1283

#define CL_CALLBACK CV_STDCALL

static volatile bool g_haveOpenCL = false;
static const char* oclFuncToCheck = "clEnqueueReadBufferRect";

#if defined(__APPLE__)
#include <dlfcn.h>

static void* initOpenCLAndLoad(const char* funcname)
{
    static bool initialized = false;
    static void* handle = 0;
    if (!handle)
    {
        if(!initialized)
        {
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            const char* oclpath = getenv("OPENCV_OPENCL_RUNTIME");
            oclpath = oclpath && strlen(oclpath) > 0 ? oclpath :
                "/System/Library/Frameworks/OpenCL.framework/Versions/Current/OpenCL";
            handle = dlopen(oclpath, RTLD_LAZY);
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            initialized = true;
            g_haveOpenCL = handle != 0 && dlsym(handle, oclFuncToCheck) != 0;
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            if( g_haveOpenCL )
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                fprintf(stderr, "Successfully loaded OpenCL v1.1+ runtime from %s\n", oclpath);
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            else
                fprintf(stderr, "Failed to load OpenCL runtime\n");
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        }
        if(!handle)
            return 0;
    }

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    return funcname && handle ? dlsym(handle, funcname) : 0;
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}

#elif defined WIN32 || defined _WIN32

#ifndef _WIN32_WINNT           // This is needed for the declaration of TryEnterCriticalSection in winbase.h with Visual Studio 2005 (and older?)
  #define _WIN32_WINNT 0x0400  // http://msdn.microsoft.com/en-us/library/ms686857(VS.85).aspx
#endif
#include <windows.h>
#if (_WIN32_WINNT >= 0x0602)
  #include <synchapi.h>
#endif
#undef small
#undef min
#undef max
#undef abs

static void* initOpenCLAndLoad(const char* funcname)
{
    static bool initialized = false;
    static HMODULE handle = 0;
    if (!handle)
    {
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#ifndef HAVE_WINRT
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        if(!initialized)
        {
            handle = LoadLibraryA("OpenCL.dll");
            initialized = true;
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            g_haveOpenCL = handle != 0 && GetProcAddress(handle, oclFuncToCheck) != 0;
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        }
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#endif
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        if(!handle)
            return 0;
    }
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    return funcname ? (void*)GetProcAddress(handle, funcname) : 0;
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}

#elif defined(__linux)

#include <dlfcn.h>
#include <stdio.h>

static void* initOpenCLAndLoad(const char* funcname)
{
    static bool initialized = false;
    static void* handle = 0;
    if (!handle)
    {
        if(!initialized)
        {
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            handle = dlopen("libOpenCL.so", RTLD_LAZY);
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            if(!handle)
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                handle = dlopen("libCL.so", RTLD_LAZY);
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            initialized = true;
            g_haveOpenCL = handle != 0 && dlsym(handle, oclFuncToCheck) != 0;
        }
        if(!handle)
            return 0;
    }
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    return funcname ? (void*)dlsym(handle, funcname) : 0;
}

#else

static void* initOpenCLAndLoad(const char*)
{
    return 0;
}

#endif


#define OCL_FUNC(rettype, funcname, argsdecl, args) \
    typedef rettype (CV_STDCALL * funcname##_t) argsdecl; \
    static rettype funcname argsdecl \
    { \
        static funcname##_t funcname##_p = 0; \
        if( !funcname##_p ) \
        { \
            funcname##_p = (funcname##_t)initOpenCLAndLoad(#funcname); \
            if( !funcname##_p ) \
                return OPENCV_CL_NOT_IMPLEMENTED; \
        } \
        return funcname##_p args; \
    }


#define OCL_FUNC_P(rettype, funcname, argsdecl, args) \
    typedef rettype (CV_STDCALL * funcname##_t) argsdecl; \
    static rettype funcname argsdecl \
    { \
        static funcname##_t funcname##_p = 0; \
        if( !funcname##_p ) \
        { \
            funcname##_p = (funcname##_t)initOpenCLAndLoad(#funcname); \
            if( !funcname##_p ) \
            { \
                if( errcode_ret ) \
                    *errcode_ret = OPENCV_CL_NOT_IMPLEMENTED; \
                return 0; \
            } \
        } \
        return funcname##_p args; \
    }

OCL_FUNC(cl_int, clGetPlatformIDs,
    (cl_uint num_entries, cl_platform_id* platforms, cl_uint* num_platforms),
    (num_entries, platforms, num_platforms))

OCL_FUNC(cl_int, clGetPlatformInfo,
    (cl_platform_id platform, cl_platform_info param_name,
    size_t param_value_size, void * param_value,
    size_t * param_value_size_ret),
    (platform, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC(cl_int, clGetDeviceInfo,
         (cl_device_id device,
          cl_device_info param_name,
          size_t param_value_size,
          void * param_value,
          size_t * param_value_size_ret),
         (device, param_name, param_value_size, param_value, param_value_size_ret))


OCL_FUNC(cl_int, clGetDeviceIDs,
    (cl_platform_id platform,
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    cl_device_type device_type,
    cl_uint num_entries,
    cl_device_id * devices,
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    cl_uint * num_devices),
    (platform, device_type, num_entries, devices, num_devices))

OCL_FUNC_P(cl_context, clCreateContext,
    (const cl_context_properties * properties,
    cl_uint num_devices,
    const cl_device_id * devices,
    void (CL_CALLBACK * pfn_notify)(const char *, const void *, size_t, void *),
    void * user_data,
    cl_int * errcode_ret),
    (properties, num_devices, devices, pfn_notify, user_data, errcode_ret))

OCL_FUNC(cl_int, clReleaseContext, (cl_context context), (context))

/*
OCL_FUNC(cl_int, clRetainContext, (cl_context context), (context))

OCL_FUNC_P(cl_context, clCreateContextFromType,
    (const cl_context_properties * properties,
    cl_device_type device_type,
    void (CL_CALLBACK * pfn_notify)(const char *, const void *, size_t, void *),
    void * user_data,
    cl_int * errcode_ret),
    (properties, device_type, pfn_notify, user_data, errcode_ret))

OCL_FUNC(cl_int, clGetContextInfo,
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    (cl_context context,
    cl_context_info param_name,
    size_t param_value_size,
    void * param_value,
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    size_t * param_value_size_ret),
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    (context, param_name, param_value_size,
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    param_value, param_value_size_ret))
*/
OCL_FUNC_P(cl_command_queue, clCreateCommandQueue,
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    (cl_context context,
    cl_device_id device,
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    cl_command_queue_properties properties,
    cl_int * errcode_ret),
    (context, device, properties, errcode_ret))

OCL_FUNC(cl_int, clReleaseCommandQueue, (cl_command_queue command_queue), (command_queue))

OCL_FUNC_P(cl_mem, clCreateBuffer,
    (cl_context context,
    cl_mem_flags flags,
    size_t size,
    void * host_ptr,
    cl_int * errcode_ret),
    (context, flags, size, host_ptr, errcode_ret))

/*
OCL_FUNC(cl_int, clRetainCommandQueue, (cl_command_queue command_queue), (command_queue))

OCL_FUNC(cl_int, clGetCommandQueueInfo,
 (cl_command_queue command_queue,
 cl_command_queue_info param_name,
 size_t param_value_size,
 void * param_value,
 size_t * param_value_size_ret),
 (command_queue, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC_P(cl_mem, clCreateSubBuffer,
    (cl_mem buffer,
    cl_mem_flags flags,
    cl_buffer_create_type buffer_create_type,
    const void * buffer_create_info,
    cl_int * errcode_ret),
    (buffer, flags, buffer_create_type, buffer_create_info, errcode_ret))
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*/
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OCL_FUNC_P(cl_mem, clCreateImage,
    (cl_context context,
    cl_mem_flags flags,
    const cl_image_format * image_format,
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    const cl_image_desc * image_desc,
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    void * host_ptr,
    cl_int * errcode_ret),
    (context, flags, image_format, image_desc, host_ptr, errcode_ret))

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OCL_FUNC_P(cl_mem, clCreateImage2D,
    (cl_context context,
    cl_mem_flags flags,
    const cl_image_format * image_format,
    size_t image_width,
    size_t image_height,
    size_t image_row_pitch,
    void * host_ptr,
    cl_int *errcode_ret),
    (context, flags, image_format, image_width, image_height, image_row_pitch, host_ptr, errcode_ret))

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OCL_FUNC(cl_int, clGetSupportedImageFormats,
 (cl_context context,
 cl_mem_flags flags,
 cl_mem_object_type image_type,
 cl_uint num_entries,
 cl_image_format * image_formats,
 cl_uint * num_image_formats),
 (context, flags, image_type, num_entries, image_formats, num_image_formats))

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/*
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OCL_FUNC(cl_int, clGetMemObjectInfo,
 (cl_mem memobj,
 cl_mem_info param_name,
 size_t param_value_size,
 void * param_value,
 size_t * param_value_size_ret),
 (memobj, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC(cl_int, clGetImageInfo,
 (cl_mem image,
 cl_image_info param_name,
 size_t param_value_size,
 void * param_value,
 size_t * param_value_size_ret),
 (image, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC(cl_int, clCreateKernelsInProgram,
 (cl_program program,
 cl_uint num_kernels,
 cl_kernel * kernels,
 cl_uint * num_kernels_ret),
 (program, num_kernels, kernels, num_kernels_ret))

OCL_FUNC(cl_int, clRetainKernel, (cl_kernel kernel), (kernel))

OCL_FUNC(cl_int, clGetKernelArgInfo,
 (cl_kernel kernel,
 cl_uint arg_indx,
 cl_kernel_arg_info param_name,
 size_t param_value_size,
 void * param_value,
 size_t * param_value_size_ret),
 (kernel, arg_indx, param_name, param_value_size, param_value, param_value_size_ret))
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OCL_FUNC(cl_int, clEnqueueReadImage,
 (cl_command_queue command_queue,
 cl_mem image,
 cl_bool blocking_read,
 const size_t * origin[3],
 const size_t * region[3],
 size_t row_pitch,
 size_t slice_pitch,
 void * ptr,
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, image, blocking_read, origin, region,
 row_pitch, slice_pitch,
 ptr,
 num_events_in_wait_list,
 event_wait_list,
 event))

OCL_FUNC(cl_int, clEnqueueWriteImage,
 (cl_command_queue command_queue,
 cl_mem image,
 cl_bool blocking_write,
 const size_t * origin[3],
 const size_t * region[3],
 size_t input_row_pitch,
 size_t input_slice_pitch,
 const void * ptr,
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, image, blocking_write, origin, region, input_row_pitch,
 input_slice_pitch, ptr, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueFillImage,
 (cl_command_queue command_queue,
 cl_mem image,
 const void * fill_color,
 const size_t * origin[3],
 const size_t * region[3],
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, image, fill_color, origin, region,
 num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueCopyImage,
 (cl_command_queue command_queue,
 cl_mem src_image,
 cl_mem dst_image,
 const size_t * src_origin[3],
 const size_t * dst_origin[3],
 const size_t * region[3],
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, src_image, dst_image, src_origin, dst_origin,
 region, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueCopyImageToBuffer,
 (cl_command_queue command_queue,
 cl_mem src_image,
 cl_mem dst_buffer,
 const size_t * src_origin[3],
 const size_t * region[3],
 size_t dst_offset,
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, src_image, dst_buffer, src_origin, region, dst_offset,
 num_events_in_wait_list, event_wait_list, event))
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*/
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OCL_FUNC(cl_int, clEnqueueCopyBufferToImage,
 (cl_command_queue command_queue,
 cl_mem src_buffer,
 cl_mem dst_image,
 size_t src_offset,
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 const size_t dst_origin[3],
 const size_t region[3],
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 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event),
 (command_queue, src_buffer, dst_image, src_offset, dst_origin,
 region, num_events_in_wait_list, event_wait_list, event))

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 OCL_FUNC(cl_int, clFlush,
 (cl_command_queue command_queue),
 (command_queue))
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/*
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OCL_FUNC_P(void*, clEnqueueMapImage,
 (cl_command_queue command_queue,
 cl_mem image,
 cl_bool blocking_map,
 cl_map_flags map_flags,
 const size_t * origin[3],
 const size_t * region[3],
 size_t * image_row_pitch,
 size_t * image_slice_pitch,
 cl_uint num_events_in_wait_list,
 const cl_event * event_wait_list,
 cl_event * event,
 cl_int * errcode_ret),
 (command_queue, image, blocking_map, map_flags, origin, region,
 image_row_pitch, image_slice_pitch, num_events_in_wait_list,
 event_wait_list, event, errcode_ret))
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*/
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/*
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OCL_FUNC(cl_int, clRetainProgram, (cl_program program), (program))
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OCL_FUNC(cl_int, clGetKernelInfo,
 (cl_kernel kernel,
 cl_kernel_info param_name,
 size_t param_value_size,
 void * param_value,
 size_t * param_value_size_ret),
 (kernel, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC(cl_int, clRetainMemObject, (cl_mem memobj), (memobj))

*/

OCL_FUNC(cl_int, clReleaseMemObject, (cl_mem memobj), (memobj))


OCL_FUNC_P(cl_program, clCreateProgramWithSource,
    (cl_context context,
    cl_uint count,
    const char ** strings,
    const size_t * lengths,
    cl_int * errcode_ret),
    (context, count, strings, lengths, errcode_ret))

OCL_FUNC_P(cl_program, clCreateProgramWithBinary,
    (cl_context context,
    cl_uint num_devices,
    const cl_device_id * device_list,
    const size_t * lengths,
    const unsigned char ** binaries,
    cl_int * binary_status,
    cl_int * errcode_ret),
    (context, num_devices, device_list, lengths, binaries, binary_status, errcode_ret))

OCL_FUNC(cl_int, clReleaseProgram, (cl_program program), (program))

OCL_FUNC(cl_int, clBuildProgram,
    (cl_program program,
    cl_uint num_devices,
    const cl_device_id * device_list,
1109
    const char * options,
1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129
    void (CL_CALLBACK * pfn_notify)(cl_program, void *),
    void * user_data),
    (program, num_devices, device_list, options, pfn_notify, user_data))

OCL_FUNC(cl_int, clGetProgramInfo,
    (cl_program program,
    cl_program_info param_name,
    size_t param_value_size,
    void * param_value,
    size_t * param_value_size_ret),
    (program, param_name, param_value_size, param_value, param_value_size_ret))

OCL_FUNC(cl_int, clGetProgramBuildInfo,
    (cl_program program,
    cl_device_id device,
    cl_program_build_info param_name,
    size_t param_value_size,
    void * param_value,
    size_t * param_value_size_ret),
    (program, device, param_name, param_value_size, param_value, param_value_size_ret))
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OCL_FUNC_P(cl_kernel, clCreateKernel,
    (cl_program program,
    const char * kernel_name,
    cl_int * errcode_ret),
    (program, kernel_name, errcode_ret))

OCL_FUNC(cl_int, clReleaseKernel, (cl_kernel kernel), (kernel))

OCL_FUNC(cl_int, clSetKernelArg,
    (cl_kernel kernel,
    cl_uint arg_index,
    size_t arg_size,
    const void * arg_value),
    (kernel, arg_index, arg_size, arg_value))

OCL_FUNC(cl_int, clGetKernelWorkGroupInfo,
    (cl_kernel kernel,
    cl_device_id device,
    cl_kernel_work_group_info param_name,
    size_t param_value_size,
    void * param_value,
    size_t * param_value_size_ret),
    (kernel, device, param_name, param_value_size, param_value, param_value_size_ret))
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OCL_FUNC(cl_int, clFinish, (cl_command_queue command_queue), (command_queue))

OCL_FUNC(cl_int, clEnqueueReadBuffer,
    (cl_command_queue command_queue,
    cl_mem buffer,
    cl_bool blocking_read,
    size_t offset,
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    size_t size,
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    void * ptr,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, buffer, blocking_read, offset, size, ptr,
    num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueReadBufferRect,
    (cl_command_queue command_queue,
    cl_mem buffer,
    cl_bool blocking_read,
    const size_t * buffer_offset,
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    const size_t * host_offset,
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    const size_t * region,
    size_t buffer_row_pitch,
    size_t buffer_slice_pitch,
    size_t host_row_pitch,
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    size_t host_slice_pitch,
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    void * ptr,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, buffer, blocking_read, buffer_offset, host_offset, region, buffer_row_pitch,
    buffer_slice_pitch, host_row_pitch, host_slice_pitch, ptr, num_events_in_wait_list,
    event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueWriteBuffer,
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    (cl_command_queue command_queue,
    cl_mem buffer,
    cl_bool blocking_write,
    size_t offset,
    size_t size,
    const void * ptr,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
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    cl_event * event),
    (command_queue, buffer, blocking_write, offset, size, ptr,
    num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueWriteBufferRect,
    (cl_command_queue command_queue,
    cl_mem buffer,
    cl_bool blocking_write,
    const size_t * buffer_offset,
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    const size_t * host_offset,
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    const size_t * region,
    size_t buffer_row_pitch,
    size_t buffer_slice_pitch,
    size_t host_row_pitch,
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    size_t host_slice_pitch,
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    const void * ptr,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, buffer, blocking_write, buffer_offset, host_offset,
    region, buffer_row_pitch, buffer_slice_pitch, host_row_pitch,
    host_slice_pitch, ptr, num_events_in_wait_list, event_wait_list, event))

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/*OCL_FUNC(cl_int, clEnqueueFillBuffer,
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    (cl_command_queue command_queue,
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    cl_mem buffer,
    const void * pattern,
    size_t pattern_size,
    size_t offset,
    size_t size,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
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    cl_event * event),
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    (command_queue, buffer, pattern, pattern_size, offset, size,
    num_events_in_wait_list, event_wait_list, event))*/
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OCL_FUNC(cl_int, clEnqueueCopyBuffer,
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    (cl_command_queue command_queue,
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    cl_mem src_buffer,
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    cl_mem dst_buffer,
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    size_t src_offset,
    size_t dst_offset,
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    size_t size,
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    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, src_buffer, dst_buffer, src_offset, dst_offset,
    size, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueCopyBufferRect,
1248
    (cl_command_queue command_queue,
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    cl_mem src_buffer,
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    cl_mem dst_buffer,
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    const size_t * src_origin,
    const size_t * dst_origin,
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    const size_t * region,
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    size_t src_row_pitch,
    size_t src_slice_pitch,
    size_t dst_row_pitch,
    size_t dst_slice_pitch,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, src_buffer, dst_buffer, src_origin, dst_origin,
    region, src_row_pitch, src_slice_pitch, dst_row_pitch, dst_slice_pitch,
    num_events_in_wait_list, event_wait_list, event))

OCL_FUNC_P(void*, clEnqueueMapBuffer,
    (cl_command_queue command_queue,
    cl_mem buffer,
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    cl_bool blocking_map,
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    cl_map_flags map_flags,
    size_t offset,
    size_t size,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event,
    cl_int * errcode_ret),
    (command_queue, buffer, blocking_map, map_flags, offset, size,
    num_events_in_wait_list, event_wait_list, event, errcode_ret))

OCL_FUNC(cl_int, clEnqueueUnmapMemObject,
    (cl_command_queue command_queue,
    cl_mem memobj,
    void * mapped_ptr,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, memobj, mapped_ptr, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueNDRangeKernel,
    (cl_command_queue command_queue,
    cl_kernel kernel,
    cl_uint work_dim,
    const size_t * global_work_offset,
    const size_t * global_work_size,
    const size_t * local_work_size,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, kernel, work_dim, global_work_offset, global_work_size,
    local_work_size, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clEnqueueTask,
    (cl_command_queue command_queue,
    cl_kernel kernel,
    cl_uint num_events_in_wait_list,
    const cl_event * event_wait_list,
    cl_event * event),
    (command_queue, kernel, num_events_in_wait_list, event_wait_list, event))

OCL_FUNC(cl_int, clSetEventCallback,
    (cl_event event,
    cl_int command_exec_callback_type ,
    void (CL_CALLBACK  *pfn_event_notify) (cl_event event, cl_int event_command_exec_status, void *user_data),
    void *user_data),
    (event, command_exec_callback_type, pfn_event_notify, user_data))

OCL_FUNC(cl_int, clReleaseEvent, (cl_event event), (event))

}

#endif

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#ifndef CL_VERSION_1_2
#define CL_VERSION_1_2
#endif

#endif

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#ifdef _DEBUG
#define CV_OclDbgAssert CV_DbgAssert
#else
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static bool isRaiseError()
{
    static bool initialized = false;
    static bool value = false;
    if (!initialized)
    {
        value = getBoolParameter("OPENCV_OPENCL_RAISE_ERROR", false);
        initialized = true;
    }
    return value;
}
#define CV_OclDbgAssert(expr) do { if (isRaiseError()) { CV_Assert(expr); } else { (void)(expr); } } while ((void)0, 0)
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#endif

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namespace cv { namespace ocl {

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struct UMat2D
{
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    UMat2D(const UMat& m)
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    {
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        offset = (int)m.offset;
        step = (int)m.step;
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        rows = m.rows;
        cols = m.cols;
    }
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    int offset;
    int step;
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    int rows;
    int cols;
};

struct UMat3D
{
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    UMat3D(const UMat& m)
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    {
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        offset = (int)m.offset;
        step = (int)m.step.p[1];
        slicestep = (int)m.step.p[0];
        slices = (int)m.size.p[0];
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        rows = m.size.p[1];
        cols = m.size.p[2];
    }
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    int offset;
    int slicestep;
    int step;
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    int slices;
    int rows;
    int cols;
};

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// Computes 64-bit "cyclic redundancy check" sum, as specified in ECMA-182
static uint64 crc64( const uchar* data, size_t size, uint64 crc0=0 )
{
    static uint64 table[256];
    static bool initialized = false;

    if( !initialized )
    {
        for( int i = 0; i < 256; i++ )
        {
            uint64 c = i;
            for( int j = 0; j < 8; j++ )
                c = ((c & 1) ? CV_BIG_UINT(0xc96c5795d7870f42) : 0) ^ (c >> 1);
            table[i] = c;
        }
        initialized = true;
    }

    uint64 crc = ~crc0;
    for( size_t idx = 0; idx < size; idx++ )
        crc = table[(uchar)crc ^ data[idx]] ^ (crc >> 8);

    return ~crc;
}

struct HashKey
{
    typedef uint64 part;
    HashKey(part _a, part _b) : a(_a), b(_b) {}
    part a, b;
};

inline bool operator == (const HashKey& h1, const HashKey& h2)
{
    return h1.a == h2.a && h1.b == h2.b;
}

inline bool operator < (const HashKey& h1, const HashKey& h2)
{
    return h1.a < h2.a || (h1.a == h2.a && h1.b < h2.b);
}

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bool haveOpenCL()
{
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#ifdef HAVE_OPENCL
    static bool g_isOpenCLInitialized = false;
    static bool g_isOpenCLAvailable = false;

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    if (!g_isOpenCLInitialized)
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    {
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        try
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        {
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            cl_uint n = 0;
            g_isOpenCLAvailable = ::clGetPlatformIDs(0, NULL, &n) == CL_SUCCESS;
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        }
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        catch (...)
        {
            g_isOpenCLAvailable = false;
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        }
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        g_isOpenCLInitialized = true;
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    }
    return g_isOpenCLAvailable;
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#else
    return false;
#endif
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}

bool useOpenCL()
{
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    CoreTLSData* data = coreTlsData.get();
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    if( data->useOpenCL < 0 )
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    {
        try
        {
            data->useOpenCL = (int)haveOpenCL() && Device::getDefault().ptr() != NULL;
        }
        catch (...)
        {
            data->useOpenCL = 0;
        }
    }
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    return data->useOpenCL > 0;
}

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void setUseOpenCL(bool flag)
{
    if( haveOpenCL() )
    {
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        CoreTLSData* data = coreTlsData.get();
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        data->useOpenCL = (flag && Device::getDefault().ptr() != NULL) ? 1 : 0;
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    }
}

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#ifdef HAVE_CLAMDBLAS

class AmdBlasHelper
{
public:
    static AmdBlasHelper & getInstance()
    {
        static AmdBlasHelper amdBlas;
        return amdBlas;
    }

    bool isAvailable() const
    {
        return g_isAmdBlasAvailable;
    }

    ~AmdBlasHelper()
    {
        try
        {
            clAmdBlasTeardown();
        }
        catch (...) { }
    }

protected:
    AmdBlasHelper()
    {
        if (!g_isAmdBlasInitialized)
        {
            AutoLock lock(m);

            if (!g_isAmdBlasInitialized && haveOpenCL())
            {
                try
                {
                    g_isAmdBlasAvailable = clAmdBlasSetup() == clAmdBlasSuccess;
                }
                catch (...)
                {
                    g_isAmdBlasAvailable = false;
                }
            }
            else
                g_isAmdBlasAvailable = false;

            g_isAmdBlasInitialized = true;
        }
    }

private:
    static Mutex m;
    static bool g_isAmdBlasInitialized;
    static bool g_isAmdBlasAvailable;
};

bool AmdBlasHelper::g_isAmdBlasAvailable = false;
bool AmdBlasHelper::g_isAmdBlasInitialized = false;
Mutex AmdBlasHelper::m;

bool haveAmdBlas()
{
    return AmdBlasHelper::getInstance().isAvailable();
}

#else

bool haveAmdBlas()
{
    return false;
}

#endif

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#ifdef HAVE_CLAMDFFT

class AmdFftHelper
{
public:
    static AmdFftHelper & getInstance()
    {
        static AmdFftHelper amdFft;
        return amdFft;
    }

    bool isAvailable() const
    {
        return g_isAmdFftAvailable;
    }

    ~AmdFftHelper()
    {
        try
        {
//            clAmdFftTeardown();
        }
        catch (...) { }
    }

protected:
    AmdFftHelper()
    {
        if (!g_isAmdFftInitialized)
        {
            AutoLock lock(m);

            if (!g_isAmdFftInitialized && haveOpenCL())
            {
                try
                {
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                    cl_uint major, minor, patch;
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                    CV_Assert(clAmdFftInitSetupData(&setupData) == CLFFT_SUCCESS);
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                    // it throws exception in case AmdFft binaries are not found
                    CV_Assert(clAmdFftGetVersion(&major, &minor, &patch) == CLFFT_SUCCESS);
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                    g_isAmdFftAvailable = true;
                }
                catch (const Exception &)
                {
                    g_isAmdFftAvailable = false;
                }
            }
            else
                g_isAmdFftAvailable = false;

            g_isAmdFftInitialized = true;
        }
    }

private:
    static clAmdFftSetupData setupData;
    static Mutex m;
    static bool g_isAmdFftInitialized;
    static bool g_isAmdFftAvailable;
};

clAmdFftSetupData AmdFftHelper::setupData;
bool AmdFftHelper::g_isAmdFftAvailable = false;
bool AmdFftHelper::g_isAmdFftInitialized = false;
Mutex AmdFftHelper::m;

bool haveAmdFft()
{
    return AmdFftHelper::getInstance().isAvailable();
}

#else

bool haveAmdFft()
{
    return false;
}

#endif

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void finish()
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{
    Queue::getDefault().finish();
}

#define IMPLEMENT_REFCOUNTABLE() \
    void addref() { CV_XADD(&refcount, 1); } \
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    void release() { if( CV_XADD(&refcount, -1) == 1 && !cv::__termination) delete this; } \
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    int refcount

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/////////////////////////////////////////// Platform /////////////////////////////////////////////

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struct Platform::Impl
{
    Impl()
    {
        refcount = 1;
        handle = 0;
        initialized = false;
    }

    ~Impl() {}

    void init()
    {
        if( !initialized )
        {
            //cl_uint num_entries
            cl_uint n = 0;
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            if( clGetPlatformIDs(1, &handle, &n) != CL_SUCCESS || n == 0 )
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                handle = 0;
            if( handle != 0 )
            {
                char buf[1000];
                size_t len = 0;
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                CV_OclDbgAssert(clGetPlatformInfo(handle, CL_PLATFORM_VENDOR, sizeof(buf), buf, &len) == CL_SUCCESS);
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                buf[len] = '\0';
                vendor = String(buf);
            }

            initialized = true;
        }
    }

    IMPLEMENT_REFCOUNTABLE();

    cl_platform_id handle;
    String vendor;
    bool initialized;
};

Platform::Platform()
{
    p = 0;
}

Platform::~Platform()
{
    if(p)
        p->release();
}

Platform::Platform(const Platform& pl)
{
    p = (Impl*)pl.p;
    if(p)
        p->addref();
}

Platform& Platform::operator = (const Platform& pl)
{
    Impl* newp = (Impl*)pl.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

void* Platform::ptr() const
{
    return p ? p->handle : 0;
}

Platform& Platform::getDefault()
{
    static Platform p;
    if( !p.p )
    {
        p.p = new Impl;
        p.p->init();
    }
    return p;
}

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/////////////////////////////////////// Device ////////////////////////////////////////////

// deviceVersion has format
//   OpenCL<space><major_version.minor_version><space><vendor-specific information>
// by specification
//   http://www.khronos.org/registry/cl/sdk/1.1/docs/man/xhtml/clGetDeviceInfo.html
//   http://www.khronos.org/registry/cl/sdk/1.2/docs/man/xhtml/clGetDeviceInfo.html
static void parseDeviceVersion(const String &deviceVersion, int &major, int &minor)
{
    major = minor = 0;
    if (10 >= deviceVersion.length())
        return;
    const char *pstr = deviceVersion.c_str();
    if (0 != strncmp(pstr, "OpenCL ", 7))
        return;
    size_t ppos = deviceVersion.find('.', 7);
    if (String::npos == ppos)
        return;
    String temp = deviceVersion.substr(7, ppos - 7);
    major = atoi(temp.c_str());
    temp = deviceVersion.substr(ppos + 1);
    minor = atoi(temp.c_str());
}
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struct Device::Impl
{
    Impl(void* d)
    {
        handle = (cl_device_id)d;
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        refcount = 1;
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        name_ = getStrProp(CL_DEVICE_NAME);
        version_ = getStrProp(CL_DEVICE_VERSION);
        doubleFPConfig_ = getProp<cl_device_fp_config, int>(CL_DEVICE_DOUBLE_FP_CONFIG);
        hostUnifiedMemory_ = getBoolProp(CL_DEVICE_HOST_UNIFIED_MEMORY);
        maxComputeUnits_ = getProp<cl_uint, int>(CL_DEVICE_MAX_COMPUTE_UNITS);
        maxWorkGroupSize_ = getProp<size_t, size_t>(CL_DEVICE_MAX_WORK_GROUP_SIZE);
        type_ = getProp<cl_device_type, int>(CL_DEVICE_TYPE);
        driverVersion_ = getStrProp(CL_DRIVER_VERSION);
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        String deviceVersion_ = getStrProp(CL_DEVICE_VERSION);
        parseDeviceVersion(deviceVersion_, deviceVersionMajor_, deviceVersionMinor_);
1768

1769 1770 1771 1772
        vendorName_ = getStrProp(CL_DEVICE_VENDOR);
        if (vendorName_ == "Advanced Micro Devices, Inc." ||
            vendorName_ == "AMD")
            vendorID_ = VENDOR_AMD;
1773
        else if (vendorName_ == "Intel(R) Corporation" || vendorName_ == "Intel" || strstr(name_.c_str(), "Iris") != 0)
1774 1775 1776
            vendorID_ = VENDOR_INTEL;
        else if (vendorName_ == "NVIDIA Corporation")
            vendorID_ = VENDOR_NVIDIA;
1777
        else
1778
            vendorID_ = UNKNOWN_VENDOR;
1779 1780 1781 1782 1783 1784 1785 1786
    }

    template<typename _TpCL, typename _TpOut>
    _TpOut getProp(cl_device_info prop) const
    {
        _TpCL temp=_TpCL();
        size_t sz = 0;

I
Ilya Lavrenov 已提交
1787
        return clGetDeviceInfo(handle, prop, sizeof(temp), &temp, &sz) == CL_SUCCESS &&
1788 1789 1790
            sz == sizeof(temp) ? _TpOut(temp) : _TpOut();
    }

1791 1792 1793 1794 1795
    bool getBoolProp(cl_device_info prop) const
    {
        cl_bool temp = CL_FALSE;
        size_t sz = 0;

I
Ilya Lavrenov 已提交
1796
        return clGetDeviceInfo(handle, prop, sizeof(temp), &temp, &sz) == CL_SUCCESS &&
1797 1798 1799
            sz == sizeof(temp) ? temp != 0 : false;
    }

1800 1801 1802 1803
    String getStrProp(cl_device_info prop) const
    {
        char buf[1024];
        size_t sz=0;
I
Ilya Lavrenov 已提交
1804
        return clGetDeviceInfo(handle, prop, sizeof(buf)-16, buf, &sz) == CL_SUCCESS &&
1805 1806 1807 1808 1809
            sz < sizeof(buf) ? String(buf) : String();
    }

    IMPLEMENT_REFCOUNTABLE();
    cl_device_id handle;
1810 1811 1812 1813 1814 1815 1816 1817

    String name_;
    String version_;
    int doubleFPConfig_;
    bool hostUnifiedMemory_;
    int maxComputeUnits_;
    size_t maxWorkGroupSize_;
    int type_;
I
Ilya Lavrenov 已提交
1818 1819
    int deviceVersionMajor_;
    int deviceVersionMinor_;
1820
    String driverVersion_;
1821 1822
    String vendorName_;
    int vendorID_;
1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873
};


Device::Device()
{
    p = 0;
}

Device::Device(void* d)
{
    p = 0;
    set(d);
}

Device::Device(const Device& d)
{
    p = d.p;
    if(p)
        p->addref();
}

Device& Device::operator = (const Device& d)
{
    Impl* newp = (Impl*)d.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

Device::~Device()
{
    if(p)
        p->release();
}

void Device::set(void* d)
{
    if(p)
        p->release();
    p = new Impl(d);
}

void* Device::ptr() const
{
    return p ? p->handle : 0;
}

String Device::name() const
1874
{ return p ? p->name_ : String(); }
1875 1876 1877 1878

String Device::extensions() const
{ return p ? p->getStrProp(CL_DEVICE_EXTENSIONS) : String(); }

K
Konstantin Matskevich 已提交
1879
String Device::version() const
1880
{ return p ? p->version_ : String(); }
K
Konstantin Matskevich 已提交
1881

1882 1883 1884 1885 1886
String Device::vendorName() const
{ return p ? p->vendorName_ : String(); }

int Device::vendorID() const
{ return p ? p->vendorID_ : 0; }
1887 1888 1889 1890 1891 1892 1893

String Device::OpenCL_C_Version() const
{ return p ? p->getStrProp(CL_DEVICE_OPENCL_C_VERSION) : String(); }

String Device::OpenCLVersion() const
{ return p ? p->getStrProp(CL_DEVICE_EXTENSIONS) : String(); }

I
Ilya Lavrenov 已提交
1894 1895 1896 1897 1898
int Device::deviceVersionMajor() const
{ return p ? p->deviceVersionMajor_ : 0; }

int Device::deviceVersionMinor() const
{ return p ? p->deviceVersionMinor_ : 0; }
1899

1900
String Device::driverVersion() const
1901
{ return p ? p->driverVersion_ : String(); }
1902 1903

int Device::type() const
1904
{ return p ? p->type_ : 0; }
1905 1906 1907 1908 1909

int Device::addressBits() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_ADDRESS_BITS) : 0; }

bool Device::available() const
1910
{ return p ? p->getBoolProp(CL_DEVICE_AVAILABLE) : false; }
1911 1912

bool Device::compilerAvailable() const
1913
{ return p ? p->getBoolProp(CL_DEVICE_COMPILER_AVAILABLE) : false; }
1914 1915

bool Device::linkerAvailable() const
1916
#ifdef CL_VERSION_1_2
1917
{ return p ? p->getBoolProp(CL_DEVICE_LINKER_AVAILABLE) : false; }
1918 1919 1920
#else
{ CV_REQUIRE_OPENCL_1_2_ERROR; }
#endif
1921 1922

int Device::doubleFPConfig() const
1923
{ return p ? p->doubleFPConfig_ : 0; }
1924 1925 1926 1927 1928

int Device::singleFPConfig() const
{ return p ? p->getProp<cl_device_fp_config, int>(CL_DEVICE_SINGLE_FP_CONFIG) : 0; }

int Device::halfFPConfig() const
1929
#ifdef CL_VERSION_1_2
1930
{ return p ? p->getProp<cl_device_fp_config, int>(CL_DEVICE_HALF_FP_CONFIG) : 0; }
1931 1932 1933
#else
{ CV_REQUIRE_OPENCL_1_2_ERROR; }
#endif
1934 1935

bool Device::endianLittle() const
1936
{ return p ? p->getBoolProp(CL_DEVICE_ENDIAN_LITTLE) : false; }
1937 1938

bool Device::errorCorrectionSupport() const
1939
{ return p ? p->getBoolProp(CL_DEVICE_ERROR_CORRECTION_SUPPORT) : false; }
1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962

int Device::executionCapabilities() const
{ return p ? p->getProp<cl_device_exec_capabilities, int>(CL_DEVICE_EXECUTION_CAPABILITIES) : 0; }

size_t Device::globalMemCacheSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_GLOBAL_MEM_CACHE_SIZE) : 0; }

int Device::globalMemCacheType() const
{ return p ? p->getProp<cl_device_mem_cache_type, int>(CL_DEVICE_GLOBAL_MEM_CACHE_TYPE) : 0; }

int Device::globalMemCacheLineSize() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_GLOBAL_MEM_CACHELINE_SIZE) : 0; }

size_t Device::globalMemSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_GLOBAL_MEM_SIZE) : 0; }

size_t Device::localMemSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_LOCAL_MEM_SIZE) : 0; }

int Device::localMemType() const
{ return p ? p->getProp<cl_device_local_mem_type, int>(CL_DEVICE_LOCAL_MEM_TYPE) : 0; }

bool Device::hostUnifiedMemory() const
1963
{ return p ? p->hostUnifiedMemory_ : false; }
1964 1965

bool Device::imageSupport() const
1966
{ return p ? p->getBoolProp(CL_DEVICE_IMAGE_SUPPORT) : false; }
1967

1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999
bool Device::imageFromBufferSupport() const
{
    bool ret = false;
    if (p)
    {
        size_t pos = p->getStrProp(CL_DEVICE_EXTENSIONS).find("cl_khr_image2d_from_buffer");
        if (pos != String::npos)
        {
            ret = true;
        }
    }
    return ret;
}

uint Device::imagePitchAlignment() const
{
#ifdef CL_DEVICE_IMAGE_PITCH_ALIGNMENT
    return p ? p->getProp<cl_uint, uint>(CL_DEVICE_IMAGE_PITCH_ALIGNMENT) : 0;
#else
    return 0;
#endif
}

uint Device::imageBaseAddressAlignment() const
{
#ifdef CL_DEVICE_IMAGE_BASE_ADDRESS_ALIGNMENT
    return p ? p->getProp<cl_uint, uint>(CL_DEVICE_IMAGE_BASE_ADDRESS_ALIGNMENT) : 0;
#else
    return 0;
#endif
}

2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015
size_t Device::image2DMaxWidth() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE2D_MAX_WIDTH) : 0; }

size_t Device::image2DMaxHeight() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE2D_MAX_HEIGHT) : 0; }

size_t Device::image3DMaxWidth() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE3D_MAX_WIDTH) : 0; }

size_t Device::image3DMaxHeight() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE3D_MAX_HEIGHT) : 0; }

size_t Device::image3DMaxDepth() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE3D_MAX_DEPTH) : 0; }

size_t Device::imageMaxBufferSize() const
2016
#ifdef CL_VERSION_1_2
2017
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE_MAX_BUFFER_SIZE) : 0; }
2018 2019 2020
#else
{ CV_REQUIRE_OPENCL_1_2_ERROR; }
#endif
2021 2022

size_t Device::imageMaxArraySize() const
2023
#ifdef CL_VERSION_1_2
2024
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_IMAGE_MAX_ARRAY_SIZE) : 0; }
2025 2026 2027
#else
{ CV_REQUIRE_OPENCL_1_2_ERROR; }
#endif
2028 2029 2030 2031 2032

int Device::maxClockFrequency() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_CLOCK_FREQUENCY) : 0; }

int Device::maxComputeUnits() const
2033
{ return p ? p->maxComputeUnits_ : 0; }
2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056

int Device::maxConstantArgs() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_CONSTANT_ARGS) : 0; }

size_t Device::maxConstantBufferSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_MAX_CONSTANT_BUFFER_SIZE) : 0; }

size_t Device::maxMemAllocSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_MAX_MEM_ALLOC_SIZE) : 0; }

size_t Device::maxParameterSize() const
{ return p ? p->getProp<cl_ulong, size_t>(CL_DEVICE_MAX_PARAMETER_SIZE) : 0; }

int Device::maxReadImageArgs() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_READ_IMAGE_ARGS) : 0; }

int Device::maxWriteImageArgs() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_WRITE_IMAGE_ARGS) : 0; }

int Device::maxSamplers() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_SAMPLERS) : 0; }

size_t Device::maxWorkGroupSize() const
2057
{ return p ? p->maxWorkGroupSize_ : 0; }
2058 2059 2060 2061 2062 2063 2064 2065 2066 2067

int Device::maxWorkItemDims() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MAX_WORK_ITEM_DIMENSIONS) : 0; }

void Device::maxWorkItemSizes(size_t* sizes) const
{
    if(p)
    {
        const int MAX_DIMS = 32;
        size_t retsz = 0;
I
Ilya Lavrenov 已提交
2068 2069
        CV_OclDbgAssert(clGetDeviceInfo(p->handle, CL_DEVICE_MAX_WORK_ITEM_SIZES,
                MAX_DIMS*sizeof(sizes[0]), &sizes[0], &retsz) == CL_SUCCESS);
2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118
    }
}

int Device::memBaseAddrAlign() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_MEM_BASE_ADDR_ALIGN) : 0; }

int Device::nativeVectorWidthChar() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_CHAR) : 0; }

int Device::nativeVectorWidthShort() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_SHORT) : 0; }

int Device::nativeVectorWidthInt() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_INT) : 0; }

int Device::nativeVectorWidthLong() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_LONG) : 0; }

int Device::nativeVectorWidthFloat() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_FLOAT) : 0; }

int Device::nativeVectorWidthDouble() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_DOUBLE) : 0; }

int Device::nativeVectorWidthHalf() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_NATIVE_VECTOR_WIDTH_HALF) : 0; }

int Device::preferredVectorWidthChar() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_CHAR) : 0; }

int Device::preferredVectorWidthShort() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_SHORT) : 0; }

int Device::preferredVectorWidthInt() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_INT) : 0; }

int Device::preferredVectorWidthLong() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_LONG) : 0; }

int Device::preferredVectorWidthFloat() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_FLOAT) : 0; }

int Device::preferredVectorWidthDouble() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_DOUBLE) : 0; }

int Device::preferredVectorWidthHalf() const
{ return p ? p->getProp<cl_uint, int>(CL_DEVICE_PREFERRED_VECTOR_WIDTH_HALF) : 0; }

size_t Device::printfBufferSize() const
2119
#ifdef CL_VERSION_1_2
2120
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_PRINTF_BUFFER_SIZE) : 0; }
2121 2122 2123 2124
#else
{ CV_REQUIRE_OPENCL_1_2_ERROR; }
#endif

2125 2126 2127 2128 2129 2130

size_t Device::profilingTimerResolution() const
{ return p ? p->getProp<size_t, size_t>(CL_DEVICE_PROFILING_TIMER_RESOLUTION) : 0; }

const Device& Device::getDefault()
{
I
Ilya Lavrenov 已提交
2131
    const Context& ctx = Context::getDefault();
2132
    int idx = coreTlsData.get()->device;
2133 2134 2135
    return ctx.device(idx);
}

I
Ilya Lavrenov 已提交
2136
////////////////////////////////////// Context ///////////////////////////////////////////////////
2137

2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148
template <typename Functor, typename ObjectType>
inline cl_int getStringInfo(Functor f, ObjectType obj, cl_uint name, std::string& param)
{
    ::size_t required;
    cl_int err = f(obj, name, 0, NULL, &required);
    if (err != CL_SUCCESS)
        return err;

    param.clear();
    if (required > 0)
    {
A
fixes  
Alexander Alekhin 已提交
2149 2150 2151
        AutoBuffer<char> buf(required + 1);
        char* ptr = (char*)buf; // cleanup is not needed
        err = f(obj, name, required, ptr, NULL);
2152 2153
        if (err != CL_SUCCESS)
            return err;
A
fixes  
Alexander Alekhin 已提交
2154
        param = ptr;
2155 2156 2157
    }

    return CL_SUCCESS;
2158
}
2159

I
Ilya Lavrenov 已提交
2160 2161
static void split(const std::string &s, char delim, std::vector<std::string> &elems)
{
A
fixes  
Alexander Alekhin 已提交
2162 2163 2164 2165
    elems.clear();
    if (s.size() == 0)
        return;
    std::istringstream ss(s);
2166
    std::string item;
A
fixes  
Alexander Alekhin 已提交
2167 2168 2169
    while (!ss.eof())
    {
        std::getline(ss, item, delim);
2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180
        elems.push_back(item);
    }
}

// Layout: <Platform>:<CPU|GPU|ACCELERATOR|nothing=GPU/CPU>:<deviceName>
// Sample: AMD:GPU:
// Sample: AMD:GPU:Tahiti
// Sample: :GPU|CPU: = '' = ':' = '::'
static bool parseOpenCLDeviceConfiguration(const std::string& configurationStr,
        std::string& platform, std::vector<std::string>& deviceTypes, std::string& deviceNameOrID)
{
A
fixes  
Alexander Alekhin 已提交
2181 2182 2183
    std::vector<std::string> parts;
    split(configurationStr, ':', parts);
    if (parts.size() > 3)
2184
    {
A
fixes  
Alexander Alekhin 已提交
2185 2186 2187 2188 2189 2190 2191 2192
        std::cerr << "ERROR: Invalid configuration string for OpenCL device" << std::endl;
        return false;
    }
    if (parts.size() > 2)
        deviceNameOrID = parts[2];
    if (parts.size() > 1)
    {
        split(parts[1], '|', deviceTypes);
2193
    }
A
fixes  
Alexander Alekhin 已提交
2194
    if (parts.size() > 0)
2195
    {
A
fixes  
Alexander Alekhin 已提交
2196
        platform = parts[0];
2197 2198 2199 2200
    }
    return true;
}

G
GregoryMorse 已提交
2201 2202 2203 2204 2205 2206
#ifdef HAVE_WINRT
static cl_device_id selectOpenCLDevice()
{
    return NULL;
}
#else
2207 2208
static cl_device_id selectOpenCLDevice()
{
I
Ilya Lavrenov 已提交
2209
    std::string platform, deviceName;
2210
    std::vector<std::string> deviceTypes;
I
Ilya Lavrenov 已提交
2211

2212
    const char* configuration = getenv("OPENCV_OPENCL_DEVICE");
I
Ilya Lavrenov 已提交
2213 2214
    if (configuration && !parseOpenCLDeviceConfiguration(std::string(configuration), platform, deviceTypes, deviceName))
        return NULL;
2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236

    bool isID = false;
    int deviceID = -1;
    if (deviceName.length() == 1)
    // We limit ID range to 0..9, because we want to write:
    // - '2500' to mean i5-2500
    // - '8350' to mean AMD FX-8350
    // - '650' to mean GeForce 650
    // To extend ID range change condition to '> 0'
    {
        isID = true;
        for (size_t i = 0; i < deviceName.length(); i++)
        {
            if (!isdigit(deviceName[i]))
            {
                isID = false;
                break;
            }
        }
        if (isID)
        {
            deviceID = atoi(deviceName.c_str());
I
Ilya Lavrenov 已提交
2237 2238
            if (deviceID < 0)
                return NULL;
2239 2240 2241 2242
        }
    }

    std::vector<cl_platform_id> platforms;
A
fixes  
Alexander Alekhin 已提交
2243 2244
    {
        cl_uint numPlatforms = 0;
I
Ilya Lavrenov 已提交
2245 2246
        CV_OclDbgAssert(clGetPlatformIDs(0, NULL, &numPlatforms) == CL_SUCCESS);

A
fixes  
Alexander Alekhin 已提交
2247 2248 2249
        if (numPlatforms == 0)
            return NULL;
        platforms.resize((size_t)numPlatforms);
I
Ilya Lavrenov 已提交
2250
        CV_OclDbgAssert(clGetPlatformIDs(numPlatforms, &platforms[0], &numPlatforms) == CL_SUCCESS);
A
fixes  
Alexander Alekhin 已提交
2251 2252
        platforms.resize(numPlatforms);
    }
2253 2254 2255 2256 2257 2258 2259

    int selectedPlatform = -1;
    if (platform.length() > 0)
    {
        for (size_t i = 0; i < platforms.size(); i++)
        {
            std::string name;
I
Ilya Lavrenov 已提交
2260
            CV_OclDbgAssert(getStringInfo(clGetPlatformInfo, platforms[i], CL_PLATFORM_NAME, name) == CL_SUCCESS);
2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277
            if (name.find(platform) != std::string::npos)
            {
                selectedPlatform = (int)i;
                break;
            }
        }
        if (selectedPlatform == -1)
        {
            std::cerr << "ERROR: Can't find OpenCL platform by name: " << platform << std::endl;
            goto not_found;
        }
    }
    if (deviceTypes.size() == 0)
    {
        if (!isID)
        {
            deviceTypes.push_back("GPU");
2278 2279
            if (configuration)
                deviceTypes.push_back("CPU");
2280 2281 2282 2283 2284 2285 2286
        }
        else
            deviceTypes.push_back("ALL");
    }
    for (size_t t = 0; t < deviceTypes.size(); t++)
    {
        int deviceType = 0;
K
Konstantin Matskevich 已提交
2287 2288 2289 2290
        std::string tempStrDeviceType = deviceTypes[t];
        std::transform( tempStrDeviceType.begin(), tempStrDeviceType.end(), tempStrDeviceType.begin(), tolower );

        if (tempStrDeviceType == "gpu" || tempStrDeviceType == "dgpu" || tempStrDeviceType == "igpu")
2291
            deviceType = Device::TYPE_GPU;
K
Konstantin Matskevich 已提交
2292
        else if (tempStrDeviceType == "cpu")
2293
            deviceType = Device::TYPE_CPU;
K
Konstantin Matskevich 已提交
2294
        else if (tempStrDeviceType == "accelerator")
2295
            deviceType = Device::TYPE_ACCELERATOR;
K
Konstantin Matskevich 已提交
2296
        else if (tempStrDeviceType == "all")
2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309
            deviceType = Device::TYPE_ALL;
        else
        {
            std::cerr << "ERROR: Unsupported device type for OpenCL device (GPU, CPU, ACCELERATOR): " << deviceTypes[t] << std::endl;
            goto not_found;
        }

        std::vector<cl_device_id> devices; // TODO Use clReleaseDevice to cleanup
        for (int i = selectedPlatform >= 0 ? selectedPlatform : 0;
                (selectedPlatform >= 0 ? i == selectedPlatform : true) && (i < (int)platforms.size());
                i++)
        {
            cl_uint count = 0;
I
Ilya Lavrenov 已提交
2310 2311
            cl_int status = clGetDeviceIDs(platforms[i], deviceType, 0, NULL, &count);
            CV_OclDbgAssert(status == CL_SUCCESS || status == CL_DEVICE_NOT_FOUND);
2312 2313 2314 2315 2316
            if (count == 0)
                continue;
            size_t base = devices.size();
            devices.resize(base + count);
            status = clGetDeviceIDs(platforms[i], deviceType, count, &devices[base], &count);
I
Ilya Lavrenov 已提交
2317
            CV_OclDbgAssert(status == CL_SUCCESS || status == CL_DEVICE_NOT_FOUND);
2318 2319 2320 2321 2322 2323 2324
        }

        for (size_t i = (isID ? deviceID : 0);
             (isID ? (i == (size_t)deviceID) : true) && (i < devices.size());
             i++)
        {
            std::string name;
I
Ilya Lavrenov 已提交
2325
            CV_OclDbgAssert(getStringInfo(clGetDeviceInfo, devices[i], CL_DEVICE_NAME, name) == CL_SUCCESS);
2326
            cl_bool useGPU = true;
K
Konstantin Matskevich 已提交
2327
            if(tempStrDeviceType == "dgpu" || tempStrDeviceType == "igpu")
2328 2329 2330
            {
                cl_bool isIGPU = CL_FALSE;
                clGetDeviceInfo(devices[i], CL_DEVICE_HOST_UNIFIED_MEMORY, sizeof(isIGPU), &isIGPU, NULL);
K
Konstantin Matskevich 已提交
2331
                useGPU = tempStrDeviceType == "dgpu" ? !isIGPU : isIGPU;
2332 2333
            }
            if ( (isID || name.find(deviceName) != std::string::npos) && useGPU)
2334 2335 2336 2337 2338 2339
            {
                // TODO check for OpenCL 1.1
                return devices[i];
            }
        }
    }
I
Ilya Lavrenov 已提交
2340

2341 2342 2343 2344 2345 2346
not_found:
    std::cerr << "ERROR: Required OpenCL device not found, check configuration: " << (configuration == NULL ? "" : configuration) << std::endl
            << "    Platform: " << (platform.length() == 0 ? "any" : platform) << std::endl
            << "    Device types: ";
    for (size_t t = 0; t < deviceTypes.size(); t++)
        std::cerr << deviceTypes[t] << " ";
I
Ilya Lavrenov 已提交
2347

2348
    std::cerr << std::endl << "    Device name: " << (deviceName.length() == 0 ? "any" : deviceName) << std::endl;
K
Konstantin Matskevich 已提交
2349
    CV_Error(CL_INVALID_DEVICE, "Requested OpenCL device is not found");
2350 2351
    return NULL;
}
G
GregoryMorse 已提交
2352
#endif
2353

I
Ilya Lavrenov 已提交
2354
struct Context::Impl
2355
{
2356 2357 2358 2359 2360 2361
    Impl()
    {
        refcount = 1;
        handle = 0;
    }

2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
    void setDefault()
    {
        CV_Assert(handle == NULL);

        cl_device_id d = selectOpenCLDevice();

        if (d == NULL)
            return;

        cl_platform_id pl = NULL;
I
Ilya Lavrenov 已提交
2372
        CV_OclDbgAssert(clGetDeviceInfo(d, CL_DEVICE_PLATFORM, sizeof(cl_platform_id), &pl, NULL) == CL_SUCCESS);
2373 2374 2375 2376 2377 2378 2379 2380

        cl_context_properties prop[] =
        {
            CL_CONTEXT_PLATFORM, (cl_context_properties)pl,
            0
        };

        // !!! in the current implementation force the number of devices to 1 !!!
I
Ilya Lavrenov 已提交
2381 2382
        cl_uint nd = 1;
        cl_int status;
2383 2384

        handle = clCreateContext(prop, nd, &d, 0, 0, &status);
I
Ilya Lavrenov 已提交
2385 2386

        bool ok = handle != 0 && status == CL_SUCCESS;
2387 2388 2389 2390 2391 2392 2393 2394 2395
        if( ok )
        {
            devices.resize(nd);
            devices[0].set(d);
        }
        else
            handle = NULL;
    }

2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410
    Impl(int dtype0)
    {
        refcount = 1;
        handle = 0;

        cl_int retval = 0;
        cl_platform_id pl = (cl_platform_id)Platform::getDefault().ptr();
        cl_context_properties prop[] =
        {
            CL_CONTEXT_PLATFORM, (cl_context_properties)pl,
            0
        };

        cl_uint i, nd0 = 0, nd = 0;
        int dtype = dtype0 & 15;
I
Ilya Lavrenov 已提交
2411 2412
        CV_OclDbgAssert(clGetDeviceIDs( pl, dtype, 0, 0, &nd0 ) == CL_SUCCESS);

2413 2414 2415
        AutoBuffer<void*> dlistbuf(nd0*2+1);
        cl_device_id* dlist = (cl_device_id*)(void**)dlistbuf;
        cl_device_id* dlist_new = dlist + nd0;
I
Ilya Lavrenov 已提交
2416
        CV_OclDbgAssert(clGetDeviceIDs(	pl, dtype, nd0, dlist, &nd0 ) == CL_SUCCESS);
2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441
        String name0;

        for(i = 0; i < nd0; i++)
        {
            Device d(dlist[i]);
            if( !d.available() || !d.compilerAvailable() )
                continue;
            if( dtype0 == Device::TYPE_DGPU && d.hostUnifiedMemory() )
                continue;
            if( dtype0 == Device::TYPE_IGPU && !d.hostUnifiedMemory() )
                continue;
            String name = d.name();
            if( nd != 0 && name != name0 )
                continue;
            name0 = name;
            dlist_new[nd++] = dlist[i];
        }

        if(nd == 0)
            return;

        // !!! in the current implementation force the number of devices to 1 !!!
        nd = 1;

        handle = clCreateContext(prop, nd, dlist_new, 0, 0, &retval);
I
Ilya Lavrenov 已提交
2442
        bool ok = handle != 0 && retval == CL_SUCCESS;
2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453
        if( ok )
        {
            devices.resize(nd);
            for( i = 0; i < nd; i++ )
                devices[i].set(dlist_new[i]);
        }
    }

    ~Impl()
    {
        if(handle)
I
Ilya Lavrenov 已提交
2454
        {
2455
            clReleaseContext(handle);
I
Ilya Lavrenov 已提交
2456 2457
            handle = NULL;
        }
2458 2459 2460
        devices.clear();
    }

I
Ilya Lavrenov 已提交
2461
    Program getProg(const ProgramSource& src,
2462 2463 2464 2465 2466 2467 2468 2469 2470
                    const String& buildflags, String& errmsg)
    {
        String prefix = Program::getPrefix(buildflags);
        HashKey k(src.hash(), crc64((const uchar*)prefix.c_str(), prefix.size()));
        phash_t::iterator it = phash.find(k);
        if( it != phash.end() )
            return it->second;
        //String filename = format("%08x%08x_%08x%08x.clb2",
        Program prog(src, buildflags, errmsg);
2471 2472
        if(prog.ptr())
            phash.insert(std::pair<HashKey,Program>(k, prog));
2473 2474 2475 2476 2477 2478 2479 2480
        return prog;
    }

    IMPLEMENT_REFCOUNTABLE();

    cl_context handle;
    std::vector<Device> devices;

I
Ilya Lavrenov 已提交
2481
    typedef ProgramSource::hash_t hash_t;
2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495

    struct HashKey
    {
        HashKey(hash_t _a, hash_t _b) : a(_a), b(_b) {}
        bool operator < (const HashKey& k) const { return a < k.a || (a == k.a && b < k.b); }
        bool operator == (const HashKey& k) const { return a == k.a && b == k.b; }
        bool operator != (const HashKey& k) const { return a != k.a || b != k.b; }
        hash_t a, b;
    };
    typedef std::map<HashKey, Program> phash_t;
    phash_t phash;
};


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Ilya Lavrenov 已提交
2496
Context::Context()
2497 2498 2499 2500
{
    p = 0;
}

I
Ilya Lavrenov 已提交
2501
Context::Context(int dtype)
2502 2503 2504 2505 2506
{
    p = 0;
    create(dtype);
}

I
Ilya Lavrenov 已提交
2507
bool Context::create()
2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521
{
    if( !haveOpenCL() )
        return false;
    if(p)
        p->release();
    p = new Impl();
    if(!p->handle)
    {
        delete p;
        p = 0;
    }
    return p != 0;
}

I
Ilya Lavrenov 已提交
2522
bool Context::create(int dtype0)
2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536
{
    if( !haveOpenCL() )
        return false;
    if(p)
        p->release();
    p = new Impl(dtype0);
    if(!p->handle)
    {
        delete p;
        p = 0;
    }
    return p != 0;
}

I
Ilya Lavrenov 已提交
2537
Context::~Context()
2538
{
2539 2540 2541 2542 2543
    if (p)
    {
        p->release();
        p = NULL;
    }
2544 2545
}

I
Ilya Lavrenov 已提交
2546
Context::Context(const Context& c)
2547 2548 2549 2550 2551 2552
{
    p = (Impl*)c.p;
    if(p)
        p->addref();
}

I
Ilya Lavrenov 已提交
2553
Context& Context::operator = (const Context& c)
2554 2555 2556 2557 2558 2559 2560 2561 2562 2563
{
    Impl* newp = (Impl*)c.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

I
Ilya Lavrenov 已提交
2564
void* Context::ptr() const
2565
{
2566
    return p == NULL ? NULL : p->handle;
2567 2568
}

I
Ilya Lavrenov 已提交
2569
size_t Context::ndevices() const
2570 2571 2572 2573
{
    return p ? p->devices.size() : 0;
}

I
Ilya Lavrenov 已提交
2574
const Device& Context::device(size_t idx) const
2575 2576 2577 2578 2579
{
    static Device dummy;
    return !p || idx >= p->devices.size() ? dummy : p->devices[idx];
}

I
Ilya Lavrenov 已提交
2580
Context& Context::getDefault(bool initialize)
2581
{
A
Alexander Alekhin 已提交
2582 2583
    static Context* ctx = new Context();
    if(!ctx->p && haveOpenCL())
2584
    {
A
Alexander Alekhin 已提交
2585 2586
        if (!ctx->p)
            ctx->p = new Impl();
2587 2588
        if (initialize)
        {
I
Ilya Lavrenov 已提交
2589
            // do not create new Context right away.
2590
            // First, try to retrieve existing context of the same type.
I
Ilya Lavrenov 已提交
2591
            // In its turn, Platform::getContext() may call Context::create()
2592
            // if there is no such context.
A
Alexander Alekhin 已提交
2593 2594
            if (ctx->p->handle == NULL)
                ctx->p->setDefault();
2595
        }
2596 2597
    }

A
Alexander Alekhin 已提交
2598
    return *ctx;
2599 2600
}

I
Ilya Lavrenov 已提交
2601
Program Context::getProg(const ProgramSource& prog,
2602 2603 2604 2605 2606
                         const String& buildopts, String& errmsg)
{
    return p ? p->getProg(prog, buildopts, errmsg) : Program();
}

I
Ilya Lavrenov 已提交
2607
void initializeContextFromHandle(Context& ctx, void* platform, void* _context, void* _device)
2608 2609 2610 2611 2612
{
    cl_context context = (cl_context)_context;
    cl_device_id device = (cl_device_id)_device;

    // cleanup old context
I
Ilya Lavrenov 已提交
2613
    Context::Impl * impl = ctx.p;
2614 2615
    if (impl->handle)
    {
I
Ilya Lavrenov 已提交
2616
        CV_OclDbgAssert(clReleaseContext(impl->handle) == CL_SUCCESS);
2617 2618 2619 2620 2621 2622 2623 2624
    }
    impl->devices.clear();

    impl->handle = context;
    impl->devices.resize(1);
    impl->devices[0].set(device);

    Platform& p = Platform::getDefault();
I
Ilya Lavrenov 已提交
2625
    Platform::Impl* pImpl = p.p;
2626 2627 2628
    pImpl->handle = (cl_platform_id)platform;
}

I
Ilya Lavrenov 已提交
2629
/////////////////////////////////////////// Queue /////////////////////////////////////////////
2630

2631 2632
struct Queue::Impl
{
I
Ilya Lavrenov 已提交
2633
    Impl(const Context& c, const Device& d)
2634 2635
    {
        refcount = 1;
I
Ilya Lavrenov 已提交
2636
        const Context* pc = &c;
2637 2638 2639
        cl_context ch = (cl_context)pc->ptr();
        if( !ch )
        {
I
Ilya Lavrenov 已提交
2640
            pc = &Context::getDefault();
2641 2642 2643 2644 2645 2646 2647
            ch = (cl_context)pc->ptr();
        }
        cl_device_id dh = (cl_device_id)d.ptr();
        if( !dh )
            dh = (cl_device_id)pc->device(0).ptr();
        cl_int retval = 0;
        handle = clCreateCommandQueue(ch, dh, 0, &retval);
I
Ilya Lavrenov 已提交
2648
        CV_OclDbgAssert(retval == CL_SUCCESS);
2649 2650 2651 2652
    }

    ~Impl()
    {
2653 2654 2655
#ifdef _WIN32
        if (!cv::__termination)
#endif
2656
        {
2657 2658 2659 2660
            if(handle)
            {
                clFinish(handle);
                clReleaseCommandQueue(handle);
I
Ilya Lavrenov 已提交
2661
                handle = NULL;
2662
            }
2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675
        }
    }

    IMPLEMENT_REFCOUNTABLE();

    cl_command_queue handle;
};

Queue::Queue()
{
    p = 0;
}

I
Ilya Lavrenov 已提交
2676
Queue::Queue(const Context& c, const Device& d)
2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705
{
    p = 0;
    create(c, d);
}

Queue::Queue(const Queue& q)
{
    p = q.p;
    if(p)
        p->addref();
}

Queue& Queue::operator = (const Queue& q)
{
    Impl* newp = (Impl*)q.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

Queue::~Queue()
{
    if(p)
        p->release();
}

I
Ilya Lavrenov 已提交
2706
bool Queue::create(const Context& c, const Device& d)
2707 2708 2709 2710 2711 2712 2713 2714 2715 2716
{
    if(p)
        p->release();
    p = new Impl(c, d);
    return p->handle != 0;
}

void Queue::finish()
{
    if(p && p->handle)
I
Ilya Lavrenov 已提交
2717 2718 2719
    {
        CV_OclDbgAssert(clFinish(p->handle) == CL_SUCCESS);
    }
2720 2721 2722 2723 2724 2725 2726 2727 2728
}

void* Queue::ptr() const
{
    return p ? p->handle : 0;
}

Queue& Queue::getDefault()
{
2729
    Queue& q = coreTlsData.get()->oclQueue;
2730
    if( !q.p && haveOpenCL() )
I
Ilya Lavrenov 已提交
2731
        q.create(Context::getDefault());
2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742
    return q;
}

static cl_command_queue getQueue(const Queue& q)
{
    cl_command_queue qq = (cl_command_queue)q.ptr();
    if(!qq)
        qq = (cl_command_queue)Queue::getDefault().ptr();
    return qq;
}

I
Ilya Lavrenov 已提交
2743 2744
/////////////////////////////////////////// KernelArg /////////////////////////////////////////////

2745
KernelArg::KernelArg()
I
Ilya Lavrenov 已提交
2746
    : flags(0), m(0), obj(0), sz(0), wscale(1), iwscale(1)
2747 2748 2749
{
}

I
Ilya Lavrenov 已提交
2750 2751
KernelArg::KernelArg(int _flags, UMat* _m, int _wscale, int _iwscale, const void* _obj, size_t _sz)
    : flags(_flags), m(_m), obj(_obj), sz(_sz), wscale(_wscale), iwscale(_iwscale)
2752 2753 2754 2755 2756 2757
{
}

KernelArg KernelArg::Constant(const Mat& m)
{
    CV_Assert(m.isContinuous());
2758
    return KernelArg(CONSTANT, 0, 0, 0, m.ptr(), m.total()*m.elemSize());
2759 2760
}

I
Ilya Lavrenov 已提交
2761
/////////////////////////////////////////// Kernel /////////////////////////////////////////////
2762 2763 2764

struct Kernel::Impl
{
I
Ilya Lavrenov 已提交
2765 2766
    Impl(const char* kname, const Program& prog) :
        refcount(1), e(0), nu(0)
2767 2768 2769 2770 2771
    {
        cl_program ph = (cl_program)prog.ptr();
        cl_int retval = 0;
        handle = ph != 0 ?
            clCreateKernel(ph, kname, &retval) : 0;
I
Ilya Lavrenov 已提交
2772
        CV_OclDbgAssert(retval == CL_SUCCESS);
2773 2774
        for( int i = 0; i < MAX_ARRS; i++ )
            u[i] = 0;
2775
        haveTempDstUMats = false;
2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787
    }

    void cleanupUMats()
    {
        for( int i = 0; i < MAX_ARRS; i++ )
            if( u[i] )
            {
                if( CV_XADD(&u[i]->urefcount, -1) == 1 )
                    u[i]->currAllocator->deallocate(u[i]);
                u[i] = 0;
            }
        nu = 0;
2788
        haveTempDstUMats = false;
2789 2790
    }

2791
    void addUMat(const UMat& m, bool dst)
2792 2793 2794 2795 2796
    {
        CV_Assert(nu < MAX_ARRS && m.u && m.u->urefcount > 0);
        u[nu] = m.u;
        CV_XADD(&m.u->urefcount, 1);
        nu++;
2797 2798
        if(dst && m.u->tempUMat())
            haveTempDstUMats = true;
2799
    }
2800

2801 2802 2803 2804 2805
    void addImage(const Image2D& image)
    {
        images.push_back(image);
    }

2806 2807
    void finit()
    {
2808
        cleanupUMats();
2809
        images.clear();
2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823
        if(e) { clReleaseEvent(e); e = 0; }
        release();
    }

    ~Impl()
    {
        if(handle)
            clReleaseKernel(handle);
    }

    IMPLEMENT_REFCOUNTABLE();

    cl_kernel handle;
    cl_event e;
2824 2825 2826
    enum { MAX_ARRS = 16 };
    UMatData* u[MAX_ARRS];
    int nu;
2827
    std::list<Image2D> images;
2828
    bool haveTempDstUMats;
2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854
};

}}

extern "C"
{
static void CL_CALLBACK oclCleanupCallback(cl_event, cl_int, void *p)
{
    ((cv::ocl::Kernel::Impl*)p)->finit();
}

}

namespace cv { namespace ocl {

Kernel::Kernel()
{
    p = 0;
}

Kernel::Kernel(const char* kname, const Program& prog)
{
    p = 0;
    create(kname, prog);
}

I
Ilya Lavrenov 已提交
2855
Kernel::Kernel(const char* kname, const ProgramSource& src,
2856
               const String& buildopts, String* errmsg)
2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894 2895
{
    p = 0;
    create(kname, src, buildopts, errmsg);
}

Kernel::Kernel(const Kernel& k)
{
    p = k.p;
    if(p)
        p->addref();
}

Kernel& Kernel::operator = (const Kernel& k)
{
    Impl* newp = (Impl*)k.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

Kernel::~Kernel()
{
    if(p)
        p->release();
}

bool Kernel::create(const char* kname, const Program& prog)
{
    if(p)
        p->release();
    p = new Impl(kname, prog);
    if(p->handle == 0)
    {
        p->release();
        p = 0;
    }
2896 2897 2898
#ifdef CV_OPENCL_RUN_ASSERT // check kernel compilation fails
    CV_Assert(p);
#endif
2899 2900 2901
    return p != 0;
}

I
Ilya Lavrenov 已提交
2902
bool Kernel::create(const char* kname, const ProgramSource& src,
2903
                    const String& buildopts, String* errmsg)
2904 2905 2906 2907 2908 2909
{
    if(p)
    {
        p->release();
        p = 0;
    }
2910 2911
    String tempmsg;
    if( !errmsg ) errmsg = &tempmsg;
I
Ilya Lavrenov 已提交
2912
    const Program& prog = Context::getDefault().getProg(src, buildopts, *errmsg);
2913 2914 2915 2916 2917 2918 2919 2920
    return create(kname, prog);
}

void* Kernel::ptr() const
{
    return p ? p->handle : 0;
}

2921
bool Kernel::empty() const
2922
{
2923 2924 2925 2926 2927
    return ptr() == 0;
}

int Kernel::set(int i, const void* value, size_t sz)
{
I
Ilya Lavrenov 已提交
2928 2929
    if (!p || !p->handle)
        return -1;
2930 2931
    if (i < 0)
        return i;
2932 2933
    if( i == 0 )
        p->cleanupUMats();
I
Ilya Lavrenov 已提交
2934 2935 2936 2937

    cl_int retval = clSetKernelArg(p->handle, (cl_uint)i, sz, value);
    CV_OclDbgAssert(retval == CL_SUCCESS);
    if (retval != CL_SUCCESS)
2938 2939
        return -1;
    return i+1;
2940 2941
}

2942 2943
int Kernel::set(int i, const Image2D& image2D)
{
2944
    p->addImage(image2D);
2945 2946 2947 2948
    cl_mem h = (cl_mem)image2D.ptr();
    return set(i, &h, sizeof(h));
}

2949
int Kernel::set(int i, const UMat& m)
2950
{
2951
    return set(i, KernelArg(KernelArg::READ_WRITE, (UMat*)&m, 0, 0));
2952 2953
}

2954
int Kernel::set(int i, const KernelArg& arg)
2955
{
2956 2957
    if( !p || !p->handle )
        return -1;
2958 2959
    if (i < 0)
        return i;
2960 2961
    if( i == 0 )
        p->cleanupUMats();
2962 2963
    if( arg.m )
    {
2964 2965
        int accessFlags = ((arg.flags & KernelArg::READ_ONLY) ? ACCESS_READ : 0) +
                          ((arg.flags & KernelArg::WRITE_ONLY) ? ACCESS_WRITE : 0);
I
Ilya Lavrenov 已提交
2966
        bool ptronly = (arg.flags & KernelArg::PTR_ONLY) != 0;
2967 2968
        cl_mem h = (cl_mem)arg.m->handle(accessFlags);

I
Ilya Lavrenov 已提交
2969 2970 2971 2972 2973 2974 2975
        if (!h)
        {
            p->release();
            p = 0;
            return -1;
        }

I
Ilya Lavrenov 已提交
2976
        if (ptronly)
I
Ilya Lavrenov 已提交
2977
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i++, sizeof(h), &h) == CL_SUCCESS);
I
Ilya Lavrenov 已提交
2978
        else if( arg.m->dims <= 2 )
2979
        {
2980
            UMat2D u2d(*arg.m);
I
Ilya Lavrenov 已提交
2981 2982 2983
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i, sizeof(h), &h) == CL_SUCCESS);
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+1), sizeof(u2d.step), &u2d.step) == CL_SUCCESS);
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+2), sizeof(u2d.offset), &u2d.offset) == CL_SUCCESS);
2984 2985 2986 2987
            i += 3;

            if( !(arg.flags & KernelArg::NO_SIZE) )
            {
I
Ilya Lavrenov 已提交
2988
                int cols = u2d.cols*arg.wscale/arg.iwscale;
I
Ilya Lavrenov 已提交
2989 2990
                CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i, sizeof(u2d.rows), &u2d.rows) == CL_SUCCESS);
                CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+1), sizeof(cols), &cols) == CL_SUCCESS);
2991 2992
                i += 2;
            }
2993 2994 2995
        }
        else
        {
2996
            UMat3D u3d(*arg.m);
I
Ilya Lavrenov 已提交
2997 2998 2999 3000
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i, sizeof(h), &h) == CL_SUCCESS);
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+1), sizeof(u3d.slicestep), &u3d.slicestep) == CL_SUCCESS);
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+2), sizeof(u3d.step), &u3d.step) == CL_SUCCESS);
            CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+3), sizeof(u3d.offset), &u3d.offset) == CL_SUCCESS);
3001 3002 3003
            i += 4;
            if( !(arg.flags & KernelArg::NO_SIZE) )
            {
I
Ilya Lavrenov 已提交
3004
                int cols = u3d.cols*arg.wscale/arg.iwscale;
I
Ilya Lavrenov 已提交
3005 3006 3007
                CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i, sizeof(u3d.slices), &u3d.rows) == CL_SUCCESS);
                CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+1), sizeof(u3d.rows), &u3d.rows) == CL_SUCCESS);
                CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)(i+2), sizeof(u3d.cols), &cols) == CL_SUCCESS);
3008 3009
                i += 3;
            }
3010
        }
3011
        p->addUMat(*arg.m, (accessFlags & ACCESS_WRITE) != 0);
3012
        return i;
3013
    }
I
Ilya Lavrenov 已提交
3014
    CV_OclDbgAssert(clSetKernelArg(p->handle, (cl_uint)i, arg.sz, arg.obj) == CL_SUCCESS);
3015
    return i+1;
3016 3017 3018
}


3019
bool Kernel::run(int dims, size_t _globalsize[], size_t _localsize[],
3020
                 bool sync, const Queue& q)
3021
{
3022 3023
    if(!p || !p->handle || p->e != 0)
        return false;
3024

3025
    cl_command_queue qq = getQueue(q);
3026
    size_t offset[CV_MAX_DIM] = {0}, globalsize[CV_MAX_DIM] = {1,1,1};
3027
    size_t total = 1;
3028
    CV_Assert(_globalsize != 0);
3029 3030
    for (int i = 0; i < dims; i++)
    {
3031
        size_t val = _localsize ? _localsize[i] :
I
Ilya Lavrenov 已提交
3032
            dims == 1 ? 64 : dims == 2 ? (i == 0 ? 256 : 8) : dims == 3 ? (8>>(int)(i>0)) : 1;
3033
        CV_Assert( val > 0 );
3034 3035 3036 3037 3038
        total *= _globalsize[i];
        globalsize[i] = ((_globalsize[i] + val - 1)/val)*val;
    }
    if( total == 0 )
        return true;
3039 3040
    if( p->haveTempDstUMats )
        sync = true;
3041
    cl_int retval = clEnqueueNDRangeKernel(qq, p->handle, (cl_uint)dims,
3042
                                           offset, globalsize, _localsize, 0, 0,
3043
                                           sync ? 0 : &p->e);
3044 3045 3046 3047 3048 3049 3050
#if CV_OPENCL_SHOW_RUN_ERRORS
    if (retval != CL_SUCCESS)
    {
        printf("OpenCL program returns error: %d\n", retval);
        fflush(stdout);
    }
#endif
I
Ilya Lavrenov 已提交
3051
    if( sync || retval != CL_SUCCESS )
3052
    {
I
Ilya Lavrenov 已提交
3053
        CV_OclDbgAssert(clFinish(qq) == CL_SUCCESS);
3054
        p->cleanupUMats();
3055 3056 3057 3058
    }
    else
    {
        p->addref();
I
Ilya Lavrenov 已提交
3059
        CV_OclDbgAssert(clSetEventCallback(p->e, CL_COMPLETE, oclCleanupCallback, p) == CL_SUCCESS);
3060
    }
I
Ilya Lavrenov 已提交
3061
    return retval == CL_SUCCESS;
3062 3063
}

3064
bool Kernel::runTask(bool sync, const Queue& q)
3065
{
3066 3067 3068
    if(!p || !p->handle || p->e != 0)
        return false;

3069
    cl_command_queue qq = getQueue(q);
3070
    cl_int retval = clEnqueueTask(qq, p->handle, 0, 0, sync ? 0 : &p->e);
I
Ilya Lavrenov 已提交
3071
    if( sync || retval != CL_SUCCESS )
3072
    {
I
Ilya Lavrenov 已提交
3073
        CV_OclDbgAssert(clFinish(qq) == CL_SUCCESS);
3074
        p->cleanupUMats();
3075 3076 3077 3078
    }
    else
    {
        p->addref();
I
Ilya Lavrenov 已提交
3079
        CV_OclDbgAssert(clSetEventCallback(p->e, CL_COMPLETE, oclCleanupCallback, p) == CL_SUCCESS);
3080
    }
I
Ilya Lavrenov 已提交
3081
    return retval == CL_SUCCESS;
3082 3083 3084 3085 3086
}


size_t Kernel::workGroupSize() const
{
I
Ilya Lavrenov 已提交
3087
    if(!p || !p->handle)
3088 3089 3090 3091
        return 0;
    size_t val = 0, retsz = 0;
    cl_device_id dev = (cl_device_id)Device::getDefault().ptr();
    return clGetKernelWorkGroupInfo(p->handle, dev, CL_KERNEL_WORK_GROUP_SIZE,
I
Ilya Lavrenov 已提交
3092
                                    sizeof(val), &val, &retsz) == CL_SUCCESS ? val : 0;
3093 3094
}

K
fix  
Konstantin Matskevich 已提交
3095 3096
size_t Kernel::preferedWorkGroupSizeMultiple() const
{
I
Ilya Lavrenov 已提交
3097
    if(!p || !p->handle)
K
fix  
Konstantin Matskevich 已提交
3098 3099 3100 3101
        return 0;
    size_t val = 0, retsz = 0;
    cl_device_id dev = (cl_device_id)Device::getDefault().ptr();
    return clGetKernelWorkGroupInfo(p->handle, dev, CL_KERNEL_PREFERRED_WORK_GROUP_SIZE_MULTIPLE,
I
Ilya Lavrenov 已提交
3102
                                    sizeof(val), &val, &retsz) == CL_SUCCESS ? val : 0;
K
fix  
Konstantin Matskevich 已提交
3103 3104
}

3105 3106
bool Kernel::compileWorkGroupSize(size_t wsz[]) const
{
I
Ilya Lavrenov 已提交
3107
    if(!p || !p->handle || !wsz)
3108 3109 3110 3111
        return 0;
    size_t retsz = 0;
    cl_device_id dev = (cl_device_id)Device::getDefault().ptr();
    return clGetKernelWorkGroupInfo(p->handle, dev, CL_KERNEL_COMPILE_WORK_GROUP_SIZE,
I
Ilya Lavrenov 已提交
3112
                                    sizeof(wsz[0]*3), wsz, &retsz) == CL_SUCCESS;
3113 3114 3115 3116
}

size_t Kernel::localMemSize() const
{
I
Ilya Lavrenov 已提交
3117
    if(!p || !p->handle)
3118 3119 3120 3121 3122
        return 0;
    size_t retsz = 0;
    cl_ulong val = 0;
    cl_device_id dev = (cl_device_id)Device::getDefault().ptr();
    return clGetKernelWorkGroupInfo(p->handle, dev, CL_KERNEL_LOCAL_MEM_SIZE,
I
Ilya Lavrenov 已提交
3123
                                    sizeof(val), &val, &retsz) == CL_SUCCESS ? (size_t)val : 0;
3124 3125
}

I
Ilya Lavrenov 已提交
3126
/////////////////////////////////////////// Program /////////////////////////////////////////////
3127 3128 3129

struct Program::Impl
{
I
Ilya Lavrenov 已提交
3130
    Impl(const ProgramSource& _src,
3131 3132 3133
         const String& _buildflags, String& errmsg)
    {
        refcount = 1;
I
Ilya Lavrenov 已提交
3134
        const Context& ctx = Context::getDefault();
3135 3136 3137 3138 3139 3140 3141 3142
        src = _src;
        buildflags = _buildflags;
        const String& srcstr = src.source();
        const char* srcptr = srcstr.c_str();
        size_t srclen = srcstr.size();
        cl_int retval = 0;

        handle = clCreateProgramWithSource((cl_context)ctx.ptr(), 1, &srcptr, &srclen, &retval);
I
Ilya Lavrenov 已提交
3143
        if( handle && retval == CL_SUCCESS )
3144
        {
I
Ilya Lavrenov 已提交
3145
            int i, n = (int)ctx.ndevices();
3146 3147 3148 3149
            AutoBuffer<void*> deviceListBuf(n+1);
            void** deviceList = deviceListBuf;
            for( i = 0; i < n; i++ )
                deviceList[i] = ctx.device(i).ptr();
3150

3151 3152 3153 3154 3155 3156
            Device device = Device::getDefault();
            if (device.isAMD())
                buildflags += " -D AMD_DEVICE";
            else if (device.isIntel())
                buildflags += " -D INTEL_DEVICE";

3157 3158 3159
            retval = clBuildProgram(handle, n,
                                    (const cl_device_id*)deviceList,
                                    buildflags.c_str(), 0, 0);
3160
#if !CV_OPENCL_ALWAYS_SHOW_BUILD_LOG
I
Ilya Lavrenov 已提交
3161
            if( retval != CL_SUCCESS )
3162
#endif
3163 3164
            {
                size_t retsz = 0;
3165
                cl_int buildInfo_retval = clGetProgramBuildInfo(handle, (cl_device_id)deviceList[0],
3166
                                               CL_PROGRAM_BUILD_LOG, 0, 0, &retsz);
3167
                if (buildInfo_retval == CL_SUCCESS && retsz > 1)
3168 3169 3170
                {
                    AutoBuffer<char> bufbuf(retsz + 16);
                    char* buf = bufbuf;
3171
                    buildInfo_retval = clGetProgramBuildInfo(handle, (cl_device_id)deviceList[0],
3172
                                                   CL_PROGRAM_BUILD_LOG, retsz+1, buf, &retsz);
3173
                    if (buildInfo_retval == CL_SUCCESS)
3174
                    {
3175
                        // TODO It is useful to see kernel name & program file name also
3176
                        errmsg = String(buf);
3177
                        printf("OpenCL program build log: %s\n%s\n", buildflags.c_str(), errmsg.c_str());
I
Ilya Lavrenov 已提交
3178
                        fflush(stdout);
3179 3180
                    }
                }
3181
                if (retval != CL_SUCCESS && handle)
I
Ilya Lavrenov 已提交
3182 3183 3184 3185
                {
                    clReleaseProgram(handle);
                    handle = NULL;
                }
3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197
            }
        }
    }

    Impl(const String& _buf, const String& _buildflags)
    {
        refcount = 1;
        handle = 0;
        buildflags = _buildflags;
        if(_buf.empty())
            return;
        String prefix0 = Program::getPrefix(buildflags);
I
Ilya Lavrenov 已提交
3198
        const Context& ctx = Context::getDefault();
3199 3200
        const Device& dev = Device::getDefault();
        const char* pos0 = _buf.c_str();
3201
        const char* pos1 = strchr(pos0, '\n');
3202 3203
        if(!pos1)
            return;
3204
        const char* pos2 = strchr(pos1+1, '\n');
3205 3206
        if(!pos2)
            return;
3207
        const char* pos3 = strchr(pos2+1, '\n');
3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219
        if(!pos3)
            return;
        size_t prefixlen = (pos3 - pos0)+1;
        String prefix(pos0, prefixlen);
        if( prefix != prefix0 )
            return;
        const uchar* bin = (uchar*)(pos3+1);
        void* devid = dev.ptr();
        size_t codelen = _buf.length() - prefixlen;
        cl_int binstatus = 0, retval = 0;
        handle = clCreateProgramWithBinary((cl_context)ctx.ptr(), 1, (cl_device_id*)&devid,
                                           &codelen, &bin, &binstatus, &retval);
I
Ilya Lavrenov 已提交
3220
        CV_OclDbgAssert(retval == CL_SUCCESS);
3221 3222 3223 3224 3225 3226 3227 3228 3229
    }

    String store()
    {
        if(!handle)
            return String();
        size_t progsz = 0, retsz = 0;
        String prefix = Program::getPrefix(buildflags);
        size_t prefixlen = prefix.length();
I
Ilya Lavrenov 已提交
3230
        if(clGetProgramInfo(handle, CL_PROGRAM_BINARY_SIZES, sizeof(progsz), &progsz, &retsz) != CL_SUCCESS)
3231 3232 3233 3234 3235
            return String();
        AutoBuffer<uchar> bufbuf(prefixlen + progsz + 16);
        uchar* buf = bufbuf;
        memcpy(buf, prefix.c_str(), prefixlen);
        buf += prefixlen;
I
Ilya Lavrenov 已提交
3236
        if(clGetProgramInfo(handle, CL_PROGRAM_BINARIES, sizeof(buf), &buf, &retsz) != CL_SUCCESS)
3237 3238 3239 3240 3241 3242 3243 3244
            return String();
        buf[progsz] = (uchar)'\0';
        return String((const char*)(uchar*)bufbuf, prefixlen + progsz);
    }

    ~Impl()
    {
        if( handle )
I
Ilya Lavrenov 已提交
3245
        {
A
Alexander Alekhin 已提交
3246 3247 3248 3249 3250 3251
#ifdef _WIN32
            if (!cv::__termination)
#endif
            {
                clReleaseProgram(handle);
            }
I
Ilya Lavrenov 已提交
3252 3253
            handle = NULL;
        }
3254 3255 3256 3257
    }

    IMPLEMENT_REFCOUNTABLE();

I
Ilya Lavrenov 已提交
3258
    ProgramSource src;
3259 3260 3261 3262 3263 3264 3265
    String buildflags;
    cl_program handle;
};


Program::Program() { p = 0; }

I
Ilya Lavrenov 已提交
3266
Program::Program(const ProgramSource& src,
3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296
        const String& buildflags, String& errmsg)
{
    p = 0;
    create(src, buildflags, errmsg);
}

Program::Program(const Program& prog)
{
    p = prog.p;
    if(p)
        p->addref();
}

Program& Program::operator = (const Program& prog)
{
    Impl* newp = (Impl*)prog.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

Program::~Program()
{
    if(p)
        p->release();
}

I
Ilya Lavrenov 已提交
3297
bool Program::create(const ProgramSource& src,
3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310
            const String& buildflags, String& errmsg)
{
    if(p)
        p->release();
    p = new Impl(src, buildflags, errmsg);
    if(!p->handle)
    {
        p->release();
        p = 0;
    }
    return p != 0;
}

I
Ilya Lavrenov 已提交
3311
const ProgramSource& Program::source() const
3312
{
I
Ilya Lavrenov 已提交
3313
    static ProgramSource dummy;
3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346
    return p ? p->src : dummy;
}

void* Program::ptr() const
{
    return p ? p->handle : 0;
}

bool Program::read(const String& bin, const String& buildflags)
{
    if(p)
        p->release();
    p = new Impl(bin, buildflags);
    return p->handle != 0;
}

bool Program::write(String& bin) const
{
    if(!p)
        return false;
    bin = p->store();
    return !bin.empty();
}

String Program::getPrefix() const
{
    if(!p)
        return String();
    return getPrefix(p->buildflags);
}

String Program::getPrefix(const String& buildflags)
{
I
Ilya Lavrenov 已提交
3347
    const Context& ctx = Context::getDefault();
3348 3349 3350 3351 3352
    const Device& dev = ctx.device(0);
    return format("name=%s\ndriver=%s\nbuildflags=%s\n",
                  dev.name().c_str(), dev.driverVersion().c_str(), buildflags.c_str());
}

I
Ilya Lavrenov 已提交
3353
///////////////////////////////////////// ProgramSource ///////////////////////////////////////////////
3354

I
Ilya Lavrenov 已提交
3355
struct ProgramSource::Impl
3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373
{
    Impl(const char* _src)
    {
        init(String(_src));
    }
    Impl(const String& _src)
    {
        init(_src);
    }
    void init(const String& _src)
    {
        refcount = 1;
        src = _src;
        h = crc64((uchar*)src.c_str(), src.size());
    }

    IMPLEMENT_REFCOUNTABLE();
    String src;
I
Ilya Lavrenov 已提交
3374
    ProgramSource::hash_t h;
3375 3376 3377
};


I
Ilya Lavrenov 已提交
3378
ProgramSource::ProgramSource()
3379 3380 3381 3382
{
    p = 0;
}

I
Ilya Lavrenov 已提交
3383
ProgramSource::ProgramSource(const char* prog)
3384 3385 3386 3387
{
    p = new Impl(prog);
}

I
Ilya Lavrenov 已提交
3388
ProgramSource::ProgramSource(const String& prog)
3389 3390 3391 3392
{
    p = new Impl(prog);
}

I
Ilya Lavrenov 已提交
3393
ProgramSource::~ProgramSource()
3394 3395 3396 3397 3398
{
    if(p)
        p->release();
}

I
Ilya Lavrenov 已提交
3399
ProgramSource::ProgramSource(const ProgramSource& prog)
3400 3401 3402 3403 3404 3405
{
    p = prog.p;
    if(p)
        p->addref();
}

I
Ilya Lavrenov 已提交
3406
ProgramSource& ProgramSource::operator = (const ProgramSource& prog)
3407 3408 3409 3410 3411 3412 3413 3414 3415 3416
{
    Impl* newp = (Impl*)prog.p;
    if(newp)
        newp->addref();
    if(p)
        p->release();
    p = newp;
    return *this;
}

I
Ilya Lavrenov 已提交
3417
const String& ProgramSource::source() const
3418 3419 3420 3421 3422
{
    static String dummy;
    return p ? p->src : dummy;
}

I
Ilya Lavrenov 已提交
3423
ProgramSource::hash_t ProgramSource::hash() const
3424 3425 3426 3427
{
    return p ? p->h : 0;
}

I
Ilya Lavrenov 已提交
3428
//////////////////////////////////////////// OpenCLAllocator //////////////////////////////////////////////////
3429

A
Alexander Alekhin 已提交
3430 3431 3432 3433 3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523
class OpenCLBufferPool
{
protected:
    ~OpenCLBufferPool() { }
public:
    virtual cl_mem allocate(size_t size, CV_OUT size_t& capacity) = 0;
    virtual void release(cl_mem handle, size_t capacity) = 0;
};

class OpenCLBufferPoolImpl : public BufferPoolController, public OpenCLBufferPool
{
public:
    struct BufferEntry
    {
        cl_mem clBuffer_;
        size_t capacity_;
    };
protected:
    Mutex mutex_;

    size_t currentReservedSize;
    size_t maxReservedSize;

    std::list<BufferEntry> reservedEntries_; // LRU order

    // synchronized
    bool _findAndRemoveEntryFromReservedList(CV_OUT BufferEntry& entry, const size_t size)
    {
        if (reservedEntries_.empty())
            return false;
        std::list<BufferEntry>::iterator i = reservedEntries_.begin();
        std::list<BufferEntry>::iterator result_pos = reservedEntries_.end();
        BufferEntry result = {NULL, 0};
        size_t minDiff = (size_t)(-1);
        for (; i != reservedEntries_.end(); ++i)
        {
            BufferEntry& e = *i;
            if (e.capacity_ >= size)
            {
                size_t diff = e.capacity_ - size;
                if (diff < size / 8 && (result_pos == reservedEntries_.end() || diff < minDiff))
                {
                    minDiff = diff;
                    result_pos = i;
                    result = e;
                    if (diff == 0)
                        break;
                }
            }
        }
        if (result_pos != reservedEntries_.end())
        {
            //CV_DbgAssert(result == *result_pos);
            reservedEntries_.erase(result_pos);
            entry = result;
            currentReservedSize -= entry.capacity_;
            return true;
        }
        return false;
    }

    // synchronized
    void _checkSizeOfReservedEntries()
    {
        while (currentReservedSize > maxReservedSize)
        {
            CV_DbgAssert(!reservedEntries_.empty());
            const BufferEntry& entry = reservedEntries_.back();
            CV_DbgAssert(currentReservedSize >= entry.capacity_);
            currentReservedSize -= entry.capacity_;
            _releaseBufferEntry(entry);
            reservedEntries_.pop_back();
        }
    }

    inline size_t _allocationGranularity(size_t size)
    {
        // heuristic values
        if (size < 1024)
            return 16;
        else if (size < 64*1024)
            return 64;
        else if (size < 1024*1024)
            return 4096;
        else if (size < 16*1024*1024)
            return 64*1024;
        else
            return 1024*1024;
    }

    void _allocateBufferEntry(BufferEntry& entry, size_t size)
    {
        CV_DbgAssert(entry.clBuffer_ == NULL);
        entry.capacity_ = alignSize(size, (int)_allocationGranularity(size));
3524
        Context& ctx = Context::getDefault();
A
Alexander Alekhin 已提交
3525 3526 3527 3528
        cl_int retval = CL_SUCCESS;
        entry.clBuffer_ = clCreateBuffer((cl_context)ctx.ptr(), CL_MEM_READ_WRITE, entry.capacity_, 0, &retval);
        CV_Assert(retval == CL_SUCCESS);
        CV_Assert(entry.clBuffer_ != NULL);
3529 3530 3531 3532
        if(retval == CL_SUCCESS)
        {
            CV_IMPL_ADD(CV_IMPL_OCL);
        }
A
Alexander Alekhin 已提交
3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548
        LOG_BUFFER_POOL("OpenCL allocate %lld (0x%llx) bytes: %p\n",
                (long long)entry.capacity_, (long long)entry.capacity_, entry.clBuffer_);
    }

    void _releaseBufferEntry(const BufferEntry& entry)
    {
        CV_Assert(entry.capacity_ != 0);
        CV_Assert(entry.clBuffer_ != NULL);
        LOG_BUFFER_POOL("OpenCL release buffer: %p, %lld (0x%llx) bytes\n",
                entry.clBuffer_, (long long)entry.capacity_, (long long)entry.capacity_);
        clReleaseMemObject(entry.clBuffer_);
    }
public:
    OpenCLBufferPoolImpl()
        : currentReservedSize(0), maxReservedSize(0)
    {
I
Ilya Lavrenov 已提交
3549 3550
        int poolSize = ocl::Device::getDefault().isIntel() ? 1 << 27 : 0;
        maxReservedSize = getConfigurationParameterForSize("OPENCV_OPENCL_BUFFERPOOL_LIMIT", poolSize);
A
Alexander Alekhin 已提交
3551 3552 3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564 3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630
    }
    virtual ~OpenCLBufferPoolImpl()
    {
        freeAllReservedBuffers();
        CV_Assert(reservedEntries_.empty());
    }
public:
    virtual cl_mem allocate(size_t size, CV_OUT size_t& capacity)
    {
        BufferEntry entry = {NULL, 0};
        if (maxReservedSize > 0)
        {
            AutoLock locker(mutex_);
            if (_findAndRemoveEntryFromReservedList(entry, size))
            {
                CV_DbgAssert(size <= entry.capacity_);
                LOG_BUFFER_POOL("Reuse reserved buffer: %p\n", entry.clBuffer_);
                capacity = entry.capacity_;
                return entry.clBuffer_;
            }
        }
        _allocateBufferEntry(entry, size);
        capacity = entry.capacity_;
        return entry.clBuffer_;
    }
    virtual void release(cl_mem handle, size_t capacity)
    {
        BufferEntry entry = {handle, capacity};
        if (maxReservedSize == 0 || entry.capacity_ > maxReservedSize / 8)
        {
            _releaseBufferEntry(entry);
        }
        else
        {
            AutoLock locker(mutex_);
            reservedEntries_.push_front(entry);
            currentReservedSize += entry.capacity_;
            _checkSizeOfReservedEntries();
        }
    }

    virtual size_t getReservedSize() const { return currentReservedSize; }
    virtual size_t getMaxReservedSize() const { return maxReservedSize; }
    virtual void setMaxReservedSize(size_t size)
    {
        AutoLock locker(mutex_);
        size_t oldMaxReservedSize = maxReservedSize;
        maxReservedSize = size;
        if (maxReservedSize < oldMaxReservedSize)
        {
            std::list<BufferEntry>::iterator i = reservedEntries_.begin();
            for (; i != reservedEntries_.end();)
            {
                const BufferEntry& entry = *i;
                if (entry.capacity_ > maxReservedSize / 8)
                {
                    CV_DbgAssert(currentReservedSize >= entry.capacity_);
                    currentReservedSize -= entry.capacity_;
                    _releaseBufferEntry(entry);
                    i = reservedEntries_.erase(i);
                    continue;
                }
                ++i;
            }
            _checkSizeOfReservedEntries();
        }
    }
    virtual void freeAllReservedBuffers()
    {
        AutoLock locker(mutex_);
        std::list<BufferEntry>::const_iterator i = reservedEntries_.begin();
        for (; i != reservedEntries_.end(); ++i)
        {
            const BufferEntry& entry = *i;
            _releaseBufferEntry(entry);
        }
        reservedEntries_.clear();
    }
};

3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689
#if defined _MSC_VER
#pragma warning(disable:4127) // conditional expression is constant
#endif
template <bool readAccess, bool writeAccess>
class AlignedDataPtr
{
protected:
    const size_t size_;
    uchar* const originPtr_;
    const size_t alignment_;
    uchar* ptr_;
    uchar* allocatedPtr_;

public:
    AlignedDataPtr(uchar* ptr, size_t size, size_t alignment)
        : size_(size), originPtr_(ptr), alignment_(alignment), ptr_(ptr), allocatedPtr_(NULL)
    {
        CV_DbgAssert((alignment & (alignment - 1)) == 0); // check for 2^n
        if (((size_t)ptr_ & (alignment - 1)) != 0)
        {
            allocatedPtr_ = new uchar[size_ + alignment - 1];
            ptr_ = (uchar*)(((uintptr_t)allocatedPtr_ + (alignment - 1)) & ~(alignment - 1));
            if (readAccess)
            {
                memcpy(ptr_, originPtr_, size_);
            }
        }
    }

    uchar* getAlignedPtr() const
    {
        CV_DbgAssert(((size_t)ptr_ & (alignment_ - 1)) == 0);
        return ptr_;
    }

    ~AlignedDataPtr()
    {
        if (allocatedPtr_)
        {
            if (writeAccess)
            {
                memcpy(originPtr_, ptr_, size_);
            }
            delete[] allocatedPtr_;
            allocatedPtr_ = NULL;
        }
        ptr_ = NULL;
    }
private:
    AlignedDataPtr(const AlignedDataPtr&); // disabled
    AlignedDataPtr& operator=(const AlignedDataPtr&); // disabled
};
#if defined _MSC_VER
#pragma warning(default:4127) // conditional expression is constant
#endif

#ifndef CV_OPENCL_DATA_PTR_ALIGNMENT
#define CV_OPENCL_DATA_PTR_ALIGNMENT 16
#endif
A
Alexander Alekhin 已提交
3690

3691 3692
class OpenCLAllocator : public MatAllocator
{
A
Alexander Alekhin 已提交
3693
    mutable OpenCLBufferPoolImpl bufferPool;
3694 3695 3696 3697
    enum AllocatorFlags
    {
        ALLOCATOR_FLAGS_BUFFER_POOL_USED = 1 << 0
    };
3698
public:
3699
    OpenCLAllocator() { matStdAllocator = Mat::getStdAllocator(); }
3700

3701 3702
    UMatData* defaultAllocate(int dims, const int* sizes, int type, void* data, size_t* step,
            int flags, UMatUsageFlags usageFlags) const
3703
    {
3704
        UMatData* u = matStdAllocator->allocate(dims, sizes, type, data, step, flags, usageFlags);
3705 3706 3707
        return u;
    }

3708
    void getBestFlags(const Context& ctx, int /*flags*/, UMatUsageFlags usageFlags, int& createFlags, int& flags0) const
3709 3710
    {
        const Device& dev = ctx.device(0);
3711 3712 3713
        createFlags = 0;
        if ((usageFlags & USAGE_ALLOCATE_HOST_MEMORY) != 0)
            createFlags |= CL_MEM_ALLOC_HOST_PTR;
3714 3715 3716 3717 3718 3719 3720

        if( dev.hostUnifiedMemory() )
            flags0 = 0;
        else
            flags0 = UMatData::COPY_ON_MAP;
    }

3721
    UMatData* allocate(int dims, const int* sizes, int type,
3722
                       void* data, size_t* step, int flags, UMatUsageFlags usageFlags) const
3723 3724
    {
        if(!useOpenCL())
3725
            return defaultAllocate(dims, sizes, type, data, step, flags, usageFlags);
3726
        CV_Assert(data == 0);
3727 3728 3729 3730 3731 3732 3733 3734
        size_t total = CV_ELEM_SIZE(type);
        for( int i = dims-1; i >= 0; i-- )
        {
            if( step )
                step[i] = total;
            total *= sizes[i];
        }

I
Ilya Lavrenov 已提交
3735
        Context& ctx = Context::getDefault();
3736
        int createFlags = 0, flags0 = 0;
3737
        getBestFlags(ctx, flags, usageFlags, createFlags, flags0);
3738

A
Alexander Alekhin 已提交
3739
        size_t capacity = 0;
3740 3741 3742 3743 3744 3745 3746 3747 3748 3749 3750 3751 3752 3753 3754 3755 3756
        void* handle = NULL;
        int allocatorFlags = 0;
        if (createFlags == 0)
        {
            handle = bufferPool.allocate(total, capacity);
            if (!handle)
                return defaultAllocate(dims, sizes, type, data, step, flags, usageFlags);
            allocatorFlags = ALLOCATOR_FLAGS_BUFFER_POOL_USED;
        }
        else
        {
            capacity = total;
            cl_int retval = 0;
            handle = clCreateBuffer((cl_context)ctx.ptr(),
                                          CL_MEM_READ_WRITE|createFlags, total, 0, &retval);
            if( !handle || retval != CL_SUCCESS )
                return defaultAllocate(dims, sizes, type, data, step, flags, usageFlags);
3757
            CV_IMPL_ADD(CV_IMPL_OCL)
3758
        }
3759 3760 3761
        UMatData* u = new UMatData(this);
        u->data = 0;
        u->size = total;
A
Alexander Alekhin 已提交
3762
        u->capacity = capacity;
3763 3764
        u->handle = handle;
        u->flags = flags0;
3765 3766
        u->allocatorFlags_ = allocatorFlags;
        CV_DbgAssert(!u->tempUMat()); // for bufferPool.release() consistency in deallocate()
3767 3768 3769
        return u;
    }

3770
    bool allocate(UMatData* u, int accessFlags, UMatUsageFlags usageFlags) const
3771 3772 3773 3774 3775 3776 3777 3778 3779
    {
        if(!u)
            return false;

        UMatDataAutoLock lock(u);

        if(u->handle == 0)
        {
            CV_Assert(u->origdata != 0);
I
Ilya Lavrenov 已提交
3780
            Context& ctx = Context::getDefault();
3781
            int createFlags = 0, flags0 = 0;
3782
            getBestFlags(ctx, accessFlags, usageFlags, createFlags, flags0);
3783 3784 3785 3786

            cl_context ctx_handle = (cl_context)ctx.ptr();
            cl_int retval = 0;
            int tempUMatFlags = UMatData::TEMP_UMAT;
3787
            u->handle = clCreateBuffer(ctx_handle, CL_MEM_USE_HOST_PTR|CL_MEM_READ_WRITE,
3788
                                       u->size, u->origdata, &retval);
I
Ilya Lavrenov 已提交
3789
            if((!u->handle || retval != CL_SUCCESS) && !(accessFlags & ACCESS_FAST))
3790
            {
3791
                u->handle = clCreateBuffer(ctx_handle, CL_MEM_COPY_HOST_PTR|CL_MEM_READ_WRITE|createFlags,
3792 3793
                                           u->size, u->origdata, &retval);
                tempUMatFlags = UMatData::TEMP_COPIED_UMAT;
3794

3795
            }
I
Ilya Lavrenov 已提交
3796
            if(!u->handle || retval != CL_SUCCESS)
3797 3798 3799 3800 3801 3802 3803 3804 3805 3806
                return false;
            u->prevAllocator = u->currAllocator;
            u->currAllocator = this;
            u->flags |= tempUMatFlags;
        }
        if(accessFlags & ACCESS_WRITE)
            u->markHostCopyObsolete(true);
        return true;
    }

3807
    /*void sync(UMatData* u) const
3808 3809
    {
        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();
3810 3811
        UMatDataAutoLock lock(u);

3812
        if( u->hostCopyObsolete() && u->handle && u->refcount > 0 && u->origdata)
3813
        {
3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827
            if( u->tempCopiedUMat() )
            {
                clEnqueueReadBuffer(q, (cl_mem)u->handle, CL_TRUE, 0,
                                    u->size, u->origdata, 0, 0, 0);
            }
            else
            {
                cl_int retval = 0;
                void* data = clEnqueueMapBuffer(q, (cl_mem)u->handle, CL_TRUE,
                                                (CL_MAP_READ | CL_MAP_WRITE),
                                                0, u->size, 0, 0, 0, &retval);
                clEnqueueUnmapMemObject(q, (cl_mem)u->handle, data, 0, 0, 0);
                clFinish(q);
            }
3828 3829 3830 3831 3832 3833 3834
            u->markHostCopyObsolete(false);
        }
        else if( u->copyOnMap() && u->deviceCopyObsolete() && u->data )
        {
            clEnqueueWriteBuffer(q, (cl_mem)u->handle, CL_TRUE, 0,
                                 u->size, u->data, 0, 0, 0);
        }
3835
    }*/
3836

3837 3838 3839 3840 3841
    void deallocate(UMatData* u) const
    {
        if(!u)
            return;

A
Alexander Alekhin 已提交
3842 3843 3844
        CV_Assert(u->urefcount >= 0);
        CV_Assert(u->refcount >= 0);

3845
        // TODO: !!! when we add Shared Virtual Memory Support,
3846
        // this function (as well as the others) should be corrected
3847 3848 3849
        CV_Assert(u->handle != 0 && u->urefcount == 0);
        if(u->tempUMat())
        {
I
async  
Ilya Lavrenov 已提交
3850
//            UMatDataAutoLock lock(u);
3851
            if( u->hostCopyObsolete() && u->refcount > 0 )
3852
            {
3853 3854 3855
                cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();
                if( u->tempCopiedUMat() )
                {
3856
                    AlignedDataPtr<false, true> alignedPtr(u->origdata, u->size, CV_OPENCL_DATA_PTR_ALIGNMENT);
I
Ilya Lavrenov 已提交
3857
                    CV_OclDbgAssert(clEnqueueReadBuffer(q, (cl_mem)u->handle, CL_TRUE, 0,
3858
                                        u->size, alignedPtr.getAlignedPtr(), 0, 0, 0) == CL_SUCCESS);
3859 3860 3861 3862 3863 3864 3865
                }
                else
                {
                    cl_int retval = 0;
                    void* data = clEnqueueMapBuffer(q, (cl_mem)u->handle, CL_TRUE,
                                                    (CL_MAP_READ | CL_MAP_WRITE),
                                                    0, u->size, 0, 0, 0, &retval);
I
Ilya Lavrenov 已提交
3866 3867 3868
                    CV_OclDbgAssert(retval == CL_SUCCESS);
                    CV_OclDbgAssert(clEnqueueUnmapMemObject(q, (cl_mem)u->handle, data, 0, 0, 0) == CL_SUCCESS);
                    CV_OclDbgAssert(clFinish(q) == CL_SUCCESS);
3869
                }
3870 3871 3872
            }
            u->markHostCopyObsolete(false);
            clReleaseMemObject((cl_mem)u->handle);
K
Konstantin Matskevich 已提交
3873
            u->handle = 0;
3874
            u->currAllocator = u->prevAllocator;
3875
            if(u->data && u->copyOnMap() && !(u->flags & UMatData::USER_ALLOCATED))
3876 3877
                fastFree(u->data);
            u->data = u->origdata;
3878 3879 3880 3881 3882
            if(u->refcount == 0)
                u->currAllocator->deallocate(u);
        }
        else
        {
3883
            CV_Assert(u->refcount == 0);
3884 3885
            if(u->data && u->copyOnMap() && !(u->flags & UMatData::USER_ALLOCATED))
            {
3886
                fastFree(u->data);
3887 3888
                u->data = 0;
            }
3889 3890 3891 3892 3893 3894 3895 3896
            if (u->allocatorFlags_ & ALLOCATOR_FLAGS_BUFFER_POOL_USED)
            {
                bufferPool.release((cl_mem)u->handle, u->capacity);
            }
            else
            {
                clReleaseMemObject((cl_mem)u->handle);
            }
K
Konstantin Matskevich 已提交
3897
            u->handle = 0;
A
Alexander Alekhin 已提交
3898
            u->capacity = 0;
3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916
            delete u;
        }
    }

    void map(UMatData* u, int accessFlags) const
    {
        if(!u)
            return;

        CV_Assert( u->handle != 0 );

        UMatDataAutoLock autolock(u);

        if(accessFlags & ACCESS_WRITE)
            u->markDeviceCopyObsolete(true);

        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();

3917 3918
        // FIXIT Workaround for UMat synchronization issue
        // if( u->refcount == 0 )
3919 3920 3921
        {
            if( !u->copyOnMap() )
            {
3922 3923 3924 3925 3926
                if (u->data) // FIXIT Workaround for UMat synchronization issue
                {
                    //CV_Assert(u->hostCopyObsolete() == false);
                    return;
                }
3927 3928 3929 3930 3931 3932
                // because there can be other map requests for the same UMat with different access flags,
                // we use the universal (read-write) access mode.
                cl_int retval = 0;
                u->data = (uchar*)clEnqueueMapBuffer(q, (cl_mem)u->handle, CL_TRUE,
                                                     (CL_MAP_READ | CL_MAP_WRITE),
                                                     0, u->size, 0, 0, 0, &retval);
I
Ilya Lavrenov 已提交
3933
                if(u->data && retval == CL_SUCCESS)
3934 3935
                {
                    u->markHostCopyObsolete(false);
3936
                    u->markDeviceMemMapped(true);
3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952
                    return;
                }

                // if map failed, switch to copy-on-map mode for the particular buffer
                u->flags |= UMatData::COPY_ON_MAP;
            }

            if(!u->data)
            {
                u->data = (uchar*)fastMalloc(u->size);
                u->markHostCopyObsolete(true);
            }
        }

        if( (accessFlags & ACCESS_READ) != 0 && u->hostCopyObsolete() )
        {
3953
            AlignedDataPtr<false, true> alignedPtr(u->data, u->size, CV_OPENCL_DATA_PTR_ALIGNMENT);
3954
            CV_Assert( clEnqueueReadBuffer(q, (cl_mem)u->handle, CL_TRUE, 0,
3955
                                           u->size, alignedPtr.getAlignedPtr(), 0, 0, 0) == CL_SUCCESS );
3956 3957 3958 3959 3960 3961 3962 3963 3964
            u->markHostCopyObsolete(false);
        }
    }

    void unmap(UMatData* u) const
    {
        if(!u)
            return;

3965

3966 3967 3968 3969
        CV_Assert(u->handle != 0);

        UMatDataAutoLock autolock(u);

3970 3971 3972 3973
        // FIXIT Workaround for UMat synchronization issue
        if(u->refcount > 0)
            return;

3974
        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();
3975
        cl_int retval = 0;
3976
        if( !u->copyOnMap() && u->deviceMemMapped() )
3977
        {
3978 3979
            CV_Assert(u->data != NULL);
            u->markDeviceMemMapped(false);
3980
            CV_Assert( (retval = clEnqueueUnmapMemObject(q,
I
Ilya Lavrenov 已提交
3981
                                (cl_mem)u->handle, u->data, 0, 0, 0)) == CL_SUCCESS );
3982 3983 3984 3985
            u->data = 0;
        }
        else if( u->copyOnMap() && u->deviceCopyObsolete() )
        {
3986
            AlignedDataPtr<true, false> alignedPtr(u->data, u->size, CV_OPENCL_DATA_PTR_ALIGNMENT);
3987
            CV_Assert( (retval = clEnqueueWriteBuffer(q, (cl_mem)u->handle, CL_TRUE, 0,
3988
                                u->size, alignedPtr.getAlignedPtr(), 0, 0, 0)) == CL_SUCCESS );
3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006
        }
        u->markDeviceCopyObsolete(false);
        u->markHostCopyObsolete(false);
    }

    bool checkContinuous(int dims, const size_t sz[],
                         const size_t srcofs[], const size_t srcstep[],
                         const size_t dstofs[], const size_t dststep[],
                         size_t& total, size_t new_sz[],
                         size_t& srcrawofs, size_t new_srcofs[], size_t new_srcstep[],
                         size_t& dstrawofs, size_t new_dstofs[], size_t new_dststep[]) const
    {
        bool iscontinuous = true;
        srcrawofs = srcofs ? srcofs[dims-1] : 0;
        dstrawofs = dstofs ? dstofs[dims-1] : 0;
        total = sz[dims-1];
        for( int i = dims-2; i >= 0; i-- )
        {
4007
            if( i >= 0 && (total != srcstep[i] || total != dststep[i]) )
4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087 4088 4089 4090 4091 4092
                iscontinuous = false;
            total *= sz[i];
            if( srcofs )
                srcrawofs += srcofs[i]*srcstep[i];
            if( dstofs )
                dstrawofs += dstofs[i]*dststep[i];
        }

        if( !iscontinuous )
        {
            // OpenCL uses {x, y, z} order while OpenCV uses {z, y, x} order.
            if( dims == 2 )
            {
                new_sz[0] = sz[1]; new_sz[1] = sz[0]; new_sz[2] = 1;
                // we assume that new_... arrays are initialized by caller
                // with 0's, so there is no else branch
                if( srcofs )
                {
                    new_srcofs[0] = srcofs[1];
                    new_srcofs[1] = srcofs[0];
                    new_srcofs[2] = 0;
                }

                if( dstofs )
                {
                    new_dstofs[0] = dstofs[1];
                    new_dstofs[1] = dstofs[0];
                    new_dstofs[2] = 0;
                }

                new_srcstep[0] = srcstep[0]; new_srcstep[1] = 0;
                new_dststep[0] = dststep[0]; new_dststep[1] = 0;
            }
            else
            {
                // we could check for dims == 3 here,
                // but from user perspective this one is more informative
                CV_Assert(dims <= 3);
                new_sz[0] = sz[2]; new_sz[1] = sz[1]; new_sz[2] = sz[0];
                if( srcofs )
                {
                    new_srcofs[0] = srcofs[2];
                    new_srcofs[1] = srcofs[1];
                    new_srcofs[2] = srcofs[0];
                }

                if( dstofs )
                {
                    new_dstofs[0] = dstofs[2];
                    new_dstofs[1] = dstofs[1];
                    new_dstofs[2] = dstofs[0];
                }

                new_srcstep[0] = srcstep[1]; new_srcstep[1] = srcstep[0];
                new_dststep[0] = dststep[1]; new_dststep[1] = dststep[0];
            }
        }
        return iscontinuous;
    }

    void download(UMatData* u, void* dstptr, int dims, const size_t sz[],
                  const size_t srcofs[], const size_t srcstep[],
                  const size_t dststep[]) const
    {
        if(!u)
            return;
        UMatDataAutoLock autolock(u);

        if( u->data && !u->hostCopyObsolete() )
        {
            Mat::getStdAllocator()->download(u, dstptr, dims, sz, srcofs, srcstep, dststep);
            return;
        }
        CV_Assert( u->handle != 0 );

        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();

        size_t total = 0, new_sz[] = {0, 0, 0};
        size_t srcrawofs = 0, new_srcofs[] = {0, 0, 0}, new_srcstep[] = {0, 0, 0};
        size_t dstrawofs = 0, new_dstofs[] = {0, 0, 0}, new_dststep[] = {0, 0, 0};

        bool iscontinuous = checkContinuous(dims, sz, srcofs, srcstep, 0, dststep,
                                            total, new_sz,
                                            srcrawofs, new_srcofs, new_srcstep,
                                            dstrawofs, new_dstofs, new_dststep);
4093 4094

        AlignedDataPtr<false, true> alignedPtr((uchar*)dstptr, sz[0] * dststep[0], CV_OPENCL_DATA_PTR_ALIGNMENT);
4095 4096 4097
        if( iscontinuous )
        {
            CV_Assert( clEnqueueReadBuffer(q, (cl_mem)u->handle, CL_TRUE,
4098
                                           srcrawofs, total, alignedPtr.getAlignedPtr(), 0, 0, 0) == CL_SUCCESS );
4099 4100 4101 4102 4103
        }
        else
        {
            CV_Assert( clEnqueueReadBufferRect(q, (cl_mem)u->handle, CL_TRUE,
                            new_srcofs, new_dstofs, new_sz, new_srcstep[0], new_srcstep[1],
4104
                            new_dststep[0], new_dststep[1], alignedPtr.getAlignedPtr(), 0, 0, 0) == CL_SUCCESS );
4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115
        }
    }

    void upload(UMatData* u, const void* srcptr, int dims, const size_t sz[],
                const size_t dstofs[], const size_t dststep[],
                const size_t srcstep[]) const
    {
        if(!u)
            return;

        // there should be no user-visible CPU copies of the UMat which we are going to copy to
4116
        CV_Assert(u->refcount == 0 || u->tempUMat());
4117 4118 4119 4120 4121 4122 4123 4124 4125 4126 4127 4128 4129 4130 4131 4132 4133

        size_t total = 0, new_sz[] = {0, 0, 0};
        size_t srcrawofs = 0, new_srcofs[] = {0, 0, 0}, new_srcstep[] = {0, 0, 0};
        size_t dstrawofs = 0, new_dstofs[] = {0, 0, 0}, new_dststep[] = {0, 0, 0};

        bool iscontinuous = checkContinuous(dims, sz, 0, srcstep, dstofs, dststep,
                                            total, new_sz,
                                            srcrawofs, new_srcofs, new_srcstep,
                                            dstrawofs, new_dstofs, new_dststep);

        UMatDataAutoLock autolock(u);

        // if there is cached CPU copy of the GPU matrix,
        // we could use it as a destination.
        // we can do it in 2 cases:
        //    1. we overwrite the whole content
        //    2. we overwrite part of the matrix, but the GPU copy is out-of-date
I
Ilya Lavrenov 已提交
4134
        if( u->data && (u->hostCopyObsolete() < u->deviceCopyObsolete() || total == u->size))
4135 4136 4137 4138 4139 4140 4141 4142 4143 4144
        {
            Mat::getStdAllocator()->upload(u, srcptr, dims, sz, dstofs, dststep, srcstep);
            u->markHostCopyObsolete(false);
            u->markDeviceCopyObsolete(true);
            return;
        }

        CV_Assert( u->handle != 0 );
        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();

4145
        AlignedDataPtr<true, false> alignedPtr((uchar*)srcptr, sz[0] * srcstep[0], CV_OPENCL_DATA_PTR_ALIGNMENT);
4146 4147 4148
        if( iscontinuous )
        {
            CV_Assert( clEnqueueWriteBuffer(q, (cl_mem)u->handle,
I
Ilya Lavrenov 已提交
4149
                CL_TRUE, dstrawofs, total, srcptr, 0, 0, 0) == CL_SUCCESS );
4150 4151 4152 4153 4154
        }
        else
        {
            CV_Assert( clEnqueueWriteBufferRect(q, (cl_mem)u->handle, CL_TRUE,
                new_dstofs, new_srcofs, new_sz, new_dststep[0], new_dststep[1],
I
Ilya Lavrenov 已提交
4155
                new_srcstep[0], new_srcstep[1], srcptr, 0, 0, 0) == CL_SUCCESS );
4156 4157 4158 4159 4160 4161 4162 4163
        }

        u->markHostCopyObsolete(true);
        u->markDeviceCopyObsolete(false);
    }

    void copy(UMatData* src, UMatData* dst, int dims, const size_t sz[],
              const size_t srcofs[], const size_t srcstep[],
4164
              const size_t dstofs[], const size_t dststep[], bool _sync) const
4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176 4177 4178 4179 4180
    {
        if(!src || !dst)
            return;

        size_t total = 0, new_sz[] = {0, 0, 0};
        size_t srcrawofs = 0, new_srcofs[] = {0, 0, 0}, new_srcstep[] = {0, 0, 0};
        size_t dstrawofs = 0, new_dstofs[] = {0, 0, 0}, new_dststep[] = {0, 0, 0};

        bool iscontinuous = checkContinuous(dims, sz, srcofs, srcstep, dstofs, dststep,
                                            total, new_sz,
                                            srcrawofs, new_srcofs, new_srcstep,
                                            dstrawofs, new_dstofs, new_dststep);

        UMatDataAutoLock src_autolock(src);
        UMatDataAutoLock dst_autolock(dst);

I
Ilya Lavrenov 已提交
4181
        if( !src->handle || (src->data && src->hostCopyObsolete() < src->deviceCopyObsolete()) )
4182 4183 4184 4185
        {
            upload(dst, src->data + srcrawofs, dims, sz, dstofs, dststep, srcstep);
            return;
        }
I
Ilya Lavrenov 已提交
4186
        if( !dst->handle || (dst->data && dst->hostCopyObsolete() < dst->deviceCopyObsolete()) )
4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197
        {
            download(src, dst->data + dstrawofs, dims, sz, srcofs, srcstep, dststep);
            dst->markHostCopyObsolete(false);
            dst->markDeviceCopyObsolete(true);
            return;
        }

        // there should be no user-visible CPU copies of the UMat which we are going to copy to
        CV_Assert(dst->refcount == 0);
        cl_command_queue q = (cl_command_queue)Queue::getDefault().ptr();

4198
        cl_int retval;
4199 4200
        if( iscontinuous )
        {
4201 4202
            CV_Assert( (retval = clEnqueueCopyBuffer(q, (cl_mem)src->handle, (cl_mem)dst->handle,
                                           srcrawofs, dstrawofs, total, 0, 0, 0)) == CL_SUCCESS );
4203 4204 4205
        }
        else
        {
4206
            CV_Assert( (retval = clEnqueueCopyBufferRect(q, (cl_mem)src->handle, (cl_mem)dst->handle,
4207
                                               new_srcofs, new_dstofs, new_sz,
4208 4209
                                               new_srcstep[0], new_srcstep[1],
                                               new_dststep[0], new_dststep[1],
I
Ilya Lavrenov 已提交
4210
                                               0, 0, 0)) == CL_SUCCESS );
4211
        }
4212 4213 4214 4215
        if(retval == CL_SUCCESS)
        {
            CV_IMPL_ADD(CV_IMPL_OCL)
        }
4216 4217 4218 4219

        dst->markHostCopyObsolete(true);
        dst->markDeviceCopyObsolete(false);

4220
        if( _sync )
I
Ilya Lavrenov 已提交
4221 4222 4223
        {
            CV_OclDbgAssert(clFinish(q) == CL_SUCCESS);
        }
4224
    }
4225

A
Alexander Alekhin 已提交
4226 4227
    BufferPoolController* getBufferPoolController() const { return &bufferPool; }

4228
    MatAllocator* matStdAllocator;
4229 4230 4231 4232
};

MatAllocator* getOpenCLAllocator()
{
4233 4234
    static MatAllocator * allocator = new OpenCLAllocator();
    return allocator;
4235 4236
}

I
Ilya Lavrenov 已提交
4237
///////////////////////////////////////////// Utility functions /////////////////////////////////////////////////
K
Konstantin Matskevich 已提交
4238

I
Ilya Lavrenov 已提交
4239
static void getDevices(std::vector<cl_device_id>& devices, cl_platform_id platform)
K
Konstantin Matskevich 已提交
4240 4241
{
    cl_uint numDevices = 0;
I
Ilya Lavrenov 已提交
4242 4243 4244
    CV_OclDbgAssert(clGetDeviceIDs(platform, (cl_device_type)Device::TYPE_ALL,
                                0, NULL, &numDevices) == CL_SUCCESS);

K
Konstantin Matskevich 已提交
4245
    if (numDevices == 0)
I
Ilya Lavrenov 已提交
4246 4247
    {
        devices.clear();
K
Konstantin Matskevich 已提交
4248
        return;
I
Ilya Lavrenov 已提交
4249 4250
    }

K
Konstantin Matskevich 已提交
4251
    devices.resize((size_t)numDevices);
I
Ilya Lavrenov 已提交
4252 4253
    CV_OclDbgAssert(clGetDeviceIDs(platform, (cl_device_type)Device::TYPE_ALL,
                                numDevices, &devices[0], &numDevices) == CL_SUCCESS);
K
Konstantin Matskevich 已提交
4254 4255
}

I
Ilya Lavrenov 已提交
4256
struct PlatformInfo::Impl
K
Konstantin Matskevich 已提交
4257 4258 4259
{
    Impl(void* id)
    {
4260
        refcount = 1;
K
Konstantin Matskevich 已提交
4261 4262 4263 4264 4265 4266 4267 4268
        handle = *(cl_platform_id*)id;
        getDevices(devices, handle);
    }

    String getStrProp(cl_device_info prop) const
    {
        char buf[1024];
        size_t sz=0;
I
Ilya Lavrenov 已提交
4269
        return clGetPlatformInfo(handle, prop, sizeof(buf)-16, buf, &sz) == CL_SUCCESS &&
K
Konstantin Matskevich 已提交
4270 4271 4272 4273 4274 4275 4276 4277
            sz < sizeof(buf) ? String(buf) : String();
    }

    IMPLEMENT_REFCOUNTABLE();
    std::vector<cl_device_id> devices;
    cl_platform_id handle;
};

I
Ilya Lavrenov 已提交
4278
PlatformInfo::PlatformInfo()
K
Konstantin Matskevich 已提交
4279 4280 4281 4282
{
    p = 0;
}

I
Ilya Lavrenov 已提交
4283
PlatformInfo::PlatformInfo(void* platform_id)
K
Konstantin Matskevich 已提交
4284 4285 4286 4287
{
    p = new Impl(platform_id);
}

I
Ilya Lavrenov 已提交
4288
PlatformInfo::~PlatformInfo()
K
Konstantin Matskevich 已提交
4289 4290 4291 4292 4293
{
    if(p)
        p->release();
}

I
Ilya Lavrenov 已提交
4294
PlatformInfo::PlatformInfo(const PlatformInfo& i)
4295 4296 4297
{
    if (i.p)
        i.p->addref();
I
Ilya Lavrenov 已提交
4298
    p = i.p;
4299 4300
}

I
Ilya Lavrenov 已提交
4301
PlatformInfo& PlatformInfo::operator =(const PlatformInfo& i)
4302
{
I
Ilya Lavrenov 已提交
4303
    if (i.p != p)
4304 4305 4306
    {
        if (i.p)
            i.p->addref();
I
Ilya Lavrenov 已提交
4307 4308 4309
        if (p)
            p->release();
        p = i.p;
4310 4311 4312 4313
    }
    return *this;
}

I
Ilya Lavrenov 已提交
4314
int PlatformInfo::deviceNumber() const
K
Konstantin Matskevich 已提交
4315 4316 4317 4318
{
    return p ? (int)p->devices.size() : 0;
}

I
Ilya Lavrenov 已提交
4319
void PlatformInfo::getDevice(Device& device, int d) const
K
Konstantin Matskevich 已提交
4320
{
4321
    CV_Assert(p && d < (int)p->devices.size() );
K
Konstantin Matskevich 已提交
4322 4323 4324 4325
    if(p)
        device.set(p->devices[d]);
}

I
Ilya Lavrenov 已提交
4326
String PlatformInfo::name() const
K
Konstantin Matskevich 已提交
4327 4328 4329 4330
{
    return p ? p->getStrProp(CL_PLATFORM_NAME) : String();
}

I
Ilya Lavrenov 已提交
4331
String PlatformInfo::vendor() const
K
Konstantin Matskevich 已提交
4332 4333 4334 4335
{
    return p ? p->getStrProp(CL_PLATFORM_VENDOR) : String();
}

I
Ilya Lavrenov 已提交
4336
String PlatformInfo::version() const
K
Konstantin Matskevich 已提交
4337 4338 4339 4340 4341 4342 4343
{
    return p ? p->getStrProp(CL_PLATFORM_VERSION) : String();
}

static void getPlatforms(std::vector<cl_platform_id>& platforms)
{
    cl_uint numPlatforms = 0;
I
Ilya Lavrenov 已提交
4344 4345
    CV_OclDbgAssert(clGetPlatformIDs(0, NULL, &numPlatforms) == CL_SUCCESS);

K
Konstantin Matskevich 已提交
4346
    if (numPlatforms == 0)
I
Ilya Lavrenov 已提交
4347 4348
    {
        platforms.clear();
K
Konstantin Matskevich 已提交
4349
        return;
I
Ilya Lavrenov 已提交
4350 4351
    }

K
Konstantin Matskevich 已提交
4352
    platforms.resize((size_t)numPlatforms);
I
Ilya Lavrenov 已提交
4353
    CV_OclDbgAssert(clGetPlatformIDs(numPlatforms, &platforms[0], &numPlatforms) == CL_SUCCESS);
K
Konstantin Matskevich 已提交
4354 4355
}

I
Ilya Lavrenov 已提交
4356
void getPlatfomsInfo(std::vector<PlatformInfo>& platformsInfo)
K
Konstantin Matskevich 已提交
4357 4358 4359
{
    std::vector<cl_platform_id> platforms;
    getPlatforms(platforms);
I
Ilya Lavrenov 已提交
4360

K
Konstantin Matskevich 已提交
4361
    for (size_t i = 0; i < platforms.size(); i++)
I
Ilya Lavrenov 已提交
4362
        platformsInfo.push_back( PlatformInfo((void*)&platforms[i]) );
K
Konstantin Matskevich 已提交
4363 4364
}

I
Ilya Lavrenov 已提交
4365
const char* typeToStr(int type)
4366 4367 4368
{
    static const char* tab[]=
    {
I
Ilya Lavrenov 已提交
4369 4370 4371 4372 4373 4374 4375 4376
        "uchar", "uchar2", "uchar3", "uchar4", 0, 0, 0, "uchar8", 0, 0, 0, 0, 0, 0, 0, "uchar16",
        "char", "char2", "char3", "char4", 0, 0, 0, "char8", 0, 0, 0, 0, 0, 0, 0, "char16",
        "ushort", "ushort2", "ushort3", "ushort4",0, 0, 0, "ushort8", 0, 0, 0, 0, 0, 0, 0, "ushort16",
        "short", "short2", "short3", "short4", 0, 0, 0, "short8", 0, 0, 0, 0, 0, 0, 0, "short16",
        "int", "int2", "int3", "int4", 0, 0, 0, "int8", 0, 0, 0, 0, 0, 0, 0, "int16",
        "float", "float2", "float3", "float4", 0, 0, 0, "float8", 0, 0, 0, 0, 0, 0, 0, "float16",
        "double", "double2", "double3", "double4", 0, 0, 0, "double8", 0, 0, 0, 0, 0, 0, 0, "double16",
        "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?"
4377
    };
I
Ilya Lavrenov 已提交
4378
    int cn = CV_MAT_CN(type), depth = CV_MAT_DEPTH(type);
I
Ilya Lavrenov 已提交
4379
    return cn > 16 ? "?" : tab[depth*16 + cn-1];
4380 4381
}

I
Ilya Lavrenov 已提交
4382
const char* memopTypeToStr(int type)
E
Elena Gvozdeva 已提交
4383 4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399
{
    static const char* tab[] =
    {
        "uchar", "uchar2", "uchar3", "uchar4", 0, 0, 0, "uchar8", 0, 0, 0, 0, 0, 0, 0, "uchar16",
        "char", "char2", "char3", "char4", 0, 0, 0, "char8", 0, 0, 0, 0, 0, 0, 0, "char16",
        "ushort", "ushort2", "ushort3", "ushort4",0, 0, 0, "ushort8", 0, 0, 0, 0, 0, 0, 0, "ushort16",
        "short", "short2", "short3", "short4", 0, 0, 0, "short8", 0, 0, 0, 0, 0, 0, 0, "short16",
        "int", "int2", "int3", "int4", 0, 0, 0, "int8", 0, 0, 0, 0, 0, 0, 0, "int16",
        "int", "int2", "int3", "int4", 0, 0, 0, "int8", 0, 0, 0, 0, 0, 0, 0, "int16",
        "ulong", "ulong2", "ulong3", "ulong4", 0, 0, 0, "ulong8", 0, 0, 0, 0, 0, 0, 0, "ulong16",
        "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?"
    };
    int cn = CV_MAT_CN(type), depth = CV_MAT_DEPTH(type);
    return cn > 16 ? "?" : tab[depth*16 + cn-1];
}

const char* vecopTypeToStr(int type)
4400
{
4401
    static const char* tab[] =
4402
    {
4403 4404 4405 4406
        "uchar", "short", "uchar3", "int", 0, 0, 0, "int2", 0, 0, 0, 0, 0, 0, 0, "int4",
        "char", "short", "char3", "int", 0, 0, 0, "int2", 0, 0, 0, 0, 0, 0, 0, "int4",
        "ushort", "int", "ushort3", "int2",0, 0, 0, "int4", 0, 0, 0, 0, 0, 0, 0, "int8",
        "short", "int", "short3", "int2", 0, 0, 0, "int4", 0, 0, 0, 0, 0, 0, 0, "int8",
I
Ilya Lavrenov 已提交
4407 4408 4409 4410
        "int", "int2", "int3", "int4", 0, 0, 0, "int8", 0, 0, 0, 0, 0, 0, 0, "int16",
        "int", "int2", "int3", "int4", 0, 0, 0, "int8", 0, 0, 0, 0, 0, 0, 0, "int16",
        "ulong", "ulong2", "ulong3", "ulong4", 0, 0, 0, "ulong8", 0, 0, 0, 0, 0, 0, 0, "ulong16",
        "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?", "?"
4411
    };
I
Ilya Lavrenov 已提交
4412
    int cn = CV_MAT_CN(type), depth = CV_MAT_DEPTH(type);
I
Ilya Lavrenov 已提交
4413
    return cn > 16 ? "?" : tab[depth*16 + cn-1];
4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429 4430 4431
}

const char* convertTypeStr(int sdepth, int ddepth, int cn, char* buf)
{
    if( sdepth == ddepth )
        return "noconvert";
    const char *typestr = typeToStr(CV_MAKETYPE(ddepth, cn));
    if( ddepth >= CV_32F ||
        (ddepth == CV_32S && sdepth < CV_32S) ||
        (ddepth == CV_16S && sdepth <= CV_8S) ||
        (ddepth == CV_16U && sdepth == CV_8U))
    {
        sprintf(buf, "convert_%s", typestr);
    }
    else if( sdepth >= CV_32F )
        sprintf(buf, "convert_%s%s_rte", typestr, (ddepth < CV_32S ? "_sat" : ""));
    else
        sprintf(buf, "convert_%s_sat", typestr);
I
Ilya Lavrenov 已提交
4432

4433 4434 4435
    return buf;
}

I
Ilya Lavrenov 已提交
4436 4437 4438 4439
template <typename T>
static std::string kerToStr(const Mat & k)
{
    int width = k.cols - 1, depth = k.depth();
4440
    const T * const data = k.ptr<T>();
I
Ilya Lavrenov 已提交
4441 4442 4443 4444 4445 4446 4447

    std::ostringstream stream;
    stream.precision(10);

    if (depth <= CV_8S)
    {
        for (int i = 0; i < width; ++i)
I
Ilya Lavrenov 已提交
4448 4449
            stream << "DIG(" << (int)data[i] << ")";
        stream << "DIG(" << (int)data[width] << ")";
I
Ilya Lavrenov 已提交
4450 4451 4452 4453 4454
    }
    else if (depth == CV_32F)
    {
        stream.setf(std::ios_base::showpoint);
        for (int i = 0; i < width; ++i)
I
Ilya Lavrenov 已提交
4455 4456
            stream << "DIG(" << data[i] << "f)";
        stream << "DIG(" << data[width] << "f)";
I
Ilya Lavrenov 已提交
4457 4458 4459 4460
    }
    else
    {
        for (int i = 0; i < width; ++i)
I
Ilya Lavrenov 已提交
4461 4462
            stream << "DIG(" << data[i] << ")";
        stream << "DIG(" << data[width] << ")";
I
Ilya Lavrenov 已提交
4463 4464 4465 4466 4467
    }

    return stream.str();
}

I
Ilya Lavrenov 已提交
4468
String kernelToStr(InputArray _kernel, int ddepth, const char * name)
I
Ilya Lavrenov 已提交
4469 4470 4471 4472 4473 4474 4475 4476 4477 4478
{
    Mat kernel = _kernel.getMat().reshape(1, 1);

    int depth = kernel.depth();
    if (ddepth < 0)
        ddepth = depth;

    if (ddepth != depth)
        kernel.convertTo(kernel, ddepth);

4479 4480
    typedef std::string (* func_t)(const Mat &);
    static const func_t funcs[] = { kerToStr<uchar>, kerToStr<char>, kerToStr<ushort>, kerToStr<short>,
I
Ilya Lavrenov 已提交
4481
                                    kerToStr<int>, kerToStr<float>, kerToStr<double>, 0 };
A
Aaron Kunze 已提交
4482
    const func_t func = funcs[ddepth];
I
Ilya Lavrenov 已提交
4483 4484
    CV_Assert(func != 0);

I
Ilya Lavrenov 已提交
4485
    return cv::format(" -D %s=%s", name ? name : "COEFF", func(kernel).c_str());
I
Ilya Lavrenov 已提交
4486 4487
}

I
Ilya Lavrenov 已提交
4488 4489 4490 4491 4492 4493 4494
#define PROCESS_SRC(src) \
    do \
    { \
        if (!src.empty()) \
        { \
            CV_Assert(src.isMat() || src.isUMat()); \
            Size csize = src.size(); \
4495 4496 4497 4498 4499 4500
            int ctype = src.type(), ccn = CV_MAT_CN(ctype), cdepth = CV_MAT_DEPTH(ctype), \
                ckercn = vectorWidths[cdepth], cwidth = ccn * csize.width; \
            if (cwidth < ckercn || ckercn <= 0) \
                return 1; \
            cols.push_back(cwidth); \
            if (strat == OCL_VECTOR_OWN && ctype != ref_type) \
I
Ilya Lavrenov 已提交
4501 4502 4503
                return 1; \
            offsets.push_back(src.offset()); \
            steps.push_back(src.step()); \
4504
            dividers.push_back(ckercn * CV_ELEM_SIZE1(ctype)); \
4505
            kercns.push_back(ckercn); \
I
Ilya Lavrenov 已提交
4506 4507 4508 4509 4510 4511
        } \
    } \
    while ((void)0, 0)

int predictOptimalVectorWidth(InputArray src1, InputArray src2, InputArray src3,
                              InputArray src4, InputArray src5, InputArray src6,
4512 4513
                              InputArray src7, InputArray src8, InputArray src9,
                              OclVectorStrategy strat)
I
Ilya Lavrenov 已提交
4514 4515 4516 4517 4518 4519
{
    const ocl::Device & d = ocl::Device::getDefault();

    int vectorWidths[] = { d.preferredVectorWidthChar(), d.preferredVectorWidthChar(),
        d.preferredVectorWidthShort(), d.preferredVectorWidthShort(),
        d.preferredVectorWidthInt(), d.preferredVectorWidthFloat(),
4520
        d.preferredVectorWidthDouble(), -1 };
4521 4522 4523

    // if the device says don't use vectors
    if (vectorWidths[0] == 1)
I
Ilya Lavrenov 已提交
4524 4525
    {
        // it's heuristic
4526 4527
        vectorWidths[CV_8U] = vectorWidths[CV_8S] = 4;
        vectorWidths[CV_16U] = vectorWidths[CV_16S] = 2;
4528
        vectorWidths[CV_32S] = vectorWidths[CV_32F] = vectorWidths[CV_64F] = 1;
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    }
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4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541
    return checkOptimalVectorWidth(vectorWidths, src1, src2, src3, src4, src5, src6, src7, src8, src9, strat);
}

int checkOptimalVectorWidth(int *vectorWidths,
                            InputArray src1, InputArray src2, InputArray src3,
                            InputArray src4, InputArray src5, InputArray src6,
                            InputArray src7, InputArray src8, InputArray src9,
                            OclVectorStrategy strat)
{
    int ref_type = src1.type();

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4542
    std::vector<size_t> offsets, steps, cols;
4543
    std::vector<int> dividers, kercns;
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Ilya Lavrenov 已提交
4544 4545 4546 4547 4548 4549 4550 4551 4552 4553 4554 4555 4556
    PROCESS_SRC(src1);
    PROCESS_SRC(src2);
    PROCESS_SRC(src3);
    PROCESS_SRC(src4);
    PROCESS_SRC(src5);
    PROCESS_SRC(src6);
    PROCESS_SRC(src7);
    PROCESS_SRC(src8);
    PROCESS_SRC(src9);

    size_t size = offsets.size();

    for (size_t i = 0; i < size; ++i)
4557 4558
        while (offsets[i] % dividers[i] != 0 || steps[i] % dividers[i] != 0 || cols[i] % kercns[i] != 0)
            dividers[i] >>= 1, kercns[i] >>= 1;
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Ilya Lavrenov 已提交
4559 4560

    // default strategy
4561
    int kercn = *std::min_element(kercns.begin(), kercns.end());
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4562

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4563
    return kercn;
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}

4566 4567 4568 4569 4570 4571 4572
int predictOptimalVectorWidthMax(InputArray src1, InputArray src2, InputArray src3,
                                 InputArray src4, InputArray src5, InputArray src6,
                                 InputArray src7, InputArray src8, InputArray src9)
{
    return predictOptimalVectorWidth(src1, src2, src3, src4, src5, src6, src7, src8, src9, OCL_VECTOR_MAX);
}

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#undef PROCESS_SRC

4575 4576 4577 4578 4579 4580 4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592

// TODO Make this as a method of OpenCL "BuildOptions" class
void buildOptionsAddMatrixDescription(String& buildOptions, const String& name, InputArray _m)
{
    if (!buildOptions.empty())
        buildOptions += " ";
    int type = _m.type(), depth = CV_MAT_DEPTH(type);
    buildOptions += format(
            "-D %s_T=%s -D %s_T1=%s -D %s_CN=%d -D %s_TSIZE=%d -D %s_T1SIZE=%d -D %s_DEPTH=%d",
            name.c_str(), ocl::typeToStr(type),
            name.c_str(), ocl::typeToStr(CV_MAKE_TYPE(depth, 1)),
            name.c_str(), (int)CV_MAT_CN(type),
            name.c_str(), (int)CV_ELEM_SIZE(type),
            name.c_str(), (int)CV_ELEM_SIZE1(type),
            name.c_str(), (int)depth
            );
}

4593 4594 4595

struct Image2D::Impl
{
4596
    Impl(const UMat &src, bool norm, bool alias)
4597
    {
4598 4599
        handle = 0;
        refcount = 1;
4600
        init(src, norm, alias);
4601
    }
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4602

4603 4604 4605 4606 4607
    ~Impl()
    {
        if (handle)
            clReleaseMemObject(handle);
    }
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4608

4609
    static cl_image_format getImageFormat(int depth, int cn, bool norm)
4610 4611
    {
        cl_image_format format;
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4612 4613
        static const int channelTypes[] = { CL_UNSIGNED_INT8, CL_SIGNED_INT8, CL_UNSIGNED_INT16,
                                       CL_SIGNED_INT16, CL_SIGNED_INT32, CL_FLOAT, -1, -1 };
4614 4615
        static const int channelTypesNorm[] = { CL_UNORM_INT8, CL_SNORM_INT8, CL_UNORM_INT16,
                                                CL_SNORM_INT16, -1, -1, -1, -1 };
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Ilya Lavrenov 已提交
4616 4617
        static const int channelOrders[] = { -1, CL_R, CL_RG, -1, CL_RGBA };

4618 4619
        int channelType = norm ? channelTypesNorm[depth] : channelTypes[depth];
        int channelOrder = channelOrders[cn];
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Ilya Lavrenov 已提交
4620 4621
        format.image_channel_data_type = (cl_channel_type)channelType;
        format.image_channel_order = (cl_channel_order)channelOrder;
4622 4623 4624 4625 4626
        return format;
    }

    static bool isFormatSupported(cl_image_format format)
    {
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Alexander Karsakov 已提交
4627 4628 4629
        if (!haveOpenCL())
            CV_Error(Error::OpenCLApiCallError, "OpenCL runtime not found!");

4630 4631 4632 4633 4634 4635 4636 4637 4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659 4660
        cl_context context = (cl_context)Context::getDefault().ptr();
        // Figure out how many formats are supported by this context.
        cl_uint numFormats = 0;
        cl_int err = clGetSupportedImageFormats(context, CL_MEM_READ_WRITE,
                                                CL_MEM_OBJECT_IMAGE2D, numFormats,
                                                NULL, &numFormats);
        AutoBuffer<cl_image_format> formats(numFormats);
        err = clGetSupportedImageFormats(context, CL_MEM_READ_WRITE,
                                         CL_MEM_OBJECT_IMAGE2D, numFormats,
                                         formats, NULL);
        CV_OclDbgAssert(err == CL_SUCCESS);
        for (cl_uint i = 0; i < numFormats; ++i)
        {
            if (!memcmp(&formats[i], &format, sizeof(format)))
            {
                return true;
            }
        }
        return false;
    }

    void init(const UMat &src, bool norm, bool alias)
    {
        CV_Assert(ocl::Device::getDefault().imageSupport());

        int err, depth = src.depth(), cn = src.channels();
        CV_Assert(cn <= 4);
        cl_image_format format = getImageFormat(depth, cn, norm);

        if (!isFormatSupported(format))
            CV_Error(Error::OpenCLApiCallError, "Image format is not supported");
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4661

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4662
        cl_context context = (cl_context)Context::getDefault().ptr();
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4663
        cl_command_queue queue = (cl_command_queue)Queue::getDefault().ptr();
4664 4665

#ifdef CL_VERSION_1_2
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4666 4667 4668 4669
        // this enables backwards portability to
        // run on OpenCL 1.1 platform if library binaries are compiled with OpenCL 1.2 support
        const Device & d = ocl::Device::getDefault();
        int minor = d.deviceVersionMinor(), major = d.deviceVersionMajor();
4670
        CV_Assert(!alias || canCreateAlias(src));
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4671
        if (1 < major || (1 == major && 2 <= minor))
4672 4673 4674 4675 4676 4677 4678
        {
            cl_image_desc desc;
            desc.image_type       = CL_MEM_OBJECT_IMAGE2D;
            desc.image_width      = src.cols;
            desc.image_height     = src.rows;
            desc.image_depth      = 0;
            desc.image_array_size = 1;
4679
            desc.image_row_pitch  = alias ? src.step[0] : 0;
4680
            desc.image_slice_pitch = 0;
4681
            desc.buffer           = alias ? (cl_mem)src.handle(ACCESS_RW) : 0;
4682 4683
            desc.num_mip_levels   = 0;
            desc.num_samples      = 0;
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Ilya Lavrenov 已提交
4684
            handle = clCreateImage(context, CL_MEM_READ_WRITE, &format, &desc, NULL, &err);
4685 4686 4687 4688
        }
        else
#endif
        {
4689
            CV_SUPPRESS_DEPRECATED_START
4690
            CV_Assert(!alias);  // This is an OpenCL 1.2 extension
I
Ilya Lavrenov 已提交
4691
            handle = clCreateImage2D(context, CL_MEM_READ_WRITE, &format, src.cols, src.rows, 0, NULL, &err);
4692
            CV_SUPPRESS_DEPRECATED_END
4693
        }
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4694 4695
        CV_OclDbgAssert(err == CL_SUCCESS);

4696
        size_t origin[] = { 0, 0, 0 };
4697
        size_t region[] = { static_cast<size_t>(src.cols), static_cast<size_t>(src.rows), 1 };
4698 4699

        cl_mem devData;
4700
        if (!alias && !src.isContinuous())
4701
        {
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4702 4703 4704
            devData = clCreateBuffer(context, CL_MEM_READ_ONLY, src.cols * src.rows * src.elemSize(), NULL, &err);
            CV_OclDbgAssert(err == CL_SUCCESS);

4705
            const size_t roi[3] = {static_cast<size_t>(src.cols) * src.elemSize(), static_cast<size_t>(src.rows), 1};
I
Ilya Lavrenov 已提交
4706 4707 4708
            CV_Assert(clEnqueueCopyBufferRect(queue, (cl_mem)src.handle(ACCESS_READ), devData, origin, origin,
                roi, src.step, 0, src.cols * src.elemSize(), 0, 0, NULL, NULL) == CL_SUCCESS);
            CV_OclDbgAssert(clFlush(queue) == CL_SUCCESS);
4709 4710
        }
        else
4711
        {
4712
            devData = (cl_mem)src.handle(ACCESS_READ);
4713
        }
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Ilya Lavrenov 已提交
4714
        CV_Assert(devData != NULL);
4715

4716
        if (!alias)
4717
        {
4718 4719 4720 4721 4722 4723
            CV_OclDbgAssert(clEnqueueCopyBufferToImage(queue, devData, handle, 0, origin, region, 0, NULL, 0) == CL_SUCCESS);
            if (!src.isContinuous())
            {
                CV_OclDbgAssert(clFlush(queue) == CL_SUCCESS);
                CV_OclDbgAssert(clReleaseMemObject(devData) == CL_SUCCESS);
            }
4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735
        }
    }

    IMPLEMENT_REFCOUNTABLE();

    cl_mem handle;
};

Image2D::Image2D()
{
    p = NULL;
}
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Ilya Lavrenov 已提交
4736

4737
Image2D::Image2D(const UMat &src, bool norm, bool alias)
4738
{
4739 4740 4741 4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764 4765 4766 4767
    p = new Impl(src, norm, alias);
}

bool Image2D::canCreateAlias(const UMat &m)
{
    bool ret = false;
    const Device & d = ocl::Device::getDefault();
    if (d.imageFromBufferSupport())
    {
        // This is the required pitch alignment in pixels
        uint pitchAlign = d.imagePitchAlignment();
        if (pitchAlign && !(m.step % (pitchAlign * m.elemSize())))
        {
            // We don't currently handle the case where the buffer was created
            // with CL_MEM_USE_HOST_PTR
            if (!m.u->tempUMat())
            {
                ret = true;
            }
        }
    }
    return ret;
}

bool Image2D::isFormatSupported(int depth, int cn, bool norm)
{
    cl_image_format format = Impl::getImageFormat(depth, cn, norm);

    return Impl::isFormatSupported(format);
4768
}
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Ilya Lavrenov 已提交
4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785 4786 4787 4788 4789

Image2D::Image2D(const Image2D & i)
{
    p = i.p;
    if (p)
        p->addref();
}

Image2D & Image2D::operator = (const Image2D & i)
{
    if (i.p != p)
    {
        if (i.p)
            i.p->addref();
        if (p)
            p->release();
        p = i.p;
    }
    return *this;
}

4790 4791 4792 4793 4794 4795 4796 4797 4798 4799 4800
Image2D::~Image2D()
{
    if (p)
        p->release();
}

void* Image2D::ptr() const
{
    return p ? p->handle : 0;
}

4801 4802 4803 4804 4805 4806 4807 4808 4809 4810 4811 4812
bool isPerformanceCheckBypassed()
{
    static bool initialized = false;
    static bool value = false;
    if (!initialized)
    {
        value = getBoolParameter("OPENCV_OPENCL_PERF_CHECK_BYPASS", false);
        initialized = true;
    }
    return value;
}

4813
}}