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Author SHA1 Message Date
Alexander Alekhin a1fe8f754f OpenCV version++ (3.4.4)
OpenCV 3.4.4
2018-11-17 10:22:17 +00:00
Alexander Alekhin dd3398416b experimental version++ 2018-11-17 10:22:17 +00:00
Alexander Alekhin cf86af96ea Merge pull request #13194 from alalek:samples_fix_python_search_win32 2018-11-17 13:21:37 +03:00
Alexander Alekhin 780ae864a0 Merge pull request #13192 from alalek:fix_valgrind_3.4 2018-11-17 13:20:33 +03:00
berak 96c99c716a Merge pull request #13193 from berak:core_copyMakeBorder 2018-11-17 13:19:42 +03:00
Alexander Alekhin 73a17baeec samples(run_python): fix registry values querying 2018-11-17 09:42:51 +00:00
Alexander Alekhin c26dd5d7aa core: fix issues from valgrind builder 2018-11-17 07:32:06 +00:00
Alexander Alekhin 954969dd74 Merge pull request #13189 from alalek:cmake_options_warnings_update 2018-11-17 00:36:15 +03:00
Alexander Alekhin 43002c0c1d Merge pull request #13188 from alalek:samples_rename
* samples: rename starter_imagelist.cpp

* samples: rename intelperc_capture.cpp => videocapture_intelperc.cpp

* samples: rename openni_capture.cpp => videocapture_openni.cpp

* samples: rename image_sequence.cpp => videocapture_image_sequence.cpp

* samples: rename gstreamer_pipeline.cpp => videocapture_gstreamer_pipeline.cpp

* samples: rename autofocus.cpp => videocapture_gphoto2_autofocus.cpp

* samples: rename live_detect_qrcode.cpp => qrcode.cpp
2018-11-17 00:35:05 +03:00
Alexander Alekhin e580061b74 Merge pull request #12908 from alexevans:Issue11855 2018-11-16 20:42:54 +00:00
Alexander Alekhin 53af811530 cmake: emit warnings about unsupported options if turned ON only 2018-11-16 20:24:31 +00:00
Christopher Gundler b58a8729c2 Merge pull request #13131 from Christopher22:add_transposedConv_onnx
* Add support for ConvTranspose when parsing ONNX.

* Add support for ConvTranspose when parsing ONNX.

* Add test for Deconvolution
2018-11-16 22:50:40 +03:00
Alexander Alekhin ee417048e5 Merge pull request #13178 from alalek:fix_samples_python_video_params 2018-11-16 22:46:22 +03:00
Alexander Alekhin a4b21d9e2e Merge pull request #13177 from alalek:update_win32_scripts 2018-11-16 22:45:57 +03:00
Alexander Alekhin b321851e53 Merge pull request #12977 from alalek:python_package 2018-11-16 22:45:33 +03:00
Alexander Alekhin 1d5a528107 Merge pull request #12354 from alalek:samples_find_file 2018-11-16 22:40:49 +03:00
Alexander Alekhin a68835f7f1 features2d(test): add crossCheck=true test 2018-11-16 19:30:00 +00:00
Alexander Alekhin f2bec05e6d Merge pull request #12913 from dkurt:dnn_fix_ie_hyperparams 2018-11-16 18:36:12 +00:00
Alexander Alekhin c371df4aa2 samples: use findFile() in "python" 2018-11-16 18:08:22 +00:00
Alexander Alekhin 9ea8c775f8 samples: use findFile() in T-API samples 2018-11-16 18:08:22 +00:00
Alexander Alekhin e8e2197032 samples: use findFile() in dnn 2018-11-16 18:08:22 +00:00
Alexander Alekhin c4c31f5bba samples: use findFile() in "cpp" 2018-11-16 18:08:22 +00:00
Alexander Alekhin ce6acd3ecd python: bindings loader package
Configures and loads OpenCV bindings extension including 3rdparty dependencies

Based on running Python specify:
- configure PYTHON_PATH (via "sys.path")
- configure LD_LIBRARY_PATH / PATH
2018-11-16 00:51:16 +00:00
Alexander Alekhin 1c04a5ec47 Merge pull request #12965 from terfendail:medianBlur_wintr 2018-11-16 00:47:11 +00:00
Alexander Alekhin 2fa9bd221d core: add utils::findDataFile() / samples::findFile() 2018-11-16 00:25:06 +00:00
Alexander Alekhin 9ca82caeb7 samples(python): fix drive handling in source path 2018-11-16 00:24:34 +00:00
Alexander Alekhin 5cf84c3765 samples: update Python launcher (winpack) 2018-11-15 23:36:26 +00:00
Alexander Alekhin 3d68b5baa1 samples: update build script (winpack)
- drop EnableDelayedExpansion
2018-11-15 23:36:26 +00:00
Alexander Alekhin 8792bddb0a win32: update setupvars.cmd
- drop EnableDelayedExpansion
- pause on failed commands (non-interactive mode)
2018-11-15 23:36:26 +00:00
Alexander Alekhin e5afa62c3d Merge pull request #13168 from alalek:cmake_dnn_warnings 2018-11-15 23:10:46 +00:00
Alexander Alekhin 33e824f5de Merge pull request #13175 from paddy74:patch-1 2018-11-16 02:10:18 +03:00
Patrick Cox 6820abd67f samples(python): Updated use of model.load instances
The load() function returns a new object, and as such does not use the one it is called on.
This commit updates the uses of model.load in this program so it will work as intended and not throw an error.
2018-11-15 22:14:40 +00:00
Dmitry Kurtaev b5c54e447c Extra hyperparameters for Intel's Inference Engine layers 2018-11-15 20:06:37 +03:00
Alexander Alekhin 96c71dd3d2 dnn: reduce set of ignored warnings 2018-11-15 13:15:59 +03:00
Alexander Alekhin 02d2cc58d7 Merge pull request #13164 from alalek:ocl_morph 2018-11-14 19:32:32 +00:00
Alexander Alekhin 452f0bb2ab Merge pull request #13166 from catree:fix_batch_norm_layer_missing_intrin 2018-11-14 19:02:17 +00:00
catree 10b482ff1e Fix code and missing intrin header. Remove useless header. 2018-11-14 19:00:59 +01:00
Alexander Alekhin 42742727d6 imgproc(ocl): fix morph generic filter checks
'ksize' is not updated with 'kernel'
2018-11-14 20:15:01 +03:00
Alexander Alekhin 47cb94e634 Merge pull request #13160 from dkurt:fix_13159 2018-11-14 14:18:21 +00:00
Dmitry Kurtaev 80265a0815 Fix a bug with OpenVINO backend 2018-11-14 13:42:06 +03:00
Alexander Alekhin 70ac734263 Merge pull request #13152 from ssnover95:docfix/fourier-transform-py-tutorial 2018-11-13 22:05:25 +03:00
ssnover95 b24a815ac1 doc(tutorial_py_fourier_transform): Correct errors in tutorial for integer division and filter symmetry 2018-11-13 12:45:23 -05:00
Vitaly Tuzov 2dd98e7cc6 bilateralFilter implementation moved to separate file 2018-11-09 18:26:26 +03:00
Vitaly Tuzov 28fd967148 Updated bilateralFilter implementations to use wide universal intrinsics 2018-11-09 15:27:30 +03:00
root 1196eb33fc remove non-ideal pairs when using crosscheck in batchdistance 2018-10-26 20:25:24 +00:00
1702 changed files with 192552 additions and 82248 deletions
+1 -9
View File
@@ -2,14 +2,6 @@
If you have a question rather than reporting a bug please go to http://answers.opencv.org where you get much faster responses.
If you need further assistance please read [How To Contribute](https://github.com/opencv/opencv/wiki/How_to_contribute).
Please:
* Read the documentation to test with the latest developer build.
* Check if other person has already created the same issue to avoid duplicates. You can comment on it if there already is an issue.
* Try to be as detailed as possible in your report.
* Report only one problem per created issue.
This is a template helping you to create an issue which can be processed as quickly as possible. This is the bug reporting section for the OpenCV library.
-->
@@ -35,4 +27,4 @@ This is a template helping you to create an issue which can be processed as quic
// C++ code example
```
or attach as .txt or .zip file
-->
-->
+36 -22
View File
@@ -151,10 +151,6 @@ void div(const Size2D &size,
typedef typename internal::VecTraits<T>::vec128 vec128;
typedef typename internal::VecTraits<T>::vec64 vec64;
#if defined(__GNUC__) && (defined(__GXX_EXPERIMENTAL_CXX0X__) || __cplusplus >= 201103L)
static_assert(std::numeric_limits<T>::is_integer, "template implementation is for integer types only");
#endif
if (scale == 0.0f ||
(std::numeric_limits<T>::is_integer &&
(scale * std::numeric_limits<T>::max()) < 1.0f &&
@@ -315,10 +311,6 @@ void recip(const Size2D &size,
typedef typename internal::VecTraits<T>::vec128 vec128;
typedef typename internal::VecTraits<T>::vec64 vec64;
#if defined(__GNUC__) && (defined(__GXX_EXPERIMENTAL_CXX0X__) || __cplusplus >= 201103L)
static_assert(std::numeric_limits<T>::is_integer, "template implementation is for integer types only");
#endif
if (scale == 0.0f ||
(std::numeric_limits<T>::is_integer &&
scale < 1.0f &&
@@ -471,6 +463,8 @@ void div(const Size2D &size,
return;
}
float32x4_t v_zero = vdupq_n_f32(0.0f);
size_t roiw128 = size.width >= 3 ? size.width - 3 : 0;
size_t roiw64 = size.width >= 1 ? size.width - 1 : 0;
@@ -491,7 +485,9 @@ void div(const Size2D &size,
float32x4_t v_src0 = vld1q_f32(src0 + j);
float32x4_t v_src1 = vld1q_f32(src1 + j);
vst1q_f32(dst + j, vmulq_f32(v_src0, internal::vrecpq_f32(v_src1)));
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
vreinterpretq_u32_f32(vmulq_f32(v_src0, internal::vrecpq_f32(v_src1))), v_mask)));
}
for (; j < roiw64; j += 2)
@@ -499,12 +495,14 @@ void div(const Size2D &size,
float32x2_t v_src0 = vld1_f32(src0 + j);
float32x2_t v_src1 = vld1_f32(src1 + j);
vst1_f32(dst + j, vmul_f32(v_src0, internal::vrecp_f32(v_src1)));
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
vreinterpret_u32_f32(vmul_f32(v_src0, internal::vrecp_f32(v_src1))), v_mask)));
}
for (; j < size.width; j++)
{
dst[j] = src0[j] / src1[j];
dst[j] = src1[j] ? src0[j] / src1[j] : 0.0f;
}
}
}
@@ -525,8 +523,10 @@ void div(const Size2D &size,
float32x4_t v_src0 = vld1q_f32(src0 + j);
float32x4_t v_src1 = vld1q_f32(src1 + j);
vst1q_f32(dst + j, vmulq_f32(vmulq_n_f32(v_src0, scale),
internal::vrecpq_f32(v_src1)));
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
vreinterpretq_u32_f32(vmulq_f32(vmulq_n_f32(v_src0, scale),
internal::vrecpq_f32(v_src1))), v_mask)));
}
for (; j < roiw64; j += 2)
@@ -534,13 +534,15 @@ void div(const Size2D &size,
float32x2_t v_src0 = vld1_f32(src0 + j);
float32x2_t v_src1 = vld1_f32(src1 + j);
vst1_f32(dst + j, vmul_f32(vmul_n_f32(v_src0, scale),
internal::vrecp_f32(v_src1)));
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
vreinterpret_u32_f32(vmul_f32(vmul_n_f32(v_src0, scale),
internal::vrecp_f32(v_src1))), v_mask)));
}
for (; j < size.width; j++)
{
dst[j] = src0[j] * scale / src1[j];
dst[j] = src1[j] ? src0[j] * scale / src1[j] : 0.0f;
}
}
}
@@ -618,6 +620,8 @@ void reciprocal(const Size2D &size,
return;
}
float32x4_t v_zero = vdupq_n_f32(0.0f);
size_t roiw128 = size.width >= 3 ? size.width - 3 : 0;
size_t roiw64 = size.width >= 1 ? size.width - 1 : 0;
@@ -635,19 +639,23 @@ void reciprocal(const Size2D &size,
float32x4_t v_src1 = vld1q_f32(src1 + j);
vst1q_f32(dst + j, internal::vrecpq_f32(v_src1));
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
vreinterpretq_u32_f32(internal::vrecpq_f32(v_src1)), v_mask)));
}
for (; j < roiw64; j += 2)
{
float32x2_t v_src1 = vld1_f32(src1 + j);
vst1_f32(dst + j, internal::vrecp_f32(v_src1));
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
vreinterpret_u32_f32(internal::vrecp_f32(v_src1)), v_mask)));
}
for (; j < size.width; j++)
{
dst[j] = 1.0f / src1[j];
dst[j] = src1[j] ? 1.0f / src1[j] : 0;
}
}
}
@@ -665,19 +673,25 @@ void reciprocal(const Size2D &size,
float32x4_t v_src1 = vld1q_f32(src1 + j);
vst1q_f32(dst + j, vmulq_n_f32(internal::vrecpq_f32(v_src1), scale));
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
vreinterpretq_u32_f32(vmulq_n_f32(internal::vrecpq_f32(v_src1),
scale)),v_mask)));
}
for (; j < roiw64; j += 2)
{
float32x2_t v_src1 = vld1_f32(src1 + j);
vst1_f32(dst + j, vmul_n_f32(internal::vrecp_f32(v_src1), scale));
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
vreinterpret_u32_f32(vmul_n_f32(internal::vrecp_f32(v_src1),
scale)), v_mask)));
}
for (; j < size.width; j++)
{
dst[j] = scale / src1[j];
dst[j] = src1[j] ? scale / src1[j] : 0;
}
}
}
+6 -6
View File
@@ -1,9 +1,9 @@
# Binaries branch name: ffmpeg/master_20181106
# Binaries were created for OpenCV: 2c6f1ab57d4250ee46e32d1b51c056431965b470
ocv_update(FFMPEG_BINARIES_COMMIT "759a23e24ab787a0979f8a93103dcc3105ec10c1")
ocv_update(FFMPEG_FILE_HASH_BIN32 "849286ccc527c99e5a218b67f13c6e8c")
ocv_update(FFMPEG_FILE_HASH_BIN64 "96444a4645753aaafa296479665c9185")
ocv_update(FFMPEG_FILE_HASH_CMAKE "f710891525a04586d565d0e700e62a9c")
# Binaries branch name: ffmpeg/3.4_20181103
# Binaries were created for OpenCV: c6d2f0399a706028f476f3d08358ea787503020d
ocv_update(FFMPEG_BINARIES_COMMIT "fe71c0ad807fdc33c2178e48e488f1e9b177c39a")
ocv_update(FFMPEG_FILE_HASH_BIN32 "41b81bb9a50cabd4bea385f7b50a069a")
ocv_update(FFMPEG_FILE_HASH_BIN64 "a9ea7dbbc8e5afd08e00e223a831b578")
ocv_update(FFMPEG_FILE_HASH_CMAKE "3b90f67f4b429e77d3da36698cef700c")
function(download_win_ffmpeg script_var)
set(${script_var} "" PARENT_SCOPE)
-92
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@@ -1,92 +0,0 @@
//
// File: vk_platform.h
//
/*
** Copyright (c) 2014-2017 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
#ifndef VK_PLATFORM_H_
#define VK_PLATFORM_H_
#ifdef __cplusplus
extern "C"
{
#endif // __cplusplus
/*
***************************************************************************************************
* Platform-specific directives and type declarations
***************************************************************************************************
*/
/* Platform-specific calling convention macros.
*
* Platforms should define these so that Vulkan clients call Vulkan commands
* with the same calling conventions that the Vulkan implementation expects.
*
* VKAPI_ATTR - Placed before the return type in function declarations.
* Useful for C++11 and GCC/Clang-style function attribute syntax.
* VKAPI_CALL - Placed after the return type in function declarations.
* Useful for MSVC-style calling convention syntax.
* VKAPI_PTR - Placed between the '(' and '*' in function pointer types.
*
* Function declaration: VKAPI_ATTR void VKAPI_CALL vkCommand(void);
* Function pointer type: typedef void (VKAPI_PTR *PFN_vkCommand)(void);
*/
#if defined(_WIN32)
// On Windows, Vulkan commands use the stdcall convention
#define VKAPI_ATTR
#define VKAPI_CALL __stdcall
#define VKAPI_PTR VKAPI_CALL
#elif defined(__ANDROID__) && defined(__ARM_ARCH) && __ARM_ARCH < 7
#error "Vulkan isn't supported for the 'armeabi' NDK ABI"
#elif defined(__ANDROID__) && defined(__ARM_ARCH) && __ARM_ARCH >= 7 && defined(__ARM_32BIT_STATE)
// On Android 32-bit ARM targets, Vulkan functions use the "hardfloat"
// calling convention, i.e. float parameters are passed in registers. This
// is true even if the rest of the application passes floats on the stack,
// as it does by default when compiling for the armeabi-v7a NDK ABI.
#define VKAPI_ATTR __attribute__((pcs("aapcs-vfp")))
#define VKAPI_CALL
#define VKAPI_PTR VKAPI_ATTR
#else
// On other platforms, use the default calling convention
#define VKAPI_ATTR
#define VKAPI_CALL
#define VKAPI_PTR
#endif
#include <stddef.h>
#if !defined(VK_NO_STDINT_H)
#if defined(_MSC_VER) && (_MSC_VER < 1600)
typedef signed __int8 int8_t;
typedef unsigned __int8 uint8_t;
typedef signed __int16 int16_t;
typedef unsigned __int16 uint16_t;
typedef signed __int32 int32_t;
typedef unsigned __int32 uint32_t;
typedef signed __int64 int64_t;
typedef unsigned __int64 uint64_t;
#else
#include <stdint.h>
#endif
#endif // !defined(VK_NO_STDINT_H)
#ifdef __cplusplus
} // extern "C"
#endif // __cplusplus
#endif
-83
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@@ -1,83 +0,0 @@
#ifndef VULKAN_H_
#define VULKAN_H_ 1
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
#include "vk_platform.h"
#include "vulkan_core.h"
#ifdef VK_USE_PLATFORM_ANDROID_KHR
#include "vulkan_android.h"
#endif
#ifdef VK_USE_PLATFORM_FUCHSIA
#include <zircon/types.h>
#include "vulkan_fuchsia.h"
#endif
#ifdef VK_USE_PLATFORM_IOS_MVK
#include "vulkan_ios.h"
#endif
#ifdef VK_USE_PLATFORM_MACOS_MVK
#include "vulkan_macos.h"
#endif
#ifdef VK_USE_PLATFORM_MIR_KHR
#include <mir_toolkit/client_types.h>
#include "vulkan_mir.h"
#endif
#ifdef VK_USE_PLATFORM_VI_NN
#include "vulkan_vi.h"
#endif
#ifdef VK_USE_PLATFORM_WAYLAND_KHR
#include <wayland-client.h>
#include "vulkan_wayland.h"
#endif
#ifdef VK_USE_PLATFORM_WIN32_KHR
#include <windows.h>
#include "vulkan_win32.h"
#endif
#ifdef VK_USE_PLATFORM_XCB_KHR
#include <xcb/xcb.h>
#include "vulkan_xcb.h"
#endif
#ifdef VK_USE_PLATFORM_XLIB_KHR
#include <X11/Xlib.h>
#include "vulkan_xlib.h"
#endif
#ifdef VK_USE_PLATFORM_XLIB_XRANDR_EXT
#include <X11/Xlib.h>
#include <X11/extensions/Xrandr.h>
#include "vulkan_xlib_xrandr.h"
#endif
#endif // VULKAN_H_
-126
View File
@@ -1,126 +0,0 @@
#ifndef VULKAN_ANDROID_H_
#define VULKAN_ANDROID_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_android_surface 1
struct ANativeWindow;
#define VK_KHR_ANDROID_SURFACE_SPEC_VERSION 6
#define VK_KHR_ANDROID_SURFACE_EXTENSION_NAME "VK_KHR_android_surface"
typedef VkFlags VkAndroidSurfaceCreateFlagsKHR;
typedef struct VkAndroidSurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkAndroidSurfaceCreateFlagsKHR flags;
struct ANativeWindow* window;
} VkAndroidSurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateAndroidSurfaceKHR)(VkInstance instance, const VkAndroidSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateAndroidSurfaceKHR(
VkInstance instance,
const VkAndroidSurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
#endif
#define VK_ANDROID_external_memory_android_hardware_buffer 1
struct AHardwareBuffer;
#define VK_ANDROID_EXTERNAL_MEMORY_ANDROID_HARDWARE_BUFFER_SPEC_VERSION 3
#define VK_ANDROID_EXTERNAL_MEMORY_ANDROID_HARDWARE_BUFFER_EXTENSION_NAME "VK_ANDROID_external_memory_android_hardware_buffer"
typedef struct VkAndroidHardwareBufferUsageANDROID {
VkStructureType sType;
void* pNext;
uint64_t androidHardwareBufferUsage;
} VkAndroidHardwareBufferUsageANDROID;
typedef struct VkAndroidHardwareBufferPropertiesANDROID {
VkStructureType sType;
void* pNext;
VkDeviceSize allocationSize;
uint32_t memoryTypeBits;
} VkAndroidHardwareBufferPropertiesANDROID;
typedef struct VkAndroidHardwareBufferFormatPropertiesANDROID {
VkStructureType sType;
void* pNext;
VkFormat format;
uint64_t externalFormat;
VkFormatFeatureFlags formatFeatures;
VkComponentMapping samplerYcbcrConversionComponents;
VkSamplerYcbcrModelConversion suggestedYcbcrModel;
VkSamplerYcbcrRange suggestedYcbcrRange;
VkChromaLocation suggestedXChromaOffset;
VkChromaLocation suggestedYChromaOffset;
} VkAndroidHardwareBufferFormatPropertiesANDROID;
typedef struct VkImportAndroidHardwareBufferInfoANDROID {
VkStructureType sType;
const void* pNext;
struct AHardwareBuffer* buffer;
} VkImportAndroidHardwareBufferInfoANDROID;
typedef struct VkMemoryGetAndroidHardwareBufferInfoANDROID {
VkStructureType sType;
const void* pNext;
VkDeviceMemory memory;
} VkMemoryGetAndroidHardwareBufferInfoANDROID;
typedef struct VkExternalFormatANDROID {
VkStructureType sType;
void* pNext;
uint64_t externalFormat;
} VkExternalFormatANDROID;
typedef VkResult (VKAPI_PTR *PFN_vkGetAndroidHardwareBufferPropertiesANDROID)(VkDevice device, const struct AHardwareBuffer* buffer, VkAndroidHardwareBufferPropertiesANDROID* pProperties);
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryAndroidHardwareBufferANDROID)(VkDevice device, const VkMemoryGetAndroidHardwareBufferInfoANDROID* pInfo, struct AHardwareBuffer** pBuffer);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkGetAndroidHardwareBufferPropertiesANDROID(
VkDevice device,
const struct AHardwareBuffer* buffer,
VkAndroidHardwareBufferPropertiesANDROID* pProperties);
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryAndroidHardwareBufferANDROID(
VkDevice device,
const VkMemoryGetAndroidHardwareBufferInfoANDROID* pInfo,
struct AHardwareBuffer** pBuffer);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_FUCHSIA_H_
#define VULKAN_FUCHSIA_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_FUCHSIA_imagepipe_surface 1
#define VK_FUCHSIA_IMAGEPIPE_SURFACE_SPEC_VERSION 1
#define VK_FUCHSIA_IMAGEPIPE_SURFACE_EXTENSION_NAME "VK_FUCHSIA_imagepipe_surface"
typedef VkFlags VkImagePipeSurfaceCreateFlagsFUCHSIA;
typedef struct VkImagePipeSurfaceCreateInfoFUCHSIA {
VkStructureType sType;
const void* pNext;
VkImagePipeSurfaceCreateFlagsFUCHSIA flags;
zx_handle_t imagePipeHandle;
} VkImagePipeSurfaceCreateInfoFUCHSIA;
typedef VkResult (VKAPI_PTR *PFN_vkCreateImagePipeSurfaceFUCHSIA)(VkInstance instance, const VkImagePipeSurfaceCreateInfoFUCHSIA* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateImagePipeSurfaceFUCHSIA(
VkInstance instance,
const VkImagePipeSurfaceCreateInfoFUCHSIA* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_IOS_H_
#define VULKAN_IOS_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_MVK_ios_surface 1
#define VK_MVK_IOS_SURFACE_SPEC_VERSION 2
#define VK_MVK_IOS_SURFACE_EXTENSION_NAME "VK_MVK_ios_surface"
typedef VkFlags VkIOSSurfaceCreateFlagsMVK;
typedef struct VkIOSSurfaceCreateInfoMVK {
VkStructureType sType;
const void* pNext;
VkIOSSurfaceCreateFlagsMVK flags;
const void* pView;
} VkIOSSurfaceCreateInfoMVK;
typedef VkResult (VKAPI_PTR *PFN_vkCreateIOSSurfaceMVK)(VkInstance instance, const VkIOSSurfaceCreateInfoMVK* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateIOSSurfaceMVK(
VkInstance instance,
const VkIOSSurfaceCreateInfoMVK* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_MACOS_H_
#define VULKAN_MACOS_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_MVK_macos_surface 1
#define VK_MVK_MACOS_SURFACE_SPEC_VERSION 2
#define VK_MVK_MACOS_SURFACE_EXTENSION_NAME "VK_MVK_macos_surface"
typedef VkFlags VkMacOSSurfaceCreateFlagsMVK;
typedef struct VkMacOSSurfaceCreateInfoMVK {
VkStructureType sType;
const void* pNext;
VkMacOSSurfaceCreateFlagsMVK flags;
const void* pView;
} VkMacOSSurfaceCreateInfoMVK;
typedef VkResult (VKAPI_PTR *PFN_vkCreateMacOSSurfaceMVK)(VkInstance instance, const VkMacOSSurfaceCreateInfoMVK* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateMacOSSurfaceMVK(
VkInstance instance,
const VkMacOSSurfaceCreateInfoMVK* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_MIR_H_
#define VULKAN_MIR_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_mir_surface 1
#define VK_KHR_MIR_SURFACE_SPEC_VERSION 4
#define VK_KHR_MIR_SURFACE_EXTENSION_NAME "VK_KHR_mir_surface"
typedef VkFlags VkMirSurfaceCreateFlagsKHR;
typedef struct VkMirSurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkMirSurfaceCreateFlagsKHR flags;
MirConnection* connection;
MirSurface* mirSurface;
} VkMirSurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateMirSurfaceKHR)(VkInstance instance, const VkMirSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceMirPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, MirConnection* connection);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateMirSurfaceKHR(
VkInstance instance,
const VkMirSurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceMirPresentationSupportKHR(
VkPhysicalDevice physicalDevice,
uint32_t queueFamilyIndex,
MirConnection* connection);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_VI_H_
#define VULKAN_VI_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_NN_vi_surface 1
#define VK_NN_VI_SURFACE_SPEC_VERSION 1
#define VK_NN_VI_SURFACE_EXTENSION_NAME "VK_NN_vi_surface"
typedef VkFlags VkViSurfaceCreateFlagsNN;
typedef struct VkViSurfaceCreateInfoNN {
VkStructureType sType;
const void* pNext;
VkViSurfaceCreateFlagsNN flags;
void* window;
} VkViSurfaceCreateInfoNN;
typedef VkResult (VKAPI_PTR *PFN_vkCreateViSurfaceNN)(VkInstance instance, const VkViSurfaceCreateInfoNN* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateViSurfaceNN(
VkInstance instance,
const VkViSurfaceCreateInfoNN* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_WAYLAND_H_
#define VULKAN_WAYLAND_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_wayland_surface 1
#define VK_KHR_WAYLAND_SURFACE_SPEC_VERSION 6
#define VK_KHR_WAYLAND_SURFACE_EXTENSION_NAME "VK_KHR_wayland_surface"
typedef VkFlags VkWaylandSurfaceCreateFlagsKHR;
typedef struct VkWaylandSurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkWaylandSurfaceCreateFlagsKHR flags;
struct wl_display* display;
struct wl_surface* surface;
} VkWaylandSurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateWaylandSurfaceKHR)(VkInstance instance, const VkWaylandSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceWaylandPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, struct wl_display* display);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateWaylandSurfaceKHR(
VkInstance instance,
const VkWaylandSurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceWaylandPresentationSupportKHR(
VkPhysicalDevice physicalDevice,
uint32_t queueFamilyIndex,
struct wl_display* display);
#endif
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_WIN32_H_
#define VULKAN_WIN32_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_win32_surface 1
#define VK_KHR_WIN32_SURFACE_SPEC_VERSION 6
#define VK_KHR_WIN32_SURFACE_EXTENSION_NAME "VK_KHR_win32_surface"
typedef VkFlags VkWin32SurfaceCreateFlagsKHR;
typedef struct VkWin32SurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkWin32SurfaceCreateFlagsKHR flags;
HINSTANCE hinstance;
HWND hwnd;
} VkWin32SurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateWin32SurfaceKHR)(VkInstance instance, const VkWin32SurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceWin32PresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateWin32SurfaceKHR(
VkInstance instance,
const VkWin32SurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceWin32PresentationSupportKHR(
VkPhysicalDevice physicalDevice,
uint32_t queueFamilyIndex);
#endif
#define VK_KHR_external_memory_win32 1
#define VK_KHR_EXTERNAL_MEMORY_WIN32_SPEC_VERSION 1
#define VK_KHR_EXTERNAL_MEMORY_WIN32_EXTENSION_NAME "VK_KHR_external_memory_win32"
typedef struct VkImportMemoryWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkExternalMemoryHandleTypeFlagBits handleType;
HANDLE handle;
LPCWSTR name;
} VkImportMemoryWin32HandleInfoKHR;
typedef struct VkExportMemoryWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
const SECURITY_ATTRIBUTES* pAttributes;
DWORD dwAccess;
LPCWSTR name;
} VkExportMemoryWin32HandleInfoKHR;
typedef struct VkMemoryWin32HandlePropertiesKHR {
VkStructureType sType;
void* pNext;
uint32_t memoryTypeBits;
} VkMemoryWin32HandlePropertiesKHR;
typedef struct VkMemoryGetWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkDeviceMemory memory;
VkExternalMemoryHandleTypeFlagBits handleType;
} VkMemoryGetWin32HandleInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandleKHR)(VkDevice device, const VkMemoryGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandlePropertiesKHR)(VkDevice device, VkExternalMemoryHandleTypeFlagBits handleType, HANDLE handle, VkMemoryWin32HandlePropertiesKHR* pMemoryWin32HandleProperties);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandleKHR(
VkDevice device,
const VkMemoryGetWin32HandleInfoKHR* pGetWin32HandleInfo,
HANDLE* pHandle);
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandlePropertiesKHR(
VkDevice device,
VkExternalMemoryHandleTypeFlagBits handleType,
HANDLE handle,
VkMemoryWin32HandlePropertiesKHR* pMemoryWin32HandleProperties);
#endif
#define VK_KHR_win32_keyed_mutex 1
#define VK_KHR_WIN32_KEYED_MUTEX_SPEC_VERSION 1
#define VK_KHR_WIN32_KEYED_MUTEX_EXTENSION_NAME "VK_KHR_win32_keyed_mutex"
typedef struct VkWin32KeyedMutexAcquireReleaseInfoKHR {
VkStructureType sType;
const void* pNext;
uint32_t acquireCount;
const VkDeviceMemory* pAcquireSyncs;
const uint64_t* pAcquireKeys;
const uint32_t* pAcquireTimeouts;
uint32_t releaseCount;
const VkDeviceMemory* pReleaseSyncs;
const uint64_t* pReleaseKeys;
} VkWin32KeyedMutexAcquireReleaseInfoKHR;
#define VK_KHR_external_semaphore_win32 1
#define VK_KHR_EXTERNAL_SEMAPHORE_WIN32_SPEC_VERSION 1
#define VK_KHR_EXTERNAL_SEMAPHORE_WIN32_EXTENSION_NAME "VK_KHR_external_semaphore_win32"
typedef struct VkImportSemaphoreWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkSemaphore semaphore;
VkSemaphoreImportFlags flags;
VkExternalSemaphoreHandleTypeFlagBits handleType;
HANDLE handle;
LPCWSTR name;
} VkImportSemaphoreWin32HandleInfoKHR;
typedef struct VkExportSemaphoreWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
const SECURITY_ATTRIBUTES* pAttributes;
DWORD dwAccess;
LPCWSTR name;
} VkExportSemaphoreWin32HandleInfoKHR;
typedef struct VkD3D12FenceSubmitInfoKHR {
VkStructureType sType;
const void* pNext;
uint32_t waitSemaphoreValuesCount;
const uint64_t* pWaitSemaphoreValues;
uint32_t signalSemaphoreValuesCount;
const uint64_t* pSignalSemaphoreValues;
} VkD3D12FenceSubmitInfoKHR;
typedef struct VkSemaphoreGetWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkSemaphore semaphore;
VkExternalSemaphoreHandleTypeFlagBits handleType;
} VkSemaphoreGetWin32HandleInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkImportSemaphoreWin32HandleKHR)(VkDevice device, const VkImportSemaphoreWin32HandleInfoKHR* pImportSemaphoreWin32HandleInfo);
typedef VkResult (VKAPI_PTR *PFN_vkGetSemaphoreWin32HandleKHR)(VkDevice device, const VkSemaphoreGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkImportSemaphoreWin32HandleKHR(
VkDevice device,
const VkImportSemaphoreWin32HandleInfoKHR* pImportSemaphoreWin32HandleInfo);
VKAPI_ATTR VkResult VKAPI_CALL vkGetSemaphoreWin32HandleKHR(
VkDevice device,
const VkSemaphoreGetWin32HandleInfoKHR* pGetWin32HandleInfo,
HANDLE* pHandle);
#endif
#define VK_KHR_external_fence_win32 1
#define VK_KHR_EXTERNAL_FENCE_WIN32_SPEC_VERSION 1
#define VK_KHR_EXTERNAL_FENCE_WIN32_EXTENSION_NAME "VK_KHR_external_fence_win32"
typedef struct VkImportFenceWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkFence fence;
VkFenceImportFlags flags;
VkExternalFenceHandleTypeFlagBits handleType;
HANDLE handle;
LPCWSTR name;
} VkImportFenceWin32HandleInfoKHR;
typedef struct VkExportFenceWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
const SECURITY_ATTRIBUTES* pAttributes;
DWORD dwAccess;
LPCWSTR name;
} VkExportFenceWin32HandleInfoKHR;
typedef struct VkFenceGetWin32HandleInfoKHR {
VkStructureType sType;
const void* pNext;
VkFence fence;
VkExternalFenceHandleTypeFlagBits handleType;
} VkFenceGetWin32HandleInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkImportFenceWin32HandleKHR)(VkDevice device, const VkImportFenceWin32HandleInfoKHR* pImportFenceWin32HandleInfo);
typedef VkResult (VKAPI_PTR *PFN_vkGetFenceWin32HandleKHR)(VkDevice device, const VkFenceGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkImportFenceWin32HandleKHR(
VkDevice device,
const VkImportFenceWin32HandleInfoKHR* pImportFenceWin32HandleInfo);
VKAPI_ATTR VkResult VKAPI_CALL vkGetFenceWin32HandleKHR(
VkDevice device,
const VkFenceGetWin32HandleInfoKHR* pGetWin32HandleInfo,
HANDLE* pHandle);
#endif
#define VK_NV_external_memory_win32 1
#define VK_NV_EXTERNAL_MEMORY_WIN32_SPEC_VERSION 1
#define VK_NV_EXTERNAL_MEMORY_WIN32_EXTENSION_NAME "VK_NV_external_memory_win32"
typedef struct VkImportMemoryWin32HandleInfoNV {
VkStructureType sType;
const void* pNext;
VkExternalMemoryHandleTypeFlagsNV handleType;
HANDLE handle;
} VkImportMemoryWin32HandleInfoNV;
typedef struct VkExportMemoryWin32HandleInfoNV {
VkStructureType sType;
const void* pNext;
const SECURITY_ATTRIBUTES* pAttributes;
DWORD dwAccess;
} VkExportMemoryWin32HandleInfoNV;
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandleNV)(VkDevice device, VkDeviceMemory memory, VkExternalMemoryHandleTypeFlagsNV handleType, HANDLE* pHandle);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandleNV(
VkDevice device,
VkDeviceMemory memory,
VkExternalMemoryHandleTypeFlagsNV handleType,
HANDLE* pHandle);
#endif
#define VK_NV_win32_keyed_mutex 1
#define VK_NV_WIN32_KEYED_MUTEX_SPEC_VERSION 1
#define VK_NV_WIN32_KEYED_MUTEX_EXTENSION_NAME "VK_NV_win32_keyed_mutex"
typedef struct VkWin32KeyedMutexAcquireReleaseInfoNV {
VkStructureType sType;
const void* pNext;
uint32_t acquireCount;
const VkDeviceMemory* pAcquireSyncs;
const uint64_t* pAcquireKeys;
const uint32_t* pAcquireTimeoutMilliseconds;
uint32_t releaseCount;
const VkDeviceMemory* pReleaseSyncs;
const uint64_t* pReleaseKeys;
} VkWin32KeyedMutexAcquireReleaseInfoNV;
#ifdef __cplusplus
}
#endif
#endif
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#ifndef VULKAN_XCB_H_
#define VULKAN_XCB_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_xcb_surface 1
#define VK_KHR_XCB_SURFACE_SPEC_VERSION 6
#define VK_KHR_XCB_SURFACE_EXTENSION_NAME "VK_KHR_xcb_surface"
typedef VkFlags VkXcbSurfaceCreateFlagsKHR;
typedef struct VkXcbSurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkXcbSurfaceCreateFlagsKHR flags;
xcb_connection_t* connection;
xcb_window_t window;
} VkXcbSurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateXcbSurfaceKHR)(VkInstance instance, const VkXcbSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceXcbPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, xcb_connection_t* connection, xcb_visualid_t visual_id);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateXcbSurfaceKHR(
VkInstance instance,
const VkXcbSurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceXcbPresentationSupportKHR(
VkPhysicalDevice physicalDevice,
uint32_t queueFamilyIndex,
xcb_connection_t* connection,
xcb_visualid_t visual_id);
#endif
#ifdef __cplusplus
}
#endif
#endif
-66
View File
@@ -1,66 +0,0 @@
#ifndef VULKAN_XLIB_H_
#define VULKAN_XLIB_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_KHR_xlib_surface 1
#define VK_KHR_XLIB_SURFACE_SPEC_VERSION 6
#define VK_KHR_XLIB_SURFACE_EXTENSION_NAME "VK_KHR_xlib_surface"
typedef VkFlags VkXlibSurfaceCreateFlagsKHR;
typedef struct VkXlibSurfaceCreateInfoKHR {
VkStructureType sType;
const void* pNext;
VkXlibSurfaceCreateFlagsKHR flags;
Display* dpy;
Window window;
} VkXlibSurfaceCreateInfoKHR;
typedef VkResult (VKAPI_PTR *PFN_vkCreateXlibSurfaceKHR)(VkInstance instance, const VkXlibSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceXlibPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, Display* dpy, VisualID visualID);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkCreateXlibSurfaceKHR(
VkInstance instance,
const VkXlibSurfaceCreateInfoKHR* pCreateInfo,
const VkAllocationCallbacks* pAllocator,
VkSurfaceKHR* pSurface);
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceXlibPresentationSupportKHR(
VkPhysicalDevice physicalDevice,
uint32_t queueFamilyIndex,
Display* dpy,
VisualID visualID);
#endif
#ifdef __cplusplus
}
#endif
#endif
-54
View File
@@ -1,54 +0,0 @@
#ifndef VULKAN_XLIB_XRANDR_H_
#define VULKAN_XLIB_XRANDR_H_ 1
#ifdef __cplusplus
extern "C" {
#endif
/*
** Copyright (c) 2015-2018 The Khronos Group Inc.
**
** Licensed under the Apache License, Version 2.0 (the "License");
** you may not use this file except in compliance with the License.
** You may obtain a copy of the License at
**
** http://www.apache.org/licenses/LICENSE-2.0
**
** Unless required by applicable law or agreed to in writing, software
** distributed under the License is distributed on an "AS IS" BASIS,
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
** See the License for the specific language governing permissions and
** limitations under the License.
*/
/*
** This header is generated from the Khronos Vulkan XML API Registry.
**
*/
#define VK_EXT_acquire_xlib_display 1
#define VK_EXT_ACQUIRE_XLIB_DISPLAY_SPEC_VERSION 1
#define VK_EXT_ACQUIRE_XLIB_DISPLAY_EXTENSION_NAME "VK_EXT_acquire_xlib_display"
typedef VkResult (VKAPI_PTR *PFN_vkAcquireXlibDisplayEXT)(VkPhysicalDevice physicalDevice, Display* dpy, VkDisplayKHR display);
typedef VkResult (VKAPI_PTR *PFN_vkGetRandROutputDisplayEXT)(VkPhysicalDevice physicalDevice, Display* dpy, RROutput rrOutput, VkDisplayKHR* pDisplay);
#ifndef VK_NO_PROTOTYPES
VKAPI_ATTR VkResult VKAPI_CALL vkAcquireXlibDisplayEXT(
VkPhysicalDevice physicalDevice,
Display* dpy,
VkDisplayKHR display);
VKAPI_ATTR VkResult VKAPI_CALL vkGetRandROutputDisplayEXT(
VkPhysicalDevice physicalDevice,
Display* dpy,
RROutput rrOutput,
VkDisplayKHR* pDisplay);
#endif
#ifdef __cplusplus
}
#endif
#endif
+1 -1
View File
@@ -431,7 +431,7 @@ int ovx_hal_warpAffine(int atype, const uchar *a, size_t astep, int aw, int ah,
return CV_HAL_ERROR_OK;
}
int ovx_hal_warpPerspective(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, const double M[9], int interpolation, int borderType, const double borderValue[4])
int ovx_hal_warpPerspectve(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, const double M[9], int interpolation, int borderType, const double borderValue[4])
{
if (skipSmallImages<VX_KERNEL_WARP_PERSPECTIVE>(aw, ah))
return CV_HAL_ERROR_NOT_IMPLEMENTED;
+2 -2
View File
@@ -27,7 +27,7 @@ int ovx_hal_mul(const T *a, size_t astep, const T *b, size_t bstep, T *c, size_t
int ovx_hal_merge8u(const uchar **src_data, uchar *dst_data, int len, int cn);
int ovx_hal_resize(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, double inv_scale_x, double inv_scale_y, int interpolation);
int ovx_hal_warpAffine(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, const double M[6], int interpolation, int borderType, const double borderValue[4]);
int ovx_hal_warpPerspective(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, const double M[9], int interpolation, int borderType, const double borderValue[4]);
int ovx_hal_warpPerspectve(int atype, const uchar *a, size_t astep, int aw, int ah, uchar *b, size_t bstep, int bw, int bh, const double M[9], int interpolation, int borderType, const double borderValue[4]);
struct cvhalFilter2D;
int ovx_hal_filterInit(cvhalFilter2D **filter_context, uchar *kernel_data, size_t kernel_step, int kernel_type, int kernel_width, int kernel_height,
@@ -97,7 +97,7 @@ int ovx_hal_integral(int depth, int sdepth, int, const uchar * a, size_t astep,
//#undef cv_hal_warpAffine
//#define cv_hal_warpAffine ovx_hal_warpAffine
//#undef cv_hal_warpPerspective
//#define cv_hal_warpPerspective ovx_hal_warpPerspective
//#define cv_hal_warpPerspective ovx_hal_warpPerspectve
#undef cv_hal_filterInit
#define cv_hal_filterInit ovx_hal_filterInit
+68 -51
View File
@@ -153,6 +153,7 @@ endif()
# ----------------------------------------------------------------------------
# Detect compiler and target platform architecture
# ----------------------------------------------------------------------------
OCV_OPTION(ENABLE_CXX11 "Enable C++11 compilation mode" "${OPENCV_CXX11}")
include(cmake/OpenCVDetectCXXCompiler.cmake)
ocv_cmake_hook(POST_DETECT_COMPILER)
@@ -221,6 +222,7 @@ OCV_OPTION(BUILD_ITT "Build Intel ITT from source" (NOT MI
# ===================================================
OCV_OPTION(WITH_1394 "Include IEEE1394 support" ON IF (NOT ANDROID AND NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_AVFOUNDATION "Use AVFoundation for Video I/O (iOS/Mac)" ON IF APPLE)
OCV_OPTION(WITH_CARBON "Use Carbon for UI instead of Cocoa (OBSOLETE)" OFF IF APPLE )
OCV_OPTION(WITH_CAROTENE "Use NVidia carotene acceleration library for ARM platform" ON IF (ARM OR AARCH64) AND NOT IOS AND NOT (CMAKE_VERSION VERSION_LESS "2.8.11"))
OCV_OPTION(WITH_CPUFEATURES "Use cpufeatures Android library" ON IF ANDROID)
OCV_OPTION(WITH_VTK "Include VTK library support (and build opencv_viz module eiher)" ON IF (NOT ANDROID AND NOT IOS AND NOT WINRT AND NOT CMAKE_CROSSCOMPILING) )
@@ -229,6 +231,7 @@ OCV_OPTION(WITH_CUFFT "Include NVidia Cuda Fast Fourier Transform (FFT)
OCV_OPTION(WITH_CUBLAS "Include NVidia Cuda Basic Linear Algebra Subprograms (BLAS) library support" ON IF (NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_NVCUVID "Include NVidia Video Decoding library support" ON IF (NOT IOS AND NOT APPLE) )
OCV_OPTION(WITH_EIGEN "Include Eigen2/Eigen3 support" (NOT CV_DISABLE_OPTIMIZATION) IF (NOT WINRT AND NOT CMAKE_CROSSCOMPILING) )
OCV_OPTION(WITH_VFW "Include Video for Windows support (deprecated, consider using MSMF)" OFF IF WIN32 )
OCV_OPTION(WITH_FFMPEG "Include FFMPEG support" ON IF (NOT ANDROID AND NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_GSTREAMER "Include Gstreamer support" ON IF (NOT ANDROID AND NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_GSTREAMER_0_10 "Enable Gstreamer 0.10 support (instead of 1.x)" OFF )
@@ -236,7 +239,6 @@ OCV_OPTION(WITH_GTK "Include GTK support" ON
OCV_OPTION(WITH_GTK_2_X "Use GTK version 2" OFF IF (UNIX AND NOT APPLE AND NOT ANDROID) )
OCV_OPTION(WITH_IPP "Include Intel IPP support" (NOT MINGW AND NOT CV_DISABLE_OPTIMIZATION) IF (X86_64 OR X86) AND NOT WINRT AND NOT IOS )
OCV_OPTION(WITH_HALIDE "Include Halide support" OFF)
OCV_OPTION(WITH_VULKAN "Include Vulkan support" OFF)
OCV_OPTION(WITH_INF_ENGINE "Include Intel Inference Engine support" OFF)
OCV_OPTION(WITH_JASPER "Include JPEG2K support" ON IF (NOT IOS) )
OCV_OPTION(WITH_JPEG "Include JPEG support" ON)
@@ -253,12 +255,16 @@ OCV_OPTION(WITH_GIGEAPI "Include Smartek GigE support" OFF
OCV_OPTION(WITH_ARAVIS "Include Aravis GigE support" OFF IF (NOT ANDROID AND NOT IOS AND NOT WINRT AND NOT WIN32) )
OCV_OPTION(WITH_QT "Build with Qt Backend support" OFF IF (NOT ANDROID AND NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_WIN32UI "Build with Win32 UI Backend support" ON IF WIN32 AND NOT WINRT)
OCV_OPTION(WITH_QUICKTIME "Use QuickTime for Video I/O (OBSOLETE)" OFF IF APPLE )
OCV_OPTION(WITH_QTKIT "Use QTKit Video I/O backend" OFF IF APPLE )
OCV_OPTION(WITH_TBB "Include Intel TBB support" OFF IF (NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_HPX "Include Ste||ar Group HPX support" OFF)
OCV_OPTION(WITH_OPENMP "Include OpenMP support" OFF)
OCV_OPTION(WITH_CSTRIPES "Include C= support" OFF IF (WIN32 AND NOT WINRT) )
OCV_OPTION(WITH_PTHREADS_PF "Use pthreads-based parallel_for" ON IF (NOT WIN32 OR MINGW) )
OCV_OPTION(WITH_TIFF "Include TIFF support" ON IF (NOT IOS) )
OCV_OPTION(WITH_UNICAP "Include Unicap support (GPL)" OFF IF (UNIX AND NOT APPLE AND NOT ANDROID) )
OCV_OPTION(WITH_V4L "Include Video 4 Linux support" ON IF (UNIX AND NOT ANDROID AND NOT APPLE) )
OCV_OPTION(WITH_LIBV4L "Use libv4l for Video 4 Linux support" OFF IF (UNIX AND NOT ANDROID AND NOT APPLE) )
OCV_OPTION(WITH_DSHOW "Build VideoIO with DirectShow support" ON IF (WIN32 AND NOT ARM AND NOT WINRT) )
OCV_OPTION(WITH_MSMF "Build VideoIO with Media Foundation support" ON IF WIN32 )
OCV_OPTION(WITH_XIMEA "Include XIMEA cameras support" OFF IF (NOT ANDROID AND NOT WINRT) )
@@ -270,7 +276,6 @@ OCV_OPTION(WITH_OPENCLAMDFFT "Include AMD OpenCL FFT library support" ON
OCV_OPTION(WITH_OPENCLAMDBLAS "Include AMD OpenCL BLAS library support" ON IF (NOT ANDROID AND NOT IOS AND NOT WINRT) )
OCV_OPTION(WITH_DIRECTX "Include DirectX support" ON IF (WIN32 AND NOT WINRT) )
OCV_OPTION(WITH_INTELPERC "Include Intel Perceptual Computing support" OFF IF (WIN32 AND NOT WINRT) )
OCV_OPTION(WITH_LIBREALSENSE "Include Intel librealsense support" OFF IF (NOT WITH_INTELPERC) )
OCV_OPTION(WITH_VA "Include VA support" OFF IF (UNIX AND NOT ANDROID) )
OCV_OPTION(WITH_VA_INTEL "Include Intel VA-API/OpenCL support" OFF IF (UNIX AND NOT ANDROID) )
OCV_OPTION(WITH_MFX "Include Intel Media SDK support" OFF IF ((UNIX AND NOT ANDROID) OR (WIN32 AND NOT WINRT AND NOT MINGW)) )
@@ -282,7 +287,6 @@ OCV_OPTION(WITH_PROTOBUF "Enable libprotobuf" ON
OCV_OPTION(WITH_IMGCODEC_HDR "Include HDR support" ON)
OCV_OPTION(WITH_IMGCODEC_SUNRASTER "Include SUNRASTER support" ON)
OCV_OPTION(WITH_IMGCODEC_PXM "Include PNM (PBM,PGM,PPM) and PAM formats support" ON)
OCV_OPTION(WITH_IMGCODEC_PFM "Include PFM formats support" ON)
OCV_OPTION(WITH_QUIRC "Include library QR-code decoding" ON)
# OpenCV build components
@@ -295,8 +299,8 @@ OCV_OPTION(BUILD_ANDROID_EXAMPLES "Build examples for Android platform"
OCV_OPTION(BUILD_DOCS "Create build rules for OpenCV Documentation" OFF IF (NOT WINRT AND NOT APPLE_FRAMEWORK))
OCV_OPTION(BUILD_EXAMPLES "Build all examples" OFF )
OCV_OPTION(BUILD_PACKAGE "Enables 'make package_source' command" ON IF NOT WINRT)
OCV_OPTION(BUILD_PERF_TESTS "Build performance tests" ON IF (NOT APPLE_FRAMEWORK) )
OCV_OPTION(BUILD_TESTS "Build accuracy & regression tests" ON IF (NOT APPLE_FRAMEWORK) )
OCV_OPTION(BUILD_PERF_TESTS "Build performance tests" NOT INSTALL_CREATE_DISTRIB IF (NOT APPLE_FRAMEWORK) )
OCV_OPTION(BUILD_TESTS "Build accuracy & regression tests" NOT INSTALL_CREATE_DISTRIB IF (NOT APPLE_FRAMEWORK) )
OCV_OPTION(BUILD_WITH_DEBUG_INFO "Include debug info into release binaries ('OFF' means default settings)" OFF )
OCV_OPTION(BUILD_WITH_STATIC_CRT "Enables use of statically linked CRT for statically linked OpenCV" ON IF MSVC )
OCV_OPTION(BUILD_WITH_DYNAMIC_IPP "Enables dynamic linking of IPP (only for standalone IPP)" OFF )
@@ -325,7 +329,7 @@ OCV_OPTION(ENABLE_OMIT_FRAME_POINTER "Enable -fomit-frame-pointer for GCC"
OCV_OPTION(ENABLE_POWERPC "Enable PowerPC for GCC" ON IF (CV_GCC AND CMAKE_SYSTEM_PROCESSOR MATCHES powerpc.*) )
OCV_OPTION(ENABLE_VSX "Enable POWER8 and above VSX (64-bit little-endian)" ON IF ((CV_GCC OR CV_CLANG) AND PPC64LE) )
OCV_OPTION(ENABLE_FAST_MATH "Enable -ffast-math (not recommended for GCC 4.6.x)" OFF IF (CV_GCC AND (X86 OR X86_64)) )
if(NOT IOS AND (NOT ANDROID OR OPENCV_ANDROID_USE_LEGACY_FLAGS)) # Use CPU_BASELINE instead
if(NOT IOS) # Use CPU_BASELINE instead
OCV_OPTION(ENABLE_NEON "Enable NEON instructions" (NEON OR ANDROID_ARM_NEON OR AARCH64) IF (CV_GCC OR CV_CLANG) AND (ARM OR AARCH64 OR IOS) )
OCV_OPTION(ENABLE_VFPV3 "Enable VFPv3-D32 instructions" OFF IF (CV_GCC OR CV_CLANG) AND (ARM OR AARCH64 OR IOS) )
endif()
@@ -339,7 +343,7 @@ OCV_OPTION(ENABLE_BUILD_HARDENING "Enable hardening of the resulting binarie
OCV_OPTION(ENABLE_LTO "Enable Link Time Optimization" OFF IF CV_GCC OR MSVC)
OCV_OPTION(ENABLE_THIN_LTO "Enable Thin LTO" OFF IF CV_CLANG)
OCV_OPTION(GENERATE_ABI_DESCRIPTOR "Generate XML file for abi_compliance_checker tool" OFF IF UNIX)
OCV_OPTION(OPENCV_GENERATE_PKGCONFIG "Generate .pc file for pkg-config build tool (deprecated)" OFF)
OCV_OPTION(OPENCV_GENERATE_PKGCONFIG "Generate .pc file for pkg-config build tool (deprecated)" ON IF (UNIX AND NOT MSVC AND NOT IOS AND NOT ANDROID) )
OCV_OPTION(CV_ENABLE_INTRINSICS "Use intrinsic-based optimized code" ON )
OCV_OPTION(CV_DISABLE_OPTIMIZATION "Disable explicit optimized code (dispatched code/intrinsics/loop unrolling/etc)" OFF )
OCV_OPTION(CV_TRACE "Enable OpenCV code trace" ON)
@@ -378,6 +382,8 @@ endif()
if(ANDROID OR WIN32)
ocv_update(OPENCV_DOC_INSTALL_PATH doc)
else()
ocv_update(OPENCV_DOC_INSTALL_PATH share/OpenCV/doc)
endif()
if(WIN32 AND CMAKE_HOST_SYSTEM_NAME MATCHES Windows)
@@ -417,6 +423,8 @@ if(ANDROID)
ocv_update(OPENCV_TEST_DATA_INSTALL_PATH "sdk/etc/testdata")
elseif(WIN32)
ocv_update(OPENCV_TEST_DATA_INSTALL_PATH "testdata")
else()
ocv_update(OPENCV_TEST_DATA_INSTALL_PATH "share/OpenCV/testdata")
endif()
if(ANDROID)
@@ -429,7 +437,6 @@ if(ANDROID)
ocv_update(OPENCV_INCLUDE_INSTALL_PATH sdk/native/jni/include)
ocv_update(OPENCV_SAMPLES_SRC_INSTALL_PATH samples/native)
ocv_update(OPENCV_OTHER_INSTALL_PATH sdk/etc)
ocv_update(OPENCV_LICENSES_INSTALL_PATH "${OPENCV_OTHER_INSTALL_PATH}/licenses")
else()
set(LIBRARY_OUTPUT_PATH "${OpenCV_BINARY_DIR}/lib")
ocv_update(3P_LIBRARY_OUTPUT_PATH "${OpenCV_BINARY_DIR}/3rdparty/lib${LIB_SUFFIX}")
@@ -445,40 +452,43 @@ else()
ocv_update(OPENCV_JAR_INSTALL_PATH java)
ocv_update(OPENCV_OTHER_INSTALL_PATH etc)
ocv_update(OPENCV_CONFIG_INSTALL_PATH ".")
ocv_update(OPENCV_INCLUDE_INSTALL_PATH "include")
ocv_update(OPENCV_LICENSES_INSTALL_PATH "${OPENCV_OTHER_INSTALL_PATH}/licenses")
else()
# Note: layout differs from OpenCV 3.4
include(GNUInstallDirs)
ocv_update(OPENCV_INCLUDE_INSTALL_PATH "${CMAKE_INSTALL_INCLUDEDIR}/opencv4")
ocv_update(OPENCV_LIB_INSTALL_PATH "${CMAKE_INSTALL_LIBDIR}${LIB_SUFFIX}")
ocv_update(OPENCV_CONFIG_INSTALL_PATH "${OPENCV_LIB_INSTALL_PATH}/cmake/opencv4")
ocv_update(OPENCV_3P_LIB_INSTALL_PATH "${OPENCV_LIB_INSTALL_PATH}/opencv4/3rdparty")
ocv_update(OPENCV_SAMPLES_SRC_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/opencv4/samples")
ocv_update(OPENCV_DOC_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/doc/opencv4")
ocv_update(OPENCV_JAR_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/java/opencv4")
ocv_update(OPENCV_TEST_DATA_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/opencv4/testdata")
ocv_update(OPENCV_OTHER_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/opencv4")
ocv_update(OPENCV_LICENSES_INSTALL_PATH "${CMAKE_INSTALL_DATAROOTDIR}/licenses/opencv4")
ocv_update(OPENCV_LIB_INSTALL_PATH ${CMAKE_INSTALL_LIBDIR}${LIB_SUFFIX})
ocv_update(OPENCV_3P_LIB_INSTALL_PATH share/OpenCV/3rdparty/${OPENCV_LIB_INSTALL_PATH})
ocv_update(OPENCV_SAMPLES_SRC_INSTALL_PATH share/OpenCV/samples)
ocv_update(OPENCV_JAR_INSTALL_PATH share/OpenCV/java)
ocv_update(OPENCV_OTHER_INSTALL_PATH share/OpenCV)
if(NOT DEFINED OPENCV_CONFIG_INSTALL_PATH)
math(EXPR SIZEOF_VOID_P_BITS "8 * ${CMAKE_SIZEOF_VOID_P}")
if(LIB_SUFFIX AND NOT SIZEOF_VOID_P_BITS EQUAL LIB_SUFFIX)
ocv_update(OPENCV_CONFIG_INSTALL_PATH ${CMAKE_INSTALL_LIBDIR}${LIB_SUFFIX}/cmake/opencv)
else()
ocv_update(OPENCV_CONFIG_INSTALL_PATH share/OpenCV)
endif()
endif()
endif()
ocv_update(OPENCV_INCLUDE_INSTALL_PATH "include")
ocv_update(OPENCV_PYTHON_INSTALL_PATH "python")
endif()
ocv_update(CMAKE_INSTALL_RPATH "${CMAKE_INSTALL_PREFIX}/${OPENCV_LIB_INSTALL_PATH}")
set(CMAKE_INSTALL_RPATH_USE_LINK_PATH TRUE)
if(INSTALL_TO_MANGLED_PATHS)
set(OPENCV_INCLUDE_INSTALL_PATH ${OPENCV_INCLUDE_INSTALL_PATH}/opencv-${OPENCV_VERSION})
foreach(v
OPENCV_INCLUDE_INSTALL_PATH
# file names include version (.so/.dll): OPENCV_LIB_INSTALL_PATH
OPENCV_CONFIG_INSTALL_PATH
OPENCV_3P_LIB_INSTALL_PATH
OPENCV_SAMPLES_SRC_INSTALL_PATH
OPENCV_CONFIG_INSTALL_PATH
OPENCV_DOC_INSTALL_PATH
# JAR file name includes version: OPENCV_JAR_INSTALL_PATH
OPENCV_JAR_INSTALL_PATH
OPENCV_TEST_DATA_INSTALL_PATH
OPENCV_OTHER_INSTALL_PATH
)
string(REGEX REPLACE "opencv[0-9]*" "opencv-${OPENCV_VERSION}" ${v} "${${v}}")
string(REPLACE "OpenCV" "OpenCV-${OPENCV_VERSION}" ${v} "${${v}}")
string(REPLACE "opencv" "opencv-${OPENCV_VERSION}" ${v} "${${v}}")
endforeach()
endif()
@@ -685,11 +695,6 @@ if(WITH_HALIDE)
include(cmake/OpenCVDetectHalide.cmake)
endif()
# --- VkCom ---
if(WITH_VULKAN)
include(cmake/OpenCVDetectVulkan.cmake)
endif()
# --- Inference Engine ---
if(WITH_INF_ENGINE)
include(cmake/OpenCVDetectInferenceEngine.cmake)
@@ -856,7 +861,9 @@ ocv_cmake_hook(PRE_FINALIZE)
include(cmake/OpenCVGenHeaders.cmake)
# Generate opencv.pc for pkg-config command
if(OPENCV_GENERATE_PKGCONFIG)
if(NOT OPENCV_SKIP_PKGCONFIG_GENERATION
AND OPENCV_GENERATE_PKGCONFIG
AND NOT CMAKE_GENERATOR MATCHES "Xcode")
include(cmake/OpenCVGenPkgconfig.cmake)
endif()
@@ -1024,6 +1031,9 @@ string(STRIP "${OPENCV_COMPILER_STR}" OPENCV_COMPILER_STR)
status("")
status(" C/C++:")
status(" Built as dynamic libs?:" BUILD_SHARED_LIBS THEN YES ELSE NO)
if(ENABLE_CXX11 OR HAVE_CXX11)
status(" C++11:" HAVE_CXX11 THEN YES ELSE NO)
endif()
status(" C++ Compiler:" ${OPENCV_COMPILER_STR})
status(" C++ flags (Release):" ${CMAKE_CXX_FLAGS} ${CMAKE_CXX_FLAGS_RELEASE})
status(" C++ flags (Debug):" ${CMAKE_CXX_FLAGS} ${CMAKE_CXX_FLAGS_DEBUG})
@@ -1152,8 +1162,12 @@ if(WITH_WIN32UI)
status(" Win32 UI:" HAVE_WIN32UI THEN YES ELSE NO)
endif()
if(HAVE_COCOA) # APPLE
status(" Cocoa:" YES)
if(APPLE)
if(WITH_CARBON)
status(" Carbon:" YES)
else()
status(" Cocoa:" YES)
endif()
endif()
if(WITH_GTK OR HAVE_GTK)
@@ -1233,17 +1247,19 @@ if(WITH_IMGCODEC_PXM OR DEFINED HAVE_IMGCODEC_PXM)
status(" PXM:" HAVE_IMGCODEC_PXM THEN "YES" ELSE "NO")
endif()
if(WITH_IMGCODEC_PFM OR DEFINED HAVE_IMGCODEC_PFM)
status(" PFM:" HAVE_IMGCODEC_PFM THEN "YES" ELSE "NO")
endif()
# ========================== VIDEO IO ==========================
status("")
status(" Video I/O:")
if(WITH_1394 OR HAVE_DC1394_2)
if(WITH_VFW OR HAVE_VFW)
status(" Video for Windows:" HAVE_VFW THEN YES ELSE NO)
endif()
if(WITH_1394 OR HAVE_DC1394)
if (HAVE_DC1394_2)
status(" DC1394:" "YES (ver ${ALIASOF_libdc1394-2_VERSION})")
elseif (HAVE_DC1394)
status(" DC1394:" "YES (ver ${ALIASOF_libdc1394_VERSION})")
else()
status(" DC1394:" "NO")
endif()
@@ -1301,10 +1317,20 @@ if(APPLE)
if(WITH_QUICKTIME OR HAVE_QUICKTIME)
status(" QuickTime:" HAVE_QUICKTIME THEN YES ELSE NO)
endif()
if(WITH_QTKIT OR HAVE_QTKIT)
status(" QTKit:" HAVE_QTKIT THEN "YES (deprecated)" ELSE NO)
endif()
endif()
if(WITH_V4L OR HAVE_CAMV4L2 OR HAVE_VIDEOIO)
if(WITH_UNICAP OR HAVE_UNICAP)
status(" UniCap:" HAVE_UNICAP THEN "YES (ver ${ALIASOF_libunicap_VERSION})" ELSE NO)
status(" UniCap ucil:" HAVE_UNICAP_UCIL THEN "YES (ver ${ALIASOF_libucil_VERSION})" ELSE NO)
endif()
if(WITH_V4L OR WITH_LIBV4L OR HAVE_LIBV4L OR HAVE_CAMV4L OR HAVE_CAMV4L2 OR HAVE_VIDEOIO)
status(" libv4l/libv4l2:" HAVE_LIBV4L THEN "${ALIASOF_libv4l1_VERSION} / ${ALIASOF_libv4l2_VERSION}" ELSE "NO")
ocv_build_features_string(v4l_status
IF HAVE_CAMV4L THEN "linux/videodev.h"
IF HAVE_CAMV4L2 THEN "linux/videodev2.h"
IF HAVE_VIDEOIO THEN "sys/videoio.h"
ELSE "NO")
@@ -1342,7 +1368,7 @@ endif()
# Order is similar to CV_PARALLEL_FRAMEWORK in core/src/parallel.cpp
ocv_build_features_string(parallel_status EXCLUSIVE
IF HAVE_TBB THEN "TBB (ver ${TBB_VERSION_MAJOR}.${TBB_VERSION_MINOR} interface ${TBB_INTERFACE_VERSION})"
IF HAVE_HPX THEN "HPX"
IF HAVE_CSTRIPES THEN "C="
IF HAVE_OPENMP THEN "OpenMP"
IF HAVE_GCD THEN "GCD"
IF WINRT OR HAVE_CONCURRENCY THEN "Concurrency"
@@ -1444,15 +1470,6 @@ if(WITH_CUDA OR HAVE_CUDA)
endif()
endif()
if(WITH_VULKAN OR HAVE_VULKAN)
status("")
status(" Vulkan:" HAVE_VULKAN THEN "YES" ELSE "NO")
if(HAVE_VULKAN)
status(" Include path:" VULKAN_INCLUDE_DIRS THEN "${VULKAN_INCLUDE_DIRS}" ELSE "NO")
status(" Link libraries:" VULKAN_LIBRARIES THEN "${VULKAN_LIBRARIES}" ELSE "Dynamic load")
endif()
endif()
if(WITH_OPENCL OR HAVE_OPENCL)
ocv_build_features_string(opencl_features
IF HAVE_OPENCL_SVM THEN "SVM"
+2 -2
View File
@@ -2,8 +2,8 @@
### Resources
* Homepage: <https://opencv.org>
* Docs: <https://docs.opencv.org/master/>
* Homepage: <http://opencv.org>
* Docs: <http://docs.opencv.org/master/>
* Q&A forum: <http://answers.opencv.org>
* Issue tracking: <https://github.com/opencv/opencv/issues>
+2 -2
View File
@@ -49,8 +49,8 @@ macro(ocv_add_app directory)
endif()
endmacro()
#ocv_add_app(traincascade)
#ocv_add_app(createsamples)
ocv_add_app(traincascade)
ocv_add_app(createsamples)
ocv_add_app(annotation)
ocv_add_app(visualisation)
ocv_add_app(interactive-calibration)
@@ -210,7 +210,7 @@ void calib::calibDataController::filterFrames()
worstElemIndex = i;
}
}
showOverlayMessage(cv::format("Frame %zu is worst", worstElemIndex + 1));
showOverlayMessage(cv::format("Frame %d is worst", worstElemIndex + 1));
if(mCalibData->imagePoints.size()) {
mCalibData->imagePoints.erase(mCalibData->imagePoints.begin() + worstElemIndex);
@@ -318,7 +318,7 @@ cv::Mat CalibProcessor::processFrame(const cv::Mat &frame)
saveFrameData();
bool isFrameBad = checkLastFrame();
if (!isFrameBad) {
std::string displayMessage = cv::format("Frame # %zu captured", std::max(mCalibData->imagePoints.size(),
std::string displayMessage = cv::format("Frame # %d captured", std::max(mCalibData->imagePoints.size(),
mCalibData->allCharucoCorners.size()));
if(!showOverlayMessage(displayMessage))
showCaptureMessage(frame, displayMessage);
+1
View File
@@ -30,6 +30,7 @@ using cv::ParallelLoopBody;
#include "boost.h"
#include "cascadeclassifier.h"
#include <queue>
#include "cxmisc.h"
#include "cvconfig.h"
+12 -13
View File
@@ -144,8 +144,8 @@ public:
CV_WRAP virtual void save( const char* filename, const char* name=0 ) const;
CV_WRAP virtual void load( const char* filename, const char* name=0 );
virtual void write( cv::FileStorage& storage, const char* name ) const;
virtual void read( const cv::FileNode& node );
virtual void write( CvFileStorage* storage, const char* name ) const;
virtual void read( CvFileStorage* storage, CvFileNode* node );
protected:
const char* default_model_name;
@@ -210,8 +210,8 @@ public:
bool update=false );
CV_WRAP virtual float predict( const cv::Mat& samples, CV_OUT cv::Mat* results=0, CV_OUT cv::Mat* results_prob=0 ) const;
virtual void write( cv::FileStorage& storage, const char* name ) const;
virtual void read( const cv::FileNode& node );
virtual void write( CvFileStorage* storage, const char* name ) const;
virtual void read( CvFileStorage* storage, CvFileNode* node );
protected:
int var_count, var_all;
@@ -521,8 +521,8 @@ public:
static CvParamGrid get_default_grid( int param_id );
virtual void write( cv::FileStorage& storage, const char* name ) const;
virtual void read( const cv::FileNode& node );
virtual void write( CvFileStorage* storage, const char* name ) const;
virtual void read( CvFileStorage* storage, CvFileNode* node );
CV_WRAP int get_var_count() const { return var_idx ? var_idx->cols : var_all; }
protected:
@@ -538,8 +538,8 @@ protected:
virtual float predict( const float* row_sample, int row_len, bool returnDFVal=false ) const;
virtual void write_params( cv::FileStorage& fs ) const;
virtual void read_params( const cv::FileNode& node );
virtual void write_params( CvFileStorage* fs ) const;
virtual void read_params( CvFileStorage* fs, CvFileNode* node );
void optimize_linear_svm();
@@ -673,8 +673,8 @@ struct CvDTreeTrainData
virtual CvDTreeNode* subsample_data( const CvMat* _subsample_idx );
virtual void write_params( cv::FileStorage& fs ) const;
virtual void read_params( const cv::FileNode& node );
virtual void write_params( CvFileStorage* fs ) const;
virtual void read_params( CvFileStorage* fs, CvFileNode* node );
// release all the data
virtual void clear();
@@ -1738,7 +1738,7 @@ protected:
// Read parameters of the gtb model and data.
//
// API
// virtual void read_params( const cv::FileStorage& fs );
// virtual void read_params( CvFileStorage* fs );
//
// INPUT
// fs - file storage to read parameters from.
@@ -2033,8 +2033,7 @@ typedef CvANN_MLP NeuralNet_MLP;
typedef CvGBTreesParams GradientBoostingTreeParams;
typedef CvGBTrees GradientBoostingTrees;
template<> struct DefaultDeleter<CvDTreeSplit>{ void operator ()(CvDTreeSplit* obj) const; };
template<> void DefaultDeleter<CvDTreeSplit>::operator ()(CvDTreeSplit* obj) const;
}
#endif // __cplusplus
+4 -1
View File
@@ -1880,7 +1880,10 @@ double CvDTree::calc_node_dir( CvDTreeNode* node )
namespace cv
{
void DefaultDeleter<CvDTreeSplit>::operator ()(CvDTreeSplit* obj) const { fastFree(obj); }
template<> void DefaultDeleter<CvDTreeSplit>::operator ()(CvDTreeSplit* obj) const
{
fastFree(obj);
}
DTreeBestSplitFinder::DTreeBestSplitFinder( CvDTree* _tree, CvDTreeNode* _node)
{
-27
View File
@@ -1,27 +0,0 @@
# Find Vulkan
#
# Vulkan_INCLUDE_DIRS
# Vulkan_LIBRARIES
# Vulkan_FOUND
if (WIN32)
find_path(Vulkan_INCLUDE_DIRS NAMES vulkan/vulkan.h HINTS
"$ENV{VULKAN_SDK}/Include"
"$ENV{VK_SDK_PATH}/Include")
if (CMAKE_CL_64)
find_library(Vulkan_LIBRARIES NAMES vulkan-1 HINTS
"$ENV{VULKAN_SDK}/Bin"
"$ENV{VK_SDK_PATH}/Bin")
else()
find_library(Vulkan_LIBRARIES NAMES vulkan-1 HINTS
"$ENV{VULKAN_SDK}/Bin32"
"$ENV{VK_SDK_PATH}/Bin32")
endif()
else()
find_path(Vulkan_INCLUDE_DIRS NAMES vulkan/vulkan.h HINTS
"$ENV{VULKAN_SDK}/include")
find_library(Vulkan_LIBRARIES NAMES vulkan HINTS
"$ENV{VULKAN_SDK}/lib")
endif()
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(Vulkan DEFAULT_MSG Vulkan_LIBRARIES Vulkan_INCLUDE_DIRS)
mark_as_advanced(Vulkan_INCLUDE_DIRS Vulkan_LIBRARIES)
+1 -3
View File
@@ -103,9 +103,7 @@ if(CV_GCC OR CV_CLANG)
add_extra_compiler_option(-Wundef)
add_extra_compiler_option(-Winit-self)
add_extra_compiler_option(-Wpointer-arith)
if(NOT (CV_GCC AND CMAKE_CXX_COMPILER_VERSION VERSION_LESS "5.0"))
add_extra_compiler_option(-Wshadow) # old GCC emits warnings for variables + methods combination
endif()
add_extra_compiler_option(-Wshadow)
add_extra_compiler_option(-Wsign-promo)
add_extra_compiler_option(-Wuninitialized)
add_extra_compiler_option(-Winit-self)
+11
View File
@@ -0,0 +1,11 @@
if(WIN32)
find_path( CSTRIPES_LIB_DIR
NAMES "C=.lib"
DOC "The path to C= lib and dll")
if(CSTRIPES_LIB_DIR)
ocv_include_directories("${CSTRIPES_LIB_DIR}/..")
link_directories("${CSTRIPES_LIB_DIR}")
set(OPENCV_LINKER_LIBS ${OPENCV_LINKER_LIBS} "C=")
set(HAVE_CSTRIPES 1)
endif()
endif()
+3 -11
View File
@@ -70,12 +70,6 @@ if(CUDA_FOUND)
unset(CUDA_ARCH_PTX CACHE)
endif()
SET(DETECT_ARCHS_COMMAND "${CUDA_NVCC_EXECUTABLE}" ${CUDA_NVCC_FLAGS} "${OpenCV_SOURCE_DIR}/cmake/checks/OpenCVDetectCudaArch.cu" "--run")
if(WIN32 AND CMAKE_LINKER) #Workaround for VS cl.exe not being in the env. path
get_filename_component(host_compiler_bindir ${CMAKE_LINKER} DIRECTORY)
SET(DETECT_ARCHS_COMMAND ${DETECT_ARCHS_COMMAND} "-ccbin" "${host_compiler_bindir}")
endif()
set(__cuda_arch_ptx "")
if(CUDA_GENERATION STREQUAL "Fermi")
set(__cuda_arch_bin "2.0")
@@ -90,11 +84,10 @@ if(CUDA_FOUND)
elseif(CUDA_GENERATION STREQUAL "Turing")
set(__cuda_arch_bin "7.5")
elseif(CUDA_GENERATION STREQUAL "Auto")
execute_process( COMMAND ${DETECT_ARCHS_COMMAND}
execute_process( COMMAND "${CUDA_NVCC_EXECUTABLE}" ${CUDA_NVCC_FLAGS} "${OpenCV_SOURCE_DIR}/cmake/checks/OpenCVDetectCudaArch.cu" "--run"
WORKING_DIRECTORY "${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/CMakeTmp/"
RESULT_VARIABLE _nvcc_res OUTPUT_VARIABLE _nvcc_out
ERROR_QUIET OUTPUT_STRIP_TRAILING_WHITESPACE)
string(REGEX REPLACE ".*\n" "" _nvcc_out "${_nvcc_out}") #Strip leading warning messages, if any
if(NOT _nvcc_res EQUAL 0)
message(STATUS "Automatic detection of CUDA generation failed. Going to build for all known architectures.")
else()
@@ -108,11 +101,10 @@ if(CUDA_FOUND)
set(__cuda_arch_bin "3.2")
set(__cuda_arch_ptx "")
elseif(AARCH64)
execute_process( COMMAND ${DETECT_ARCHS_COMMAND}
execute_process( COMMAND "${CUDA_NVCC_EXECUTABLE}" ${CUDA_NVCC_FLAGS} "${OpenCV_SOURCE_DIR}/cmake/checks/OpenCVDetectCudaArch.cu" "--run"
WORKING_DIRECTORY "${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/CMakeTmp/"
RESULT_VARIABLE _nvcc_res OUTPUT_VARIABLE _nvcc_out
ERROR_QUIET OUTPUT_STRIP_TRAILING_WHITESPACE)
string(REGEX REPLACE ".*\n" "" _nvcc_out "${_nvcc_out}") #Strip leading warning messages, if any
if(NOT _nvcc_res EQUAL 0)
message(STATUS "Automatic detection of CUDA generation failed. Going to build for all known architectures.")
set(__cuda_arch_bin "5.3 6.2 7.0 7.5")
@@ -252,7 +244,7 @@ if(CUDA_FOUND)
endif()
if(UNIX OR APPLE)
set(CUDA_NVCC_FLAGS ${CUDA_NVCC_FLAGS} -Xcompiler -fPIC --std=c++11)
set(CUDA_NVCC_FLAGS ${CUDA_NVCC_FLAGS} -Xcompiler -fPIC)
endif()
if(APPLE)
set(CUDA_NVCC_FLAGS ${CUDA_NVCC_FLAGS} -Xcompiler -fno-finite-math-only)
+8 -8
View File
@@ -166,11 +166,14 @@ if(CMAKE_VERSION VERSION_LESS "3.1")
endforeach()
endif()
set(CMAKE_CXX_STANDARD 11)
set(CMAKE_CXX_STANDARD_REQUIRED TRUE)
set(CMAKE_CXX_EXTENSIONS OFF) # use -std=c++11 instead of -std=gnu++11
if(CMAKE_CXX11_COMPILE_FEATURES)
set(HAVE_CXX11 ON)
if(ENABLE_CXX11)
#cmake_minimum_required(VERSION 3.1.0 FATAL_ERROR)
set(CMAKE_CXX_STANDARD 11)
set(CMAKE_CXX_STANDARD_REQUIRED TRUE)
set(CMAKE_CXX_EXTENSIONS OFF) # use -std=c++11 instead of -std=gnu++11
if(CMAKE_CXX11_COMPILE_FEATURES)
set(HAVE_CXX11 ON)
endif()
endif()
if(NOT HAVE_CXX11)
ocv_check_compiler_flag(CXX "" HAVE_CXX11 "${OpenCV_SOURCE_DIR}/cmake/checks/cxx11.cpp")
@@ -182,6 +185,3 @@ if(NOT HAVE_CXX11)
endif()
endif()
endif()
if(NOT HAVE_CXX11)
message(FATAL_ERROR "OpenCV 4.x requires C++11")
endif()
+2 -2
View File
@@ -78,9 +78,9 @@ endif()
if(INF_ENGINE_TARGET)
if(NOT INF_ENGINE_RELEASE)
message(WARNING "InferenceEngine version have not been set, 2018R3 will be used by default. Set INF_ENGINE_RELEASE variable if you experience build errors.")
message(WARNING "InferenceEngine version have not been set, 2018R4 will be used by default. Set INF_ENGINE_RELEASE variable if you experience build errors.")
endif()
set(INF_ENGINE_RELEASE "2018030000" CACHE STRING "Force IE version, should be in form YYYYAABBCC (e.g. 2018R2.0.2 -> 2018020002)")
set(INF_ENGINE_RELEASE "2018040000" CACHE STRING "Force IE version, should be in form YYYYAABBCC (e.g. 2018R2.0.2 -> 2018020002)")
set_target_properties(${INF_ENGINE_TARGET} PROPERTIES
INTERFACE_COMPILE_DEFINITIONS "HAVE_INF_ENGINE=1;INF_ENGINE_RELEASE=${INF_ENGINE_RELEASE}"
)
-13
View File
@@ -52,18 +52,5 @@ if(HAVE_QT AND VTK_VERSION VERSION_GREATER "6.0.0" AND NOT ${VTK_QT_VERSION} STR
endif()
endif()
try_compile(VTK_COMPILE_STATUS
"${OpenCV_BINARY_DIR}"
"${OpenCV_SOURCE_DIR}/cmake/checks/vtk_test.cpp"
CMAKE_FLAGS "-DINCLUDE_DIRECTORIES:STRING=${VTK_INCLUDE_DIRS}"
LINK_LIBRARIES ${VTK_LIBRARIES}
OUTPUT_VARIABLE OUTPUT
)
if(NOT ${VTK_COMPILE_STATUS})
message(STATUS "VTK support is disabled. Compilation of the sample code has failed.")
return()
endif()
set(HAVE_VTK ON)
message(STATUS "Found VTK ${VTK_VERSION} (${VTK_USE_FILE})")
-20
View File
@@ -1,20 +0,0 @@
set(VULKAN_INCLUDE_DIRS "${OpenCV_SOURCE_DIR}/3rdparty/include" CACHE PATH "Vulkan include directory")
set(VULKAN_LIBRARIES "")
try_compile(VALID_VULKAN
"${OpenCV_BINARY_DIR}"
"${OpenCV_SOURCE_DIR}/cmake/checks/vulkan.cpp"
CMAKE_FLAGS "-DINCLUDE_DIRECTORIES:STRING=${VULKAN_INCLUDE_DIRS}"
OUTPUT_VARIABLE TRY_OUT
)
if(NOT ${VALID_VULKAN})
message(WARNING "Can't use Vulkan")
return()
endif()
set(HAVE_VULKAN 1)
if(HAVE_VULKAN)
add_definitions(-DVK_NO_PROTOTYPES)
include_directories(${VULKAN_INCLUDE_DIRS})
endif()
+8 -8
View File
@@ -2,22 +2,22 @@
# Detect frameworks that may be used by 3rd-party libraries as well as OpenCV
# ----------------------------------------------------------------------------
# --- HPX ---
if(WITH_HPX)
find_package(HPX REQUIRED)
ocv_include_directories(${HPX_INCLUDE_DIRS})
set(HAVE_HPX TRUE)
endif(WITH_HPX)
# --- C= ---
if(WITH_CSTRIPES AND NOT HAVE_TBB)
include("${OpenCV_SOURCE_DIR}/cmake/OpenCVDetectCStripes.cmake")
else()
set(HAVE_CSTRIPES 0)
endif()
# --- GCD ---
if(APPLE AND NOT HAVE_TBB)
if(APPLE AND NOT HAVE_TBB AND NOT HAVE_CSTRIPES)
set(HAVE_GCD 1)
else()
set(HAVE_GCD 0)
endif()
# --- Concurrency ---
if(MSVC AND NOT HAVE_TBB)
if(MSVC AND NOT HAVE_TBB AND NOT HAVE_CSTRIPES)
set(_fname "${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/CMakeTmp/concurrencytest.cpp")
file(WRITE "${_fname}" "#if _MSC_VER < 1600\n#error\n#endif\nint main() { return 0; }\n")
try_compile(HAVE_CONCURRENCY "${CMAKE_BINARY_DIR}" "${_fname}")
-15
View File
@@ -1,15 +0,0 @@
# Main variables:
# LIBREALSENSE_LIBRARIES and LIBREALSENSE_INCLUDE to link Intel librealsense modules
# HAVE_LIBREALSENSE for conditional compilation OpenCV with/without librealsense
find_path(LIBREALSENSE_INCLUDE_DIR "librealsense2/rs.hpp" PATHS "$ENV{LIBREALSENSE_INCLUDE}" DOC "Path to librealsense interface headers")
find_library(LIBREALSENSE_LIBRARIES "realsense2" PATHS "$ENV{LIBREALSENSE_LIB}" DOC "Path to librealsense interface libraries")
if(LIBREALSENSE_INCLUDE_DIR AND LIBREALSENSE_LIBRARIES)
set(HAVE_LIBREALSENSE TRUE)
else()
set(HAVE_LIBREALSENSE FALSE)
message( WARNING, " librealsense include directory (set by LIBREALSENSE_INCLUDE_DIR variable) is not found or does not have librealsense include files." )
endif() #if(LIBREALSENSE_INCLUDE_DIR AND LIBREALSENSE_LIBRARIES)
mark_as_advanced(FORCE LIBREALSENSE_LIBRARIES LIBREALSENSE_INCLUDE_DIR)
+4 -2
View File
@@ -80,9 +80,11 @@ if(WITH_OPENGL)
endif()
endif(WITH_OPENGL)
# --- Cocoa ---
# --- Carbon & Cocoa ---
if(APPLE)
if(NOT IOS AND CV_CLANG)
if(WITH_CARBON)
set(HAVE_CARBON YES)
elseif(NOT IOS AND CV_CLANG)
set(HAVE_COCOA YES)
endif()
endif()
-5
View File
@@ -268,8 +268,3 @@ if(WITH_IMGCODEC_PXM)
elseif(DEFINED WITH_IMGCODEC_PXM)
set(HAVE_IMGCODEC_PXM OFF)
endif()
if(WITH_IMGCODEC_PFM)
set(HAVE_IMGCODEC_PFM ON)
elseif(DEFINED WITH_IMGCODEC_PFM)
set(HAVE_IMGCODEC_PFM OFF)
endif()
+40 -6
View File
@@ -2,6 +2,14 @@
# Detect 3rd-party video IO libraries
# ----------------------------------------------------------------------------
ocv_clear_vars(HAVE_VFW)
if(WITH_VFW)
try_compile(HAVE_VFW
"${OpenCV_BINARY_DIR}"
"${OpenCV_SOURCE_DIR}/cmake/checks/vfwtest.cpp"
CMAKE_FLAGS "-DLINK_LIBRARIES:STRING=vfw32")
endif(WITH_VFW)
# --- GStreamer ---
ocv_clear_vars(HAVE_GSTREAMER)
# try to find gstreamer 1.x first if 0.10 was not requested
@@ -54,6 +62,16 @@ if(WITH_GSTREAMER AND NOT HAVE_GSTREAMER OR WITH_GSTREAMER_0_10)
endif()
endif(WITH_GSTREAMER AND NOT HAVE_GSTREAMER OR WITH_GSTREAMER_0_10)
# --- unicap ---
ocv_clear_vars(HAVE_UNICAP)
if(WITH_UNICAP)
CHECK_MODULE(libunicap HAVE_UNICAP_ VIDEOIO)
CHECK_MODULE(libucil HAVE_UNICAP_UCIL VIDEOIO)
if(HAVE_UNICAP_ AND HAVE_UNICAP_UCIL)
set(HAVE_UNICAP TRUE)
endif()
endif(WITH_UNICAP)
# --- PvApi ---
ocv_clear_vars(HAVE_PVAPI)
if(WITH_PVAPI)
@@ -156,8 +174,18 @@ if(WITH_XINE)
endif(WITH_XINE)
# --- V4L ---
ocv_clear_vars(HAVE_CAMV4L2 HAVE_VIDEOIO)
ocv_clear_vars(HAVE_LIBV4L HAVE_CAMV4L HAVE_CAMV4L2 HAVE_VIDEOIO)
if(WITH_V4L)
if(WITH_LIBV4L)
CHECK_MODULE(libv4l1 HAVE_LIBV4L1 VIDEOIO)
CHECK_MODULE(libv4l2 HAVE_LIBV4L2 VIDEOIO)
if(HAVE_LIBV4L1 AND HAVE_LIBV4L2)
set(HAVE_LIBV4L YES)
else()
set(HAVE_LIBV4L NO)
endif()
endif()
CHECK_INCLUDE_FILE(linux/videodev.h HAVE_CAMV4L)
CHECK_INCLUDE_FILE(linux/videodev2.h HAVE_CAMV4L2)
CHECK_INCLUDE_FILE(sys/videoio.h HAVE_VIDEOIO)
endif(WITH_V4L)
@@ -258,8 +286,12 @@ endif(WITH_MSMF)
# --- Extra HighGUI and VideoIO libs on Windows ---
if(WIN32)
list(APPEND HIGHGUI_LIBRARIES comctl32 gdi32 ole32 setupapi ws2_32)
if(HAVE_VFW)
list(APPEND VIDEOIO_LIBRARIES vfw32)
endif()
if(MINGW64)
list(APPEND VIDEOIO_LIBRARIES avifil32 avicap32 winmm msvfw32)
list(REMOVE_ITEM VIDEOIO_LIBRARIES vfw32)
elseif(MINGW)
list(APPEND VIDEOIO_LIBRARIES winmm)
endif()
@@ -269,13 +301,15 @@ if(APPLE)
if(WITH_AVFOUNDATION)
set(HAVE_AVFOUNDATION YES)
endif()
if(NOT IOS)
if(WITH_QUICKTIME)
set(HAVE_QUICKTIME YES)
elseif(WITH_QTKIT)
set(HAVE_QTKIT YES)
endif()
endif()
endif(APPLE)
# --- Intel librealsense ---
if(WITH_LIBREALSENSE)
include("${OpenCV_SOURCE_DIR}/cmake/OpenCVFindLibRealsense.cmake")
endif(WITH_LIBREALSENSE)
# --- Intel Perceptual Computing SDK ---
if(WITH_INTELPERC)
include("${OpenCV_SOURCE_DIR}/cmake/OpenCVFindIntelPerCSDK.cmake")
+1 -1
View File
@@ -48,7 +48,7 @@ if(ANDROID)
string(REPLACE "opencv_" "" OPENCV_MODULES_CONFIGMAKE "${OPENCV_MODULES_CONFIGMAKE}")
if(BUILD_FAT_JAVA_LIB)
set(OPENCV_LIBS_CONFIGMAKE java4)
set(OPENCV_LIBS_CONFIGMAKE java3)
else()
set(OPENCV_LIBS_CONFIGMAKE "${OPENCV_MODULES_CONFIGMAKE}")
endif()
+2 -2
View File
@@ -33,7 +33,7 @@ endif()
# -------------------------------------------------------------------------------------------
# Part 1/3: ${BIN_DIR}/OpenCVConfig.cmake -> For use *without* "make install"
# -------------------------------------------------------------------------------------------
set(OpenCV_INCLUDE_DIRS_CONFIGCMAKE "\"${OPENCV_CONFIG_FILE_INCLUDE_DIR}\" \"${OpenCV_SOURCE_DIR}/include\"")
set(OpenCV_INCLUDE_DIRS_CONFIGCMAKE "\"${OPENCV_CONFIG_FILE_INCLUDE_DIR}\" \"${OpenCV_SOURCE_DIR}/include\" \"${OpenCV_SOURCE_DIR}/include/opencv\"")
foreach(m ${OPENCV_MODULES_BUILD})
if(EXISTS "${OPENCV_MODULE_${m}_LOCATION}/include")
@@ -68,7 +68,7 @@ configure_file("${OpenCV_SOURCE_DIR}/cmake/templates/OpenCVConfig-version.cmake.
# Part 2/3: ${BIN_DIR}/unix-install/OpenCVConfig.cmake -> For use *with* "make install"
# -------------------------------------------------------------------------------------------
file(RELATIVE_PATH OpenCV_INSTALL_PATH_RELATIVE_CONFIGCMAKE "${CMAKE_INSTALL_PREFIX}/${OPENCV_CONFIG_INSTALL_PATH}/" ${CMAKE_INSTALL_PREFIX})
set(OpenCV_INCLUDE_DIRS_CONFIGCMAKE "\"\${OpenCV_INSTALL_PATH}/${OPENCV_INCLUDE_INSTALL_PATH}\"")
set(OpenCV_INCLUDE_DIRS_CONFIGCMAKE "\"\${OpenCV_INSTALL_PATH}/${OPENCV_INCLUDE_INSTALL_PATH}\" \"\${OpenCV_INSTALL_PATH}/${OPENCV_INCLUDE_INSTALL_PATH}/opencv\"")
if(USE_IPPICV)
file(RELATIVE_PATH IPPICV_INSTALL_PATH_RELATIVE_CONFIGCMAKE "${CMAKE_INSTALL_PREFIX}" "${IPPICV_INSTALL_PATH}")
+2 -2
View File
@@ -43,9 +43,9 @@ endmacro()
if(NOT DEFINED CMAKE_HELPER_SCRIPT)
if(INSTALL_TO_MANGLED_PATHS)
ocv_update(OPENCV_PC_FILE_NAME "opencv-${OPENCV_VERSION}.pc")
set(OPENCV_PC_FILE_NAME "opencv-${OPENCV_VERSION}.pc")
else()
ocv_update(OPENCV_PC_FILE_NAME opencv4.pc)
set(OPENCV_PC_FILE_NAME opencv.pc)
endif()
# build the list of opencv libs and dependencies for all modules
+7 -2
View File
@@ -15,7 +15,7 @@ endif()
if(INSTALL_TO_MANGLED_PATHS)
ocv_update(OPENCV_SETUPVARS_FILENAME "setup_vars_opencv-${OPENCV_VERSION}${OPENCV_SCRIPT_EXTENSION}")
else()
ocv_update(OPENCV_SETUPVARS_FILENAME setup_vars_opencv4${OPENCV_SCRIPT_EXTENSION})
ocv_update(OPENCV_SETUPVARS_FILENAME setup_vars_opencv3${OPENCV_SCRIPT_EXTENSION})
endif()
##### build directory
@@ -43,7 +43,12 @@ else()
endif()
file(RELATIVE_PATH OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG
"${CMAKE_INSTALL_PREFIX}/${OPENCV_SETUPVARS_INSTALL_PATH}/" "${CMAKE_INSTALL_PREFIX}/")
ocv_path_join(OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG "${OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG}" "python_loader") # https://github.com/opencv/opencv/pull/12977
if(IS_ABSOLUTE "${OPENCV_PYTHON_INSTALL_PATH}")
set(OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG "${OPENCV_PYTHON_INSTALL_PATH}")
message(WARNING "CONFIGURATION IS NOT SUPPORTED: validate setupvars script in install directory")
else()
ocv_path_join(OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG "${OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG}" "${OPENCV_PYTHON_INSTALL_PATH}")
endif()
configure_file("${OpenCV_SOURCE_DIR}/cmake/templates/${OPENCV_SETUPVARS_TEMPLATE}" "${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/install/${OPENCV_SETUPVARS_FILENAME}" @ONLY)
install(FILES "${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/install/${OPENCV_SETUPVARS_FILENAME}"
DESTINATION "${OPENCV_SETUPVARS_INSTALL_PATH}"
+1 -1
View File
@@ -1,4 +1,4 @@
set(MIN_VER_CMAKE 3.5.1)
set(MIN_VER_CMAKE 2.8.12.2)
set(MIN_VER_CUDA 6.5)
set(MIN_VER_PYTHON2 2.7)
set(MIN_VER_PYTHON3 3.2)
-10
View File
@@ -1145,11 +1145,6 @@ function(ocv_add_perf_tests)
ocv_target_link_libraries(${the_target} LINK_PRIVATE ${perf_deps} ${OPENCV_MODULE_${the_module}_DEPS} ${OPENCV_LINKER_LIBS} ${OPENCV_PERF_${the_module}_DEPS})
add_dependencies(opencv_perf_tests ${the_target})
if(HAVE_HPX)
message("Linking HPX to Perf test of module ${name}")
ocv_target_link_libraries(${the_target} LINK_PRIVATE "${HPX_LIBRARIES}")
endif()
set_target_properties(${the_target} PROPERTIES LABELS "${OPENCV_MODULE_${the_module}_LABEL};PerfTest")
set_source_files_properties(${OPENCV_PERF_${the_module}_SOURCES} ${${the_target}_pch}
PROPERTIES LABELS "${OPENCV_MODULE_${the_module}_LABEL};PerfTest")
@@ -1235,11 +1230,6 @@ function(ocv_add_accuracy_tests)
ocv_target_link_libraries(${the_target} LINK_PRIVATE ${test_deps} ${OPENCV_MODULE_${the_module}_DEPS} ${OPENCV_LINKER_LIBS} ${OPENCV_TEST_${the_module}_DEPS})
add_dependencies(opencv_tests ${the_target})
if(HAVE_HPX)
message("Linking HPX to Perf test of module ${name}")
ocv_target_link_libraries(${the_target} LINK_PRIVATE "${HPX_LIBRARIES}")
endif()
set_target_properties(${the_target} PROPERTIES LABELS "${OPENCV_MODULE_${the_module}_LABEL};AccuracyTest")
set_source_files_properties(${OPENCV_TEST_${the_module}_SOURCES} ${${the_target}_pch}
PROPERTIES LABELS "${OPENCV_MODULE_${the_module}_LABEL};AccuracyTest")
+4 -4
View File
@@ -123,7 +123,7 @@ foreach(module calib3d core cudaarithm cudabgsegm cudacodec cudafeatures2d cudaf
cudev features2d flann hal highgui imgcodecs imgproc ml objdetect ocl
photo shape stitching superres ts video videoio videostab viz)
if(HAVE_opencv_${module})
list(APPEND STD_OPENCV_LIBS "libopencv-${module}4.0")
list(APPEND STD_OPENCV_LIBS "libopencv-${module}3.0")
list(APPEND STD_OPENCV_DEV "libopencv-${module}-dev")
endif()
endforeach()
@@ -140,9 +140,9 @@ set(CPACK_COMPONENT_PYTHON_CONFLICTS python-opencv)
set(CPACK_COMPONENT_PYTHON_PROVIDES python-opencv)
set(CPACK_COMPONENT_PYTHON_REPLACES python-opencv)
set(CPACK_COMPONENT_JAVA_CONFLICTS "libopencv4.0-java, libopencv4.0-jni")
set(CPACK_COMPONENT_JAVA_PROVIDES "libopencv4.0-java, libopencv4.0-jni")
set(CPACK_COMPONENT_JAVA_REPLACES "libopencv4.0-java, libopencv4.0-jni")
set(CPACK_COMPONENT_JAVA_CONFLICTS "libopencv3.0-java, libopencv3.0-jni")
set(CPACK_COMPONENT_JAVA_PROVIDES "libopencv3.0-java, libopencv3.0-jni")
set(CPACK_COMPONENT_JAVA_REPLACES "libopencv3.0-java, libopencv3.0-jni")
set(CPACK_COMPONENT_DOCS_CONFLICTS opencv-doc)
set(CPACK_COMPONENT_SAMPLES_CONFLICTS opencv-doc)
+4 -2
View File
@@ -605,7 +605,9 @@ macro(OCV_OPTION variable description value)
option(${variable} "${description}" ${__value})
endif()
else()
if(DEFINED ${variable} AND NOT OPENCV_HIDE_WARNING_UNSUPPORTED_OPTION)
if(DEFINED ${variable} AND "${${variable}}" # emit warnings about turned ON options only.
AND NOT (OPENCV_HIDE_WARNING_UNSUPPORTED_OPTION OR "$ENV{OPENCV_HIDE_WARNING_UNSUPPORTED_OPTION}")
)
message(WARNING "Unexpected option: ${variable} (=${${variable}})\nCondition: IF (${__condition})")
endif()
if(OPENCV_UNSET_UNSUPPORTED_OPTION)
@@ -1115,7 +1117,7 @@ function(ocv_install_3rdparty_licenses library)
get_filename_component(name "${filename}" NAME)
install(
FILES "${filename}"
DESTINATION "${OPENCV_LICENSES_INSTALL_PATH}"
DESTINATION "${OPENCV_OTHER_INSTALL_PATH}/licenses"
COMPONENT licenses
RENAME "${library}-${name}"
OPTIONAL)
+5 -16
View File
@@ -1,25 +1,14 @@
#include <iostream>
#include <sstream>
#include <list>
#include <stdio.h>
int main()
{
std::ostringstream arch;
std::list<std::string> archs;
int count = 0;
if (cudaSuccess != cudaGetDeviceCount(&count)){ return -1; }
if (count == 0) { return -1; }
if (cudaSuccess != cudaGetDeviceCount(&count)){return -1;}
if (count == 0) {return -1;}
for (int device = 0; device < count; ++device)
{
cudaDeviceProp prop;
if (cudaSuccess != cudaGetDeviceProperties(&prop, device)){ continue; }
arch << prop.major << "." << prop.minor;
archs.push_back(arch.str());
arch.str("");
if (cudaSuccess != cudaGetDeviceProperties(&prop, device)){ continue;}
printf("%d.%d ", prop.major, prop.minor);
}
archs.unique(); #Some devices might have the same arch
for (std::list<std::string>::iterator it=archs.begin(); it!=archs.end(); ++it)
std::cout << *it << " ";
return 0;
}
+10
View File
@@ -0,0 +1,10 @@
#include <windows.h>
#include <vfw.h>
int main()
{
AVIFileInit();
AVIFileExit();
return 0;
}
-9
View File
@@ -1,9 +0,0 @@
#include <vtkSmartPointer.h>
#include <vtkTransform.h>
#include <vtkMath.h>
int main()
{
vtkSmartPointer<vtkTransform> transform = vtkSmartPointer<vtkTransform>::New();
return 0;
}
-6
View File
@@ -1,6 +0,0 @@
#include <vulkan/vulkan.h>
int main(int /*argc*/, char** /*argv*/)
{
return 0;
}
+28 -9
View File
@@ -25,9 +25,15 @@
/* AVFoundation video libraries */
#cmakedefine HAVE_AVFOUNDATION
/* V4L capturing support */
#cmakedefine HAVE_CAMV4L
/* V4L2 capturing support */
#cmakedefine HAVE_CAMV4L2
/* Carbon windowing environment */
#cmakedefine HAVE_CARBON
/* AMD's Basic Linear Algebra Subprograms Library*/
#cmakedefine HAVE_CLAMDBLAS
@@ -40,6 +46,9 @@
/* Cocoa API */
#cmakedefine HAVE_COCOA
/* C= */
#cmakedefine HAVE_CSTRIPES
/* NVIDIA CUDA Basic Linear Algebra Subprograms (BLAS) API*/
#cmakedefine HAVE_CUBLAS
@@ -86,9 +95,6 @@
/* Halide support */
#cmakedefine HAVE_HALIDE
/* Vulkan support */
#cmakedefine HAVE_VULKAN
/* Define to 1 if you have the <inttypes.h> header file. */
#cmakedefine HAVE_INTTYPES_H 1
@@ -113,6 +119,9 @@
/* GDCM DICOM codec */
#cmakedefine HAVE_GDCM
/* V4L/V4L2 capturing support via libv4l */
#cmakedefine HAVE_LIBV4L
/* Microsoft Media Foundation Capture library */
#cmakedefine HAVE_MSMF
@@ -139,9 +148,6 @@
/* OpenNI library */
#cmakedefine HAVE_OPENNI2
/* librealsense library */
#cmakedefine HAVE_LIBREALSENSE
/* PNG codec */
#cmakedefine HAVE_PNG
@@ -157,15 +163,24 @@
/* Qt OpenGL support */
#cmakedefine HAVE_QT_OPENGL
/* QuickTime video libraries */
#cmakedefine HAVE_QUICKTIME
/* QTKit video libraries */
#cmakedefine HAVE_QTKIT
/* Intel Threading Building Blocks */
#cmakedefine HAVE_TBB
/* Ste||ar Group High Performance ParallelX */
#cmakedefine HAVE_HPX
/* TIFF codec */
#cmakedefine HAVE_TIFF
/* Unicap video capture library */
#cmakedefine HAVE_UNICAP
/* Video for Windows support */
#cmakedefine HAVE_VFW
/* V4L2 capturing support in videoio.h */
#cmakedefine HAVE_VIDEOIO
@@ -205,6 +220,8 @@
#if defined(HAVE_XINE) || \
defined(HAVE_GSTREAMER) || \
defined(HAVE_QUICKTIME) || \
defined(HAVE_QTKIT) || \
defined(HAVE_AVFOUNDATION) || \
/*defined(HAVE_OPENNI) || too specialized */ \
defined(HAVE_FFMPEG) || \
@@ -214,6 +231,8 @@
#if /*defined(HAVE_XINE) || */\
defined(HAVE_GSTREAMER) || \
defined(HAVE_QUICKTIME) || \
defined(HAVE_QTKIT) || \
defined(HAVE_AVFOUNDATION) || \
defined(HAVE_FFMPEG) || \
defined(HAVE_MSMF)
+28 -10
View File
@@ -1,18 +1,36 @@
@ECHO OFF
SETLOCAL EnableDelayedExpansion
SET "SCRIPT_DIR=%~dp0"
IF NOT DEFINED OPENCV_QUIET ( ECHO Setting vars for OpenCV @OPENCV_VERSION@ )
SET "PATH=!SCRIPT_DIR!\@OPENCV_LIB_RUNTIME_DIR_RELATIVE_CMAKECONFIG@;%PATH%"
SET "PATH=%SCRIPT_DIR%\@OPENCV_LIB_RUNTIME_DIR_RELATIVE_CMAKECONFIG@;%PATH%"
IF NOT DEFINED OPENCV_SKIP_PYTHON (
SET "PYTHONPATH_OPENCV=!SCRIPT_DIR!\@OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG@"
IF NOT DEFINED OPENCV_QUIET ( ECHO Append PYTHONPATH: !PYTHONPATH_OPENCV! )
SET "PYTHONPATH=!PYTHONPATH_OPENCV!;%PYTHONPATH%"
)
IF NOT DEFINED OPENCV_SKIP_PYTHON CALL :SET_PYTHON
IF NOT [%1] == [] (
%*
EXIT /B !errorlevel!
SET SCRIPT_DIR=
IF NOT [%1] == [] GOTO :RUN_COMMAND
GOTO :EOF
:RUN_COMMAND
SET RUN_INTERACTIVE=1
echo %CMDCMDLINE% | find /i "%~0" >nul
IF NOT errorlevel 1 set RUN_INTERACTIVE=0
%*
SET RESULT=%ERRORLEVEL%
IF %RESULT% NEQ 0 (
IF _%RUN_INTERACTIVE%_==_0_ ( IF NOT DEFINED OPENCV_BATCH_MODE ( pause ) )
)
EXIT /B %RESULT%
:SET_PYTHON
SET "PYTHONPATH_OPENCV=%SCRIPT_DIR%\@OPENCV_PYTHON_DIR_RELATIVE_CMAKECONFIG@"
IF NOT DEFINED OPENCV_QUIET ( ECHO Append PYTHONPATH: %PYTHONPATH_OPENCV% )
SET "PYTHONPATH=%PYTHONPATH_OPENCV%;%PYTHONPATH%"
SET PYTHONPATH_OPENCV=
EXIT /B
:EOF
-17
View File
@@ -21,12 +21,6 @@ if(DOXYGEN_FOUND)
set(OPENCV_MATHJAX_RELPATH "https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.0" CACHE STRING "URI to a MathJax installation")
set(OPENCV_DOCS_EXCLUDE_CUDA ON)
if(";${OPENCV_MODULES_EXTRA};" MATCHES ";cudev;")
set(OPENCV_DOCS_EXCLUDE_CUDA OFF)
list(APPEND CMAKE_DOXYGEN_ENABLED_SECTIONS "CUDA_MODULES")
endif()
# gathering headers
set(paths_include)
set(paths_doc)
@@ -45,15 +39,6 @@ if(DOXYGEN_FOUND)
if(EXISTS "${header_dir}")
list(APPEND paths_include "${header_dir}")
list(APPEND deps ${header_dir})
if(OPENCV_DOCS_EXCLUDE_CUDA)
if(EXISTS "${OPENCV_MODULE_opencv_${m}_LOCATION}/include/opencv2/${m}/cuda")
list(APPEND CMAKE_DOXYGEN_EXCLUDE_LIST "${OPENCV_MODULE_opencv_${m}_LOCATION}/include/opencv2/${m}/cuda")
endif()
file(GLOB list_cuda_files "${OPENCV_MODULE_opencv_${m}_LOCATION}/include/opencv2/${m}/*cuda*.hpp")
if(list_cuda_files)
list(APPEND CMAKE_DOXYGEN_EXCLUDE_LIST ${list_cuda_files})
endif()
endif()
endif()
# doc folder
set(docs_dir "${OPENCV_MODULE_opencv_${m}_LOCATION}/doc")
@@ -140,8 +125,6 @@ if(DOXYGEN_FOUND)
# set export variables
string(REPLACE ";" " \\\n" CMAKE_DOXYGEN_INPUT_LIST "${rootfile} ; ${faqfile} ; ${paths_include} ; ${paths_hal_interface} ; ${paths_doc} ; ${tutorial_path} ; ${tutorial_py_path} ; ${tutorial_js_path} ; ${paths_tutorial} ; ${tutorial_contrib_root}")
string(REPLACE ";" " \\\n" CMAKE_DOXYGEN_IMAGE_PATH "${paths_doc} ; ${tutorial_path} ; ${tutorial_py_path} ; ${tutorial_js_path} ; ${paths_tutorial}")
string(REPLACE ";" " \\\n" CMAKE_DOXYGEN_EXCLUDE_LIST "${CMAKE_DOXYGEN_EXCLUDE_LIST}")
string(REPLACE ";" " " CMAKE_DOXYGEN_ENABLED_SECTIONS "${CMAKE_DOXYGEN_ENABLED_SECTIONS}")
# TODO: remove paths_doc from EXAMPLE_PATH after face module tutorials/samples moved to separate folders
string(REPLACE ";" " \\\n" CMAKE_DOXYGEN_EXAMPLE_PATH "${example_path} ; ${paths_doc} ; ${paths_sample}")
set(CMAKE_DOXYGEN_LAYOUT "${CMAKE_CURRENT_BINARY_DIR}/DoxygenLayout.xml")
+3 -7
View File
@@ -85,7 +85,7 @@ GENERATE_TODOLIST = YES
GENERATE_TESTLIST = YES
GENERATE_BUGLIST = YES
GENERATE_DEPRECATEDLIST= YES
ENABLED_SECTIONS = @CMAKE_DOXYGEN_ENABLED_SECTIONS@
ENABLED_SECTIONS =
MAX_INITIALIZER_LINES = 30
SHOW_USED_FILES = YES
SHOW_FILES = YES
@@ -104,7 +104,7 @@ INPUT = @CMAKE_DOXYGEN_INPUT_LIST@
INPUT_ENCODING = UTF-8
FILE_PATTERNS =
RECURSIVE = YES
EXCLUDE = @CMAKE_DOXYGEN_EXCLUDE_LIST@
EXCLUDE =
EXCLUDE_SYMLINKS = NO
EXCLUDE_PATTERNS = *.inl.hpp *.impl.hpp *_detail.hpp */cudev/**/detail/*.hpp *.m */opencl/runtime/*
EXCLUDE_SYMBOLS = cv::DataType<*> cv::traits::* int void CV__* T __CV*
@@ -234,17 +234,12 @@ PREDEFINED = __cplusplus=1 \
CV_EXPORTS_W_SIMPLE= \
CV_EXPORTS_AS(x)= \
CV_EXPORTS_W_MAP= \
GAPI_EXPORTS= \
GAPI_EXPORTS_W= \
CV_IN_OUT= \
CV_OUT= \
CV_PROP= \
CV_PROP_RW= \
CV_WRAP= \
CV_WRAP_AS(x)= \
CV_WRAP_MAPPABLE(x)= \
CV_WRAP_PHANTOM(x)= \
CV_WRAP_DEFAULT(x)= \
CV_CDECL= \
CV_Func = \
CV_DO_PRAGMA(x)= \
@@ -257,6 +252,7 @@ PREDEFINED = __cplusplus=1 \
CV_SSE2=1 \
CV__DEBUG_NS_BEGIN= \
CV__DEBUG_NS_END= \
CV_DEPRECATED_EXTERNAL= \
CV_DEPRECATED=
EXPAND_AS_DEFINED =
SKIP_FUNCTION_MACROS = YES
+2 -7
View File
@@ -1016,25 +1016,20 @@
year = {2017},
organization = {IEEE}
}
@ARTICLE{gonzalez,
title={Digital Image Fundamentals, Digital Imaging Processing},
author={Gonzalez, Rafael C and others},
year={1987},
publisher={Addison Wesley Publishing Company}
}
@ARTICLE{gruzman,
title={Цифровая обработка изображений в информационных системах},
author={Грузман, И.С. and Киричук, В.С. and Косых, В.П. and Перетягин, Г.И. and Спектор, А.А.},
year={2000},
publisher={Изд-во НГТУ Новосибирск}
}
@INPROCEEDINGS{duda2018,
title = {Accurate Detection and Localization of Checkerboard Corners for Calibration},
year = {2018},
booktitle = {29th British Machine Vision Conference. British Machine Vision Conference (BMVC-29), September 3-6, Newcastle, United Kingdom},
publisher = {BMVA Press},
author = {Alexander Duda and Udo Frese},
}
@book{jahne2000computer,
title={Computer vision and applications: a guide for students and practitioners},
@@ -20,20 +20,20 @@ A simple example on extending C++ functions to Python can be found in official P
documentation[1]. So extending all functions in OpenCV to Python by writing their wrapper functions
manually is a time-consuming task. So OpenCV does it in a more intelligent way. OpenCV generates
these wrapper functions automatically from the C++ headers using some Python scripts which are
located in `modules/python/src2`. We will look into what they do.
located in modules/python/src2. We will look into what they do.
First, `modules/python/CMakeFiles.txt` is a CMake script which checks the modules to be extended to
First, modules/python/CMakeFiles.txt is a CMake script which checks the modules to be extended to
Python. It will automatically check all the modules to be extended and grab their header files.
These header files contain list of all classes, functions, constants etc. for that particular
modules.
Second, these header files are passed to a Python script, `modules/python/src2/gen2.py`. This is the
Python bindings generator script. It calls another Python script `modules/python/src2/hdr_parser.py`.
Second, these header files are passed to a Python script, modules/python/src2/gen2.py. This is the
Python bindings generator script. It calls another Python script modules/python/src2/hdr_parser.py.
This is the header parser script. This header parser splits the complete header file into small
Python lists. So these lists contain all details about a particular function, class etc. For
example, a function will be parsed to get a list containing function name, return type, input
arguments, argument types etc. Final list contains details of all the functions, enums, structs,
classes etc. in that header file.
arguments, argument types etc. Final list contains details of all the functions, structs, classes
etc. in that header file.
But header parser doesn't parse all the functions/classes in the header file. The developer has to
specify which functions should be exported to Python. For that, there are certain macros added to
@@ -44,15 +44,15 @@ macros will be given in next session.
So header parser returns a final big list of parsed functions. Our generator script (gen2.py) will
create wrapper functions for all the functions/classes/enums/structs parsed by header parser (You
can find these header files during compilation in the `build/modules/python/` folder as
can find these header files during compilation in the build/modules/python/ folder as
pyopencv_generated_\*.h files). But there may be some basic OpenCV datatypes like Mat, Vec4i,
Size. They need to be extended manually. For example, a Mat type should be extended to Numpy array,
Size should be extended to a tuple of two integers etc. Similarly, there may be some complex
structs/classes/functions etc. which need to be extended manually. All such manual wrapper functions
are placed in `modules/python/src2/cv2.cpp`.
are placed in modules/python/src2/cv2.cpp.
So now only thing left is the compilation of these wrapper files which gives us **cv2** module. So
when you call a function, say `res = equalizeHist(img1,img2)` in Python, you pass two numpy arrays and
when you call a function, say res = equalizeHist(img1,img2) in Python, you pass two numpy arrays and
you expect another numpy array as the output. So these numpy arrays are converted to cv::Mat and
then calls the equalizeHist() function in C++. Final result, res will be converted back into a Numpy
array. So in short, almost all operations are done in C++ which gives us almost same speed as that
@@ -67,19 +67,19 @@ Header parser parse the header files based on some wrapper macros added to funct
Enumeration constants don't need any wrapper macros. They are automatically wrapped. But remaining
functions, classes etc. need wrapper macros.
Functions are extended using `CV_EXPORTS_W` macro. An example is shown below.
Functions are extended using CV_EXPORTS_W macro. An example is shown below.
@code{.cpp}
CV_EXPORTS_W void equalizeHist( InputArray src, OutputArray dst );
@endcode
Header parser can understand the input and output arguments from keywords like
InputArray, OutputArray etc. But sometimes, we may need to hardcode inputs and outputs. For that,
macros like `CV_OUT`, `CV_IN_OUT` etc. are used.
macros like CV_OUT, CV_IN_OUT etc. are used.
@code{.cpp}
CV_EXPORTS_W void minEnclosingCircle( InputArray points,
CV_OUT Point2f& center, CV_OUT float& radius );
@endcode
For large classes also, `CV_EXPORTS_W` is used. To extend class methods, `CV_WRAP` is used.
Similarly, `CV_PROP` is used for class fields.
For large classes also, CV_EXPORTS_W is used. To extend class methods, CV_WRAP is used.
Similarly, CV_PROP is used for class fields.
@code{.cpp}
class CV_EXPORTS_W CLAHE : public Algorithm
{
@@ -90,9 +90,9 @@ public:
CV_WRAP virtual double getClipLimit() const = 0;
}
@endcode
Overloaded functions can be extended using `CV_EXPORTS_AS`. But we need to pass a new name so that
Overloaded functions can be extended using CV_EXPORTS_AS. But we need to pass a new name so that
each function will be called by that name in Python. Take the case of integral function below. Three
functions are available, so each one is named with a suffix in Python. Similarly `CV_WRAP_AS` can be
functions are available, so each one is named with a suffix in Python. Similarly CV_WRAP_AS can be
used to wrap overloaded methods.
@code{.cpp}
//! computes the integral image
@@ -107,9 +107,9 @@ CV_EXPORTS_AS(integral3) void integral( InputArray src, OutputArray sum,
OutputArray sqsum, OutputArray tilted,
int sdepth = -1, int sqdepth = -1 );
@endcode
Small classes/structs are extended using `CV_EXPORTS_W_SIMPLE`. These structs are passed by value
to C++ functions. Examples are `KeyPoint`, `Match` etc. Their methods are extended by `CV_WRAP` and
fields are extended by `CV_PROP_RW`.
Small classes/structs are extended using CV_EXPORTS_W_SIMPLE. These structs are passed by value
to C++ functions. Examples are KeyPoint, Match etc. Their methods are extended by CV_WRAP and
fields are extended by CV_PROP_RW.
@code{.cpp}
class CV_EXPORTS_W_SIMPLE DMatch
{
@@ -125,8 +125,8 @@ public:
CV_PROP_RW float distance;
};
@endcode
Some other small classes/structs can be exported using `CV_EXPORTS_W_MAP` where it is exported to a
Python native dictionary. `Moments()` is an example of it.
Some other small classes/structs can be exported using CV_EXPORTS_W_MAP where it is exported to a
Python native dictionary. Moments() is an example of it.
@code{.cpp}
class CV_EXPORTS_W_MAP Moments
{
@@ -142,41 +142,6 @@ public:
So these are the major extension macros available in OpenCV. Typically, a developer has to put
proper macros in their appropriate positions. Rest is done by generator scripts. Sometimes, there
may be an exceptional cases where generator scripts cannot create the wrappers. Such functions need
to be handled manually, to do this write your own `pyopencv_*.hpp` extending headers and put them into
to be handled manually, to do this write your own pyopencv_*.hpp extending headers and put them into
misc/python subdirectory of your module. But most of the time, a code written according to OpenCV
coding guidelines will be automatically wrapped by generator scripts.
More advanced cases involves providing Python with additional features that does not exist
in the C++ interface such as extra methods, type mappings, or to provide default arguments.
We will take `UMat` datatype as an example of such cases later on.
First, to provide Python-specific methods, `CV_WRAP_PHANTOM` is utilized in a similar manner to
`CV_WRAP`, except that it takes the method header as its argument, and you would need to provide
the method body in your own `pyopencv_*.hpp` extension. `UMat::queue()` and `UMat::context()` are
an example of such phantom methods that does not exist in C++ interface, but are needed to handle
OpenCL functionalities at the Python side.
Second, if an already-existing datatype(s) is mappable to your class, it is highly preferable to
indicate such capacity using `CV_WRAP_MAPPABLE` with the source type as its argument,
rather than crafting your own binding function(s). This is the case of `UMat` which maps from `Mat`.
Finally, if a default argument is needed, but it is not provided in the native C++ interface,
you can provide it for Python side as the argument of `CV_WRAP_DEFAULT`. As per the `UMat::getMat`
example below:
@code{.cpp}
class CV_EXPORTS_W UMat
{
public:
//! Mat is mappable to UMat.
// You would need to provide `static bool cv_mappable_to(const Ptr<Mat>& src, Ptr<UMat>& dst)`
CV_WRAP_MAPPABLE(Ptr<Mat>);
/! returns the OpenCL queue used by OpenCV UMat.
// You would need to provide the method body in the binder code
CV_WRAP_PHANTOM(static void* queue());
//! returns the OpenCL context used by OpenCV UMat
// You would need to provide the method body in the binder code
CV_WRAP_PHANTOM(static void* context());
//! The wrapped method become equvalent to `get(int flags = ACCESS_RW)`
CV_WRAP_AS(get) Mat getMat(int flags CV_WRAP_DEFAULT(ACCESS_RW)) const;
};
@endcode
coding guidelines will be automatically wrapped by generator scripts.
@@ -23,7 +23,7 @@ import cv2 as cv
img = cv.imread('star.jpg',0)
ret,thresh = cv.threshold(img,127,255,0)
contours,hierarchy = cv.findContours(thresh, 1, 2)
im2,contours,hierarchy = cv.findContours(thresh, 1, 2)
cnt = contours[0]
M = cv.moments(cnt)
@@ -17,7 +17,7 @@ detection and recognition.
- For better accuracy, use binary images. So before finding contours, apply threshold or canny
edge detection.
- Since OpenCV 3.2, findContours() no longer modifies the source image.
- Since OpenCV 3.2, findContours() no longer modifies the source image but returns a modified image as the first of three return parameters.
- In OpenCV, finding contours is like finding white object from black background. So remember,
object to be found should be white and background should be black.
@@ -29,11 +29,11 @@ import cv2 as cv
im = cv.imread('test.jpg')
imgray = cv.cvtColor(im, cv.COLOR_BGR2GRAY)
ret, thresh = cv.threshold(imgray, 127, 255, 0)
contours, hierarchy = cv.findContours(thresh, cv.RETR_TREE, cv.CHAIN_APPROX_SIMPLE)
im2, contours, hierarchy = cv.findContours(thresh, cv.RETR_TREE, cv.CHAIN_APPROX_SIMPLE)
@endcode
See, there are three arguments in **cv.findContours()** function, first one is source image, second
is contour retrieval mode, third is contour approximation method. And it outputs the contours and hierarchy.
Contours is a Python list of all the contours in the image. Each individual contour is a
is contour retrieval mode, third is contour approximation method. And it outputs a modified image, the contours and
hierarchy. contours is a Python list of all the contours in the image. Each individual contour is a
Numpy array of (x,y) coordinates of boundary points of the object.
@note We will discuss second and third arguments and about hierarchy in details later. Until then,
@@ -39,7 +39,7 @@ import numpy as np
img = cv.imread('star.jpg')
img_gray = cv.cvtColor(img,cv.COLOR_BGR2GRAY)
ret,thresh = cv.threshold(img_gray, 127, 255,0)
contours,hierarchy = cv.findContours(thresh,2,1)
im2,contours,hierarchy = cv.findContours(thresh,2,1)
cnt = contours[0]
hull = cv.convexHull(cnt,returnPoints = False)
@@ -93,9 +93,9 @@ img2 = cv.imread('star2.jpg',0)
ret, thresh = cv.threshold(img1, 127, 255,0)
ret, thresh2 = cv.threshold(img2, 127, 255,0)
contours,hierarchy = cv.findContours(thresh,2,1)
im2,contours,hierarchy = cv.findContours(thresh,2,1)
cnt1 = contours[0]
contours,hierarchy = cv.findContours(thresh2,2,1)
im2,contours,hierarchy = cv.findContours(thresh2,2,1)
cnt2 = contours[0]
ret = cv.matchShapes(cnt1,cnt2,1,0.0)
@@ -79,11 +79,11 @@ using **np.ifft2()** function. The result, again, will be a complex number. You
absolute value.
@code{.py}
rows, cols = img.shape
crow,ccol = rows/2 , cols/2
fshift[crow-30:crow+30, ccol-30:ccol+30] = 0
crow,ccol = rows//2 , cols//2
fshift[crow-30:crow+31, ccol-30:ccol+31] = 0
f_ishift = np.fft.ifftshift(fshift)
img_back = np.fft.ifft2(f_ishift)
img_back = np.abs(img_back)
img_back = np.real(img_back)
plt.subplot(131),plt.imshow(img, cmap = 'gray')
plt.title('Input Image'), plt.xticks([]), plt.yticks([])
@@ -36,7 +36,7 @@ gives us a feature vector containing 64 values. This is the feature vector we us
Finally, as in the previous case, we start by splitting our big dataset into individual cells. For
every digit, 250 cells are reserved for training data and remaining 250 data is reserved for
testing. Full code is given below, you also can download it from [here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/ml/py_svm_opencv/hogsvm.py):
testing. Full code is given below, you also can download it from [here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/ml/py_svm_opencv/hogsvm.py):
@include samples/python/tutorial_code/ml/py_svm_opencv/hogsvm.py
@@ -62,11 +62,12 @@ yum install cmake
yum install python-devel numpy
yum install gcc gcc-c++
@endcode
Next we need **GTK** support for GUI features, Camera support (libdc1394, v4l), Media Support
Next we need **GTK** support for GUI features, Camera support (libdc1394, libv4l), Media Support
(ffmpeg, gstreamer) etc.
@code{.sh}
yum install gtk2-devel
yum install libdc1394-devel
yum install libv4l-devel
yum install ffmpeg-devel
yum install gstreamer-plugins-base-devel
@endcode
@@ -66,11 +66,12 @@ sudo apt-get install python-devel numpy
sudo apt-get install gcc gcc-c++
```
Next we need **GTK** support for GUI features, Camera support (v4l), Media Support
Next we need **GTK** support for GUI features, Camera support (libv4l), Media Support
(ffmpeg, gstreamer) etc.
```
sudo apt-get install gtk2-devel
sudo apt-get install libv4l-devel
sudo apt-get install ffmpeg-devel
sudo apt-get install gstreamer-plugins-base-devel
```
@@ -77,13 +77,13 @@ Source code
You may also find the source code in the `samples/cpp/tutorial_code/calib3d/camera_calibration/`
folder of the OpenCV source library or [download it from here
](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/calib3d/camera_calibration/camera_calibration.cpp). For the usage of the program, run it with `-h` argument. The program has an
essential argument: the name of its configuration file. If none is given then it will try to open the
](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/calib3d/camera_calibration/camera_calibration.cpp). The program has a
single argument: the name of its configuration file. If none is given then it will try to open the
one named "default.xml". [Here's a sample configuration file
](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/calib3d/camera_calibration/in_VID5.xml) in XML format. In the
](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/calib3d/camera_calibration/in_VID5.xml) in XML format. In the
configuration file you may choose to use camera as an input, a video file or an image list. If you
opt for the last one, you will need to create a configuration file where you enumerate the images to
use. Here's [an example of this ](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/calib3d/camera_calibration/VID5.xml).
use. Here's [an example of this ](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/calib3d/camera_calibration/VID5.xml).
The important part to remember is that the images need to be specified using the absolute path or
the relative one from your application's working directory. You may find all this in the samples
directory mentioned above.
@@ -131,8 +131,6 @@ Explanation
Similar images result in similar equations, and similar equations at the calibration step will
form an ill-posed problem, so the calibration will fail. For square images the positions of the
corners are only approximate. We may improve this by calling the @ref cv::cornerSubPix function.
(`winSize` is used to control the side length of the search window. Its default value is 11.
`winSzie` may be changed by command line parameter `--winSize=<number>`.)
It will produce better calibration result. After this we add a valid inputs result to the
*imagePoints* vector to collect all of the equations into a single container. Finally, for
visualization feedback purposes we will draw the found points on the input image using @ref
@@ -172,7 +170,7 @@ of the calibration variables we'll create these variables here and pass on both
calibration and saving function. Again, I'll not show the saving part as that has little in common
with the calibration. Explore the source file in order to find out how and what:
@snippet samples/cpp/tutorial_code/calib3d/camera_calibration/camera_calibration.cpp run_and_save
We do the calibration with the help of the @ref cv::calibrateCameraRO function. It has the following
We do the calibration with the help of the @ref cv::calibrateCamera function. It has the following
parameters:
- The object points. This is a vector of *Point3f* vector that for each input image describes how
@@ -186,33 +184,13 @@ parameters:
@code{.cpp}
vector<vector<Point3f> > objectPoints(1);
calcBoardCornerPositions(s.boardSize, s.squareSize, objectPoints[0], s.calibrationPattern);
objectPoints[0][s.boardSize.width - 1].x = objectPoints[0][0].x + grid_width;
newObjPoints = objectPoints[0];
objectPoints.resize(imagePoints.size(),objectPoints[0]);
@endcode
@note If your calibration board is inaccurate, unmeasured, roughly planar targets (Checkerboard
patterns on paper using off-the-shelf printers are the most convenient calibration targets and
most of them are not accurate enough.), a method from @cite strobl2011iccv can be utilized to
dramatically improve the accuracies of the estimated camera intrinsic parameters. This new
calibration method will be called if command line parameter `-d=<number>` is provided. In the
above code snippet, `grid_width` is actually the value set by `-d=<number>`. It's the measured
distance between top-left (0, 0, 0) and top-right (s.squareSize*(s.boardSize.width-1), 0, 0)
corners of the pattern grid points. It should be measured precisely with rulers or vernier calipers.
After calibration, newObjPoints will be updated with refined 3D coordinates of object points.
- The image points. This is a vector of *Point2f* vector which for each input image contains
coordinates of the important points (corners for chessboard and centers of the circles for the
circle pattern). We have already collected this from @ref cv::findChessboardCorners or @ref
cv::findCirclesGrid function. We just need to pass it on.
- The size of the image acquired from the camera, video file or the images.
- The index of the object point to be fixed. We set it to -1 to request standard calibration method.
If the new object-releasing method to be used, set it to the index of the top-right corner point
of the calibration board grid. See cv::calibrateCameraRO for detailed explanation.
@code{.cpp}
int iFixedPoint = -1;
if (release_object)
iFixedPoint = s.boardSize.width - 1;
@endcode
- The camera matrix. If we used the fixed aspect ratio option we need to set \f$f_x\f$:
@snippet samples/cpp/tutorial_code/calib3d/camera_calibration/camera_calibration.cpp fixed_aspect
- The distortion coefficient matrix. Initialize with zero.
@@ -224,15 +202,11 @@ parameters:
coordinate space). The 7-th and 8-th parameters are the output vector of matrices containing in
the i-th position the rotation and translation vector for the i-th object point to the i-th
image point.
- The updated output vector of calibration pattern points. This parameter is ignored with standard
calibration method.
- The final argument is the flag. You need to specify here options like fix the aspect ratio for
the focal length, assume zero tangential distortion or to fix the principal point. Here we use
CALIB_USE_LU to get faster calibration speed.
the focal length, assume zero tangential distortion or to fix the principal point.
@code{.cpp}
rms = calibrateCameraRO(objectPoints, imagePoints, imageSize, iFixedPoint,
cameraMatrix, distCoeffs, rvecs, tvecs, newObjPoints,
s.flag | CALIB_USE_LU);
double rms = calibrateCamera(objectPoints, imagePoints, imageSize, cameraMatrix,
distCoeffs, rvecs, tvecs, s.flag|CV_CALIB_FIX_K4|CV_CALIB_FIX_K5);
@endcode
- The function returns the average re-projection error. This number gives a good estimation of
precision of the found parameters. This should be as close to zero as possible. Given the
@@ -13,7 +13,7 @@ Although we get most of our images in a 2D format they do come from a 3D world.
- @subpage tutorial_camera_calibration
*Compatibility:* \> OpenCV 4.0
*Compatibility:* \> OpenCV 2.0
*Author:* Bernát Gábor
@@ -33,19 +33,19 @@ Source Code
@add_toggle_cpp
Download the source code from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/cpp/tutorial_code/core/AddingImages/AddingImages.cpp).
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/cpp/tutorial_code/core/AddingImages/AddingImages.cpp).
@include cpp/tutorial_code/core/AddingImages/AddingImages.cpp
@end_toggle
@add_toggle_java
Download the source code from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/java/tutorial_code/core/AddingImages/AddingImages.java).
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/java/tutorial_code/core/AddingImages/AddingImages.java).
@include java/tutorial_code/core/AddingImages/AddingImages.java
@end_toggle
@add_toggle_python
Download the source code from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/python/tutorial_code/core/AddingImages/adding_images.py).
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/python/tutorial_code/core/AddingImages/adding_images.py).
@include python/tutorial_code/core/AddingImages/adding_images.py
@end_toggle
@@ -69,7 +69,7 @@ We need two source images (\f$f_{0}(x)\f$ and \f$f_{1}(x)\f$). So, we load them
@snippet python/tutorial_code/core/AddingImages/adding_images.py load
@end_toggle
We used the following images: [LinuxLogo.jpg](https://raw.githubusercontent.com/opencv/opencv/master/samples/data/LinuxLogo.jpg) and [WindowsLogo.jpg](https://raw.githubusercontent.com/opencv/opencv/master/samples/data/WindowsLogo.jpg)
We used the following images: [LinuxLogo.jpg](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/data/LinuxLogo.jpg) and [WindowsLogo.jpg](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/data/WindowsLogo.jpg)
@warning Since we are *adding* *src1* and *src2*, they both have to be of the same size
(width and height) and type.
@@ -58,7 +58,7 @@ Code
@add_toggle_cpp
- **Downloadable code**: Click
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/ImgProc/BasicLinearTransforms.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/ImgProc/BasicLinearTransforms.cpp)
- The following code performs the operation \f$g(i,j) = \alpha \cdot f(i,j) + \beta\f$ :
@include samples/cpp/tutorial_code/ImgProc/BasicLinearTransforms.cpp
@@ -66,7 +66,7 @@ Code
@add_toggle_java
- **Downloadable code**: Click
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/ImgProc/changing_contrast_brightness_image/BasicLinearTransformsDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/ImgProc/changing_contrast_brightness_image/BasicLinearTransformsDemo.java)
- The following code performs the operation \f$g(i,j) = \alpha \cdot f(i,j) + \beta\f$ :
@include samples/java/tutorial_code/ImgProc/changing_contrast_brightness_image/BasicLinearTransformsDemo.java
@@ -74,7 +74,7 @@ Code
@add_toggle_python
- **Downloadable code**: Click
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/imgProc/changing_contrast_brightness_image/BasicLinearTransforms.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/imgProc/changing_contrast_brightness_image/BasicLinearTransforms.py)
- The following code performs the operation \f$g(i,j) = \alpha \cdot f(i,j) + \beta\f$ :
@include samples/python/tutorial_code/imgProc/changing_contrast_brightness_image/BasicLinearTransforms.py
@@ -284,15 +284,15 @@ and are not intended to be used as a replacement of a raster graphics editor!**
### Code
@add_toggle_cpp
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/master/samples/cpp/tutorial_code/ImgProc/changing_contrast_brightness_image/changing_contrast_brightness_image.cpp).
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/3.4/samples/cpp/tutorial_code/ImgProc/changing_contrast_brightness_image/changing_contrast_brightness_image.cpp).
@end_toggle
@add_toggle_java
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/master/samples/java/tutorial_code/ImgProc/changing_contrast_brightness_image/ChangingContrastBrightnessImageDemo.java).
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/3.4/samples/java/tutorial_code/ImgProc/changing_contrast_brightness_image/ChangingContrastBrightnessImageDemo.java).
@end_toggle
@add_toggle_python
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/master/samples/python/tutorial_code/imgProc/changing_contrast_brightness_image/changing_contrast_brightness_image.py).
Code for the tutorial is [here](https://github.com/opencv/opencv/blob/3.4/samples/python/tutorial_code/imgProc/changing_contrast_brightness_image/changing_contrast_brightness_image.py).
@end_toggle
Code for the gamma correction:
@@ -19,7 +19,7 @@ Source code
@add_toggle_cpp
You can [download this from here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/cpp/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.cpp) or
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/cpp/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.cpp) or
find it in the
`samples/cpp/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.cpp` of the
OpenCV source code library.
@@ -27,7 +27,7 @@ OpenCV source code library.
@add_toggle_java
You can [download this from here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/java/tutorial_code/core/discrete_fourier_transform/DiscreteFourierTransform.java) or
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/java/tutorial_code/core/discrete_fourier_transform/DiscreteFourierTransform.java) or
find it in the
`samples/java/tutorial_code/core/discrete_fourier_transform/DiscreteFourierTransform.java` of the
OpenCV source code library.
@@ -35,7 +35,7 @@ OpenCV source code library.
@add_toggle_python
You can [download this from here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/python/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.py) or
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/python/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.py) or
find it in the
`samples/python/tutorial_code/core/discrete_fourier_transform/discrete_fourier_transform.py` of the
OpenCV source code library.
@@ -222,7 +222,7 @@ An application idea would be to determine the geometrical orientation present in
example, let us find out if a text is horizontal or not? Looking at some text you'll notice that the
text lines sort of form also horizontal lines and the letters form sort of vertical lines. These two
main components of a text snippet may be also seen in case of the Fourier transform. Let us use
[this horizontal ](https://raw.githubusercontent.com/opencv/opencv/master/samples/data/imageTextN.png) and [this rotated](https://raw.githubusercontent.com/opencv/opencv/master/samples/data/imageTextR.png)
[this horizontal ](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/data/imageTextN.png) and [this rotated](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/data/imageTextR.png)
image about a text.
In case of the horizontal text:
@@ -2,7 +2,7 @@ File Input and Output using XML and YAML files {#tutorial_file_input_output_with
==============================================
@prev_tutorial{tutorial_discrete_fourier_transform}
@next_tutorial{tutorial_how_to_use_OpenCV_parallel_for_}
@next_tutorial{tutorial_interoperability_with_OpenCV_1}
Goal
----
@@ -19,7 +19,7 @@ Source code
-----------
You can [download this from here
](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/core/file_input_output/file_input_output.cpp) or find it in the
](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/core/file_input_output/file_input_output.cpp) or find it in the
`samples/cpp/tutorial_code/core/file_input_output/file_input_output.cpp` of the OpenCV source code
library.
@@ -54,7 +54,7 @@ three major ways of going through an image pixel by pixel. To make things a litt
will make the scanning for each image using all of these methods, and print out how long it took.
You can download the full source code [here
](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/core/how_to_scan_images/how_to_scan_images.cpp) or look it up in
](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/core/how_to_scan_images/how_to_scan_images.cpp) or look it up in
the samples directory of OpenCV at the cpp tutorial code for the core section. Its basic usage is:
@code{.bash}
how_to_scan_images imageName.jpg intValueToReduce [G]
@@ -1,7 +1,7 @@
How to use the OpenCV parallel_for_ to parallelize your code {#tutorial_how_to_use_OpenCV_parallel_for_}
==================================================================
@prev_tutorial{tutorial_file_input_output_with_xml_yml}
@prev_tutorial{tutorial_interoperability_with_OpenCV_1}
Goal
----
@@ -9,7 +9,7 @@ Goal
The goal of this tutorial is to show you how to use the OpenCV `parallel_for_` framework to easily
parallelize your code. To illustrate the concept, we will write a program to draw a Mandelbrot set
exploiting almost all the CPU load available.
The full tutorial code is [here](https://github.com/opencv/opencv/blob/master/samples/cpp/tutorial_code/core/how_to_use_OpenCV_parallel_for_/how_to_use_OpenCV_parallel_for_.cpp).
The full tutorial code is [here](https://github.com/opencv/opencv/blob/3.4/samples/cpp/tutorial_code/core/how_to_use_OpenCV_parallel_for_/how_to_use_OpenCV_parallel_for_.cpp).
If you want more information about multithreading, you will have to refer to a reference book or course as this tutorial is intended
to remain simple.
@@ -177,7 +177,7 @@ C++ 11 standard allows to simplify the parallel implementation by get rid of the
Results
-----------
You can find the full tutorial code [here](https://github.com/opencv/opencv/blob/master/samples/cpp/tutorial_code/core/how_to_use_OpenCV_parallel_for_/how_to_use_OpenCV_parallel_for_.cpp).
You can find the full tutorial code [here](https://github.com/opencv/opencv/blob/3.4/samples/cpp/tutorial_code/core/how_to_use_OpenCV_parallel_for_/how_to_use_OpenCV_parallel_for_.cpp).
The performance of the parallel implementation depends of the type of CPU you have. For instance, on 4 cores / 8 threads
CPU, you can expect a speed-up of around 6.9X. There are many factors to explain why we do not achieve a speed-up of almost 8X.
Main reasons should be mostly due to:
Binary file not shown.

After

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@@ -0,0 +1,143 @@
Interoperability with OpenCV 1 {#tutorial_interoperability_with_OpenCV_1}
==============================
@prev_tutorial{tutorial_file_input_output_with_xml_yml}
@next_tutorial{tutorial_how_to_use_OpenCV_parallel_for_}
Goal
----
For the OpenCV developer team it's important to constantly improve the library. We are constantly
thinking about methods that will ease your work process, while still maintain the libraries
flexibility. The new C++ interface is a development of us that serves this goal. Nevertheless,
backward compatibility remains important. We do not want to break your code written for earlier
version of the OpenCV library. Therefore, we made sure that we add some functions that deal with
this. In the following you'll learn:
- What changed with the version 2 of OpenCV in the way you use the library compared to its first
version
- How to add some Gaussian noise to an image
- What are lookup tables and why use them?
General
-------
When making the switch you first need to learn some about the new data structure for images:
@ref tutorial_mat_the_basic_image_container, this replaces the old *CvMat* and *IplImage* ones. Switching to the new
functions is easier. You just need to remember a couple of new things.
OpenCV 2 received reorganization. No longer are all the functions crammed into a single library. We
have many modules, each of them containing data structures and functions relevant to certain tasks.
This way you do not need to ship a large library if you use just a subset of OpenCV. This means that
you should also include only those headers you will use. For example:
@code{.cpp}
#include <opencv2/core.hpp>
#include <opencv2/imgproc.hpp>
#include <opencv2/highgui.hpp>
@endcode
All the OpenCV related stuff is put into the *cv* namespace to avoid name conflicts with other
libraries data structures and functions. Therefore, either you need to prepend the *cv::* keyword
before everything that comes from OpenCV or after the includes, you just add a directive to use
this:
@code{.cpp}
using namespace cv; // The new C++ interface API is inside this namespace. Import it.
@endcode
Because the functions are already in a namespace there is no need for them to contain the *cv*
prefix in their name. As such all the new C++ compatible functions don't have this and they follow
the camel case naming rule. This means the first letter is small (unless it's a name, like Canny)
and the subsequent words start with a capital letter (like *copyMakeBorder*).
Now, remember that you need to link to your application all the modules you use, and in case you are
on Windows using the *DLL* system you will need to add, again, to the path all the binaries. For
more in-depth information if you're on Windows read @ref tutorial_windows_visual_studio_opencv and for
Linux an example usage is explained in @ref tutorial_linux_eclipse.
Now for converting the *Mat* object you can use either the *IplImage* or the *CvMat* operators.
While in the C interface you used to work with pointers here it's no longer the case. In the C++
interface we have mostly *Mat* objects. These objects may be freely converted to both *IplImage* and
*CvMat* with simple assignment. For example:
@code{.cpp}
Mat I;
IplImage pI = I;
CvMat mI = I;
@endcode
Now if you want pointers the conversion gets just a little more complicated. The compilers can no
longer automatically determinate what you want and as you need to explicitly specify your goal. This
is to call the *IplImage* and *CvMat* operators and then get their pointers. For getting the pointer
we use the & sign:
@code{.cpp}
Mat I;
IplImage* pI = &I.operator IplImage();
CvMat* mI = &I.operator CvMat();
@endcode
One of the biggest complaints of the C interface is that it leaves all the memory management to you.
You need to figure out when it is safe to release your unused objects and make sure you do so before
the program finishes or you could have troublesome memory leaks. To work around this issue in OpenCV
there is introduced a sort of smart pointer. This will automatically release the object when it's no
longer in use. To use this declare the pointers as a specialization of the *Ptr* :
@code{.cpp}
Ptr<IplImage> piI = &I.operator IplImage();
@endcode
Converting from the C data structures to the *Mat* is done by passing these inside its constructor.
For example:
@code{.cpp}
Mat K(piL), L;
L = Mat(pI);
@endcode
A case study
------------
Now that you have the basics done [here's](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/core/interoperability_with_OpenCV_1/interoperability_with_OpenCV_1.cpp)
an example that mixes the usage of the C interface with the C++ one. You will also find it in the
sample directory of the OpenCV source code library at the
`samples/cpp/tutorial_code/core/interoperability_with_OpenCV_1/interoperability_with_OpenCV_1.cpp` .
To further help on seeing the difference the programs supports two modes: one mixed C and C++ and
one pure C++. If you define the *DEMO_MIXED_API_USE* you'll end up using the first. The program
separates the color planes, does some modifications on them and in the end merge them back together.
@snippet interoperability_with_OpenCV_1.cpp head
@snippet interoperability_with_OpenCV_1.cpp start
Here you can observe that with the new structure we have no pointer problems, although it is
possible to use the old functions and in the end just transform the result to a *Mat* object.
@snippet interoperability_with_OpenCV_1.cpp new
Because, we want to mess around with the images luma component we first convert from the default BGR
to the YUV color space and then split the result up into separate planes. Here the program splits:
in the first example it processes each plane using one of the three major image scanning algorithms
in OpenCV (C [] operator, iterator, individual element access). In a second variant we add to the
image some Gaussian noise and then mix together the channels according to some formula.
The scanning version looks like:
@snippet interoperability_with_OpenCV_1.cpp scanning
Here you can observe that we may go through all the pixels of an image in three fashions: an
iterator, a C pointer and an individual element access style. You can read a more in-depth
description of these in the @ref tutorial_how_to_scan_images tutorial. Converting from the old function
names is easy. Just remove the cv prefix and use the new *Mat* data structure. Here's an example of
this by using the weighted addition function:
@snippet interoperability_with_OpenCV_1.cpp noisy
As you may observe the *planes* variable is of type *Mat*. However, converting from *Mat* to
*IplImage* is easy and made automatically with a simple assignment operator.
@snippet interoperability_with_OpenCV_1.cpp end
The new *imshow* highgui function accepts both the *Mat* and *IplImage* data structures. Compile and
run the program and if the first image below is your input you may get either the first or second as
output:
![](images/outputInteropOpenCV1.jpg)
You may observe a runtime instance of this on the [YouTube
here](https://www.youtube.com/watch?v=qckm-zvo31w) and you can [download the source code from here
](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/core/interoperability_with_OpenCV_1/interoperability_with_OpenCV_1.cpp)
or find it in the
`samples/cpp/tutorial_code/core/interoperability_with_OpenCV_1/interoperability_with_OpenCV_1.cpp`
of the OpenCV source code library.
@youtube{qckm-zvo31w}
@@ -33,7 +33,7 @@ Code
@add_toggle_cpp
You can download this source code from [here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/cpp/tutorial_code/core/mat_mask_operations/mat_mask_operations.cpp) or look in the
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/cpp/tutorial_code/core/mat_mask_operations/mat_mask_operations.cpp) or look in the
OpenCV source code libraries sample directory at
`samples/cpp/tutorial_code/core/mat_mask_operations/mat_mask_operations.cpp`.
@include samples/cpp/tutorial_code/core/mat_mask_operations/mat_mask_operations.cpp
@@ -41,7 +41,7 @@ OpenCV source code libraries sample directory at
@add_toggle_java
You can download this source code from [here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/java/tutorial_code/core/mat_mask_operations/MatMaskOperations.java) or look in the
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/java/tutorial_code/core/mat_mask_operations/MatMaskOperations.java) or look in the
OpenCV source code libraries sample directory at
`samples/java/tutorial_code/core/mat_mask_operations/MatMaskOperations.java`.
@include samples/java/tutorial_code/core/mat_mask_operations/MatMaskOperations.java
@@ -49,7 +49,7 @@ OpenCV source code libraries sample directory at
@add_toggle_python
You can download this source code from [here
](https://raw.githubusercontent.com/opencv/opencv/master/samples/python/tutorial_code/core/mat_mask_operations/mat_mask_operations.py) or look in the
](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/python/tutorial_code/core/mat_mask_operations/mat_mask_operations.py) or look in the
OpenCV source code libraries sample directory at
`samples/python/tutorial_code/core/mat_mask_operations/mat_mask_operations.py`.
@include samples/python/tutorial_code/core/mat_mask_operations/mat_mask_operations.py
+11 -6
View File
@@ -150,12 +150,11 @@ If we need to copy the data, this is done using, for example, cv::Mat::copyTo or
@snippet samples/python/tutorial_code/core/mat_operations/mat_operations.py Reference counting 2
@end_toggle
An empty output Mat can be supplied to each function.
Each implementation calls Mat::create for a destination matrix.
This method allocates data for a matrix if it is empty.
If it is not empty and has the correct size and type, the method does nothing.
If however, size or type are different from the input arguments, the data is deallocated (and lost) and a new data is allocated.
For example:
To the contrary with C API where an output image had to be created by the developer, an empty output Mat
can be supplied to each function. Each implementation calls Mat::create for a destination matrix.
This method allocates data for a matrix if it is empty. If it is not empty and has the correct size
and type, the method does nothing. If however, size or type are different from the input arguments, the
data is deallocated (and lost) and a new data is allocated. For example:
@add_toggle_cpp
@snippet samples/cpp/tutorial_code/core/mat_operations/mat_operations.cpp Reference counting 3
@@ -200,6 +199,12 @@ Selecting a region of interest:
@snippet samples/python/tutorial_code/core/mat_operations/mat_operations.py Select ROI
@end_toggle
A conversion from Mat to C API data structures (**C++ only**):
@snippet samples/cpp/tutorial_code/core/mat_operations/mat_operations.cpp C-API conversion
Note that there is no data copying here.
Conversion from color to greyscale:
@add_toggle_cpp
@@ -262,7 +262,7 @@ OpenCV offers support for output of other common OpenCV data structures too via
![](images/MatBasicContainerOut15.png)
Most of the samples here have been included in a small console application. You can download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/core/mat_the_basic_image_container/mat_the_basic_image_container.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/core/mat_the_basic_image_container/mat_the_basic_image_container.cpp)
or in the core section of the cpp samples.
You can also find a quick video demonstration of this on
@@ -82,6 +82,17 @@ understanding how to manipulate the images on a pixel level.
You will see how to use the @ref cv::FileStorage data structure of OpenCV to write and read
data to XML or YAML file format.
- @subpage tutorial_interoperability_with_OpenCV_1
*Compatibility:* \> OpenCV 2.0
*Author:* Bernát Gábor
Did you used OpenCV before its 2.0 version? Do you wanna know what happened with your library
with 2.0? Don't you know how to convert your old OpenCV programs to the new C++ interface?
Look here to shed light on all this questions.
- @subpage tutorial_how_to_use_OpenCV_parallel_for_
*Compatibility:* \>= OpenCV 2.4.3
@@ -12,7 +12,7 @@ Tutorial was written for the following versions of corresponding software:
- Download and install Android Studio from https://developer.android.com/studio.
- Get the latest pre-built OpenCV for Android release from https://github.com/opencv/opencv/releases and unpack it (for example, `opencv-3.4.3-android-sdk.zip`).
- Get the latest pre-built OpenCV for Android release from https://github.com/opencv/opencv/releases and unpack it (for example, `opencv-3.4.4-android-sdk.zip`).
- Download MobileNet object detection model from https://github.com/chuanqi305/MobileNet-SSD. We need a configuration file `MobileNetSSD_deploy.prototxt` and weights `MobileNetSSD_deploy.caffemodel`.
@@ -216,7 +216,7 @@ a centric one.
@snippet dnn/edge_detection.py Register
That's it! We've replaced an implemented OpenCV's layer to a custom one.
You may find a full script in the [source code](https://github.com/opencv/opencv/tree/master/samples/dnn/edge_detection.py).
You may find a full script in the [source code](https://github.com/opencv/opencv/tree/3.4/samples/dnn/edge_detection.py).
<table border="0">
<tr>
@@ -13,7 +13,7 @@ We will demonstrate results of this example on the following picture.
Source Code
-----------
We will be using snippets from the example application, that can be downloaded [here](https://github.com/opencv/opencv/blob/master/samples/dnn/classification.cpp).
We will be using snippets from the example application, that can be downloaded [here](https://github.com/opencv/opencv/blob/3.4/samples/dnn/classification.cpp).
@include dnn/classification.cpp
@@ -25,7 +25,7 @@ Explanation
[bvlc_googlenet.caffemodel](http://dl.caffe.berkeleyvision.org/bvlc_googlenet.caffemodel)
Also you need file with names of [ILSVRC2012](http://image-net.org/challenges/LSVRC/2012/browse-synsets) classes:
[classification_classes_ILSVRC2012.txt](https://github.com/opencv/opencv/tree/master/samples/dnn/classification_classes_ILSVRC2012.txt).
[classification_classes_ILSVRC2012.txt](https://github.com/opencv/opencv/tree/3.4/samples/dnn/classification_classes_ILSVRC2012.txt).
Put these files into working dir of this program example.
@@ -68,6 +68,8 @@ MSBuild.exe /m:4 /t:Build /p:Configuration=Release .\\ALL_BUILD.vcxproj
## Build OpenCV with Halide backend
When you build OpenCV add the following configuration flags:
- `ENABLE_CXX11` - enable C++11 standard
- `WITH_HALIDE` - enable Halide linkage
- `HALIDE_ROOT_DIR` - path to Halide build directory
+2 -2
View File
@@ -19,8 +19,8 @@ Source Code
-----------
Use a universal sample for object detection models written
[in C++](https://github.com/opencv/opencv/blob/master/samples/dnn/object_detection.cpp) and
[in Python](https://github.com/opencv/opencv/blob/master/samples/dnn/object_detection.py) languages
[in C++](https://github.com/opencv/opencv/blob/3.4/samples/dnn/object_detection.cpp) and
[in Python](https://github.com/opencv/opencv/blob/3.4/samples/dnn/object_detection.py) languages
Usage examples
--------------
@@ -32,7 +32,7 @@ You can find the images (*graf1.png*, *graf3.png*) and homography (*H1to3p.xml*)
@add_toggle_cpp
- **Downloadable code**: Click
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/cpp/tutorial_code/features2D/AKAZE_match.cpp)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/cpp/tutorial_code/features2D/AKAZE_match.cpp)
- **Code at glance:**
@include samples/cpp/tutorial_code/features2D/AKAZE_match.cpp
@@ -40,7 +40,7 @@ You can find the images (*graf1.png*, *graf3.png*) and homography (*H1to3p.xml*)
@add_toggle_java
- **Downloadable code**: Click
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/java/tutorial_code/features2D/akaze_matching/AKAZEMatchDemo.java)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/java/tutorial_code/features2D/akaze_matching/AKAZEMatchDemo.java)
- **Code at glance:**
@include samples/java/tutorial_code/features2D/akaze_matching/AKAZEMatchDemo.java
@@ -48,7 +48,7 @@ You can find the images (*graf1.png*, *graf3.png*) and homography (*H1to3p.xml*)
@add_toggle_python
- **Downloadable code**: Click
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/python/tutorial_code/features2D/akaze_matching/AKAZE_match.py)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/python/tutorial_code/features2D/akaze_matching/AKAZE_match.py)
- **Code at glance:**
@include samples/python/tutorial_code/features2D/akaze_matching/AKAZE_match.py
@@ -24,19 +24,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/features2D/feature_description/SURF_matching_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/features2D/feature_description/SURF_matching_Demo.cpp)
@include samples/cpp/tutorial_code/features2D/feature_description/SURF_matching_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/features2D/feature_description/SURFMatchingDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/features2D/feature_description/SURFMatchingDemo.java)
@include samples/java/tutorial_code/features2D/feature_description/SURFMatchingDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/features2D/feature_description/SURF_matching_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/features2D/feature_description/SURF_matching_Demo.py)
@include samples/python/tutorial_code/features2D/feature_description/SURF_matching_Demo.py
@end_toggle
@@ -22,19 +22,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/features2D/feature_detection/SURF_detection_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/features2D/feature_detection/SURF_detection_Demo.cpp)
@include samples/cpp/tutorial_code/features2D/feature_detection/SURF_detection_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/features2D/feature_detection/SURFDetectionDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/features2D/feature_detection/SURFDetectionDemo.java)
@include samples/java/tutorial_code/features2D/feature_detection/SURFDetectionDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/features2D/feature_detection/SURF_detection_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/features2D/feature_detection/SURF_detection_Demo.py)
@include samples/python/tutorial_code/features2D/feature_detection/SURF_detection_Demo.py
@end_toggle
@@ -45,19 +45,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.cpp)
@include samples/cpp/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/features2D/feature_flann_matcher/SURFFLANNMatchingDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/features2D/feature_flann_matcher/SURFFLANNMatchingDemo.java)
@include samples/java/tutorial_code/features2D/feature_flann_matcher/SURFFLANNMatchingDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.py)
@include samples/python/tutorial_code/features2D/feature_flann_matcher/SURF_FLANN_matching_Demo.py
@end_toggle
@@ -20,19 +20,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.cpp)
@include samples/cpp/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/features2D/feature_homography/SURFFLANNMatchingHomographyDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/features2D/feature_homography/SURFFLANNMatchingHomographyDemo.java)
@include samples/java/tutorial_code/features2D/feature_homography/SURFFLANNMatchingHomographyDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.py)
@include samples/python/tutorial_code/features2D/feature_homography/SURF_FLANN_matching_homography_Demo.py
@end_toggle
@@ -12,8 +12,8 @@ For detailed explanations about the theory, please refer to a computer vision co
* An Invitation to 3-D Vision: From Images to Geometric Models, @cite Ma:2003:IVI
* Computer Vision: Algorithms and Applications, @cite RS10
The tutorial code can be found [here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/features2D/Homography).
The images used in this tutorial can be found [here](https://github.com/opencv/opencv/tree/master/samples/data) (`left*.jpg`).
The tutorial code can be found [here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/features2D/Homography).
The images used in this tutorial can be found [here](https://github.com/opencv/opencv/tree/3.4/samples/data) (`left*.jpg`).
Basic theory {#tutorial_homography_Basic_theory}
------------
@@ -17,19 +17,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/TrackingMotion/cornerSubPix_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/TrackingMotion/cornerSubPix_Demo.cpp)
@include samples/cpp/tutorial_code/TrackingMotion/cornerSubPix_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/TrackingMotion/corner_subpixels/CornerSubPixDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/TrackingMotion/corner_subpixels/CornerSubPixDemo.java)
@include samples/java/tutorial_code/TrackingMotion/corner_subpixels/CornerSubPixDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/TrackingMotion/corner_subpixels/cornerSubPix_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/TrackingMotion/corner_subpixels/cornerSubPix_Demo.py)
@include samples/python/tutorial_code/TrackingMotion/corner_subpixels/cornerSubPix_Demo.py
@end_toggle
@@ -21,21 +21,21 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/TrackingMotion/cornerDetector_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/TrackingMotion/cornerDetector_Demo.cpp)
@include samples/cpp/tutorial_code/TrackingMotion/cornerDetector_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/TrackingMotion/generic_corner_detector/CornerDetectorDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/TrackingMotion/generic_corner_detector/CornerDetectorDemo.java)
@include samples/java/tutorial_code/TrackingMotion/generic_corner_detector/CornerDetectorDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/TrackingMotion/generic_corner_detector/cornerDetector_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/TrackingMotion/generic_corner_detector/cornerDetector_Demo.py)
@include samples/python/tutorial_code/TrackingMotion/generic_corner_detector/cornerDetector_Demo.py
@end_toggle
@@ -16,19 +16,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/TrackingMotion/goodFeaturesToTrack_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/TrackingMotion/goodFeaturesToTrack_Demo.cpp)
@include samples/cpp/tutorial_code/TrackingMotion/goodFeaturesToTrack_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/TrackingMotion/good_features_to_track/GoodFeaturesToTrackDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/TrackingMotion/good_features_to_track/GoodFeaturesToTrackDemo.java)
@include samples/java/tutorial_code/TrackingMotion/good_features_to_track/GoodFeaturesToTrackDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/TrackingMotion/good_features_to_track/goodFeaturesToTrack_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/TrackingMotion/good_features_to_track/goodFeaturesToTrack_Demo.py)
@include samples/python/tutorial_code/TrackingMotion/good_features_to_track/goodFeaturesToTrack_Demo.py
@end_toggle
@@ -120,19 +120,19 @@ Code
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/TrackingMotion/cornerHarris_Demo.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/TrackingMotion/cornerHarris_Demo.cpp)
@include samples/cpp/tutorial_code/TrackingMotion/cornerHarris_Demo.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/TrackingMotion/harris_detector/CornerHarrisDemo.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/TrackingMotion/harris_detector/CornerHarrisDemo.java)
@include samples/java/tutorial_code/TrackingMotion/harris_detector/CornerHarrisDemo.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/TrackingMotion/harris_detector/cornerHarris_Demo.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/TrackingMotion/harris_detector/cornerHarris_Demo.py)
@include samples/python/tutorial_code/TrackingMotion/harris_detector/cornerHarris_Demo.py
@end_toggle
@@ -1,4 +1,3 @@
@cond CUDA_MODULES
Similarity check (PNSR and SSIM) on the GPU {#tutorial_gpu_basics_similarity}
===========================================
@todo update this tutorial
@@ -25,7 +24,7 @@ The source code
You may also find the source code and the video file in the
`samples/cpp/tutorial_code/gpu/gpu-basics-similarity/gpu-basics-similarity` directory of the OpenCV
source library or download it from [here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/gpu/gpu-basics-similarity/gpu-basics-similarity.cpp).
source library or download it from [here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/gpu/gpu-basics-similarity/gpu-basics-similarity.cpp).
The full source code is quite long (due to the controlling of the application via the command line
arguments and performance measurement). Therefore, to avoid cluttering up these sections with those
you'll find here only the functions itself.
@@ -205,4 +204,3 @@ It may be just the improvement needed for your application to work. You may obse
instance of this on the [YouTube here](https://www.youtube.com/watch?v=3_ESXmFlnvY).
@youtube{3_ESXmFlnvY}
@endcond
@@ -1,4 +1,3 @@
@cond CUDA_MODULES
Using a cv::cuda::GpuMat with thrust {#tutorial_gpu_thrust_interop}
===========================================
@@ -69,4 +68,3 @@ Next we will determine how many values are greater than 0 by using thrust::count
We will use those results to create an output buffer for storing the copied values, we will then use copy_if with the same predicate to populate the output buffer.
Lastly we will download the values into a CPU mat for viewing.
@endcond
@@ -1,4 +1,3 @@
@cond CUDA_MODULES
GPU-Accelerated Computer Vision (cuda module) {#tutorial_table_of_content_gpu}
=============================================
@@ -21,4 +20,3 @@ run the OpenCV algorithms.
This tutorial will show you how to wrap a GpuMat into a thrust iterator in order to be able to
use the functions in the thrust library.
@endcond
@@ -27,19 +27,19 @@ Let's modify the program made in the tutorial @ref tutorial_adding_images. We wi
@add_toggle_cpp
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/HighGUI/AddingImagesTrackbar.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/HighGUI/AddingImagesTrackbar.cpp)
@include cpp/tutorial_code/HighGUI/AddingImagesTrackbar.cpp
@end_toggle
@add_toggle_java
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/highgui/trackbar/AddingImagesTrackbar.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/highgui/trackbar/AddingImagesTrackbar.java)
@include java/tutorial_code/highgui/trackbar/AddingImagesTrackbar.java
@end_toggle
@add_toggle_python
This tutorial code's is shown lines below. You can also download it from
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/highgui/trackbar/AddingImagesTrackbar.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/highgui/trackbar/AddingImagesTrackbar.py)
@include python/tutorial_code/highgui/trackbar/AddingImagesTrackbar.py
@end_toggle
@@ -81,19 +81,19 @@ Code
@add_toggle_cpp
- This code is in your OpenCV sample folder. Otherwise you can grab it from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/cpp/tutorial_code/ImgProc/basic_drawing/Drawing_1.cpp)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/cpp/tutorial_code/ImgProc/basic_drawing/Drawing_1.cpp)
@include samples/cpp/tutorial_code/ImgProc/basic_drawing/Drawing_1.cpp
@end_toggle
@add_toggle_java
- This code is in your OpenCV sample folder. Otherwise you can grab it from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/java/tutorial_code/ImgProc/BasicGeometricDrawing/BasicGeometricDrawing.java)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/java/tutorial_code/ImgProc/BasicGeometricDrawing/BasicGeometricDrawing.java)
@include samples/java/tutorial_code/ImgProc/BasicGeometricDrawing/BasicGeometricDrawing.java
@end_toggle
@add_toggle_python
- This code is in your OpenCV sample folder. Otherwise you can grab it from
[here](https://raw.githubusercontent.com/opencv/opencv/master/samples/python/tutorial_code/imgProc/BasicGeometricDrawing/basic_geometric_drawing.py)
[here](https://raw.githubusercontent.com/opencv/opencv/3.4/samples/python/tutorial_code/imgProc/BasicGeometricDrawing/basic_geometric_drawing.py)
@include samples/python/tutorial_code/imgProc/BasicGeometricDrawing/basic_geometric_drawing.py
@end_toggle
@@ -65,19 +65,19 @@ Code
@add_toggle_cpp
This tutorial's code is shown below. You can also download it
[here](https://github.com/opencv/opencv/tree/master/samples/cpp/tutorial_code/ImgProc/Morphology_1.cpp)
[here](https://github.com/opencv/opencv/tree/3.4/samples/cpp/tutorial_code/ImgProc/Morphology_1.cpp)
@include samples/cpp/tutorial_code/ImgProc/Morphology_1.cpp
@end_toggle
@add_toggle_java
This tutorial's code is shown below. You can also download it
[here](https://github.com/opencv/opencv/tree/master/samples/java/tutorial_code/ImgProc/erosion_dilatation/MorphologyDemo1.java)
[here](https://github.com/opencv/opencv/tree/3.4/samples/java/tutorial_code/ImgProc/erosion_dilatation/MorphologyDemo1.java)
@include samples/java/tutorial_code/ImgProc/erosion_dilatation/MorphologyDemo1.java
@end_toggle
@add_toggle_python
This tutorial's code is shown below. You can also download it
[here](https://github.com/opencv/opencv/tree/master/samples/python/tutorial_code/imgProc/erosion_dilatation/morphology_1.py)
[here](https://github.com/opencv/opencv/tree/3.4/samples/python/tutorial_code/imgProc/erosion_dilatation/morphology_1.py)
@include samples/python/tutorial_code/imgProc/erosion_dilatation/morphology_1.py
@end_toggle

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