public inbox for git-commits@fedoraproject.org
help / color / mirror / Atom feed
* [rpms/opencv] opencv5: Update to current fixes from branch-2.2
@ 2026-08-28 13:29 Nicolas Chauvet
  0 siblings, 0 replies; only message in thread
From: Nicolas Chauvet @ 2026-08-28 13:29 UTC (permalink / raw)
  To: git-commits

A new commit has been pushed.

Repo   : rpms/opencv
Branch : opencv5
Commit : a4d5a5431fe443ed6aecd57260a6f7929450d294
Author : Nicolas Chauvet <kwizart@gmail.com>
Date   : 2011-05-26T15:10:43+02:00
Stats  : +1708/-3 in 2 file(s)
URL    : https://src.fedoraproject.org/rpms/opencv/c/a4d5a5431fe443ed6aecd57260a6f7929450d294?branch=opencv5

Log:
Update to current fixes from branch-2.2

---
diff --git a/OpenCV-2.2-b22-backport_20110526.patch b/OpenCV-2.2-b22-backport_20110526.patch
new file mode 100644
index 0000000..4d2c5f3
--- /dev/null
+++ b/OpenCV-2.2-b22-backport_20110526.patch
@@ -0,0 +1,1702 @@
+diff -ur OpenCV-2.2.0/CMakeLists.txt opencv/CMakeLists.txt
+--- OpenCV-2.2.0/CMakeLists.txt	2010-12-05 04:35:23.000000000 +0100
++++ opencv/CMakeLists.txt	2011-05-26 12:57:56.452093002 +0200
+@@ -1224,6 +1224,11 @@
+             DESTINATION "."
+             COMPONENT main
+             )
++        install(FILES
++            "include/CMakeLists.txt"
++            DESTINATION "include/"
++            COMPONENT src
++            )
+ 
+         if(CMAKE_INSTALL_DEBUG_LIBRARIES)
+             foreach(m calib3d core contrib features2d ffmpeg flann gpu highgui imgproc legacy ml objdetect video)
+diff -ur OpenCV-2.2.0/cvconfig.h.cmake opencv/cvconfig.h.cmake
+--- OpenCV-2.2.0/cvconfig.h.cmake	2010-12-05 04:35:23.000000000 +0100
++++ opencv/cvconfig.h.cmake	2011-05-26 12:57:56.449093002 +0200
+@@ -19,6 +19,9 @@
+ /* V4L2 capturing support */
+ #cmakedefine HAVE_CAMV4L2
+ 
++/* V4L/V4L2 capturing support via libv4l */
++#cmakedefine HAVE_LIBV4L
++
+ /* Carbon windowing environment */
+ #cmakedefine HAVE_CARBON
+ 
+diff -ur OpenCV-2.2.0/modules/calib3d/src/fundam.cpp opencv/modules/calib3d/src/fundam.cpp
+--- OpenCV-2.2.0/modules/calib3d/src/fundam.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/calib3d/src/fundam.cpp	2011-05-26 12:56:33.457093003 +0200
+@@ -269,6 +269,8 @@
+         icvCompressPoints( (CvPoint2D64f*)M->data.ptr, tempMask->data.ptr, 1, count );
+         count = icvCompressPoints( (CvPoint2D64f*)m->data.ptr, tempMask->data.ptr, 1, count );
+         M->cols = m->cols = count;
++        if( method == CV_RANSAC )
++            estimator.runKernel( M, m, &matH );
+         estimator.refine( M, m, &matH, 10 );
+     }
+ 
+diff -ur OpenCV-2.2.0/modules/core/include/opencv2/core/core.hpp opencv/modules/core/include/opencv2/core/core.hpp
+--- OpenCV-2.2.0/modules/core/include/opencv2/core/core.hpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/include/opencv2/core/core.hpp	2011-05-26 12:56:06.028093003 +0200
+@@ -1816,7 +1816,7 @@
+ class CV_EXPORTS RNG
+ {
+ public:
+-    enum { A=4164903690U, UNIFORM=0, NORMAL=1 };
++    enum { UNIFORM=0, NORMAL=1 };
+ 
+     RNG();
+     RNG(uint64 _state);
+diff -ur OpenCV-2.2.0/modules/core/include/opencv2/core/mat.hpp opencv/modules/core/include/opencv2/core/mat.hpp
+--- OpenCV-2.2.0/modules/core/include/opencv2/core/mat.hpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/include/opencv2/core/mat.hpp	2011-05-26 12:56:06.019093003 +0200
+@@ -805,7 +805,7 @@
+ 
+ template<typename _Tp> template<int n> inline
+     Mat_<_Tp>::Mat_(const Vec<typename DataType<_Tp>::channel_type, n>& vec, bool copyData)
+-    : Mat(n/DataType<_Tp>::channels, 1, DataType<_Tp>::type, &vec)
++    : Mat(n/DataType<_Tp>::channels, 1, DataType<_Tp>::type, (void*)&vec)
+ {
+     CV_Assert(n%DataType<_Tp>::channels == 0);
+     if( copyData )
+@@ -814,7 +814,7 @@
+ 
+ template<typename _Tp> template<int m, int n> inline
+     Mat_<_Tp>::Mat_(const Matx<typename DataType<_Tp>::channel_type,m,n>& M, bool copyData)
+-    : Mat(m, n/DataType<_Tp>::channels, DataType<_Tp>::type, &M)
++    : Mat(m, n/DataType<_Tp>::channels, DataType<_Tp>::type, (void*)&M)
+ {
+     CV_Assert(n % DataType<_Tp>::channels == 0);
+     if( copyData )
+@@ -822,7 +822,7 @@
+ }
+     
+ template<typename _Tp> inline Mat_<_Tp>::Mat_(const Point_<typename DataType<_Tp>::channel_type>& pt, bool copyData)
+-    : Mat(2/DataType<_Tp>::channels, 1, DataType<_Tp>::type, &pt)
++    : Mat(2/DataType<_Tp>::channels, 1, DataType<_Tp>::type, (void*)&pt)
+ {
+     CV_Assert(2 % DataType<_Tp>::channels == 0);
+     if( copyData )
+@@ -830,7 +830,7 @@
+ }
+ 
+ template<typename _Tp> inline Mat_<_Tp>::Mat_(const Point3_<typename DataType<_Tp>::channel_type>& pt, bool copyData)
+-    : Mat(3/DataType<_Tp>::channels, 1, DataType<_Tp>::type, &pt)
++    : Mat(3/DataType<_Tp>::channels, 1, DataType<_Tp>::type, (void*)&pt)
+ {
+     CV_Assert(3 % DataType<_Tp>::channels == 0);
+     if( copyData )
+diff -ur OpenCV-2.2.0/modules/core/include/opencv2/core/operations.hpp opencv/modules/core/include/opencv2/core/operations.hpp
+--- OpenCV-2.2.0/modules/core/include/opencv2/core/operations.hpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/include/opencv2/core/operations.hpp	2011-05-26 12:56:06.022093003 +0200
+@@ -572,6 +572,7 @@
+ {
+     for( int i = 0; i < m*n; i++ )
+         a.val[i] = saturate_cast<_Tp>(a.val[i] * alpha);
++    return a;
+ }        
+     
+ template<typename _Tp, int m, int n> static inline
+@@ -579,6 +580,7 @@
+ {
+     for( int i = 0; i < m*n; i++ )
+         a.val[i] = saturate_cast<_Tp>(a.val[i] * alpha);
++    return a;
+ }    
+ 
+ template<typename _Tp, int m, int n> static inline
+@@ -586,6 +588,7 @@
+ {
+     for( int i = 0; i < m*n; i++ )
+         a.val[i] = saturate_cast<_Tp>(a.val[i] * alpha);
++    return a;
+ }        
+ 
+ template<typename _Tp, int m, int n> static inline
+@@ -2239,7 +2242,7 @@
+ inline RNG::RNG(uint64 _state) { state = _state ? _state : 0xffffffff; }
+ inline unsigned RNG::next()
+ {
+-    state = (uint64)(unsigned)state*A + (unsigned)(state >> 32);
++    state = (uint64)(unsigned)state*CV_RNG_COEFF + (unsigned)(state >> 32);
+     return (unsigned)state;
+ }
+ 
+diff -ur OpenCV-2.2.0/modules/core/include/opencv2/core/types_c.h opencv/modules/core/include/opencv2/core/types_c.h
+--- OpenCV-2.2.0/modules/core/include/opencv2/core/types_c.h	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/include/opencv2/core/types_c.h	2011-05-26 12:56:06.024093003 +0200
+@@ -375,6 +375,8 @@
+ 
+ typedef uint64 CvRNG;
+ 
++#define CV_RNG_COEFF 4164903690U
++
+ CV_INLINE CvRNG cvRNG( int64 seed CV_DEFAULT(-1))
+ {
+     CvRNG rng = seed ? (uint64)seed : (uint64)(int64)-1;
+@@ -385,7 +387,7 @@
+ CV_INLINE unsigned cvRandInt( CvRNG* rng )
+ {
+     uint64 temp = *rng;
+-    temp = (uint64)(unsigned)temp*4164903690U + (temp >> 32);
++    temp = (uint64)(unsigned)temp*CV_RNG_COEFF + (temp >> 32);
+     *rng = temp;
+     return (unsigned)temp;
+ }
+diff -ur OpenCV-2.2.0/modules/core/src/lapack.cpp opencv/modules/core/src/lapack.cpp
+--- OpenCV-2.2.0/modules/core/src/lapack.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/src/lapack.cpp	2011-05-26 12:56:13.567093003 +0200
+@@ -217,10 +217,10 @@
+ *                                 Determinant of the matrix                              *
+ \****************************************************************************************/
+ 
+-#define det2(m)   (m(0,0)*m(1,1) - m(0,1)*m(1,0))
+-#define det3(m)   (m(0,0)*(m(1,1)*m(2,2) - m(1,2)*m(2,1)) -  \
+-                   m(0,1)*(m(1,0)*m(2,2) - m(1,2)*m(2,0)) +  \
+-                   m(0,2)*(m(1,0)*m(2,1) - m(1,1)*m(2,0)))
++#define det2(m)   ((double)m(0,0)*m(1,1) - (double)m(0,1)*m(1,0))
++#define det3(m)   (m(0,0)*((double)m(1,1)*m(2,2) - (double)m(1,2)*m(2,1)) -  \
++                   m(0,1)*((double)m(1,0)*m(2,2) - (double)m(1,2)*m(2,0)) +  \
++                   m(0,2)*((double)m(1,0)*m(2,1) - (double)m(1,1)*m(2,0)))
+ 
+ double determinant( const Mat& mat )
+ {
+@@ -405,17 +405,17 @@
+                     result = d;
+                     d = 1./d;
+ 
+-                    t[0] = (float)((Sf(1,1) * Sf(2,2) - Sf(1,2) * Sf(2,1)) * d);
+-                    t[1] = (float)((Sf(0,2) * Sf(2,1) - Sf(0,1) * Sf(2,2)) * d);
+-                    t[2] = (float)((Sf(0,1) * Sf(1,2) - Sf(0,2) * Sf(1,1)) * d);
+-                                  
+-                    t[3] = (float)((Sf(1,2) * Sf(2,0) - Sf(1,0) * Sf(2,2)) * d);
+-                    t[4] = (float)((Sf(0,0) * Sf(2,2) - Sf(0,2) * Sf(2,0)) * d);
+-                    t[5] = (float)((Sf(0,2) * Sf(1,0) - Sf(0,0) * Sf(1,2)) * d);
+-                                  
+-                    t[6] = (float)((Sf(1,0) * Sf(2,1) - Sf(1,1) * Sf(2,0)) * d);
+-                    t[7] = (float)((Sf(0,1) * Sf(2,0) - Sf(0,0) * Sf(2,1)) * d);
+-                    t[8] = (float)((Sf(0,0) * Sf(1,1) - Sf(0,1) * Sf(1,0)) * d);
++                    t[0] = (float)(((double)Sf(1,1) * Sf(2,2) - (double)Sf(1,2) * Sf(2,1)) * d);
++                    t[1] = (float)(((double)Sf(0,2) * Sf(2,1) - (double)Sf(0,1) * Sf(2,2)) * d);
++                    t[2] = (float)(((double)Sf(0,1) * Sf(1,2) - (double)Sf(0,2) * Sf(1,1)) * d);
++                           
++                    t[3] = (float)(((double)Sf(1,2) * Sf(2,0) - (double)Sf(1,0) * Sf(2,2)) * d);
++                    t[4] = (float)(((double)Sf(0,0) * Sf(2,2) - (double)Sf(0,2) * Sf(2,0)) * d);
++                    t[5] = (float)(((double)Sf(0,2) * Sf(1,0) - (double)Sf(0,0) * Sf(1,2)) * d);
++                           
++                    t[6] = (float)(((double)Sf(1,0) * Sf(2,1) - (double)Sf(1,1) * Sf(2,0)) * d);
++                    t[7] = (float)(((double)Sf(0,1) * Sf(2,0) - (double)Sf(0,0) * Sf(2,1)) * d);
++                    t[8] = (float)(((double)Sf(0,0) * Sf(1,1) - (double)Sf(0,1) * Sf(1,0)) * d);
+ 
+                     Df(0,0) = t[0]; Df(0,1) = t[1]; Df(0,2) = t[2];
+                     Df(1,0) = t[3]; Df(1,1) = t[4]; Df(1,2) = t[5];
+@@ -607,10 +607,10 @@
+                 double d = det2(Sf);
+                 if( d != 0. )
+                 {
+-                    float t;
++                    double t;
+                     d = 1./d;
+-                    t = (float)((bf(0)*Sf(1,1) - bf(1)*Sf(0,1))*d);
+-                    Df(1,0) = (float)((bf(1)*Sf(0,0) - bf(0)*Sf(1,0))*d);
++                    t = (float)(((double)bf(0)*Sf(1,1) - (double)bf(1)*Sf(0,1))*d);
++                    Df(1,0) = (float)(((double)bf(1)*Sf(0,0) - (double)bf(0)*Sf(1,0))*d);
+                     Df(0,0) = t;
+                 }
+                 else
+@@ -642,19 +642,19 @@
+                     d = 1./d;
+ 
+                     t[0] = (float)(d*
+-                           (bf(0)*(Sf(1,1)*Sf(2,2) - Sf(1,2)*Sf(2,1)) -
+-                            Sf(0,1)*(bf(1)*Sf(2,2) - Sf(1,2)*bf(2)) +
+-                            Sf(0,2)*(bf(1)*Sf(2,1) - Sf(1,1)*bf(2))));
++                           (bf(0)*((double)Sf(1,1)*Sf(2,2) - (double)Sf(1,2)*Sf(2,1)) -
++                            Sf(0,1)*((double)bf(1)*Sf(2,2) - (double)Sf(1,2)*bf(2)) +
++                            Sf(0,2)*((double)bf(1)*Sf(2,1) - (double)Sf(1,1)*bf(2))));
+ 
+                     t[1] = (float)(d*
+-                           (Sf(0,0)*(bf(1)*Sf(2,2) - Sf(1,2)*bf(2)) -
+-                            bf(0)*(Sf(1,0)*Sf(2,2) - Sf(1,2)*Sf(2,0)) +
+-                            Sf(0,2)*(Sf(1,0)*bf(2) - bf(1)*Sf(2,0))));
++                           (Sf(0,0)*(double)(bf(1)*Sf(2,2) - (double)Sf(1,2)*bf(2)) -
++                            bf(0)*((double)Sf(1,0)*Sf(2,2) - (double)Sf(1,2)*Sf(2,0)) +
++                            Sf(0,2)*((double)Sf(1,0)*bf(2) - (double)bf(1)*Sf(2,0))));
+ 
+                     t[2] = (float)(d*
+-                           (Sf(0,0)*(Sf(1,1)*bf(2) - bf(1)*Sf(2,1)) -
+-                            Sf(0,1)*(Sf(1,0)*bf(2) - bf(1)*Sf(2,0)) +
+-                            bf(0)*(Sf(1,0)*Sf(2,1) - Sf(1,1)*Sf(2,0))));
++                           (Sf(0,0)*((double)Sf(1,1)*bf(2) - (double)bf(1)*Sf(2,1)) -
++                            Sf(0,1)*((double)Sf(1,0)*bf(2) - (double)bf(1)*Sf(2,0)) +
++                            bf(0)*((double)Sf(1,0)*Sf(2,1) - (double)Sf(1,1)*Sf(2,0))));
+ 
+                     Df(0,0) = t[0];
+                     Df(1,0) = t[1];
+diff -ur OpenCV-2.2.0/modules/core/src/mathfuncs.cpp opencv/modules/core/src/mathfuncs.cpp
+--- OpenCV-2.2.0/modules/core/src/mathfuncs.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/src/mathfuncs.cpp	2011-05-26 12:56:13.564093003 +0200
+@@ -773,7 +773,8 @@
+ 
+ 
+ // the code below uses _mm_cast* intrinsics, which are not avialable on VS2005
+-#if defined _MSC_VER && _MSC_VER < 1500
++#if (defined _MSC_VER && _MSC_VER < 1500) || \
++    (!defined __APPLE__ && defined __GNUC__ && __GNUC__*100 + __GNUC_MINOR__ < 402)
+ #undef CV_SSE2
+ #define CV_SSE2 0
+ #endif    
+diff -ur OpenCV-2.2.0/modules/core/src/rand.cpp opencv/modules/core/src/rand.cpp
+--- OpenCV-2.2.0/modules/core/src/rand.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/core/src/rand.cpp	2011-05-26 12:56:13.556093003 +0200
+@@ -60,7 +60,7 @@
+    carry = temp / (2^32)
+ */
+ 
+-#define  RNG_NEXT(x)    ((uint64)(unsigned)(x)*RNG::A + ((x) >> 32))
++#define  RNG_NEXT(x)    ((uint64)(unsigned)(x)*CV_RNG_COEFF + ((x) >> 32))
+ 
+ /***************************************************************************************\
+ *                           Pseudo-Random Number Generators (PRNGs)                     *
+diff -ur OpenCV-2.2.0/modules/features2d/src/sift.cpp opencv/modules/features2d/src/sift.cpp
+--- OpenCV-2.2.0/modules/features2d/src/sift.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/features2d/src/sift.cpp	2011-05-26 12:56:40.354093002 +0200
+@@ -48,14 +48,15 @@
+ 
+ #include "precomp.hpp"
+ 
+-#ifdef __arm__
+-#define ARM_NO_SIFT
+-#endif
+-
+-#ifdef ANDROID
+-#undef  ARM_NO_SIFT
+-#endif //ANDROID
++//#ifdef __arm__
++//#define ARM_NO_SIFT
++//#endif
++
++//#ifdef ANDROID
++//#undef  ARM_NO_SIFT
++//#endif //ANDROID
+ 
++#undef ARM_NO_SIFT
+ #ifndef ARM_NO_SIFT
+ 
+ #include <iostream>
+diff -ur OpenCV-2.2.0/modules/ffmpeg/CMakeLists.txt opencv/modules/ffmpeg/CMakeLists.txt
+--- OpenCV-2.2.0/modules/ffmpeg/CMakeLists.txt	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/ffmpeg/CMakeLists.txt	2011-05-26 12:56:40.932093003 +0200
+@@ -45,6 +45,7 @@
+                       DEFINE_SYMBOL "CVAPI_EXPORTS"
+                       ARCHIVE_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/lib/"
+                       RUNTIME_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/bin/"
++                      LINK_FLAGS "/NODEFAULTLIB:libc /DEBUG"
+                       )
+ 
+ install(TARGETS ${the_target}
+diff -ur OpenCV-2.2.0/modules/gpu/src/cuda/stereobm.cu opencv/modules/gpu/src/cuda/stereobm.cu
+--- OpenCV-2.2.0/modules/gpu/src/cuda/stereobm.cu	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/gpu/src/cuda/stereobm.cu	2011-05-26 12:56:18.309093002 +0200
+@@ -252,7 +252,7 @@
+         for(uint *ptr = minSSDImage; ptr != minSSDImage_end; ptr += minssd_step )
+             *ptr = 0xFFFFFFFF;
+     }*/
+-    int end_row = min(ROWSperTHREAD, cheight - Y);
++    int end_row = min(ROWSperTHREAD, cheight - Y - RADIUS);
+     int y_tex;
+     int x_tex = X - RADIUS;
+ 
+diff -ur OpenCV-2.2.0/modules/gpu/src/stereobm_gpu.cpp opencv/modules/gpu/src/stereobm_gpu.cpp
+--- OpenCV-2.2.0/modules/gpu/src/stereobm_gpu.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/gpu/src/stereobm_gpu.cpp	2011-05-26 12:56:18.468093002 +0200
+@@ -62,7 +62,7 @@
+     {
+         //extern "C" void stereoBM_GPU(const DevMem2D& left, const DevMem2D& right, const DevMem2D& disp, int ndisp, int winsz, const DevMem2D_<uint>& minSSD_buf);
+         extern "C" void stereoBM_GPU(const DevMem2D& left, const DevMem2D& right, const DevMem2D& disp, int ndisp, int winsz, const DevMem2D_<uint>& minSSD_buf, cudaStream_t & stream);
+-        extern "C" void prefilter_xsobel(const DevMem2D& input, const DevMem2D output, int prefilterCap /*= 31*/, cudaStream_t & stream);
++        extern "C" void prefilter_xsobel(const DevMem2D& input, const DevMem2D& output, int prefilterCap /*= 31*/, cudaStream_t & stream);
+         extern "C" void postfilter_textureness(const DevMem2D& input, int winsz, float avgTexturenessThreshold, const DevMem2D& disp, cudaStream_t & stream);
+     }
+ }}
+diff -ur OpenCV-2.2.0/modules/highgui/CMakeLists.txt opencv/modules/highgui/CMakeLists.txt
+--- OpenCV-2.2.0/modules/highgui/CMakeLists.txt	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/highgui/CMakeLists.txt	2011-05-26 12:56:02.807093003 +0200
+@@ -257,7 +257,7 @@
+ 	)
+ 
+ if(MSVC)
+-	set_target_properties(${the_target} PROPERTIES LINK_FLAGS "/NODEFAULTLIB:atlthunk.lib")
++	set_target_properties(${the_target} PROPERTIES LINK_FLAGS "/NODEFAULTLIB:atlthunk.lib /NODEFAULTLIB:atlsd.lib /DEBUG")
+ endif(MSVC)
+ 
+ # Dependencies of this target:
+diff -ur OpenCV-2.2.0/modules/highgui/src/cap.cpp opencv/modules/highgui/src/cap.cpp
+--- OpenCV-2.2.0/modules/highgui/src/cap.cpp	2010-12-05 04:35:24.000000000 +0100
++++ opencv/modules/highgui/src/cap.cpp	2011-05-26 12:56:02.770093003 +0200
+@@ -52,10 +52,10 @@
+ namespace cv
+ {
+ 
+-template<> inline void Ptr<CvCapture>::delete_obj()
++template<> void Ptr<CvCapture>::delete_obj()
+ { cvReleaseCapture(&obj); }
+ 
+-template<> inline void Ptr<CvVideoWriter>::delete_obj()
++template<> void Ptr<CvVideoWriter>::delete_obj()
+ { cvReleaseVideoWriter(&obj); }
+ 
+ }
+@@ -171,7 +171,7 @@
+             if (capture)
+                 return capture;
+         #endif
+-        #if defined (HAVE_CAMV4L) || defined (HAVE_CAMV4L2)
++        #if defined HAVE_LIBV4L || (defined (HAVE_CAMV4L) && defined (HAVE_CAMV4L2))
+             capture = cvCreateCameraCapture_V4L (index);
+             if (capture)
+                 return capture;
+diff -ur OpenCV-2.2.0/modules/highgui/src/cap_dshow.cpp opencv/modules/highgui/src/cap_dshow.cpp
+--- OpenCV-2.2.0/modules/highgui/src/cap_dshow.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/highgui/src/cap_dshow.cpp	2011-05-26 12:56:02.789093003 +0200
+@@ -184,6 +184,7 @@
+ }
+ 
+ #ifdef _MSC_VER
++#pragma comment(lib, "strmiids.lib")
+ #if defined _M_X64
+ #pragma comment(lib, "videoInput64.lib")
+ #else
+diff -ur OpenCV-2.2.0/modules/highgui/src/cap_libv4l.cpp opencv/modules/highgui/src/cap_libv4l.cpp
+--- OpenCV-2.2.0/modules/highgui/src/cap_libv4l.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/highgui/src/cap_libv4l.cpp	2011-05-26 12:56:02.796093003 +0200
+@@ -224,7 +224,7 @@
+ #include "highgui.h"
+ #include "precomp.hpp"
+ 
+-#if !defined WIN32 && defined HAVE_CAMV4L && defined HAVE_CAMV4L2
++#if !defined WIN32 && defined HAVE_LIBV4L
+ 
+ #define CLEAR(x) memset (&(x), 0, sizeof (x))
+ 
+@@ -241,8 +241,12 @@
+ #include <sys/stat.h>
+ #include <sys/ioctl.h>
+ 
++#ifdef HAVE_CAMV4L
+ #include <linux/videodev.h>
++#endif
++#ifdef HAVE_CAMV4L2
+ #include <linux/videodev2.h>
++#endif
+ 
+ #include <libv4l1.h>
+ #include <libv4l2.h>
+diff -ur OpenCV-2.2.0/modules/highgui/src/grfmt_png.cpp opencv/modules/highgui/src/grfmt_png.cpp
+--- OpenCV-2.2.0/modules/highgui/src/grfmt_png.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/highgui/src/grfmt_png.cpp	2011-05-26 12:56:02.797093003 +0200
+@@ -223,8 +223,12 @@
+                 png_set_palette_to_rgb( png_ptr );
+ 
+             if( m_color_type == PNG_COLOR_TYPE_GRAY && m_bit_depth < 8 )
++#if PNG_LIBPNG_VER_MAJOR*100 + PNG_LIBPNG_VER_MINOR >= 104
+                 png_set_expand_gray_1_2_4_to_8( png_ptr );
+-
++#else
++                png_set_gray_1_2_4_to_8( png_ptr );
++#endif
++            
+             if( CV_MAT_CN(m_type) > 1 && color )
+                 png_set_bgr( png_ptr ); // convert RGB to BGR
+             else if( color )
+diff -ur OpenCV-2.2.0/modules/highgui/src/precomp.hpp opencv/modules/highgui/src/precomp.hpp
+--- OpenCV-2.2.0/modules/highgui/src/precomp.hpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/highgui/src/precomp.hpp	2011-05-26 12:56:02.793093003 +0200
+@@ -58,9 +58,8 @@
+ #include <ctype.h>
+ #include <assert.h>
+ 
+-#if !defined WIN32 && !defined _WIN32
+ #include "cvconfig.h"
+-#else
++#if defined WIN32 || defined _WIN32
+ void  FillBitmapInfo( BITMAPINFO* bmi, int width, int height, int bpp, int origin );
+ #endif
+ 
+diff -ur OpenCV-2.2.0/modules/imgproc/include/opencv2/imgproc/imgproc.hpp opencv/modules/imgproc/include/opencv2/imgproc/imgproc.hpp
+--- OpenCV-2.2.0/modules/imgproc/include/opencv2/imgproc/imgproc.hpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/imgproc/include/opencv2/imgproc/imgproc.hpp	2011-05-26 12:56:22.594093003 +0200
+@@ -348,8 +348,10 @@
+                                               bool normalize=true,
+                                               int borderType=BORDER_DEFAULT);
+ //! type of morphological operation
+-enum { MORPH_ERODE=0, MORPH_DILATE=1, MORPH_OPEN=2, MORPH_CLOSE=3,
+-       MORPH_GRADIENT=4, MORPH_TOPHAT=5, MORPH_BLACKHAT=6 };
++enum { MORPH_ERODE=CV_MOP_ERODE, MORPH_DILATE=CV_MOP_DILATE,
++       MORPH_OPEN=CV_MOP_OPEN, MORPH_CLOSE=CV_MOP_CLOSE,
++       MORPH_GRADIENT=CV_MOP_GRADIENT, MORPH_TOPHAT=CV_MOP_TOPHAT,
++       MORPH_BLACKHAT=CV_MOP_BLACKHAT };
+ 
+ //! returns horizontal 1D morphological filter
+ CV_EXPORTS Ptr<BaseRowFilter> getMorphologyRowFilter(int op, int type, int ksize, int anchor=-1);
+@@ -500,13 +502,13 @@
+ //! interpolation algorithm
+ enum
+ {
+-    INTER_NEAREST=0, //!< nearest neighbor interpolation
+-    INTER_LINEAR=1, //!< bilinear interpolation
+-    INTER_CUBIC=2, //!< bicubic interpolation
+-    INTER_AREA=3, //!< area-based (or super) interpolation
+-    INTER_LANCZOS4=4, //!< Lanczos interpolation over 8x8 neighborhood
++    INTER_NEAREST=CV_INTER_NN, //!< nearest neighbor interpolation
++    INTER_LINEAR=CV_INTER_LINEAR, //!< bilinear interpolation
++    INTER_CUBIC=CV_INTER_CUBIC, //!< bicubic interpolation
++    INTER_AREA=CV_INTER_AREA, //!< area-based (or super) interpolation
++    INTER_LANCZOS4=CV_INTER_LANCZOS4, //!< Lanczos interpolation over 8x8 neighborhood
+     INTER_MAX=7,
+-    WARP_INVERSE_MAP=16
++    WARP_INVERSE_MAP=CV_WARP_INVERSE_MAP
+ };
+ 
+ //! resizes the image
+@@ -574,8 +576,10 @@
+                                       double alpha, const Mat& mask=Mat() );
+     
+ //! type of the threshold operation
+-enum { THRESH_BINARY=0, THRESH_BINARY_INV=1, THRESH_TRUNC=2, THRESH_TOZERO=3,
+-       THRESH_TOZERO_INV=4, THRESH_MASK=7, THRESH_OTSU=8 };
++enum { THRESH_BINARY=CV_THRESH_BINARY, THRESH_BINARY_INV=CV_THRESH_BINARY_INV,
++       THRESH_TRUNC=CV_THRESH_TRUNC, THRESH_TOZERO=CV_THRESH_TOZERO,
++       THRESH_TOZERO_INV=CV_THRESH_TOZERO_INV, THRESH_MASK=CV_THRESH_MASK,
++       THRESH_OTSU=CV_THRESH_OTSU };
+ 
+ //! applies fixed threshold to the image
+ CV_EXPORTS_W double threshold( const Mat& src, CV_OUT Mat& dst, double thresh, double maxval, int type );
+@@ -672,17 +676,21 @@
+                     TermCriteria termcrit=TermCriteria(TermCriteria::MAX_ITER+TermCriteria::EPS,5,1) );
+ 
+ //! class of the pixel in GrabCut algorithm
+-enum { GC_BGD    = 0,  //!< background
+-       GC_FGD    = 1,  //!< foreground
+-       GC_PR_BGD = 2,  //!< most probably background
+-       GC_PR_FGD = 3   //!< most probably foreground 
+-     };
++enum
++{
++    GC_BGD    = 0,  //!< background
++    GC_FGD    = 1,  //!< foreground
++    GC_PR_BGD = 2,  //!< most probably background
++    GC_PR_FGD = 3   //!< most probably foreground 
++};
+ 
+ //! GrabCut algorithm flags
+-enum { GC_INIT_WITH_RECT  = 0,
+-       GC_INIT_WITH_MASK  = 1,
+-       GC_EVAL            = 2
+-     };
++enum
++{
++    GC_INIT_WITH_RECT  = 0,
++    GC_INIT_WITH_MASK  = 1,
++    GC_EVAL            = 2
++};
+ 
+ //! segments the image using GrabCut algorithm
+ CV_EXPORTS_W void grabCut( const Mat& img, Mat& mask, Rect rect, 
+@@ -692,8 +700,8 @@
+ //! the inpainting algorithm
+ enum
+ {
+-    INPAINT_NS=0, // Navier-Stokes algorithm
+-    INPAINT_TELEA=1 // A. Telea algorithm
++    INPAINT_NS=CV_INPAINT_NS, // Navier-Stokes algorithm
++    INPAINT_TELEA=CV_INPAINT_TELEA // A. Telea algorithm
+ };
+ 
+ //! restores the damaged image areas using one of the available intpainting algorithms
+@@ -764,19 +772,19 @@
+ //! mode of the contour retrieval algorithm
+ enum
+ {
+-    RETR_EXTERNAL=0, //!< retrieve only the most external (top-level) contours
+-    RETR_LIST=1, //!< retrieve all the contours without any hierarchical information
+-    RETR_CCOMP=2, //!< retrieve the connected components (that can possibly be nested)
+-    RETR_TREE=3 //!< retrieve all the contours and the whole hierarchy
++    RETR_EXTERNAL=CV_RETR_EXTERNAL, //!< retrieve only the most external (top-level) contours
++    RETR_LIST=CV_RETR_LIST, //!< retrieve all the contours without any hierarchical information
++    RETR_CCOMP=CV_RETR_CCOMP, //!< retrieve the connected components (that can possibly be nested)
++    RETR_TREE=CV_RETR_TREE //!< retrieve all the contours and the whole hierarchy
+ };
+ 
+ //! the contour approximation algorithm
+ enum
+ {
+-    CHAIN_APPROX_NONE=0,
+-    CHAIN_APPROX_SIMPLE=1,
+-    CHAIN_APPROX_TC89_L1=2,
+-    CHAIN_APPROX_TC89_KCOS=3
++    CHAIN_APPROX_NONE=CV_CHAIN_APPROX_NONE,
++ 	CHAIN_APPROX_SIMPLE=CV_CHAIN_APPROX_SIMPLE,
++ 	CHAIN_APPROX_TC89_L1=CV_CHAIN_APPROX_TC89_L1,
++ 	CHAIN_APPROX_TC89_KCOS=CV_CHAIN_APPROX_TC89_KCOS
+ };
+ 
+ //! retrieves contours and the hierarchical information from black-n-white image.
+diff -ur OpenCV-2.2.0/modules/imgproc/include/opencv2/imgproc/types_c.h opencv/modules/imgproc/include/opencv2/imgproc/types_c.h
+--- OpenCV-2.2.0/modules/imgproc/include/opencv2/imgproc/types_c.h	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/imgproc/include/opencv2/imgproc/types_c.h	2011-05-26 12:56:22.595093003 +0200
+@@ -221,6 +221,11 @@
+     CV_YUV2BGR      = 84,
+     CV_YUV2RGB      = 85,
+     
++    CV_BayerBG2GRAY = 86,
++    CV_BayerGB2GRAY = 87,
++    CV_BayerRG2GRAY = 88,
++    CV_BayerGR2GRAY = 89,
++    
+     CV_COLORCVT_MAX  =100
+ };
+ 
+diff -ur OpenCV-2.2.0/modules/imgproc/src/color.cpp opencv/modules/imgproc/src/color.cpp
+--- OpenCV-2.2.0/modules/imgproc/src/color.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/imgproc/src/color.cpp	2011-05-26 12:56:30.454093002 +0200
+@@ -1738,6 +1738,147 @@
+         
+ //////////////////////////// Bayer Pattern -> RGB conversion /////////////////////////////
+ 
++static void Bayer2Gray_8u( const Mat& srcmat, Mat& dstmat, int code )
++{
++    const int R2Y = 4899;
++    const int G2Y = 9617;
++    const int B2Y = 1868;
++    const int SHIFT = 14;
++    
++    const uchar* bayer0 = srcmat.data;
++    int bayer_step = (int)srcmat.step;
++    uchar* dst0 = dstmat.data;
++    int dst_step = (int)dstmat.step;
++    Size size = srcmat.size();
++    int bcoeff = B2Y, rcoeff = R2Y;
++    int start_with_green = code == CV_BayerGB2GRAY || code == CV_BayerGR2GRAY;
++    bool brow = true;
++#if CV_SSE2    
++    bool haveSSE2 = checkHardwareSupport(CV_CPU_SSE2);
++#endif
++    
++    if( code != CV_BayerBG2GRAY && code != CV_BayerGB2GRAY )
++    {
++        brow = false;
++        std::swap(bcoeff, rcoeff);
++    }
++    
++    dst0 += dst_step + 1;
++    size.height -= 2;
++    size.width -= 2;
++    
++    for( ; size.height-- > 0; bayer0 += bayer_step, dst0 += dst_step )
++    {
++        int t0, t1, t2;
++        const uchar* bayer = bayer0;
++        uchar* dst = dst0;
++        const uchar* bayer_end = bayer + size.width;
++        
++        if( size.width <= 0 )
++        {
++            dst[-1] = dst[size.width] = 0;
++            continue;
++        }
++        
++        if( start_with_green )
++        {
++            t0 = (bayer[1] + bayer[bayer_step*2+1])*rcoeff;
++            t1 = (bayer[bayer_step] + bayer[bayer_step+2])*bcoeff;
++            t2 = bayer[bayer_step+1]*(2*G2Y);
++            
++            dst[0] = (uchar)CV_DESCALE(t0 + t1 + t2, SHIFT+1);
++            bayer++;
++            dst++;
++        }
++        
++#if CV_SSE2
++        if( haveSSE2 )
++        {
++            __m128i _b2y = _mm_set1_epi16((short)(rcoeff*2));
++            __m128i _g2y = _mm_set1_epi16((short)(G2Y*2));
++            __m128i _r2y = _mm_set1_epi16((short)(bcoeff*2));
++            
++            for( ; bayer <= bayer_end - 18; bayer += 14, dst += 14 )
++            {
++                __m128i r0 = _mm_loadu_si128((const __m128i*)bayer);
++                __m128i r1 = _mm_loadu_si128((const __m128i*)(bayer+bayer_step));
++                __m128i r2 = _mm_loadu_si128((const __m128i*)(bayer+bayer_step*2));
++                
++                __m128i b1 = _mm_add_epi16(_mm_srli_epi16(_mm_slli_epi16(r0, 8), 8),
++                                           _mm_srli_epi16(_mm_slli_epi16(r2, 8), 8));
++                __m128i b0 = _mm_add_epi16(b1, _mm_srli_si128(b1, 2));
++                b1 = _mm_slli_epi16(_mm_srli_si128(b1, 2), 1);
++                
++                __m128i g0 = _mm_add_epi16(_mm_srli_epi16(r0, 8), _mm_srli_epi16(r2, 8));
++                __m128i g1 = _mm_srli_epi16(_mm_slli_epi16(r1, 8), 8);
++                g0 = _mm_add_epi16(g0, _mm_add_epi16(g1, _mm_srli_si128(g1, 2)));
++                g1 = _mm_slli_epi16(_mm_srli_si128(g1, 2), 2);
++                
++                r0 = _mm_srli_epi16(r1, 8);
++                r1 = _mm_slli_epi16(_mm_add_epi16(r0, _mm_srli_si128(r0, 2)), 1);
++                r0 = _mm_slli_epi16(r0, 2);
++                
++                g0 = _mm_add_epi16(_mm_mulhi_epi16(b0, _b2y), _mm_mulhi_epi16(g0, _g2y));
++                g1 = _mm_add_epi16(_mm_mulhi_epi16(b1, _b2y), _mm_mulhi_epi16(g1, _g2y));
++                g0 = _mm_add_epi16(g0, _mm_mulhi_epi16(r0, _r2y));
++                g1 = _mm_add_epi16(g1, _mm_mulhi_epi16(r1, _r2y));
++                g0 = _mm_srli_epi16(g0, 1);
++                g1 = _mm_srli_epi16(g1, 1);
++                g0 = _mm_packus_epi16(g0, g0);
++                g1 = _mm_packus_epi16(g1, g1);
++                g0 = _mm_unpacklo_epi8(g0, g1);
++                _mm_storeu_si128((__m128i*)dst, g0);
++            }
++        }
++#endif
++        
++        for( ; bayer <= bayer_end - 2; bayer += 2, dst += 2 )
++        {
++            t0 = (bayer[0] + bayer[2] + bayer[bayer_step*2] + bayer[bayer_step*2+2])*rcoeff;
++            t1 = (bayer[1] + bayer[bayer_step] + bayer[bayer_step+2] + bayer[bayer_step*2+1])*G2Y;
++            t2 = bayer[bayer_step+1]*(4*bcoeff);
++            dst[0] = (uchar)CV_DESCALE(t0 + t1 + t2, SHIFT+2);
++            
++            t0 = (bayer[2] + bayer[bayer_step*2+2])*rcoeff;
++            t1 = (bayer[bayer_step+1] + bayer[bayer_step+3])*bcoeff;
++            t2 = bayer[bayer_step+2]*(2*G2Y);
++            dst[1] = (uchar)CV_DESCALE(t0 + t1 + t2, SHIFT+1);
++        }
++        
++        if( bayer < bayer_end )
++        {
++            t0 = (bayer[0] + bayer[2] + bayer[bayer_step*2] + bayer[bayer_step*2+2])*rcoeff;
++            t1 = (bayer[1] + bayer[bayer_step] + bayer[bayer_step+2] + bayer[bayer_step*2+1])*G2Y;
++            t2 = bayer[bayer_step+1]*(4*bcoeff);
++            dst[0] = (uchar)CV_DESCALE(t0 + t1 + t2, SHIFT+2);
++            bayer++;
++            dst++;
++        }
++        
++        dst0[-1] = dst0[0];
++        dst0[size.width] = dst0[size.width-1];
++        
++        brow = !brow;
++        std::swap(bcoeff, rcoeff);
++        start_with_green = !start_with_green;
++    }
++    
++    size = dstmat.size();
++    dst0 = dstmat.data;
++    if( size.height > 2 )
++        for( int i = 0; i < size.width; i++ )
++        {
++            dst0[i] = dst0[i + dst_step];
++            dst0[i + (size.height-1)*dst_step] = dst0[i + (size.height-2)*dst_step];
++        }
++    else
++        for( int i = 0; i < size.width; i++ )
++        {
++            dst0[i] = dst0[i + (size.height-1)*dst_step] = 0;
++        }
++}
++
++
+ static void Bayer2RGB_8u( const Mat& srcmat, Mat& dstmat, int code )
+ {
+     const uchar* bayer0 = srcmat.data;
+@@ -1747,26 +1888,28 @@
+     Size size = srcmat.size();
+     int blue = code == CV_BayerBG2BGR || code == CV_BayerGB2BGR ? -1 : 1;
+     int start_with_green = code == CV_BayerGB2BGR || code == CV_BayerGR2BGR;
+-
+-    memset( dst0, 0, size.width*3*sizeof(dst0[0]) );
+-    memset( dst0 + (size.height - 1)*dst_step, 0, size.width*3*sizeof(dst0[0]) );
++#if CV_SSE2
++    bool haveSSE2 = checkHardwareSupport(CV_CPU_SSE2);
++#endif
++    
+     dst0 += dst_step + 3 + 1;
+     size.height -= 2;
+     size.width -= 2;
+-
++        
+     for( ; size.height-- > 0; bayer0 += bayer_step, dst0 += dst_step )
+     {
+         int t0, t1;
+         const uchar* bayer = bayer0;
+         uchar* dst = dst0;
+         const uchar* bayer_end = bayer + size.width;
+-
+-        dst[-4] = dst[-3] = dst[-2] = dst[size.width*3-1] =
+-            dst[size.width*3] = dst[size.width*3+1] = 0;
+-
++        
+         if( size.width <= 0 )
++        {
++            dst[-4] = dst[-3] = dst[-2] = dst[size.width*3-1] =
++            dst[size.width*3] = dst[size.width*3+1] = 0;
+             continue;
+-
++        }
++        
+         if( start_with_green )
+         {
+             t0 = (bayer[1] + bayer[bayer_step*2+1] + 1) >> 1;
+@@ -1777,7 +1920,87 @@
+             bayer++;
+             dst += 3;
+         }
+-
++        
++#if CV_SSE2
++        if( haveSSE2 )
++        {
++            /*
++             B G B G | B G B G | B G B G | B G B G
++             G R G R | G R G R | G R G R | G R G R
++             B G B G | B G B G | B G B G | B G B G
++             */
++            __m128i delta1 = _mm_set1_epi16(1), delta2 = _mm_set1_epi16(2);
++            __m128i mask = _mm_set1_epi16(blue < 0 ? -1 : 0), z = _mm_setzero_si128();
++            __m128i masklo = _mm_set1_epi16(0x00ff);
++            
++            for( ; bayer <= bayer_end - 18; bayer += 14, dst += 42 )
++            {
++                __m128i r0 = _mm_loadu_si128((const __m128i*)bayer);
++                __m128i r1 = _mm_loadu_si128((const __m128i*)(bayer+bayer_step));
++                __m128i r2 = _mm_loadu_si128((const __m128i*)(bayer+bayer_step*2));
++                
++                __m128i b1 = _mm_add_epi16(_mm_and_si128(r0, masklo), _mm_and_si128(r2, masklo));
++                __m128i b0 = _mm_add_epi16(b1, _mm_srli_si128(b1, 2));
++                b1 = _mm_srli_si128(b1, 2);
++                b1 = _mm_srli_epi16(_mm_add_epi16(b1, delta1), 1);
++                b0 = _mm_srli_epi16(_mm_add_epi16(b0, delta2), 2);
++                b0 = _mm_packus_epi16(b0, b1);
++                
++                __m128i g0 = _mm_add_epi16(_mm_srli_epi16(r0, 8), _mm_srli_epi16(r2, 8));
++                __m128i g1 = _mm_and_si128(r1, masklo);
++                g0 = _mm_add_epi16(g0, _mm_add_epi16(g1, _mm_srli_si128(g1, 2)));
++                g1 = _mm_srli_si128(g1, 2);
++                g0 = _mm_srli_epi16(_mm_add_epi16(g0, delta2), 2);
++                g0 = _mm_packus_epi16(g0, g1);
++                
++                r0 = _mm_srli_epi16(r1, 8);
++                r1 = _mm_add_epi16(r0, _mm_srli_si128(r0, 2));
++                r1 = _mm_srli_epi16(_mm_add_epi16(r1, delta1), 1);
++                r0 = _mm_packus_epi16(r0, r1);
++                
++                b1 = _mm_and_si128(_mm_xor_si128(b0, r0), mask);
++                b0 = _mm_xor_si128(b0, b1);
++                r0 = _mm_xor_si128(r0, b1);
++                
++                // b1 g1 b1 g1 ...
++                b1 = _mm_unpackhi_epi8(b0, g0);
++                // b0 g0 b2 g2 b4 g4 ....
++                b0 = _mm_unpacklo_epi8(b0, g0);
++                
++                // r1 0 r3 0 ...
++                r1 = _mm_unpackhi_epi8(r0, z);
++                // r0 0 r2 0 r4 0 ...
++                r0 = _mm_unpacklo_epi8(r0, z);
++                
++                // 0 b0 g0 r0 0 b2 g2 r2 0 ...
++                g0 = _mm_slli_si128(_mm_unpacklo_epi16(b0, r0), 1);
++                // 0 b8 g8 r8 0 b10 g10 r10 0 ...
++                g1 = _mm_slli_si128(_mm_unpackhi_epi16(b0, r0), 1);
++                
++                // b1 g1 r1 0 b3 g3 r3 ....
++                r0 = _mm_unpacklo_epi16(b1, r1);
++                // b9 g9 r9 0 ...
++                r1 = _mm_unpackhi_epi16(b1, r1);
++                
++                b0 = _mm_srli_si128(_mm_unpacklo_epi32(g0, r0), 1);
++                b1 = _mm_srli_si128(_mm_unpackhi_epi32(g0, r0), 1);
++                
++                _mm_storel_epi64((__m128i*)(dst-1+0), b0);
++                _mm_storel_epi64((__m128i*)(dst-1+6*1), _mm_srli_si128(b0, 8));
++                _mm_storel_epi64((__m128i*)(dst-1+6*2), b1);
++                _mm_storel_epi64((__m128i*)(dst-1+6*3), _mm_srli_si128(b1, 8));
++                
++                g0 = _mm_srli_si128(_mm_unpacklo_epi32(g1, r1), 1);
++                g1 = _mm_srli_si128(_mm_unpackhi_epi32(g1, r1), 1);
++                
++                _mm_storel_epi64((__m128i*)(dst-1+6*4), g0);
++                _mm_storel_epi64((__m128i*)(dst-1+6*5), _mm_srli_si128(g0, 8));
++                
++                _mm_storel_epi64((__m128i*)(dst-1+6*6), g1);
++            }
++        }
++#endif
++        
+         if( blue > 0 )
+         {
+             for( ; bayer <= bayer_end - 2; bayer += 2, dst += 6 )
+@@ -1789,7 +2012,7 @@
+                 dst[-1] = (uchar)t0;
+                 dst[0] = (uchar)t1;
+                 dst[1] = bayer[bayer_step+1];
+-
++                
+                 t0 = (bayer[2] + bayer[bayer_step*2+2] + 1) >> 1;
+                 t1 = (bayer[bayer_step+1] + bayer[bayer_step+3] + 1) >> 1;
+                 dst[2] = (uchar)t0;
+@@ -1808,7 +2031,7 @@
+                 dst[1] = (uchar)t0;
+                 dst[0] = (uchar)t1;
+                 dst[-1] = bayer[bayer_step+1];
+-
++                
+                 t0 = (bayer[2] + bayer[bayer_step*2+2] + 1) >> 1;
+                 t1 = (bayer[bayer_step+1] + bayer[bayer_step+3] + 1) >> 1;
+                 dst[4] = (uchar)t0;
+@@ -1816,7 +2039,7 @@
+                 dst[2] = (uchar)t1;
+             }
+         }
+-
++        
+         if( bayer < bayer_end )
+         {
+             t0 = (bayer[0] + bayer[2] + bayer[bayer_step*2] +
+@@ -1829,10 +2052,31 @@
+             bayer++;
+             dst += 3;
+         }
+-
++        
++        dst0[-4] = dst0[-1];
++        dst0[-3] = dst0[0];
++        dst0[-2] = dst0[1];
++        dst0[size.width*3-1] = dst0[size.width*3-4];
++        dst0[size.width*3] = dst0[size.width*3-3];
++        dst0[size.width*3+1] = dst0[size.width*3-2];
++        
+         blue = -blue;
+         start_with_green = !start_with_green;
+     }
++    
++    size = dstmat.size();
++    dst0 = dstmat.data;
++    if( size.height > 2 )
++        for( int i = 0; i < size.width*3; i++ )
++        {
++            dst0[i] = dst0[i + dst_step];
++            dst0[i + (size.height-1)*dst_step] = dst0[i + (size.height-2)*dst_step];
++        }
++    else
++        for( int i = 0; i < size.width*3; i++ )
++        {
++            dst0[i] = dst0[i + (size.height-1)*dst_step] = 0;
++        }
+ }
+ 
+     
+@@ -2132,8 +2376,9 @@
+                 break;
+             
+             __m128i emask = _mm_set1_epi32(0x0000ffff),
+-            omask = _mm_set1_epi32(0xffff0000),
+-            z = _mm_setzero_si128();
++                omask = _mm_set1_epi32(0xffff0000),
++                all_ones = _mm_set1_epi16(1),
++                z = _mm_setzero_si128();
+             __m128 _0_5 = _mm_set1_ps(0.5f);
+             
+             #define _mm_merge_epi16(a, b) \
+@@ -2307,7 +2552,7 @@
+                 
+                 // gradNW
+                 mask = _mm_cmpgt_epi16(T, gradNW);
+-                ng = _mm_sub_epi16(ng, mask);
++                ng = _mm_max_epi16(_mm_sub_epi16(ng, mask), all_ones);
+                 
+                 __m128 ngf0, ngf1;
+                 ngf0 = _mm_div_ps(_0_5, _mm_cvtloepi16_ps(ng));
+@@ -2657,12 +2902,19 @@
+             }
+             }
+             break;
++        
++        case CV_BayerBG2GRAY: case CV_BayerGB2GRAY: case CV_BayerRG2GRAY: case CV_BayerGR2GRAY:
++            if(dcn <= 0) dcn = 1;
++            CV_Assert( scn == 1 && dcn == 1 && depth == CV_8U );
++            dst.create(sz, depth);
++            Bayer2Gray_8u(src, dst, code);
++            break;    
+             
+         case CV_BayerBG2BGR: case CV_BayerGB2BGR: case CV_BayerRG2BGR: case CV_BayerGR2BGR:
+         case CV_BayerBG2BGR_VNG: case CV_BayerGB2BGR_VNG: case CV_BayerRG2BGR_VNG: case CV_BayerGR2BGR_VNG:
+             if(dcn <= 0) dcn = 3;
+             CV_Assert( scn == 1 && dcn == 3 && depth == CV_8U );
+-            dst.create(sz, CV_8UC3);
++            dst.create(sz, CV_MAKETYPE(depth, dcn));
+             
+             if( code == CV_BayerBG2BGR || code == CV_BayerGB2BGR ||
+                 code == CV_BayerRG2BGR || code == CV_BayerGR2BGR )
+diff -ur OpenCV-2.2.0/modules/imgproc/src/utils.cpp opencv/modules/imgproc/src/utils.cpp
+--- OpenCV-2.2.0/modules/imgproc/src/utils.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/imgproc/src/utils.cpp	2011-05-26 12:56:30.465093002 +0200
+@@ -71,413 +71,164 @@
+     return (CvSeq*)contour_header;
+ }
+ 
++namespace cv
++{
+ 
+-typedef CvStatus (CV_STDCALL * CvCopyNonConstBorderFunc)(
+-    const void*, int, CvSize, void*, int, CvSize, int, int );
+-
+-typedef CvStatus (CV_STDCALL * CvCopyNonConstBorderFuncI)(
+-    const void*, int, CvSize, CvSize, int, int );
+-
+-CvStatus CV_STDCALL
+-icvCopyReplicateBorder_8u( const uchar* src, int srcstep, CvSize srcroi,
+-                           uchar* dst, int dststep, CvSize dstroi,
+-                           int top, int left, int cn, const uchar* )
++static void copyMakeBorder_8u( const uchar* src, size_t srcstep, Size srcroi,
++                               uchar* dst, size_t dststep, Size dstroi,
++                               int top, int left, int cn, int borderType )
+ {
+     const int isz = (int)sizeof(int);
+-    int i, j;
++    int i, j, k, elemSize = 1;
++    bool intMode = false;
+ 
+     if( (cn | srcstep | dststep | (size_t)src | (size_t)dst) % isz == 0 )
+     {
+-        const int* isrc = (const int*)src;
+-        int* idst = (int*)dst;
+-        
+         cn /= isz;
+-        srcstep /= isz;
+-        dststep /= isz;
+-
+-        srcroi.width *= cn;
+-        dstroi.width *= cn;
+-        left *= cn;
+-
+-        for( i = 0; i < dstroi.height; i++, idst += dststep )
+-        {
+-            if( idst + left != isrc )
+-                memcpy( idst + left, isrc, srcroi.width*sizeof(idst[0]) );
+-            for( j = left - 1; j >= 0; j-- )
+-                idst[j] = idst[j + cn];
+-            for( j = left+srcroi.width; j < dstroi.width; j++ )
+-                idst[j] = idst[j - cn];
+-            if( i >= top && i < top + srcroi.height - 1 )
+-                isrc += srcstep;
+-        }
++        elemSize = isz;
++        intMode = true;
+     }
+-    else
+-    {
+-        srcroi.width *= cn;
+-        dstroi.width *= cn;
+-        left *= cn;
+ 
+-        for( i = 0; i < dstroi.height; i++, dst += dststep )
+-        {
+-            if( dst + left != src )
+-                memcpy( dst + left, src, srcroi.width );
+-            for( j = left - 1; j >= 0; j-- )
+-                dst[j] = dst[j + cn];
+-            for( j = left+srcroi.width; j < dstroi.width; j++ )
+-                dst[j] = dst[j - cn];
+-            if( i >= top && i < top + srcroi.height - 1 )
+-                src += srcstep;
+-        }
++    AutoBuffer<int> _tab((dstroi.width - srcroi.width)*cn);
++    int* tab = _tab;
++    int right = dstroi.width - srcroi.width - left;
++    int bottom = dstroi.height - srcroi.height - top;
++    
++    for( i = 0; i < left; i++ )
++    {
++        j = borderInterpolate(i - left, srcroi.width, borderType)*cn;
++        for( k = 0; k < cn; k++ )
++            tab[i*cn + k] = j + k;
+     }
+-
+-    return CV_OK;
+-}
+-
+-
+-static CvStatus CV_STDCALL
+-icvCopyReflect101Border_8u( const uchar* src, int srcstep, CvSize srcroi,
+-                            uchar* dst, int dststep, CvSize dstroi,
+-                            int top, int left, int cn )
+-{
+-    const int isz = (int)sizeof(int);
+-    int i, j, k, t, dj, tab_size, int_mode = 0;
+-    const int* isrc = (const int*)src;
+-    int* idst = (int*)dst, *tab;
+-
+-    if( (cn | srcstep | dststep | (size_t)src | (size_t)dst) % isz == 0 )
++    
++    for( i = 0; i < right; i++ )
+     {
+-        cn /= isz;
+-        srcstep /= isz;
+-        dststep /= isz;
+-
+-        int_mode = 1;
++        j = borderInterpolate(srcroi.width + i, srcroi.width, borderType)*cn;
++        for( k = 0; k < cn; k++ )
++            tab[(i+left)*cn + k] = j + k;
+     }
+ 
+     srcroi.width *= cn;
+     dstroi.width *= cn;
+     left *= cn;
++    right *= cn;
++    
++    uchar* dstInner = dst + dststep*top + left*elemSize;
+ 
+-    tab_size = dstroi.width - srcroi.width;
+-    tab = (int*)cvStackAlloc( tab_size*sizeof(tab[0]) );
+-
+-    if( srcroi.width == 1 )
+-    {
+-        for( k = 0; k < cn; k++ )
+-            for( i = 0; i < tab_size; i += cn )
+-                tab[i + k] = k + left;
+-    }
+-    else
++    for( i = 0; i < srcroi.height; i++, dstInner += dststep, src += srcstep )
+     {
+-        j = dj = cn;
+-        for( i = left - cn; i >= 0; i -= cn )
+-        {
+-            for( k = 0; k < cn; k++ )
+-                tab[i + k] = j + k + left;
+-            if( (unsigned)(j += dj) >= (unsigned)srcroi.width )
+-                j -= 2*dj, dj = -dj;
+-        }
++        if( dstInner != src )
++            memcpy(dstInner, src, srcroi.width*elemSize);
+         
+-        j = srcroi.width - cn*2;
+-        dj = -cn;
+-        for( i = left; i < tab_size; i += cn )
++        if( intMode )
+         {
+-            for( k = 0; k < cn; k++ )
+-                tab[i + k] = j + k + left;
+-            if( (unsigned)(j += dj) >= (unsigned)srcroi.width )
+-                j -= 2*dj, dj = -dj;
++            const int* isrc = (int*)src;
++            int* idstInner = (int*)dstInner;
++            for( j = 0; j < left; j++ )
++                idstInner[j - left] = isrc[tab[j]];
++            for( j = 0; j < right; j++ )
++                idstInner[j + srcroi.width] = isrc[tab[j + left]];
+         }
+-    }
+-
+-    if( int_mode )
+-    {
+-        idst += top*dststep;
+-        for( i = 0; i < srcroi.height; i++, isrc += srcstep, idst += dststep )
++        else
+         {
+-            if( idst + left != isrc )
+-                memcpy( idst + left, isrc, srcroi.width*sizeof(idst[0]) );
+             for( j = 0; j < left; j++ )
+-            {
+-                k = tab[j]; 
+-                idst[j] = idst[k];
+-            }
+-            for( ; j < tab_size; j++ )
+-            {
+-                k = tab[j];
+-                idst[j + srcroi.width] = idst[k];
+-            }
++                dstInner[j - left] = src[tab[j]];
++            for( j = 0; j < right; j++ )
++                dstInner[j + srcroi.width] = src[tab[j + left]];
+         }
+-        isrc -= srcroi.height*srcstep;
+-        idst -= (top + srcroi.height)*dststep;
+     }
+-    else
++    
++    dstroi.width *= elemSize;
++    dst += dststep*top;
++    
++    for( i = 0; i < top; i++ )
+     {
+-        dst += top*dststep;
+-        for( i = 0; i < srcroi.height; i++, src += srcstep, dst += dststep )
+-        {
+-            if( dst + left != src )
+-                memcpy( dst + left, src, srcroi.width );
+-            for( j = 0; j < left; j++ )
+-            {
+-                k = tab[j]; 
+-                dst[j] = dst[k];
+-            }
+-            for( ; j < tab_size; j++ )
+-            {
+-                k = tab[j];
+-                dst[j + srcroi.width] = dst[k];
+-            }
+-        }
+-        src -= srcroi.height*srcstep;
+-        dst -= (top + srcroi.height)*dststep;
++        j = borderInterpolate(i - top, srcroi.height, borderType);
++        memcpy(dst + (i - top)*dststep, dst + j*dststep, dstroi.width);
+     }
+-
+-    for( t = 0; t < 2; t++ )
++    
++    for( i = 0; i < bottom; i++ )
+     {
+-        int i1, i2, di;
+-        if( t == 0 )
+-            i1 = top-1, i2 = 0, di = -1, j = 1, dj = 1;
+-        else
+-            i1 = top+srcroi.height, i2=dstroi.height, di = 1, j = srcroi.height-2, dj = -1;
+-        
+-        for( i = i1; (di > 0 && i < i2) || (di < 0 && i > i2); i += di )
+-        {
+-            if( int_mode )
+-            {
+-                const int* s = idst + i*dststep;
+-                int* d = idst + (j+top)*dststep;
+-                for( k = 0; k < dstroi.width; k++ )
+-                    d[k] = s[k];
+-            }
+-            else
+-            {
+-                const uchar* s = dst + i*dststep;
+-                uchar* d = dst + (j+top)*dststep;
+-                for( k = 0; k < dstroi.width; k++ )
+-                    d[k] = s[k];
+-            }
+-
+-            if( (unsigned)(j += dj) >= (unsigned)srcroi.height )
+-                j -= 2*dj, dj = -dj;
+-        }
++        j = borderInterpolate(i + srcroi.height, srcroi.height, borderType);
++        memcpy(dst + (i + srcroi.height)*dststep, dst + j*dststep, dstroi.width);
+     }
+-
+-    return CV_OK;
+ }
+ 
+ 
+-static CvStatus CV_STDCALL
+-icvCopyConstBorder_8u( const uchar* src, int srcstep, CvSize srcroi,
+-                       uchar* dst, int dststep, CvSize dstroi,
+-                       int top, int left, int cn, const uchar* value )
++static void copyMakeConstBorder_8u( const uchar* src, size_t srcstep, Size srcroi,
++                                    uchar* dst, size_t dststep, Size dstroi,
++                                    int top, int left, int cn, const uchar* value )
+ {
+-    const int isz = (int)sizeof(int);
+-    int i, j, k;
+-    if( (cn | srcstep | dststep | (size_t)src | (size_t)dst | (size_t)value) % isz == 0 )
++    int i, j;
++    AutoBuffer<uchar> _constBuf(dstroi.width*cn);
++    uchar* constBuf = _constBuf;
++    int right = dstroi.width - srcroi.width - left;
++    int bottom = dstroi.height - srcroi.height - top;
++    
++    for( i = 0; i < dstroi.width; i++ )
+     {
+-        const int* isrc = (const int*)src;
+-        int* idst = (int*)dst;
+-        const int* ivalue = (const int*)value;
+-        int v0 = ivalue[0];
+-        
+-        cn /= isz;
+-        srcstep /= isz;
+-        dststep /= isz;
+-
+-        srcroi.width *= cn;
+-        dstroi.width *= cn;
+-        left *= cn;
+-
+-        for( j = 1; j < cn; j++ )
+-            if( ivalue[j] != ivalue[0] )
+-                break;
+-
+-        if( j == cn )
+-            cn = 1;
+-
+-        if( dstroi.width <= 0 )
+-            return CV_OK;
+-
+-        for( i = 0; i < dstroi.height; i++, idst += dststep )
+-        {
+-            if( i < top || i >= top + srcroi.height )
+-            {
+-                if( cn == 1 )
+-                {
+-                    for( j = 0; j < dstroi.width; j++ )
+-                        idst[j] = v0;
+-                }
+-                else
+-                {
+-                    for( j = 0; j < cn; j++ )
+-                        idst[j] = ivalue[j];
+-                    for( ; j < dstroi.width; j++ )
+-                        idst[j] = idst[j - cn];
+-                }
+-                continue;
+-            }
+-
+-            if( cn == 1 )
+-            {
+-                for( j = 0; j < left; j++ )
+-                    idst[j] = v0;
+-                for( j = srcroi.width + left; j < dstroi.width; j++ )
+-                    idst[j] = v0;
+-            }
+-            else
+-            {
+-                for( k = 0; k < cn; k++ )
+-                {
+-                    for( j = 0; j < left; j += cn )
+-                        idst[j+k] = ivalue[k];
+-                    for( j = srcroi.width + left; j < dstroi.width; j += cn )
+-                        idst[j+k] = ivalue[k];
+-                }
+-            }
+-
+-            if( idst + left != isrc )
+-                for( j = 0; j < srcroi.width; j++ )
+-                    idst[j + left] = isrc[j];
+-            isrc += srcstep;
+-        }
++        for( j = 0; j < cn; j++ )
++            constBuf[i*cn + j] = value[j];
+     }
+-    else
++    
++    srcroi.width *= cn;
++    dstroi.width *= cn;
++    left *= cn;
++    right *= cn;
++    
++    uchar* dstInner = dst + dststep*top + left;
++    
++    for( i = 0; i < srcroi.height; i++, dstInner += dststep, src += srcstep )
+     {
+-        uchar v0 = value[0];
+-        
+-        srcroi.width *= cn;
+-        dstroi.width *= cn;
+-        left *= cn;
+-
+-        for( j = 1; j < cn; j++ )
+-            if( value[j] != value[0] )
+-                break;
+-
+-        if( j == cn )
+-            cn = 1;
+-
+-        if( dstroi.width <= 0 )
+-            return CV_OK;
+-
+-        for( i = 0; i < dstroi.height; i++, dst += dststep )
+-        {
+-            if( i < top || i >= top + srcroi.height )
+-            {
+-                if( cn == 1 )
+-                {
+-                    for( j = 0; j < dstroi.width; j++ )
+-                        dst[j] = v0;
+-                }
+-                else
+-                {
+-                    for( j = 0; j < cn; j++ )
+-                        dst[j] = value[j];
+-                    for( ; j < dstroi.width; j++ )
+-                        dst[j] = dst[j - cn];
+-                }
+-                continue;
+-            }
+-
+-            if( cn == 1 )
+-            {
+-                for( j = 0; j < left; j++ )
+-                    dst[j] = v0;
+-                for( j = srcroi.width + left; j < dstroi.width; j++ )
+-                    dst[j] = v0;
+-            }
+-            else
+-            {
+-                for( k = 0; k < cn; k++ )
+-                {
+-                    for( j = 0; j < left; j += cn )
+-                        dst[j+k] = value[k];
+-                    for( j = srcroi.width + left; j < dstroi.width; j += cn )
+-                        dst[j+k] = value[k];
+-                }
+-            }
+-
+-            if( dst + left != src )
+-                for( j = 0; j < srcroi.width; j++ )
+-                    dst[j + left] = src[j];
+-            src += srcstep;
+-        }
++        if( dstInner != src )
++            memcpy( dstInner, src, srcroi.width );
++        memcpy( dstInner - left, constBuf, left );
++        memcpy( dstInner + srcroi.width, constBuf, right );
+     }
+-
+-    return CV_OK;
++    
++    dst += dststep*top;
++    
++    for( i = 0; i < top; i++ )
++        memcpy(dst + (i - top)*dststep, constBuf, dstroi.width);
++    
++    for( i = 0; i < bottom; i++ )
++        memcpy(dst + (i + srcroi.height)*dststep, constBuf, dstroi.width);
+ }
+ 
+-
+-CV_IMPL void
+-cvCopyMakeBorder( const CvArr* srcarr, CvArr* dstarr, CvPoint offset,
+-                  int bordertype, CvScalar value )
++    
++void copyMakeBorder( const Mat& src, Mat& dst, int top, int bottom,
++                    int left, int right, int borderType, const Scalar& value )
+ {
+-    CvMat srcstub, *src = (CvMat*)srcarr;
+-    CvMat dststub, *dst = (CvMat*)dstarr;
+-    CvSize srcsize, dstsize;
+-    int srcstep, dststep;
+-    int pix_size, type;
+-
+-    if( !CV_IS_MAT(src) )
+-        src = cvGetMat( src, &srcstub );
+-    
+-    if( !CV_IS_MAT(dst) )    
+-        dst = cvGetMat( dst, &dststub );
+-
+-    if( offset.x < 0 || offset.y < 0 )
+-        CV_Error( CV_StsOutOfRange, "Offset (left/top border width) is negative" );
+-
+-    if( src->rows + offset.y > dst->rows || src->cols + offset.x > dst->cols )
+-        CV_Error( CV_StsBadSize, "Source array is too big or destination array is too small" );
+-
+-    if( !CV_ARE_TYPES_EQ( src, dst ))
+-        CV_Error( CV_StsUnmatchedFormats, "" );
+-
+-    type = CV_MAT_TYPE(src->type);
+-    pix_size = CV_ELEM_SIZE(type);
+-    srcsize = cvGetMatSize(src);
+-    dstsize = cvGetMatSize(dst);
+-    srcstep = src->step;
+-    dststep = dst->step;
+-    if( srcstep == 0 )
+-        srcstep = CV_STUB_STEP;
+-    if( dststep == 0 )
+-        dststep = CV_STUB_STEP;
+-
+-    bordertype &= 15;
+-    if( bordertype == IPL_BORDER_REPLICATE )
+-    {
+-        icvCopyReplicateBorder_8u( src->data.ptr, srcstep, srcsize,
+-                                   dst->data.ptr, dststep, dstsize,
+-                                   offset.y, offset.x, pix_size );
+-    }
+-    else if( bordertype == IPL_BORDER_REFLECT_101 )
+-    {
+-        icvCopyReflect101Border_8u( src->data.ptr, srcstep, srcsize,
+-                                   dst->data.ptr, dststep, dstsize,
+-                                   offset.y, offset.x, pix_size );
+-    }
+-    else if( bordertype == IPL_BORDER_CONSTANT )
++    CV_Assert( top >= 0 && bottom >= 0 && left >= 0 && right >= 0 );
++    
++    dst.create( src.rows + top + bottom, src.cols + left + right, src.type() );
++    if( borderType != BORDER_CONSTANT )
++        copyMakeBorder_8u( src.data, src.step, src.size(),
++                           dst.data, dst.step, dst.size(),
++                           top, left, (int)src.elemSize(), borderType );
++    else
+     {
+         double buf[4];
+-        cvScalarToRawData( &value, buf, src->type, 0 );
+-        icvCopyConstBorder_8u( src->data.ptr, srcstep, srcsize,
+-                               dst->data.ptr, dststep, dstsize,
+-                               offset.y, offset.x, pix_size, (uchar*)buf );
++        scalarToRawData(value, buf, src.type());
++        copyMakeConstBorder_8u( src.data, src.step, src.size(),
++                                dst.data, dst.step, dst.size(),
++                                top, left, (int)src.elemSize(), (uchar*)buf );
+     }
+-    else
+-        CV_Error( CV_StsBadFlag, "Unknown/unsupported border type" );
++}
++    
+ }
+ 
+-namespace cv
+-{
+ 
+-void copyMakeBorder( const Mat& src, Mat& dst, int top, int bottom,
+-                     int left, int right, int borderType, const Scalar& value )
++CV_IMPL void
++cvCopyMakeBorder( const CvArr* srcarr, CvArr* dstarr, CvPoint offset,
++                  int borderType, CvScalar value )
+ {
+-    dst.create( src.rows + top + bottom, src.cols + left + right, src.type() );
+-    CvMat _src = src, _dst = dst;
+-    cvCopyMakeBorder( &_src, &_dst, Point(left, top), borderType, value );
+-}
+-
++    cv::Mat src = cv::cvarrToMat(srcarr), dst = cv::cvarrToMat(dstarr);
++    int left = offset.x, right = dst.cols - src.cols - left;
++    int top = offset.y, bottom = dst.rows - src.rows - top;
++    
++    CV_Assert( dst.type() == src.type() );
++    cv::copyMakeBorder( src, dst, top, bottom, left, right, borderType, value );
+ }
+ 
+ /* End of file. */
+diff -ur OpenCV-2.2.0/modules/ml/src/em.cpp opencv/modules/ml/src/em.cpp
+--- OpenCV-2.2.0/modules/ml/src/em.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/ml/src/em.cpp	2011-05-26 12:57:00.719093002 +0200
+@@ -581,7 +581,7 @@
+ 
+     __BEGIN__;
+ 
+-    cv::RNG* rng = &cv::theRNG();
++    cv::RNG rng(0xFFFFFFFF);
+     int i, j, k, nsamples, dims;
+     int iter = 0;
+     double max_dist = DBL_MAX;
+@@ -605,7 +605,7 @@
+     {
+         for( i = 0; i < nsamples; i++ )
+             labels->data.i[i] = i*nclusters/nsamples;
+-        cvRandShuffle( labels, &rng->state );
++        cvRandShuffle( labels, &rng.state );
+     }
+ 
+     for( ;; )
+@@ -702,7 +702,7 @@
+                 const float* s;
+                 for( j = 0; j < 10; j++ )
+                 {
+-                    i = (*rng)(nsamples);
++                    i = rng(nsamples);
+                     if( counters->data.i[labels->data.i[i]] > 1 )
+                         break;
+                 }
+@@ -738,7 +738,7 @@
+         if( counters->data.i[k] == 0 )
+             for(;;)
+             {
+-                i = (*rng)(nsamples);
++                i = rng(nsamples);
+                 j = labels->data.i[i];
+                 if( counters->data.i[j] > 1 )
+                 {
+diff -ur OpenCV-2.2.0/modules/ml/src/gbt.cpp opencv/modules/ml/src/gbt.cpp
+--- OpenCV-2.2.0/modules/ml/src/gbt.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/ml/src/gbt.cpp	2011-05-26 12:57:00.729093002 +0200
+@@ -11,10 +11,6 @@
+ #define CV_CMP_FLOAT(a,b) ((a) < (b))
+ static CV_IMPLEMENT_QSORT_EX( icvSortFloat, float, CV_CMP_FLOAT, float)
+ 
+-#if ANDROID
+-#define expl(x) exp(x)
+-#endif
+-
+ //===========================================================================
+ string ToString(int i)
+ {
+@@ -461,17 +457,17 @@
+         {
+             for (int i=0; i<get_len(subsample_train); ++i)
+             {
+-                long double exp_fk = 0;
+-                long double exp_sfi = 0;
++                double exp_fk = 0;
++                double exp_sfi = 0;
+                 int s_step = (sample_idx->cols > sample_idx->rows) ? 1
+                              : sample_idx->step/CV_ELEM_SIZE(sample_idx->type);
+                 int idx = *(sample_data + subsample_data[i]*s_step);
+             
+                 for (int j=0; j<class_count; ++j)
+                 {
+-                    long double res;
++                    double res;
+                     res = current_data[idx + j*sum_response->cols];
+-                    res = expl(res);
++                    res = exp(res);
+                     if (j == k) exp_fk = res;
+                     exp_sfi += res;
+                 }
+@@ -625,7 +621,7 @@
+ float CvGBTrees::find_optimal_value( const CvMat* _Idx )
+ {
+ 
+-    long double gamma = (long double)0.0;
++    double gamma = (double)0.0;
+ 
+     int* idx = _Idx->data.i;
+     float* resp_data = orig_response->data.fl;
+@@ -639,7 +635,7 @@
+         {
+             for (int i=0; i<n; ++i)
+                 gamma += resp_data[idx[i]] - cur_data[idx[i]];
+-            gamma /= (long double)n;
++            gamma /= (double)n;
+         }; break;
+ 
+     case ABSOLUTE_LOSS:
+@@ -671,7 +667,7 @@
+                 float dif = residuals[i] - r_median;
+                 gamma += (delta < fabs(dif)) ? Sign(dif)*delta : dif;
+             }
+-            gamma /= (long double)n;
++            gamma /= (double)n;
+             gamma += r_median;
+             delete[] residuals;
+ 
+@@ -680,9 +676,9 @@
+     case DEVIANCE_LOSS:
+         {
+             float* grad_data = data->responses->data.fl;
+-            long double tmp1 = 0;
+-            long double tmp2 = 0;
+-            long double tmp  = 0;
++            double tmp1 = 0;
++            double tmp2 = 0;
++            double tmp  = 0;
+             for (int i=0; i<n; ++i)
+             {
+                 tmp = grad_data[idx[i]];
+@@ -694,7 +690,7 @@
+                 tmp2 = 1;
+             }
+ 
+-            gamma = ((long double)(class_count-1)) / (long double)class_count * (tmp1/tmp2);
++            gamma = ((double)(class_count-1)) / (double)class_count * (tmp1/tmp2);
+         }; break;
+ 
+     default: break;
+diff -ur OpenCV-2.2.0/modules/ml/src/nbayes.cpp opencv/modules/ml/src/nbayes.cpp
+--- OpenCV-2.2.0/modules/ml/src/nbayes.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/modules/ml/src/nbayes.cpp	2011-05-26 12:57:00.732093002 +0200
+@@ -259,7 +259,7 @@
+             det *= w->data.db[j];
+ 
+         CV_CALL( cvDiv( NULL, w, w ));
+-        c->data.db[cls] = log( det );
++        c->data.db[cls] = det > 0 ? log(det) : -700;
+     }
+ 
+     result = true;
+diff -ur OpenCV-2.2.0/OpenCVModule.cmake opencv/OpenCVModule.cmake
+--- OpenCV-2.2.0/OpenCVModule.cmake	2010-12-05 04:35:25.000000000 +0100
++++ opencv/OpenCVModule.cmake	2011-05-26 12:57:56.446093002 +0200
+@@ -66,7 +66,7 @@
+ 	            )
+ 	    endif()
+ 	    set_target_properties(${the_target} PROPERTIES
+-	        LINK_FLAGS "/NODEFAULTLIB:libc"
++	        LINK_FLAGS "/NODEFAULTLIB:libc /DEBUG"
+ 	        )
+ 	endif()
+ 
+diff -ur OpenCV-2.2.0/tests/cv/src/acolor.cpp opencv/tests/cv/src/acolor.cpp
+--- OpenCV-2.2.0/tests/cv/src/acolor.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/tests/cv/src/acolor.cpp	2011-05-26 12:46:06.837093003 +0200
+@@ -1734,9 +1734,6 @@
+     int bi = 0;
+     int step = src->step;
+ 
+-    memset( dst->data.ptr, 0, dst->cols*3 );
+-    memset( dst->data.ptr + (dst->rows-1)*dst->step, 0, dst->cols*3 );
+-
+     if( fwd_code == CV_BayerRG2BGR || fwd_code == CV_BayerGR2BGR )
+         bi ^= 2;
+ 
+@@ -1745,8 +1742,12 @@
+         const uchar* ptr = src->data.ptr + i*step + 1;
+         uchar* dst_row = dst->data.ptr + i*dst->step + 3;
+         int save_code = code;
+-        dst_row[-3] = dst_row[-2] = dst_row[-1] = 0;
+-        dst_row[cols*3] = dst_row[cols*3+1] = dst_row[cols*3+2] = 0;
++        if( cols <= 0 )
++        {
++            dst_row[-3] = dst_row[-2] = dst_row[-1] = 0;
++            dst_row[cols*3] = dst_row[cols*3+1] = dst_row[cols*3+2] = 0;
++            continue;
++        }
+ 
+         for( j = 0; j < cols; j++ )
+         {
+@@ -1768,9 +1769,35 @@
+             dst_row[j*3 + 1] = (uchar)g;
+             dst_row[j*3 + (bi^2)] = (uchar)r;
+         }
++        
++        dst_row[-3] = dst_row[0];
++        dst_row[-2] = dst_row[1];
++        dst_row[-1] = dst_row[2];
++        dst_row[cols*3] = dst_row[cols*3-3];
++        dst_row[cols*3+1] = dst_row[cols*3-2];
++        dst_row[cols*3+2] = dst_row[cols*3-1];
++        
+         code = save_code ^ 1;
+         bi ^= 2;
+     }
++    
++    if( src->rows <= 2 )
++    {
++        memset( dst->data.ptr, 0, (cols+2)*3 );
++        memset( dst->data.ptr + (dst->rows-1)*dst->step, 0, (cols+2)*3 );
++    }
++    else
++    {
++        uchar* top_row = dst->data.ptr;
++        uchar* bottom_row = dst->data.ptr + dst->step*(dst->rows-1);
++        int dstep = dst->step;
++        
++        for( j = 0; j < (cols+2)*3; j++ )
++        {
++            top_row[j] = top_row[j + dstep];
++            bottom_row[j] = bottom_row[j - dstep];
++        }
++    }
+ }
+ 
+ CV_ColorBayerTest color_bayer_test;
+diff -ur OpenCV-2.2.0/tests/cv/src/afloodfill.cpp opencv/tests/cv/src/afloodfill.cpp
+--- OpenCV-2.2.0/tests/cv/src/afloodfill.cpp	2010-12-05 04:35:25.000000000 +0100
++++ opencv/tests/cv/src/afloodfill.cpp	2011-05-26 12:46:06.853093003 +0200
+@@ -138,12 +138,12 @@
+         l_diff = u_diff = cvScalarAll(0.);
+     else
+     {
+-        CvMat m = cvMat( 1, 8, CV_64F, buf );
+-        cvRandArr( rng, &m, CV_RAND_NORMAL, cvScalarAll(0), cvScalarAll(4) );
++        CvMat m = cvMat( 1, 8, CV_16S, buf );
++        cvRandArr( rng, &m, CV_RAND_NORMAL, cvScalarAll(0), cvScalarAll(32) );
+         for( i = 0; i < 4; i++ )
+         {
+-            l_diff.val[i] = fabs(m.data.db[i]);
+-            u_diff.val[i] = fabs(m.data.db[i+4]);
++            l_diff.val[i] = fabs(m.data.s[i]/16.);
++            u_diff.val[i] = fabs(m.data.s[i+4]/16.);
+         }
+     }
+ 

diff --git a/opencv.spec b/opencv.spec
index 05029cd..cc4a66b 100644
--- a/opencv.spec
+++ b/opencv.spec
@@ -4,7 +4,7 @@
 
 Name:           opencv
 Version:        2.2.0
-Release:        5%{?dist}
+Release:        6%{?dist}
 Summary:        Collection of algorithms for computer vision
 
 Group:          Development/Libraries
@@ -23,7 +23,7 @@ Patch3:         OpenCV-2.2-fixpc.patch
 Patch4:         opencv-2.1.0-opencvconfig.patch
 Patch5:         OpenCV-2.2-numpy.patch
 Patch6:         OpenCV-2.2-gcc46.patch
-Patch7:         OpenCV-2.2-backport-v4l.patch
+Patch7:         OpenCV-2.2-b22-backport_20110526.patch
 BuildRoot:      %{_tmppath}/%{name}-%{version}-%{release}-root-%(%{__id_u} -n)
 
 BuildRequires:  libtool
@@ -105,7 +105,7 @@ This package contains Python bindings for the OpenCV library.
 %patch4 -p1 -b .opencvconfig
 %patch5 -p1 -b .numpy
 %patch6 -p1 -b .gcc46
-%patch7 -p0
+%patch7 -p1
 
 #Save some convant headers for now:
 cp -p 3rdparty/include/cblas.h 3rdparty
@@ -242,6 +242,9 @@ rm -rf $RPM_BUILD_ROOT
 
 
 %changelog
+* Thu May 26 2011 Nicolas Chauvet <kwizart@gmail.com> - 2.2.0-6
+- Backport fixes from branch 2.2 to date
+
 * Tue May 17 2011 Nicolas Chauvet <kwizart@gmail.com> - 2.2.0-5
 - Re-enable v4l on f15
 - Remove unused cmake options

^ permalink raw reply related	[flat|nested] only message in thread

only message in thread, other threads:[~2026-08-28 13:29 UTC | newest]

Thread overview: (only message) (download: mbox.gz / follow: Atom feed)
-- links below jump to the message on this page --
2026-08-28 13:29 [rpms/opencv] opencv5: Update to current fixes from branch-2.2 Nicolas Chauvet

This is a public inbox, see mirroring instructions
for how to clone and mirror all data and code used for this inbox