{"diffoscope-json-version": 1, "source1": "/srv/reproducible-results/rbuild-debian/r-b-build.2DUs3cM1/b1/vlfeat_0.9.21+full-3_amd64.changes", "source2": "/srv/reproducible-results/rbuild-debian/r-b-build.2DUs3cM1/b2/vlfeat_0.9.21+full-3_amd64.changes", "unified_diff": null, "details": [{"source1": "Files", "source2": "Files", "unified_diff": "@@ -1,7 +1,7 @@\n \n cdd9e554cd7f1667932be71fc10691d2 40432 libdevel optional libvlfeat-dev_0.9.21+full-3_amd64.deb\n- 9a208c5589d771c886dec5728a242b01 1726352 doc optional libvlfeat-doc_0.9.21+full-3_all.deb\n+ 73c69c5e4106585647bef29d3b74eb9c 1726336 doc optional libvlfeat-doc_0.9.21+full-3_all.deb\n 4d5026fc2b1f2283686aec97058d7bf9 413740 debug optional libvlfeat1t64-dbgsym_0.9.21+full-3_amd64.deb\n ef9632f6635aed2347f27b23d835749c 171664 libs optional libvlfeat1t64_0.9.21+full-3_amd64.deb\n 82aae13ac0a8da9e230d1dc24583c7c5 8908 debug optional octave-vlfeat-dbgsym_0.9.21+full-3_amd64.deb\n 2aa69f3815d724a50b10466a736a232d 1618020 libs optional octave-vlfeat_0.9.21+full-3_amd64.deb\n"}, {"source1": "libvlfeat-doc_0.9.21+full-3_all.deb", "source2": "libvlfeat-doc_0.9.21+full-3_all.deb", "unified_diff": null, "details": [{"source1": "file list", "source2": "file list", "unified_diff": "@@ -1,3 +1,3 @@\n -rw-r--r-- 0 0 0 4 2025-09-10 08:19:47.000000 debian-binary\n--rw-r--r-- 0 0 0 15172 2025-09-10 08:19:47.000000 control.tar.xz\n--rw-r--r-- 0 0 0 1710988 2025-09-10 08:19:47.000000 data.tar.xz\n+-rw-r--r-- 0 0 0 15176 2025-09-10 08:19:47.000000 control.tar.xz\n+-rw-r--r-- 0 0 0 1710968 2025-09-10 08:19:47.000000 data.tar.xz\n"}, {"source1": "control.tar.xz", "source2": "control.tar.xz", "unified_diff": null, "details": [{"source1": "control.tar", "source2": "control.tar", "unified_diff": null, "details": [{"source1": "./md5sums", "source2": "./md5sums", "unified_diff": null, "details": [{"source1": "./md5sums", "source2": "./md5sums", "comments": ["Files differ"], "unified_diff": null}]}]}]}, {"source1": "data.tar.xz", "source2": "data.tar.xz", "unified_diff": null, "details": [{"source1": "data.tar", "source2": "data.tar", "unified_diff": null, "details": [{"source1": "file list", "source2": "file list", "unified_diff": "@@ -447,50 +447,50 @@\n -rw-r--r-- 0 root (0) root (0) 10585 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_sift_edge.html\n -rw-r--r-- 0 root (0) root (0) 13424 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_sift_match.html\n -rw-r--r-- 0 root (0) root (0) 8563 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_sift_or.html\n -rw-r--r-- 0 root (0) root (0) 11081 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_sift_peak.html\n -rw-r--r-- 0 root (0) root (0) 20884 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_sift_vs_ubc.html\n -rw-r--r-- 0 root (0) root (0) 13230 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_slic.html\n -rw-r--r-- 0 root (0) root (0) 10940 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/demo/vl_demo_svm.html\n--rw-r--r-- 0 root (0) root (0) 1200 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/helptoc.xml.gz\n+-rw-r--r-- 0 root (0) root (0) 1201 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/helptoc.xml.gz\n -rw-r--r-- 0 root (0) root (0) 13825 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/matlab.html\n--rw-r--r-- 0 root (0) root (0) 5751 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aib.html\n+-rw-r--r-- 0 root (0) root (0) 5755 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aib.html\n -rw-r--r-- 0 root (0) root (0) 4244 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibcut.html\n -rw-r--r-- 0 root (0) root (0) 3592 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibcuthist.html\n -rw-r--r-- 0 root (0) root (0) 2959 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibcutpush.html\n--rw-r--r-- 0 root (0) root (0) 3404 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibhist.html\n+-rw-r--r-- 0 root (0) root (0) 3401 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibhist.html\n -rw-r--r-- 0 root (0) root (0) 4853 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_alldist2.html\n -rw-r--r-- 0 root (0) root (0) 3457 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_alphanum.html\n -rw-r--r-- 0 root (0) root (0) 5302 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_argparse.html\n -rw-r--r-- 0 root (0) root (0) 3351 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_binsearch.html\n -rw-r--r-- 0 root (0) root (0) 4365 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_binsum.html\n--rw-r--r-- 0 root (0) root (0) 2975 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_cf.html\n+-rw-r--r-- 0 root (0) root (0) 2972 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_cf.html\n -rw-r--r-- 0 root (0) root (0) 3546 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_click.html\n -rw-r--r-- 0 root (0) root (0) 3690 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_clickpoint.html\n -rw-r--r-- 0 root (0) root (0) 3134 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_clicksegment.html\n -rw-r--r-- 0 root (0) root (0) 3772 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_colsubset.html\n -rw-r--r-- 0 root (0) root (0) 3635 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_compile.html\n--rw-r--r-- 0 root (0) root (0) 11735 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_covdet.html\n+-rw-r--r-- 0 root (0) root (0) 11736 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_covdet.html\n -rw-r--r-- 0 root (0) root (0) 3456 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_cummax.html\n--rw-r--r-- 0 root (0) root (0) 3111 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ddgaussian.html\n+-rw-r--r-- 0 root (0) root (0) 3106 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ddgaussian.html\n -rw-r--r-- 0 root (0) root (0) 2837 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_demo.html\n -rw-r--r-- 0 root (0) root (0) 3564 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_det.html\n -rw-r--r-- 0 root (0) root (0) 3077 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dgaussian.html\n -rw-r--r-- 0 root (0) root (0) 8296 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dsift.html\n -rw-r--r-- 0 root (0) root (0) 3042 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dsigmoid.html\n--rw-r--r-- 0 root (0) root (0) 2973 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dwaffine.html\n--rw-r--r-- 0 root (0) root (0) 3117 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_erfill.html\n+-rw-r--r-- 0 root (0) root (0) 2974 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dwaffine.html\n+-rw-r--r-- 0 root (0) root (0) 3119 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_erfill.html\n -rw-r--r-- 0 root (0) root (0) 3077 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ertr.html\n -rw-r--r-- 0 root (0) root (0) 2997 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_figaspect.html\n--rw-r--r-- 0 root (0) root (0) 4315 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_fisher.html\n--rw-r--r-- 0 root (0) root (0) 2998 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_flatmap.html\n+-rw-r--r-- 0 root (0) root (0) 4317 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_fisher.html\n+-rw-r--r-- 0 root (0) root (0) 2996 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_flatmap.html\n -rw-r--r-- 0 root (0) root (0) 3962 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_frame2oell.html\n -rw-r--r-- 0 root (0) root (0) 3071 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_gaussian.html\n -rw-r--r-- 0 root (0) root (0) 3010 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_getpid.html\n--rw-r--r-- 0 root (0) root (0) 5262 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_gmm.html\n+-rw-r--r-- 0 root (0) root (0) 5264 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_gmm.html\n -rw-r--r-- 0 root (0) root (0) 3613 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_grad.html\n -rw-r--r-- 0 root (0) root (0) 5491 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_harris.html\n -rw-r--r-- 0 root (0) root (0) 2897 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hat.html\n -rw-r--r-- 0 root (0) root (0) 3438 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_help.html\n -rw-r--r-- 0 root (0) root (0) 4134 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hikmeans.html\n -rw-r--r-- 0 root (0) root (0) 3760 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hikmeanshist.html\n -rw-r--r-- 0 root (0) root (0) 3335 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hikmeanspush.html\n@@ -519,22 +519,22 @@\n -rw-r--r-- 0 root (0) root (0) 3603 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_imwbackward.html\n -rw-r--r-- 0 root (0) root (0) 3285 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_imwhiten.html\n -rw-r--r-- 0 root (0) root (0) 3837 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_inthist.html\n -rw-r--r-- 0 root (0) root (0) 3446 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_irodr.html\n -rw-r--r-- 0 root (0) root (0) 2828 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_isoctave.html\n -rw-r--r-- 0 root (0) root (0) 5228 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kdtreebuild.html\n -rw-r--r-- 0 root (0) root (0) 4456 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kdtreequery.html\n--rw-r--r-- 0 root (0) root (0) 5309 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kmeans.html\n+-rw-r--r-- 0 root (0) root (0) 5312 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kmeans.html\n -rw-r--r-- 0 root (0) root (0) 3207 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_lbp.html\n -rw-r--r-- 0 root (0) root (0) 3123 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_lbpfliplr.html\n -rw-r--r-- 0 root (0) root (0) 3104 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_linespec2prop.html\n -rw-r--r-- 0 root (0) root (0) 4250 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_liop.html\n -rw-r--r-- 0 root (0) root (0) 4465 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_localmax.html\n -rw-r--r-- 0 root (0) root (0) 3108 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_matlabversion.html\n--rw-r--r-- 0 root (0) root (0) 5685 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_mser.html\n+-rw-r--r-- 0 root (0) root (0) 5687 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_mser.html\n -rw-r--r-- 0 root (0) root (0) 3066 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_noprefix.html\n -rw-r--r-- 0 root (0) root (0) 3115 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_numder.html\n -rw-r--r-- 0 root (0) root (0) 3045 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_numder2.html\n -rw-r--r-- 0 root (0) root (0) 4352 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_override.html\n -rw-r--r-- 0 root (0) root (0) 2785 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_pegasos.html\n -rw-r--r-- 0 root (0) root (0) 5355 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_phow.html\n -rw-r--r-- 0 root (0) root (0) 3679 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_plotbox.html\n@@ -544,48 +544,48 @@\n -rw-r--r-- 0 root (0) root (0) 4079 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_plotsiftdescriptor.html\n -rw-r--r-- 0 root (0) root (0) 5262 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_plotss.html\n -rw-r--r-- 0 root (0) root (0) 3812 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_plotstyle.html\n -rw-r--r-- 0 root (0) root (0) 8213 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_pr.html\n -rw-r--r-- 0 root (0) root (0) 5514 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_printsize.html\n -rw-r--r-- 0 root (0) root (0) 2805 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickseg.html\n -rw-r--r-- 0 root (0) root (0) 4388 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickshift.html\n--rw-r--r-- 0 root (0) root (0) 3991 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickvis.html\n+-rw-r--r-- 0 root (0) root (0) 3984 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickvis.html\n -rw-r--r-- 0 root (0) root (0) 2829 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rcos.html\n -rw-r--r-- 0 root (0) root (0) 3233 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rgb2xyz.html\n -rw-r--r-- 0 root (0) root (0) 8220 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_roc.html\n--rw-r--r-- 0 root (0) root (0) 3426 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rodr.html\n+-rw-r--r-- 0 root (0) root (0) 3427 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rodr.html\n -rw-r--r-- 0 root (0) root (0) 2848 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_root.html\n -rw-r--r-- 0 root (0) root (0) 3477 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sampleinthist.html\n--rw-r--r-- 0 root (0) root (0) 3371 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_setup.html\n+-rw-r--r-- 0 root (0) root (0) 3374 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_setup.html\n -rw-r--r-- 0 root (0) root (0) 5407 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sift.html\n -rw-r--r-- 0 root (0) root (0) 4796 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_siftdescriptor.html\n--rw-r--r-- 0 root (0) root (0) 3295 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sigmoid.html\n+-rw-r--r-- 0 root (0) root (0) 3293 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sigmoid.html\n -rw-r--r-- 0 root (0) root (0) 3032 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_simdctrl.html\n--rw-r--r-- 0 root (0) root (0) 3883 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_slic.html\n+-rw-r--r-- 0 root (0) root (0) 3874 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_slic.html\n -rw-r--r-- 0 root (0) root (0) 3610 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_svmdataset.html\n -rw-r--r-- 0 root (0) root (0) 2794 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_svmpegasos.html\n -rw-r--r-- 0 root (0) root (0) 8592 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_svmtrain.html\n -rw-r--r-- 0 root (0) root (0) 3146 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_threads.html\n -rw-r--r-- 0 root (0) root (0) 4310 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tightsubplot.html\n--rw-r--r-- 0 root (0) root (0) 2986 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tpfp.html\n+-rw-r--r-- 0 root (0) root (0) 2991 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tpfp.html\n -rw-r--r-- 0 root (0) root (0) 3423 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tps.html\n -rw-r--r-- 0 root (0) root (0) 3341 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tpsu.html\n -rw-r--r-- 0 root (0) root (0) 3898 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_twister.html\n -rw-r--r-- 0 root (0) root (0) 3790 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ubcmatch.html\n--rw-r--r-- 0 root (0) root (0) 3143 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ubcread.html\n+-rw-r--r-- 0 root (0) root (0) 3103 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ubcread.html\n -rw-r--r-- 0 root (0) root (0) 3014 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_version.html\n--rw-r--r-- 0 root (0) root (0) 4397 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_vlad.html\n+-rw-r--r-- 0 root (0) root (0) 4396 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_vlad.html\n -rw-r--r-- 0 root (0) root (0) 3088 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_waffine.html\n -rw-r--r-- 0 root (0) root (0) 2913 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_whistc.html\n -rw-r--r-- 0 root (0) root (0) 3197 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_witps.html\n -rw-r--r-- 0 root (0) root (0) 3633 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_wtps.html\n--rw-r--r-- 0 root (0) root (0) 3355 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xmkdir.html\n+-rw-r--r-- 0 root (0) root (0) 3394 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xmkdir.html\n -rw-r--r-- 0 root (0) root (0) 3031 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2lab.html\n -rw-r--r-- 0 root (0) root (0) 3102 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2luv.html\n--rw-r--r-- 0 root (0) root (0) 3114 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2rgb.html\n+-rw-r--r-- 0 root (0) root (0) 3120 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2rgb.html\n -rw-r--r-- 0 root (0) root (0) 2470 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/notfound.html\n drwxr-xr-x 0 root (0) root (0) 0 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/\n -rw-r--r-- 0 root (0) root (0) 7331 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/aib.html\n -rw-r--r-- 0 root (0) root (0) 25915 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/covdet.html\n -rw-r--r-- 0 root (0) root (0) 10504 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/dsift.html\n -rw-r--r-- 0 root (0) root (0) 10293 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/encodings.html\n -rw-r--r-- 0 root (0) root (0) 14963 2025-09-10 08:19:47.000000 ./usr/share/doc/libvlfeat-dev/doc/overview/frame.html\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/helptoc.xml.gz", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/helptoc.xml.gz", "unified_diff": null, "details": [{"source1": "helptoc.xml", "source2": "helptoc.xml", "unified_diff": null, "details": [{"source1": "helptoc.xml", "source2": "helptoc.xml", "comments": ["Ordering differences only"], "unified_diff": "@@ -7,39 +7,58 @@\n vl_compile\n vl_demo\n vl_harris\n vl_help\n vl_noprefix\n vl_root\n vl_setup\n+ vl_flatmap\n+ vl_imseg\n+ vl_quickseg\n+ vl_quickshift\n+ vl_quickvis\n+ vl_aib\n+ vl_aibcut\n+ vl_aibcuthist\n+ vl_aibcutpush\n+ vl_aibhist\n vl_vlad\n- vl_erfill\n- vl_ertr\n- vl_mser\n- vl_fisher\n- vl_covdet\n- vl_dsift\n- vl_frame2oell\n- vl_liop\n- vl_phow\n- vl_plotsiftdescriptor\n- vl_plotss\n- vl_sift\n- vl_siftdescriptor\n- vl_ubcmatch\n- vl_ubcread\n+ vl_hat\n+ vl_ihat\n+ vl_irodr\n+ vl_rodr\n vl_slic\n+ vl_cf\n+ vl_click\n+ vl_clickpoint\n+ vl_clicksegment\n+ vl_det\n+ vl_figaspect\n+ vl_linespec2prop\n+ vl_plotbox\n+ vl_plotframe\n+ vl_plotgrid\n+ vl_plotpoint\n+ vl_plotstyle\n+ vl_pr\n+ vl_printsize\n+ vl_roc\n+ vl_tightsubplot\n+ vl_tpfp\n vl_hikmeans\n vl_hikmeanshist\n vl_hikmeanspush\n vl_ikmeans\n vl_ikmeanshist\n vl_ikmeanspush\n vl_kmeans\n- vl_gmm\n+ vl_fisher\n+ vl_erfill\n+ vl_ertr\n+ vl_mser\n vl_dwaffine\n vl_imarray\n vl_imarraysc\n vl_imdisttf\n vl_imdown\n vl_imgrad\n vl_imintegral\n@@ -56,51 +75,14 @@\n vl_tpsu\n vl_waffine\n vl_witps\n vl_wtps\n vl_xyz2lab\n vl_xyz2luv\n vl_xyz2rgb\n- vl_cf\n- vl_click\n- vl_clickpoint\n- vl_clicksegment\n- vl_det\n- vl_figaspect\n- vl_linespec2prop\n- vl_plotbox\n- vl_plotframe\n- vl_plotgrid\n- vl_plotpoint\n- vl_plotstyle\n- vl_pr\n- vl_printsize\n- vl_roc\n- vl_tightsubplot\n- vl_tpfp\n- vl_hat\n- vl_ihat\n- vl_irodr\n- vl_rodr\n- vl_aib\n- vl_aibcut\n- vl_aibcuthist\n- vl_aibcutpush\n- vl_aibhist\n- vl_flatmap\n- vl_imseg\n- vl_quickseg\n- vl_quickshift\n- vl_quickvis\n- vl_ddgaussian\n- vl_dgaussian\n- vl_dsigmoid\n- vl_gaussian\n- vl_rcos\n- vl_sigmoid\n vl_alldist2\n vl_alphanum\n vl_argparse\n vl_binsearch\n vl_binsum\n vl_colsubset\n vl_cummax\n@@ -129,10 +111,28 @@\n vl_svmpegasos\n vl_svmtrain\n vl_threads\n vl_twister\n vl_version\n vl_whistc\n vl_xmkdir\n+ vl_gmm\n+ vl_ddgaussian\n+ vl_dgaussian\n+ vl_dsigmoid\n+ vl_gaussian\n+ vl_rcos\n+ vl_sigmoid\n+ vl_covdet\n+ vl_dsift\n+ vl_frame2oell\n+ vl_liop\n+ vl_phow\n+ vl_plotsiftdescriptor\n+ vl_plotss\n+ vl_sift\n+ vl_siftdescriptor\n+ vl_ubcmatch\n+ vl_ubcread\n \n \n \n"}]}]}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/matlab.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/matlab.html", "comments": ["Ordering differences only"], "unified_diff": "@@ -65,42 +65,42 @@\n
\n
\n
\n \n \n \n+QUICKSHIFT
    \n+
  • vl_flatmap Flatten a tree, assigning the label of the root to each node
  • vl_imseg Color an image based on the segmentation
  • vl_quickseg Produce a quickshift segmentation of a grayscale or color image
  • vl_quickshift Quick shift image segmentation
  • vl_quickvis Create an edge image from a Quickshift segmentation.
\n+AIB\n VLAD\n-MSER\n-FISHER\n-SIFT\n+GEOMETRY\n SLIC\n+PLOTOP\n KMEANS\n-GMM
    \n-
  • vl_gmm Learn a Gaussian Mixture Model using EM
\n+FISHER\n+MSER\n IMOP\n-PLOTOP\n-GEOMETRY\n-AIB\n-QUICKSHIFT
    \n-
  • vl_flatmap Flatten a tree, assigning the label of the root to each node
  • vl_imseg Color an image based on the segmentation
  • vl_quickseg Produce a quickshift segmentation of a grayscale or color image
  • vl_quickshift Quick shift image segmentation
  • vl_quickvis Create an edge image from a Quickshift segmentation.
\n-SPECIAL\n MISC\n+GMM
    \n+
  • vl_gmm Learn a Gaussian Mixture Model using EM
\n+SPECIAL\n+SIFT\n \n \n \n \n \n \n \n", "details": [{"source1": "html2text {}", "source2": "html2text {}", "unified_diff": "@@ -2,46 +2,68 @@\n * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bo\bo_\bm\bm_\bp\bp_\bi\bi_\bl\bl_\be\be Compile VLFeat MEX files\n * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\be\be_\bm\bm_\bo\bo Run VLFeat demos\n * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\ba\ba_\br\br_\br\br_\bi\bi_\bs\bs Harris corner strength\n * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\be\be_\bl\bl_\bp\bp VLFeat toolbox builtin help\n * _\bv\bv_\bl\bl_\b_\b__\bn\bn_\bo\bo_\bp\bp_\br\br_\be\be_\bf\bf_\bi\bi_\bx\bx Create a prefix-less version of VLFeat commands\n * _\bv\bv_\bl\bl_\b_\b__\br\br_\bo\bo_\bo\bo_\bt\bt Obtain VLFeat root path\n * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\be\be_\bt\bt_\bu\bu_\bp\bp Add VLFeat Toolbox to the path\n+Q\bQU\bUI\bIC\bCK\bKS\bSH\bHI\bIF\bFT\bT\n+ * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bl\bl_\ba\ba_\bt\bt_\bm\bm_\ba\ba_\bp\bp Flatten a tree, assigning the label of the root to each node\n+ * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\bs\bs_\be\be_\bg\bg Color an image based on the segmentation\n+ * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\be\be_\bg\bg Produce a quickshift segmentation of a grayscale or color\n+ image\n+ * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\bh\bh_\bi\bi_\bf\bf_\bt\bt Quick shift image segmentation\n+ * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bv\bv_\bi\bi_\bs\bs Create an edge image from a Quickshift segmentation.\n+A\bAI\bIB\bB\n+ * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb Agglomerative Information Bottleneck\n+ * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt Cut VL_AIB tree\n+ * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute a histogram by using an AIB compressed alphabet\n+ * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt_\bp\bp_\bu\bu_\bs\bs_\bh\bh Quantize based on VL_AIB cut\n+ * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute histogram over VL_AIB tree\n V\bVL\bLA\bAD\bD\n * _\bv\bv_\bl\bl_\b_\b__\bv\bv_\bl\bl_\ba\ba_\bd\bd VLAD feature encoding\n-M\bMS\bSE\bER\bR\n- * _\bv\bv_\bl\bl_\b_\b__\be\be_\br\br_\bf\bf_\bi\bi_\bl\bl_\bl\bl Fill extremal region\n- * _\bv\bv_\bl\bl_\b_\b__\be\be_\br\br_\bt\bt_\br\br Transpose exremal regions frames\n- * _\bv\bv_\bl\bl_\b_\b__\bm\bm_\bs\bs_\be\be_\br\br Maximally Stable Extremal Regions\n-F\bFI\bIS\bSH\bHE\bER\bR\n- * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bi\bi_\bs\bs_\bh\bh_\be\be_\br\br Fisher vector feature encoding\n-S\bSI\bIF\bFT\bT\n- * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bo\bo_\bv\bv_\bd\bd_\be\be_\bt\bt Covariant feature detectors and descriptors\n- * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bs\bs_\bi\bi_\bf\bf_\bt\bt Dense SIFT\n- * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\br\br_\ba\ba_\bm\bm_\be\be_\b2\b2_\bo\bo_\be\be_\bl\bl_\bl\bl Convert a geometric frame to an oriented ellipse\n- * _\bv\bv_\bl\bl_\b_\b__\bl\bl_\bi\bi_\bo\bo_\bp\bp Local Intensity Order Pattern descriptor\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bh\bh_\bo\bo_\bw\bw Extract PHOW features\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bi\bi_\bf\bf_\bt\bt_\bd\bd_\be\be_\bs\bs_\bc\bc_\br\br_\bi\bi_\bp\bp_\bt\bt_\bo\bo_\br\br Plot SIFT descriptor\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bs\bs Plot scale space\n- * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bf\bf_\bt\bt Scale-Invariant Feature Transform\n- * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bf\bf_\bt\bt_\bd\bd_\be\be_\bs\bs_\bc\bc_\br\br_\bi\bi_\bp\bp_\bt\bt_\bo\bo_\br\br Raw SIFT descriptor\n- * _\bv\bv_\bl\bl_\b_\b__\bu\bu_\bb\bb_\bc\bc_\bm\bm_\ba\ba_\bt\bt_\bc\bc_\bh\bh Match SIFT features\n- * _\bv\bv_\bl\bl_\b_\b__\bu\bu_\bb\bb_\bc\bc_\br\br_\be\be_\ba\ba_\bd\bd Read Lowe's SIFT implementation data files\n+G\bGE\bEO\bOM\bME\bET\bTR\bRY\bY\n+ * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\ba\ba_\bt\bt Hat operator\n+ * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bh\bh_\ba\ba_\bt\bt Inverse vl_hat operator\n+ * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\br\br_\bo\bo_\bd\bd_\br\br Inverse Rodrigues' formula\n+ * _\bv\bv_\bl\bl_\b_\b__\br\br_\bo\bo_\bd\bd_\br\br Rodrigues' formula\n S\bSL\bLI\bIC\bC\n * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bl\bl_\bi\bi_\bc\bc SLIC superpixels\n+P\bPL\bLO\bOT\bTO\bOP\bP\n+ * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bf\bf Creates a copy of a figure\n+ * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk Click a point\n+ * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk_\bp\bp_\bo\bo_\bi\bi_\bn\bn_\bt\bt Select a point by clicking\n+ * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\be\be_\bg\bg_\bm\bm_\be\be_\bn\bn_\bt\bt Select a segment by clicking\n+ * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\be\be_\bt\bt Compute DET curve\n+ * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bi\bi_\bg\bg_\ba\ba_\bs\bs_\bp\bp_\be\be_\bc\bc_\bt\bt Set figure aspect ratio\n+ * _\bv\bv_\bl\bl_\b_\b__\bl\bl_\bi\bi_\bn\bn_\be\be_\bs\bs_\bp\bp_\be\be_\bc\bc_\b2\b2_\bp\bp_\br\br_\bo\bo_\bp\bp Convert PLOT style line specs to line properties\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bb\bb_\bo\bo_\bx\bx Plot boxes\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bf\bf_\br\br_\ba\ba_\bm\bm_\be\be Plot a geometric frame\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bg\bg_\br\br_\bi\bi_\bd\bd Plot a 2-D grid\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bp\bp_\bo\bo_\bi\bi_\bn\bn_\bt\bt Plot 2 or 3 dimensional points\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bt\bt_\by\by_\bl\bl_\be\be Get a plot style\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\br\br Precision-recall curve.\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\br\br_\bi\bi_\bn\bn_\bt\bt_\bs\bs_\bi\bi_\bz\bz_\be\be Set the printing size of a figure\n+ * _\bv\bv_\bl\bl_\b_\b__\br\br_\bo\bo_\bc\bc ROC curve.\n+ * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bi\bi_\bg\bg_\bh\bh_\bt\bt_\bs\bs_\bu\bu_\bb\bb_\bp\bp_\bl\bl_\bo\bo_\bt\bt Tiles axes without wasting space\n+ * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bp\bp_\bf\bf_\bp\bp Compute true positives and false positives\n K\bKM\bME\bEA\bAN\bNS\bS\n * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs Hierachical integer K-means\n * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute histogram of quantized data\n * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs_\bp\bp_\bu\bu_\bs\bs_\bh\bh Push data down an integer K-means tree\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs Integer K-means\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute histogram of quantized data\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs_\bp\bp_\bu\bu_\bs\bs_\bh\bh Project data on integer K-means paritions\n * _\bv\bv_\bl\bl_\b_\b__\bk\bk_\bm\bm_\be\be_\ba\ba_\bn\bn_\bs\bs Cluster data using k-means\n-G\bGM\bMM\bM\n- * _\bv\bv_\bl\bl_\b_\b__\bg\bg_\bm\bm_\bm\bm Learn a Gaussian Mixture Model using EM\n+F\bFI\bIS\bSH\bHE\bER\bR\n+ * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bi\bi_\bs\bs_\bh\bh_\be\be_\br\br Fisher vector feature encoding\n+M\bMS\bSE\bER\bR\n+ * _\bv\bv_\bl\bl_\b_\b__\be\be_\br\br_\bf\bf_\bi\bi_\bl\bl_\bl\bl Fill extremal region\n+ * _\bv\bv_\bl\bl_\b_\b__\be\be_\br\br_\bt\bt_\br\br Transpose exremal regions frames\n+ * _\bv\bv_\bl\bl_\b_\b__\bm\bm_\bs\bs_\be\be_\br\br Maximally Stable Extremal Regions\n I\bIM\bMO\bOP\bP\n * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bw\bw_\ba\ba_\bf\bf_\bf\bf_\bi\bi_\bn\bn_\be\be Derivative of an affine warp\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\ba\ba_\br\br_\br\br_\ba\ba_\by\by Flattens image array\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\ba\ba_\br\br_\br\br_\ba\ba_\by\by_\bs\bs_\bc\bc Scale and flattens image array\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\bd\bd_\bi\bi_\bs\bs_\bt\bt_\bt\bt_\bf\bf Image distance transform\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\bd\bd_\bo\bo_\bw\bw_\bn\bn Downsample an image by two\n * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\bg\bg_\br\br_\ba\ba_\bd\bd Image gradient\n@@ -59,57 +81,14 @@\n * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bp\bp_\bs\bs_\bu\bu Compute the U matrix of a thin-plate spline transformation\n * _\bv\bv_\bl\bl_\b_\b__\bw\bw_\ba\ba_\bf\bf_\bf\bf_\bi\bi_\bn\bn_\be\be Apply affine transformation to points\n * _\bv\bv_\bl\bl_\b_\b__\bw\bw_\bi\bi_\bt\bt_\bp\bp_\bs\bs Inverse thin-plate spline warping\n * _\bv\bv_\bl\bl_\b_\b__\bw\bw_\bt\bt_\bp\bp_\bs\bs Thin-plate spline warping\n * _\bv\bv_\bl\bl_\b_\b__\bx\bx_\by\by_\bz\bz_\b2\b2_\bl\bl_\ba\ba_\bb\bb Convert XYZ color space to LAB\n * _\bv\bv_\bl\bl_\b_\b__\bx\bx_\by\by_\bz\bz_\b2\b2_\bl\bl_\bu\bu_\bv\bv Convert XYZ color space to LUV\n * _\bv\bv_\bl\bl_\b_\b__\bx\bx_\by\by_\bz\bz_\b2\b2_\br\br_\bg\bg_\bb\bb Convert XYZ to RGB\n-P\bPL\bLO\bOT\bTO\bOP\bP\n- * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bf\bf Creates a copy of a figure\n- * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk Click a point\n- * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk_\bp\bp_\bo\bo_\bi\bi_\bn\bn_\bt\bt Select a point by clicking\n- * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bl\bl_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\be\be_\bg\bg_\bm\bm_\be\be_\bn\bn_\bt\bt Select a segment by clicking\n- * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\be\be_\bt\bt Compute DET curve\n- * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bi\bi_\bg\bg_\ba\ba_\bs\bs_\bp\bp_\be\be_\bc\bc_\bt\bt Set figure aspect ratio\n- * _\bv\bv_\bl\bl_\b_\b__\bl\bl_\bi\bi_\bn\bn_\be\be_\bs\bs_\bp\bp_\be\be_\bc\bc_\b2\b2_\bp\bp_\br\br_\bo\bo_\bp\bp Convert PLOT style line specs to line properties\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bb\bb_\bo\bo_\bx\bx Plot boxes\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bf\bf_\br\br_\ba\ba_\bm\bm_\be\be Plot a geometric frame\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bg\bg_\br\br_\bi\bi_\bd\bd Plot a 2-D grid\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bp\bp_\bo\bo_\bi\bi_\bn\bn_\bt\bt Plot 2 or 3 dimensional points\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bt\bt_\by\by_\bl\bl_\be\be Get a plot style\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\br\br Precision-recall curve.\n- * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\br\br_\bi\bi_\bn\bn_\bt\bt_\bs\bs_\bi\bi_\bz\bz_\be\be Set the printing size of a figure\n- * _\bv\bv_\bl\bl_\b_\b__\br\br_\bo\bo_\bc\bc ROC curve.\n- * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bi\bi_\bg\bg_\bh\bh_\bt\bt_\bs\bs_\bu\bu_\bb\bb_\bp\bp_\bl\bl_\bo\bo_\bt\bt Tiles axes without wasting space\n- * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bp\bp_\bf\bf_\bp\bp Compute true positives and false positives\n-G\bGE\bEO\bOM\bME\bET\bTR\bRY\bY\n- * _\bv\bv_\bl\bl_\b_\b__\bh\bh_\ba\ba_\bt\bt Hat operator\n- * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bh\bh_\ba\ba_\bt\bt Inverse vl_hat operator\n- * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\br\br_\bo\bo_\bd\bd_\br\br Inverse Rodrigues' formula\n- * _\bv\bv_\bl\bl_\b_\b__\br\br_\bo\bo_\bd\bd_\br\br Rodrigues' formula\n-A\bAI\bIB\bB\n- * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb Agglomerative Information Bottleneck\n- * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt Cut VL_AIB tree\n- * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute a histogram by using an AIB compressed alphabet\n- * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bc\bc_\bu\bu_\bt\bt_\bp\bp_\bu\bu_\bs\bs_\bh\bh Quantize based on VL_AIB cut\n- * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bi\bi_\bb\bb_\bh\bh_\bi\bi_\bs\bs_\bt\bt Compute histogram over VL_AIB tree\n-Q\bQU\bUI\bIC\bCK\bKS\bSH\bHI\bIF\bFT\bT\n- * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\bl\bl_\ba\ba_\bt\bt_\bm\bm_\ba\ba_\bp\bp Flatten a tree, assigning the label of the root to each node\n- * _\bv\bv_\bl\bl_\b_\b__\bi\bi_\bm\bm_\bs\bs_\be\be_\bg\bg Color an image based on the segmentation\n- * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\be\be_\bg\bg Produce a quickshift segmentation of a grayscale or color\n- image\n- * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bs\bs_\bh\bh_\bi\bi_\bf\bf_\bt\bt Quick shift image segmentation\n- * _\bv\bv_\bl\bl_\b_\b__\bq\bq_\bu\bu_\bi\bi_\bc\bc_\bk\bk_\bv\bv_\bi\bi_\bs\bs Create an edge image from a Quickshift segmentation.\n-S\bSP\bPE\bEC\bCI\bIA\bAL\bL\n- * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bd\bd_\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Second derivative of the Gaussian density function\n- * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Derivative of the Gaussian density function\n- * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bs\bs_\bi\bi_\bg\bg_\bm\bm_\bo\bo_\bi\bi_\bd\bd Derivative of the sigmoid function\n- * _\bv\bv_\bl\bl_\b_\b__\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Standard Gaussian density function\n- * _\bv\bv_\bl\bl_\b_\b__\br\br_\bc\bc_\bo\bo_\bs\bs RCOS function\n- * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bg\bg_\bm\bm_\bo\bo_\bi\bi_\bd\bd Sigmoid function\n M\bMI\bIS\bSC\bC\n * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bl\bl_\bl\bl_\bd\bd_\bi\bi_\bs\bs_\bt\bt_\b2\b2 Pairwise distances\n * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\bl\bl_\bp\bp_\bh\bh_\ba\ba_\bn\bn_\bu\bu_\bm\bm Sort strings using the Alphanum algorithm\n * _\bv\bv_\bl\bl_\b_\b__\ba\ba_\br\br_\bg\bg_\bp\bp_\ba\ba_\br\br_\bs\bs_\be\be Parse list of parameter-value pairs.\n * _\bv\bv_\bl\bl_\b_\b__\bb\bb_\bi\bi_\bn\bn_\bs\bs_\be\be_\ba\ba_\br\br_\bc\bc_\bh\bh Maps data to bins\n * _\bv\bv_\bl\bl_\b_\b__\bb\bb_\bi\bi_\bn\bn_\bs\bs_\bu\bu_\bm\bm Binned summation\n * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bo\bo_\bl\bl_\bs\bs_\bu\bu_\bb\bb_\bs\bs_\be\be_\bt\bt Select a given number of columns\n@@ -139,8 +118,29 @@\n * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bv\bv_\bm\bm_\bp\bp_\be\be_\bg\bg_\ba\ba_\bs\bs_\bo\bo_\bs\bs [deprecated]\n * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bv\bv_\bm\bm_\bt\bt_\br\br_\ba\ba_\bi\bi_\bn\bn Train a Support Vector Machine\n * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bh\bh_\br\br_\be\be_\ba\ba_\bd\bd_\bs\bs Control VLFeat computational threads\n * _\bv\bv_\bl\bl_\b_\b__\bt\bt_\bw\bw_\bi\bi_\bs\bs_\bt\bt_\be\be_\br\br Random number generator\n * _\bv\bv_\bl\bl_\b_\b__\bv\bv_\be\be_\br\br_\bs\bs_\bi\bi_\bo\bo_\bn\bn Obtain VLFeat version information\n * _\bv\bv_\bl\bl_\b_\b__\bw\bw_\bh\bh_\bi\bi_\bs\bs_\bt\bt_\bc\bc Weighted histogram\n * _\bv\bv_\bl\bl_\b_\b__\bx\bx_\bm\bm_\bk\bk_\bd\bd_\bi\bi_\br\br Create a directory recursively.\n+G\bGM\bMM\bM\n+ * _\bv\bv_\bl\bl_\b_\b__\bg\bg_\bm\bm_\bm\bm Learn a Gaussian Mixture Model using EM\n+S\bSP\bPE\bEC\bCI\bIA\bAL\bL\n+ * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bd\bd_\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Second derivative of the Gaussian density function\n+ * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Derivative of the Gaussian density function\n+ * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bs\bs_\bi\bi_\bg\bg_\bm\bm_\bo\bo_\bi\bi_\bd\bd Derivative of the sigmoid function\n+ * _\bv\bv_\bl\bl_\b_\b__\bg\bg_\ba\ba_\bu\bu_\bs\bs_\bs\bs_\bi\bi_\ba\ba_\bn\bn Standard Gaussian density function\n+ * _\bv\bv_\bl\bl_\b_\b__\br\br_\bc\bc_\bo\bo_\bs\bs RCOS function\n+ * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bg\bg_\bm\bm_\bo\bo_\bi\bi_\bd\bd Sigmoid function\n+S\bSI\bIF\bFT\bT\n+ * _\bv\bv_\bl\bl_\b_\b__\bc\bc_\bo\bo_\bv\bv_\bd\bd_\be\be_\bt\bt Covariant feature detectors and descriptors\n+ * _\bv\bv_\bl\bl_\b_\b__\bd\bd_\bs\bs_\bi\bi_\bf\bf_\bt\bt Dense SIFT\n+ * _\bv\bv_\bl\bl_\b_\b__\bf\bf_\br\br_\ba\ba_\bm\bm_\be\be_\b2\b2_\bo\bo_\be\be_\bl\bl_\bl\bl Convert a geometric frame to an oriented ellipse\n+ * _\bv\bv_\bl\bl_\b_\b__\bl\bl_\bi\bi_\bo\bo_\bp\bp Local Intensity Order Pattern descriptor\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bh\bh_\bo\bo_\bw\bw Extract PHOW features\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bi\bi_\bf\bf_\bt\bt_\bd\bd_\be\be_\bs\bs_\bc\bc_\br\br_\bi\bi_\bp\bp_\bt\bt_\bo\bo_\br\br Plot SIFT descriptor\n+ * _\bv\bv_\bl\bl_\b_\b__\bp\bp_\bl\bl_\bo\bo_\bt\bt_\bs\bs_\bs\bs Plot scale space\n+ * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bf\bf_\bt\bt Scale-Invariant Feature Transform\n+ * _\bv\bv_\bl\bl_\b_\b__\bs\bs_\bi\bi_\bf\bf_\bt\bt_\bd\bd_\be\be_\bs\bs_\bc\bc_\br\br_\bi\bi_\bp\bp_\bt\bt_\bo\bo_\br\br Raw SIFT descriptor\n+ * _\bv\bv_\bl\bl_\b_\b__\bu\bu_\bb\bb_\bc\bc_\bm\bm_\ba\ba_\bt\bt_\bc\bc_\bh\bh Match SIFT features\n+ * _\bv\bv_\bl\bl_\b_\b__\bu\bu_\bb\bb_\bc\bc_\br\br_\be\be_\ba\ba_\bd\bd Read Lowe's SIFT implementation data files\n 2007-14,18 The VLFeat Authors\n"}]}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aib.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aib.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>AIB - vl_aib\n
\n
\n
\n
\n
\n
\n-

\n+

\n PARENTS = VL_AIB(PCX) runs Agglomerative Information Bottleneck\n (AIB) on the class-feature co-occurrence matrix PCX and returns a\n vector PARENTS representing the sequence of compressed AIB\n alphabets.\n

\n PCX is the joint probability of the occurrence of the class label\n C and the feature value X. PCX has one row for each class label\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibhist.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_aibhist.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>AIB - vl_aibhist\n

\n
\n
\n
\n
\n
\n-

\n+

\n H = VL_AIBHIST(PARENTS, DATA) computes the histogram of the data\n points DATA on the VL_AIB tree defined by PARENTS. Each element of\n DATA indexes one of the leaves of the VL_AIB tree.\n

\n H = VL_AIBHIST(PARENTS, DATA, 'HIST') treats DATA as an histograms.\n In this case each compoment of DATA is the number of occurences of\n the VL_AIB leaves corresponding to that component.\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_alldist2.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_alldist2.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>MISC - vl_alldist2\n

\n
\n
\n
\n
\n
\n-

\n+

\n D = VL_ALLDIST2(X,Y) returns the pairwise distance matrix D of the\n columns of S1 and S2, yielding\n

\n   D(i,j) = sum (X(:,i) - Y(:,j)).^2\n 

\n VL_ALLDIST2(X) returns the pairwise distance matrix fo the columns of\n S, yielding\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_cf.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_cf.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>PLOTOP - vl_cf\n

\n
\n
\n
\n
\n
\n-

\n+

\n VL_CF() creates a copy of the current figure and returns VL_CF(H0)\n creates a copy of the figure(s) whose handle is H0. H =\n VL_CF(...) returns the handles of the copies.\n

\n See also: VL_HELP().\n

\n
\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_covdet.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_covdet.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>SIFT - vl_covdet\n
\n
\n
\n
\n
\n
\n-

\n+

\n VL_COVDET() implements a number of co-variant feature detectors\n (e.g., DoG, Harris-Affine, Harris-Laplace) and corresponding\n feature descriptors (SIFT, raw patches).\n

\n F = VL_COVDET(I) detects upright scale and translation covariant\n features based on the Difference of Gaussian (Dog) cornerness\n measure from image I (a grayscale image of class SINGLE). Each\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ddgaussian.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ddgaussian.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>SPECIAL - vl_ddgaussian\n

\n
\n
\n
\n
\n
\n-

\n+

\n Y=VL_DDGAUSSIAN(X) computes the second derivative of the standard\n Gaussian density.\n

\n To obtain the second derivative of the Gaussian density of\n standard deviation S, do\n

\n   Y = 1/S^3 * VL_DDGAUSSIAN(X/S) .\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dwaffine.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_dwaffine.html", "unified_diff": "@@ -62,15 +62,15 @@\n       Documentation>MATLAB API>IMOP - vl_dwaffine\n     
\n
\n
\n
\n
\n
\n-

\n+

\n [DWX,DWY]=VL_DWAFFINE(X,Y) returns the derivative of the 2-D affine\n warp [WX; WY] = [A T] [X; Y] with respect to the parameters A,T\n computed at points X,Y.\n

\n See also: VL_WAFFINE(), VL_HELP().\n

\n
\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_erfill.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_erfill.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>MSER - vl_erfill\n
\n
\n
\n
\n
\n
\n-

\n+

\n MEMBERS=VL_ERFILL(I,ER) returns the list MEMBERS of the pixels which\n belongs to the extremal region represented by the pixel ER.\n

\n The selected region is the one that contains pixel ER and of\n intensity I(ER).\n

\n I must be of class UINT8 and ER must be a (scalar) index of the\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_fisher.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_fisher.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>FISHER - vl_fisher\n

\n
\n
\n
\n
\n
\n-

\n+

\n ENC = VL_FISHER(X, MEANS, COVARIANCES, PRIORS) computes the Fisher\n vector encoding of the vectors X relative to the Gaussian mixture\n model with means MEANS, covariances COVARIANCES, and prior mode\n probabilities PRIORS.\n

\n X has one column per data vector (e.g. a SIFT descriptor), and\n MEANS and COVARIANCES one column per GMM component (covariance\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_flatmap.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_flatmap.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>QUICKSHIFT - vl_flatmap\n

\n
\n
\n
\n
\n
\n-

\n+

\n [LABELS CLUSTERS] = VL_FLATMAP(MAP) labels each tree of the forest contained\n in MAP. LABELS contains the linear index of the root node in MAP, CLUSTERS\n instead contains a label between 1 and the number of clusters.\n

\n See also: VL_HELP().\n

\n
\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_gmm.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_gmm.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>GMM - vl_gmm\n
\n
\n
\n
\n
\n
\n-

\n+

\n [MEANS, COVARIANCES, PRIORS] = VL_GMM(X, NUMCLUSTERS) fits a GMM with\n NUMCLUSTERS components to the data X. Each column of X represent a\n sample point. X may be either SINGLE or DOUBLE. MEANS, COVARIANCES, and\n PRIORS are respectively the means, the diagonal covariances, and\n the prior probabilities of the Guassian modes. MEANS and COVARIANCES\n have the same number of rows as X and NUMCLUSTERS columns with one\n column per mode. PRIORS is a row vector with NUMCLUSTER entries\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hat.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hat.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>GEOMETRY - vl_hat\n

\n
\n
\n
\n
\n
\n-

\n+

\n H = VL_HAT(OM) returns the skew symmetric matrix by taking the "hat"\n of the 3D vector OM.\n

\n See also: VL_IHAT(), VL_HELP().\n

\n
\n
\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hikmeans.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_hikmeans.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>KMEANS - vl_hikmeans\n
\n
\n
\n
\n
\n
\n-

\n+

\n [TREE,ASGN] = VL_HIKMEANS(DATA,K,NLEAVES) applies integer K-menas\n recursively to cluster the data DATA, returing a structure TREE\n representing the clusters and a vector ASGN with the data to\n cluster assignments. The depth of the recursive partition is\n computed so that at least NLEAVES are generated.\n

\n VL_HIKMEANS() is built on top of VL_IKMEANS() and requires the\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kmeans.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_kmeans.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>KMEANS - vl_kmeans\n

\n
\n
\n
\n
\n
\n-

\n+

\n [C, A] = VL_KMEANS(X, NUMCENTERS) clusters the columns of the\n matrix X in NUMCENTERS centers C using k-means. X may be either\n SINGLE or DOUBLE. C has the same number of rows of X and NUMCENTER\n columns, with one column per center. A is a UINT32 row vector\n specifying the assignments of the data X to the NUMCENTER\n centers.\n

\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_mser.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_mser.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>MSER - vl_mser\n

\n
\n
\n
\n
\n
\n-

\n+

\n R=VL_MSER(I) computes the Maximally Stable Extremal Regions (MSER)\n [1] of image I with stability threshold DELTA. I is any array of\n class UINT8. R is a vector of region seeds.\n

\n A (maximally stable) extremal region is just a connected component\n of one of the level sets of the image I. An extremal region can\n be recovered from a seed X as the connected component of the level\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickvis.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_quickvis.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>QUICKSHIFT - vl_quickvis\n

\n
\n
\n
\n
\n
\n-

\n+

\n IEDGE = VL_QUICKVIS(I, RATIO, KERNELSIZE, MAXDIST, MAXCUTS) creates an edge\n stability image from a Quickshift segmentation. RATIO controls the tradeoff\n between color consistency and spatial consistency (See VL_QUICKSEG) and\n KERNELSIZE controls the bandwidth of the density estimator (See VL_QUICKSEG,\n VL_QUICKSHIFT). MAXDIST is the maximum distance between neighbors which\n increase the density.\n

\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rodr.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_rodr.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>GEOMETRY - vl_rodr\n

\n
\n
\n
\n
\n
\n-

\n+

\n R = VL_RODR(OM) where OM a 3-dimensional column vector computes the\n Rodrigues' formula of OM, returning the rotation matrix R =\n expm(vl_hat(OM)).\n

\n [R,DR] = VL_RODR(OM) computes also the derivative of the Rodrigues\n formula. In matrix notation this is the expression\n

\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_setup.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_setup.html", "unified_diff": "@@ -62,15 +62,15 @@\n       Documentation>MATLAB API>vl_setup\n     
\n
\n
\n
\n
\n
\n-

\n+

\n PATH = VL_SETUP() adds the VLFeat Toolbox to MATLAB path and\n returns the path PATH to the VLFeat package.\n

\n VL_SETUP('NOPREFIX') adds aliases to each function that do not\n contain the VL_ prefix. For example, with this option it is\n possible to use SIFT() instead of VL_SIFT().\n

\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sigmoid.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_sigmoid.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>SPECIAL - vl_sigmoid\n

\n
\n
\n
\n
\n
\n-

\n+

\n Y = VL_SIGMOID(X) returns\n

\n  Y = 1 ./ (1 + EXP(X)) ;\n 
\n Remark\n

\n Useful properties of the sigmoid function are:\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_slic.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_slic.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>SLIC - vl_slic\n

\n
\n
\n
\n
\n
\n-

\n+

\n SEGMENTS = VL_SLIC(IM, REGIONSIZE, REGULARIZER) extracts the SLIC\n superpixes [1] from image IM. REGIONSIZE is the starting size of\n the superpixels and REGULARIZER is the trades-off appearance for\n spatial regularity when clustering (a larger value results in more\n spatial regularization). SEGMENTS is a UINT32 array containing the\n superpixel identifier for each image pixel.\n

\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tpfp.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_tpfp.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>PLOTOP - vl_tpfp\n

\n
\n
\n
\n
\n
\n-

\n+

\n This is an helper function used by VL_PR(), VL_ROC(), VL_DET().\n

\n See also: VL_PR(), VL_ROC(), VL_DET(), VL_HELP().\n

\n
\n
\n
\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ubcread.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_ubcread.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>SIFT - vl_ubcread\n
\n
\n
\n
\n
\n
\n-

\n+

\n [F,D] = VL_UBCREAD(FILE) reads the frames F and the descriptors D\n from FILE in UBC (Lowe's original implementation of SIFT) format\n and returns F and D as defined by VL_SIFT().\n

\n VL_UBCREAD(FILE, 'FORMAT', 'OXFORD') assumes the format used by\n Oxford VGG implementations .\n

\n", "details": [{"source1": "html2text {}", "source2": "html2text {}", "unified_diff": "@@ -1,11 +1,10 @@\n _\bD_\bo_\bc_\bu_\bm_\be_\bn_\bt_\ba_\bt_\bi_\bo_\bn>_\bM_\bA_\bT_\bL_\bA_\bB_\b _\bA_\bP_\bI>_\bS_\bI_\bF_\bT_\b _\b-_\b _\bv_\bl_\b__\bu_\bb_\bc_\br_\be_\ba_\bd\n * _\bI_\bn_\bd_\be_\bx\n * _\bP_\br_\be_\bv\n- * _\bN_\be_\bx_\bt\n [F,D] = _\bV_\bL_\b__\bU_\bB_\bC_\bR_\bE_\bA_\bD(FILE) reads the frames F and the descriptors D from FILE in\n UBC (Lowe's original implementation of SIFT) format and returns F and D as\n defined by _\bV_\bL_\b__\bS_\bI_\bF_\bT().\n _\bV_\bL_\b__\bU_\bB_\bC_\bR_\bE_\bA_\bD(FILE, 'FORMAT', 'OXFORD') assumes the format used by Oxford VGG\n implementations .\n See also: _\bV_\bL_\b__\bS_\bI_\bF_\bT(), _\bV_\bL_\b__\bH_\bE_\bL_\bP().\n 2007-14,18 The VLFeat Authors\n"}]}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_vlad.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_vlad.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>VLAD - vl_vlad\n

\n
\n
\n
\n
\n
\n-

\n+

\n ENC = VL_VLAD(X, MEANS, ASSIGNMENTS) computes the VLAD\n encoding of the vectors X relative to cluster centers MEANS and\n vector-to-cluster soft assignments ASSIGNMENTS.\n

\n X has one column per data vector (e.g. a SIFT descriptor), and\n MEANS has one column per component. Usually one has one component\n per KMeans cluster and MEANS are the KMeans centers. X and MEANS\n"}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xmkdir.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xmkdir.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>MISC - vl_xmkdir\n

\n
\n
\n
\n
\n
\n-

\n+

\n VL_XMKDIR(PATH) creates all directory specified by PATH if they\n do not exist (existing directories are skipped).\n

\n The function is meant as a silent replacement of MATLAB's builtin\n MKDIR() function. It can also be used to show more clearly what\n directories are or would be created by the command.\n

\n", "details": [{"source1": "html2text {}", "source2": "html2text {}", "unified_diff": "@@ -1,10 +1,11 @@\n _\bD_\bo_\bc_\bu_\bm_\be_\bn_\bt_\ba_\bt_\bi_\bo_\bn>_\bM_\bA_\bT_\bL_\bA_\bB_\b _\bA_\bP_\bI>_\bM_\bI_\bS_\bC_\b _\b-_\b _\bv_\bl_\b__\bx_\bm_\bk_\bd_\bi_\br\n * _\bI_\bn_\bd_\be_\bx\n * _\bP_\br_\be_\bv\n+ * _\bN_\be_\bx_\bt\n _\bV_\bL_\b__\bX_\bM_\bK_\bD_\bI_\bR(PATH) creates all directory specified by PATH if they do not exist\n (existing directories are skipped).\n The function is meant as a silent replacement of MATLAB's builtin MKDIR()\n function. It can also be used to show more clearly what directories are or\n would be created by the command.\n The function accepts the following options:\n Pretend false\n"}]}, {"source1": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2rgb.html", "source2": "./usr/share/doc/libvlfeat-dev/doc/matlab/vl_xyz2rgb.html", "unified_diff": "@@ -62,15 +62,15 @@\n Documentation>MATLAB API>IMOP - vl_xyz2rgb\n

\n
\n
\n
\n
\n
\n-

\n+

\n J = VL_XYZ2RGB(I) the XYZ image I in RGB format.\n

\n VL_XYZ2RGB(I,WS) uses the RGB workspace WS. WS is a string in\n

  • \n CIE: E illuminant and 2.2 gamma\n

  • \n Adobe: D65 illuminant and 2.2 gamma\n"}]}]}]}]}