446 lines
13 KiB
Plaintext
446 lines
13 KiB
Plaintext
- is our C API too awkward? we'll need
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if( !(c = vips_add( a, b )) ||
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!(d = vips_add( a, c )) )
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return NULL;
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seems wordy compared to
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if( vips_add( a, b, &c ) ||
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vips_add( a, c, &d ) )
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return -1;
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plus VipsPool will be more natural with #2, I think, and things like
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vips_avg() have to be form #2
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also, we have
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if( vips_call( "add", a, b, &c ) ||
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vips_call( "add", a, c, &d ) )
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return( -1 );
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which is much closer to #2
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- could we generate the code for vips_add() automatically? it might be nice to
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have them all in one place at least
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- all the old dispatch wrappers could move to deprecated
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- support planar tiff
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- vips operation print could show operation flags as well, cf. "vips
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im_subtract"
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haha, we don't have any flags like that on operation ... NOCACHE looks
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useful, should we add that? any others?
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maybe wait until we have to
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- revisit orc conv
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use an 8.8 accumulator ... build the scale into the 8.8 coeffs ... no div at
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the end, just a shift
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need 8 x 8.8 -> 8.8 for each coeff though
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- also VipsFormat ... could this replace vips_image_new_from_string()? or
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could we call this from vips_image_new_from_string()?
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at the moment, VipsFormat subclasses never get made, we just use the classes
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... we'd need to start making real vipsformat objects for this to work
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how would this work?
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at the moment we have
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image = vips_image_new_from_file( filename );
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build a VipsImage with filename "r"
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we also have the new CLI thing
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obj = vips_object_new_from_string( class, str );
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calls class->new_from_string( first-component(str) ), then sets
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optional args from rest-of-str(str), then does _build()
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image-class->new_from_string() just make a vipsimage "r" str
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the _build() uses VipsFormat() to load via im_tiff2vips() or whatever
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so ... we could change vips_image_new_from_file() to be
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VIPS_IMAGE( vips_object_new_from_string( VipsImageClass, str ) )
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we could also make VipsImage::new_from_string() make a real VipsFormat
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object, then load options could be set from the str
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how does save work? we call image-class->output_to_arg(obj, str), which in
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turn calls vips_image_write(), which in turn uses VipsFormat
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- make a vips8 binding for Python as well
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use ctypes and not swig so we get an easy Win version
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wrap new API for C++
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- Magick:
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- do we bundle "convert" in the OS X / win32 builds? if we don't we
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should
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- need vips_image_invalidate_area()
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- add matlab write
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- need a way to make the vips.1 etc. man pages
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gtk has things like docs/reference/gtk/gtk-update-icon-cache.xml and man
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pages are made from that with xslt
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- get rid of a lot of the command-line programs, who wants to write a man page
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for batch_image_convert etc yuk
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- can we make man pages for the API as well? probably not from googling a bit
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- use g_mmap() or whatever it's called ... or perhaps they don't have all
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these options
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- use |_O_TEMPORARY to open()'s mode on Windows for tmpfiles to increase the
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chances we actually delete
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see http://www.mail-archive.com/bug-gnulib@gnu.org/msg05730.html
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- lab [100,0,0] -> srgb [255, 255, 254]? how odd
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- im_conv()/im_morph() could have more than 10 programs? try 20 and see if we
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still have a speedup
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make a base class for vector area operations with a matrix with three vfuncs
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for init / generate code for one element / end and a gslist of programs, use
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that as the base for morph and conv
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wait for vipsobject for this
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- perspective transform with a matrix ... base it on the Lenz transformer, but
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partial
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- maybe im_draw_smudge() is too slow :-( also, we had a sanity failure with
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it, argh
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make a region, prepare to that, copy back over the image?
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- use D65 in cmsCreateLab4Profile() ? not sure
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- im_divide() can /0 for complex
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- unlink temps earlier on *nix systems
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the file is created by setupout, which is called just before generate or
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writeline, so perhaps unlink on evalstart?
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no, on a rewind we need to be able to close and reopen, argh
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- test
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python setup.py build_ext
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python setup.py build
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python setup.py install
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>>> from vipsCC import *
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Traceback (most recent call last):
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File "<stdin>", line 1, in <module>
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File "/usr/local/lib/python2.6/dist-packages/vipsCC/VImage.py", line 25, in
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<module>
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vimagemodule = swig_import_helper()
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File "/usr/local/lib/python2.6/dist-packages/vipsCC/VImage.py", line 21, in
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swig_import_helper
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_mod = imp.load_module('vimagemodule', fp, pathname, description)
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ImportError: /usr/local/lib/python2.6/dist-packages/vipsCC/vimagemodule.so:
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swig_import_helper
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_mod = imp.load_module('vimagemodule', fp, pathname, description)
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ImportError: /usr/local/lib/python2.6/dist-packages/vipsCC/vimagemodule.so:
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undefined symbol: _ZTIN4vips5VMaskE
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ie. vimagemodule.so can't find libvipsCC.so I guess? or perhaps the compiler
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is being given a differnt mangling flag
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we're building with:
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gcc -pthread -fno-strict-aliasing -DNDEBUG -g -fwrapv -O2 -Wall
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-Wstrict-prototypes -fPIC -DDEBUG_FATAL=1 -DDEBUG_LEAK=1
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-I/usr/lib/glib-2.0/include -I/usr/include/pango-1.0 -I/usr/include/libxml2
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-I/usr/include/libpng12 -I/usr/include/libexif -I/usr/include/glib-2.0
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-I/usr/include/freetype2 -I/usr/include/OpenEXR -I/usr/include/ImageMagick
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-I../../libvips/include -I../../libvipsCC/include -I/usr/include/python2.6 -c
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vimagemodule.cpp -o build/temp.linux-x86_64-2.6/vimagemodule.o -pthread
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-fopenmp -pthread -Wl,--export-dynamic -pthread -pthread -pthread
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g++ -pthread -shared -Wl,-O1 -Wl,-Bsymbolic-functions
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build/temp.linux-x86_64-2.6/vimagemodule.o -Wl,-R/home/john/vips/lib
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-lMagickWand -lMagickCore -lpng12 -ltiff -lz -ljpeg -lgthread-2.0 -lrt
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-lglib-2.0 -lgmodule-2.0 -lxml2 -lgobject-2.0 -lgthread-2.0 -lrt -lglib-2.0
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-lpangoft2-1.0 -lpango-1.0 -lfreetype -lfontconfig -lgobject-2.0 -lgmodule-2.0
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-lgthread-2.0 -lrt -lglib-2.0 -lfftw3 -lm -llcms -lIlmImf -lz -lImath -lHalf
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-lIex -lIlmThread -lmatio -lz -lexif -lm -lstdc++ -lm -o
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build/lib.linux-x86_64-2.6/vipsCC/vimagemodule.so -pthread -fopenmp -pthread
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-Wl,--export-dynamic -pthread -pthread -pthread
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how does this compare to the working build? swig/vipsCC does
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g++ -DHAVE_CONFIG_H -I. -I../.. -I../../libvips/include -I../../libvipsCC/include -DDEBUG_FATAL -DDEBUG_LEAK -pthread -fopenmp -I/usr/lib/glib-2.0/include -I/usr/include/pango-1.0 -I/usr/include/libxml2 -I/usr/include/libpng12 -I/usr/include/libexif -I/usr/include/glib-2.0 -I/usr/include/freetype2 -I/usr/include/OpenEXR -I/usr/include/ImageMagick -I/usr/include/python2.6 -g -Wall -MT vimagemodule.lo -MD -MP -MF .deps/vimagemodule.Tpo -c vimagemodule.cxx -o vimagemodule.o >/dev/null 2>&1
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g++ -shared -nostdlib /usr/lib/gcc/x86_64-linux-gnu/4.4.3/../../../../lib/crti.o /usr/lib/gcc/x86_64-linux-gnu/4.4.3/crtbeginS.o .libs/vimagemodule.o -Wl,-rpath -Wl,/home/john/SVN/vips/vips7/trunk/libvipsCC/.libs -Wl,-rpath -Wl,/home/john/SVN/vips/vips7/trunk/libvips/.libs -Wl,-rpath -Wl,/home/john/vips/lib ../../libvipsCC/.libs/libvipsCC.so ../../libvips/.libs/libvips.so /usr/lib/libMagickWand.so /usr/lib/libMagickCore.so -lpng12 /usr/lib/libtiff.so /usr/lib/libjpeg.so /usr/lib/libxml2.so /usr/lib/libpangoft2-1.0.so /usr/lib/libpango-1.0.so /usr/lib/libfreetype.so -lfontconfig /usr/lib/libgobject-2.0.so /usr/lib/libgmodule-2.0.so /usr/lib/libgthread-2.0.so -lrt /usr/lib/libglib-2.0.so /usr/lib/libfftw3.so /usr/lib/liblcms.so /usr/lib/libIlmImf.so -lImath -lHalf -lIex -lIlmThread /usr/lib/libmatio.so -lz /usr/lib/libexif.so -L/usr/lib/gcc/x86_64-linux-gnu/4.4.3 -L/usr/lib/gcc/x86_64-linux-gnu/4.4.3/../../../../lib -L/lib/../lib -L/usr/lib/../lib -L/usr/lib/gcc/x86_64-linux-gnu/4.4.3/../../.. -L/usr/lib/x86_64-linux-gnu -lstdc++ -lm -lc -lgcc_s /usr/lib/gcc/x86_64-linux-gnu/4.4.3/crtendS.o /usr/lib/gcc/x86_64-linux-gnu/4.4.3/../../../../lib/crtn.o -pthread -Wl,--export-dynamic -pthread -pthread -pthread -pthread -Wl,-soname -Wl,vimagemodule.so -o .libs/vimagemodule.so
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- convert_saveable for other writers: tiff, ppm, csv, rad etc.
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- expose more of the tone funcs in nip2
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- quite a few hist operations have no GUI ... lhisteq, for example? or
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histspec?
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- rename header, edvips as vipsheader, vipsedit
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maybe have back compat links?
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- should im_rwcheck() copy to disc?
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maybe im_rwcheck_disc() copies to im->filename and maps that
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rather awkward to do atm with the way check.c is structured
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- what does G_UNLIKELY() do? can we use it?
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- rename vipsCC in SWIG as pyvips?
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- look into G_GNUC_DEPRECATED for back compat in vips8
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- use
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http://library.gnome.org/devel/glib/stable/glib-Byte-Order-Macros.html
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for swapping ... they are asm macros so we should see a speedup
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- can we use conv_sep to speed up the memuse benchmarks?
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- check mosaic1, global_balance, similarity etc. use of im__affine
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how can we move them to im_affinei ?
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- doc strings would be nice, read the SWIG notes on this
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- bilateral filtering, see:
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http://en.wikipedia.org/wiki/Bilateral_filter
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http://www.shellandslate.com/fastmedian.html
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http://people.csail.mit.edu/sparis/bf_course/
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also a mail from Martin Breidt has links to several fast free C
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implementations
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- need a section for vipsobject in the tutorial
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also a manpage?
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not really stable yet :( don't document
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- we shouldn't need to call im_invalidate() in gtkdisp4 :( how can we fix
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this?
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- we should wrap the format API, also im_render*(), see gtkdisp.cc for sample
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code
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- need an im_init_world() for C++ which does cmd-line args too, so C++ progs
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can get --vips-progress and stuff automatically
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- unsharp should work on GREY16? should be easy to add GREY16->LABS
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no, labs is signed short, ranges are all differrent, and the scaling will be
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wrong anyway
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correct: import with ICC to labs, then process, then export to RGB, take
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green?
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yuk, can we add a 16bit path to vips's lab <--> rgb converter?
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use TIFF RGB16 as the 16bit RGB target
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im_XYZ2disp() would be easy to 16bit ... just need the 1,500 element table
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table->t_Yr2r[i] expanded
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im_disp2XYZ() uses im_col_rgb2XYZ() in a loop ... again, need
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the 1,500 element table table->t_r2Yr[i] expanded
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usually these three tables (t_r2Yr, t_g2Yg, t_b2Yb) will be identical, can
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we common them up? same for t_Yr2r etc.
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how big should the table be for 16 bits? 256 times larger? too big!
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we really just need a LUT for pow() with the right exponent, eg. 2.4 for
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sRGBs, and one for 1/2.4 ... see what calcul_tables does:
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table->t_r2Yr[i] = yo + a * pow( i * table->ristep / f + c, ga );
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see
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- test maxpos_avg, quite a few changes
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- HAVE_HYPOT could define a hypot() macro?
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- im_exr2vips can now use c++ api
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see TODO notes in openexr read (though they all need more openexr C API)
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consider openexr write
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- python startup fails with plugins in vipslib:
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Fatal Python error: can't initialise module vips
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plugin: unable to open plugin "/home/john/vips/lib/resample.plg"
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plugin: /home/john/vips/lib/resample.plg: undefined symbol: im_start_one
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do we need to build plugins with -rpath etc. and more libs?
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or do we need to make sure our python modules export all their im_ symbols?
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check:
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http://www.swig.org/Doc1.3/SWIGDocumentation.html#Python_nn8
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http://docs.python.org/dist/dist.html
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result = vips_call ("name", args)
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then call that from VImage_method
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- do we really need VImage_method? Can't we write
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__getattr__ (self, name) = lambda (obj_to_call, arguments):
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or something like that?
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- TIFF load/save should use meta system for unknown tags
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- balance should use new meta stuff
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- magick2vips should spot ICC profiles and attach them as meta
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- also png2vips?
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- magick should set some header field for n_frames and frame_height? see also
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analyze
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- im_csv2vips() could use "-" for filename to mean stdin
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but then we'd have to read to a malloced buffer of some sort rather than an
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image, since we might need to grow it during the read, since we couldn't
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then seek
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- add erode/dilate 3x3 special case using a 512-bit LUT
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... nope, actually slower :-( we end up doing an inner loop like
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for( i = 0; i < 9; i++ )
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bits |= (p[o[i]] != 0) << i;
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which is horrible. Maybe if we had a one band true 1 bit image it'd be
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quicker since we could get bits out in parallel and wouldn't have to worry
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about converting non-zero to 1
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could have a Coding type for bitpack? eg. relational produces a bitpack
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image by default, boolean & morph can work on bitpack etc
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maybe something for vips8 ... we could have a flag on operations for the
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coding types they can accept, and if they are passed other type, they are
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automatically converted
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- non-linear sharpen: replace each pixel by the lightest or darkest neighbour
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depending on which is closer in value
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- can wrap other inplace funcs which use ink now we have vector_to_ink() in
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inplace_dispatch.c
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see also comments in nip2 TODO ... we could auto-wrap in vips_call.c
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cleaner!
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