281 lines
7.5 KiB
Plaintext
281 lines
7.5 KiB
Plaintext
- tiled tiff save won't cancel
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- tiled tiff im_open() seems to decompress to ram? fix before benchmarking
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- add params
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use property system
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use construtors, see docs for g_object_new(), rather than vips8 build funcs
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nickname, description etc need to be properties so nip2 can read them
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add a g_get_children( "classname" ) -> ["child1-name", ..] to nip2, see old
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vips8.c cooe?
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- started adding
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#define IM_TYPE_GOBJECT "gobject" /* A GObject of a specified class */
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- make a "deprecated" package too
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- im_affinei and im_affinei_all need docs
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- all the interpolators
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want bicubic args to be
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IM_GOBJECT( "VipsInterpolate", "interpolate" );
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ie. pass a gobject which is a sub-type of VipsInterpolate in an arg called
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"interpolate"
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then we need to create an object of that class, get the param list, set from
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any args, call object_init, and pass
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on return, unref the object
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so
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im_affinei_all in.v out.v "yafrsmooth(2.4)" 0.9 0 0 0.9 0 0
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creates a yafrsmooth, sets the param,
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in nip2,
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inter = g_object_new "VipsInterpolateBicubic" [$sharpness => 2.4];
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also need something to return a list of GTypes below a name etc., find class
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description:w
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need k
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- make a new package for "resample"? im_shrink & friends could go in there too
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- how to expose things like yafrsmooth's "sharpening" parameter to
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nip2/C++/Python?
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can we write a find-by-nickname function? eg.
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GType vips_get_type (const char *base, const char *nickname)
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then
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vips_get_type ("VipsInterpolator", "bicubic")
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would get us the GType for VipsInterpolatorBicubic
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- redo the format system in this way too?
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need a way to init a package: the init would register all the types that
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package uses to they appear to introspection
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- how to expose things like yafrsmooth's "sharpening" parameter to
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nip2/C++/Python?
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look at vips8, can we use the parameter code there?
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would need to be added to VipsObject I guess
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- vips_object_print, set_name etc. need writing
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- im_buf_t -> VipsBuf
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now always included in vips.h
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- build nip2
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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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- rename Transformation -> Transform
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- update the Portfiles on the mac and on the website from the macports ones
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- im_render should use a hash for tile lookup ... or+shift x/y together
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- bilinear should be a true subclass of interpolate ... and put the tables
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into the base class
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- add 'name' to vipsobbject, and vips_object_print() ... handy for debugging
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make 'print' into a virtual method so subclasses can add stuff if they want
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WONTFIX for 7.16
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================
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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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will im_invalidate() trash the render cache too?
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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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- have a base VObject class and put the ref stuff in there ... share between
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VMask, VDisplay, VImage
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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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- examine yafr and add as another interpolation option for im_affine
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- how much slower wouuld we get if we did a function call + switch for
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interpolate in im_affine()? it would let us break out the interpolation
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stuff from the transformer
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- we need another version of im_affine() with an 'interpolate' option :-(
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or maybe have im_interpolate_t as another object which we pass to
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im_affine()
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- more cleanups to the handling of vips format images, esp. we have vips write
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spread across many files atm
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- could remove a lot of crappy old API
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- it'd be nice to handle vips format images in the same im_format system, but
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it's not clear if this is possible
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- add new type names, eg. im_region_t, im_image_t etc. and deprecate old
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names?
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- try
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libsrc/convolution$ grep -l offsets *.c
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could we do the don't calc offsets thing unless bpl; changes thing in more
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places?
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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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- write our own python extension to call a vips operation by name
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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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- on win32, should not write matrix files in binary mode, we want CR/LF chars
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so we can load into excel etc easily
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how odd, we're doing
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if( !(fp = fopen( name, "w" )) ) {
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shouldn't be binary ... hmm
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