mutter/tests/interactive/Makefile.am

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include $(top_srcdir)/build/autotools/Makefile.am.silent
UNIT_TESTS = \
test-textures.c \
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test-texture-async.c \
test-events.c \
test-offscreen.c \
test-scale.c \
test-actors.c \
test-actor-clone.c \
test-behave.c \
test-project.c \
test-rotate.c \
test-depth.c \
test-threads.c \
test-score.c \
test-script.c \
test-model.c \
test-grab.c \
test-fullscreen.c \
test-shader.c \
test-unproject.c \
test-viewport.c \
test-fbo.c \
test-multistage.c \
test-cogl-primitives.c \
test-cogl-tex-tile.c \
test-cogl-tex-convert.c \
test-cogl-tex-foreign.c \
test-cogl-tex-getset.c \
test-cogl-offscreen.c \
test-cogl-tex-polygon.c \
Fully integrates CoglMaterial throughout the rest of Cogl This glues CoglMaterial in as the fundamental way that Cogl describes how to fill in geometry. It adds cogl_set_source (), which is used to set the material which will be used by all subsequent drawing functions It adds cogl_set_source_texture as a convenience for setting up a default material with a single texture layer, and cogl_set_source_color is now also a convenience for setting up a material with a solid fill. "drawing functions" include, cogl_rectangle, cogl_texture_rectangle, cogl_texture_multiple_rectangles, cogl_texture_polygon (though the cogl_texture_* funcs have been renamed; see below for details), cogl_path_fill/stroke and cogl_vertex_buffer_draw*. cogl_texture_rectangle, cogl_texture_multiple_rectangles and cogl_texture_polygon no longer take a texture handle; instead the current source material is referenced. The functions have also been renamed to: cogl_rectangle_with_texture_coords, cogl_rectangles_with_texture_coords and cogl_polygon respectivly. Most code that previously did: cogl_texture_rectangle (tex_handle, x, y,...); needs to be changed to now do: cogl_set_source_texture (tex_handle); cogl_rectangle_with_texture_coords (x, y,....); In the less likely case where you were blending your source texture with a color like: cogl_set_source_color4ub (r,g,b,a); /* where r,g,b,a isn't just white */ cogl_texture_rectangle (tex_handle, x, y,...); you will need your own material to do that: mat = cogl_material_new (); cogl_material_set_color4ub (r,g,b,a); cogl_material_set_layer (mat, 0, tex_handle)); cogl_set_source_material (mat); Code that uses the texture coordinates, 0, 0, 1, 1 don't need to use cog_rectangle_with_texure_coords since these are the coordinates that cogl_rectangle will use. For cogl_texture_polygon; as well as dropping the texture handle, the n_vertices and vertices arguments were transposed for consistency. So code previously written as: cogl_texture_polygon (tex_handle, 3, verts, TRUE); need to be written as: cogl_set_source_texture (tex_handle); cogl_polygon (verts, 3, TRUE); All of the unit tests have been updated to now use the material API and test-cogl-material has been renamed to test-cogl-multitexture since any textured quad is now technically a test of CoglMaterial but this test specifically creates a material with multiple texture layers. Note: The GLES backend has not been updated yet; that will be done in a following commit.
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test-cogl-multitexture.c \
test-stage-read-pixels.c \
test-random-text.c \
test-clip.c \
test-paint-wrapper.c \
test-texture-quality.c \
2008-11-17 Emmanuele Bassi <ebassi@linux.intel.com> Bug 1014 - Clutter Animation API Improvements * clutter/Makefile.am: * clutter/clutter.h: Update the build * clutter/clutter-types.h: Add AnimationMode, an enumeration for easing functions. * clutter/clutter-alpha.[ch]: Add the :mode property to control the function bound to an Alpha instance using an enumeration value. Also add six new alpha functions: - ease-in, ease-out, ease-in-out - sine-in, sine-out, sine-in-out * clutter/clutter-deprecated.h: Deprecate the #defines for the alpha functions. They will be replaced by entries in the ClutterAnimationMode. * clutter/clutter-interval.[ch]: Add ClutterInterval, an object for defining, validating and computing an interval between two values. * clutter/clutter-animation.[ch]: Add ClutterAnimation, an object responsible for animation the properties of a single actor along an interval of values. ClutterAnimation memory management is automatic. A simple wrapper method for ClutterActor is provided: clutter_actor_animate() which will create, or update, an animation for the passed actor. * clutter/clutter-debug.h: * clutter/clutter-main.c: Add a new 'animation' debug note. * clutter/clutter-script.c: Clean up the alpha functions whitelist, and add the new functions. * doc/reference/clutter/Makefile.am: * doc/reference/clutter/clutter-sections.txt: Update the API reference. * doc/reference/clutter/clutter-animation.xml: Renamed to doc/reference/clutter/clutter-animation-tutorial.xml to avoid clashes with the ClutterAnimation section. * doc/reference/clutter/clutter-docs.sgml: Renamed to doc/reference/clutter/clutter-docs.xml, as it was an XML file and not a SGML file. * tests/Makefile.am: * tests/interactive/Makefile.am: * tests/interactive/test-animation.c: * tests/interactive/test-easing.c: Add two tests for the new simple animation API and the easing functions. * tests/interactive/test-actors.c: * tests/interactive/test-behave.c: * tests/interactive/test-depth.c: * tests/interactive/test-effects.c: * tests/interactive/test-layout.c: * tests/interactive/test-multistage.c: * tests/interactive/test-paint-wrapper.c: * tests/interactive/test-rotate.c: * tests/interactive/test-scale.c: * tests/interactive/test-texture-quality.c: * tests/interactive/test-threads.c: * tests/interactive/test-viewport.c: Update interactive tests to the deprecations and new alpha API.
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test-layout.c \
test-animation.c \
test-easing.c \
test-binding-pool.c \
test-text.c \
test-text-field.c \
test-clutter-cairo-flowers.c \
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test-cogl-vertex-buffer.c \
test-bin-layout.c \
test-flow-layout.c \
test-box-layout.c
if X11_TESTS
UNIT_TESTS += test-pixmap.c
UNIT_TESTS += test-devices.c
endif
# For convenience, this provides a way to easily run individual unit tests:
wrappers: stamp-test-interactive
@true
stamp-test-interactive: test-interactive$(EXEEXT)
@for i in $(UNIT_TESTS); \
do \
test_bin=$${i%*.c} ; \
echo " GEN $$test_bin" ; \
( echo "#!/bin/sh" ; \
echo "$(top_srcdir)/tests/interactive/wrapper.sh $$test_bin" \
) > $$test_bin$(EXEEXT) ; \
chmod +x $$test_bin$(EXEEXT) ; \
done \
&& echo timestamp > $(@F)
clean-wrappers:
@for i in $(UNIT_TESTS); \
do \
test_bin=$${i%*.c} ; \
echo " RM $$test_bin"; \
rm -f $$test_bin$(EXEEXT); \
done \
&& rm -f stamp-test-interactive
.PHONY: wrappers clean-wrappers
INCLUDES = \
-I$(top_srcdir) \
-I$(top_srcdir)/clutter \
-I$(top_srcdir)/clutter/cogl \
-I$(top_builddir)/clutter \
-I$(top_builddir)/clutter/cogl
Intial Re-layout of the Cogl source code and introduction of a Cogl Winsys As part of an incremental process to have Cogl be a standalone project we want to re-consider how we organise the Cogl source code. Currently this is the structure I'm aiming for: cogl/ cogl/ <put common source here> winsys/ cogl-glx.c cogl-wgl.c driver/ gl/ gles/ os/ ? utils/ cogl-fixed cogl-matrix-stack? cogl-journal? cogl-primitives? pango/ The new winsys component is a starting point for migrating window system code (i.e. x11,glx,wgl,osx,egl etc) from Clutter to Cogl. The utils/ and pango/ directories aren't added by this commit, but they are noted because I plan to add them soon. Overview of the planned structure: * The winsys/ API is the API that binds OpenGL to a specific window system, be that X11 or win32 etc. Example are glx, wgl and egl. Much of the logic under clutter/{glx,osx,win32 etc} should migrate here. * Note there is also the idea of a winsys-base that may represent a window system for which there are multiple winsys APIs. An example of this is x11, since glx and egl may both be used with x11. (currently only Clutter has the idea of a winsys-base) * The driver/ represents a specific varient of OpenGL. Currently we have "gl" representing OpenGL 1.4-2.1 (mostly fixed function) and "gles" representing GLES 1.1 (fixed funciton) and 2.0 (fully shader based) * Everything under cogl/ should fundamentally be supporting access to the GPU. Essentially Cogl's most basic requirement is to provide a nice GPU Graphics API and drawing a line between this and the utility functionality we add to support Clutter should help keep this lean and maintainable. * Code under utils/ as suggested builds on cogl/ adding more convenient APIs or mechanism to optimize special cases. Broadly speaking you can compare cogl/ to OpenGL and utils/ to GLU. * clutter/pango will be moved to clutter/cogl/pango How some of the internal configure.ac/pkg-config terminology has changed: backendextra -> CLUTTER_WINSYS_BASE # e.g. "x11" backendextralib -> CLUTTER_WINSYS_BASE_LIB # e.g. "x11/libclutter-x11.la" clutterbackend -> {CLUTTER,COGL}_WINSYS # e.g. "glx" CLUTTER_FLAVOUR -> {CLUTTER,COGL}_WINSYS clutterbackendlib -> CLUTTER_WINSYS_LIB CLUTTER_COGL -> COGL_DRIVER # e.g. "gl" Note: The CLUTTER_FLAVOUR and CLUTTER_COGL defines are kept for apps As the first thing to take advantage of the new winsys component in Cogl; cogl_get_proc_address() has been moved from cogl/{gl,gles}/cogl.c into cogl/common/cogl.c and this common implementation first trys _cogl_winsys_get_proc_address() but if that fails then it falls back to gmodule.
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common_ldadd = $(top_builddir)/clutter/libclutter-@CLUTTER_WINSYS@-@CLUTTER_API_VERSION@.la
noinst_PROGRAMS = test-interactive
test_interactive_SOURCES = test-main.c $(UNIT_TESTS)
test_interactive_CFLAGS = $(CLUTTER_CFLAGS) $(MAINTAINER_CFLAGS)
test_interactive_CPPFLAGS = \
-DTESTS_DATADIR=\""$(top_srcdir)/tests/data"\" \
-DG_DISABLE_SINGLE_INCLUDES
test_interactive_LDFLAGS = -export-dynamic
test_interactive_LDADD = $(CLUTTER_LIBS) $(common_ldadd)
EXTRA_DIST = wrapper.sh
BUILT_SOURCES = wrappers
clean-local: clean-wrappers