| Commit message (Collapse) | Author | Age | Files | Lines |
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of -I flags.
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The calculation of _MaxElement was wrong if the stride was larger than
elementSize, which lead to rejection of every DrawElements call which accessed
the maximum element if CheckArrayBounds was enabled.
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and demos are also added.
Adding basic support to drivers should be as easy as just enabling the
extension, though thorough test would also be required.
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GL_ARB_vertex_program.
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- use macros to access and modify render inputs bit-field;
- un-alias generic vertex attributes for ARB vertex calls;
- use MAX_VERTEX_PROGRAM_ATTRIBS (NV code) or MAX_VERTEX_ATTRIBS
(ARB code) in place of VERT_ATTRIB_MAX;
- define VERT_ATTRIB_GENERIC0..15 for un-aliased vertex
attributes for ARB_vertex_shader;
- fix generic attribute index range check in arbprogparse.c;
- interface GLSL varyings between vertex and fragment shader;
- use 64-bit optimised bitset (bitset.h) for render inputs;
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temporaries, parameters, etc).
glGetProgramivARB() now returns all the right things.
Updated i915 and r300 code to initialize program native limits and
current program's native instruction/temporary/etc counts.
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generated file, called src/mesa/glapi/dispatch.h, is added. This file
contains three macros for each API function. It contains a GET, a SET, and
a CALL. Each of the macros take a pointer to the context and a pointer to
the dispatch table.
In several threads on mesa3d-dev we discussed replacing _glapi_add_entrypoint
with a new function called _glapi_add_dispatch. For this discussion, the
important difference between the two is that the caller of _glapi_add_dispatch
does *not* know what the dispatch offset will be at compile time. Because of
this callers need to track the dispatch offset returned by
_glapi_add_dispatch.
http://marc.theaimsgroup.com/?t=111947074700001&r=1&w=2
The downside is that driver code then has to access the dispatch table two
different ways. It accesses it using structure tags (e.g., exec->Begin) for
functions with fixed offsets and via a remap table (e.g., exec[
remap->NewExtensionFunction ]) for functions without fixed offsets. Yuck!
Using the macros allows both types of functions to be accessed
identically. If a driver needs to set a pointer for Begin, it does
'SET_Begin(ctx, exec, my_begin_function)'. If it needs to set a pointer
for NewExtensionFunction, it does 'SET_NewExtensionFunction(ctx, exec,
my_NewExtensionFunction_function)'. Furthermore, if at some point in
the future a static offset is assigned for NewExtensionFunction, only
the macros need to change (instead of every single place that accesses a
table for that function).
This code differs slightly from the originally posted patches in that the
CALL, GET, and SET marcos no longer take a context pointer as a parameter.
Brian Paul had suggested that the remap table could be stored as a global
since it would be set at CreateScreen time and would be constant for all
contexts. This change reflects that feedback.
http://marc.theaimsgroup.com/?t=112087194700001&r=1&w=2
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Merrill)
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Incr/decr counts when doing glPush/PopClientAttrib(GL_CLIENT_VERTEX_ARRAY_BIT).
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the variable was multiplied by zero.
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Only glDrawArrays() done so far.
Simplified glVertex/Color/etcPointer functions.
Misc casts added here and there.
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points so that the calling conventions will work correctly with the assembler
stubs with the Open Watcom compiler.
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Use GLubyte * instead of void * for gl_client_array->Ptr to simplify upcoming
pointer arithmetic changes.
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Added non-static entrypoints and the name string for
GL_SUN_multi_draw_arrays (identical to GL_EXT_multi_draw_arrays).
Made add_newer_entrypoints (in src/mesa/main/context.c) table driven.
This reduced the size of context.o by about 3KB.
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Misc vertex array / vertex program changes.
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Moved type conversion and interpolation macros into macros.h
Updated all the files that used to include mmath.h
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1. Remove all.h and PC_HEADER junk.
2. Rolled mem.c and mem.h into imports.c and imports.h
3. Include imports.h instead of mem.h
Restore _mesa_create/initialize_context() to be like they were in 4.0.4
New wrappers for a few std C functions: _mesa_atoi(), _mesa_strstr(), etc.
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glMultiDrawElementsEXT().
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Added _mesa_printf()
Updated SetDrawBuffer() function in all drivers (ala 4.0.3)
Import 4.0.3/DRI changes.
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Removed dead placeholder functions from vpstate.[ch].
Changed gl_client_array's Enabled field to GLuint so it can actually
hold the flags we're storing in it!
Always do the switch (type) code in the vertex array functions to that
<type> gets error checked!
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normal, texcoords, fogcoord, secondary color, etc) to GLfloat[4] datatype.
Aliasing of glVertex, glNormal, glColor, glFogCoord, etc. to glVertexAttrib
now complete.
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of potential problems
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Bump MAX_TEXTURE_UNITS to 8
Fix mem. leak in destroy_lists
Fix crash in q3 (cva generally)
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New array_cache module
Support 8 texture units in core mesa (now support 8 everywhere)
Rework core mesa statechange operations to avoid flushing on many
noop statechanges.
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driver (enable with FX_ALLOW_VTXFMT=t).
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Modified Files:
Mesa/macos/gli_api/gliapi1.h Mesa/macos/gli_api/gliapi2.h
Mesa/macos/gli_api/gliapiext.h Mesa/macos/src-gli/fxgli.c
Mesa/macos/src-gli/fxgli.h Mesa/macos/src-gli/fxgli2.c
Mesa/macos/src-gli/fxgli_tridebug.c Mesa/src/accum.c
Mesa/src/accum.h Mesa/src/all.h Mesa/src/alpha.c
Mesa/src/alpha.h Mesa/src/attrib.c Mesa/src/attrib.h
Mesa/src/bitmap.c Mesa/src/bitmap.h Mesa/src/blend.c
Mesa/src/blend.h Mesa/src/buffers.c Mesa/src/buffers.h
Mesa/src/clip.c Mesa/src/clip.h Mesa/src/colortab.h
Mesa/src/config.c Mesa/src/context.c Mesa/src/context.h
Mesa/src/convolve.c Mesa/src/convolve.h Mesa/src/copypix.c
Mesa/src/copypix.h Mesa/src/debug.c Mesa/src/depth.c
Mesa/src/depth.h Mesa/src/dlist.c Mesa/src/dlist.h
Mesa/src/drawpix.c Mesa/src/drawpix.h Mesa/src/enable.c
Mesa/src/enable.h Mesa/src/eval.c Mesa/src/eval.h
Mesa/src/extensions.c Mesa/src/extensions.h
Mesa/src/feedback.c Mesa/src/feedback.h Mesa/src/fog.c
Mesa/src/fog.h Mesa/src/get.c Mesa/src/get.h Mesa/src/glapi.c
Mesa/src/glthread.h Mesa/src/highpc.c Mesa/src/hint.h
Mesa/src/histogram.h Mesa/src/image.c Mesa/src/image.h
Mesa/src/imports.c Mesa/src/light.c Mesa/src/light.h
Mesa/src/lines.c Mesa/src/lines.h Mesa/src/logic.c
Mesa/src/logic.h Mesa/src/masking.c Mesa/src/masking.h
Mesa/src/matrix.c Mesa/src/matrix.h Mesa/src/pixel.c
Mesa/src/pixel.h Mesa/src/points.c Mesa/src/points.h
Mesa/src/polygon.c Mesa/src/polygon.h Mesa/src/rastpos.c
Mesa/src/readpix.c Mesa/src/scissor.c Mesa/src/scissor.h
Mesa/src/state.c Mesa/src/state.h Mesa/src/stencil.c
Mesa/src/stencil.h Mesa/src/teximage.c Mesa/src/teximage.h
Mesa/src/texobj.c Mesa/src/texobj.h Mesa/src/texstate.c
Mesa/src/texstate.h Mesa/src/texture.c Mesa/src/texture.h
Mesa/src/texutil.c Mesa/src/texutil.h Mesa/src/varray.c
Mesa/src/varray.h Mesa/src/X/fakeglx.c Mesa/src/X/xm_api.c
Mesa/src/X/xm_dd.c Mesa/src/X/xm_line.c Mesa/src/X/xm_span.c
Mesa/src/X/xm_tri.c Mesa/src/swrast/s_aaline.c
Mesa/src/swrast/s_aaline.h Mesa/src/swrast/s_aatriangle.h
Mesa/src/swrast/s_accum.h Mesa/src/swrast/s_alpha.h
Mesa/src/swrast/s_alphabuf.h Mesa/src/swrast/s_blend.h
Mesa/src/swrast/s_context.c Mesa/src/swrast/s_context.h
Mesa/src/swrast/s_depth.h Mesa/src/swrast/s_drawpix.h
Mesa/src/swrast/s_feedback.h Mesa/src/swrast/s_fog.h
Mesa/src/swrast/s_histogram.h Mesa/src/swrast/s_lines.h
Mesa/src/swrast/s_logic.h Mesa/src/swrast/s_masking.h
Mesa/src/swrast/s_pb.h Mesa/src/swrast/s_pixeltex.h
Mesa/src/swrast/s_points.h Mesa/src/swrast/s_quads.c
Mesa/src/swrast/s_quads.h Mesa/src/swrast/s_scissor.h
Mesa/src/swrast/s_span.h Mesa/src/swrast/s_stencil.h
Mesa/src/swrast/s_texture.h Mesa/src/swrast/s_triangle.h
Mesa/src/swrast/s_zoom.h Mesa/src/swrast/swrast.h
Mesa/src/swrast_setup/ss_context.h
Mesa/src/swrast_setup/ss_triangle.c
Mesa/src/swrast_setup/ss_triangle.h
Mesa/src/swrast_setup/ss_vb.h Mesa/src/tnl/t_clip.c
Mesa/src/tnl/t_clip.h Mesa/src/tnl/t_context.c
Mesa/src/tnl/t_context.h Mesa/src/tnl/t_cva.c
Mesa/src/tnl/t_cva.h Mesa/src/tnl/t_debug.c
Mesa/src/tnl/t_debug.h Mesa/src/tnl/t_dlist.h
Mesa/src/tnl/t_eval.c Mesa/src/tnl/t_eval.h
Mesa/src/tnl/t_fog.c Mesa/src/tnl/t_fog.h
Mesa/src/tnl/t_light.c Mesa/src/tnl/t_light.h
Mesa/src/tnl/t_pipeline.c Mesa/src/tnl/t_pipeline.h
Mesa/src/tnl/t_shade.c Mesa/src/tnl/t_shade.h
Mesa/src/tnl/t_stages.c Mesa/src/tnl/t_stages.h
Mesa/src/tnl/t_texture.c Mesa/src/tnl/t_texture.h
Mesa/src/tnl/t_trans_elt.c Mesa/src/tnl/t_trans_elt.h
Mesa/src/tnl/t_varray.c Mesa/src/tnl/t_varray.h
Mesa/src/tnl/t_vb.c Mesa/src/tnl/t_vb.h
Mesa/src/tnl/t_vbcull.c Mesa/src/tnl/t_vbcull.h
Mesa/src/tnl/t_vbfill.c Mesa/src/tnl/t_vbfill.h
Mesa/src/tnl/t_vbindirect.c Mesa/src/tnl/t_vbindirect.h
Mesa/src/tnl/t_vbrender.c Mesa/src/tnl/t_vbrender.h
Mesa/src/tnl/t_vbxform.c Mesa/src/tnl/t_vbxform.h
Mesa/src/tnl/tnl.h
Added Files:
Mesa/src/mtypes.h
Removed Files:
Mesa/src/types.h
Changed Mesa/src/types to Mesa/src/mtypes.h to avoid conflicts while
compiling on a VMS system.
----------------------------------------------------------------------
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math: Provides basic matrix and vector functionality that
might be useful to multiple software t&l
implementations, and is used by core mesa to
manage the Model, Project, etc matrices.
tnl: The real transform & lighting code from core mesa,
including everything from glVertex3f through vertex
buffer handling, transformation, clipping, lighting
and handoff to a driver for rasterization.
The interfaces of these can be further tightened up, but the basic
splitting up of state and code move is done.
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- Remove support for choosing software fallbacks from core code
- Remove partial fallback code from vbrender.c -- drivers are now
expected to be able to find a triangle/quad function for every state,
even if they have to use _swsetup_Triangle or _swsetup_Quad.
- Marked derived variables in the GLcontext struct with a leading
underscore '_'.
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Removed dead file fog_tmp.h
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based on the GL attribute groups.
Introduced constants describing the circumstances under which some
key derived values can change:
_SWRAST_NEW_RASTERMASK -- ctx->RasterMask
_SWRAST_NEW_TRIANGLE -- The software rasterizer's triangle
function
_DD_NEW_FEEDBACK -- the 'DD_FEEDBACK' bit in ctx->TriangleCaps
These are helpful in deciding whether you need to recalculate state if your
recalculation involves reference to a derived value.
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