mirror of
https://github.com/KolibriOS/kolibrios.git
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edb28b33f3
git-svn-id: svn://kolibrios.org@3770 a494cfbc-eb01-0410-851d-a64ba20cac60
464 lines
14 KiB
C
464 lines
14 KiB
C
/**************************************************************************
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*
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* Copyright 2007-2008 Tungsten Graphics, Inc., Cedar Park, Texas.
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* All Rights Reserved.
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* Copyright 2009-2010 VMware, Inc. All rights Reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sub license, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice (including the
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* next paragraph) shall be included in all copies or substantial portions
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* of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
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* IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
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* ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
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* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
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* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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**************************************************************************/
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#ifndef TGSI_EXEC_H
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#define TGSI_EXEC_H
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#include "pipe/p_compiler.h"
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#include "pipe/p_state.h"
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#include "pipe/p_shader_tokens.h"
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#if defined __cplusplus
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extern "C" {
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#endif
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#define TGSI_CHAN_X 0
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#define TGSI_CHAN_Y 1
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#define TGSI_CHAN_Z 2
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#define TGSI_CHAN_W 3
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#define TGSI_NUM_CHANNELS 4 /* R,G,B,A */
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#define TGSI_QUAD_SIZE 4 /* 4 pixel/quad */
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#define TGSI_FOR_EACH_CHANNEL( CHAN )\
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for (CHAN = 0; CHAN < TGSI_NUM_CHANNELS; CHAN++)
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#define TGSI_IS_DST0_CHANNEL_ENABLED( INST, CHAN )\
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((INST)->Dst[0].Register.WriteMask & (1 << (CHAN)))
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#define TGSI_IF_IS_DST0_CHANNEL_ENABLED( INST, CHAN )\
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if (TGSI_IS_DST0_CHANNEL_ENABLED( INST, CHAN ))
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#define TGSI_FOR_EACH_DST0_ENABLED_CHANNEL( INST, CHAN )\
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TGSI_FOR_EACH_CHANNEL( CHAN )\
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TGSI_IF_IS_DST0_CHANNEL_ENABLED( INST, CHAN )
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/**
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* Registers may be treated as float, signed int or unsigned int.
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*/
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union tgsi_exec_channel
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{
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float f[TGSI_QUAD_SIZE];
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int i[TGSI_QUAD_SIZE];
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unsigned u[TGSI_QUAD_SIZE];
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};
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/**
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* A vector[RGBA] of channels[4 pixels]
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*/
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struct tgsi_exec_vector
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{
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union tgsi_exec_channel xyzw[TGSI_NUM_CHANNELS];
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};
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/**
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* For fragment programs, information for computing fragment input
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* values from plane equation of the triangle/line.
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*/
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struct tgsi_interp_coef
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{
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float a0[TGSI_NUM_CHANNELS]; /* in an xyzw layout */
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float dadx[TGSI_NUM_CHANNELS];
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float dady[TGSI_NUM_CHANNELS];
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};
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enum tgsi_sampler_control {
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tgsi_sampler_lod_none,
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tgsi_sampler_lod_bias,
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tgsi_sampler_lod_explicit,
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tgsi_sampler_lod_zero,
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tgsi_sampler_derivs_explicit
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};
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/**
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* Information for sampling textures, which must be implemented
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* by code outside the TGSI executor.
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*/
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struct tgsi_sampler
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{
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/** Get samples for four fragments in a quad */
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/* this interface contains 5 sets of channels that vary
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* depending on the sampler.
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* s - the first texture coordinate for sampling.
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* t - the second texture coordinate for sampling - unused for 1D,
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layer for 1D arrays.
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* r - the third coordinate for sampling for 3D, cube, cube arrays,
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* layer for 2D arrays. Compare value for 1D/2D shadows.
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* c0 - Compare value for shadow cube and shadow 2d arrays,
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* layer for cube arrays.
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* derivs - explicit derivatives.
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* offset - texel offsets
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* lod - lod value, except for shadow cube arrays (compare value there).
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*/
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void (*get_samples)(struct tgsi_sampler *sampler,
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const unsigned sview_index,
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const unsigned sampler_index,
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const float s[TGSI_QUAD_SIZE],
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const float t[TGSI_QUAD_SIZE],
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const float r[TGSI_QUAD_SIZE],
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const float c0[TGSI_QUAD_SIZE],
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const float c1[TGSI_QUAD_SIZE],
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float derivs[3][2][TGSI_QUAD_SIZE],
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const int8_t offset[3],
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enum tgsi_sampler_control control,
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float rgba[TGSI_NUM_CHANNELS][TGSI_QUAD_SIZE]);
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void (*get_dims)(struct tgsi_sampler *sampler,
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const unsigned sview_index,
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int level, int dims[4]);
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void (*get_texel)(struct tgsi_sampler *sampler,
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const unsigned sview_index,
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const int i[TGSI_QUAD_SIZE],
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const int j[TGSI_QUAD_SIZE], const int k[TGSI_QUAD_SIZE],
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const int lod[TGSI_QUAD_SIZE], const int8_t offset[3],
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float rgba[TGSI_NUM_CHANNELS][TGSI_QUAD_SIZE]);
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};
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#define TGSI_EXEC_NUM_TEMPS 4096
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#define TGSI_EXEC_NUM_IMMEDIATES 256
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/*
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* Locations of various utility registers (_I = Index, _C = Channel)
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*/
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#define TGSI_EXEC_TEMP_00000000_I (TGSI_EXEC_NUM_TEMPS + 0)
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#define TGSI_EXEC_TEMP_00000000_C 0
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#define TGSI_EXEC_TEMP_7FFFFFFF_I (TGSI_EXEC_NUM_TEMPS + 0)
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#define TGSI_EXEC_TEMP_7FFFFFFF_C 1
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#define TGSI_EXEC_TEMP_80000000_I (TGSI_EXEC_NUM_TEMPS + 0)
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#define TGSI_EXEC_TEMP_80000000_C 2
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#define TGSI_EXEC_TEMP_FFFFFFFF_I (TGSI_EXEC_NUM_TEMPS + 0)
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#define TGSI_EXEC_TEMP_FFFFFFFF_C 3
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#define TGSI_EXEC_TEMP_ONE_I (TGSI_EXEC_NUM_TEMPS + 1)
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#define TGSI_EXEC_TEMP_ONE_C 0
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#define TGSI_EXEC_TEMP_TWO_I (TGSI_EXEC_NUM_TEMPS + 1)
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#define TGSI_EXEC_TEMP_TWO_C 1
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#define TGSI_EXEC_TEMP_128_I (TGSI_EXEC_NUM_TEMPS + 1)
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#define TGSI_EXEC_TEMP_128_C 2
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#define TGSI_EXEC_TEMP_MINUS_128_I (TGSI_EXEC_NUM_TEMPS + 1)
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#define TGSI_EXEC_TEMP_MINUS_128_C 3
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#define TGSI_EXEC_TEMP_KILMASK_I (TGSI_EXEC_NUM_TEMPS + 2)
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#define TGSI_EXEC_TEMP_KILMASK_C 0
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#define TGSI_EXEC_TEMP_OUTPUT_I (TGSI_EXEC_NUM_TEMPS + 2)
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#define TGSI_EXEC_TEMP_OUTPUT_C 1
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#define TGSI_EXEC_TEMP_PRIMITIVE_I (TGSI_EXEC_NUM_TEMPS + 2)
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#define TGSI_EXEC_TEMP_PRIMITIVE_C 2
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#define TGSI_EXEC_TEMP_THREE_I (TGSI_EXEC_NUM_TEMPS + 2)
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#define TGSI_EXEC_TEMP_THREE_C 3
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#define TGSI_EXEC_TEMP_HALF_I (TGSI_EXEC_NUM_TEMPS + 3)
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#define TGSI_EXEC_TEMP_HALF_C 0
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/* execution mask, each value is either 0 or ~0 */
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#define TGSI_EXEC_MASK_I (TGSI_EXEC_NUM_TEMPS + 3)
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#define TGSI_EXEC_MASK_C 1
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/* 4 register buffer for various purposes */
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#define TGSI_EXEC_TEMP_R0 (TGSI_EXEC_NUM_TEMPS + 4)
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#define TGSI_EXEC_NUM_TEMP_R 4
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#define TGSI_EXEC_TEMP_ADDR (TGSI_EXEC_NUM_TEMPS + 8)
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#define TGSI_EXEC_NUM_ADDRS 1
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/* predicate register */
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#define TGSI_EXEC_TEMP_P0 (TGSI_EXEC_NUM_TEMPS + 9)
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#define TGSI_EXEC_NUM_PREDS 1
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#define TGSI_EXEC_NUM_TEMP_EXTRAS 10
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#define TGSI_EXEC_MAX_NESTING 32
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#define TGSI_EXEC_MAX_COND_NESTING TGSI_EXEC_MAX_NESTING
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#define TGSI_EXEC_MAX_LOOP_NESTING TGSI_EXEC_MAX_NESTING
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#define TGSI_EXEC_MAX_SWITCH_NESTING TGSI_EXEC_MAX_NESTING
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#define TGSI_EXEC_MAX_CALL_NESTING TGSI_EXEC_MAX_NESTING
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/* The maximum number of input attributes per vertex. For 2D
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* input register files, this is the stride between two 1D
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* arrays.
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*/
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#define TGSI_EXEC_MAX_INPUT_ATTRIBS 17
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/* The maximum number of constant vectors per constant buffer.
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*/
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#define TGSI_EXEC_MAX_CONST_BUFFER 4096
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/* The maximum number of vertices per primitive */
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#define TGSI_MAX_PRIM_VERTICES 6
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/* The maximum number of primitives to be generated */
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#define TGSI_MAX_PRIMITIVES 64
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/* The maximum total number of vertices */
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#define TGSI_MAX_TOTAL_VERTICES (TGSI_MAX_PRIM_VERTICES * TGSI_MAX_PRIMITIVES * PIPE_MAX_ATTRIBS)
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#define TGSI_MAX_MISC_INPUTS 8
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/** function call/activation record */
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struct tgsi_call_record
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{
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uint CondStackTop;
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uint LoopStackTop;
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uint ContStackTop;
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int SwitchStackTop;
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int BreakStackTop;
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uint ReturnAddr;
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};
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/* Switch-case block state. */
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struct tgsi_switch_record {
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uint mask; /**< execution mask */
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union tgsi_exec_channel selector; /**< a value case statements are compared to */
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uint defaultMask; /**< non-execute mask for default case */
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};
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enum tgsi_break_type {
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TGSI_EXEC_BREAK_INSIDE_LOOP,
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TGSI_EXEC_BREAK_INSIDE_SWITCH
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};
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#define TGSI_EXEC_MAX_BREAK_STACK (TGSI_EXEC_MAX_LOOP_NESTING + TGSI_EXEC_MAX_SWITCH_NESTING)
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/**
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* Run-time virtual machine state for executing TGSI shader.
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*/
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struct tgsi_exec_machine
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{
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/* Total = program temporaries + internal temporaries
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*/
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struct tgsi_exec_vector Temps[TGSI_EXEC_NUM_TEMPS +
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TGSI_EXEC_NUM_TEMP_EXTRAS];
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float Imms[TGSI_EXEC_NUM_IMMEDIATES][4];
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float ImmArray[TGSI_EXEC_NUM_IMMEDIATES][4];
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struct tgsi_exec_vector *Inputs;
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struct tgsi_exec_vector *Outputs;
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/* System values */
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unsigned SysSemanticToIndex[TGSI_SEMANTIC_COUNT];
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union tgsi_exec_channel SystemValue[TGSI_MAX_MISC_INPUTS];
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struct tgsi_exec_vector *Addrs;
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struct tgsi_exec_vector *Predicates;
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struct tgsi_sampler *Sampler;
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unsigned ImmLimit;
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const void *Consts[PIPE_MAX_CONSTANT_BUFFERS];
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unsigned ConstsSize[PIPE_MAX_CONSTANT_BUFFERS];
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const struct tgsi_token *Tokens; /**< Declarations, instructions */
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unsigned Processor; /**< TGSI_PROCESSOR_x */
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/* GEOMETRY processor only. */
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unsigned *Primitives;
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unsigned NumOutputs;
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unsigned MaxGeometryShaderOutputs;
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/* FRAGMENT processor only. */
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const struct tgsi_interp_coef *InterpCoefs;
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struct tgsi_exec_vector QuadPos;
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float Face; /**< +1 if front facing, -1 if back facing */
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bool flatshade_color;
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/* Conditional execution masks */
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uint CondMask; /**< For IF/ELSE/ENDIF */
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uint LoopMask; /**< For BGNLOOP/ENDLOOP */
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uint ContMask; /**< For loop CONT statements */
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uint FuncMask; /**< For function calls */
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uint ExecMask; /**< = CondMask & LoopMask */
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/* Current switch-case state. */
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struct tgsi_switch_record Switch;
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/* Current break type. */
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enum tgsi_break_type BreakType;
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/** Condition mask stack (for nested conditionals) */
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uint CondStack[TGSI_EXEC_MAX_COND_NESTING];
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int CondStackTop;
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/** Loop mask stack (for nested loops) */
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uint LoopStack[TGSI_EXEC_MAX_LOOP_NESTING];
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int LoopStackTop;
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/** Loop label stack */
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uint LoopLabelStack[TGSI_EXEC_MAX_LOOP_NESTING];
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int LoopLabelStackTop;
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/** Loop continue mask stack (see comments in tgsi_exec.c) */
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uint ContStack[TGSI_EXEC_MAX_LOOP_NESTING];
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int ContStackTop;
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/** Switch case stack */
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struct tgsi_switch_record SwitchStack[TGSI_EXEC_MAX_SWITCH_NESTING];
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int SwitchStackTop;
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enum tgsi_break_type BreakStack[TGSI_EXEC_MAX_BREAK_STACK];
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int BreakStackTop;
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/** Function execution mask stack (for executing subroutine code) */
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uint FuncStack[TGSI_EXEC_MAX_CALL_NESTING];
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int FuncStackTop;
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/** Function call stack for saving/restoring the program counter */
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struct tgsi_call_record CallStack[TGSI_EXEC_MAX_CALL_NESTING];
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int CallStackTop;
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struct tgsi_full_instruction *Instructions;
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uint NumInstructions;
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struct tgsi_full_declaration *Declarations;
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uint NumDeclarations;
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struct tgsi_declaration_sampler_view
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SamplerViews[PIPE_MAX_SHADER_SAMPLER_VIEWS];
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boolean UsedGeometryShader;
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};
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struct tgsi_exec_machine *
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tgsi_exec_machine_create( void );
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void
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tgsi_exec_machine_destroy(struct tgsi_exec_machine *mach);
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void
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tgsi_exec_machine_bind_shader(
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struct tgsi_exec_machine *mach,
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const struct tgsi_token *tokens,
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struct tgsi_sampler *sampler);
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uint
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tgsi_exec_machine_run(
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struct tgsi_exec_machine *mach );
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void
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tgsi_exec_machine_free_data(struct tgsi_exec_machine *mach);
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boolean
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tgsi_check_soa_dependencies(const struct tgsi_full_instruction *inst);
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static INLINE void
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tgsi_set_kill_mask(struct tgsi_exec_machine *mach, unsigned mask)
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{
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mach->Temps[TGSI_EXEC_TEMP_KILMASK_I].xyzw[TGSI_EXEC_TEMP_KILMASK_C].u[0] =
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mask;
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}
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/** Set execution mask values prior to executing the shader */
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static INLINE void
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tgsi_set_exec_mask(struct tgsi_exec_machine *mach,
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boolean ch0, boolean ch1, boolean ch2, boolean ch3)
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{
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int *mask = mach->Temps[TGSI_EXEC_MASK_I].xyzw[TGSI_EXEC_MASK_C].i;
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mask[0] = ch0 ? ~0 : 0;
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mask[1] = ch1 ? ~0 : 0;
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mask[2] = ch2 ? ~0 : 0;
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mask[3] = ch3 ? ~0 : 0;
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}
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extern void
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tgsi_exec_set_constant_buffers(struct tgsi_exec_machine *mach,
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unsigned num_bufs,
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const void **bufs,
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const unsigned *buf_sizes);
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static INLINE int
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tgsi_exec_get_shader_param(enum pipe_shader_cap param)
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{
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switch(param) {
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case PIPE_SHADER_CAP_MAX_INSTRUCTIONS:
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case PIPE_SHADER_CAP_MAX_ALU_INSTRUCTIONS:
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case PIPE_SHADER_CAP_MAX_TEX_INSTRUCTIONS:
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case PIPE_SHADER_CAP_MAX_TEX_INDIRECTIONS:
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return INT_MAX;
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case PIPE_SHADER_CAP_MAX_CONTROL_FLOW_DEPTH:
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return TGSI_EXEC_MAX_NESTING;
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case PIPE_SHADER_CAP_MAX_INPUTS:
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return TGSI_EXEC_MAX_INPUT_ATTRIBS;
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case PIPE_SHADER_CAP_MAX_CONSTS:
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return TGSI_EXEC_MAX_CONST_BUFFER;
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case PIPE_SHADER_CAP_MAX_CONST_BUFFERS:
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return PIPE_MAX_CONSTANT_BUFFERS;
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case PIPE_SHADER_CAP_MAX_TEMPS:
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return TGSI_EXEC_NUM_TEMPS;
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case PIPE_SHADER_CAP_MAX_ADDRS:
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return TGSI_EXEC_NUM_ADDRS;
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case PIPE_SHADER_CAP_MAX_PREDS:
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return TGSI_EXEC_NUM_PREDS;
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case PIPE_SHADER_CAP_TGSI_CONT_SUPPORTED:
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return 1;
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case PIPE_SHADER_CAP_INDIRECT_INPUT_ADDR:
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case PIPE_SHADER_CAP_INDIRECT_OUTPUT_ADDR:
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case PIPE_SHADER_CAP_INDIRECT_TEMP_ADDR:
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case PIPE_SHADER_CAP_INDIRECT_CONST_ADDR:
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return 1;
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case PIPE_SHADER_CAP_SUBROUTINES:
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return 1;
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case PIPE_SHADER_CAP_INTEGERS:
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return 1;
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case PIPE_SHADER_CAP_MAX_TEXTURE_SAMPLERS:
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return PIPE_MAX_SAMPLERS;
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case PIPE_SHADER_CAP_TGSI_SQRT_SUPPORTED:
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return 1;
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default:
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return 0;
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}
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}
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#if defined __cplusplus
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} /* extern "C" */
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#endif
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#endif /* TGSI_EXEC_H */
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