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📄 r300_maos.c

📁 mesa-6.5-minigui源码
💻 C
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/* $XFree86: xc/lib/GL/mesa/src/drv/r300/r300_maos_arrays.c,v 1.3 2003/02/23 23:59:01 dawes Exp $ *//*Copyright (C) The Weather Channel, Inc.  2002.  All Rights Reserved.The Weather Channel (TM) funded Tungsten Graphics to develop theinitial release of the Radeon 8500 driver under the XFree86 license.This notice must be preserved.Permission is hereby granted, free of charge, to any person obtaininga copy of this software and associated documentation files (the"Software"), to deal in the Software without restriction, includingwithout limitation the rights to use, copy, modify, merge, publish,distribute, sublicense, and/or sell copies of the Software, and topermit persons to whom the Software is furnished to do so, subject tothe following conditions:The above copyright notice and this permission notice (including thenext paragraph) shall be included in all copies or substantialportions of the Software.THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OFMERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.IN NO EVENT SHALL THE COPYRIGHT OWNER(S) AND/OR ITS SUPPLIERS BELIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTIONOF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTIONWITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.**************************************************************************//* * Authors: *   Keith Whitwell <keith@tungstengraphics.com> */#include "glheader.h"#include "mtypes.h"#include "colormac.h"#include "imports.h"#include "macros.h"#include "swrast_setup/swrast_setup.h"#include "math/m_translate.h"#include "tnl/tnl.h"#include "tnl/t_context.h"#include "r300_context.h"#include "radeon_ioctl.h"#include "r300_state.h"#include "r300_maos.h"#include "r300_ioctl.h"#ifdef USER_BUFFERS#include "radeon_mm.h"#endif#define DEBUG_ALL DEBUG_VERTS#if defined(USE_X86_ASM)#define COPY_DWORDS( dst, src, nr )					\do {									\	int __tmp;							\	__asm__ __volatile__( "rep ; movsl"				\			      : "=%c" (__tmp), "=D" (dst), "=S" (__tmp)	\			      : "0" (nr),				\			        "D" ((long)dst),			\			        "S" ((long)src) );			\} while (0)#else#define COPY_DWORDS( dst, src, nr )		\do {						\   int j;					\   for ( j = 0 ; j < nr ; j++ )			\      dst[j] = ((int *)src)[j];			\   dst += nr;					\} while (0)#endifstatic void emit_vec4(GLcontext * ctx,		      struct r300_dma_region *rvb,		      GLvoid *data, int stride, int count){	int i;	int *out = (int *)(rvb->address + rvb->start);	if (RADEON_DEBUG & DEBUG_VERTS)		fprintf(stderr, "%s count %d stride %d\n",			__FUNCTION__, count, stride);	if (stride == 4)		COPY_DWORDS(out, data, count);	else		for (i = 0; i < count; i++) {			out[0] = *(int *)data;			out++;			data += stride;		}}static void emit_vec8(GLcontext * ctx,		      struct r300_dma_region *rvb,		      GLvoid *data, int stride, int count){	int i;	int *out = (int *)(rvb->address + rvb->start);	if (RADEON_DEBUG & DEBUG_VERTS)		fprintf(stderr, "%s count %d stride %d\n",			__FUNCTION__, count, stride);	if (stride == 8)		COPY_DWORDS(out, data, count * 2);	else		for (i = 0; i < count; i++) {			out[0] = *(int *)data;			out[1] = *(int *)(data + 4);			out += 2;			data += stride;		}}static void emit_vec12(GLcontext * ctx,		       struct r300_dma_region *rvb,		       GLvoid *data, int stride, int count){	int i;	int *out = (int *)(rvb->address + rvb->start);	if (RADEON_DEBUG & DEBUG_VERTS)		fprintf(stderr, "%s count %d stride %d out %p data %p\n",			__FUNCTION__, count, stride, (void *)out, (void *)data);	if (stride == 12)		COPY_DWORDS(out, data, count * 3);	else		for (i = 0; i < count; i++) {			out[0] = *(int *)data;			out[1] = *(int *)(data + 4);			out[2] = *(int *)(data + 8);			out += 3;			data += stride;		}}static void emit_vec16(GLcontext * ctx,		       struct r300_dma_region *rvb,		       GLvoid *data, int stride, int count){	int i;	int *out = (int *)(rvb->address + rvb->start);	if (RADEON_DEBUG & DEBUG_VERTS)		fprintf(stderr, "%s count %d stride %d\n",			__FUNCTION__, count, stride);	if (stride == 16)		COPY_DWORDS(out, data, count * 4);	else		for (i = 0; i < count; i++) {			out[0] = *(int *)data;			out[1] = *(int *)(data + 4);			out[2] = *(int *)(data + 8);			out[3] = *(int *)(data + 12);			out += 4;			data += stride;		}}static void emit_vector(GLcontext * ctx,			struct r300_dma_region *rvb,			GLvoid *data, int size, int stride, int count){	r300ContextPtr rmesa = R300_CONTEXT(ctx);	if (RADEON_DEBUG & DEBUG_VERTS)		fprintf(stderr, "%s count %d size %d stride %d\n",			__FUNCTION__, count, size, stride);	if(r300IsGartMemory(rmesa, data, /*(count-1)*stride */ 4)){		rvb->address = data;		rvb->start = 0;		rvb->aos_offset = r300GartOffsetFromVirtual(rmesa, data);		rvb->aos_stride	= stride / 4 ;				rvb->aos_size = size;		return;	}		/* Gets triggered when playing with future_hw_tcl_on ...*/	//assert(!rvb->buf);	if (stride == 0) {		r300AllocDmaRegion(rmesa, rvb, size * 4, 4);		count = 1;		rvb->aos_offset	= GET_START(rvb);		rvb->aos_stride	= 0;		rvb->aos_size	= size;	} else {		r300AllocDmaRegion(rmesa, rvb, size * count * 4, 4);	/* alignment? */		rvb->aos_offset	= GET_START(rvb);		rvb->aos_stride	= size;		rvb->aos_size	= size;	}		/* Emit the data	 */	switch (size) {	case 1:		emit_vec4(ctx, rvb, data, stride, count);		break;	case 2:		emit_vec8(ctx, rvb, data, stride, count);		break;	case 3:		emit_vec12(ctx, rvb, data, stride, count);		break;	case 4:		emit_vec16(ctx, rvb, data, stride, count);		break;	default:		assert(0);		exit(1);		break;	}}void r300EmitElts(GLcontext * ctx, void *elts, unsigned long n_elts, int elt_size){	r300ContextPtr rmesa = R300_CONTEXT(ctx);	struct r300_dma_region *rvb=&rmesa->state.elt_dma;	void *out;		assert(elt_size == 2 || elt_size == 4);		if(r300IsGartMemory(rmesa, elts, n_elts * elt_size)){		rvb->address = rmesa->radeon.radeonScreen->gartTextures.map;		rvb->start = ((char *)elts) - rvb->address;		rvb->aos_offset = rmesa->radeon.radeonScreen->gart_texture_offset + rvb->start;				return ;	}else if(r300IsGartMemory(rmesa, elts, 1)){		WARN_ONCE("Pointer not within GART memory!\n");		exit(1);	}		r300AllocDmaRegion(rmesa, rvb, n_elts * elt_size, elt_size);	rvb->aos_offset	= GET_START(rvb);		out = rvb->address + rvb->start;	memcpy(out, elts, n_elts * elt_size);}/* Emit vertex data to GART memory (unless immediate mode) * Route inputs to the vertex processor */void r300EmitArrays(GLcontext * ctx, GLboolean immd){	r300ContextPtr rmesa = R300_CONTEXT(ctx);	r300ContextPtr r300 = rmesa;	struct radeon_vertex_buffer *VB = &rmesa->state.VB;	//struct vertex_buffer *VB = &TNL_CONTEXT(ctx)->vb;	GLuint nr = 0;	GLuint count = VB->Count;	GLuint dw,mask;	GLuint vic_1 = 0;	/* R300_VAP_INPUT_CNTL_1 */	GLuint aa_vap_reg = 0; /* VAP register assignment */	GLuint i;	GLuint inputs = 0;	#define CONFIGURE_AOS(r, f, v, sz, cn) { \		if (RADEON_DEBUG & DEBUG_STATE) \			fprintf(stderr, "Enabling "#v "\n"); \		if (++nr >= R300_MAX_AOS_ARRAYS) { \			fprintf(stderr, "Aieee! AOS array count exceeded!\n"); \			exit(-1); \		} \		\		if (hw_tcl_on == GL_FALSE) \			rmesa->state.aos[nr-1].aos_reg = aa_vap_reg++; \		rmesa->state.aos[nr-1].aos_format = f; \		if (immd) { \			rmesa->state.aos[nr-1].aos_size = 4; \			rmesa->state.aos[nr-1].aos_stride = 4; \			rmesa->state.aos[nr-1].aos_offset = 0; \		} else { \			emit_vector(ctx, \						&rmesa->state.aos[nr-1], \						v.data, \						sz, \						v.stride, \						cn); \		rmesa->state.vap_reg.r=rmesa->state.aos[nr-1].aos_reg; \		} \}	if (hw_tcl_on) {		GLuint InputsRead = CURRENT_VERTEX_SHADER(ctx)->Base.InputsRead;		struct r300_vertex_program *prog=(struct r300_vertex_program *)CURRENT_VERTEX_SHADER(ctx);		if (InputsRead & (1<<VERT_ATTRIB_POS)) {			inputs |= _TNL_BIT_POS;			rmesa->state.aos[nr++].aos_reg = prog->inputs[VERT_ATTRIB_POS];		}		if (InputsRead & (1<<VERT_ATTRIB_NORMAL)) {			inputs |= _TNL_BIT_NORMAL;			rmesa->state.aos[nr++].aos_reg = prog->inputs[VERT_ATTRIB_NORMAL];		}		if (InputsRead & (1<<VERT_ATTRIB_COLOR0)) {			inputs |= _TNL_BIT_COLOR0;			rmesa->state.aos[nr++].aos_reg = prog->inputs[VERT_ATTRIB_COLOR0];		}		if (InputsRead & (1<<VERT_ATTRIB_COLOR1)) {			inputs |= _TNL_BIT_COLOR1;			rmesa->state.aos[nr++].aos_reg = prog->inputs[VERT_ATTRIB_COLOR1];		}		if (InputsRead & (1<<VERT_ATTRIB_FOG)) {

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