diff options
author | Ben Skeggs <[email protected]> | 2008-11-10 15:53:51 +1100 |
---|---|---|
committer | Ben Skeggs <[email protected]> | 2008-11-10 15:53:51 +1100 |
commit | 32e6be6362e44609d36c2fb20a4c858f57c908fb (patch) | |
tree | 4ed99e93ef5f4a8bb51653917c911e04e42f5235 /src/mesa | |
parent | 92674bc8889e10e580c630cf85c106fa6eb34d7b (diff) | |
parent | 399da3a337932c6074a69ac73e711138271308eb (diff) |
Merge remote branch 'origin/gallium-0.2' into gallium-0.2
Diffstat (limited to 'src/mesa')
83 files changed, 4519 insertions, 3106 deletions
diff --git a/src/mesa/drivers/dri/i915/i830_context.h b/src/mesa/drivers/dri/i915/i830_context.h index a298c1407de..1bdb32049d7 100644 --- a/src/mesa/drivers/dri/i915/i830_context.h +++ b/src/mesa/drivers/dri/i915/i830_context.h @@ -57,7 +57,13 @@ #define I830_DESTREG_SR0 7 #define I830_DESTREG_SR1 8 #define I830_DESTREG_SR2 9 -#define I830_DEST_SETUP_SIZE 10 +#define I830_DESTREG_DRAWRECT0 10 +#define I830_DESTREG_DRAWRECT1 11 +#define I830_DESTREG_DRAWRECT2 12 +#define I830_DESTREG_DRAWRECT3 13 +#define I830_DESTREG_DRAWRECT4 14 +#define I830_DESTREG_DRAWRECT5 15 +#define I830_DEST_SETUP_SIZE 16 #define I830_CTXREG_STATE1 0 #define I830_CTXREG_STATE2 1 diff --git a/src/mesa/drivers/dri/i915/i830_vtbl.c b/src/mesa/drivers/dri/i915/i830_vtbl.c index 773a8b4dd01..3b3ff2bceda 100644 --- a/src/mesa/drivers/dri/i915/i830_vtbl.c +++ b/src/mesa/drivers/dri/i915/i830_vtbl.c @@ -449,7 +449,8 @@ i830_emit_state(struct intel_context *intel) aper_array[aper_count++] = intel->batch->buf; if (dirty & I830_UPLOAD_BUFFERS) { aper_array[aper_count++] = state->draw_region->buffer; - aper_array[aper_count++] = state->depth_region->buffer; + if (state->depth_region) + aper_array[aper_count++] = state->depth_region->buffer; } for (i = 0; i < I830_TEX_UNITS; i++) @@ -512,6 +513,16 @@ i830_emit_state(struct intel_context *intel) OUT_BATCH(state->Buffer[I830_DESTREG_SR0]); OUT_BATCH(state->Buffer[I830_DESTREG_SR1]); OUT_BATCH(state->Buffer[I830_DESTREG_SR2]); + + if (intel->constant_cliprect) { + assert(state->Buffer[I830_DESTREG_DRAWRECT0] != MI_NOOP); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT0]); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT1]); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT2]); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT3]); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT4]); + OUT_BATCH(state->Buffer[I830_DESTREG_DRAWRECT5]); + } ADVANCE_BATCH(); } @@ -591,6 +602,7 @@ i830_state_draw_region(struct intel_context *intel, struct intel_region *depth_region) { struct i830_context *i830 = i830_context(&intel->ctx); + GLcontext *ctx = &intel->ctx; GLuint value; ASSERT(state == &i830->state || state == &i830->meta); @@ -643,6 +655,24 @@ i830_state_draw_region(struct intel_context *intel, } state->Buffer[I830_DESTREG_DV1] = value; + if (intel->constant_cliprect) { + state->Buffer[I830_DESTREG_DRAWRECT0] = _3DSTATE_DRAWRECT_INFO; + state->Buffer[I830_DESTREG_DRAWRECT1] = 0; + state->Buffer[I830_DESTREG_DRAWRECT2] = 0; /* xmin, ymin */ + state->Buffer[I830_DESTREG_DRAWRECT3] = + (ctx->DrawBuffer->Width & 0xffff) | + (ctx->DrawBuffer->Height << 16); + state->Buffer[I830_DESTREG_DRAWRECT4] = 0; /* xoff, yoff */ + state->Buffer[I830_DESTREG_DRAWRECT5] = 0; + } else { + state->Buffer[I830_DESTREG_DRAWRECT0] = MI_NOOP; + state->Buffer[I830_DESTREG_DRAWRECT1] = MI_NOOP; + state->Buffer[I830_DESTREG_DRAWRECT2] = MI_NOOP; + state->Buffer[I830_DESTREG_DRAWRECT3] = MI_NOOP; + state->Buffer[I830_DESTREG_DRAWRECT4] = MI_NOOP; + state->Buffer[I830_DESTREG_DRAWRECT5] = MI_NOOP; + } + I830_STATECHANGE(i830, I830_UPLOAD_BUFFERS); diff --git a/src/mesa/drivers/dri/i915/i915_context.h b/src/mesa/drivers/dri/i915/i915_context.h index a2376e50e15..87bbf5f9271 100644 --- a/src/mesa/drivers/dri/i915/i915_context.h +++ b/src/mesa/drivers/dri/i915/i915_context.h @@ -65,7 +65,13 @@ #define I915_DESTREG_SR0 9 #define I915_DESTREG_SR1 10 #define I915_DESTREG_SR2 11 -#define I915_DEST_SETUP_SIZE 12 +#define I915_DESTREG_DRAWRECT0 12 +#define I915_DESTREG_DRAWRECT1 13 +#define I915_DESTREG_DRAWRECT2 14 +#define I915_DESTREG_DRAWRECT3 15 +#define I915_DESTREG_DRAWRECT4 16 +#define I915_DESTREG_DRAWRECT5 17 +#define I915_DEST_SETUP_SIZE 18 #define I915_CTXREG_STATE4 0 #define I915_CTXREG_LI 1 diff --git a/src/mesa/drivers/dri/i915/i915_vtbl.c b/src/mesa/drivers/dri/i915/i915_vtbl.c index 7431a9cf76d..e79c955d64d 100644 --- a/src/mesa/drivers/dri/i915/i915_vtbl.c +++ b/src/mesa/drivers/dri/i915/i915_vtbl.c @@ -399,6 +399,17 @@ i915_emit_state(struct intel_context *intel) OUT_BATCH(state->Buffer[I915_DESTREG_SR0]); OUT_BATCH(state->Buffer[I915_DESTREG_SR1]); OUT_BATCH(state->Buffer[I915_DESTREG_SR2]); + + if (intel->constant_cliprect) { + assert(state->Buffer[I915_DESTREG_DRAWRECT0] != MI_NOOP); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT0]); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT1]); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT2]); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT3]); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT4]); + OUT_BATCH(state->Buffer[I915_DESTREG_DRAWRECT5]); + } + ADVANCE_BATCH(); } @@ -521,6 +532,7 @@ i915_state_draw_region(struct intel_context *intel, struct intel_region *depth_region) { struct i915_context *i915 = i915_context(&intel->ctx); + GLcontext *ctx = &intel->ctx; GLuint value; ASSERT(state == &i915->state || state == &i915->meta); @@ -573,6 +585,24 @@ i915_state_draw_region(struct intel_context *intel, } state->Buffer[I915_DESTREG_DV1] = value; + if (intel->constant_cliprect) { + state->Buffer[I915_DESTREG_DRAWRECT0] = _3DSTATE_DRAWRECT_INFO; + state->Buffer[I915_DESTREG_DRAWRECT1] = 0; + state->Buffer[I915_DESTREG_DRAWRECT2] = 0; /* xmin, ymin */ + state->Buffer[I915_DESTREG_DRAWRECT3] = + (ctx->DrawBuffer->Width & 0xffff) | + (ctx->DrawBuffer->Height << 16); + state->Buffer[I915_DESTREG_DRAWRECT4] = 0; /* xoff, yoff */ + state->Buffer[I915_DESTREG_DRAWRECT5] = 0; + } else { + state->Buffer[I915_DESTREG_DRAWRECT0] = MI_NOOP; + state->Buffer[I915_DESTREG_DRAWRECT1] = MI_NOOP; + state->Buffer[I915_DESTREG_DRAWRECT2] = MI_NOOP; + state->Buffer[I915_DESTREG_DRAWRECT3] = MI_NOOP; + state->Buffer[I915_DESTREG_DRAWRECT4] = MI_NOOP; + state->Buffer[I915_DESTREG_DRAWRECT5] = MI_NOOP; + } + I915_STATECHANGE(i915, I915_UPLOAD_BUFFERS); } diff --git a/src/mesa/drivers/dri/i965/brw_clip_line.c b/src/mesa/drivers/dri/i965/brw_clip_line.c index c87e5b9a120..c45d48dff8e 100644 --- a/src/mesa/drivers/dri/i965/brw_clip_line.c +++ b/src/mesa/drivers/dri/i965/brw_clip_line.c @@ -148,7 +148,7 @@ static void clip_and_emit_line( struct brw_clip_compile *c ) brw_clip_init_clipmask(c); /* -ve rhw workaround */ - if (!(BRW_IS_GM45(p->brw) || BRW_IS_G4X(p->brw))) { + if (!BRW_IS_G4X(p->brw)) { brw_set_conditionalmod(p, BRW_CONDITIONAL_NZ); brw_AND(p, brw_null_reg(), get_element_ud(c->reg.R0, 2), brw_imm_ud(1<<20)); diff --git a/src/mesa/drivers/dri/i965/brw_clip_state.c b/src/mesa/drivers/dri/i965/brw_clip_state.c index 82d1e873577..740c7cbd109 100644 --- a/src/mesa/drivers/dri/i965/brw_clip_state.c +++ b/src/mesa/drivers/dri/i965/brw_clip_state.c @@ -102,7 +102,7 @@ clip_unit_create_from_key(struct brw_context *brw, clip.clip5.api_mode = BRW_CLIP_API_OGL; clip.clip5.clip_mode = key->clip_mode; - if (BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) + if (BRW_IS_G4X(brw)) clip.clip5.negative_w_clip_test = 1; clip.clip6.clipper_viewport_state_ptr = 0; diff --git a/src/mesa/drivers/dri/i965/brw_clip_tri.c b/src/mesa/drivers/dri/i965/brw_clip_tri.c index 8459b59b460..1dbba37fe7e 100644 --- a/src/mesa/drivers/dri/i965/brw_clip_tri.c +++ b/src/mesa/drivers/dri/i965/brw_clip_tri.c @@ -526,7 +526,7 @@ void brw_emit_tri_clip( struct brw_clip_compile *c ) /* if -ve rhw workaround bit is set, do cliptest */ - if (!(BRW_IS_GM45(p->brw) || BRW_IS_G4X(p->brw))) { + if (!BRW_IS_G4X(p->brw)) { brw_set_conditionalmod(p, BRW_CONDITIONAL_NZ); brw_AND(p, brw_null_reg(), get_element_ud(c->reg.R0, 2), brw_imm_ud(1<<20)); diff --git a/src/mesa/drivers/dri/i965/brw_context.c b/src/mesa/drivers/dri/i965/brw_context.c index 474158b484b..e2bc08a6cb7 100644 --- a/src/mesa/drivers/dri/i965/brw_context.c +++ b/src/mesa/drivers/dri/i965/brw_context.c @@ -39,6 +39,7 @@ #include "brw_context.h" #include "brw_defines.h" #include "brw_draw.h" +#include "brw_state.h" #include "brw_vs.h" #include "intel_tex.h" #include "intel_blit.h" diff --git a/src/mesa/drivers/dri/i965/brw_context.h b/src/mesa/drivers/dri/i965/brw_context.h index 1c6a0dede0b..e3904be977f 100644 --- a/src/mesa/drivers/dri/i965/brw_context.h +++ b/src/mesa/drivers/dri/i965/brw_context.h @@ -433,7 +433,6 @@ struct brw_context GLuint primitive; GLboolean emit_state_always; - GLboolean wrap; GLboolean tmp_fallback; GLboolean no_batch_wrap; @@ -445,6 +444,19 @@ struct brw_context GLuint nr_draw_regions; struct intel_region *draw_regions[MAX_DRAW_BUFFERS]; struct intel_region *depth_region; + + /** + * List of buffers accumulated in brw_validate_state to receive + * dri_bo_check_aperture treatment before exec, so we can know if we + * should flush the batch and try again before emitting primitives. + * + * This can be a fixed number as we only have a limited number of + * objects referenced from the batchbuffer in a primitive emit, + * consisting of the vertex buffers, pipelined state pointers, + * the CURBE, the depth buffer, and a query BO. + */ + dri_bo *validated_bos[VERT_ATTRIB_MAX + 16]; + int validated_bo_count; } state; struct brw_state_pointers attribs; @@ -680,14 +692,6 @@ void brw_emit_query_begin(struct brw_context *brw); void brw_emit_query_end(struct brw_context *brw); /*====================================================================== - * brw_state.c - */ -void brw_validate_state( struct brw_context *brw ); -void brw_init_state( struct brw_context *brw ); -void brw_destroy_state( struct brw_context *brw ); - - -/*====================================================================== * brw_state_dump.c */ void brw_debug_batch(struct intel_context *intel); diff --git a/src/mesa/drivers/dri/i965/brw_curbe.c b/src/mesa/drivers/dri/i965/brw_curbe.c index 7cddd3a7dee..c7bac7b0c52 100644 --- a/src/mesa/drivers/dri/i965/brw_curbe.c +++ b/src/mesa/drivers/dri/i965/brw_curbe.c @@ -307,6 +307,7 @@ static void prepare_constant_buffer(struct brw_context *brw) dri_bo_subdata(brw->curbe.curbe_bo, brw->curbe.curbe_offset, bufsz, buf); } + brw_add_validated_bo(brw, brw->curbe.curbe_bo); /* Because this provokes an action (ie copy the constants into the * URB), it shouldn't be shortcircuited if identical to the @@ -328,13 +329,6 @@ static void emit_constant_buffer(struct brw_context *brw) { struct intel_context *intel = &brw->intel; GLuint sz = brw->curbe.total_size; - dri_bo *aper_array[] = { - brw->intel.batch->buf, - brw->curbe.curbe_bo, - }; - - if (dri_bufmgr_check_aperture_space(aper_array, ARRAY_SIZE(aper_array))) - intel_batchbuffer_flush(intel->batch); BEGIN_BATCH(2, IGNORE_CLIPRECTS); if (sz == 0) { diff --git a/src/mesa/drivers/dri/i965/brw_defines.h b/src/mesa/drivers/dri/i965/brw_defines.h index 0593e8d5f5f..39c32255f8b 100644 --- a/src/mesa/drivers/dri/i965/brw_defines.h +++ b/src/mesa/drivers/dri/i965/brw_defines.h @@ -798,10 +798,9 @@ #include "intel_chipset.h" -#define BRW_IS_GM45(brw) (IS_GM45_GM((brw)->intel.intelScreen->deviceID)) #define BRW_IS_G4X(brw) (IS_G4X((brw)->intel.intelScreen->deviceID)) -#define CMD_PIPELINE_SELECT(brw) ((BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) ? CMD_PIPELINE_SELECT_GM45 : CMD_PIPELINE_SELECT_965) -#define CMD_VF_STATISTICS(brw) ((BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) ? CMD_VF_STATISTICS_GM45 : CMD_VF_STATISTICS_965) -#define URB_SIZES(brw) ((BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) ? 384 : 256) /* 512 bit unit */ +#define CMD_PIPELINE_SELECT(brw) (BRW_IS_G4X(brw) ? CMD_PIPELINE_SELECT_GM45 : CMD_PIPELINE_SELECT_965) +#define CMD_VF_STATISTICS(brw) (BRW_IS_G4X(brw) ? CMD_VF_STATISTICS_GM45 : CMD_VF_STATISTICS_965) +#define URB_SIZES(brw) (BRW_IS_G4X(brw) ? 384 : 256) /* 512 bit units */ #endif diff --git a/src/mesa/drivers/dri/i965/brw_draw.c b/src/mesa/drivers/dri/i965/brw_draw.c index 6c71b4abcf0..d87b8f8a848 100644 --- a/src/mesa/drivers/dri/i965/brw_draw.c +++ b/src/mesa/drivers/dri/i965/brw_draw.c @@ -256,6 +256,7 @@ static GLboolean brw_try_draw_prims( GLcontext *ctx, struct intel_context *intel = intel_context(ctx); struct brw_context *brw = brw_context(ctx); GLboolean retval = GL_FALSE; + GLboolean warn = GL_FALSE; GLuint i; if (ctx->NewState) @@ -282,30 +283,25 @@ static GLboolean brw_try_draw_prims( GLcontext *ctx, LOCK_HARDWARE(intel); - if (brw->intel.numClipRects == 0) { + if (!intel->constant_cliprect && intel->driDrawable->numClipRects == 0) { UNLOCK_HARDWARE(intel); return GL_TRUE; } + /* Flush the batch if it's approaching full, so that we don't wrap while + * we've got validated state that needs to be in the same batch as the + * primitives. This fraction is just a guess (minimal full state plus + * a primitive is around 512 bytes), and would be better if we had + * an upper bound of how much we might emit in a single + * brw_try_draw_prims(). + */ + intel_batchbuffer_require_space(intel->batch, intel->batch->size / 4, + LOOP_CLIPRECTS); { - /* Flush the batch if it's approaching full, so that we don't wrap while - * we've got validated state that needs to be in the same batch as the - * primitives. This fraction is just a guess (minimal full state plus - * a primitive is around 512 bytes), and would be better if we had - * an upper bound of how much we might emit in a single - * brw_try_draw_prims(). - */ - if (intel->batch->ptr - intel->batch->map > intel->batch->size * 3 / 4 - /* brw_emit_prim may change the cliprect_mode to LOOP_CLIPRECTS */ - || intel->batch->cliprect_mode != LOOP_CLIPRECTS) - intel_batchbuffer_flush(intel->batch); - /* Set the first primitive early, ahead of validate_state: */ brw_set_prim(brw, prim[0].mode); - /* XXX: Need to separate validate and upload of state. - */ brw_validate_state( brw ); /* Various fallback checks: @@ -316,6 +312,31 @@ static GLboolean brw_try_draw_prims( GLcontext *ctx, if (check_fallbacks( brw, prim, nr_prims )) goto out; + /* Check that we can fit our state in with our existing batchbuffer, or + * flush otherwise. + */ + if (dri_bufmgr_check_aperture_space(brw->state.validated_bos, + brw->state.validated_bo_count)) { + static GLboolean warned; + intel_batchbuffer_flush(intel->batch); + + /* Validate the state after we flushed the batch (which would have + * changed the set of dirty state). If we still fail to + * check_aperture, warn of what's happening, but attempt to continue + * on since it may succeed anyway, and the user would probably rather + * see a failure and a warning than a fallback. + */ + brw_validate_state(brw); + if (!warned && + dri_bufmgr_check_aperture_space(brw->state.validated_bos, + brw->state.validated_bo_count)) { + warn = GL_TRUE; + warned = GL_TRUE; + } + } + + brw_upload_state(brw); + for (i = 0; i < nr_prims; i++) { brw_emit_prim(brw, &prim[i]); } @@ -326,6 +347,10 @@ static GLboolean brw_try_draw_prims( GLcontext *ctx, out: UNLOCK_HARDWARE(intel); + if (warn) + fprintf(stderr, "i965: Single primitive emit potentially exceeded " + "available aperture space\n"); + if (!retval) DBG("%s failed\n", __FUNCTION__); diff --git a/src/mesa/drivers/dri/i965/brw_draw_upload.c b/src/mesa/drivers/dri/i965/brw_draw_upload.c index 7b88b5eaa1e..4080c5e3228 100644 --- a/src/mesa/drivers/dri/i965/brw_draw_upload.c +++ b/src/mesa/drivers/dri/i965/brw_draw_upload.c @@ -250,10 +250,10 @@ static void get_space( struct brw_context *brw, wrap_buffers(brw, size); } + assert(*bo_return == NULL); dri_bo_reference(brw->vb.upload.bo); *bo_return = brw->vb.upload.bo; *offset_return = brw->vb.upload.offset; - brw->vb.upload.offset += size; } @@ -359,6 +359,14 @@ static void brw_prepare_vertices(struct brw_context *brw) input->offset = (unsigned long)input->glarray->Ptr; input->stride = input->glarray->StrideB; } else { + if (input->bo != NULL) { + /* Already-uploaded vertex data is present from a previous + * prepare_vertices, but we had to re-validate state due to + * check_aperture failing and a new batch being produced. + */ + continue; + } + /* Queue the buffer object up to be uploaded in the next pass, * when we've decided if we're doing interleaved or not. */ @@ -417,6 +425,12 @@ static void brw_prepare_vertices(struct brw_context *brw) } brw_prepare_query_begin(brw); + + for (i = 0; i < nr_enabled; i++) { + struct brw_vertex_element *input = enabled[i]; + + brw_add_validated_bo(brw, input->bo); + } } static void brw_emit_vertices(struct brw_context *brw) @@ -512,7 +526,7 @@ static void brw_prepare_indices(struct brw_context *brw) struct intel_context *intel = &brw->intel; const struct _mesa_index_buffer *index_buffer = brw->ib.ib; GLuint ib_size; - dri_bo *bo; + dri_bo *bo = NULL; struct gl_buffer_object *bufferobj; GLuint offset; @@ -561,6 +575,8 @@ static void brw_prepare_indices(struct brw_context *brw) dri_bo_unreference(brw->ib.bo); brw->ib.bo = bo; brw->ib.offset = offset; + + brw_add_validated_bo(brw, brw->ib.bo); } static void brw_emit_indices(struct brw_context *brw) diff --git a/src/mesa/drivers/dri/i965/brw_eu.h b/src/mesa/drivers/dri/i965/brw_eu.h index 207b8b7ca38..49b422ee2ff 100644 --- a/src/mesa/drivers/dri/i965/brw_eu.h +++ b/src/mesa/drivers/dri/i965/brw_eu.h @@ -65,7 +65,7 @@ struct brw_reg GLuint abs:1; /* source only */ GLuint vstride:4; /* source only */ GLuint width:3; /* src only, align1 only */ - GLuint hstride:2; /* src only, align1 only */ + GLuint hstride:2; /* align1 only */ GLuint address_mode:1; /* relative addressing, hopefully! */ GLuint pad0:1; @@ -432,6 +432,12 @@ static INLINE struct brw_reg brw_uw8_grf( GLuint nr, return brw_uw8_reg(BRW_GENERAL_REGISTER_FILE, nr, subnr); } +static INLINE struct brw_reg brw_uw16_grf( GLuint nr, + GLuint subnr ) +{ + return brw_uw16_reg(BRW_GENERAL_REGISTER_FILE, nr, subnr); +} + static INLINE struct brw_reg brw_null_reg( void ) { return brw_vec8_reg(BRW_ARCHITECTURE_REGISTER_FILE, diff --git a/src/mesa/drivers/dri/i965/brw_eu_emit.c b/src/mesa/drivers/dri/i965/brw_eu_emit.c index 0bfbec9d140..ce4cf46cfa6 100644 --- a/src/mesa/drivers/dri/i965/brw_eu_emit.c +++ b/src/mesa/drivers/dri/i965/brw_eu_emit.c @@ -64,7 +64,9 @@ static void brw_set_dest( struct brw_instruction *insn, if (insn->header.access_mode == BRW_ALIGN_1) { insn->bits1.da1.dest_subreg_nr = dest.subnr; - insn->bits1.da1.dest_horiz_stride = BRW_HORIZONTAL_STRIDE_1; + if (dest.hstride == BRW_HORIZONTAL_STRIDE_0) + dest.hstride = BRW_HORIZONTAL_STRIDE_1; + insn->bits1.da1.dest_horiz_stride = dest.hstride; } else { insn->bits1.da16.dest_subreg_nr = dest.subnr / 16; @@ -78,7 +80,9 @@ static void brw_set_dest( struct brw_instruction *insn, */ if (insn->header.access_mode == BRW_ALIGN_1) { insn->bits1.ia1.dest_indirect_offset = dest.dw1.bits.indirect_offset; - insn->bits1.ia1.dest_horiz_stride = BRW_HORIZONTAL_STRIDE_1; + if (dest.hstride == BRW_HORIZONTAL_STRIDE_0) + dest.hstride = BRW_HORIZONTAL_STRIDE_1; + insn->bits1.ia1.dest_horiz_stride = dest.hstride; } else { insn->bits1.ia16.dest_indirect_offset = dest.dw1.bits.indirect_offset; @@ -329,14 +333,14 @@ static void brw_set_sampler_message(struct brw_context *brw, { brw_set_src1(insn, brw_imm_d(0)); - if (BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) { - insn->bits3.sampler_gm45_g4x.binding_table_index = binding_table_index; - insn->bits3.sampler_gm45_g4x.sampler = sampler; - insn->bits3.sampler_gm45_g4x.msg_type = msg_type; - insn->bits3.sampler_gm45_g4x.response_length = response_length; - insn->bits3.sampler_gm45_g4x.msg_length = msg_length; - insn->bits3.sampler_gm45_g4x.end_of_thread = eot; - insn->bits3.sampler_gm45_g4x.msg_target = BRW_MESSAGE_TARGET_SAMPLER; + if (BRW_IS_G4X(brw)) { + insn->bits3.sampler_g4x.binding_table_index = binding_table_index; + insn->bits3.sampler_g4x.sampler = sampler; + insn->bits3.sampler_g4x.msg_type = msg_type; + insn->bits3.sampler_g4x.response_length = response_length; + insn->bits3.sampler_g4x.msg_length = msg_length; + insn->bits3.sampler_g4x.end_of_thread = eot; + insn->bits3.sampler_g4x.msg_target = BRW_MESSAGE_TARGET_SAMPLER; } else { insn->bits3.sampler.binding_table_index = binding_table_index; insn->bits3.sampler.sampler = sampler; diff --git a/src/mesa/drivers/dri/i965/brw_misc_state.c b/src/mesa/drivers/dri/i965/brw_misc_state.c index 487c638ce21..627705fa9ba 100644 --- a/src/mesa/drivers/dri/i965/brw_misc_state.c +++ b/src/mesa/drivers/dri/i965/brw_misc_state.c @@ -71,6 +71,38 @@ const struct brw_tracked_state brw_blend_constant_color = { .emit = upload_blend_constant_color }; +/* Constant single cliprect for framebuffer object or DRI2 drawing */ +static void upload_drawing_rect(struct brw_context *brw) +{ + struct intel_context *intel = &brw->intel; + GLcontext *ctx = &intel->ctx; + + if (!intel->constant_cliprect) + return; + + BEGIN_BATCH(4, NO_LOOP_CLIPRECTS); + OUT_BATCH(_3DSTATE_DRAWRECT_INFO_I965); + OUT_BATCH(0); /* xmin, ymin */ + OUT_BATCH(((ctx->DrawBuffer->Width - 1) & 0xffff) | + ((ctx->DrawBuffer->Height - 1) << 16)); + OUT_BATCH(0); + ADVANCE_BATCH(); +} + +const struct brw_tracked_state brw_drawing_rect = { + .dirty = { + .mesa = _NEW_BUFFERS, + .brw = 0, + .cache = 0 + }, + .emit = upload_drawing_rect +}; + +static void prepare_binding_table_pointers(struct brw_context *brw) +{ + brw_add_validated_bo(brw, brw->wm.bind_bo); +} + /** * Upload the binding table pointers, which point each stage's array of surface * state pointers. @@ -81,13 +113,6 @@ const struct brw_tracked_state brw_blend_constant_color = { static void upload_binding_table_pointers(struct brw_context *brw) { struct intel_context *intel = &brw->intel; - dri_bo *aper_array[] = { - intel->batch->buf, - brw->wm.bind_bo, - }; - - if (dri_bufmgr_check_aperture_space(aper_array, ARRAY_SIZE(aper_array))) - intel_batchbuffer_flush(intel->batch); BEGIN_BATCH(6, IGNORE_CLIPRECTS); OUT_BATCH(CMD_BINDING_TABLE_PTRS << 16 | (6 - 2)); @@ -107,6 +132,7 @@ const struct brw_tracked_state brw_binding_table_pointers = { .brw = BRW_NEW_BATCH, .cache = CACHE_NEW_SURF_BIND, }, + .prepare = prepare_binding_table_pointers, .emit = upload_binding_table_pointers, }; @@ -140,21 +166,18 @@ static void upload_pipelined_state_pointers(struct brw_context *brw ) brw->state.dirty.brw |= BRW_NEW_PSP; } -static void upload_psp_urb_cbs(struct brw_context *brw ) + +static void prepare_psp_urb_cbs(struct brw_context *brw) { - struct intel_context *intel = &brw->intel; - dri_bo *aper_array[] = { - intel->batch->buf, - brw->vs.state_bo, - brw->gs.state_bo, - brw->clip.state_bo, - brw->wm.state_bo, - brw->cc.state_bo, - }; - - if (dri_bufmgr_check_aperture_space(aper_array, ARRAY_SIZE(aper_array))) - intel_batchbuffer_flush(intel->batch); + brw_add_validated_bo(brw, brw->vs.state_bo); + brw_add_validated_bo(brw, brw->gs.state_bo); + brw_add_validated_bo(brw, brw->clip.state_bo); + brw_add_validated_bo(brw, brw->wm.state_bo); + brw_add_validated_bo(brw, brw->cc.state_bo); +} +static void upload_psp_urb_cbs(struct brw_context *brw ) +{ upload_pipelined_state_pointers(brw); brw_upload_urb_fence(brw); brw_upload_constant_buffer_state(brw); @@ -172,14 +195,23 @@ const struct brw_tracked_state brw_psp_urb_cbs = { CACHE_NEW_WM_UNIT | CACHE_NEW_CC_UNIT) }, + .prepare = prepare_psp_urb_cbs, .emit = upload_psp_urb_cbs, }; +static void prepare_depthbuffer(struct brw_context *brw) +{ + struct intel_region *region = brw->state.depth_region; + + if (region != NULL) + brw_add_validated_bo(brw, region->buffer); +} + static void emit_depthbuffer(struct brw_context *brw) { struct intel_context *intel = &brw->intel; struct intel_region *region = brw->state.depth_region; - unsigned int len = (BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) ? sizeof(struct brw_depthbuffer_gm45_g4x) / 4 : sizeof(struct brw_depthbuffer) / 4; + unsigned int len = BRW_IS_G4X(brw) ? 6 : 5; if (region == NULL) { BEGIN_BATCH(len, IGNORE_CLIPRECTS); @@ -190,16 +222,12 @@ static void emit_depthbuffer(struct brw_context *brw) OUT_BATCH(0); OUT_BATCH(0); - if (BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) + if (BRW_IS_G4X(brw)) OUT_BATCH(0); ADVANCE_BATCH(); } else { unsigned int format; - dri_bo *aper_array[] = { - intel->batch->buf, - region->buffer - }; switch (region->cpp) { case 2: @@ -216,9 +244,6 @@ static void emit_depthbuffer(struct brw_context *brw) return; } - if (dri_bufmgr_check_aperture_space(aper_array, ARRAY_SIZE(aper_array))) - intel_batchbuffer_flush(intel->batch); - BEGIN_BATCH(len, IGNORE_CLIPRECTS); OUT_BATCH(CMD_DEPTH_BUFFER << 16 | (len - 2)); OUT_BATCH(((region->pitch * region->cpp) - 1) | @@ -234,7 +259,7 @@ static void emit_depthbuffer(struct brw_context *brw) ((region->height - 1) << 19)); OUT_BATCH(0); - if (BRW_IS_GM45(brw) || BRW_IS_G4X(brw)) + if (BRW_IS_G4X(brw)) OUT_BATCH(0); ADVANCE_BATCH(); @@ -247,6 +272,7 @@ const struct brw_tracked_state brw_depthbuffer = { .brw = BRW_NEW_DEPTH_BUFFER | BRW_NEW_BATCH, .cache = 0, }, + .prepare = prepare_depthbuffer, .emit = emit_depthbuffer, }; @@ -318,7 +344,7 @@ static void upload_aa_line_parameters(struct brw_context *brw) { struct brw_aa_line_parameters balp; - if (!(BRW_IS_GM45(brw) || BRW_IS_G4X(brw))) + if (!BRW_IS_G4X(brw)) return; /* use legacy aa line coverage computation */ diff --git a/src/mesa/drivers/dri/i965/brw_queryobj.c b/src/mesa/drivers/dri/i965/brw_queryobj.c index a1a1353dee7..cb9169e2eef 100644 --- a/src/mesa/drivers/dri/i965/brw_queryobj.c +++ b/src/mesa/drivers/dri/i965/brw_queryobj.c @@ -42,6 +42,7 @@ #include "main/imports.h" #include "brw_context.h" +#include "brw_state.h" #include "intel_batchbuffer.h" #include "intel_reg.h" @@ -163,10 +164,6 @@ void brw_prepare_query_begin(struct brw_context *brw) { struct intel_context *intel = &brw->intel; - dri_bo *aper_array[] = { - intel->batch->buf, - brw->query.bo, - }; /* Skip if we're not doing any queries. */ if (is_empty_list(&brw->query.active_head)) @@ -182,8 +179,7 @@ brw_prepare_query_begin(struct brw_context *brw) brw->query.index = 0; } - if (dri_bufmgr_check_aperture_space(aper_array, ARRAY_SIZE(aper_array))) - intel_batchbuffer_flush(intel->batch); + brw_add_validated_bo(brw, brw->query.bo); } /** Called just before primitive drawing to get a beginning PS_DEPTH_COUNT. */ diff --git a/src/mesa/drivers/dri/i965/brw_state.h b/src/mesa/drivers/dri/i965/brw_state.h index 4c04036ef08..bb22c03eeb6 100644 --- a/src/mesa/drivers/dri/i965/brw_state.h +++ b/src/mesa/drivers/dri/i965/brw_state.h @@ -35,6 +35,16 @@ #include "brw_context.h" +static inline void +brw_add_validated_bo(struct brw_context *brw, dri_bo *bo) +{ + assert(brw->state.validated_bo_count < ARRAY_SIZE(brw->state.validated_bos)); + + if (bo != NULL) { + dri_bo_reference(bo); + brw->state.validated_bos[brw->state.validated_bo_count++] = bo; + } +}; const struct brw_tracked_state brw_blend_constant_color; const struct brw_tracked_state brw_cc_unit; @@ -79,10 +89,19 @@ const struct brw_tracked_state brw_pipe_control; const struct brw_tracked_state brw_clear_surface_cache; const struct brw_tracked_state brw_clear_batch_cache; +const struct brw_tracked_state brw_drawing_rect; const struct brw_tracked_state brw_indices; const struct brw_tracked_state brw_vertices; /*********************************************************************** + * brw_state.c + */ +void brw_validate_state(struct brw_context *brw); +void brw_upload_state(struct brw_context *brw); +void brw_init_state(struct brw_context *brw); +void brw_destroy_state(struct brw_context *brw); + +/*********************************************************************** * brw_state_cache.c */ dri_bo *brw_cache_data(struct brw_cache *cache, diff --git a/src/mesa/drivers/dri/i965/brw_state_batch.c b/src/mesa/drivers/dri/i965/brw_state_batch.c index 94ef9248686..dc87859f3f5 100644 --- a/src/mesa/drivers/dri/i965/brw_state_batch.c +++ b/src/mesa/drivers/dri/i965/brw_state_batch.c @@ -97,8 +97,6 @@ void brw_clear_batch_cache_flush( struct brw_context *brw ) { clear_batch_cache(brw); - brw->wrap = 0; - /* brw_do_flush(brw, BRW_FLUSH_STATE_CACHE|BRW_FLUSH_READ_CACHE); */ brw->state.dirty.mesa |= ~0; diff --git a/src/mesa/drivers/dri/i965/brw_state_upload.c b/src/mesa/drivers/dri/i965/brw_state_upload.c index b6a52843a81..7a642bd2a8f 100644 --- a/src/mesa/drivers/dri/i965/brw_state_upload.c +++ b/src/mesa/drivers/dri/i965/brw_state_upload.c @@ -45,7 +45,6 @@ const struct brw_tracked_state *atoms[] = { &brw_check_fallback, - &brw_active_vertprog, &brw_wm_input_sizes, &brw_vs_prog, &brw_gs_prog, @@ -99,6 +98,7 @@ const struct brw_tracked_state *atoms[] = &brw_psp_urb_cbs, #endif + &brw_drawing_rect, &brw_indices, &brw_vertices, @@ -168,6 +168,18 @@ static void xor_states( struct brw_state_flags *result, result->cache = a->cache ^ b->cache; } +static void +brw_clear_validated_bos(struct brw_context *brw) +{ + int i; + + /* Clear the last round of validated bos */ + for (i = 0; i < brw->state.validated_bo_count; i++) { + dri_bo_unreference(brw->state.validated_bos[i]); + brw->state.validated_bos[i] = NULL; + } + brw->state.validated_bo_count = 0; +} /*********************************************************************** * Emit all state: @@ -176,14 +188,14 @@ void brw_validate_state( struct brw_context *brw ) { struct intel_context *intel = &brw->intel; struct brw_state_flags *state = &brw->state.dirty; - GLuint i, count, pass = 0; - dri_bo *last_batch_bo = NULL; + GLuint i; + + brw_clear_validated_bos(brw); state->mesa |= brw->intel.NewGLState; brw->intel.NewGLState = 0; - if (brw->wrap) - state->brw |= BRW_NEW_CONTEXT; + brw_add_validated_bo(brw, intel->batch->buf); if (brw->emit_state_always) { state->mesa |= ~0; @@ -199,6 +211,10 @@ void brw_validate_state( struct brw_context *brw ) brw->state.dirty.brw |= BRW_NEW_FRAGMENT_PROGRAM; } + if (brw->vertex_program != brw->attribs.VertexProgram->_Current) { + brw->vertex_program = brw->attribs.VertexProgram->_Current; + brw->state.dirty.brw |= BRW_NEW_VERTEX_PROGRAM; + } if (state->mesa == 0 && state->cache == 0 && @@ -210,8 +226,6 @@ void brw_validate_state( struct brw_context *brw ) brw->intel.Fallback = 0; - count = 0; - /* do prepare stage for all atoms */ for (i = 0; i < Elements(atoms); i++) { const struct brw_tracked_state *atom = brw->state.atoms[i]; @@ -225,19 +239,15 @@ void brw_validate_state( struct brw_context *brw ) } } } +} - if (brw->intel.Fallback) - return; - /* We're about to try to set up a coherent state in the batchbuffer for - * the emission of primitives. If we exceed the aperture size in any of the - * emit() calls, we need to go back to square 1 and try setting up again. - */ -got_flushed: - dri_bo_unreference(last_batch_bo); - last_batch_bo = intel->batch->buf; - dri_bo_reference(last_batch_bo); - assert(pass++ <= 2); +void brw_upload_state(struct brw_context *brw) +{ + struct brw_state_flags *state = &brw->state.dirty; + int i; + + brw_clear_validated_bos(brw); if (INTEL_DEBUG) { /* Debug version which enforces various sanity checks on the @@ -262,8 +272,6 @@ got_flushed: if (check_state(state, &atom->dirty)) { if (atom->emit) { atom->emit( brw ); - if (intel->batch->buf != last_batch_bo) - goto got_flushed; } } @@ -288,15 +296,11 @@ got_flushed: if (check_state(state, &atom->dirty)) { if (atom->emit) { atom->emit( brw ); - if (intel->batch->buf != last_batch_bo) - goto got_flushed; } } } } - dri_bo_unreference(last_batch_bo); - if (!brw->intel.Fallback) memset(state, 0, sizeof(*state)); } diff --git a/src/mesa/drivers/dri/i965/brw_structs.h b/src/mesa/drivers/dri/i965/brw_structs.h index ec865c925a7..4e577d0f6a8 100644 --- a/src/mesa/drivers/dri/i965/brw_structs.h +++ b/src/mesa/drivers/dri/i965/brw_structs.h @@ -175,7 +175,7 @@ struct brw_depthbuffer } dword4; }; -struct brw_depthbuffer_gm45_g4x +struct brw_depthbuffer_g4x { union header_union header; @@ -1405,7 +1405,7 @@ struct brw_instruction GLuint msg_target:4; GLuint pad1:3; GLuint end_of_thread:1; - } sampler_gm45_g4x; + } sampler_g4x; struct brw_urb_immediate urb; diff --git a/src/mesa/drivers/dri/i965/brw_urb.c b/src/mesa/drivers/dri/i965/brw_urb.c index 1116ade0a47..1a004176de1 100644 --- a/src/mesa/drivers/dri/i965/brw_urb.c +++ b/src/mesa/drivers/dri/i965/brw_urb.c @@ -92,9 +92,9 @@ static void recalculate_urb_fence( struct brw_context *brw ) if (brw->urb.vsize < vsize || brw->urb.sfsize < sfsize || brw->urb.csize < csize || - (brw->urb.constrained && (brw->urb.vsize > brw->urb.vsize || - brw->urb.sfsize > brw->urb.sfsize || - brw->urb.csize > brw->urb.csize))) { + (brw->urb.constrained && (brw->urb.vsize > vsize || + brw->urb.sfsize > sfsize || + brw->urb.csize > csize))) { brw->urb.csize = csize; @@ -114,6 +114,10 @@ static void recalculate_urb_fence( struct brw_context *brw ) brw->urb.nr_sf_entries = limits[SF].min_nr_entries; brw->urb.nr_cs_entries = limits[CS].min_nr_entries; + /* Mark us as operating with constrained nr_entries, so that next + * time we recalculate we'll resize the fences in the hope of + * escaping constrained mode and getting back to normal performance. + */ brw->urb.constrained = 1; if (!check_urb_layout(brw)) { diff --git a/src/mesa/drivers/dri/i965/brw_vs_emit.c b/src/mesa/drivers/dri/i965/brw_vs_emit.c index 9de05408ba9..25b4ee85cb0 100644 --- a/src/mesa/drivers/dri/i965/brw_vs_emit.c +++ b/src/mesa/drivers/dri/i965/brw_vs_emit.c @@ -818,8 +818,7 @@ static void emit_vertex_write( struct brw_vs_compile *c) } - /* Build ndc coords? TODO: Shortcircuit when w is known to be one. - */ + /* Build ndc coords */ if (!c->key.know_w_is_one) { ndc = get_tmp(c); emit_math1(c, BRW_MATH_FUNCTION_INV, ndc, brw_swizzle1(pos, 3), BRW_MATH_PRECISION_FULL); @@ -829,12 +828,12 @@ static void emit_vertex_write( struct brw_vs_compile *c) ndc = pos; } - /* This includes the workaround for -ve rhw, so is no longer an - * optional step: + /* Update the header for point size, user clipping flags, and -ve rhw + * workaround. */ if ((c->prog_data.outputs_written & (1<<VERT_RESULT_PSIZ)) || c->key.nr_userclip || - !c->key.know_w_is_one) + (!BRW_IS_G4X(p->brw) && !c->key.know_w_is_one)) { struct brw_reg header1 = retype(get_tmp(c), BRW_REGISTER_TYPE_UD); GLuint i; @@ -867,7 +866,7 @@ static void emit_vertex_write( struct brw_vs_compile *c) * Later, clipping will detect ucp[6] and ensure the primitive is * clipped against all fixed planes. */ - if (!(BRW_IS_GM45(p->brw) || BRW_IS_G4X(p->brw)) && !c->key.know_w_is_one) { + if (!BRW_IS_G4X(p->brw) && !c->key.know_w_is_one) { brw_CMP(p, vec8(brw_null_reg()), BRW_CONDITIONAL_L, diff --git a/src/mesa/drivers/dri/i965/brw_vtbl.c b/src/mesa/drivers/dri/i965/brw_vtbl.c index a64e437860f..2d4c81274e6 100644 --- a/src/mesa/drivers/dri/i965/brw_vtbl.c +++ b/src/mesa/drivers/dri/i965/brw_vtbl.c @@ -62,7 +62,6 @@ dri_bo_release(dri_bo **bo) */ static void brw_destroy_context( struct intel_context *intel ) { - GLcontext *ctx = &intel->ctx; struct brw_context *brw = brw_context(&intel->ctx); int i; diff --git a/src/mesa/drivers/dri/i965/brw_wm.h b/src/mesa/drivers/dri/i965/brw_wm.h index 297617ee2dc..896390c17b8 100644 --- a/src/mesa/drivers/dri/i965/brw_wm.h +++ b/src/mesa/drivers/dri/i965/brw_wm.h @@ -157,6 +157,7 @@ struct brw_wm_instruction { #define BRW_WM_MAX_PARAM 256 #define BRW_WM_MAX_CONST 256 #define BRW_WM_MAX_KILLS MAX_NV_FRAGMENT_PROGRAM_INSTRUCTIONS +#define BRW_WM_MAX_SUBROUTINE 16 @@ -246,7 +247,10 @@ struct brw_wm_compile { struct brw_reg stack; struct brw_reg emit_mask_reg; GLuint reg_index; + GLuint tmp_regs[BRW_WM_MAX_GRF]; GLuint tmp_index; + GLuint tmp_max; + GLuint subroutines[BRW_WM_MAX_SUBROUTINE]; }; diff --git a/src/mesa/drivers/dri/i965/brw_wm_glsl.c b/src/mesa/drivers/dri/i965/brw_wm_glsl.c index 4d5e11f4b6f..cb728190f5c 100644 --- a/src/mesa/drivers/dri/i965/brw_wm_glsl.c +++ b/src/mesa/drivers/dri/i965/brw_wm_glsl.c @@ -4,6 +4,10 @@ #include "brw_eu.h" #include "brw_wm.h" +enum _subroutine { + SUB_NOISE1, SUB_NOISE2, SUB_NOISE3, SUB_NOISE4 +}; + /* Only guess, need a flag in gl_fragment_program later */ GLboolean brw_wm_is_glsl(const struct gl_fragment_program *fp) { @@ -12,13 +16,17 @@ GLboolean brw_wm_is_glsl(const struct gl_fragment_program *fp) struct prog_instruction *inst = &fp->Base.Instructions[i]; switch (inst->Opcode) { case OPCODE_IF: - case OPCODE_INT: + case OPCODE_TRUNC: case OPCODE_ENDIF: case OPCODE_CAL: case OPCODE_BRK: case OPCODE_RET: case OPCODE_DDX: case OPCODE_DDY: + case OPCODE_NOISE1: + case OPCODE_NOISE2: + case OPCODE_NOISE3: + case OPCODE_NOISE4: case OPCODE_BGNLOOP: return GL_TRUE; default: @@ -47,13 +55,26 @@ static int get_scalar_dst_index(struct prog_instruction *inst) static struct brw_reg alloc_tmp(struct brw_wm_compile *c) { struct brw_reg reg; - reg = brw_vec8_grf(c->tmp_index--, 0); + if(c->tmp_index == c->tmp_max) + c->tmp_regs[ c->tmp_max++ ] = c->reg_index++; + + reg = brw_vec8_grf(c->tmp_regs[ c->tmp_index++ ], 0); return reg; } -static void release_tmps(struct brw_wm_compile *c) +static int mark_tmps(struct brw_wm_compile *c) +{ + return c->tmp_index; +} + +static struct brw_reg lookup_tmp( struct brw_wm_compile *c, int index ) +{ + return brw_vec8_grf( c->tmp_regs[ index ], 0 ); +} + +static void release_tmps(struct brw_wm_compile *c, int mark) { - c->tmp_index = 127; + c->tmp_index = mark; } static struct brw_reg @@ -155,6 +176,68 @@ static struct brw_reg get_src_reg(struct brw_wm_compile *c, src->NegateBase, src->Abs); } +/* Subroutines are minimal support for resusable instruction sequences. + They are implemented as simply as possible to minimise overhead: there + is no explicit support for communication between the caller and callee + other than saving the return address in a temporary register, nor is + there any automatic local storage. This implies that great care is + required before attempting reentrancy or any kind of nested + subroutine invocations. */ +static void invoke_subroutine( struct brw_wm_compile *c, + enum _subroutine subroutine, + void (*emit)( struct brw_wm_compile * ) ) +{ + struct brw_compile *p = &c->func; + + assert( subroutine < BRW_WM_MAX_SUBROUTINE ); + + if( c->subroutines[ subroutine ] ) { + /* subroutine previously emitted: reuse existing instructions */ + + int mark = mark_tmps( c ); + struct brw_reg return_address = retype( alloc_tmp( c ), + BRW_REGISTER_TYPE_UD ); + int here = p->nr_insn; + + brw_push_insn_state(p); + brw_set_mask_control(p, BRW_MASK_DISABLE); + brw_ADD( p, return_address, brw_ip_reg(), brw_imm_ud( 2 << 4 ) ); + + brw_ADD( p, brw_ip_reg(), brw_ip_reg(), + brw_imm_d( ( c->subroutines[ subroutine ] - + here - 1 ) << 4 ) ); + brw_pop_insn_state(p); + + release_tmps( c, mark ); + } else { + /* previously unused subroutine: emit, and mark for later reuse */ + + int mark = mark_tmps( c ); + struct brw_reg return_address = retype( alloc_tmp( c ), + BRW_REGISTER_TYPE_UD ); + struct brw_instruction *calc; + int base = p->nr_insn; + + brw_push_insn_state(p); + brw_set_mask_control(p, BRW_MASK_DISABLE); + calc = brw_ADD( p, return_address, brw_ip_reg(), brw_imm_ud( 0 ) ); + brw_pop_insn_state(p); + + c->subroutines[ subroutine ] = p->nr_insn; + + emit( c ); + + brw_push_insn_state(p); + brw_set_mask_control(p, BRW_MASK_DISABLE); + brw_MOV( p, brw_ip_reg(), return_address ); + brw_pop_insn_state(p); + + brw_set_src1( calc, brw_imm_ud( ( p->nr_insn - base ) << 4 ) ); + + release_tmps( c, mark ); + } +} + static void emit_abs( struct brw_wm_compile *c, struct prog_instruction *inst) { @@ -172,7 +255,7 @@ static void emit_abs( struct brw_wm_compile *c, brw_set_saturate(p, 0); } -static void emit_int( struct brw_wm_compile *c, +static void emit_trunc( struct brw_wm_compile *c, struct prog_instruction *inst) { int i; @@ -778,6 +861,7 @@ static void emit_lrp(struct brw_wm_compile *c, GLuint mask = inst->DstReg.WriteMask; struct brw_reg dst, tmp1, tmp2, src0, src1, src2; int i; + int mark = mark_tmps(c); for (i = 0; i < 4; i++) { if (mask & (1<<i)) { dst = get_dst_reg(c, inst, i, 1); @@ -804,7 +888,7 @@ static void emit_lrp(struct brw_wm_compile *c, brw_MAC(p, dst, src0, tmp1); brw_set_saturate(p, 0); } - release_tmps(c); + release_tmps(c, mark); } } @@ -957,6 +1041,633 @@ static void emit_ddy(struct brw_wm_compile *c, brw_set_saturate(p, 0); } +static __inline struct brw_reg high_words( struct brw_reg reg ) +{ + return stride( suboffset( retype( reg, BRW_REGISTER_TYPE_W ), 1 ), + 0, 8, 2 ); +} + +static __inline struct brw_reg low_words( struct brw_reg reg ) +{ + return stride( retype( reg, BRW_REGISTER_TYPE_W ), 0, 8, 2 ); +} + +static __inline struct brw_reg even_bytes( struct brw_reg reg ) +{ + return stride( retype( reg, BRW_REGISTER_TYPE_B ), 0, 16, 2 ); +} + +static __inline struct brw_reg odd_bytes( struct brw_reg reg ) +{ + return stride( suboffset( retype( reg, BRW_REGISTER_TYPE_B ), 1 ), + 0, 16, 2 ); +} + +/* One-, two- and three-dimensional Perlin noise, similar to the description + in _Improving Noise_, Ken Perlin, Computer Graphics vol. 35 no. 3. */ +static void noise1_sub( struct brw_wm_compile *c ) { + + struct brw_compile *p = &c->func; + struct brw_reg param, + x0, x1, /* gradients at each end */ + t, tmp[ 2 ], /* float temporaries */ + itmp[ 5 ]; /* unsigned integer temporaries (aliases of floats above) */ + int i; + int mark = mark_tmps( c ); + + x0 = alloc_tmp( c ); + x1 = alloc_tmp( c ); + t = alloc_tmp( c ); + tmp[ 0 ] = alloc_tmp( c ); + tmp[ 1 ] = alloc_tmp( c ); + itmp[ 0 ] = retype( tmp[ 0 ], BRW_REGISTER_TYPE_UD ); + itmp[ 1 ] = retype( tmp[ 1 ], BRW_REGISTER_TYPE_UD ); + itmp[ 2 ] = retype( x0, BRW_REGISTER_TYPE_UD ); + itmp[ 3 ] = retype( x1, BRW_REGISTER_TYPE_UD ); + itmp[ 4 ] = retype( t, BRW_REGISTER_TYPE_UD ); + + param = lookup_tmp( c, mark - 2 ); + + brw_set_access_mode( p, BRW_ALIGN_1 ); + + brw_MOV( p, itmp[ 2 ], brw_imm_ud( 0xBA97 ) ); /* constant used later */ + + /* Arrange the two end coordinates into scalars (itmp0/itmp1) to + be hashed. Also compute the remainder (offset within the unit + length), interleaved to reduce register dependency penalties. */ + brw_RNDD( p, itmp[ 0 ], param ); + brw_FRC( p, param, param ); + brw_ADD( p, itmp[ 1 ], itmp[ 0 ], brw_imm_ud( 1 ) ); + brw_MOV( p, itmp[ 3 ], brw_imm_ud( 0x79D9 ) ); /* constant used later */ + brw_MOV( p, itmp[ 4 ], brw_imm_ud( 0xD5B1 ) ); /* constant used later */ + + /* We're now ready to perform the hashing. The two hashes are + interleaved for performance. The hash function used is + designed to rapidly achieve avalanche and require only 32x16 + bit multiplication, and 16-bit swizzles (which we get for + free). We can't use immediate operands in the multiplies, + because immediates are permitted only in src1 and the 16-bit + factor is permitted only in src0. */ + for( i = 0; i < 2; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 2 ], itmp[ i ] ); + for( i = 0; i < 2; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + for( i = 0; i < 2; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 3 ], itmp[ i ] ); + for( i = 0; i < 2; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + for( i = 0; i < 2; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 4 ], itmp[ i ] ); + for( i = 0; i < 2; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + + /* Now we want to initialise the two gradients based on the + hashes. Format conversion from signed integer to float leaves + everything scaled too high by a factor of pow( 2, 31 ), but + we correct for that right at the end. */ + brw_ADD( p, t, param, brw_imm_f( -1.0 ) ); + brw_MOV( p, x0, retype( tmp[ 0 ], BRW_REGISTER_TYPE_D ) ); + brw_MOV( p, x1, retype( tmp[ 1 ], BRW_REGISTER_TYPE_D ) ); + + brw_MUL( p, x0, x0, param ); + brw_MUL( p, x1, x1, t ); + + /* We interpolate between the gradients using the polynomial + 6t^5 - 15t^4 + 10t^3 (Perlin). */ + brw_MUL( p, tmp[ 0 ], param, brw_imm_f( 6.0 ) ); + brw_ADD( p, tmp[ 0 ], tmp[ 0 ], brw_imm_f( -15.0 ) ); + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param ); + brw_ADD( p, tmp[ 0 ], tmp[ 0 ], brw_imm_f( 10.0 ) ); + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param ); + brw_ADD( p, x1, x1, negate( x0 ) ); /* unrelated work to fill the + pipeline */ + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param ); + brw_MUL( p, param, tmp[ 0 ], param ); + brw_MUL( p, x1, x1, param ); + brw_ADD( p, x0, x0, x1 ); + /* scale by pow( 2, -30 ), to compensate for the format conversion + above and an extra factor of 2 so that a single gradient covers + the [-1,1] range */ + brw_MUL( p, param, x0, brw_imm_f( 0.000000000931322574615478515625 ) ); + + release_tmps( c, mark ); +} + +static void emit_noise1( struct brw_wm_compile *c, + struct prog_instruction *inst ) +{ + struct brw_compile *p = &c->func; + struct brw_reg src, param, dst; + GLuint mask = inst->DstReg.WriteMask; + int i; + int mark = mark_tmps( c ); + + assert( mark == 0 ); + + src = get_src_reg( c, inst->SrcReg, 0, 1 ); + + param = alloc_tmp( c ); + + brw_MOV( p, param, src ); + + invoke_subroutine( c, SUB_NOISE1, noise1_sub ); + + /* Fill in the result: */ + brw_set_saturate( p, inst->SaturateMode == SATURATE_ZERO_ONE ); + for (i = 0 ; i < 4; i++) { + if (mask & (1<<i)) { + dst = get_dst_reg(c, inst, i, 1); + brw_MOV( p, dst, param ); + } + } + if( inst->SaturateMode == SATURATE_ZERO_ONE ) + brw_set_saturate( p, 0 ); + + release_tmps( c, mark ); +} + +static void noise2_sub( struct brw_wm_compile *c ) { + + struct brw_compile *p = &c->func; + struct brw_reg param0, param1, + x0y0, x0y1, x1y0, x1y1, /* gradients at each corner */ + t, tmp[ 4 ], /* float temporaries */ + itmp[ 7 ]; /* unsigned integer temporaries (aliases of floats above) */ + int i; + int mark = mark_tmps( c ); + + x0y0 = alloc_tmp( c ); + x0y1 = alloc_tmp( c ); + x1y0 = alloc_tmp( c ); + x1y1 = alloc_tmp( c ); + t = alloc_tmp( c ); + for( i = 0; i < 4; i++ ) { + tmp[ i ] = alloc_tmp( c ); + itmp[ i ] = retype( tmp[ i ], BRW_REGISTER_TYPE_UD ); + } + itmp[ 4 ] = retype( x0y0, BRW_REGISTER_TYPE_UD ); + itmp[ 5 ] = retype( x0y1, BRW_REGISTER_TYPE_UD ); + itmp[ 6 ] = retype( x1y0, BRW_REGISTER_TYPE_UD ); + + param0 = lookup_tmp( c, mark - 3 ); + param1 = lookup_tmp( c, mark - 2 ); + + brw_set_access_mode( p, BRW_ALIGN_1 ); + + /* Arrange the four corner coordinates into scalars (itmp0..itmp3) to + be hashed. Also compute the remainders (offsets within the unit + square), interleaved to reduce register dependency penalties. */ + brw_RNDD( p, itmp[ 0 ], param0 ); + brw_RNDD( p, itmp[ 1 ], param1 ); + brw_FRC( p, param0, param0 ); + brw_FRC( p, param1, param1 ); + brw_MOV( p, itmp[ 4 ], brw_imm_ud( 0xBA97 ) ); /* constant used later */ + brw_ADD( p, high_words( itmp[ 0 ] ), high_words( itmp[ 0 ] ), + low_words( itmp[ 1 ] ) ); + brw_MOV( p, itmp[ 5 ], brw_imm_ud( 0x79D9 ) ); /* constant used later */ + brw_MOV( p, itmp[ 6 ], brw_imm_ud( 0xD5B1 ) ); /* constant used later */ + brw_ADD( p, itmp[ 1 ], itmp[ 0 ], brw_imm_ud( 0x10000 ) ); + brw_ADD( p, itmp[ 2 ], itmp[ 0 ], brw_imm_ud( 0x1 ) ); + brw_ADD( p, itmp[ 3 ], itmp[ 0 ], brw_imm_ud( 0x10001 ) ); + + /* We're now ready to perform the hashing. The four hashes are + interleaved for performance. The hash function used is + designed to rapidly achieve avalanche and require only 32x16 + bit multiplication, and 16-bit swizzles (which we get for + free). We can't use immediate operands in the multiplies, + because immediates are permitted only in src1 and the 16-bit + factor is permitted only in src0. */ + for( i = 0; i < 4; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 4 ], itmp[ i ] ); + for( i = 0; i < 4; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + for( i = 0; i < 4; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 5 ], itmp[ i ] ); + for( i = 0; i < 4; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + for( i = 0; i < 4; i++ ) + brw_MUL( p, itmp[ i ], itmp[ 6 ], itmp[ i ] ); + for( i = 0; i < 4; i++ ) + brw_XOR( p, low_words( itmp[ i ] ), low_words( itmp[ i ] ), + high_words( itmp[ i ] ) ); + + /* Now we want to initialise the four gradients based on the + hashes. Format conversion from signed integer to float leaves + everything scaled too high by a factor of pow( 2, 15 ), but + we correct for that right at the end. */ + brw_ADD( p, t, param0, brw_imm_f( -1.0 ) ); + brw_MOV( p, x0y0, low_words( tmp[ 0 ] ) ); + brw_MOV( p, x0y1, low_words( tmp[ 1 ] ) ); + brw_MOV( p, x1y0, low_words( tmp[ 2 ] ) ); + brw_MOV( p, x1y1, low_words( tmp[ 3 ] ) ); + + brw_MOV( p, tmp[ 0 ], high_words( tmp[ 0 ] ) ); + brw_MOV( p, tmp[ 1 ], high_words( tmp[ 1 ] ) ); + brw_MOV( p, tmp[ 2 ], high_words( tmp[ 2 ] ) ); + brw_MOV( p, tmp[ 3 ], high_words( tmp[ 3 ] ) ); + + brw_MUL( p, x1y0, x1y0, t ); + brw_MUL( p, x1y1, x1y1, t ); + brw_ADD( p, t, param1, brw_imm_f( -1.0 ) ); + brw_MUL( p, x0y0, x0y0, param0 ); + brw_MUL( p, x0y1, x0y1, param0 ); + + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param1 ); + brw_MUL( p, tmp[ 2 ], tmp[ 2 ], param1 ); + brw_MUL( p, tmp[ 1 ], tmp[ 1 ], t ); + brw_MUL( p, tmp[ 3 ], tmp[ 3 ], t ); + + brw_ADD( p, x0y0, x0y0, tmp[ 0 ] ); + brw_ADD( p, x1y0, x1y0, tmp[ 2 ] ); + brw_ADD( p, x0y1, x0y1, tmp[ 1 ] ); + brw_ADD( p, x1y1, x1y1, tmp[ 3 ] ); + + /* We interpolate between the gradients using the polynomial + 6t^5 - 15t^4 + 10t^3 (Perlin). */ + brw_MUL( p, tmp[ 0 ], param0, brw_imm_f( 6.0 ) ); + brw_MUL( p, tmp[ 1 ], param1, brw_imm_f( 6.0 ) ); + brw_ADD( p, tmp[ 0 ], tmp[ 0 ], brw_imm_f( -15.0 ) ); + brw_ADD( p, tmp[ 1 ], tmp[ 1 ], brw_imm_f( -15.0 ) ); + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param0 ); + brw_MUL( p, tmp[ 1 ], tmp[ 1 ], param1 ); + brw_ADD( p, x0y1, x0y1, negate( x0y0 ) ); /* unrelated work to fill the + pipeline */ + brw_ADD( p, tmp[ 0 ], tmp[ 0 ], brw_imm_f( 10.0 ) ); + brw_ADD( p, tmp[ 1 ], tmp[ 1 ], brw_imm_f( 10.0 ) ); + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param0 ); + brw_MUL( p, tmp[ 1 ], tmp[ 1 ], param1 ); + brw_ADD( p, x1y1, x1y1, negate( x1y0 ) ); /* unrelated work to fill the + pipeline */ + brw_MUL( p, tmp[ 0 ], tmp[ 0 ], param0 ); + brw_MUL( p, tmp[ 1 ], tmp[ 1 ], param1 ); + brw_MUL( p, param0, tmp[ 0 ], param0 ); + brw_MUL( p, param1, tmp[ 1 ], param1 ); + + /* Here we interpolate in the y dimension... */ + brw_MUL( p, x0y1, x0y1, param1 ); + brw_MUL( p, x1y1, x1y1, param1 ); + brw_ADD( p, x0y0, x0y0, x0y1 ); + brw_ADD( p, x1y0, x1y0, x1y1 ); + + /* And now in x. There are horrible register dependencies here, + but we have nothing else to do. */ + brw_ADD( p, x1y0, x1y0, negate( x0y0 ) ); + brw_MUL( p, x1y0, x1y0, param0 ); + brw_ADD( p, x0y0, x0y0, x1y0 ); + + /* scale by pow( 2, -15 ), as described above */ + brw_MUL( p, param0, x0y0, brw_imm_f( 0.000030517578125 ) ); + + release_tmps( c, mark ); +} + +static void emit_noise2( struct brw_wm_compile *c, + struct prog_instruction *inst ) +{ + struct brw_compile *p = &c->func; + struct brw_reg src0, src1, param0, param1, dst; + GLuint mask = inst->DstReg.WriteMask; + int i; + int mark = mark_tmps( c ); + + assert( mark == 0 ); + + src0 = get_src_reg( c, inst->SrcReg, 0, 1 ); + src1 = get_src_reg( c, inst->SrcReg, 1, 1 ); + + param0 = alloc_tmp( c ); + param1 = alloc_tmp( c ); + + brw_MOV( p, param0, src0 ); + brw_MOV( p, param1, src1 ); + + invoke_subroutine( c, SUB_NOISE2, noise2_sub ); + + /* Fill in the result: */ + brw_set_saturate( p, inst->SaturateMode == SATURATE_ZERO_ONE ); + for (i = 0 ; i < 4; i++) { + if (mask & (1<<i)) { + dst = get_dst_reg(c, inst, i, 1); + brw_MOV( p, dst, param0 ); + } + } + if( inst->SaturateMode == SATURATE_ZERO_ONE ) + brw_set_saturate( p, 0 ); + + release_tmps( c, mark ); +} + +/* The three-dimensional case is much like the one- and two- versions above, + but since the number of corners is rapidly growing we now pack 16 16-bit + hashes into each register to extract more parallelism from the EUs. */ +static void noise3_sub( struct brw_wm_compile *c ) { + + struct brw_compile *p = &c->func; + struct brw_reg param0, param1, param2, + x0y0, x0y1, x1y0, x1y1, /* gradients at four of the corners */ + xi, yi, zi, /* interpolation coefficients */ + t, tmp[ 8 ], /* float temporaries */ + itmp[ 8 ], /* unsigned integer temporaries (aliases of floats above) */ + wtmp[ 8 ]; /* 16-way unsigned word temporaries (aliases of above) */ + int i; + int mark = mark_tmps( c ); + + x0y0 = alloc_tmp( c ); + x0y1 = alloc_tmp( c ); + x1y0 = alloc_tmp( c ); + x1y1 = alloc_tmp( c ); + xi = alloc_tmp( c ); + yi = alloc_tmp( c ); + zi = alloc_tmp( c ); + t = alloc_tmp( c ); + for( i = 0; i < 8; i++ ) { + tmp[ i ] = alloc_tmp( c ); + itmp[ i ] = retype( tmp[ i ], BRW_REGISTER_TYPE_UD ); + wtmp[ i ] = brw_uw16_grf( tmp[ i ].nr, 0 ); + } + + param0 = lookup_tmp( c, mark - 4 ); + param1 = lookup_tmp( c, mark - 3 ); + param2 = lookup_tmp( c, mark - 2 ); + + brw_set_access_mode( p, BRW_ALIGN_1 ); + + /* Arrange the eight corner coordinates into scalars (itmp0..itmp3) to + be hashed. Also compute the remainders (offsets within the unit + cube), interleaved to reduce register dependency penalties. */ + brw_RNDD( p, itmp[ 0 ], param0 ); + brw_RNDD( p, itmp[ 1 ], param1 ); + brw_RNDD( p, itmp[ 2 ], param2 ); + brw_MOV( p, itmp[ 4 ], brw_imm_ud( 0xBC8F ) ); /* constant used later */ + brw_MOV( p, itmp[ 5 ], brw_imm_ud( 0xD0BD ) ); /* constant used later */ + brw_MOV( p, itmp[ 6 ], brw_imm_ud( 0x9B93 ) ); /* constant used later */ + brw_FRC( p, param0, param0 ); + brw_FRC( p, param1, param1 ); + brw_FRC( p, param2, param2 ); + /* Since we now have only 16 bits of precision in the hash, we must + be more careful about thorough mixing to maintain entropy as we + squash the input vector into a small scalar. */ + brw_MUL( p, brw_acc_reg(), itmp[ 4 ], itmp[ 0 ] ); + brw_MAC( p, brw_acc_reg(), itmp[ 5 ], itmp[ 1 ] ); + brw_MAC( p, itmp[ 0 ], itmp[ 6 ], itmp[ 2 ] ); + brw_ADD( p, high_words( itmp[ 0 ] ), low_words( itmp[ 0 ] ), + brw_imm_uw( 0xBC8F ) ); + + /* Temporarily disable the execution mask while we work with ExecSize=16 + channels (the mask is set for ExecSize=8 and is probably incorrect). + Although this might cause execution of unwanted channels, the code + writes only to temporary registers and has no side effects, so + disabling the mask is harmless. */ + brw_push_insn_state( p ); + brw_set_mask_control( p, BRW_MASK_DISABLE ); + brw_ADD( p, wtmp[ 1 ], wtmp[ 0 ], brw_imm_uw( 0xD0BD ) ); + brw_ADD( p, wtmp[ 2 ], wtmp[ 0 ], brw_imm_uw( 0x9B93 ) ); + brw_ADD( p, wtmp[ 3 ], wtmp[ 1 ], brw_imm_uw( 0x9B93 ) ); + + /* We're now ready to perform the hashing. The eight hashes are + interleaved for performance. The hash function used is + designed to rapidly achieve avalanche and require only 16x16 + bit multiplication, and 8-bit swizzles (which we get for + free). */ + for( i = 0; i < 4; i++ ) + brw_MUL( p, wtmp[ i ], wtmp[ i ], brw_imm_uw( 0x28D9 ) ); + for( i = 0; i < 4; i++ ) + brw_XOR( p, even_bytes( wtmp[ i ] ), even_bytes( wtmp[ i ] ), + odd_bytes( wtmp[ i ] ) ); + for( i = 0; i < 4; i++ ) + brw_MUL( p, wtmp[ i ], wtmp[ i ], brw_imm_uw( 0xC6D5 ) ); + for( i = 0; i < 4; i++ ) + brw_XOR( p, even_bytes( wtmp[ i ] ), even_bytes( wtmp[ i ] ), + odd_bytes( wtmp[ i ] ) ); + brw_pop_insn_state( p ); + + /* Now we want to initialise the four rear gradients based on the + hashes. Format conversion from signed integer to float leaves + everything scaled too high by a factor of pow( 2, 15 ), but + we correct for that right at the end. */ + /* x component */ + brw_ADD( p, t, param0, brw_imm_f( -1.0 ) ); + brw_MOV( p, x0y0, low_words( tmp[ 0 ] ) ); + brw_MOV( p, x0y1, low_words( tmp[ 1 ] ) ); + brw_MOV( p, x1y0, high_words( tmp[ 0 ] ) ); + brw_MOV( p, x1y1, high_words( tmp[ 1 ] ) ); + + brw_push_insn_state( p ); + brw_set_mask_control( p, BRW_MASK_DISABLE ); + brw_SHL( p, wtmp[ 0 ], wtmp[ 0 ], brw_imm_uw( 5 ) ); + brw_SHL( p, wtmp[ 1 ], wtmp[ 1 ], brw_imm_uw( 5 ) ); + brw_pop_insn_state( p ); + + brw_MUL( p, x1y0, x1y0, t ); + brw_MUL( p, x1y1, x1y1, t ); + brw_ADD( p, t, param1, brw_imm_f( -1.0 ) ); + brw_MUL( p, x0y0, x0y0, param0 ); + brw_MUL( p, x0y1, x0y1, param0 ); + + /* y component */ + brw_MOV( p, tmp[ 5 ], low_words( tmp[ 1 ] ) ); + brw_MOV( p, tmp[ 7 ], high_words( tmp[ 1 ] ) ); + brw_MOV( p, tmp[ 4 ], low_words( tmp[ 0 ] ) ); + brw_MOV( p, tmp[ 6 ], high_words( tmp[ 0 ] ) ); + + brw_push_insn_state( p ); + brw_set_mask_control( p, BRW_MASK_DISABLE ); + brw_SHL( p, wtmp[ 0 ], wtmp[ 0 ], brw_imm_uw( 5 ) ); + brw_SHL( p, wtmp[ 1 ], wtmp[ 1 ], brw_imm_uw( 5 ) ); + brw_pop_insn_state( p ); + + brw_MUL( p, tmp[ 5 ], tmp[ 5 ], t ); + brw_MUL( p, tmp[ 7 ], tmp[ 7 ], t ); + brw_ADD( p, t, param0, brw_imm_f( -1.0 ) ); + brw_MUL( p, tmp[ 4 ], tmp[ 4 ], param1 ); + brw_MUL( p, tmp[ 6 ], tmp[ 6 ], param1 ); + + brw_ADD( p, x0y1, x0y1, tmp[ 5 ] ); + brw_ADD( p, x1y1, x1y1, tmp[ 7 ] ); + brw_ADD( p, x0y0, x0y0, tmp[ 4 ] ); + brw_ADD( p, x1y0, x1y0, tmp[ 6 ] ); + + /* z component */ + brw_MOV( p, tmp[ 4 ], low_words( tmp[ 0 ] ) ); + brw_MOV( p, tmp[ 5 ], low_words( tmp[ 1 ] ) ); + brw_MOV( p, tmp[ 6 ], high_words( tmp[ 0 ] ) ); + brw_MOV( p, tmp[ 7 ], high_words( tmp[ 1 ] ) ); + + brw_MUL( p, tmp[ 4 ], tmp[ 4 ], param2 ); + brw_MUL( p, tmp[ 5 ], tmp[ 5 ], param2 ); + brw_MUL( p, tmp[ 6 ], tmp[ 6 ], param2 ); + brw_MUL( p, tmp[ 7 ], tmp[ 7 ], param2 ); + + brw_ADD( p, x0y0, x0y0, tmp[ 4 ] ); + brw_ADD( p, x0y1, x0y1, tmp[ 5 ] ); + brw_ADD( p, x1y0, x1y0, tmp[ 6 ] ); + brw_ADD( p, x1y1, x1y1, tmp[ 7 ] ); + + /* We interpolate between the gradients using the polynomial + 6t^5 - 15t^4 + 10t^3 (Perlin). */ + brw_MUL( p, xi, param0, brw_imm_f( 6.0 ) ); + brw_MUL( p, yi, param1, brw_imm_f( 6.0 ) ); + brw_MUL( p, zi, param2, brw_imm_f( 6.0 ) ); + brw_ADD( p, xi, xi, brw_imm_f( -15.0 ) ); + brw_ADD( p, yi, yi, brw_imm_f( -15.0 ) ); + brw_ADD( p, zi, zi, brw_imm_f( -15.0 ) ); + brw_MUL( p, xi, xi, param0 ); + brw_MUL( p, yi, yi, param1 ); + brw_MUL( p, zi, zi, param2 ); + brw_ADD( p, xi, xi, brw_imm_f( 10.0 ) ); + brw_ADD( p, yi, yi, brw_imm_f( 10.0 ) ); + brw_ADD( p, zi, zi, brw_imm_f( 10.0 ) ); + brw_ADD( p, x0y1, x0y1, negate( x0y0 ) ); /* unrelated work */ + brw_ADD( p, x1y1, x1y1, negate( x1y0 ) ); /* unrelated work */ + brw_MUL( p, xi, xi, param0 ); + brw_MUL( p, yi, yi, param1 ); + brw_MUL( p, zi, zi, param2 ); + brw_MUL( p, xi, xi, param0 ); + brw_MUL( p, yi, yi, param1 ); + brw_MUL( p, zi, zi, param2 ); + brw_MUL( p, xi, xi, param0 ); + brw_MUL( p, yi, yi, param1 ); + brw_MUL( p, zi, zi, param2 ); + + /* Here we interpolate in the y dimension... */ + brw_MUL( p, x0y1, x0y1, yi ); + brw_MUL( p, x1y1, x1y1, yi ); + brw_ADD( p, x0y0, x0y0, x0y1 ); + brw_ADD( p, x1y0, x1y0, x1y1 ); + + /* And now in x. Leave the result in tmp[ 0 ] (see below)... */ + brw_ADD( p, x1y0, x1y0, negate( x0y0 ) ); + brw_MUL( p, x1y0, x1y0, xi ); + brw_ADD( p, tmp[ 0 ], x0y0, x1y0 ); + + /* Now do the same thing for the front four gradients... */ + /* x component */ + brw_MOV( p, x0y0, low_words( tmp[ 2 ] ) ); + brw_MOV( p, x0y1, low_words( tmp[ 3 ] ) ); + brw_MOV( p, x1y0, high_words( tmp[ 2 ] ) ); + brw_MOV( p, x1y1, high_words( tmp[ 3 ] ) ); + + brw_push_insn_state( p ); + brw_set_mask_control( p, BRW_MASK_DISABLE ); + brw_SHL( p, wtmp[ 2 ], wtmp[ 2 ], brw_imm_uw( 5 ) ); + brw_SHL( p, wtmp[ 3 ], wtmp[ 3 ], brw_imm_uw( 5 ) ); + brw_pop_insn_state( p ); + + brw_MUL( p, x1y0, x1y0, t ); + brw_MUL( p, x1y1, x1y1, t ); + brw_ADD( p, t, param1, brw_imm_f( -1.0 ) ); + brw_MUL( p, x0y0, x0y0, param0 ); + brw_MUL( p, x0y1, x0y1, param0 ); + + /* y component */ + brw_MOV( p, tmp[ 5 ], low_words( tmp[ 3 ] ) ); + brw_MOV( p, tmp[ 7 ], high_words( tmp[ 3 ] ) ); + brw_MOV( p, tmp[ 4 ], low_words( tmp[ 2 ] ) ); + brw_MOV( p, tmp[ 6 ], high_words( tmp[ 2 ] ) ); + + brw_push_insn_state( p ); + brw_set_mask_control( p, BRW_MASK_DISABLE ); + brw_SHL( p, wtmp[ 2 ], wtmp[ 2 ], brw_imm_uw( 5 ) ); + brw_SHL( p, wtmp[ 3 ], wtmp[ 3 ], brw_imm_uw( 5 ) ); + brw_pop_insn_state( p ); + + brw_MUL( p, tmp[ 5 ], tmp[ 5 ], t ); + brw_MUL( p, tmp[ 7 ], tmp[ 7 ], t ); + brw_ADD( p, t, param2, brw_imm_f( -1.0 ) ); + brw_MUL( p, tmp[ 4 ], tmp[ 4 ], param1 ); + brw_MUL( p, tmp[ 6 ], tmp[ 6 ], param1 ); + + brw_ADD( p, x0y1, x0y1, tmp[ 5 ] ); + brw_ADD( p, x1y1, x1y1, tmp[ 7 ] ); + brw_ADD( p, x0y0, x0y0, tmp[ 4 ] ); + brw_ADD( p, x1y0, x1y0, tmp[ 6 ] ); + + /* z component */ + brw_MOV( p, tmp[ 4 ], low_words( tmp[ 2 ] ) ); + brw_MOV( p, tmp[ 5 ], low_words( tmp[ 3 ] ) ); + brw_MOV( p, tmp[ 6 ], high_words( tmp[ 2 ] ) ); + brw_MOV( p, tmp[ 7 ], high_words( tmp[ 3 ] ) ); + + brw_MUL( p, tmp[ 4 ], tmp[ 4 ], t ); + brw_MUL( p, tmp[ 5 ], tmp[ 5 ], t ); + brw_MUL( p, tmp[ 6 ], tmp[ 6 ], t ); + brw_MUL( p, tmp[ 7 ], tmp[ 7 ], t ); + + brw_ADD( p, x0y0, x0y0, tmp[ 4 ] ); + brw_ADD( p, x0y1, x0y1, tmp[ 5 ] ); + brw_ADD( p, x1y0, x1y0, tmp[ 6 ] ); + brw_ADD( p, x1y1, x1y1, tmp[ 7 ] ); + + /* The interpolation coefficients are still around from last time, so + again interpolate in the y dimension... */ + brw_ADD( p, x0y1, x0y1, negate( x0y0 ) ); + brw_ADD( p, x1y1, x1y1, negate( x1y0 ) ); + brw_MUL( p, x0y1, x0y1, yi ); + brw_MUL( p, x1y1, x1y1, yi ); + brw_ADD( p, x0y0, x0y0, x0y1 ); + brw_ADD( p, x1y0, x1y0, x1y1 ); + + /* And now in x. The rear face is in tmp[ 0 ] (see above), so this + time put the front face in tmp[ 1 ] and we're nearly there... */ + brw_ADD( p, x1y0, x1y0, negate( x0y0 ) ); + brw_MUL( p, x1y0, x1y0, xi ); + brw_ADD( p, tmp[ 1 ], x0y0, x1y0 ); + + /* The final interpolation, in the z dimension: */ + brw_ADD( p, tmp[ 1 ], tmp[ 1 ], negate( tmp[ 0 ] ) ); + brw_MUL( p, tmp[ 1 ], tmp[ 1 ], zi ); + brw_ADD( p, tmp[ 0 ], tmp[ 0 ], tmp[ 1 ] ); + + /* scale by pow( 2, -15 ), as described above */ + brw_MUL( p, param0, tmp[ 0 ], brw_imm_f( 0.000030517578125 ) ); + + release_tmps( c, mark ); +} + +static void emit_noise3( struct brw_wm_compile *c, + struct prog_instruction *inst ) +{ + struct brw_compile *p = &c->func; + struct brw_reg src0, src1, src2, param0, param1, param2, dst; + GLuint mask = inst->DstReg.WriteMask; + int i; + int mark = mark_tmps( c ); + + assert( mark == 0 ); + + src0 = get_src_reg( c, inst->SrcReg, 0, 1 ); + src1 = get_src_reg( c, inst->SrcReg, 1, 1 ); + src2 = get_src_reg( c, inst->SrcReg, 2, 1 ); + + param0 = alloc_tmp( c ); + param1 = alloc_tmp( c ); + param2 = alloc_tmp( c ); + + brw_MOV( p, param0, src0 ); + brw_MOV( p, param1, src1 ); + brw_MOV( p, param2, src2 ); + + invoke_subroutine( c, SUB_NOISE3, noise3_sub ); + + /* Fill in the result: */ + brw_set_saturate( p, inst->SaturateMode == SATURATE_ZERO_ONE ); + for (i = 0 ; i < 4; i++) { + if (mask & (1<<i)) { + dst = get_dst_reg(c, inst, i, 1); + brw_MOV( p, dst, param0 ); + } + } + if( inst->SaturateMode == SATURATE_ZERO_ONE ) + brw_set_saturate( p, 0 ); + + release_tmps( c, mark ); +} + static void emit_wpos_xy(struct brw_wm_compile *c, struct prog_instruction *inst) { @@ -1201,8 +1912,8 @@ static void brw_wm_emit_glsl(struct brw_context *brw, struct brw_wm_compile *c) case OPCODE_LRP: emit_lrp(c, inst); break; - case OPCODE_INT: - emit_int(c, inst); + case OPCODE_TRUNC: + emit_trunc(c, inst); break; case OPCODE_MOV: emit_mov(c, inst); @@ -1276,6 +1987,17 @@ static void brw_wm_emit_glsl(struct brw_context *brw, struct brw_wm_compile *c) case OPCODE_MAD: emit_mad(c, inst); break; + case OPCODE_NOISE1: + emit_noise1(c, inst); + break; + case OPCODE_NOISE2: + emit_noise2(c, inst); + break; + case OPCODE_NOISE3: + emit_noise3(c, inst); + break; + /* case OPCODE_NOISE4: */ + /* not yet implemented */ case OPCODE_TEX: emit_tex(c, inst); break; @@ -1368,7 +2090,6 @@ static void brw_wm_emit_glsl(struct brw_context *brw, struct brw_wm_compile *c) void brw_wm_glsl_emit(struct brw_context *brw, struct brw_wm_compile *c) { brw_wm_pass_fp(c); - c->tmp_index = 127; brw_wm_emit_glsl(brw, c); c->prog_data.total_grf = c->reg_index; c->prog_data.total_scratch = 0; diff --git a/src/mesa/drivers/dri/intel/intel_batchbuffer.c b/src/mesa/drivers/dri/intel/intel_batchbuffer.c index 7dbc646370d..c9b88b0ae1f 100644 --- a/src/mesa/drivers/dri/intel/intel_batchbuffer.c +++ b/src/mesa/drivers/dri/intel/intel_batchbuffer.c @@ -30,6 +30,7 @@ #include "intel_decode.h" #include "intel_reg.h" #include "intel_bufmgr.h" +#include "intel_buffers.h" /* Relocations in kernel space: * - pass dma buffer seperately @@ -133,6 +134,9 @@ do_flush_locked(struct intel_batchbuffer *batch, { struct intel_context *intel = batch->intel; int ret = 0; + unsigned int num_cliprects = 0; + struct drm_clip_rect *cliprects = NULL; + int x_off = 0, y_off = 0; if (batch->buffer) dri_bo_subdata (batch->buf, 0, used, batch->buffer); @@ -142,23 +146,21 @@ do_flush_locked(struct intel_batchbuffer *batch, batch->map = NULL; batch->ptr = NULL; - /* Throw away non-effective packets. Won't work once we have - * hardware contexts which would preserve statechanges beyond a - * single buffer. - */ - if (!(intel->numClipRects == 0 && - batch->cliprect_mode == LOOP_CLIPRECTS) || intel->no_hw) { - dri_bo_exec(batch->buf, used, - intel->pClipRects, - batch->cliprect_mode != LOOP_CLIPRECTS ? - 0 : intel->numClipRects, - (((GLuint) intel->drawX) & 0xffff) | - (((GLuint) intel->drawY) << 16)); + if (batch->cliprect_mode == LOOP_CLIPRECTS) { + intel_get_cliprects(intel, &cliprects, &num_cliprects, &x_off, &y_off); + } + /* Dispatch the batchbuffer, if it has some effect (nonzero cliprects). + * Can't short-circuit like this once we have hardware contexts, but we + * should always be in DRI2 mode by then anyway. + */ + if ((batch->cliprect_mode != LOOP_CLIPRECTS || + num_cliprects != 0) && !intel->no_hw) { + dri_bo_exec(batch->buf, used, cliprects, num_cliprects, + (x_off & 0xffff) | (y_off << 16)); } - if (intel->numClipRects == 0 && - batch->cliprect_mode == LOOP_CLIPRECTS) { + if (batch->cliprect_mode == LOOP_CLIPRECTS && num_cliprects == 0) { if (allow_unlock) { /* If we are not doing any actual user-visible rendering, * do a sched_yield to keep the app from pegging the cpu while diff --git a/src/mesa/drivers/dri/intel/intel_batchbuffer.h b/src/mesa/drivers/dri/intel/intel_batchbuffer.h index 1f8096b32ec..8129996979f 100644 --- a/src/mesa/drivers/dri/intel/intel_batchbuffer.h +++ b/src/mesa/drivers/dri/intel/intel_batchbuffer.h @@ -19,6 +19,9 @@ enum cliprect_mode { /** * Batchbuffer contents require looping over per cliprect at batch submit * time. + * + * This will be upgraded to NO_LOOP_CLIPRECTS when there's a single + * constant cliprect, as in DRI2 or FBO rendering. */ LOOP_CLIPRECTS, /** @@ -29,8 +32,10 @@ enum cliprect_mode { /** * Batchbuffer contents contain drawing that already handles cliprects, such * as 2D drawing to front/back/depth that doesn't respect DRAWING_RECTANGLE. + * * Equivalent behavior to NO_LOOP_CLIPRECTS, but may not persist in batch - * outside of LOCK/UNLOCK. + * outside of LOCK/UNLOCK. This is upgraded to just NO_LOOP_CLIPRECTS when + * there's a constant cliprect, as in DRI2 or FBO rendering. */ REFERENCES_CLIPRECTS }; @@ -115,6 +120,11 @@ intel_batchbuffer_require_space(struct intel_batchbuffer *batch, if (intel_batchbuffer_space(batch) < sz) intel_batchbuffer_flush(batch); + if ((cliprect_mode == LOOP_CLIPRECTS || + cliprect_mode == REFERENCES_CLIPRECTS) && + batch->intel->constant_cliprect) + cliprect_mode = NO_LOOP_CLIPRECTS; + if (cliprect_mode != IGNORE_CLIPRECTS) { if (batch->cliprect_mode == IGNORE_CLIPRECTS) { batch->cliprect_mode = cliprect_mode; diff --git a/src/mesa/drivers/dri/intel/intel_blit.c b/src/mesa/drivers/dri/intel/intel_blit.c index 2917401e023..e1046f4a5de 100644 --- a/src/mesa/drivers/dri/intel/intel_blit.c +++ b/src/mesa/drivers/dri/intel/intel_blit.c @@ -272,24 +272,53 @@ intelEmitCopyBlit(struct intel_context *intel, GLshort w, GLshort h, GLenum logic_op) { - GLuint CMD, BR13; + GLuint CMD, BR13, pass = 0; int dst_y2 = dst_y + h; int dst_x2 = dst_x + w; dri_bo *aper_array[3]; BATCH_LOCALS; /* do space/cliprects check before going any further */ - intel_batchbuffer_require_space(intel->batch, 8 * 4, NO_LOOP_CLIPRECTS); - again: - aper_array[0] = intel->batch->buf; - aper_array[1] = dst_buffer; - aper_array[2] = src_buffer; - - if (dri_bufmgr_check_aperture_space(aper_array, 3) != 0) { - intel_batchbuffer_flush(intel->batch); - goto again; + do { + aper_array[0] = intel->batch->buf; + aper_array[1] = dst_buffer; + aper_array[2] = src_buffer; + + if (dri_bufmgr_check_aperture_space(aper_array, 3) != 0) { + intel_batchbuffer_flush(intel->batch); + pass++; + } else + break; + } while (pass < 2); + + if (pass >= 2) { + GLboolean locked = GL_FALSE; + if (!intel->locked) { + LOCK_HARDWARE(intel); + locked = GL_TRUE; + } + + dri_bo_map(dst_buffer, GL_TRUE); + dri_bo_map(src_buffer, GL_FALSE); + _mesa_copy_rect((GLubyte *)dst_buffer->virtual + dst_offset, + cpp, + dst_pitch, + dst_x, dst_y, + w, h, + (GLubyte *)src_buffer->virtual + src_offset, + src_pitch, + src_x, src_y); + + dri_bo_unmap(src_buffer); + dri_bo_unmap(dst_buffer); + + if (locked) + UNLOCK_HARDWARE(intel); + + return; } + intel_batchbuffer_require_space(intel->batch, 8 * 4, NO_LOOP_CLIPRECTS); DBG("%s src:buf(%p)/%d+%d %d,%d dst:buf(%p)/%d+%d %d,%d sz:%dx%d\n", __FUNCTION__, src_buffer, src_pitch, src_offset, src_x, src_y, @@ -393,6 +422,9 @@ intelClearWithBlit(GLcontext *ctx, GLbitfield mask) struct gl_framebuffer *fb = ctx->DrawBuffer; GLuint clear_depth; GLbitfield skipBuffers = 0; + unsigned int num_cliprects; + struct drm_clip_rect *cliprects; + int x_off, y_off; BATCH_LOCALS; /* @@ -417,7 +449,8 @@ intelClearWithBlit(GLcontext *ctx, GLbitfield mask) intelFlush(&intel->ctx); LOCK_HARDWARE(intel); - if (intel->numClipRects) { + intel_get_cliprects(intel, &cliprects, &num_cliprects, &x_off, &y_off); + if (num_cliprects) { GLint cx, cy, cw, ch; drm_clip_rect_t clear; int i; @@ -432,15 +465,15 @@ intelClearWithBlit(GLcontext *ctx, GLbitfield mask) /* clearing a window */ /* flip top to bottom */ - clear.x1 = cx + intel->drawX; + clear.x1 = cx + x_off; clear.y1 = intel->driDrawable->y + intel->driDrawable->h - cy - ch; clear.x2 = clear.x1 + cw; clear.y2 = clear.y1 + ch; } else { /* clearing FBO */ - assert(intel->numClipRects == 1); - assert(intel->pClipRects == &intel->fboRect); + assert(num_cliprects == 1); + assert(cliprects == &intel->fboRect); clear.x1 = cx; clear.y1 = cy; clear.x2 = clear.x1 + cw; @@ -448,8 +481,8 @@ intelClearWithBlit(GLcontext *ctx, GLbitfield mask) /* no change to mask */ } - for (i = 0; i < intel->numClipRects; i++) { - const drm_clip_rect_t *box = &intel->pClipRects[i]; + for (i = 0; i < num_cliprects; i++) { + const drm_clip_rect_t *box = &cliprects[i]; drm_clip_rect_t b; GLuint buf; GLuint clearMask = mask; /* use copy, since we modify it below */ diff --git a/src/mesa/drivers/dri/intel/intel_buffers.c b/src/mesa/drivers/dri/intel/intel_buffers.c index f5eaf765f38..f8f009c6a30 100644 --- a/src/mesa/drivers/dri/intel/intel_buffers.c +++ b/src/mesa/drivers/dri/intel/intel_buffers.c @@ -123,99 +123,40 @@ intel_readbuf_region(struct intel_context *intel) return NULL; } - - -/** - * Update the following fields for rendering to a user-created FBO: - * intel->numClipRects - * intel->pClipRects - * intel->drawX - * intel->drawY - */ -static void -intelSetRenderbufferClipRects(struct intel_context *intel) -{ - /* If the batch contents require looping over cliprects, flush them before - * we go changing which cliprects get referenced when that happens. - */ - if (intel->batch->cliprect_mode == LOOP_CLIPRECTS && - (intel->fboRect.x2 != intel->ctx.DrawBuffer->Width || - intel->fboRect.x2 != intel->ctx.DrawBuffer->Height)) - intel_batchbuffer_flush(intel->batch); - - assert(intel->ctx.DrawBuffer->Width > 0); - assert(intel->ctx.DrawBuffer->Height > 0); - intel->fboRect.x1 = 0; - intel->fboRect.y1 = 0; - intel->fboRect.x2 = intel->ctx.DrawBuffer->Width; - intel->fboRect.y2 = intel->ctx.DrawBuffer->Height; - intel->numClipRects = 1; - intel->pClipRects = &intel->fboRect; - intel->drawX = 0; - intel->drawY = 0; -} - - -/** - * As above, but for rendering to front buffer of a window. - * \sa intelSetRenderbufferClipRects - */ -static void -intelSetFrontClipRects(struct intel_context *intel) -{ - __DRIdrawablePrivate *dPriv = intel->driDrawable; - - if (!dPriv) - return; - - /* If the batch contents require looping over cliprects, flush them before - * we go changing which cliprects get referenced when that happens. - */ - if (intel->batch->cliprect_mode == LOOP_CLIPRECTS && - intel->pClipRects != dPriv->pClipRects) - intel_batchbuffer_flush(intel->batch); - intel->numClipRects = dPriv->numClipRects; - intel->pClipRects = dPriv->pClipRects; - intel->drawX = dPriv->x; - intel->drawY = dPriv->y; -} - - -/** - * As above, but for rendering to back buffer of a window. - */ -static void -intelSetBackClipRects(struct intel_context *intel) +void +intel_get_cliprects(struct intel_context *intel, + struct drm_clip_rect **cliprects, + unsigned int *num_cliprects, + int *x_off, int *y_off) { __DRIdrawablePrivate *dPriv = intel->driDrawable; - struct intel_framebuffer *intel_fb; - - if (!dPriv) - return; - - intel_fb = dPriv->driverPrivate; + struct intel_framebuffer *intel_fb = dPriv->driverPrivate; - if (intel_fb->pf_active || dPriv->numBackClipRects == 0) { + if (intel->constant_cliprect) { + /* FBO or DRI2 rendering, which can just use the fb's size. */ + intel->fboRect.x1 = 0; + intel->fboRect.y1 = 0; + intel->fboRect.x2 = intel->ctx.DrawBuffer->Width; + intel->fboRect.y2 = intel->ctx.DrawBuffer->Height; + + *cliprects = &intel->fboRect; + *num_cliprects = 1; + *x_off = 0; + *y_off = 0; + } else if (intel->front_cliprects || + intel_fb->pf_active || dPriv->numBackClipRects == 0) { /* use the front clip rects */ - if (intel->batch->cliprect_mode == LOOP_CLIPRECTS && - intel->pClipRects != dPriv->pClipRects) - intel_batchbuffer_flush(intel->batch); - - intel->numClipRects = dPriv->numClipRects; - intel->pClipRects = dPriv->pClipRects; - intel->drawX = dPriv->x; - intel->drawY = dPriv->y; + *cliprects = dPriv->pClipRects; + *num_cliprects = dPriv->numClipRects; + *x_off = dPriv->x; + *y_off = dPriv->y; } else { /* use the back clip rects */ - if (intel->batch->cliprect_mode == LOOP_CLIPRECTS && - intel->pClipRects != dPriv->pBackClipRects) - intel_batchbuffer_flush(intel->batch); - - intel->numClipRects = dPriv->numBackClipRects; - intel->pClipRects = dPriv->pBackClipRects; - intel->drawX = dPriv->backX; - intel->drawY = dPriv->backY; + *num_cliprects = dPriv->numBackClipRects; + *cliprects = dPriv->pBackClipRects; + *x_off = dPriv->backX; + *y_off = dPriv->backY; } } @@ -300,29 +241,6 @@ intelWindowMoved(struct intel_context *intel) __DRIdrawablePrivate *dPriv = intel->driDrawable; struct intel_framebuffer *intel_fb = dPriv->driverPrivate; - if (!intel->ctx.DrawBuffer) { - /* when would this happen? -BP */ - intelSetFrontClipRects(intel); - } - else if (intel->ctx.DrawBuffer->Name != 0) { - /* drawing to user-created FBO - do nothing */ - /* Cliprects would be set from intelDrawBuffer() */ - } - else { - /* drawing to a window */ - switch (intel_fb->Base._ColorDrawBufferIndexes[0]) { - case BUFFER_FRONT_LEFT: - intelSetFrontClipRects(intel); - break; - case BUFFER_BACK_LEFT: - intelSetBackClipRects(intel); - break; - default: - intelSetFrontClipRects(intel); - } - - } - if (!intel->intelScreen->driScrnPriv->dri2.enabled && intel->intelScreen->driScrnPriv->ddx_version.minor >= 7) { volatile struct drm_i915_sarea *sarea = intel->sarea; @@ -894,7 +812,6 @@ intel_draw_buffer(GLcontext * ctx, struct gl_framebuffer *fb) struct intel_context *intel = intel_context(ctx); struct intel_region *colorRegions[MAX_DRAW_BUFFERS], *depthRegion = NULL; struct intel_renderbuffer *irbDepth = NULL, *irbStencil = NULL; - int front = 0; /* drawing to front color buffer? */ if (!fb) { /* this can happen during the initial context initialization */ @@ -927,52 +844,44 @@ intel_draw_buffer(GLcontext * ctx, struct gl_framebuffer *fb) */ if (fb->_NumColorDrawBuffers == 0) { /* writing to 0 */ - FALLBACK(intel, INTEL_FALLBACK_DRAW_BUFFER, GL_TRUE); colorRegions[0] = NULL; - - if (fb->Name != 0) - intelSetRenderbufferClipRects(intel); + intel->constant_cliprect = GL_TRUE; } else if (fb->_NumColorDrawBuffers > 1) { int i; struct intel_renderbuffer *irb; - FALLBACK(intel, INTEL_FALLBACK_DRAW_BUFFER, GL_FALSE); - if (fb->Name != 0) - intelSetRenderbufferClipRects(intel); for (i = 0; i < fb->_NumColorDrawBuffers; i++) { irb = intel_renderbuffer(fb->_ColorDrawBuffers[i]); - colorRegions[i] = (irb && irb->region) ? irb->region : NULL; + colorRegions[i] = irb ? irb->region : NULL; } + intel->constant_cliprect = GL_TRUE; } else { - /* draw to exactly one color buffer */ - /*_mesa_debug(ctx, "Hardware rendering\n");*/ - FALLBACK(intel, INTEL_FALLBACK_DRAW_BUFFER, GL_FALSE); - if (fb->_ColorDrawBufferIndexes[0] == BUFFER_FRONT_LEFT) { - front = 1; - } - - /* - * Get the intel_renderbuffer for the colorbuffer we're drawing into. - * And set up cliprects. + /* Get the intel_renderbuffer for the single colorbuffer we're drawing + * into, and set up cliprects if it's . */ if (fb->Name == 0) { + intel->constant_cliprect = intel->driScreen->dri2.enabled; /* drawing to window system buffer */ - if (front) { - intelSetFrontClipRects(intel); + if (fb->_ColorDrawBufferIndexes[0] == BUFFER_FRONT_LEFT) { + if (!intel->constant_cliprect && !intel->front_cliprects) + intel_batchbuffer_flush(intel->batch); + intel->front_cliprects = GL_TRUE; colorRegions[0] = intel_get_rb_region(fb, BUFFER_FRONT_LEFT); } else { - intelSetBackClipRects(intel); + if (!intel->constant_cliprect && intel->front_cliprects) + intel_batchbuffer_flush(intel->batch); + intel->front_cliprects = GL_FALSE; colorRegions[0]= intel_get_rb_region(fb, BUFFER_BACK_LEFT); } } else { /* drawing to user-created FBO */ struct intel_renderbuffer *irb; - intelSetRenderbufferClipRects(intel); irb = intel_renderbuffer(fb->_ColorDrawBuffers[0]); colorRegions[0] = (irb && irb->region) ? irb->region : NULL; + intel->constant_cliprect = GL_TRUE; } } diff --git a/src/mesa/drivers/dri/intel/intel_buffers.h b/src/mesa/drivers/dri/intel/intel_buffers.h index a669a854317..e5afb37dd1a 100644 --- a/src/mesa/drivers/dri/intel/intel_buffers.h +++ b/src/mesa/drivers/dri/intel/intel_buffers.h @@ -29,6 +29,8 @@ #ifndef INTEL_BUFFERS_H #define INTEL_BUFFERS_H +#include "dri_util.h" +#include "drm.h" struct intel_context; struct intel_framebuffer; @@ -53,4 +55,9 @@ extern void intel_draw_buffer(GLcontext * ctx, struct gl_framebuffer *fb); extern void intelInitBufferFuncs(struct dd_function_table *functions); +void intel_get_cliprects(struct intel_context *intel, + struct drm_clip_rect **cliprects, + unsigned int *num_cliprects, + int *x_off, int *y_off); + #endif /* INTEL_BUFFERS_H */ diff --git a/src/mesa/drivers/dri/intel/intel_chipset.h b/src/mesa/drivers/dri/intel/intel_chipset.h index 170efd060ae..d1b4941601e 100644 --- a/src/mesa/drivers/dri/intel/intel_chipset.h +++ b/src/mesa/drivers/dri/intel/intel_chipset.h @@ -68,11 +68,12 @@ devid == PCI_CHIP_I965_GME || \ devid == PCI_CHIP_GM45_GM) -#define IS_GM45_GM(devid) (devid == PCI_CHIP_GM45_GM) -#define IS_G4X(devid) (devid == PCI_CHIP_IGD_E_G || \ +#define IS_G45(devid) (devid == PCI_CHIP_IGD_E_G || \ devid == PCI_CHIP_Q45_G || \ devid == PCI_CHIP_G45_G || \ devid == PCI_CHIP_G41_G) +#define IS_GM45(devid) (devid == PCI_CHIP_GM45_GM) +#define IS_G4X(devid) (IS_G45(devid) || IS_GM45(devid)) #define IS_915(devid) (devid == PCI_CHIP_I915_G || \ devid == PCI_CHIP_E7221_G || \ @@ -91,7 +92,6 @@ devid == PCI_CHIP_I965_GM || \ devid == PCI_CHIP_I965_GME || \ devid == PCI_CHIP_I946_GZ || \ - IS_GM45_GM(devid) || \ IS_G4X(devid)) #define IS_9XX(devid) (IS_915(devid) || \ diff --git a/src/mesa/drivers/dri/intel/intel_context.c b/src/mesa/drivers/dri/intel/intel_context.c index 2b3a9b9d371..9ac18e69609 100644 --- a/src/mesa/drivers/dri/intel/intel_context.c +++ b/src/mesa/drivers/dri/intel/intel_context.c @@ -588,9 +588,6 @@ intelInitContext(struct intel_context *intel, intel->driFd = sPriv->fd; intel->driHwLock = sPriv->lock; - intel->width = intelScreen->width; - intel->height = intelScreen->height; - driParseConfigFiles(&intel->optionCache, &intelScreen->optionCache, intel->driScreen->myNum, IS_965(intelScreen->deviceID) ? "i965" : "i915"); @@ -932,38 +929,6 @@ intelContendedLock(struct intel_context *intel, GLuint flags) sarea->ctxOwner, intel->hHWContext); } - if (sarea->width != intel->width || sarea->height != intel->height) { - int numClipRects = intel->numClipRects; - - /* - * FIXME: Really only need to do this when drawing to a - * common back- or front buffer. - */ - - /* - * This will essentially drop the outstanding batchbuffer on - * the floor. - */ - intel->numClipRects = 0; - - if (intel->Fallback) - _swrast_flush(&intel->ctx); - - if (!IS_965(intel->intelScreen->deviceID)) - INTEL_FIREVERTICES(intel); - - if (intel->batch->map != intel->batch->ptr) - intel_batchbuffer_flush(intel->batch); - - intel->numClipRects = numClipRects; - - /* force window update */ - intel->lastStamp = 0; - - intel->width = sarea->width; - intel->height = sarea->height; - } - /* Drawable changed? */ if (dPriv && intel->lastStamp != dPriv->lastStamp) { diff --git a/src/mesa/drivers/dri/intel/intel_context.h b/src/mesa/drivers/dri/intel/intel_context.h index 554159ac441..3938af4c72c 100644 --- a/src/mesa/drivers/dri/intel/intel_context.h +++ b/src/mesa/drivers/dri/intel/intel_context.h @@ -235,10 +235,18 @@ struct intel_context /* These refer to the current drawing buffer: */ - int drawX, drawY; /**< origin of drawing area within region */ - GLuint numClipRects; /**< cliprects for drawing */ - drm_clip_rect_t *pClipRects; struct gl_texture_object *frame_buffer_texobj; + /** + * Set to true if a single constant cliprect should be used in the + * batchbuffer. Otherwise, cliprects must be calculated at batchbuffer + * flush time while the lock is held. + */ + GLboolean constant_cliprect; + /** + * In !constant_cliprect mode, set to true if the front cliprects should be + * used instead of back. + */ + GLboolean front_cliprects; drm_clip_rect_t fboRect; /**< cliprect for FBO rendering */ int perf_boxes; @@ -271,10 +279,6 @@ struct intel_context */ driOptionCache optionCache; - /* Last seen width/height of the screen */ - int width; - int height; - int64_t swap_ust; int64_t swap_missed_ust; diff --git a/src/mesa/drivers/dri/intel/intel_pixel_bitmap.c b/src/mesa/drivers/dri/intel/intel_pixel_bitmap.c index 89635198931..0565197ea08 100644 --- a/src/mesa/drivers/dri/intel/intel_pixel_bitmap.c +++ b/src/mesa/drivers/dri/intel/intel_pixel_bitmap.c @@ -191,11 +191,7 @@ do_blit_bitmap( GLcontext *ctx, color8888 = INTEL_PACKCOLOR8888(ubcolor[0], ubcolor[1], ubcolor[2], ubcolor[3]); color565 = INTEL_PACKCOLOR565(ubcolor[0], ubcolor[1], ubcolor[2]); - /* Does zoom apply to bitmaps? - */ - if (!intel_check_blit_fragment_ops(ctx, tmpColor[3] == 1.0F) || - ctx->Pixel.ZoomX != 1.0F || - ctx->Pixel.ZoomY != 1.0F) + if (!intel_check_blit_fragment_ops(ctx, tmpColor[3] == 1.0F)) return GL_FALSE; LOCK_HARDWARE(intel); diff --git a/src/mesa/drivers/dri/intel/intel_pixel_draw.c b/src/mesa/drivers/dri/intel/intel_pixel_draw.c index 50518a68792..8ebbc95a1d0 100644 --- a/src/mesa/drivers/dri/intel/intel_pixel_draw.c +++ b/src/mesa/drivers/dri/intel/intel_pixel_draw.c @@ -75,19 +75,21 @@ intel_texture_drawpixels(GLcontext * ctx, /* We're going to mess with texturing with no regard to existing texture * state, so if there is some set up we have to bail. */ - if (ctx->Texture._EnabledUnits != 0) + if (ctx->Texture._EnabledUnits != 0) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, "glDrawPixels() fallback: texturing enabled\n"); return GL_FALSE; + } /* Can't do textured DrawPixels with a fragment program, unless we were * to generate a new program that sampled our texture and put the results * in the fragment color before the user's program started. */ - if (ctx->FragmentProgram.Enabled) - return GL_FALSE; - - /* Don't even want to think about it */ - if (format == GL_COLOR_INDEX) + if (ctx->FragmentProgram.Enabled) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, "glDrawPixels() fallback: fragment program enabled\n"); return GL_FALSE; + } /* We don't have a way to generate fragments with stencil values which * * will set the resulting stencil value. @@ -108,8 +110,12 @@ intel_texture_drawpixels(GLcontext * ctx, * the color buffer, and sample the texture values into the fragment depth * in a program. */ - if (format == GL_DEPTH_COMPONENT) + if (format == GL_DEPTH_COMPONENT) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, + "glDrawPixels() fallback: format == GL_DEPTH_COMPONENT\n"); return GL_FALSE; + } _mesa_PushAttrib(GL_ENABLE_BIT | GL_TRANSFORM_BIT | GL_TEXTURE_BIT | GL_CURRENT_BIT); @@ -141,22 +147,27 @@ intel_texture_drawpixels(GLcontext * ctx, _mesa_PushMatrix(); _mesa_LoadIdentity(); + /* Create the vertex buffer based on the current raster pos. The x and y + * we're handed are ctx->Current.RasterPos[0,1] rounded to integers. + * We also apply the depth. However, the W component is already multiplied + * into ctx->Current.RasterPos[0,1,2] and we can ignore it at this point. + */ vertices[0][0] = x; vertices[0][1] = y; vertices[0][2] = ctx->Current.RasterPos[2]; - vertices[0][3] = ctx->Current.RasterPos[3]; + vertices[0][3] = 1.0; vertices[1][0] = x + width * ctx->Pixel.ZoomX; vertices[1][1] = y; vertices[1][2] = ctx->Current.RasterPos[2]; - vertices[1][3] = ctx->Current.RasterPos[3]; + vertices[1][3] = 1.0; vertices[2][0] = x + width * ctx->Pixel.ZoomX; vertices[2][1] = y + height * ctx->Pixel.ZoomY; vertices[2][2] = ctx->Current.RasterPos[2]; - vertices[2][3] = ctx->Current.RasterPos[3]; + vertices[2][3] = 1.0; vertices[3][0] = x; vertices[3][1] = y + height * ctx->Pixel.ZoomY; vertices[3][2] = ctx->Current.RasterPos[2]; - vertices[3][3] = ctx->Current.RasterPos[3]; + vertices[3][3] = 1.0; texcoords[0][0] = 0.0; texcoords[0][1] = 0.0; @@ -212,8 +223,12 @@ intel_stencil_drawpixels(GLcontext * ctx, return GL_TRUE; /* Can't do a per-bit writemask while treating stencil as rgba data. */ - if ((ctx->Stencil.WriteMask[0] & 0xff) != 0xff) + if ((ctx->Stencil.WriteMask[0] & 0xff) != 0xff) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, "glDrawPixels(STENCIL_INDEX) fallback: " + "stencil mask enabled\n"); return GL_FALSE; + } /* We use FBOs for our wrapping of the depthbuffer into a color * destination. @@ -224,21 +239,29 @@ intel_stencil_drawpixels(GLcontext * ctx, /* We're going to mess with texturing with no regard to existing texture * state, so if there is some set up we have to bail. */ - if (ctx->Texture._EnabledUnits != 0) + if (ctx->Texture._EnabledUnits != 0) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, "glDrawPixels(STENCIL_INDEX) fallback: " + "texturing enabled\n"); return GL_FALSE; + } /* Can't do textured DrawPixels with a fragment program, unless we were * to generate a new program that sampled our texture and put the results * in the fragment color before the user's program started. */ - if (ctx->FragmentProgram.Enabled) + if (ctx->FragmentProgram.Enabled) { + if (INTEL_DEBUG & DEBUG_FALLBACKS) + fprintf(stderr, "glDrawPixels(STENCIL_INDEX) fallback: " + "fragment program enabled\n"); return GL_FALSE; + } /* Check that we can load in a texture this big. */ if (width > (1 << (ctx->Const.MaxTextureLevels - 1)) || height > (1 << (ctx->Const.MaxTextureLevels - 1))) { if (INTEL_DEBUG & DEBUG_FALLBACKS) - fprintf(stderr, "glDrawPixels(STENCIL_IDNEX) fallback: " + fprintf(stderr, "glDrawPixels(STENCIL_INDEX) fallback: " "bitmap too large (%dx%d)\n", width, height); return GL_FALSE; diff --git a/src/mesa/drivers/dri/intel/intel_reg.h b/src/mesa/drivers/dri/intel/intel_reg.h index c21f4080935..81a7386e429 100644 --- a/src/mesa/drivers/dri/intel/intel_reg.h +++ b/src/mesa/drivers/dri/intel/intel_reg.h @@ -29,6 +29,8 @@ #define CMD_2D (0x2 << 29) #define CMD_3D (0x3 << 29) +#define MI_NOOP (CMD_MI | 0) + #define MI_BATCH_BUFFER_END (CMD_MI | 0xA << 23) #define MI_FLUSH (CMD_MI | (4 << 23)) @@ -44,6 +46,9 @@ #define _3DSTATE_LOAD_STATE_IMMEDIATE_1 (CMD_3D | (0x1d<<24) | (0x04<<16)) #define I1_LOAD_S(n) (1<<(4+n)) +#define _3DSTATE_DRAWRECT_INFO (CMD_3D | (0x1d<<24) | (0x80<<16) | 0x3) +#define _3DSTATE_DRAWRECT_INFO_I965 (CMD_3D | (3 << 27) | (1 << 24) | 0x2) + /** @{ * * PIPE_CONTROL operation, a combination MI_FLUSH and register write with diff --git a/src/mesa/drivers/dri/intel/intel_regions.c b/src/mesa/drivers/dri/intel/intel_regions.c index 45faf64c713..8dbcc3050ee 100644 --- a/src/mesa/drivers/dri/intel/intel_regions.c +++ b/src/mesa/drivers/dri/intel/intel_regions.c @@ -79,30 +79,6 @@ intel_region_unmap(struct intel_context *intel, struct intel_region *region) } } -static int -intel_set_region_tiling_gem(struct intel_context *intel, - struct intel_region *region, - uint32_t bo_handle) -{ - struct drm_i915_gem_get_tiling get_tiling; - int ret; - - memset(&get_tiling, 0, sizeof(get_tiling)); - - get_tiling.handle = bo_handle; - ret = ioctl(intel->driFd, DRM_IOCTL_I915_GEM_GET_TILING, &get_tiling); - if (ret != 0) { - fprintf(stderr, "Failed to get tiling state for region: %s\n", - strerror(errno)); - return ret; - } - - region->tiling = get_tiling.tiling_mode; - region->bit_6_swizzle = get_tiling.swizzle_mode; - - return 0; -} - static struct intel_region * intel_region_alloc_internal(struct intel_context *intel, GLuint cpp, @@ -151,6 +127,7 @@ intel_region_alloc_for_handle(struct intel_context *intel, { struct intel_region *region; dri_bo *buffer; + int ret; buffer = intel_bo_gem_create_from_name(intel->bufmgr, name, handle); @@ -159,7 +136,14 @@ intel_region_alloc_for_handle(struct intel_context *intel, if (region == NULL) return region; - intel_set_region_tiling_gem(intel, region, handle); + ret = dri_bo_get_tiling(region->buffer, ®ion->tiling, + ®ion->bit_6_swizzle); + if (ret != 0) { + fprintf(stderr, "Couldn't get tiling of buffer %d (%s): %s\n", + handle, name, strerror(-ret)); + intel_region_release(®ion); + return NULL; + } return region; } @@ -489,7 +473,14 @@ intel_recreate_static(struct intel_context *intel, name, region_desc->bo_handle); - intel_set_region_tiling_gem(intel, region, region_desc->bo_handle); + ret = dri_bo_get_tiling(region->buffer, ®ion->tiling, + ®ion->bit_6_swizzle); + if (ret != 0) { + fprintf(stderr, "Couldn't get tiling of buffer %d (%s): %s\n", + region_desc->bo_handle, name, strerror(-ret)); + intel_region_release(®ion); + return NULL; + } } else { if (region->classic_map != NULL) { drmUnmap(region->classic_map, diff --git a/src/mesa/drivers/dri/intel/intel_span.c b/src/mesa/drivers/dri/intel/intel_span.c index 8e2b4456f81..8f4e681ffea 100644 --- a/src/mesa/drivers/dri/intel/intel_span.c +++ b/src/mesa/drivers/dri/intel/intel_span.c @@ -30,6 +30,7 @@ #include "main/mtypes.h" #include "main/colormac.h" +#include "intel_buffers.h" #include "intel_fbo.h" #include "intel_screen.h" #include "intel_span.h" @@ -131,12 +132,8 @@ pwrite_8(struct intel_renderbuffer *irb, uint32_t offset, uint8_t val) } static uint32_t no_tile_swizzle(struct intel_renderbuffer *irb, - struct intel_context *intel, int x, int y) { - x += intel->drawX; - y += intel->drawY; - return (y * irb->region->pitch + x) * irb->region->cpp; } @@ -145,7 +142,6 @@ static uint32_t no_tile_swizzle(struct intel_renderbuffer *irb, */ static uint32_t x_tile_swizzle(struct intel_renderbuffer *irb, - struct intel_context *intel, int x, int y) { int tile_stride; @@ -155,9 +151,6 @@ static uint32_t x_tile_swizzle(struct intel_renderbuffer *irb, int tile_off, tile_base; tile_stride = (irb->pfPitch * irb->region->cpp) << 3; - - x += intel->drawX; - y += intel->drawY; xbyte = x * irb->region->cpp; @@ -204,7 +197,6 @@ static uint32_t x_tile_swizzle(struct intel_renderbuffer *irb, } static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, - struct intel_context *intel, int x, int y) { int tile_stride; @@ -214,9 +206,6 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, int tile_off, tile_base; tile_stride = (irb->pfPitch * irb->region->cpp) << 5; - - x += intel->drawX; - y += intel->drawY; xbyte = x * irb->region->cpp; @@ -268,8 +257,12 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, struct intel_renderbuffer *irb = intel_renderbuffer(rb); \ const GLint yScale = irb->RenderToTexture ? 1 : -1; \ const GLint yBias = irb->RenderToTexture ? 0 : irb->Base.Height - 1; \ + unsigned int num_cliprects; \ + struct drm_clip_rect *cliprects; \ + int x_off, y_off; \ GLuint p; \ - (void) p; + (void) p; \ + intel_get_cliprects(intel, &cliprects, &num_cliprects, &x_off, &y_off); /* XXX FBO: this is identical to the macro in spantmp2.h except we get * the cliprect info from the context, not the driDrawable. @@ -277,12 +270,12 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, */ #define HW_CLIPLOOP() \ do { \ - int _nc = intel->numClipRects; \ + int _nc = num_cliprects; \ while ( _nc-- ) { \ - int minx = intel->pClipRects[_nc].x1 - intel->drawX; \ - int miny = intel->pClipRects[_nc].y1 - intel->drawY; \ - int maxx = intel->pClipRects[_nc].x2 - intel->drawX; \ - int maxy = intel->pClipRects[_nc].y2 - intel->drawY; + int minx = cliprects[_nc].x1 - x_off; \ + int miny = cliprects[_nc].y1 - y_off; \ + int maxx = cliprects[_nc].x2 - x_off; \ + int maxy = cliprects[_nc].y2 - y_off; #if 0 }} @@ -295,6 +288,11 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define HW_UNLOCK() +/* Convenience macros to avoid typing the swizzle argument over and over */ +#define NO_TILE(_X, _Y) no_tile_swizzle(irb, (_X) + x_off, (_Y) + y_off) +#define X_TILE(_X, _Y) x_tile_swizzle(irb, (_X) + x_off, (_Y) + y_off) +#define Y_TILE(_X, _Y) y_tile_swizzle(irb, (_X) + x_off, (_Y) + y_off) + /* 16 bit, RGB565 color spanline and pixel functions */ #define SPANTMP_PIXEL_FMT GL_RGB @@ -302,8 +300,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel##x##_RGB565 #define TAG2(x,y) intel##x##_RGB565##y -#define GET_VALUE(X, Y) pread_16(irb, no_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_16(irb, no_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_16(irb, NO_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_16(irb, NO_TILE(X, Y), V) #include "spantmp2.h" /* 32 bit, ARGB8888 color spanline and pixel functions @@ -313,8 +311,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel##x##_ARGB8888 #define TAG2(x,y) intel##x##_ARGB8888##y -#define GET_VALUE(X, Y) pread_32(irb, no_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_32(irb, no_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_32(irb, NO_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_32(irb, NO_TILE(X, Y), V) #include "spantmp2.h" /* 32 bit, xRGB8888 color spanline and pixel functions @@ -324,8 +322,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel##x##_xRGB8888 #define TAG2(x,y) intel##x##_xRGB8888##y -#define GET_VALUE(X, Y) pread_xrgb8888(irb, no_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, no_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_xrgb8888(irb, NO_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, NO_TILE(X, Y), V) #include "spantmp2.h" /* 16 bit RGB565 color tile spanline and pixel functions @@ -336,8 +334,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_XTile_##x##_RGB565 #define TAG2(x,y) intel_XTile_##x##_RGB565##y -#define GET_VALUE(X, Y) pread_16(irb, x_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_16(irb, x_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_16(irb, X_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_16(irb, X_TILE(X, Y), V) #include "spantmp2.h" #define SPANTMP_PIXEL_FMT GL_RGB @@ -345,8 +343,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_YTile_##x##_RGB565 #define TAG2(x,y) intel_YTile_##x##_RGB565##y -#define GET_VALUE(X, Y) pread_16(irb, y_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_16(irb, y_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_16(irb, Y_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_16(irb, Y_TILE(X, Y), V) #include "spantmp2.h" /* 32 bit ARGB888 color tile spanline and pixel functions @@ -357,8 +355,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_XTile_##x##_ARGB8888 #define TAG2(x,y) intel_XTile_##x##_ARGB8888##y -#define GET_VALUE(X, Y) pread_32(irb, x_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_32(irb, x_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_32(irb, X_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_32(irb, X_TILE(X, Y), V) #include "spantmp2.h" #define SPANTMP_PIXEL_FMT GL_BGRA @@ -366,8 +364,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_YTile_##x##_ARGB8888 #define TAG2(x,y) intel_YTile_##x##_ARGB8888##y -#define GET_VALUE(X, Y) pread_32(irb, y_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_32(irb, y_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_32(irb, Y_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_32(irb, Y_TILE(X, Y), V) #include "spantmp2.h" /* 32 bit xRGB888 color tile spanline and pixel functions @@ -378,8 +376,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_XTile_##x##_xRGB8888 #define TAG2(x,y) intel_XTile_##x##_xRGB8888##y -#define GET_VALUE(X, Y) pread_xrgb8888(irb, x_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, x_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_xrgb8888(irb, X_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, X_TILE(X, Y), V) #include "spantmp2.h" #define SPANTMP_PIXEL_FMT GL_BGRA @@ -387,15 +385,19 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, #define TAG(x) intel_YTile_##x##_xRGB8888 #define TAG2(x,y) intel_YTile_##x##_xRGB8888##y -#define GET_VALUE(X, Y) pread_xrgb8888(irb, y_tile_swizzle(irb, intel, X, Y)) -#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, y_tile_swizzle(irb, intel, X, Y), V) +#define GET_VALUE(X, Y) pread_xrgb8888(irb, Y_TILE(X, Y)) +#define PUT_VALUE(X, Y, V) pwrite_xrgb8888(irb, Y_TILE(X, Y), V) #include "spantmp2.h" #define LOCAL_DEPTH_VARS \ struct intel_context *intel = intel_context(ctx); \ struct intel_renderbuffer *irb = intel_renderbuffer(rb); \ const GLint yScale = irb->RenderToTexture ? 1 : -1; \ - const GLint yBias = irb->RenderToTexture ? 0 : irb->Base.Height - 1; + const GLint yBias = irb->RenderToTexture ? 0 : irb->Base.Height - 1; \ + unsigned int num_cliprects; \ + struct drm_clip_rect *cliprects; \ + int x_off, y_off; \ + intel_get_cliprects(intel, &cliprects, &num_cliprects, &x_off, &y_off); #define LOCAL_STENCIL_VARS LOCAL_DEPTH_VARS @@ -404,10 +406,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, ** 16-bit depthbuffer functions. **/ #define VALUE_TYPE GLushort -#define WRITE_DEPTH(_x, _y, d) \ - pwrite_16(irb, no_tile_swizzle(irb, intel, _x, _y), d) -#define READ_DEPTH(d, _x, _y) \ - d = pread_16(irb, no_tile_swizzle(irb, intel, _x, _y)) +#define WRITE_DEPTH(_x, _y, d) pwrite_16(irb, NO_TILE(_x, _y), d) +#define READ_DEPTH(d, _x, _y) d = pread_16(irb, NO_TILE(_x, _y)) #define TAG(x) intel##x##_z16 #include "depthtmp.h" @@ -416,10 +416,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, ** 16-bit x tile depthbuffer functions. **/ #define VALUE_TYPE GLushort -#define WRITE_DEPTH(_x, _y, d) \ - pwrite_16(irb, x_tile_swizzle(irb, intel, _x, _y), d) -#define READ_DEPTH(d, _x, _y) \ - d = pread_16(irb, x_tile_swizzle(irb, intel, _x, _y)) +#define WRITE_DEPTH(_x, _y, d) pwrite_16(irb, X_TILE(_x, _y), d) +#define READ_DEPTH(d, _x, _y) d = pread_16(irb, X_TILE(_x, _y)) #define TAG(x) intel_XTile_##x##_z16 #include "depthtmp.h" @@ -427,10 +425,8 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, ** 16-bit y tile depthbuffer functions. **/ #define VALUE_TYPE GLushort -#define WRITE_DEPTH(_x, _y, d) \ - pwrite_16(irb, y_tile_swizzle(irb, intel, _x, _y), d) -#define READ_DEPTH(d, _x, _y) \ - d = pread_16(irb, y_tile_swizzle(irb, intel, _x, _y)) +#define WRITE_DEPTH(_x, _y, d) pwrite_16(irb, Y_TILE(_x, _y), d) +#define READ_DEPTH(d, _x, _y) d = pread_16(irb, Y_TILE(_x, _y)) #define TAG(x) intel_YTile_##x##_z16 #include "depthtmp.h" @@ -445,12 +441,11 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, /* Change ZZZS -> SZZZ */ #define WRITE_DEPTH(_x, _y, d) \ - pwrite_32(irb, no_tile_swizzle(irb, intel, _x, _y), \ - ((d) >> 8) | ((d) << 24)) + pwrite_32(irb, NO_TILE(_x, _y), ((d) >> 8) | ((d) << 24)) /* Change SZZZ -> ZZZS */ #define READ_DEPTH( d, _x, _y ) { \ - GLuint tmp = pread_32(irb, no_tile_swizzle(irb, intel, _x, _y)); \ + GLuint tmp = pread_32(irb, NO_TILE(_x, _y)); \ d = (tmp << 8) | (tmp >> 24); \ } @@ -468,12 +463,11 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, /* Change ZZZS -> SZZZ */ #define WRITE_DEPTH(_x, _y, d) \ - pwrite_32(irb, x_tile_swizzle(irb, intel, _x, _y), \ - ((d) >> 8) | ((d) << 24)) \ + pwrite_32(irb, X_TILE(_x, _y), ((d) >> 8) | ((d) << 24)) /* Change SZZZ -> ZZZS */ #define READ_DEPTH( d, _x, _y ) { \ - GLuint tmp = pread_32(irb, x_tile_swizzle(irb, intel, _x, _y)); \ + GLuint tmp = pread_32(irb, X_TILE(_x, _y)); \ d = (tmp << 8) | (tmp >> 24); \ } @@ -490,12 +484,11 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, /* Change ZZZS -> SZZZ */ #define WRITE_DEPTH(_x, _y, d) \ - pwrite_32(irb, y_tile_swizzle(irb, intel, _x, _y), \ - ((d) >> 8) | ((d) << 24)) + pwrite_32(irb, Y_TILE(_x, _y), ((d) >> 8) | ((d) << 24)) /* Change SZZZ -> ZZZS */ #define READ_DEPTH( d, _x, _y ) { \ - GLuint tmp = pread_32(irb, y_tile_swizzle(irb, intel, _x, _y)); \ + GLuint tmp = pread_32(irb, Y_TILE(_x, _y)); \ d = (tmp << 8) | (tmp >> 24); \ } @@ -506,36 +499,24 @@ static uint32_t y_tile_swizzle(struct intel_renderbuffer *irb, /** ** 8-bit stencil function (XXX FBO: This is obsolete) **/ -#define WRITE_STENCIL(_x, _y, d) \ - pwrite_8(irb, no_tile_swizzle(irb, intel, _x, _y) + 3, d) - -#define READ_STENCIL(d, _x, _y) \ - d = pread_8(irb, no_tile_swizzle(irb, intel, _x, _y) + 3); - +#define WRITE_STENCIL(_x, _y, d) pwrite_8(irb, NO_TILE(_x, _y) + 3, d) +#define READ_STENCIL(d, _x, _y) d = pread_8(irb, NO_TILE(_x, _y) + 3); #define TAG(x) intel##x##_z24_s8 #include "stenciltmp.h" /** ** 8-bit x-tile stencil function (XXX FBO: This is obsolete) **/ -#define WRITE_STENCIL(_x, _y, d) \ - pwrite_8(irb, x_tile_swizzle(irb, intel, _x, _y) + 3, d) - -#define READ_STENCIL(d, _x, _y) \ - d = pread_8(irb, x_tile_swizzle(irb, intel, _x, _y) + 3); - +#define WRITE_STENCIL(_x, _y, d) pwrite_8(irb, X_TILE(_x, _y) + 3, d) +#define READ_STENCIL(d, _x, _y) d = pread_8(irb, X_TILE(_x, _y) + 3); #define TAG(x) intel_XTile_##x##_z24_s8 #include "stenciltmp.h" /** ** 8-bit y-tile stencil function (XXX FBO: This is obsolete) **/ -#define WRITE_STENCIL(_x, _y, d) \ - pwrite_8(irb, y_tile_swizzle(irb, intel, _x, _y) + 3, d) - -#define READ_STENCIL(d, _x, _y) \ - d = pread_8(irb, y_tile_swizzle(irb, intel, _x, _y) + 3) - +#define WRITE_STENCIL(_x, _y, d) pwrite_8(irb, Y_TILE(_x, _y) + 3, d) +#define READ_STENCIL(d, _x, _y) d = pread_8(irb, Y_TILE(_x, _y) + 3) #define TAG(x) intel_YTile_##x##_z24_s8 #include "stenciltmp.h" @@ -602,14 +583,10 @@ intel_map_unmap_buffers(struct intel_context *intel, GLboolean map) if (tex) { /* render to texture */ ASSERT(att->Renderbuffer); - if (map) { - struct gl_texture_image *texImg; - texImg = tex->Image[att->CubeMapFace][att->TextureLevel]; + if (map) intel_tex_map_images(intel, intel_texture_object(tex)); - } - else { + else intel_tex_unmap_images(intel, intel_texture_object(tex)); - } } } diff --git a/src/mesa/drivers/dri/radeon/radeon_screen.c b/src/mesa/drivers/dri/radeon/radeon_screen.c index 05107dd2ada..5f32dd575e3 100644 --- a/src/mesa/drivers/dri/radeon/radeon_screen.c +++ b/src/mesa/drivers/dri/radeon/radeon_screen.c @@ -900,7 +900,7 @@ radeonCreateScreen( __DRIscreenPrivate *sPriv ) screen->depthHasSurface = (sPriv->ddx_version.major > 4) || /* these chips don't use tiled z without hyperz. So always pretend we have set up a surface which will cause linear reads/writes */ - ((screen->chip_family & RADEON_CLASS_R100) && + (IS_R100_CLASS(screen) && !(screen->chip_flags & RADEON_CHIPSET_TCL)); if ( dri_priv->textureSize == 0 ) { diff --git a/src/mesa/drivers/glslcompiler/glslcompiler.c b/src/mesa/drivers/glslcompiler/glslcompiler.c index 62a366858c4..34cce977c86 100644 --- a/src/mesa/drivers/glslcompiler/glslcompiler.c +++ b/src/mesa/drivers/glslcompiler/glslcompiler.c @@ -226,12 +226,8 @@ PrintShaderInstructions(GLuint shader, FILE *f) { GET_CURRENT_CONTEXT(ctx); struct gl_shader *sh = _mesa_lookup_shader(ctx, shader); - GLuint i; - - for (i = 0; i < sh->NumPrograms; i++) { - struct gl_program *prog = sh->Programs[i]; - _mesa_print_program_opt(prog, Options.Mode, Options.LineNumbers); - } + struct gl_program *prog = sh->Program; + _mesa_print_program_opt(prog, Options.Mode, Options.LineNumbers); } diff --git a/src/mesa/main/debug.c b/src/mesa/main/debug.c index 98ca65b96a9..77fef325583 100644 --- a/src/mesa/main/debug.c +++ b/src/mesa/main/debug.c @@ -150,36 +150,32 @@ void _mesa_print_info( void ) static void add_debug_flags( const char *debug ) { #ifdef DEBUG - if (_mesa_strstr(debug, "varray")) - MESA_VERBOSE |= VERBOSE_VARRAY; - - if (_mesa_strstr(debug, "tex")) - MESA_VERBOSE |= VERBOSE_TEXTURE; - - if (_mesa_strstr(debug, "imm")) - MESA_VERBOSE |= VERBOSE_IMMEDIATE; - - if (_mesa_strstr(debug, "pipe")) - MESA_VERBOSE |= VERBOSE_PIPELINE; - - if (_mesa_strstr(debug, "driver")) - MESA_VERBOSE |= VERBOSE_DRIVER; - - if (_mesa_strstr(debug, "state")) - MESA_VERBOSE |= VERBOSE_STATE; - - if (_mesa_strstr(debug, "api")) - MESA_VERBOSE |= VERBOSE_API; - - if (_mesa_strstr(debug, "list")) - MESA_VERBOSE |= VERBOSE_DISPLAY_LIST; - - if (_mesa_strstr(debug, "lighting")) - MESA_VERBOSE |= VERBOSE_LIGHTING; + struct debug_option { + const char *name; + GLbitfield flag; + }; + static const struct debug_option debug_opt[] = { + { "varray", VERBOSE_VARRAY }, + { "tex", VERBOSE_TEXTURE }, + { "imm", VERBOSE_IMMEDIATE }, + { "pipe", VERBOSE_PIPELINE }, + { "driver", VERBOSE_DRIVER }, + { "state", VERBOSE_STATE }, + { "api", VERBOSE_API }, + { "list", VERBOSE_DISPLAY_LIST }, + { "lighting", VERBOSE_LIGHTING }, + { "disassem", VERBOSE_DISASSEM }, + { "glsl", VERBOSE_GLSL }, /* report GLSL compile/link errors */ + { "glsl_dump", VERBOSE_GLSL_DUMP } /* print shader GPU instructions */ + }; + GLuint i; + + MESA_VERBOSE = 0x0; + for (i = 0; i < Elements(debug_opt); i++) { + if (_mesa_strstr(debug, debug_opt[i].name)) + MESA_VERBOSE |= debug_opt[i].flag; + } - if (_mesa_strstr(debug, "disassem")) - MESA_VERBOSE |= VERBOSE_DISASSEM; - /* Debug flag: */ if (_mesa_strstr(debug, "flush")) diff --git a/src/mesa/main/ffvertex_prog.c b/src/mesa/main/ffvertex_prog.c index da2640dd8fc..64a4788aa4b 100644 --- a/src/mesa/main/ffvertex_prog.c +++ b/src/mesa/main/ffvertex_prog.c @@ -1306,14 +1306,13 @@ static void build_lighting( struct tnl_program *p ) } else if (!p->state->material_shininess_is_zero) { emit_op1(p, OPCODE_LIT, lit, 0, dots); - emit_op2(p, OPCODE_ADD, _col0, 0, ambient, _col0); + emit_op2(p, OPCODE_ADD, _bfc0, 0, ambient, _bfc0); } else { emit_degenerate_lit(p, lit, dots); - emit_op2(p, OPCODE_ADD, _col0, 0, ambient, _col0); + emit_op2(p, OPCODE_ADD, _bfc0, 0, ambient, _bfc0); } - emit_op2(p, OPCODE_ADD, _bfc0, 0, ambient, _bfc0); emit_op3(p, OPCODE_MAD, res0, mask0, swizzle1(lit,Y), diffuse, _bfc0); emit_op3(p, OPCODE_MAD, res1, mask1, swizzle1(lit,Z), specular, _bfc1); diff --git a/src/mesa/main/mtypes.h b/src/mesa/main/mtypes.h index 7ad8cb244d5..5e920f7aeb1 100644 --- a/src/mesa/main/mtypes.h +++ b/src/mesa/main/mtypes.h @@ -3135,7 +3135,9 @@ enum _verbose VERBOSE_LIGHTING = 0x0200, VERBOSE_PRIMS = 0x0400, VERBOSE_VERTS = 0x0800, - VERBOSE_DISASSEM = 0x1000 + VERBOSE_DISASSEM = 0x1000, + VERBOSE_GLSL = 0x2000, + VERBOSE_GLSL_DUMP = 0x4000 }; diff --git a/src/mesa/main/points.c b/src/mesa/main/points.c index 7e189a0a8c9..1fe697033f1 100644 --- a/src/mesa/main/points.c +++ b/src/mesa/main/points.c @@ -200,7 +200,7 @@ _mesa_PointParameterfv( GLenum pname, const GLfloat *params) } break; case GL_POINT_SPRITE_COORD_ORIGIN: - if (ctx->Extensions.ARB_point_sprite) { + if (ctx->Extensions.ARB_point_sprite || ctx->Extensions.NV_point_sprite) { GLenum value = (GLenum) params[0]; if (value != GL_LOWER_LEFT && value != GL_UPPER_LEFT) { _mesa_error(ctx, GL_INVALID_VALUE, diff --git a/src/mesa/main/shaders.c b/src/mesa/main/shaders.c index e5c54bb10d7..7491d00c357 100644 --- a/src/mesa/main/shaders.c +++ b/src/mesa/main/shaders.c @@ -1,6 +1,6 @@ /* * Mesa 3-D graphics library - * Version: 7.1 + * Version: 7.3 * * Copyright (C) 2004-2008 Brian Paul All Rights Reserved. * @@ -235,30 +235,21 @@ _mesa_GetObjectParameterivARB(GLhandleARB object, GLenum pname, GLint *params) if (ctx->Driver.IsProgram(ctx, object)) { if (pname == GL_OBJECT_TYPE_ARB) { *params = GL_PROGRAM_OBJECT_ARB; - } else { + } + else { ctx->Driver.GetProgramiv(ctx, object, pname, params); } } else if (ctx->Driver.IsShader(ctx, object)) { if (pname == GL_OBJECT_TYPE_ARB) { *params = GL_SHADER_OBJECT_ARB; - } else { + } + else { ctx->Driver.GetShaderiv(ctx, object, pname, params); } } else { - /* error code depends on pname */ - GLenum err; - switch (pname) { - case GL_OBJECT_TYPE_ARB: - case GL_OBJECT_DELETE_STATUS_ARB: - case GL_OBJECT_INFO_LOG_LENGTH_ARB: - err = GL_INVALID_OPERATION; - break; - default: - err = GL_INVALID_VALUE; - } - _mesa_error(ctx, err, "glGetObjectParameterivARB"); + _mesa_error(ctx, GL_INVALID_VALUE, "glGetObjectParameterivARB"); } } diff --git a/src/mesa/main/texenvprogram.c b/src/mesa/main/texenvprogram.c index 2c7df7b8d9a..237ddaa6838 100644 --- a/src/mesa/main/texenvprogram.c +++ b/src/mesa/main/texenvprogram.c @@ -233,6 +233,12 @@ static GLbitfield get_fp_input_mask( GLcontext *ctx ) /* Fixed function logic */ GLbitfield varying_inputs = ctx->varying_vp_inputs; + /* These get generated in the setup routine regardless of the + * vertex program: + */ + if (ctx->Point.PointSprite) + varying_inputs |= FRAG_BITS_TEX_ANY; + /* First look at what values may be computed by the generated * vertex program: */ @@ -260,6 +266,12 @@ static GLbitfield get_fp_input_mask( GLcontext *ctx ) /* calculate from vp->outputs */ GLbitfield vp_outputs = ctx->VertexProgram._Current->Base.OutputsWritten; + /* These get generated in the setup routine regardless of the + * vertex program: + */ + if (ctx->Point.PointSprite) + vp_outputs |= FRAG_BITS_TEX_ANY; + if (vp_outputs & (1 << VERT_RESULT_COL0)) fp_inputs |= FRAG_BIT_COL0; if (vp_outputs & (1 << VERT_RESULT_COL1)) fp_inputs |= FRAG_BIT_COL1; diff --git a/src/mesa/main/teximage.c b/src/mesa/main/teximage.c index bf23a1f290d..cddd9df0164 100644 --- a/src/mesa/main/teximage.c +++ b/src/mesa/main/teximage.c @@ -388,9 +388,10 @@ _mesa_base_tex_format( GLcontext *ctx, GLint internalFormat ) * index, depth, stencil, etc). * \param format the image format value (may by an internal texture format) * \return GL_TRUE if its a color/RGBA format, GL_FALSE otherwise. + * XXX maybe move this func to image.c */ -static GLboolean -is_color_format(GLenum format) +GLboolean +_mesa_is_color_format(GLenum format) { switch (format) { case GL_RED: @@ -491,6 +492,7 @@ is_color_format(GLenum format) #endif /* FEATURE_EXT_texture_sRGB */ return GL_TRUE; case GL_YCBCR_MESA: /* not considered to be RGB */ + /* fall-through */ default: return GL_FALSE; } @@ -1587,9 +1589,9 @@ texture_error_check( GLcontext *ctx, GLenum target, } /* make sure internal format and format basically agree */ - colorFormat = is_color_format(format); + colorFormat = _mesa_is_color_format(format); indexFormat = is_index_format(format); - if ((is_color_format(internalFormat) && !colorFormat && !indexFormat) || + if ((_mesa_is_color_format(internalFormat) && !colorFormat && !indexFormat) || (is_index_format(internalFormat) && !indexFormat) || (is_depth_format(internalFormat) != is_depth_format(format)) || (is_ycbcr_format(internalFormat) != is_ycbcr_format(format)) || @@ -2051,30 +2053,20 @@ copytexture_error_check( GLcontext *ctx, GLuint dimensions, /** * Test glCopyTexSubImage[12]D() parameters for errors. + * Note that this is the first part of error checking. + * See also copytexsubimage_error_check2() below for the second part. * * \param ctx GL context. * \param dimensions texture image dimensions (must be 1, 2 or 3). * \param target texture target given by the user. * \param level image level given by the user. - * \param xoffset sub-image x offset given by the user. - * \param yoffset sub-image y offset given by the user. - * \param zoffset sub-image z offset given by the user. - * \param width image width given by the user. - * \param height image height given by the user. * * \return GL_TRUE if an error was detected, or GL_FALSE if no errors. - * - * Verifies each of the parameters against the constants specified in - * __GLcontextRec::Const and the supported extensions, and according to the - * OpenGL specification. */ static GLboolean -copytexsubimage_error_check( GLcontext *ctx, GLuint dimensions, - GLenum target, GLint level, - GLint xoffset, GLint yoffset, GLint zoffset, - GLsizei width, GLsizei height) +copytexsubimage_error_check1( GLcontext *ctx, GLuint dimensions, + GLenum target, GLint level) { - /* Check target */ /* Check that the source buffer is complete */ if (ctx->ReadBuffer->Name) { _mesa_test_framebuffer_completeness(ctx, ctx->ReadBuffer); @@ -2085,6 +2077,7 @@ copytexsubimage_error_check( GLcontext *ctx, GLuint dimensions, } } + /* Check target */ if (dimensions == 1) { if (target != GL_TEXTURE_1D) { _mesa_error( ctx, GL_INVALID_ENUM, "glCopyTexSubImage1D(target)" ); @@ -2132,21 +2125,18 @@ copytexsubimage_error_check( GLcontext *ctx, GLuint dimensions, return GL_TRUE; } - /* Check size */ - if (width < 0) { - _mesa_error(ctx, GL_INVALID_VALUE, - "glCopyTexSubImage%dD(width=%d)", dimensions, width); - return GL_TRUE; - } - if (dimensions > 1 && height < 0) { - _mesa_error(ctx, GL_INVALID_VALUE, - "glCopyTexSubImage%dD(height=%d)", dimensions, height); - return GL_TRUE; - } - return GL_FALSE; } + +/** + * Second part of error checking for glCopyTexSubImage[12]D(). + * \param xoffset sub-image x offset given by the user. + * \param yoffset sub-image y offset given by the user. + * \param zoffset sub-image z offset given by the user. + * \param width image width given by the user. + * \param height image height given by the user. + */ static GLboolean copytexsubimage_error_check2( GLcontext *ctx, GLuint dimensions, GLenum target, GLint level, @@ -2154,6 +2144,7 @@ copytexsubimage_error_check2( GLcontext *ctx, GLuint dimensions, GLsizei width, GLsizei height, const struct gl_texture_image *teximage ) { + /* check that dest tex image exists */ if (!teximage) { _mesa_error(ctx, GL_INVALID_OPERATION, "glCopyTexSubImage%dD(undefined texture level: %d)", @@ -2161,6 +2152,19 @@ copytexsubimage_error_check2( GLcontext *ctx, GLuint dimensions, return GL_TRUE; } + /* Check size */ + if (width < 0) { + _mesa_error(ctx, GL_INVALID_VALUE, + "glCopyTexSubImage%dD(width=%d)", dimensions, width); + return GL_TRUE; + } + if (dimensions > 1 && height < 0) { + _mesa_error(ctx, GL_INVALID_VALUE, + "glCopyTexSubImage%dD(height=%d)", dimensions, height); + return GL_TRUE; + } + + /* check x/y offsets */ if (xoffset < -((GLint)teximage->Border)) { _mesa_error(ctx, GL_INVALID_VALUE, "glCopyTexSubImage%dD(xoffset=%d)", dimensions, xoffset); @@ -2185,6 +2189,7 @@ copytexsubimage_error_check2( GLcontext *ctx, GLuint dimensions, } } + /* check z offset */ if (dimensions > 2) { if (zoffset < -((GLint)teximage->Border)) { _mesa_error(ctx, GL_INVALID_VALUE, @@ -2336,8 +2341,8 @@ _mesa_GetTexImage( GLenum target, GLint level, GLenum format, * texture's format. Note that a color index texture can be converted * to RGBA so that combo is allowed. */ - if (is_color_format(format) - && !is_color_format(texImage->TexFormat->BaseFormat) + if (_mesa_is_color_format(format) + && !_mesa_is_color_format(texImage->TexFormat->BaseFormat) && !is_index_format(texImage->TexFormat->BaseFormat)) { _mesa_error(ctx, GL_INVALID_OPERATION, "glGetTexImage(format mismatch)"); goto out; @@ -2430,7 +2435,7 @@ _mesa_TexImage1D( GLenum target, GLint level, GLint internalFormat, ASSERT_OUTSIDE_BEGIN_END_AND_FLUSH(ctx); #if FEATURE_convolve - if (is_color_format(internalFormat)) { + if (_mesa_is_color_format(internalFormat)) { _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); } #endif @@ -2527,7 +2532,7 @@ _mesa_TexImage2D( GLenum target, GLint level, GLint internalFormat, ASSERT_OUTSIDE_BEGIN_END_AND_FLUSH(ctx); #if FEATURE_convolve - if (is_color_format(internalFormat)) { + if (_mesa_is_color_format(internalFormat)) { _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, &postConvHeight); } @@ -2752,7 +2757,7 @@ _mesa_TexSubImage1D( GLenum target, GLint level, #if FEATURE_convolve /* XXX should test internal format */ - if (is_color_format(format)) { + if (_mesa_is_color_format(format)) { _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); } #endif @@ -2812,7 +2817,7 @@ _mesa_TexSubImage2D( GLenum target, GLint level, #if FEATURE_convolve /* XXX should test internal format */ - if (is_color_format(format)) { + if (_mesa_is_color_format(format)) { _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, &postConvHeight); } @@ -2927,7 +2932,7 @@ _mesa_CopyTexImage1D( GLenum target, GLint level, _mesa_update_state(ctx); #if FEATURE_convolve - if (is_color_format(internalFormat)) { + if (_mesa_is_color_format(internalFormat)) { _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); } #endif @@ -2992,11 +2997,12 @@ _mesa_CopyTexImage2D( GLenum target, GLint level, GLenum internalFormat, _mesa_update_state(ctx); #if FEATURE_convolve - if (is_color_format(internalFormat)) { + if (_mesa_is_color_format(internalFormat)) { _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, &postConvHeight); } #endif + if (copytexture_error_check(ctx, 2, target, level, internalFormat, postConvWidth, postConvHeight, border)) return; @@ -3058,13 +3064,7 @@ _mesa_CopyTexSubImage1D( GLenum target, GLint level, if (ctx->NewState & _IMAGE_NEW_TRANSFER_STATE) _mesa_update_state(ctx); -#if FEATURE_convolve - /* XXX should test internal format */ - _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); -#endif - - if (copytexsubimage_error_check(ctx, 1, target, level, - xoffset, 0, 0, postConvWidth, 1)) + if (copytexsubimage_error_check1(ctx, 1, target, level)) return; texUnit = &ctx->Texture.Unit[ctx->Texture.CurrentUnit]; @@ -3074,6 +3074,12 @@ _mesa_CopyTexSubImage1D( GLenum target, GLint level, { texImage = _mesa_select_tex_image(ctx, texObj, target, level); +#if FEATURE_convolve + if (texImage && _mesa_is_color_format(texImage->InternalFormat)) { + _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); + } +#endif + if (copytexsubimage_error_check2(ctx, 1, target, level, xoffset, 0, 0, postConvWidth, 1, texImage)) @@ -3113,13 +3119,7 @@ _mesa_CopyTexSubImage2D( GLenum target, GLint level, if (ctx->NewState & _IMAGE_NEW_TRANSFER_STATE) _mesa_update_state(ctx); -#if FEATURE_convolve - /* XXX should test internal format */ - _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, &postConvHeight); -#endif - - if (copytexsubimage_error_check(ctx, 2, target, level, xoffset, yoffset, 0, - postConvWidth, postConvHeight)) + if (copytexsubimage_error_check1(ctx, 2, target, level)) return; texUnit = &ctx->Texture.Unit[ctx->Texture.CurrentUnit]; @@ -3129,6 +3129,13 @@ _mesa_CopyTexSubImage2D( GLenum target, GLint level, { texImage = _mesa_select_tex_image(ctx, texObj, target, level); +#if FEATURE_convolve + if (texImage && _mesa_is_color_format(texImage->InternalFormat)) { + _mesa_adjust_image_for_convolution(ctx, 2, + &postConvWidth, &postConvHeight); + } +#endif + if (copytexsubimage_error_check2(ctx, 2, target, level, xoffset, yoffset, 0, postConvWidth, postConvHeight, texImage)) goto out; @@ -3167,13 +3174,7 @@ _mesa_CopyTexSubImage3D( GLenum target, GLint level, if (ctx->NewState & _IMAGE_NEW_TRANSFER_STATE) _mesa_update_state(ctx); -#if FEATURE_convolve - /* XXX should test internal format */ - _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, &postConvHeight); -#endif - - if (copytexsubimage_error_check(ctx, 3, target, level, xoffset, yoffset, - zoffset, postConvWidth, postConvHeight)) + if (copytexsubimage_error_check1(ctx, 3, target, level)) return; texUnit = &ctx->Texture.Unit[ctx->Texture.CurrentUnit]; @@ -3183,6 +3184,13 @@ _mesa_CopyTexSubImage3D( GLenum target, GLint level, { texImage = _mesa_select_tex_image(ctx, texObj, target, level); +#if FEATURE_convolve + if (texImage && _mesa_is_color_format(texImage->InternalFormat)) { + _mesa_adjust_image_for_convolution(ctx, 2, + &postConvWidth, &postConvHeight); + } +#endif + if (copytexsubimage_error_check2(ctx, 3, target, level, xoffset, yoffset, zoffset, postConvWidth, postConvHeight, texImage)) diff --git a/src/mesa/main/teximage.h b/src/mesa/main/teximage.h index b718c0046d8..eb60a1fa8fa 100644 --- a/src/mesa/main/teximage.h +++ b/src/mesa/main/teximage.h @@ -111,6 +111,9 @@ extern GLuint _mesa_tex_target_to_face(GLenum target); +extern GLboolean +_mesa_is_color_format(GLenum format); + /** * Lock a texture for updating. See also _mesa_lock_context_textures(). diff --git a/src/mesa/main/texstore.c b/src/mesa/main/texstore.c index 3639a914c4c..c1fafbae30b 100644 --- a/src/mesa/main/texstore.c +++ b/src/mesa/main/texstore.c @@ -2988,10 +2988,13 @@ choose_texture_format(GLcontext *ctx, struct gl_texture_image *texImage, -/* +/** * This is the software fallback for Driver.TexImage1D() * and Driver.CopyTexImage1D(). * \sa _mesa_store_teximage2d() + * Note that the width may not be the actual texture width since it may + * be changed by convolution w/ GL_REDUCE. The texImage->Width field will + * have the actual texture size. */ void _mesa_store_teximage1d(GLcontext *ctx, GLenum target, GLint level, @@ -3002,21 +3005,16 @@ _mesa_store_teximage1d(GLcontext *ctx, GLenum target, GLint level, struct gl_texture_object *texObj, struct gl_texture_image *texImage) { - GLint postConvWidth = width; GLint sizeInBytes; (void) border; - if (ctx->_ImageTransferState & IMAGE_CONVOLUTION_BIT) { - _mesa_adjust_image_for_convolution(ctx, 1, &postConvWidth, NULL); - } - choose_texture_format(ctx, texImage, 1, format, type, internalFormat); /* allocate memory */ if (texImage->IsCompressed) sizeInBytes = texImage->CompressedSize; else - sizeInBytes = postConvWidth * texImage->TexFormat->TexelBytes; + sizeInBytes = texImage->Width * texImage->TexFormat->TexelBytes; texImage->Data = _mesa_alloc_texmemory(sizeInBytes); if (!texImage->Data) { _mesa_error(ctx, GL_OUT_OF_MEMORY, "glTexImage1D"); @@ -3076,15 +3074,9 @@ _mesa_store_teximage2d(GLcontext *ctx, GLenum target, GLint level, struct gl_texture_object *texObj, struct gl_texture_image *texImage) { - GLint postConvWidth = width, postConvHeight = height; GLint texelBytes, sizeInBytes; (void) border; - if (ctx->_ImageTransferState & IMAGE_CONVOLUTION_BIT) { - _mesa_adjust_image_for_convolution(ctx, 2, &postConvWidth, - &postConvHeight); - } - choose_texture_format(ctx, texImage, 2, format, type, internalFormat); texelBytes = texImage->TexFormat->TexelBytes; @@ -3093,7 +3085,7 @@ _mesa_store_teximage2d(GLcontext *ctx, GLenum target, GLint level, if (texImage->IsCompressed) sizeInBytes = texImage->CompressedSize; else - sizeInBytes = postConvWidth * postConvHeight * texelBytes; + sizeInBytes = texImage->Width * texImage->Height * texelBytes; texImage->Data = _mesa_alloc_texmemory(sizeInBytes); if (!texImage->Data) { _mesa_error(ctx, GL_OUT_OF_MEMORY, "glTexImage2D"); diff --git a/src/mesa/shader/prog_execute.c b/src/mesa/shader/prog_execute.c index 23648f3f4ca..4f1a07ed75c 100644 --- a/src/mesa/shader/prog_execute.c +++ b/src/mesa/shader/prog_execute.c @@ -220,6 +220,37 @@ fetch_vector4(const struct prog_src_register *source, /** + * Fetch a 4-element uint vector from the given source register. + * Apply swizzling but not negation/abs. + */ +static void +fetch_vector4ui(const struct prog_src_register *source, + const struct gl_program_machine *machine, GLuint result[4]) +{ + const GLuint *src = (GLuint *) get_register_pointer(source, machine); + ASSERT(src); + + if (source->Swizzle == SWIZZLE_NOOP) { + /* no swizzling */ + COPY_4V(result, src); + } + else { + ASSERT(GET_SWZ(source->Swizzle, 0) <= 3); + ASSERT(GET_SWZ(source->Swizzle, 1) <= 3); + ASSERT(GET_SWZ(source->Swizzle, 2) <= 3); + ASSERT(GET_SWZ(source->Swizzle, 3) <= 3); + result[0] = src[GET_SWZ(source->Swizzle, 0)]; + result[1] = src[GET_SWZ(source->Swizzle, 1)]; + result[2] = src[GET_SWZ(source->Swizzle, 2)]; + result[3] = src[GET_SWZ(source->Swizzle, 3)]; + } + + /* Note: no NegateBase, Abs, NegateAbs here */ +} + + + +/** * Fetch the derivative with respect to X or Y for the given register. * XXX this currently only works for fragment program input attribs. */ @@ -229,7 +260,8 @@ fetch_vector4_deriv(GLcontext * ctx, const struct gl_program_machine *machine, char xOrY, GLfloat result[4]) { - if (source->File == PROGRAM_INPUT && source->Index < (GLint)machine->NumDeriv) { + if (source->File == PROGRAM_INPUT && + source->Index < (GLint) machine->NumDeriv) { const GLint col = machine->CurElement; const GLfloat w = machine->Attribs[FRAG_ATTRIB_WPOS][col][3]; const GLfloat invQ = 1.0f / w; @@ -494,6 +526,89 @@ store_vector4(const struct prog_instruction *inst, /** + * Store 4 uints into a register. Observe the set-condition-code flags. + */ +static void +store_vector4ui(const struct prog_instruction *inst, + struct gl_program_machine *machine, const GLuint value[4]) +{ + const struct prog_dst_register *dest = &(inst->DstReg); + GLuint *dstReg; + GLuint dummyReg[4]; + GLuint writeMask = dest->WriteMask; + + switch (dest->File) { + case PROGRAM_OUTPUT: + ASSERT(dest->Index < MAX_PROGRAM_OUTPUTS); + dstReg = (GLuint *) machine->Outputs[dest->Index]; + break; + case PROGRAM_TEMPORARY: + ASSERT(dest->Index < MAX_PROGRAM_TEMPS); + dstReg = (GLuint *) machine->Temporaries[dest->Index]; + break; + case PROGRAM_WRITE_ONLY: + dstReg = dummyReg; + return; + default: + _mesa_problem(NULL, "bad register file in store_vector4(fp)"); + return; + } + + if (dest->CondMask != COND_TR) { + /* condition codes may turn off some writes */ + if (writeMask & WRITEMASK_X) { + if (!test_cc(machine->CondCodes[GET_SWZ(dest->CondSwizzle, 0)], + dest->CondMask)) + writeMask &= ~WRITEMASK_X; + } + if (writeMask & WRITEMASK_Y) { + if (!test_cc(machine->CondCodes[GET_SWZ(dest->CondSwizzle, 1)], + dest->CondMask)) + writeMask &= ~WRITEMASK_Y; + } + if (writeMask & WRITEMASK_Z) { + if (!test_cc(machine->CondCodes[GET_SWZ(dest->CondSwizzle, 2)], + dest->CondMask)) + writeMask &= ~WRITEMASK_Z; + } + if (writeMask & WRITEMASK_W) { + if (!test_cc(machine->CondCodes[GET_SWZ(dest->CondSwizzle, 3)], + dest->CondMask)) + writeMask &= ~WRITEMASK_W; + } + } + + if (writeMask & WRITEMASK_X) + dstReg[0] = value[0]; + if (writeMask & WRITEMASK_Y) + dstReg[1] = value[1]; + if (writeMask & WRITEMASK_Z) + dstReg[2] = value[2]; + if (writeMask & WRITEMASK_W) + dstReg[3] = value[3]; + + if (inst->CondUpdate) { + if (writeMask & WRITEMASK_X) + machine->CondCodes[0] = generate_cc(value[0]); + if (writeMask & WRITEMASK_Y) + machine->CondCodes[1] = generate_cc(value[1]); + if (writeMask & WRITEMASK_Z) + machine->CondCodes[2] = generate_cc(value[2]); + if (writeMask & WRITEMASK_W) + machine->CondCodes[3] = generate_cc(value[3]); +#if DEBUG_PROG + printf("CondCodes=(%s,%s,%s,%s) for:\n", + _mesa_condcode_string(machine->CondCodes[0]), + _mesa_condcode_string(machine->CondCodes[1]), + _mesa_condcode_string(machine->CondCodes[2]), + _mesa_condcode_string(machine->CondCodes[3])); +#endif + } +} + + + +/** * Execute the given vertex/fragment program. * * \param ctx rendering context @@ -572,6 +687,18 @@ _mesa_execute_program(GLcontext * ctx, } } break; + case OPCODE_AND: /* bitwise AND */ + { + GLuint a[4], b[4], result[4]; + fetch_vector4ui(&inst->SrcReg[0], machine, a); + fetch_vector4ui(&inst->SrcReg[1], machine, b); + result[0] = a[0] & b[0]; + result[1] = a[1] & b[1]; + result[2] = a[2] & b[2]; + result[3] = a[3] & b[3]; + store_vector4ui(inst, machine, result); + } + break; case OPCODE_ARL: { GLfloat t[4]; @@ -650,6 +777,33 @@ _mesa_execute_program(GLcontext * ctx, store_vector4(inst, machine, result); } break; + case OPCODE_DP2: + { + GLfloat a[4], b[4], result[4]; + fetch_vector4(&inst->SrcReg[0], machine, a); + fetch_vector4(&inst->SrcReg[1], machine, b); + result[0] = result[1] = result[2] = result[3] = DOT2(a, b); + store_vector4(inst, machine, result); + if (DEBUG_PROG) { + printf("DP2 %g = (%g %g) . (%g %g)\n", + result[0], a[0], a[1], b[0], b[1]); + } + } + break; + case OPCODE_DP2A: + { + GLfloat a[4], b[4], c, result[4]; + fetch_vector4(&inst->SrcReg[0], machine, a); + fetch_vector4(&inst->SrcReg[1], machine, b); + fetch_vector1(&inst->SrcReg[1], machine, &c); + result[0] = result[1] = result[2] = result[3] = DOT2(a, b) + c; + store_vector4(inst, machine, result); + if (DEBUG_PROG) { + printf("DP2A %g = (%g %g) . (%g %g) + %g\n", + result[0], a[0], a[1], b[0], b[1], c); + } + } + break; case OPCODE_DP3: { GLfloat a[4], b[4], result[4]; @@ -682,8 +836,7 @@ _mesa_execute_program(GLcontext * ctx, GLfloat a[4], b[4], result[4]; fetch_vector4(&inst->SrcReg[0], machine, a); fetch_vector4(&inst->SrcReg[1], machine, b); - result[0] = result[1] = result[2] = result[3] = - a[0] * b[0] + a[1] * b[1] + a[2] * b[2] + b[3]; + result[0] = result[1] = result[2] = result[3] = DOT3(a, b) + b[3]; store_vector4(inst, machine, result); } break; @@ -790,17 +943,6 @@ _mesa_execute_program(GLcontext * ctx, case OPCODE_ENDIF: /* nothing */ break; - case OPCODE_INT: /* float to int */ - { - GLfloat a[4], result[4]; - fetch_vector4(&inst->SrcReg[0], machine, a); - result[0] = (GLfloat) (GLint) a[0]; - result[1] = (GLfloat) (GLint) a[1]; - result[2] = (GLfloat) (GLint) a[2]; - result[3] = (GLfloat) (GLint) a[3]; - store_vector4(inst, machine, result); - } - break; case OPCODE_KIL_NV: /* NV_f_p only (conditional) */ if (eval_condition(machine, inst)) { return GL_FALSE; @@ -1031,39 +1173,94 @@ _mesa_execute_program(GLcontext * ctx, break; case OPCODE_NOP: break; - case OPCODE_PK2H: /* pack two 16-bit floats in one 32-bit float */ + case OPCODE_NOT: /* bitwise NOT */ + { + GLuint a[4], result[4]; + fetch_vector4ui(&inst->SrcReg[0], machine, a); + result[0] = ~a[0]; + result[1] = ~a[1]; + result[2] = ~a[2]; + result[3] = ~a[3]; + store_vector4ui(inst, machine, result); + } + break; + case OPCODE_NRM3: /* 3-component normalization */ + { + GLfloat a[4], result[4]; + GLfloat tmp; + fetch_vector4(&inst->SrcReg[0], machine, a); + tmp = a[0] * a[0] + a[1] * a[1] + a[2] * a[2]; + if (tmp != 0.0F) + tmp = INV_SQRTF(tmp); + result[0] = tmp * a[0]; + result[1] = tmp * a[1]; + result[2] = tmp * a[2]; + result[3] = 0.0; /* undefined, but prevent valgrind warnings */ + store_vector4(inst, machine, result); + } + break; + case OPCODE_NRM4: /* 4-component normalization */ { GLfloat a[4], result[4]; + GLfloat tmp; + fetch_vector4(&inst->SrcReg[0], machine, a); + tmp = a[0] * a[0] + a[1] * a[1] + a[2] * a[2] + a[3] * a[3]; + if (tmp != 0.0F) + tmp = INV_SQRTF(tmp); + result[0] = tmp * a[0]; + result[1] = tmp * a[1]; + result[2] = tmp * a[2]; + result[3] = tmp * a[3]; + store_vector4(inst, machine, result); + } + break; + case OPCODE_OR: /* bitwise OR */ + { + GLuint a[4], b[4], result[4]; + fetch_vector4ui(&inst->SrcReg[0], machine, a); + fetch_vector4ui(&inst->SrcReg[1], machine, b); + result[0] = a[0] | b[0]; + result[1] = a[1] | b[1]; + result[2] = a[2] | b[2]; + result[3] = a[3] | b[3]; + store_vector4ui(inst, machine, result); + } + break; + case OPCODE_PK2H: /* pack two 16-bit floats in one 32-bit float */ + { + GLfloat a[4]; + GLuint result[4]; GLhalfNV hx, hy; - GLuint *rawResult = (GLuint *) result; - GLuint twoHalves; fetch_vector4(&inst->SrcReg[0], machine, a); hx = _mesa_float_to_half(a[0]); hy = _mesa_float_to_half(a[1]); - twoHalves = hx | (hy << 16); - rawResult[0] = rawResult[1] = rawResult[2] = rawResult[3] - = twoHalves; - store_vector4(inst, machine, result); + result[0] = + result[1] = + result[2] = + result[3] = hx | (hy << 16); + store_vector4ui(inst, machine, result); } break; case OPCODE_PK2US: /* pack two GLushorts into one 32-bit float */ { - GLfloat a[4], result[4]; - GLuint usx, usy, *rawResult = (GLuint *) result; + GLfloat a[4]; + GLuint result[4], usx, usy; fetch_vector4(&inst->SrcReg[0], machine, a); a[0] = CLAMP(a[0], 0.0F, 1.0F); a[1] = CLAMP(a[1], 0.0F, 1.0F); usx = IROUND(a[0] * 65535.0F); usy = IROUND(a[1] * 65535.0F); - rawResult[0] = rawResult[1] = rawResult[2] = rawResult[3] - = usx | (usy << 16); - store_vector4(inst, machine, result); + result[0] = + result[1] = + result[2] = + result[3] = usx | (usy << 16); + store_vector4ui(inst, machine, result); } break; case OPCODE_PK4B: /* pack four GLbytes into one 32-bit float */ { - GLfloat a[4], result[4]; - GLuint ubx, uby, ubz, ubw, *rawResult = (GLuint *) result; + GLfloat a[4]; + GLuint result[4], ubx, uby, ubz, ubw; fetch_vector4(&inst->SrcReg[0], machine, a); a[0] = CLAMP(a[0], -128.0F / 127.0F, 1.0F); a[1] = CLAMP(a[1], -128.0F / 127.0F, 1.0F); @@ -1073,15 +1270,17 @@ _mesa_execute_program(GLcontext * ctx, uby = IROUND(127.0F * a[1] + 128.0F); ubz = IROUND(127.0F * a[2] + 128.0F); ubw = IROUND(127.0F * a[3] + 128.0F); - rawResult[0] = rawResult[1] = rawResult[2] = rawResult[3] - = ubx | (uby << 8) | (ubz << 16) | (ubw << 24); - store_vector4(inst, machine, result); + result[0] = + result[1] = + result[2] = + result[3] = ubx | (uby << 8) | (ubz << 16) | (ubw << 24); + store_vector4ui(inst, machine, result); } break; case OPCODE_PK4UB: /* pack four GLubytes into one 32-bit float */ { - GLfloat a[4], result[4]; - GLuint ubx, uby, ubz, ubw, *rawResult = (GLuint *) result; + GLfloat a[4]; + GLuint result[4], ubx, uby, ubz, ubw; fetch_vector4(&inst->SrcReg[0], machine, a); a[0] = CLAMP(a[0], 0.0F, 1.0F); a[1] = CLAMP(a[1], 0.0F, 1.0F); @@ -1091,9 +1290,11 @@ _mesa_execute_program(GLcontext * ctx, uby = IROUND(255.0F * a[1]); ubz = IROUND(255.0F * a[2]); ubw = IROUND(255.0F * a[3]); - rawResult[0] = rawResult[1] = rawResult[2] = rawResult[3] - = ubx | (uby << 8) | (ubz << 16) | (ubw << 24); - store_vector4(inst, machine, result); + result[0] = + result[1] = + result[2] = + result[3] = ubx | (uby << 8) | (ubz << 16) | (ubw << 24); + store_vector4ui(inst, machine, result); } break; case OPCODE_POW: @@ -1289,6 +1490,17 @@ _mesa_execute_program(GLcontext * ctx, } } break; + case OPCODE_SSG: /* set sign (-1, 0 or +1) */ + { + GLfloat a[4], result[4]; + fetch_vector4(&inst->SrcReg[0], machine, a); + result[0] = (GLfloat) ((a[0] > 0.0F) - (a[0] < 0.0F)); + result[1] = (GLfloat) ((a[1] > 0.0F) - (a[1] < 0.0F)); + result[2] = (GLfloat) ((a[2] > 0.0F) - (a[2] < 0.0F)); + result[3] = (GLfloat) ((a[3] > 0.0F) - (a[3] < 0.0F)); + store_vector4(inst, machine, result); + } + break; case OPCODE_STR: /* set true, operands ignored */ { static const GLfloat result[4] = { 1.0F, 1.0F, 1.0F, 1.0F }; @@ -1426,6 +1638,17 @@ _mesa_execute_program(GLcontext * ctx, store_vector4(inst, machine, color); } break; + case OPCODE_TRUNC: /* truncate toward zero */ + { + GLfloat a[4], result[4]; + fetch_vector4(&inst->SrcReg[0], machine, a); + result[0] = (GLfloat) (GLint) a[0]; + result[1] = (GLfloat) (GLint) a[1]; + result[2] = (GLfloat) (GLint) a[2]; + result[3] = (GLfloat) (GLint) a[3]; + store_vector4(inst, machine, result); + } + break; case OPCODE_UP2H: /* unpack two 16-bit floats */ { GLfloat a[4], result[4]; @@ -1476,6 +1699,18 @@ _mesa_execute_program(GLcontext * ctx, store_vector4(inst, machine, result); } break; + case OPCODE_XOR: /* bitwise XOR */ + { + GLuint a[4], b[4], result[4]; + fetch_vector4ui(&inst->SrcReg[0], machine, a); + fetch_vector4ui(&inst->SrcReg[1], machine, b); + result[0] = a[0] ^ b[0]; + result[1] = a[1] ^ b[1]; + result[2] = a[2] ^ b[2]; + result[3] = a[3] ^ b[3]; + store_vector4ui(inst, machine, result); + } + break; case OPCODE_XPD: /* cross product */ { GLfloat a[4], b[4], result[4]; diff --git a/src/mesa/shader/prog_instruction.c b/src/mesa/shader/prog_instruction.c index 1033496d978..f5c0a498fb0 100644 --- a/src/mesa/shader/prog_instruction.c +++ b/src/mesa/shader/prog_instruction.c @@ -154,6 +154,7 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_NOP, "NOP", 0, 0 }, { OPCODE_ABS, "ABS", 1, 1 }, { OPCODE_ADD, "ADD", 2, 1 }, + { OPCODE_AND, "AND", 2, 1 }, { OPCODE_ARA, "ARA", 1, 1 }, { OPCODE_ARL, "ARL", 1, 1 }, { OPCODE_ARL_NV, "ARL", 1, 1 }, @@ -168,6 +169,8 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_COS, "COS", 1, 1 }, { OPCODE_DDX, "DDX", 1, 1 }, { OPCODE_DDY, "DDY", 1, 1 }, + { OPCODE_DP2, "DP2", 2, 1 }, + { OPCODE_DP2A, "DP2A", 3, 1 }, { OPCODE_DP3, "DP3", 2, 1 }, { OPCODE_DP4, "DP4", 2, 1 }, { OPCODE_DPH, "DPH", 2, 1 }, @@ -182,7 +185,6 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_FLR, "FLR", 1, 1 }, { OPCODE_FRC, "FRC", 1, 1 }, { OPCODE_IF, "IF", 1, 0 }, - { OPCODE_INT, "INT", 1, 1 }, { OPCODE_KIL, "KIL", 1, 0 }, { OPCODE_KIL_NV, "KIL", 0, 0 }, { OPCODE_LG2, "LG2", 1, 1 }, @@ -198,6 +200,10 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_NOISE2, "NOISE2", 1, 1 }, { OPCODE_NOISE3, "NOISE3", 1, 1 }, { OPCODE_NOISE4, "NOISE4", 1, 1 }, + { OPCODE_NOT, "NOT", 1, 1 }, + { OPCODE_NRM3, "NRM3", 1, 1 }, + { OPCODE_NRM4, "NRM4", 1, 1 }, + { OPCODE_OR, "OR", 2, 1 }, { OPCODE_PK2H, "PK2H", 1, 1 }, { OPCODE_PK2US, "PK2US", 1, 1 }, { OPCODE_PK4B, "PK4B", 1, 1 }, @@ -230,11 +236,13 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_TXL, "TXL", 1, 1 }, { OPCODE_TXP, "TXP", 1, 1 }, { OPCODE_TXP_NV, "TXP", 1, 1 }, + { OPCODE_TRUNC, "TRUNC", 1, 1 }, { OPCODE_UP2H, "UP2H", 1, 1 }, { OPCODE_UP2US, "UP2US", 1, 1 }, { OPCODE_UP4B, "UP4B", 1, 1 }, { OPCODE_UP4UB, "UP4UB", 1, 1 }, { OPCODE_X2D, "X2D", 3, 1 }, + { OPCODE_XOR, "XOR", 2, 1 }, { OPCODE_XPD, "XPD", 2, 1 } }; diff --git a/src/mesa/shader/prog_instruction.h b/src/mesa/shader/prog_instruction.h index 711166f9ddb..6a0e62221a0 100644 --- a/src/mesa/shader/prog_instruction.h +++ b/src/mesa/shader/prog_instruction.h @@ -145,6 +145,7 @@ typedef enum prog_opcode { OPCODE_NOP = 0, /* X */ OPCODE_ABS, /* X X 1.1 X */ OPCODE_ADD, /* X X X X X */ + OPCODE_AND, /* */ OPCODE_ARA, /* 2 */ OPCODE_ARL, /* X X */ OPCODE_ARL_NV, /* 2 */ @@ -159,6 +160,8 @@ typedef enum prog_opcode { OPCODE_COS, /* X 2 X X */ OPCODE_DDX, /* X X */ OPCODE_DDY, /* X X */ + OPCODE_DP2, /* 2 */ + OPCODE_DP2A, /* 2 */ OPCODE_DP3, /* X X X X X */ OPCODE_DP4, /* X X X X X */ OPCODE_DPH, /* X X 1.1 */ @@ -173,7 +176,6 @@ typedef enum prog_opcode { OPCODE_FLR, /* X X 2 X X */ OPCODE_FRC, /* X X 2 X X */ OPCODE_IF, /* opt */ - OPCODE_INT, /* X */ OPCODE_KIL, /* X */ OPCODE_KIL_NV, /* X X */ OPCODE_LG2, /* X X 2 X X */ @@ -189,6 +191,10 @@ typedef enum prog_opcode { OPCODE_NOISE2, /* X */ OPCODE_NOISE3, /* X */ OPCODE_NOISE4, /* X */ + OPCODE_NOT, /* */ + OPCODE_NRM3, /* */ + OPCODE_NRM4, /* */ + OPCODE_OR, /* */ OPCODE_PK2H, /* X */ OPCODE_PK2US, /* X */ OPCODE_PK4B, /* X */ @@ -221,16 +227,21 @@ typedef enum prog_opcode { OPCODE_TXL, /* 3 2 X */ OPCODE_TXP, /* X X */ OPCODE_TXP_NV, /* 3 X */ + OPCODE_TRUNC, /* X */ OPCODE_UP2H, /* X */ OPCODE_UP2US, /* X */ OPCODE_UP4B, /* X */ OPCODE_UP4UB, /* X */ OPCODE_X2D, /* X */ + OPCODE_XOR, /* */ OPCODE_XPD, /* X X X */ MAX_OPCODE } gl_inst_opcode; +/* temporary, just in case, remove soon */ +#define OPCODE_INT OPCODE_TRUNC + /** * Instruction source register. */ diff --git a/src/mesa/shader/prog_uniform.c b/src/mesa/shader/prog_uniform.c index 25d7c0997bc..11f2e3e561c 100644 --- a/src/mesa/shader/prog_uniform.c +++ b/src/mesa/shader/prog_uniform.c @@ -87,6 +87,7 @@ _mesa_append_uniform(struct gl_uniform_list *list, list->Uniforms[oldNum].Name = _mesa_strdup(name); list->Uniforms[oldNum].VertPos = -1; list->Uniforms[oldNum].FragPos = -1; + list->Uniforms[oldNum].Initialized = GL_FALSE; index = oldNum; list->NumUniforms++; } diff --git a/src/mesa/shader/prog_uniform.h b/src/mesa/shader/prog_uniform.h index 735de28705a..deea7329912 100644 --- a/src/mesa/shader/prog_uniform.h +++ b/src/mesa/shader/prog_uniform.h @@ -50,6 +50,7 @@ struct gl_uniform const char *Name; /**< Null-terminated string */ GLint VertPos; GLint FragPos; + GLboolean Initialized; /**< For debug. Has this uniform been set? */ #if 0 GLenum DataType; /**< GL_FLOAT, GL_FLOAT_VEC2, etc */ GLuint Size; /**< Number of components (1..4) */ diff --git a/src/mesa/shader/shader_api.c b/src/mesa/shader/shader_api.c index 266ecc4ef21..7a8501dcdd3 100644 --- a/src/mesa/shader/shader_api.c +++ b/src/mesa/shader/shader_api.c @@ -1422,10 +1422,22 @@ _mesa_use_program(GLcontext *ctx, GLuint program) /** - * Update the vertex and fragment program's TexturesUsed arrays. + * Update the vertex/fragment program's TexturesUsed array. + * + * This needs to be called after glUniform(set sampler var) is called. + * A call to glUniform(samplerVar, value) causes a sampler to point to a + * particular texture unit. We know the sampler's texture target + * (1D/2D/3D/etc) from compile time but the sampler's texture unit is + * set by glUniform() calls. + * + * So, scan the program->SamplerUnits[] and program->SamplerTargets[] + * information to update the prog->TexturesUsed[] values. + * Each value of TexturesUsed[unit] is one of zero, TEXTURE_1D_INDEX, + * TEXTURE_2D_INDEX, TEXTURE_3D_INDEX, etc. + * We'll use that info for state validation before rendering. */ -static void -update_textures_used(struct gl_program *prog) +void +_mesa_update_shader_textures_used(struct gl_program *prog) { GLuint s; @@ -1512,10 +1524,12 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, GLenum type, GLsizei count, GLint elems, const void *values) { + struct gl_program_parameter *param = + &program->Parameters->Parameters[index]; + assert(offset >= 0); - if (!compatible_types(type, - program->Parameters->Parameters[index].DataType)) { + if (!compatible_types(type, param->DataType)) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(type mismatch)"); return; } @@ -1525,7 +1539,7 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, return; } - if (program->Parameters->Parameters[index].Type == PROGRAM_SAMPLER) { + if (param->Type == PROGRAM_SAMPLER) { /* This controls which texture unit which is used by a sampler */ GLuint texUnit, sampler; @@ -1549,16 +1563,16 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, /* This maps a sampler to a texture unit: */ program->SamplerUnits[sampler] = texUnit; - update_textures_used(program); + _mesa_update_shader_textures_used(program); FLUSH_VERTICES(ctx, _NEW_TEXTURE); } else { /* ordinary uniform variable */ GLsizei k, i; - GLint slots = (program->Parameters->Parameters[index].Size + 3) / 4; + GLint slots = (param->Size + 3) / 4; - if (count * elems > (GLint) program->Parameters->Parameters[index].Size) { + if (count * elems > (GLint) param->Size) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(count too large)"); return; } @@ -1567,7 +1581,8 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, count = slots; for (k = 0; k < count; k++) { - GLfloat *uniformVal = program->Parameters->ParameterValues[index + offset + k]; + GLfloat *uniformVal = + program->Parameters->ParameterValues[index + offset + k]; if (is_integer_type(type)) { const GLint *iValues = ((const GLint *) values) + k * elems; for (i = 0; i < elems; i++) { @@ -1582,7 +1597,7 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, } /* if the uniform is bool-valued, convert to 1.0 or 0.0 */ - if (is_boolean_type(program->Parameters->Parameters[index].DataType)) { + if (is_boolean_type(param->DataType)) { for (i = 0; i < elems; i++) { uniformVal[i] = uniformVal[i] ? 1.0f : 0.0f; } @@ -1666,6 +1681,8 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, index, offset, type, count, elems, values); } } + + shProg->Uniforms->Uniforms[location].Initialized = GL_TRUE; } @@ -1776,6 +1793,8 @@ _mesa_uniform_matrix(GLcontext *ctx, GLint cols, GLint rows, count, rows, cols, transpose, values); } } + + shProg->Uniforms->Uniforms[location].Initialized = GL_TRUE; } diff --git a/src/mesa/shader/shader_api.h b/src/mesa/shader/shader_api.h index e7f12669156..ec1996ee98d 100644 --- a/src/mesa/shader/shader_api.h +++ b/src/mesa/shader/shader_api.h @@ -80,6 +80,10 @@ _mesa_lookup_shader(GLcontext *ctx, GLuint name); extern void +_mesa_update_shader_textures_used(struct gl_program *prog); + + +extern void _mesa_use_program(GLcontext *ctx, GLuint program); diff --git a/src/mesa/shader/slang/library/slang_120_core_gc.h b/src/mesa/shader/slang/library/slang_120_core_gc.h index 3ee03e7ec3d..15e3a3f5775 100644 --- a/src/mesa/shader/slang/library/slang_120_core_gc.h +++ b/src/mesa/shader/slang/library/slang_120_core_gc.h @@ -2,715 +2,725 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_120_core.gc */ 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-0,0,0,46,0,0,0 +0,0,0,46,0,0,1,0,0,12,0,102,119,105,100,116,104,0,1,1,0,0,12,112,0,0,0,1,8,58,97,98,115,0,58,100, +70,100,120,0,18,112,0,0,0,0,0,58,97,98,115,0,58,100,70,100,121,0,18,112,0,0,0,0,0,46,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_shader.syn b/src/mesa/shader/slang/library/slang_shader.syn index 06bd8ac883c..ef4b410669c 100644 --- a/src/mesa/shader/slang/library/slang_shader.syn +++ b/src/mesa/shader/slang/library/slang_shader.syn @@ -229,6 +229,7 @@ .emtcode OP_FIELD 59 .emtcode OP_POSTINCREMENT 60 .emtcode OP_POSTDECREMENT 61 +.emtcode OP_PRECISION 62 /* parameter qualifier */ .emtcode PARAM_QUALIFIER_IN 0 @@ -753,9 +754,17 @@ parameter_declarator_2 /* <parameter_declaration> ::= <type_qualifier> <parameter_qualifier> + <precision> <parameter_declarator> + | <type_qualifier> <parameter_qualifier> + <precision> <parameter_type_specifier> + | <type_qualifier> <parameter_qualifier> <parameter_declarator> | <type_qualifier> <parameter_qualifier> <parameter_type_specifier> + | <parameter_qualifier> <precision> + <parameter_declarator> + | <parameter_qualifier> <precision> + <parameter_type_specifier> | <parameter_qualifier> <parameter_declarator> | <parameter_qualifier> <parameter_type_specifier> */ @@ -768,6 +777,12 @@ parameter_declaration_2 parameter_declaration_3 parameter_qualifier .emit TYPE_QUALIFIER_NONE .and parameter_declaration_4; parameter_declaration_4 + parameter_declaration_optprec .and parameter_declaration_rest; +parameter_declaration_optprec + parameter_declaration_prec .or .true .emit PRECISION_DEFAULT; +parameter_declaration_prec + precision .and space; +parameter_declaration_rest parameter_declarator .or parameter_type_specifier; /* @@ -1047,6 +1062,7 @@ simple_statement .if (parsing_builtin != 0) __asm_statement .emit OP_ASM .or selection_statement .or iteration_statement .or + precision_stmt .emit OP_PRECISION .or jump_statement .or expression_statement .emit OP_EXPRESSION .or declaration_statement .emit OP_DECLARE; diff --git a/src/mesa/shader/slang/library/slang_shader_syn.h b/src/mesa/shader/slang/library/slang_shader_syn.h index 1b258fcdc13..6457bb69bd4 100644 --- a/src/mesa/shader/slang/library/slang_shader_syn.h +++ b/src/mesa/shader/slang/library/slang_shader_syn.h @@ -131,6 +131,7 @@ ".emtcode OP_FIELD 59\n" ".emtcode OP_POSTINCREMENT 60\n" ".emtcode OP_POSTDECREMENT 61\n" +".emtcode OP_PRECISION 62\n" ".emtcode PARAM_QUALIFIER_IN 0\n" ".emtcode PARAM_QUALIFIER_OUT 1\n" ".emtcode PARAM_QUALIFIER_INOUT 2\n" @@ -360,6 +361,12 @@ "parameter_declaration_3\n" " parameter_qualifier .emit TYPE_QUALIFIER_NONE .and parameter_declaration_4;\n" "parameter_declaration_4\n" +" parameter_declaration_optprec .and parameter_declaration_rest;\n" +"parameter_declaration_optprec\n" +" parameter_declaration_prec .or .true .emit PRECISION_DEFAULT;\n" +"parameter_declaration_prec\n" +" precision .and space;\n" +"parameter_declaration_rest\n" " parameter_declarator .or parameter_type_specifier;\n" "parameter_qualifier\n" " parameter_qualifier_1 .or .true .emit PARAM_QUALIFIER_IN;\n" @@ -505,6 +512,7 @@ " .if (parsing_builtin != 0) __asm_statement .emit OP_ASM .or\n" " selection_statement .or\n" " iteration_statement .or\n" +" precision_stmt .emit OP_PRECISION .or\n" " jump_statement .or\n" " expression_statement .emit OP_EXPRESSION .or\n" " declaration_statement .emit OP_DECLARE;\n" diff --git a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h index 63d33af78ef..2c2aecb916f 100644 --- a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h @@ -28,73 +28,74 @@ 105,120,0,16,10,50,0,57,18,103,108,95,86,101,114,116,101,120,0,59,122,122,122,122,0,48,46,18,103, 108,95,77,111,100,101,108,86,105,101,119,80,114,111,106,101,99,116,105,111,110,77,97,116,114,105, 120,0,16,10,51,0,57,18,103,108,95,86,101,114,116,101,120,0,59,119,119,119,119,0,48,46,20,0,0,1,0,0, 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+59,122,0,18,99,111,111,114,100,0,59,122,0,20,0,9,18,112,99,111,111,114,100,0,59,119,0,18,108,111, +100,0,20,0,4,118,101,99,52,95,116,101,120,98,50,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97, +109,112,108,101,114,0,0,18,112,99,111,111,114,100,0,0,0,0,0 diff --git a/src/mesa/shader/slang/slang_codegen.c b/src/mesa/shader/slang/slang_codegen.c index 72a3c0ef9ea..ea35d679694 100644 --- a/src/mesa/shader/slang/slang_codegen.c +++ b/src/mesa/shader/slang/slang_codegen.c @@ -413,6 +413,9 @@ static slang_asm_info AsmInfo[] = { { "vec4_multiply", IR_MUL, 1, 2 }, { "vec4_dot", IR_DOT4, 1, 2 }, { "vec3_dot", IR_DOT3, 1, 2 }, + { "vec2_dot", IR_DOT2, 1, 2 }, + { "vec3_nrm", IR_NRM3, 1, 1 }, + { "vec4_nrm", IR_NRM4, 1, 1 }, { "vec3_cross", IR_CROSS, 1, 2 }, { "vec4_lrp", IR_LRP, 1, 3 }, { "vec4_min", IR_MIN, 1, 2 }, @@ -2309,7 +2312,7 @@ _slang_gen_if(slang_assemble_ctx * A, const slang_operation *oper) /* type-check expression */ if (!_slang_is_boolean(A, &oper->children[0])) { - slang_info_log_error(A->log, "boolean expression expected for 'while'"); + slang_info_log_error(A->log, "boolean expression expected for 'if'"); return NULL; } @@ -2439,12 +2442,6 @@ _slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) /*assert(!var->declared);*/ var->declared = GL_TRUE; - if(is_sampler_type(&var->type)) { - slang_info_log_error(A->log, "redeclaration of sampler '%s'", - (char*) var->a_name); - return NULL; - } - n = new_node0(IR_VAR_DECL); if (n) { _slang_attach_storage(n, var); @@ -2453,7 +2450,13 @@ _slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) assert(n->Store); assert(n->Store->Index < 0); - n->Store->File = PROGRAM_TEMPORARY; + if (is_sampler_type(&var->type)) { + n->Store->File = PROGRAM_SAMPLER; + } + else { + n->Store->File = PROGRAM_TEMPORARY; + } + n->Store->Size = _slang_sizeof_type_specifier(&n->Var->type.specifier); if (n->Store->Size <= 0) { @@ -3253,7 +3256,7 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) index = _slang_gen_operation(A, &oper->children[1]); if (array && index) { /* bounds check */ - GLint constIndex = 0; + GLint constIndex = -1; if (index->Opcode == IR_FLOAT) { constIndex = (int) index->Value[0]; if (constIndex < 0 || constIndex >= arrayLen) { @@ -3811,6 +3814,8 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (dbg) printf("VARYING "); } else if (var->type.qualifier == SLANG_QUAL_ATTRIBUTE) { + GLuint swizzle; + GLint index; /* attributes must be float, vec or mat */ if (!_slang_type_is_float_vec_mat(var->type.specifier.type)) { slang_info_log_error(A->log, @@ -3822,20 +3827,18 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (prog) { /* user-defined vertex attribute */ const GLint attr = -1; /* unknown */ - GLint index = _mesa_add_attribute(prog->Attributes, varName, - size, datatype, attr); + swizzle = _slang_var_swizzle(size, 0); + index = _mesa_add_attribute(prog->Attributes, varName, + size, datatype, attr); assert(index >= 0); - store = _slang_new_ir_storage(PROGRAM_INPUT, - VERT_ATTRIB_GENERIC0 + index, size); + index = VERT_ATTRIB_GENERIC0 + index; } else { /* pre-defined vertex attrib */ - GLuint swizzle; - GLint index = _slang_input_index(varName, GL_VERTEX_PROGRAM_ARB, - &swizzle); + index = _slang_input_index(varName, GL_VERTEX_PROGRAM_ARB, &swizzle); assert(index >= 0); - store = _slang_new_ir_storage_swz(PROGRAM_INPUT, index, size, swizzle); } + store = _slang_new_ir_storage_swz(PROGRAM_INPUT, index, size, swizzle); if (dbg) printf("ATTRIB "); } else if (var->type.qualifier == SLANG_QUAL_FIXEDINPUT) { diff --git a/src/mesa/shader/slang/slang_compile.c b/src/mesa/shader/slang/slang_compile.c index 9cf0f8b81a3..294e46235c2 100644 --- a/src/mesa/shader/slang/slang_compile.c +++ b/src/mesa/shader/slang/slang_compile.c @@ -800,6 +800,7 @@ parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, #define OP_FIELD 59 #define OP_POSTINCREMENT 60 #define OP_POSTDECREMENT 61 +#define OP_PRECISION 62 /** @@ -971,6 +972,16 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, return 0; } break; + case OP_PRECISION: + { + /* set default precision for a type in this scope */ + /* ignored at this time */ + int prec_qual = *C->I++; + int datatype = *C->I++; + (void) prec_qual; + (void) datatype; + } + break; default: return 0; } @@ -1295,12 +1306,16 @@ static int parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, slang_variable * param) { + int param_qual, precision_qual; + /* parse and validate the parameter's type qualifiers (there can be * two at most) because not all combinations are valid */ if (!parse_type_qualifier(C, ¶m->type.qualifier)) return 0; - switch (*C->I++) { + + param_qual = *C->I++; + switch (param_qual) { case PARAM_QUALIFIER_IN: if (param->type.qualifier != SLANG_QUAL_CONST && param->type.qualifier != SLANG_QUAL_NONE) { @@ -1328,6 +1343,11 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, return 0; } + /* parse precision qualifier (lowp, mediump, highp */ + precision_qual = *C->I++; + /* ignored at this time */ + (void) precision_qual; + /* parse parameter's type specifier and name */ if (!parse_type_specifier(C, O, ¶m->type.specifier)) return 0; diff --git a/src/mesa/shader/slang/slang_compile_operation.c b/src/mesa/shader/slang/slang_compile_operation.c index c0d469c8294..53cf6faff97 100644 --- a/src/mesa/shader/slang/slang_compile_operation.c +++ b/src/mesa/shader/slang/slang_compile_operation.c @@ -80,10 +80,23 @@ slang_replace_scope(slang_operation *oper, slang_variable_scope *newScope) { GLuint i; + if (oper->locals != newScope && oper->locals->outer_scope == oldScope) { + /* found. replace old w/ new */ oper->locals->outer_scope = newScope; } + + if (oper->type == SLANG_OPER_VARIABLE_DECL) { + /* search/replace in the initializer */ + slang_variable *var; + var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + if (var && var->initializer) { + slang_replace_scope(var->initializer, oldScope, newScope); + } + } + + /* search/replace in children */ for (i = 0; i < oper->num_children; i++) { slang_replace_scope(&oper->children[i], oldScope, newScope); } @@ -148,7 +161,9 @@ slang_operation_copy(slang_operation * x, const slang_operation * y) /* If this operation declares a new scope, we need to make sure * all children point to it, not the original operation's scope! */ - if (x->type == SLANG_OPER_BLOCK_NEW_SCOPE) { + if (x->type == SLANG_OPER_BLOCK_NEW_SCOPE || + x->type == SLANG_OPER_WHILE || + x->type == SLANG_OPER_FOR) { slang_replace_scope(x, y->locals, x->locals); } diff --git a/src/mesa/shader/slang/slang_emit.c b/src/mesa/shader/slang/slang_emit.c index f3c3fa6c5b3..827760c917a 100644 --- a/src/mesa/shader/slang/slang_emit.c +++ b/src/mesa/shader/slang/slang_emit.c @@ -330,6 +330,17 @@ constant_to_src_reg(struct prog_src_register *src, GLfloat val, } +static void +address_to_dst_reg(struct prog_dst_register *dst, GLuint index) +{ + assert(index == 0); /* only one address reg at this time */ + dst->File = PROGRAM_ADDRESS; + dst->Index = index; + dst->WriteMask = WRITEMASK_X; +} + + + /** * Add new instruction at end of given program. * \param prog the program to append instruction onto @@ -477,6 +488,9 @@ instruction_annotation(gl_inst_opcode opcode, char *dstAnnot, case OPCODE_MUL: operator = "*"; break; + case OPCODE_DP2: + operator = "DP2"; + break; case OPCODE_DP3: operator = "DP3"; break; @@ -614,6 +628,7 @@ emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) /* result storage */ alloc_node_storage(emitInfo, n, -1); + assert(n->Store->Index >= 0); if (n->Store->Size == 2) n->Writemask = WRITEMASK_XY; @@ -696,7 +711,7 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) } else { assert(size == 2); - dotOp = OPCODE_DP3; + dotOp = OPCODE_DP3; /* XXX use OPCODE_DP2 eventually */ swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_Y, SWIZZLE_Y); } @@ -1085,6 +1100,14 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) n->Store = n->Children[0]->Store; + if (n->Store->File == PROGRAM_SAMPLER) { + /* no code generated for sampler assignments, + * just copy the sampler index at compile time. + */ + n->Store->Index = n->Children[1]->Store->Index; + return NULL; + } + #if PEEPHOLE_OPTIMIZATIONS if (inst && _slang_is_temp(emitInfo->vt, n->Children[1]->Store) && @@ -1538,6 +1561,60 @@ emit_swizzle(slang_emit_info *emitInfo, slang_ir_node *n) /** + * Move a block registers from src to dst (or move a single register). + * \param size size of block, in floats (<=4 means one register) + */ +static struct prog_instruction * +move_block(slang_emit_info *emitInfo, + GLuint size, GLboolean relAddr, + const slang_ir_storage *dst, + const slang_ir_storage *src) +{ + struct prog_instruction *inst; + + if (size > 4) { + /* move matrix/struct etc (block of registers) */ + slang_ir_storage dstStore = *dst; + slang_ir_storage srcStore = *src; + //GLint size = srcStore.Size; + /*ASSERT(n->Children[0]->Writemask == WRITEMASK_XYZW); + ASSERT(n->Children[1]->Store->Swizzle == SWIZZLE_NOOP); + */ + dstStore.Size = 4; + srcStore.Size = 4; + while (size >= 4) { + inst = new_instruction(emitInfo, OPCODE_MOV); + inst->Comment = _mesa_strdup("IR_COPY block"); + storage_to_dst_reg(&inst->DstReg, &dstStore, WRITEMASK_XYZW); + storage_to_src_reg(&inst->SrcReg[0], &srcStore); + inst->SrcReg[0].RelAddr = relAddr; + srcStore.Index++; + dstStore.Index++; + size -= 4; + } + } + else { + /* single register move */ + GLuint writemask; + if (size == 1) { + GLuint comp = GET_SWZ(src->Swizzle, 0); + assert(comp < 4); + writemask = WRITEMASK_X << comp; + } + else { + writemask = WRITEMASK_XYZW; + } + inst = new_instruction(emitInfo, OPCODE_MOV); + storage_to_dst_reg(&inst->DstReg, dst, writemask); + storage_to_src_reg(&inst->SrcReg[0], src); + inst->SrcReg[0].RelAddr = relAddr; + } + return inst; +} + + + +/** * Dereference array element. Just resolve storage for the array * element represented by this node. */ @@ -1579,24 +1656,47 @@ emit_array_element(slang_emit_info *emitInfo, slang_ir_node *n) else { /* Variable array index */ struct prog_instruction *inst; - slang_ir_storage dstStore = *n->Store; /* do codegen for array index expression */ emit(emitInfo, n->Children[1]); - inst = new_instruction(emitInfo, OPCODE_ARL); + /* allocate temp storage for the array element */ + assert(n->Store->Index < 0); + n->Store->File = PROGRAM_TEMPORARY; + n->Store->Parent = NULL; + alloc_node_storage(emitInfo, n, -1); + + if (n->Store->Size > 4) { + /* need to multiply the index by the element size */ + GLint elemSize = (n->Store->Size + 3) / 4; + slang_ir_storage indexTemp; + + /* allocate 1 float indexTemp */ + alloc_local_temp(emitInfo, &indexTemp, 1); - if (dstStore.Size > 4) - dstStore.Size = 4; /* only emit one instruction */ + /* MUL temp, index, elemSize */ + inst = new_instruction(emitInfo, OPCODE_MUL); + storage_to_dst_reg(&inst->DstReg, &indexTemp, WRITEMASK_X); + storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); + constant_to_src_reg(&inst->SrcReg[1], elemSize, emitInfo); - storage_to_dst_reg(&inst->DstReg, &dstStore, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); + /* load ADDR[0].X = temp */ + inst = new_instruction(emitInfo, OPCODE_ARL); + storage_to_src_reg(&inst->SrcReg[0], &indexTemp); + address_to_dst_reg(&inst->DstReg, 0); - inst->DstReg.File = PROGRAM_ADDRESS; - inst->DstReg.Index = 0; /* always address register [0] */ - inst->Comment = _mesa_strdup("ARL ADDR"); + _slang_free_temp(emitInfo->vt, &indexTemp); + } + else { + /* simply load address reg w/ array index */ + inst = new_instruction(emitInfo, OPCODE_ARL); + storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); + address_to_dst_reg(&inst->DstReg, 0); + } - n->Store->RelAddr = GL_TRUE; + /* copy from array element to temp storage */ + move_block(emitInfo, n->Store->Size, GL_TRUE, + n->Store, n->Children[0]->Store); } /* if array element size is one, make sure we only access X */ @@ -1796,12 +1896,15 @@ emit(slang_emit_info *emitInfo, slang_ir_node *n) case IR_NOISE2: case IR_NOISE3: case IR_NOISE4: + case IR_NRM4: + case IR_NRM3: /* binary */ case IR_ADD: case IR_SUB: case IR_MUL: case IR_DOT4: case IR_DOT3: + case IR_DOT2: case IR_CROSS: case IR_MIN: case IR_MAX: diff --git a/src/mesa/shader/slang/slang_ir.c b/src/mesa/shader/slang/slang_ir.c index 3a0b8bf3a0d..9d055bf3543 100644 --- a/src/mesa/shader/slang/slang_ir.c +++ b/src/mesa/shader/slang/slang_ir.c @@ -27,6 +27,7 @@ #include "main/context.h" #include "slang_ir.h" #include "slang_mem.h" +#include "shader/prog_instruction.h" #include "shader/prog_print.h" @@ -36,8 +37,11 @@ static const slang_ir_info IrInfo[] = { { IR_SUB, "IR_SUB", OPCODE_SUB, 4, 2 }, { IR_MUL, "IR_MUL", OPCODE_MUL, 4, 2 }, { IR_DIV, "IR_DIV", OPCODE_NOP, 0, 2 }, /* XXX broke */ - { IR_DOT4, "IR_DOT_4", OPCODE_DP4, 1, 2 }, - { IR_DOT3, "IR_DOT_3", OPCODE_DP3, 1, 2 }, + { IR_DOT4, "IR_DOT4", OPCODE_DP4, 1, 2 }, + { IR_DOT3, "IR_DOT3", OPCODE_DP3, 1, 2 }, + { IR_DOT2, "IR_DOT2", OPCODE_DP2, 1, 2 }, + { IR_NRM4, "IR_NRM4", OPCODE_NRM4, 1, 1 }, + { IR_NRM3, "IR_NRM3", OPCODE_NRM3, 1, 1 }, { IR_CROSS, "IR_CROSS", OPCODE_XPD, 3, 2 }, { IR_LRP, "IR_LRP", OPCODE_LRP, 4, 3 }, { IR_MIN, "IR_MIN", OPCODE_MIN, 4, 2 }, @@ -56,7 +60,7 @@ static const slang_ir_info IrInfo[] = { /* unary ops */ { IR_MOVE, "IR_MOVE", OPCODE_MOV, 4, 1 }, { IR_I_TO_F, "IR_I_TO_F", OPCODE_MOV, 4, 1 }, /* int[4] to float[4] */ - { IR_F_TO_I, "IR_F_TO_I", OPCODE_INT, 4, 1 }, /* 4 floats to 4 ints */ + { IR_F_TO_I, "IR_F_TO_I", OPCODE_TRUNC, 4, 1 }, { IR_EXP, "IR_EXP", OPCODE_EXP, 1, 1 }, { IR_EXP2, "IR_EXP2", OPCODE_EX2, 1, 1 }, { IR_LOG2, "IR_LOG2", OPCODE_LG2, 1, 1 }, diff --git a/src/mesa/shader/slang/slang_ir.h b/src/mesa/shader/slang/slang_ir.h index f64f9a93b78..ab0353c28a5 100644 --- a/src/mesa/shader/slang/slang_ir.h +++ b/src/mesa/shader/slang/slang_ir.h @@ -83,6 +83,9 @@ typedef enum IR_DIV, IR_DOT4, IR_DOT3, + IR_DOT2, + IR_NRM4, + IR_NRM3, IR_CROSS, /* vec3 cross product */ IR_LRP, IR_CLAMP, diff --git a/src/mesa/shader/slang/slang_link.c b/src/mesa/shader/slang/slang_link.c index 00e89537685..2074e842094 100644 --- a/src/mesa/shader/slang/slang_link.c +++ b/src/mesa/shader/slang/slang_link.c @@ -219,6 +219,7 @@ link_uniform_vars(struct gl_shader_program *shProg, inst->Sampler, map[ inst->Sampler ]); */ /* here, texUnit is really samplerUnit */ + assert(inst->TexSrcUnit < MAX_SAMPLERS); inst->TexSrcUnit = samplerMap[inst->TexSrcUnit]; prog->SamplerTargets[inst->TexSrcUnit] = inst->TexSrcTarget; prog->SamplersUsed |= (1 << inst->TexSrcUnit); @@ -560,35 +561,39 @@ _slang_link(GLcontext *ctx, if (fragProg && shProg->FragmentProgram) { + /* Compute initial program's TexturesUsed info */ + _mesa_update_shader_textures_used(&shProg->FragmentProgram->Base); + /* notify driver that a new fragment program has been compiled/linked */ ctx->Driver.ProgramStringNotify(ctx, GL_FRAGMENT_PROGRAM_ARB, &shProg->FragmentProgram->Base); -#if 0 - printf("************** original fragment program\n"); - _mesa_print_program(&fragProg->Base); - _mesa_print_program_parameters(ctx, &fragProg->Base); -#endif -#if 0 - printf("************** linked fragment prog\n"); - _mesa_print_program(&shProg->FragmentProgram->Base); - _mesa_print_program_parameters(ctx, &shProg->FragmentProgram->Base); -#endif + if (MESA_VERBOSE & VERBOSE_GLSL_DUMP) { + printf("Mesa original fragment program:\n"); + _mesa_print_program(&fragProg->Base); + _mesa_print_program_parameters(ctx, &fragProg->Base); + + printf("Mesa post-link fragment program:\n"); + _mesa_print_program(&shProg->FragmentProgram->Base); + _mesa_print_program_parameters(ctx, &shProg->FragmentProgram->Base); + } } if (vertProg && shProg->VertexProgram) { + /* Compute initial program's TexturesUsed info */ + _mesa_update_shader_textures_used(&shProg->VertexProgram->Base); + /* notify driver that a new vertex program has been compiled/linked */ ctx->Driver.ProgramStringNotify(ctx, GL_VERTEX_PROGRAM_ARB, &shProg->VertexProgram->Base); -#if 0 - printf("************** original vertex program\n"); - _mesa_print_program(&vertProg->Base); - _mesa_print_program_parameters(ctx, &vertProg->Base); -#endif -#if 0 - printf("************** linked vertex prog\n"); - _mesa_print_program(&shProg->VertexProgram->Base); - _mesa_print_program_parameters(ctx, &shProg->VertexProgram->Base); -#endif + if (MESA_VERBOSE & VERBOSE_GLSL_DUMP) { + printf("Mesa original vertex program:\n"); + _mesa_print_program(&vertProg->Base); + _mesa_print_program_parameters(ctx, &vertProg->Base); + + printf("Mesa post-link vertex program:\n"); + _mesa_print_program(&shProg->VertexProgram->Base); + _mesa_print_program_parameters(ctx, &shProg->VertexProgram->Base); + } } shProg->LinkStatus = (shProg->VertexProgram || shProg->FragmentProgram); diff --git a/src/mesa/shader/slang/slang_log.c b/src/mesa/shader/slang/slang_log.c index 01591ceba5c..25f696f67ea 100644 --- a/src/mesa/shader/slang/slang_log.c +++ b/src/mesa/shader/slang/slang_log.c @@ -23,6 +23,7 @@ */ #include "main/imports.h" +#include "main/context.h" #include "slang_log.h" #include "slang_utility.h" @@ -86,9 +87,11 @@ slang_info_log_message(slang_info_log * log, const char *prefix, } slang_string_concat(log->text, msg); slang_string_concat(log->text, "\n"); -#if 0 /* debug */ - _mesa_printf("Mesa GLSL error/warning: %s\n", log->text); -#endif + + if (MESA_VERBOSE & VERBOSE_GLSL) { + _mesa_printf("Mesa: GLSL %s", log->text); + } + return 1; } diff --git a/src/mesa/shader/slang/slang_print.c b/src/mesa/shader/slang/slang_print.c index 4422f70159f..b88cefc283b 100644 --- a/src/mesa/shader/slang/slang_print.c +++ b/src/mesa/shader/slang/slang_print.c @@ -379,28 +379,43 @@ slang_print_tree(const slang_operation *op, int indent) case SLANG_OPER_WHILE: assert(op->num_children == 2); spaces(indent); + printf("WHILE LOOP: locals = %p\n", (void *) op->locals); + indent += 3; + spaces(indent); printf("WHILE cond:\n"); slang_print_tree(&op->children[0], indent + 3); spaces(indent); printf("WHILE body:\n"); slang_print_tree(&op->children[1], indent + 3); + indent -= 3; + spaces(indent); + printf("END WHILE LOOP\n"); break; case SLANG_OPER_DO: spaces(indent); + printf("DO LOOP: locals = %p\n", (void *) op->locals); + indent += 3; + spaces(indent); printf("DO body:\n"); slang_print_tree(&op->children[0], indent + 3); spaces(indent); printf("DO cond:\n"); slang_print_tree(&op->children[1], indent + 3); + indent -= 3; + spaces(indent); + printf("END DO LOOP\n"); break; case SLANG_OPER_FOR: spaces(indent); + printf("FOR LOOP: locals = %p\n", (void *) op->locals); + indent += 3; + spaces(indent); printf("FOR init:\n"); slang_print_tree(&op->children[0], indent + 3); spaces(indent); - printf("FOR while:\n"); + printf("FOR condition:\n"); slang_print_tree(&op->children[1], indent + 3); spaces(indent); printf("FOR step:\n"); @@ -408,6 +423,7 @@ slang_print_tree(const slang_operation *op, int indent) spaces(indent); printf("FOR body:\n"); slang_print_tree(&op->children[3], indent + 3); + indent -= 3; spaces(indent); printf("ENDFOR\n"); /* diff --git a/src/mesa/shader/slang/slang_vartable.c b/src/mesa/shader/slang/slang_vartable.c index 9b607e64037..95971a70a93 100644 --- a/src/mesa/shader/slang/slang_vartable.c +++ b/src/mesa/shader/slang/slang_vartable.c @@ -115,6 +115,11 @@ _slang_pop_var_table(slang_var_table *vt) store->Index, _mesa_swizzle_string(store->Swizzle, 0, 0)); + if (store->File == PROGRAM_SAMPLER) { + /* samplers have no storage */ + continue; + } + if (store->Size == 1) comp = GET_SWZ(store->Swizzle, 0); else @@ -241,7 +246,15 @@ GLboolean _slang_alloc_var(slang_var_table *vt, slang_ir_storage *store) { struct table *t = vt->Top; - const int i = alloc_reg(vt, store->Size, GL_FALSE); + int i; + + if (store->File == PROGRAM_SAMPLER) { + /* don't really allocate storage */ + store->Index = 0; + return GL_TRUE; + } + + i = alloc_reg(vt, store->Size, GL_FALSE); if (i < 0) return GL_FALSE; diff --git a/src/mesa/state_tracker/st_atom_framebuffer.c b/src/mesa/state_tracker/st_atom_framebuffer.c index b4f42c6f93f..ca1a719a9ac 100644 --- a/src/mesa/state_tracker/st_atom_framebuffer.c +++ b/src/mesa/state_tracker/st_atom_framebuffer.c @@ -116,10 +116,11 @@ update_framebuffer_state( struct st_context *st ) /* rendering to a GL texture, may have to update surface */ update_renderbuffer_surface(st, strb); } - - assert(strb->surface); - framebuffer->cbufs[framebuffer->num_cbufs] = strb->surface; - framebuffer->num_cbufs++; + + if (strb->surface) { + framebuffer->cbufs[framebuffer->num_cbufs] = strb->surface; + framebuffer->num_cbufs++; + } } strb = st_renderbuffer(fb->Attachment[BUFFER_DEPTH].Renderbuffer); @@ -130,7 +131,6 @@ update_framebuffer_state( struct st_context *st ) update_renderbuffer_surface(st, strb); } - assert(strb->surface); framebuffer->zsbuf = strb->surface; } else { diff --git a/src/mesa/state_tracker/st_cb_bitmap.c b/src/mesa/state_tracker/st_cb_bitmap.c index 694104f9cfb..3d508227e12 100644 --- a/src/mesa/state_tracker/st_cb_bitmap.c +++ b/src/mesa/state_tracker/st_cb_bitmap.c @@ -779,7 +779,7 @@ st_destroy_bitmap(struct st_context *st) } if (st->bitmap.vbuf) { - pipe_buffer_destroy(pipe->screen, st->bitmap.vbuf); + pipe_buffer_reference(pipe->screen, &st->bitmap.vbuf, NULL); st->bitmap.vbuf = NULL; } diff --git a/src/mesa/state_tracker/st_cb_clear.c b/src/mesa/state_tracker/st_cb_clear.c index 47ad3c2bc12..1412a3761f1 100644 --- a/src/mesa/state_tracker/st_cb_clear.c +++ b/src/mesa/state_tracker/st_cb_clear.c @@ -116,7 +116,7 @@ st_destroy_clear(struct st_context *st) st->clear.vs = NULL; } if (st->clear.vbuf) { - pipe_buffer_destroy(pipe->screen, st->clear.vbuf); + pipe_buffer_reference(pipe->screen, &st->clear.vbuf, NULL); st->clear.vbuf = NULL; } } @@ -406,13 +406,17 @@ check_clear_stencil_with_quad(GLcontext *ctx, struct gl_renderbuffer *rb) static void clear_color_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) { + struct st_renderbuffer *strb = st_renderbuffer(rb); + + if (!strb->surface) + return; + if (check_clear_color_with_quad( ctx, rb )) { /* masking or scissoring */ clear_with_quad(ctx, GL_TRUE, GL_FALSE, GL_FALSE); } else { /* clear whole buffer w/out masking */ - struct st_renderbuffer *strb = st_renderbuffer(rb); uint clearValue; /* NOTE: we always pass the clear color as PIPE_FORMAT_A8R8G8B8_UNORM * at this time! @@ -426,13 +430,16 @@ clear_color_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) static void clear_depth_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) { + struct st_renderbuffer *strb = st_renderbuffer(rb); + + if (!strb->surface) + return; + if (check_clear_depth_with_quad(ctx, rb)) { /* scissoring or we have a combined depth/stencil buffer */ clear_with_quad(ctx, GL_FALSE, GL_TRUE, GL_FALSE); } else { - struct st_renderbuffer *strb = st_renderbuffer(rb); - /* simple clear of whole buffer */ uint clearValue = util_pack_z(strb->surface->format, ctx->Depth.Clear); ctx->st->pipe->clear(ctx->st->pipe, strb->surface, clearValue); @@ -443,13 +450,16 @@ clear_depth_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) static void clear_stencil_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) { + struct st_renderbuffer *strb = st_renderbuffer(rb); + + if (!strb->surface) + return; + if (check_clear_stencil_with_quad(ctx, rb)) { /* masking or scissoring or combined depth/stencil buffer */ clear_with_quad(ctx, GL_FALSE, GL_FALSE, GL_TRUE); } else { - struct st_renderbuffer *strb = st_renderbuffer(rb); - /* simple clear of whole buffer */ GLuint clearValue = ctx->Stencil.Clear; @@ -469,14 +479,16 @@ clear_stencil_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) static void clear_depth_stencil_buffer(GLcontext *ctx, struct gl_renderbuffer *rb) { + struct st_renderbuffer *strb = st_renderbuffer(rb); + + if (!strb->surface) + return; if (check_clear_depth_stencil_with_quad(ctx, rb)) { /* masking or scissoring */ clear_with_quad(ctx, GL_FALSE, GL_TRUE, GL_TRUE); } else { - struct st_renderbuffer *strb = st_renderbuffer(rb); - /* clear whole buffer w/out masking */ GLuint clearValue = util_pack_z(strb->surface->format, ctx->Depth.Clear); diff --git a/src/mesa/state_tracker/st_draw.c b/src/mesa/state_tracker/st_draw.c index 61949a93884..7cf06da43cc 100644 --- a/src/mesa/state_tracker/st_draw.c +++ b/src/mesa/state_tracker/st_draw.c @@ -33,6 +33,7 @@ #include "main/imports.h" #include "main/image.h" #include "main/macros.h" +#include "shader/prog_uniform.h" #include "vbo/vbo.h" @@ -483,6 +484,28 @@ setup_non_interleaved_attribs(GLcontext *ctx, +/** + * Prior to drawing, check that any uniforms referenced by the + * current shader have been set. If a uniform has not been set, + * issue a warning. + */ +static void +check_uniforms(GLcontext *ctx) +{ + const struct gl_shader_program *shProg = ctx->Shader.CurrentProgram; + if (shProg && shProg->LinkStatus) { + GLuint i; + for (i = 0; i < shProg->Uniforms->NumUniforms; i++) { + const struct gl_uniform *u = &shProg->Uniforms->Uniforms[i]; + if (!u->Initialized) { + _mesa_warning(ctx, + "Using shader with uninitialized uniform: %s", + u->Name); + } + } + } +} + /** * This function gets plugged into the VBO module and is called when @@ -516,6 +539,10 @@ st_draw_vbo(GLcontext *ctx, vp = ctx->st->vp; vs = &ctx->st->vp->state; + if (MESA_VERBOSE & VERBOSE_GLSL) { + check_uniforms(ctx); + } + /* * Setup the vbuffer[] and velements[] arrays. */ @@ -557,6 +584,9 @@ st_draw_vbo(GLcontext *ctx, pipe->set_vertex_buffers(pipe, num_vbuffers, vbuffer); pipe->set_vertex_elements(pipe, num_velements, velements); + if (num_vbuffers == 0 || num_velements == 0) + return; + /* do actual drawing */ if (ib) { /* indexed primitive */ diff --git a/src/mesa/state_tracker/st_framebuffer.c b/src/mesa/state_tracker/st_framebuffer.c index 1ff70093823..6fd731d209d 100644 --- a/src/mesa/state_tracker/st_framebuffer.c +++ b/src/mesa/state_tracker/st_framebuffer.c @@ -176,7 +176,9 @@ st_set_framebuffer_surface(struct st_framebuffer *stfb, assert(surfIndex < BUFFER_COUNT); strb = st_renderbuffer(stfb->Base.Attachment[surfIndex].Renderbuffer); - assert(strb); + + /* fail */ + if (!strb) return; /* replace the renderbuffer's surface/texture pointers */ pipe_surface_reference( &strb->surface, surf ); @@ -289,7 +291,8 @@ st_notify_swapbuffers_complete(struct st_framebuffer *stfb) for (i = 0; i < BUFFER_COUNT; i++) { if (stfb->Base.Attachment[i].Renderbuffer) { strb = st_renderbuffer(stfb->Base.Attachment[i].Renderbuffer); - strb->surface->status = PIPE_SURFACE_STATUS_UNDEFINED; + if (strb->surface) + strb->surface->status = PIPE_SURFACE_STATUS_UNDEFINED; } } } diff --git a/src/mesa/state_tracker/st_mesa_to_tgsi.c b/src/mesa/state_tracker/st_mesa_to_tgsi.c index 50e638df46b..59c1abe4882 100644 --- a/src/mesa/state_tracker/st_mesa_to_tgsi.c +++ b/src/mesa/state_tracker/st_mesa_to_tgsi.c @@ -346,6 +346,12 @@ compile_instruction( case OPCODE_DDY: fullinst->Instruction.Opcode = TGSI_OPCODE_DDY; break; + case OPCODE_DP2: + fullinst->Instruction.Opcode = TGSI_OPCODE_DP2; + break; + case OPCODE_DP2A: + fullinst->Instruction.Opcode = TGSI_OPCODE_DP2A; + break; case OPCODE_DP3: fullinst->Instruction.Opcode = TGSI_OPCODE_DP3; break; @@ -389,8 +395,8 @@ compile_instruction( fullinst->Instruction.Opcode = TGSI_OPCODE_IF; fullinst->InstructionExtLabel.Label = inst->BranchTarget + preamble_size; break; - case OPCODE_INT: - fullinst->Instruction.Opcode = TGSI_OPCODE_INT; + case OPCODE_TRUNC: + fullinst->Instruction.Opcode = TGSI_OPCODE_TRUNC; break; case OPCODE_KIL: /* conditional */ @@ -443,6 +449,12 @@ compile_instruction( case OPCODE_NOP: fullinst->Instruction.Opcode = TGSI_OPCODE_NOP; break; + case OPCODE_NRM3: + fullinst->Instruction.Opcode = TGSI_OPCODE_NRM; + break; + case OPCODE_NRM4: + fullinst->Instruction.Opcode = TGSI_OPCODE_NRM4; + break; case OPCODE_POW: fullinst->Instruction.Opcode = TGSI_OPCODE_POW; break; @@ -492,6 +504,9 @@ compile_instruction( case OPCODE_SNE: fullinst->Instruction.Opcode = TGSI_OPCODE_SNE; break; + case OPCODE_SSG: + fullinst->Instruction.Opcode = TGSI_OPCODE_SSG; + break; case OPCODE_SUB: fullinst->Instruction.Opcode = TGSI_OPCODE_SUB; break; diff --git a/src/mesa/state_tracker/st_program.c b/src/mesa/state_tracker/st_program.c index 55b52c37451..af0df22dc59 100644 --- a/src/mesa/state_tracker/st_program.c +++ b/src/mesa/state_tracker/st_program.c @@ -512,3 +512,19 @@ st_translate_fragment_program(struct st_context *st, tgsi_dump( fs.tokens, 0/*TGSI_DUMP_VERBOSE*/ ); } + +/** + * Debug- print current shader text + */ +void +st_print_shaders(GLcontext *ctx) +{ + struct gl_shader_program *shProg = ctx->Shader.CurrentProgram; + if (shProg) { + GLuint i; + for (i = 0; i < shProg->NumShaders; i++) { + printf("GLSL shader %u of %u:\n", i, shProg->NumShaders); + printf("%s\n", shProg->Shaders[i]->Source); + } + } +} diff --git a/src/mesa/state_tracker/st_program.h b/src/mesa/state_tracker/st_program.h index 078e2c42a69..e2e5eddef22 100644 --- a/src/mesa/state_tracker/st_program.h +++ b/src/mesa/state_tracker/st_program.h @@ -151,4 +151,8 @@ st_translate_vertex_program(struct st_context *st, const ubyte *fs_input_semantic_index); +extern void +st_print_shaders(GLcontext *ctx); + + #endif |