* OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
* USE OR OTHER DEALINGS IN THE SOFTWARE. */
+#define NINE_STATE
+
#include "device9.h"
+#include "swapchain9.h"
#include "basetexture9.h"
#include "buffer9.h"
#include "indexbuffer9.h"
#include "pipe/p_context.h"
#include "pipe/p_state.h"
#include "cso_cache/cso_context.h"
+#include "util/u_atomic.h"
#include "util/u_upload_mgr.h"
#include "util/u_math.h"
#include "util/u_box.h"
#include "util/u_simple_shaders.h"
+#include "util/u_gen_mipmap.h"
+
+/* CSMT headers */
+#include "nine_queue.h"
+#include "nine_csmt_helper.h"
+#include "os/os_thread.h"
#define DBG_CHANNEL DBG_DEVICE
+/* Nine CSMT */
+
+struct csmt_instruction {
+ int (* func)(struct NineDevice9 *This, struct csmt_instruction *instr);
+};
+
+struct csmt_context {
+ pipe_thread worker;
+ struct nine_queue_pool* pool;
+ BOOL terminate;
+ pipe_condvar event_processed;
+ pipe_mutex mutex_processed;
+ struct NineDevice9 *device;
+ BOOL processed;
+ BOOL toPause;
+ BOOL hasPaused;
+ pipe_mutex thread_running;
+ pipe_mutex thread_resume;
+};
+
+/* Wait for instruction to be processed.
+ * Caller has to ensure that only one thread waits at time.
+ */
+static void
+nine_csmt_wait_processed(struct csmt_context *ctx)
+{
+ pipe_mutex_lock(ctx->mutex_processed);
+ while (!p_atomic_read(&ctx->processed)) {
+ cnd_wait(&ctx->event_processed, &ctx->mutex_processed);
+ }
+ pipe_mutex_unlock(ctx->mutex_processed);
+}
+
+/* CSMT worker thread */
+static
+PIPE_THREAD_ROUTINE(nine_csmt_worker, arg)
+{
+ struct csmt_context *ctx = arg;
+ struct csmt_instruction *instr;
+ DBG("CSMT worker spawned\n");
+
+ pipe_thread_setname("CSMT-Worker");
+
+ while (1) {
+ nine_queue_wait_flush(ctx->pool);
+ pipe_mutex_lock(ctx->thread_running);
+
+ /* Get instruction. NULL on empty cmdbuf. */
+ while (!p_atomic_read(&ctx->terminate) &&
+ (instr = (struct csmt_instruction *)nine_queue_get(ctx->pool))) {
+
+ /* decode */
+ if (instr->func(ctx->device, instr)) {
+ pipe_mutex_lock(ctx->mutex_processed);
+ p_atomic_set(&ctx->processed, TRUE);
+ pipe_condvar_signal(ctx->event_processed);
+ pipe_mutex_unlock(ctx->mutex_processed);
+ }
+ if (p_atomic_read(&ctx->toPause)) {
+ pipe_mutex_unlock(ctx->thread_running);
+ /* will wait here the thread can be resumed */
+ pipe_mutex_lock(ctx->thread_resume);
+ pipe_mutex_lock(ctx->thread_running);
+ pipe_mutex_unlock(ctx->thread_resume);
+ }
+ }
+
+ pipe_mutex_unlock(ctx->thread_running);
+ if (p_atomic_read(&ctx->terminate)) {
+ pipe_mutex_lock(ctx->mutex_processed);
+ p_atomic_set(&ctx->processed, TRUE);
+ pipe_condvar_signal(ctx->event_processed);
+ pipe_mutex_unlock(ctx->mutex_processed);
+ break;
+ }
+ }
+
+ DBG("CSMT worker destroyed\n");
+ return 0;
+}
+
+/* Create a CSMT context.
+ * Spawns a worker thread.
+ */
+struct csmt_context *
+nine_csmt_create( struct NineDevice9 *This )
+{
+ struct csmt_context *ctx;
+
+ ctx = CALLOC_STRUCT(csmt_context);
+ if (!ctx)
+ return NULL;
+
+ ctx->pool = nine_queue_create();
+ if (!ctx->pool) {
+ FREE(ctx);
+ return NULL;
+ }
+ cnd_init(&ctx->event_processed);
+ pipe_mutex_init(ctx->mutex_processed);
+ pipe_mutex_init(ctx->thread_running);
+ pipe_mutex_init(ctx->thread_resume);
+
+#if DEBUG
+ pipe_thread_setname("Main thread");
+#endif
+
+ ctx->device = This;
+
+ ctx->worker = pipe_thread_create(nine_csmt_worker, ctx);
+ if (!ctx->worker) {
+ nine_queue_delete(ctx->pool);
+ FREE(ctx);
+ return NULL;
+ }
+
+ DBG("Returning context %p\n", ctx);
+
+ return ctx;
+}
+
+static int
+nop_func( struct NineDevice9 *This, struct csmt_instruction *instr )
+{
+ (void) This;
+ (void) instr;
+
+ return 1;
+}
+
+/* Push nop instruction and flush the queue.
+ * Waits for the worker to complete. */
+void
+nine_csmt_process( struct NineDevice9 *device )
+{
+ struct csmt_instruction* instr;
+ struct csmt_context *ctx = device->csmt_ctx;
+
+ if (!device->csmt_active)
+ return;
+
+ if (nine_queue_isempty(ctx->pool))
+ return;
+
+ DBG("device=%p\n", device);
+
+ /* NOP */
+ instr = nine_queue_alloc(ctx->pool, sizeof(struct csmt_instruction));
+ assert(instr);
+ instr->func = nop_func;
+
+ p_atomic_set(&ctx->processed, FALSE);
+ nine_queue_flush(ctx->pool);
+
+ nine_csmt_wait_processed(ctx);
+}
+
+/* Destroys a CSMT context.
+ * Waits for the worker thread to terminate.
+ */
+void
+nine_csmt_destroy( struct NineDevice9 *device, struct csmt_context *ctx )
+{
+ struct csmt_instruction* instr;
+ pipe_thread render_thread = ctx->worker;
+
+ DBG("device=%p ctx=%p\n", device, ctx);
+
+ /* Push nop and flush the queue. */
+ instr = nine_queue_alloc(ctx->pool, sizeof(struct csmt_instruction));
+ assert(instr);
+ instr->func = nop_func;
+
+ p_atomic_set(&ctx->processed, FALSE);
+ /* Signal worker to terminate. */
+ p_atomic_set(&ctx->terminate, TRUE);
+ nine_queue_flush(ctx->pool);
+
+ nine_csmt_wait_processed(ctx);
+ nine_queue_delete(ctx->pool);
+ pipe_mutex_destroy(ctx->mutex_processed);
+
+ FREE(ctx);
+
+ pipe_thread_wait(render_thread);
+}
+
+static void
+nine_csmt_pause( struct NineDevice9 *device )
+{
+ struct csmt_context *ctx = device->csmt_ctx;
+
+ if (!device->csmt_active)
+ return;
+
+ /* No need to pause the thread */
+ if (nine_queue_no_flushed_work(ctx->pool))
+ return;
+
+ pipe_mutex_lock(ctx->thread_resume);
+ p_atomic_set(&ctx->toPause, TRUE);
+
+ /* Wait the thread is paused */
+ pipe_mutex_lock(ctx->thread_running);
+ ctx->hasPaused = TRUE;
+ p_atomic_set(&ctx->toPause, FALSE);
+}
+
+static void
+nine_csmt_resume( struct NineDevice9 *device )
+{
+ struct csmt_context *ctx = device->csmt_ctx;
+
+ if (!device->csmt_active)
+ return;
+
+ if (!ctx->hasPaused)
+ return;
+
+ ctx->hasPaused = FALSE;
+ pipe_mutex_unlock(ctx->thread_running);
+ pipe_mutex_unlock(ctx->thread_resume);
+}
+
+struct pipe_context *
+nine_context_get_pipe( struct NineDevice9 *device )
+{
+ nine_csmt_process(device);
+ return device->context.pipe;
+}
+
+struct pipe_context *
+nine_context_get_pipe_multithread( struct NineDevice9 *device )
+{
+ struct csmt_context *ctx = device->csmt_ctx;
+
+ if (!device->csmt_active)
+ return device->context.pipe;
+
+ if (!pipe_thread_is_self(ctx->worker))
+ nine_csmt_process(device);
+
+ return device->context.pipe;
+}
+
+struct pipe_context *
+nine_context_get_pipe_acquire( struct NineDevice9 *device )
+{
+ nine_csmt_pause(device);
+ return device->context.pipe;
+}
+
+void
+nine_context_get_pipe_release( struct NineDevice9 *device )
+{
+ nine_csmt_resume(device);
+}
+
+/* Nine state functions */
+
/* Check if some states need to be set dirty */
static inline DWORD
static inline void
prepare_blend(struct NineDevice9 *device)
{
- nine_convert_blend_state(&device->context.pipe.blend, device->context.rs);
+ nine_convert_blend_state(&device->context.pipe_data.blend, device->context.rs);
device->context.commit |= NINE_STATE_COMMIT_BLEND;
}
static inline void
prepare_dsa(struct NineDevice9 *device)
{
- nine_convert_dsa_state(&device->context.pipe.dsa, device->context.rs);
+ nine_convert_dsa_state(&device->context.pipe_data.dsa, device->context.rs);
device->context.commit |= NINE_STATE_COMMIT_DSA;
}
static inline void
prepare_rasterizer(struct NineDevice9 *device)
{
- nine_convert_rasterizer_state(device, &device->context.pipe.rast, device->context.rs);
+ nine_convert_rasterizer_state(device, &device->context.pipe_data.rast, device->context.rs);
device->context.commit |= NINE_STATE_COMMIT_RASTERIZER;
}
static void
prepare_vs_constants_userbuf_swvp(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
- if (context->changed.vs_const_f || state->changed.group & NINE_STATE_SWVP) {
+ if (context->changed.vs_const_f || context->changed.group & NINE_STATE_SWVP) {
struct pipe_constant_buffer cb;
cb.buffer_offset = 0;
/* Do not erase the buffer field.
* It is either NULL (user_cbufs), or a resource.
* u_upload_data will do the proper refcount */
- context->pipe.cb0_swvp.buffer_offset = cb.buffer_offset;
- context->pipe.cb0_swvp.buffer_size = cb.buffer_size;
- context->pipe.cb0_swvp.user_buffer = cb.user_buffer;
+ context->pipe_data.cb0_swvp.buffer_offset = cb.buffer_offset;
+ context->pipe_data.cb0_swvp.buffer_size = cb.buffer_size;
+ context->pipe_data.cb0_swvp.user_buffer = cb.user_buffer;
cb.user_buffer = (char *)cb.user_buffer + 4096 * sizeof(float[4]);
- context->pipe.cb1_swvp.buffer_offset = cb.buffer_offset;
- context->pipe.cb1_swvp.buffer_size = cb.buffer_size;
- context->pipe.cb1_swvp.user_buffer = cb.user_buffer;
+ context->pipe_data.cb1_swvp.buffer_offset = cb.buffer_offset;
+ context->pipe_data.cb1_swvp.buffer_size = cb.buffer_size;
+ context->pipe_data.cb1_swvp.user_buffer = cb.user_buffer;
context->changed.vs_const_f = 0;
}
- if (context->changed.vs_const_i || state->changed.group & NINE_STATE_SWVP) {
+ if (context->changed.vs_const_i || context->changed.group & NINE_STATE_SWVP) {
struct pipe_constant_buffer cb;
cb.buffer_offset = 0;
cb.buffer_size = 2048 * sizeof(float[4]);
cb.user_buffer = context->vs_const_i;
- context->pipe.cb2_swvp.buffer_offset = cb.buffer_offset;
- context->pipe.cb2_swvp.buffer_size = cb.buffer_size;
- context->pipe.cb2_swvp.user_buffer = cb.user_buffer;
+ context->pipe_data.cb2_swvp.buffer_offset = cb.buffer_offset;
+ context->pipe_data.cb2_swvp.buffer_size = cb.buffer_size;
+ context->pipe_data.cb2_swvp.user_buffer = cb.user_buffer;
context->changed.vs_const_i = 0;
}
- if (context->changed.vs_const_b || state->changed.group & NINE_STATE_SWVP) {
+ if (context->changed.vs_const_b || context->changed.group & NINE_STATE_SWVP) {
struct pipe_constant_buffer cb;
cb.buffer_offset = 0;
cb.buffer_size = 512 * sizeof(float[4]);
cb.user_buffer = context->vs_const_b;
- context->pipe.cb3_swvp.buffer_offset = cb.buffer_offset;
- context->pipe.cb3_swvp.buffer_size = cb.buffer_size;
- context->pipe.cb3_swvp.user_buffer = cb.user_buffer;
+ context->pipe_data.cb3_swvp.buffer_offset = cb.buffer_offset;
+ context->pipe_data.cb3_swvp.buffer_size = cb.buffer_size;
+ context->pipe_data.cb3_swvp.user_buffer = cb.user_buffer;
context->changed.vs_const_b = 0;
}
if (!device->driver_caps.user_cbufs) {
- struct pipe_constant_buffer *cb = &(context->pipe.cb0_swvp);
- u_upload_data(device->constbuf_uploader,
+ struct pipe_constant_buffer *cb = &(context->pipe_data.cb0_swvp);
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb->buffer_size,
device->constbuf_alignment,
cb->user_buffer,
&(cb->buffer_offset),
&(cb->buffer));
- u_upload_unmap(device->constbuf_uploader);
+ u_upload_unmap(device->context.pipe->const_uploader);
cb->user_buffer = NULL;
- cb = &(context->pipe.cb1_swvp);
- u_upload_data(device->constbuf_uploader,
+ cb = &(context->pipe_data.cb1_swvp);
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb->buffer_size,
device->constbuf_alignment,
cb->user_buffer,
&(cb->buffer_offset),
&(cb->buffer));
- u_upload_unmap(device->constbuf_uploader);
+ u_upload_unmap(device->context.pipe->const_uploader);
cb->user_buffer = NULL;
- cb = &(context->pipe.cb2_swvp);
- u_upload_data(device->constbuf_uploader,
+ cb = &(context->pipe_data.cb2_swvp);
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb->buffer_size,
device->constbuf_alignment,
cb->user_buffer,
&(cb->buffer_offset),
&(cb->buffer));
- u_upload_unmap(device->constbuf_uploader);
+ u_upload_unmap(device->context.pipe->const_uploader);
cb->user_buffer = NULL;
- cb = &(context->pipe.cb3_swvp);
- u_upload_data(device->constbuf_uploader,
+ cb = &(context->pipe_data.cb3_swvp);
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb->buffer_size,
device->constbuf_alignment,
cb->user_buffer,
&(cb->buffer_offset),
&(cb->buffer));
- u_upload_unmap(device->constbuf_uploader);
+ u_upload_unmap(device->context.pipe->const_uploader);
cb->user_buffer = NULL;
}
- state->changed.group &= ~NINE_STATE_VS_CONST;
+ context->changed.group &= ~NINE_STATE_VS_CONST;
context->commit |= NINE_STATE_COMMIT_CONST_VS;
}
static void
prepare_vs_constants_userbuf(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
struct pipe_constant_buffer cb;
cb.buffer = NULL;
cb.buffer_size = context->vs->const_used_size;
cb.user_buffer = context->vs_const_f;
- if (device->swvp) {
+ if (context->swvp) {
prepare_vs_constants_userbuf_swvp(device);
return;
}
- if (context->changed.vs_const_i || state->changed.group & NINE_STATE_SWVP) {
+ if (context->changed.vs_const_i || context->changed.group & NINE_STATE_SWVP) {
int *idst = (int *)&context->vs_const_f[4 * device->max_vs_const_f];
memcpy(idst, context->vs_const_i, NINE_MAX_CONST_I * sizeof(int[4]));
context->changed.vs_const_i = 0;
}
- if (context->changed.vs_const_b || state->changed.group & NINE_STATE_SWVP) {
+ if (context->changed.vs_const_b || context->changed.group & NINE_STATE_SWVP) {
int *idst = (int *)&context->vs_const_f[4 * device->max_vs_const_f];
uint32_t *bdst = (uint32_t *)&idst[4 * NINE_MAX_CONST_I];
memcpy(bdst, context->vs_const_b, NINE_MAX_CONST_B * sizeof(BOOL));
}
if (!device->driver_caps.user_cbufs) {
- context->pipe.cb_vs.buffer_size = cb.buffer_size;
- u_upload_data(device->constbuf_uploader,
+ context->pipe_data.cb_vs.buffer_size = cb.buffer_size;
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb.buffer_size,
device->constbuf_alignment,
cb.user_buffer,
- &context->pipe.cb_vs.buffer_offset,
- &context->pipe.cb_vs.buffer);
- u_upload_unmap(device->constbuf_uploader);
- context->pipe.cb_vs.user_buffer = NULL;
+ &context->pipe_data.cb_vs.buffer_offset,
+ &context->pipe_data.cb_vs.buffer);
+ u_upload_unmap(device->context.pipe->const_uploader);
+ context->pipe_data.cb_vs.user_buffer = NULL;
} else
- context->pipe.cb_vs = cb;
+ context->pipe_data.cb_vs = cb;
context->changed.vs_const_f = 0;
- state->changed.group &= ~NINE_STATE_VS_CONST;
+ context->changed.group &= ~NINE_STATE_VS_CONST;
context->commit |= NINE_STATE_COMMIT_CONST_VS;
}
static void
prepare_ps_constants_userbuf(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
struct pipe_constant_buffer cb;
cb.buffer = NULL;
cb.buffer_offset = 0;
- cb.buffer_size = device->state.ps->const_used_size;
+ cb.buffer_size = context->ps->const_used_size;
cb.user_buffer = context->ps_const_f;
if (context->changed.ps_const_i) {
}
/* Upload special constants needed to implement PS1.x instructions like TEXBEM,TEXBEML and BEM */
- if (device->state.ps->bumpenvmat_needed) {
+ if (context->ps->bumpenvmat_needed) {
memcpy(context->ps_lconstf_temp, cb.user_buffer, cb.buffer_size);
memcpy(&context->ps_lconstf_temp[4 * 8], &device->context.bumpmap_vars, sizeof(device->context.bumpmap_vars));
cb.user_buffer = context->ps_lconstf_temp;
}
- if (state->ps->byte_code.version < 0x30 &&
+ if (context->ps->byte_code.version < 0x30 &&
context->rs[D3DRS_FOGENABLE]) {
float *dst = &context->ps_lconstf_temp[4 * 32];
if (cb.user_buffer != context->ps_lconstf_temp) {
return;
if (!device->driver_caps.user_cbufs) {
- context->pipe.cb_ps.buffer_size = cb.buffer_size;
- u_upload_data(device->constbuf_uploader,
+ context->pipe_data.cb_ps.buffer_size = cb.buffer_size;
+ u_upload_data(device->context.pipe->const_uploader,
0,
cb.buffer_size,
device->constbuf_alignment,
cb.user_buffer,
- &context->pipe.cb_ps.buffer_offset,
- &context->pipe.cb_ps.buffer);
- u_upload_unmap(device->constbuf_uploader);
- context->pipe.cb_ps.user_buffer = NULL;
+ &context->pipe_data.cb_ps.buffer_offset,
+ &context->pipe_data.cb_ps.buffer);
+ u_upload_unmap(device->context.pipe->const_uploader);
+ context->pipe_data.cb_ps.user_buffer = NULL;
} else
- context->pipe.cb_ps = cb;
+ context->pipe_data.cb_ps = cb;
context->changed.ps_const_f = 0;
- state->changed.group &= ~NINE_STATE_PS_CONST;
+ context->changed.group &= ~NINE_STATE_PS_CONST;
context->commit |= NINE_STATE_COMMIT_CONST_PS;
}
/* likely because we dislike FF */
if (likely(context->programmable_vs)) {
- context->cso.vs = NineVertexShader9_GetVariant(vs);
+ context->cso_shader.vs = NineVertexShader9_GetVariant(vs);
} else {
vs = device->ff.vs;
- context->cso.vs = vs->ff_cso;
+ context->cso_shader.vs = vs->ff_cso;
}
if (context->rs[NINED3DRS_VSPOINTSIZE] != vs->point_size) {
static inline uint32_t
prepare_ps(struct NineDevice9 *device, uint8_t shader_changed)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
- struct NinePixelShader9 *ps = state->ps;
+ struct NinePixelShader9 *ps = context->ps;
uint32_t changed_group = 0;
int has_key_changed = 0;
return 0;
if (likely(ps)) {
- context->cso.ps = NinePixelShader9_GetVariant(ps);
+ context->cso_shader.ps = NinePixelShader9_GetVariant(ps);
} else {
ps = device->ff.ps;
- context->cso.ps = ps->ff_cso;
+ context->cso_shader.ps = ps->ff_cso;
}
if ((context->bound_samplers_mask_ps & ps->sampler_mask) != ps->sampler_mask)
static void
update_framebuffer(struct NineDevice9 *device, bool is_clear)
{
- struct pipe_context *pipe = device->pipe;
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
- struct pipe_framebuffer_state *fb = &context->pipe.fb;
+ struct pipe_context *pipe = context->pipe;
+ struct pipe_framebuffer_state *fb = &context->pipe_data.fb;
unsigned i;
struct NineSurface9 *rt0 = context->rt[0];
unsigned w = rt0->desc.Width;
unsigned h = rt0->desc.Height;
unsigned nr_samples = rt0->base.info.nr_samples;
- unsigned ps_mask = state->ps ? state->ps->rt_mask : 1;
+ unsigned ps_mask = context->ps ? context->ps->rt_mask : 1;
unsigned mask = is_clear ? 0xf : ps_mask;
const int sRGB = context->rs[D3DRS_SRGBWRITEENABLE] ? 1 : 0;
fb->cbufs[i] = NineSurface9_GetSurface(rt, sRGB);
context->rt_mask |= 1 << i;
fb->nr_cbufs = i + 1;
-
- if (unlikely(rt->desc.Usage & D3DUSAGE_AUTOGENMIPMAP)) {
- assert(rt->texture == D3DRTYPE_TEXTURE ||
- rt->texture == D3DRTYPE_CUBETEXTURE);
- NineBaseTexture9(rt->base.base.container)->dirty_mip = TRUE;
- }
} else {
/* Color outputs must match RT slot,
* drivers will have to handle NULL entries for GL, too.
pipe->set_framebuffer_state(pipe, fb); /* XXX: cso ? */
if (is_clear && context->rt_mask == ps_mask)
- state->changed.group &= ~NINE_STATE_FB;
+ context->changed.group &= ~NINE_STATE_FB;
}
static void
update_viewport(struct NineDevice9 *device)
{
- const D3DVIEWPORT9 *vport = &device->context.viewport;
+ struct nine_context *context = &device->context;
+ const D3DVIEWPORT9 *vport = &context->viewport;
struct pipe_viewport_state pvport;
/* D3D coordinates are:
pvport.translate[1] -= 1.0f / 128.0f;
}
- cso_set_viewport(device->cso, &pvport);
+ cso_set_viewport(context->cso, &pvport);
}
/* Loop through VS inputs and pick the vertex elements with the declared
static void
update_vertex_elements(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
const struct NineVertexDeclaration9 *vdecl = device->context.vdecl;
const struct NineVertexShader9 *vs;
b = ve[n].vertex_buffer_index;
context->stream_usage_mask |= 1 << b;
/* XXX wine just uses 1 here: */
- if (state->stream_freq[b] & D3DSTREAMSOURCE_INSTANCEDATA)
- ve[n].instance_divisor = state->stream_freq[b] & 0x7FFFFF;
+ if (context->stream_freq[b] & D3DSTREAMSOURCE_INSTANCEDATA)
+ ve[n].instance_divisor = context->stream_freq[b] & 0x7FFFFF;
} else {
/* if the vertex declaration is incomplete compared to what the
* vertex shader needs, we bind a dummy vbo with 0 0 0 0.
context->dummy_vbo_bound_at = dummy_vbo_stream;
}
- cso_set_vertex_elements(device->cso, vs->num_inputs, ve);
+ cso_set_vertex_elements(context->cso, vs->num_inputs, ve);
}
static void
update_vertex_buffers(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
struct pipe_vertex_buffer dummy_vtxbuf;
uint32_t mask = context->changed.vtxbuf;
unsigned i;
{
boolean changed = FALSE;
- if (context->samp[s][NINED3DSAMP_SHADOW] != context->texture[s]->shadow) {
+ if (context->samp[s][NINED3DSAMP_SHADOW] != context->texture[s].shadow) {
changed = TRUE;
- context->samp[s][NINED3DSAMP_SHADOW] = context->texture[s]->shadow;
+ context->samp[s][NINED3DSAMP_SHADOW] = context->texture[s].shadow;
}
if (context->samp[s][NINED3DSAMP_CUBETEX] !=
- (NineResource9(context->texture[s])->type == D3DRTYPE_CUBETEXTURE)) {
+ (context->texture[s].type == D3DRTYPE_CUBETEXTURE)) {
changed = TRUE;
context->samp[s][NINED3DSAMP_CUBETEX] =
- NineResource9(context->texture[s])->type == D3DRTYPE_CUBETEXTURE;
+ context->texture[s].type == D3DRTYPE_CUBETEXTURE;
}
if (context->samp[s][D3DSAMP_MIPFILTER] != D3DTEXF_NONE) {
- int lod = context->samp[s][D3DSAMP_MAXMIPLEVEL] - context->texture[s]->managed.lod;
+ int lod = context->samp[s][D3DSAMP_MAXMIPLEVEL] - context->texture[s].lod;
if (lod < 0)
lod = 0;
if (context->samp[s][NINED3DSAMP_MINLOD] != lod) {
static void
update_textures_and_samplers(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
struct pipe_sampler_view *view[NINE_MAX_SAMPLERS];
unsigned num_textures;
unsigned i;
boolean commit_samplers;
- uint16_t sampler_mask = state->ps ? state->ps->sampler_mask :
+ uint16_t sampler_mask = context->ps ? context->ps->sampler_mask :
device->ff.ps->sampler_mask;
/* TODO: Can we reduce iterations here ? */
const unsigned s = NINE_SAMPLER_PS(i);
int sRGB;
- if (!context->texture[s] && !(sampler_mask & (1 << i))) {
+ if (!context->texture[s].enabled && !(sampler_mask & (1 << i))) {
view[i] = NULL;
continue;
}
- if (context->texture[s]) {
+ if (context->texture[s].enabled) {
sRGB = context->samp[s][D3DSAMP_SRGBTEXTURE] ? 1 : 0;
- view[i] = NineBaseTexture9_GetSamplerView(context->texture[s], sRGB);
+ view[i] = context->texture[s].view[sRGB];
num_textures = i + 1;
if (update_sampler_derived(context, s) || (context->changed.sampler[s] & 0x05fe)) {
context->changed.sampler[s] = 0;
commit_samplers = TRUE;
- nine_convert_sampler_state(device->cso, s, context->samp[s]);
+ nine_convert_sampler_state(context->cso, s, context->samp[s]);
}
} else {
/* Bind dummy sampler. We do not bind dummy sampler when
view[i] = device->dummy_sampler_view;
num_textures = i + 1;
- cso_single_sampler(device->cso, PIPE_SHADER_FRAGMENT,
+ cso_single_sampler(context->cso, PIPE_SHADER_FRAGMENT,
s - NINE_SAMPLER_PS(0), &device->dummy_sampler_state);
commit_samplers = TRUE;
context->bound_samplers_mask_ps |= (1 << s);
}
- cso_set_sampler_views(device->cso, PIPE_SHADER_FRAGMENT, num_textures, view);
+ cso_set_sampler_views(context->cso, PIPE_SHADER_FRAGMENT, num_textures, view);
if (commit_samplers)
- cso_single_sampler_done(device->cso, PIPE_SHADER_FRAGMENT);
+ cso_single_sampler_done(context->cso, PIPE_SHADER_FRAGMENT);
commit_samplers = FALSE;
sampler_mask = context->programmable_vs ? context->vs->sampler_mask : 0;
const unsigned s = NINE_SAMPLER_VS(i);
int sRGB;
- if (!context->texture[s] && !(sampler_mask & (1 << i))) {
+ if (!context->texture[s].enabled && !(sampler_mask & (1 << i))) {
view[i] = NULL;
continue;
}
- if (context->texture[s]) {
+ if (context->texture[s].enabled) {
sRGB = context->samp[s][D3DSAMP_SRGBTEXTURE] ? 1 : 0;
- view[i] = NineBaseTexture9_GetSamplerView(context->texture[s], sRGB);
+ view[i] = context->texture[s].view[sRGB];
num_textures = i + 1;
if (update_sampler_derived(context, s) || (context->changed.sampler[s] & 0x05fe)) {
context->changed.sampler[s] = 0;
commit_samplers = TRUE;
- nine_convert_sampler_state(device->cso, s, context->samp[s]);
+ nine_convert_sampler_state(context->cso, s, context->samp[s]);
}
} else {
/* Bind dummy sampler. We do not bind dummy sampler when
view[i] = device->dummy_sampler_view;
num_textures = i + 1;
- cso_single_sampler(device->cso, PIPE_SHADER_VERTEX,
+ cso_single_sampler(context->cso, PIPE_SHADER_VERTEX,
s - NINE_SAMPLER_VS(0), &device->dummy_sampler_state);
commit_samplers = TRUE;
context->bound_samplers_mask_vs |= (1 << s);
}
- cso_set_sampler_views(device->cso, PIPE_SHADER_VERTEX, num_textures, view);
+ cso_set_sampler_views(context->cso, PIPE_SHADER_VERTEX, num_textures, view);
if (commit_samplers)
- cso_single_sampler_done(device->cso, PIPE_SHADER_VERTEX);
+ cso_single_sampler_done(context->cso, PIPE_SHADER_VERTEX);
}
/* State commit only */
static inline void
commit_blend(struct NineDevice9 *device)
{
- cso_set_blend(device->cso, &device->context.pipe.blend);
+ struct nine_context *context = &device->context;
+
+ cso_set_blend(context->cso, &context->pipe_data.blend);
}
static inline void
commit_dsa(struct NineDevice9 *device)
{
- cso_set_depth_stencil_alpha(device->cso, &device->context.pipe.dsa);
+ struct nine_context *context = &device->context;
+
+ cso_set_depth_stencil_alpha(context->cso, &context->pipe_data.dsa);
}
static inline void
commit_scissor(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
- pipe->set_scissor_states(pipe, 0, 1, &device->context.scissor);
+ pipe->set_scissor_states(pipe, 0, 1, &context->scissor);
}
static inline void
commit_rasterizer(struct NineDevice9 *device)
{
- cso_set_rasterizer(device->cso, &device->context.pipe.rast);
+ struct nine_context *context = &device->context;
+
+ cso_set_rasterizer(context->cso, &context->pipe_data.rast);
}
static inline void
commit_index_buffer(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
- if (device->context.idxbuf.buffer)
- pipe->set_index_buffer(pipe, &device->context.idxbuf);
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
+ if (context->idxbuf.buffer)
+ pipe->set_index_buffer(pipe, &context->idxbuf);
else
pipe->set_index_buffer(pipe, NULL);
}
static inline void
commit_vs_constants(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
- if (unlikely(!device->context.programmable_vs))
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &device->context.pipe.cb_vs_ff);
+ if (unlikely(!context->programmable_vs))
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &context->pipe_data.cb_vs_ff);
else {
- if (device->swvp) {
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &device->context.pipe.cb0_swvp);
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 1, &device->context.pipe.cb1_swvp);
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 2, &device->context.pipe.cb2_swvp);
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 3, &device->context.pipe.cb3_swvp);
+ if (context->swvp) {
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &context->pipe_data.cb0_swvp);
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 1, &context->pipe_data.cb1_swvp);
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 2, &context->pipe_data.cb2_swvp);
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 3, &context->pipe_data.cb3_swvp);
} else {
- pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &device->context.pipe.cb_vs);
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_VERTEX, 0, &context->pipe_data.cb_vs);
}
}
}
static inline void
commit_ps_constants(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
- if (unlikely(!device->state.ps))
- pipe->set_constant_buffer(pipe, PIPE_SHADER_FRAGMENT, 0, &device->context.pipe.cb_ps_ff);
+ if (unlikely(!context->ps))
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_FRAGMENT, 0, &context->pipe_data.cb_ps_ff);
else
- pipe->set_constant_buffer(pipe, PIPE_SHADER_FRAGMENT, 0, &device->context.pipe.cb_ps);
+ pipe->set_constant_buffer(pipe, PIPE_SHADER_FRAGMENT, 0, &context->pipe_data.cb_ps);
}
static inline void
{
struct nine_context *context = &device->context;
- device->pipe->bind_vs_state(device->pipe, context->cso.vs);
+ context->pipe->bind_vs_state(context->pipe, context->cso_shader.vs);
}
{
struct nine_context *context = &device->context;
- device->pipe->bind_fs_state(device->pipe, context->cso.ps);
+ context->pipe->bind_fs_state(context->pipe, context->cso_shader.ps);
}
/* State Update */
NINE_STATE_STENCIL_REF | \
NINE_STATE_SAMPLE_MASK)
-
-/* TODO: only go through dirty textures */
-static void
-validate_textures(struct NineDevice9 *device)
-{
- struct NineBaseTexture9 *tex, *ptr;
- LIST_FOR_EACH_ENTRY_SAFE(tex, ptr, &device->update_textures, list) {
- list_delinit(&tex->list);
- NineBaseTexture9_Validate(tex);
- }
-}
-
-static void
-update_managed_buffers(struct NineDevice9 *device)
-{
- struct NineBuffer9 *buf, *ptr;
- LIST_FOR_EACH_ENTRY_SAFE(buf, ptr, &device->update_buffers, managed.list) {
- list_delinit(&buf->managed.list);
- NineBuffer9_Upload(buf);
- }
-}
-
static void
nine_update_state(struct NineDevice9 *device)
{
- struct pipe_context *pipe = device->pipe;
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
uint32_t group;
- DBG("changed state groups: %x\n", state->changed.group);
+ DBG("changed state groups: %x\n", context->changed.group);
/* NOTE: We may want to use the cso cache for everything, or let
* NineDevice9.RestoreNonCSOState actually set the states, then we wouldn't
* into update_textures. Except, we also need to re-validate textures that
* may be dirty anyway, even if no texture bindings changed.
*/
- validate_textures(device); /* may clobber state */
- update_managed_buffers(device);
/* ff_update may change VS/PS dirty bits */
- if (unlikely(!context->programmable_vs || !state->ps))
+ if (unlikely(!context->programmable_vs || !context->ps))
nine_ff_update(device);
- group = state->changed.group;
+ group = context->changed.group;
if (group & (NINE_STATE_SHADER_CHANGE_VS | NINE_STATE_SHADER_CHANGE_PS)) {
if (group & NINE_STATE_SHADER_CHANGE_VS)
update_textures_and_samplers(device);
if ((group & (NINE_STATE_VS_CONST | NINE_STATE_VS | NINE_STATE_SWVP)) && context->programmable_vs)
prepare_vs_constants_userbuf(device);
- if ((group & (NINE_STATE_PS_CONST | NINE_STATE_PS)) && state->ps)
+ if ((group & (NINE_STATE_PS_CONST | NINE_STATE_PS)) && context->ps)
prepare_ps_constants_userbuf(device);
}
context->commit = 0;
- if (unlikely(state->changed.ucp)) {
- pipe->set_clip_state(pipe, &state->clip);
- state->changed.ucp = 0;
+ if (unlikely(context->changed.ucp)) {
+ pipe->set_clip_state(pipe, &context->clip);
+ context->changed.ucp = FALSE;
}
if (unlikely(group & NINE_STATE_RARE)) {
}
}
- device->state.changed.group &=
+ context->changed.group &=
(NINE_STATE_FF | NINE_STATE_VS_CONST | NINE_STATE_PS_CONST);
DBG("finished\n");
struct nine_context *context = &device->context;
const struct util_format_description *desc;
struct NineSurface9 *source = context->ds;
- struct NineBaseTexture9 *destination = context->texture[0];
struct pipe_resource *src, *dst;
struct pipe_blit_info blit;
DBG("RESZ resolve\n");
- if (!source || !destination ||
- destination->base.type != D3DRTYPE_TEXTURE)
+ if (!source || !context->texture[0].enabled ||
+ context->texture[0].type != D3DRTYPE_TEXTURE)
return;
src = source->base.resource;
- dst = destination->base.resource;
+ dst = context->texture[0].resource;
if (!src || !dst)
return;
blit.filter = PIPE_TEX_FILTER_NEAREST;
blit.scissor_enable = FALSE;
- device->pipe->blit(device->pipe, &blit);
+ context->pipe->blit(context->pipe, &blit);
}
#define ALPHA_TO_COVERAGE_ENABLE MAKEFOURCC('A', '2', 'M', '1')
#define ALPHA_TO_COVERAGE_DISABLE MAKEFOURCC('A', '2', 'M', '0')
+/* Nine_context functions.
+ * Serialized through CSMT macros.
+ */
-void
-nine_context_set_render_state(struct NineDevice9 *device,
- D3DRENDERSTATETYPE State,
- DWORD Value)
+static void
+nine_context_set_texture_apply(struct NineDevice9 *device,
+ DWORD stage,
+ BOOL enabled,
+ BOOL shadow,
+ DWORD lod,
+ D3DRESOURCETYPE type,
+ uint8_t pstype,
+ struct pipe_resource *res,
+ struct pipe_sampler_view *view0,
+ struct pipe_sampler_view *view1);
+static void
+nine_context_set_stream_source_apply(struct NineDevice9 *device,
+ UINT StreamNumber,
+ struct pipe_resource *res,
+ UINT OffsetInBytes,
+ UINT Stride);
+
+static void
+nine_context_set_indices_apply(struct NineDevice9 *device,
+ struct pipe_resource *res,
+ UINT IndexSize,
+ UINT OffsetInBytes);
+
+static void
+nine_context_set_pixel_shader_constant_i_transformed(struct NineDevice9 *device,
+ UINT StartRegister,
+ const int *pConstantData,
+ unsigned pConstantData_size,
+ UINT Vector4iCount);
+
+CSMT_ITEM_NO_WAIT(nine_context_set_render_state,
+ ARG_VAL(D3DRENDERSTATETYPE, State),
+ ARG_VAL(DWORD, Value))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
/* Amd hacks (equivalent to GL extensions) */
if (Value == ALPHA_TO_COVERAGE_ENABLE ||
Value == ALPHA_TO_COVERAGE_DISABLE) {
context->rs[NINED3DRS_ALPHACOVERAGE] = (Value == ALPHA_TO_COVERAGE_ENABLE);
- state->changed.group |= NINE_STATE_BLEND;
+ context->changed.group |= NINE_STATE_BLEND;
return;
}
}
if (Value == D3DFMT_ATOC || (Value == D3DFMT_UNKNOWN && context->rs[NINED3DRS_ALPHACOVERAGE])) {
context->rs[NINED3DRS_ALPHACOVERAGE] = (Value == D3DFMT_ATOC) ? 3 : 0;
context->rs[NINED3DRS_ALPHACOVERAGE] &= context->rs[D3DRS_ALPHATESTENABLE] ? 3 : 2;
- state->changed.group |= NINE_STATE_BLEND;
+ context->changed.group |= NINE_STATE_BLEND;
return;
}
}
DWORD alphacoverage_prev = context->rs[NINED3DRS_ALPHACOVERAGE];
context->rs[NINED3DRS_ALPHACOVERAGE] = (Value ? 3 : 2);
if (context->rs[NINED3DRS_ALPHACOVERAGE] != alphacoverage_prev)
- state->changed.group |= NINE_STATE_BLEND;
+ context->changed.group |= NINE_STATE_BLEND;
}
context->rs[State] = nine_fix_render_state_value(State, Value);
- state->changed.group |= nine_render_state_group[State];
+ context->changed.group |= nine_render_state_group[State];
}
-void
-nine_context_set_texture(struct NineDevice9 *device,
- DWORD Stage,
- struct NineBaseTexture9 *tex)
+CSMT_ITEM_NO_WAIT(nine_context_set_texture_apply,
+ ARG_VAL(DWORD, stage),
+ ARG_VAL(BOOL, enabled),
+ ARG_VAL(BOOL, shadow),
+ ARG_VAL(DWORD, lod),
+ ARG_VAL(D3DRESOURCETYPE, type),
+ ARG_VAL(uint8_t, pstype),
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_BIND_VIEW(struct pipe_sampler_view, view0),
+ ARG_BIND_VIEW(struct pipe_sampler_view, view1))
{
struct nine_context *context = &device->context;
- struct nine_state *state = &device->state;
- context->samplers_shadow &= ~(1 << Stage);
- if (tex)
- context->samplers_shadow |= tex->shadow << Stage;
+ context->texture[stage].enabled = enabled;
+ context->samplers_shadow &= ~(1 << stage);
+ context->samplers_shadow |= shadow << stage;
+ context->texture[stage].shadow = shadow;
+ context->texture[stage].lod = lod;
+ context->texture[stage].type = type;
+ context->texture[stage].pstype = pstype;
+ pipe_resource_reference(&context->texture[stage].resource, res);
+ pipe_sampler_view_reference(&context->texture[stage].view[0], view0);
+ pipe_sampler_view_reference(&context->texture[stage].view[1], view1);
- nine_bind(&context->texture[Stage], tex);
-
- state->changed.group |= NINE_STATE_TEXTURE;
+ context->changed.group |= NINE_STATE_TEXTURE;
}
void
-nine_context_set_sampler_state(struct NineDevice9 *device,
- DWORD Sampler,
- D3DSAMPLERSTATETYPE Type,
- DWORD Value)
+nine_context_set_texture(struct NineDevice9 *device,
+ DWORD Stage,
+ struct NineBaseTexture9 *tex)
+{
+ BOOL enabled = FALSE;
+ BOOL shadow = FALSE;
+ DWORD lod = 0;
+ D3DRESOURCETYPE type = D3DRTYPE_TEXTURE;
+ uint8_t pstype = 0;
+ struct pipe_resource *res = NULL;
+ struct pipe_sampler_view *view0 = NULL, *view1 = NULL;
+
+ /* For managed pool, the data can be initially incomplete.
+ * In that case, the texture is rebound later
+ * (in NineBaseTexture9_Validate/NineBaseTexture9_UploadSelf). */
+ if (tex && tex->base.resource) {
+ enabled = TRUE;
+ shadow = tex->shadow;
+ lod = tex->managed.lod;
+ type = tex->base.type;
+ pstype = tex->pstype;
+ res = tex->base.resource;
+ view0 = NineBaseTexture9_GetSamplerView(tex, 0);
+ view1 = NineBaseTexture9_GetSamplerView(tex, 1);
+ }
+
+ nine_context_set_texture_apply(device, Stage, enabled,
+ shadow, lod, type, pstype,
+ res, view0, view1);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_sampler_state,
+ ARG_VAL(DWORD, Sampler),
+ ARG_VAL(D3DSAMPLERSTATETYPE, Type),
+ ARG_VAL(DWORD, Value))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
if (unlikely(!nine_check_sampler_state_value(Type, Value)))
return;
context->samp[Sampler][Type] = Value;
- state->changed.group |= NINE_STATE_SAMPLER;
+ context->changed.group |= NINE_STATE_SAMPLER;
context->changed.sampler[Sampler] |= 1 << Type;
}
+CSMT_ITEM_NO_WAIT(nine_context_set_stream_source_apply,
+ ARG_VAL(UINT, StreamNumber),
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_VAL(UINT, OffsetInBytes),
+ ARG_VAL(UINT, Stride))
+{
+ struct nine_context *context = &device->context;
+ const unsigned i = StreamNumber;
+
+ context->vtxbuf[i].stride = Stride;
+ context->vtxbuf[i].buffer_offset = OffsetInBytes;
+ pipe_resource_reference(&context->vtxbuf[i].buffer, res);
+
+ context->changed.vtxbuf |= 1 << StreamNumber;
+}
+
void
nine_context_set_stream_source(struct NineDevice9 *device,
UINT StreamNumber,
UINT OffsetInBytes,
UINT Stride)
{
- struct nine_context *context = &device->context;
- const unsigned i = StreamNumber;
+ struct pipe_resource *res = NULL;
+ unsigned offset = 0;
- context->changed.vtxbuf |= 1 << StreamNumber;
+ if (pVBuf9)
+ res = NineVertexBuffer9_GetResource(pVBuf9, &offset);
+ /* in the future when there is internal offset, add it
+ * to OffsetInBytes */
- if (pVBuf9) {
- context->vtxbuf[i].stride = Stride;
- context->vtxbuf[i].buffer_offset = OffsetInBytes;
- }
- pipe_resource_reference(&context->vtxbuf[i].buffer,
- pVBuf9 ? NineVertexBuffer9_GetResource(pVBuf9) : NULL);
+ nine_context_set_stream_source_apply(device, StreamNumber,
+ res, offset + OffsetInBytes,
+ Stride);
}
-void
-nine_context_set_stream_source_freq(struct NineDevice9 *device,
- UINT StreamNumber,
- UINT Setting)
+CSMT_ITEM_NO_WAIT(nine_context_set_stream_source_freq,
+ ARG_VAL(UINT, StreamNumber),
+ ARG_VAL(UINT, Setting))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
context->stream_freq[StreamNumber] = Setting;
context->stream_instancedata_mask &= ~(1 << StreamNumber);
if (StreamNumber != 0)
- state->changed.group |= NINE_STATE_STREAMFREQ;
+ context->changed.group |= NINE_STATE_STREAMFREQ;
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_indices_apply,
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_VAL(UINT, IndexSize),
+ ARG_VAL(UINT, OffsetInBytes))
+{
+ struct nine_context *context = &device->context;
+
+ context->idxbuf.index_size = IndexSize;
+ context->idxbuf.offset = OffsetInBytes;
+ pipe_resource_reference(&context->idxbuf.buffer, res);
+ context->idxbuf.user_buffer = NULL;
+
+ context->changed.group |= NINE_STATE_IDXBUF;
}
void
nine_context_set_indices(struct NineDevice9 *device,
struct NineIndexBuffer9 *idxbuf)
{
- struct nine_state *state = &device->state;
- struct nine_context *context = &device->context;
const struct pipe_index_buffer *pipe_idxbuf;
+ struct pipe_resource *res = NULL;
+ UINT IndexSize = 0;
+ UINT OffsetInBytes = 0;
if (idxbuf) {
pipe_idxbuf = NineIndexBuffer9_GetBuffer(idxbuf);
- context->idxbuf.index_size = pipe_idxbuf->index_size;
- pipe_resource_reference(&context->idxbuf.buffer, pipe_idxbuf->buffer);
- context->idxbuf.offset = pipe_idxbuf->offset;
- context->idxbuf.user_buffer = NULL;
- } else
- pipe_resource_reference(&context->idxbuf.buffer, NULL);
+ IndexSize = pipe_idxbuf->index_size;
+ res = pipe_idxbuf->buffer;
+ OffsetInBytes = pipe_idxbuf->offset;
+ }
- state->changed.group |= NINE_STATE_IDXBUF;
+ nine_context_set_indices_apply(device, res, IndexSize, OffsetInBytes);
}
-void
-nine_context_set_vertex_declaration(struct NineDevice9 *device,
- struct NineVertexDeclaration9 *vdecl)
+CSMT_ITEM_NO_WAIT(nine_context_set_vertex_declaration,
+ ARG_BIND_REF(struct NineVertexDeclaration9, vdecl))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
BOOL was_programmable_vs = context->programmable_vs;
context->programmable_vs = context->vs && !(context->vdecl && context->vdecl->position_t);
if (was_programmable_vs != context->programmable_vs) {
context->commit |= NINE_STATE_COMMIT_CONST_VS;
- state->changed.group |= NINE_STATE_VS;
+ context->changed.group |= NINE_STATE_VS;
}
- state->changed.group |= NINE_STATE_VDECL;
+ context->changed.group |= NINE_STATE_VDECL;
}
-void
-nine_context_set_vertex_shader(struct NineDevice9 *device,
- struct NineVertexShader9 *pShader)
+CSMT_ITEM_NO_WAIT(nine_context_set_vertex_shader,
+ ARG_BIND_REF(struct NineVertexShader9, pShader))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
BOOL was_programmable_vs = context->programmable_vs;
if (!was_programmable_vs && context->programmable_vs)
context->commit |= NINE_STATE_COMMIT_CONST_VS;
- state->changed.group |= NINE_STATE_VS;
+ context->changed.group |= NINE_STATE_VS;
}
-void
-nine_context_set_vertex_shader_constant_f(struct NineDevice9 *device,
- UINT StartRegister,
- const float *pConstantData,
- UINT Vector4fCount)
+CSMT_ITEM_NO_WAIT(nine_context_set_vertex_shader_constant_f,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(float, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, Vector4fCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
float *vs_const_f = device->may_swvp ? context->vs_const_f_swvp : context->vs_const_f;
memcpy(&vs_const_f[StartRegister * 4],
pConstantData,
- Vector4fCount * 4 * sizeof(context->vs_const_f[0]));
+ pConstantData_size);
if (device->may_swvp) {
Vector4fCount = MIN2(StartRegister + Vector4fCount, NINE_MAX_CONST_F) - StartRegister;
}
context->changed.vs_const_f = TRUE;
- state->changed.group |= NINE_STATE_VS_CONST;
+ context->changed.group |= NINE_STATE_VS_CONST;
}
-
-void
-nine_context_set_vertex_shader_constant_i(struct NineDevice9 *device,
- UINT StartRegister,
- const int *pConstantData,
- UINT Vector4iCount)
+CSMT_ITEM_NO_WAIT(nine_context_set_vertex_shader_constant_i,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(int, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, Vector4iCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
int i;
if (device->driver_caps.vs_integer) {
memcpy(&context->vs_const_i[4 * StartRegister],
pConstantData,
- Vector4iCount * sizeof(int[4]));
+ pConstantData_size);
} else {
for (i = 0; i < Vector4iCount; i++) {
context->vs_const_i[4 * (StartRegister + i)] = fui((float)(pConstantData[4 * i]));
}
context->changed.vs_const_i = TRUE;
- state->changed.group |= NINE_STATE_VS_CONST;
+ context->changed.group |= NINE_STATE_VS_CONST;
}
-void
-nine_context_set_vertex_shader_constant_b(struct NineDevice9 *device,
- UINT StartRegister,
- const BOOL *pConstantData,
- UINT BoolCount)
+CSMT_ITEM_NO_WAIT(nine_context_set_vertex_shader_constant_b,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(BOOL, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, BoolCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
int i;
uint32_t bool_true = device->driver_caps.vs_integer ? 0xFFFFFFFF : fui(1.0f);
+ (void) pConstantData_size;
+
for (i = 0; i < BoolCount; i++)
context->vs_const_b[StartRegister + i] = pConstantData[i] ? bool_true : 0;
context->changed.vs_const_b = TRUE;
- state->changed.group |= NINE_STATE_VS_CONST;
+ context->changed.group |= NINE_STATE_VS_CONST;
}
-void
-nine_context_set_pixel_shader_constant_f(struct NineDevice9 *device,
- UINT StartRegister,
- const float *pConstantData,
- UINT Vector4fCount)
+CSMT_ITEM_NO_WAIT(nine_context_set_pixel_shader,
+ ARG_BIND_REF(struct NinePixelShader9, ps))
+{
+ struct nine_context *context = &device->context;
+ unsigned old_mask = context->ps ? context->ps->rt_mask : 1;
+ unsigned mask;
+
+ /* ff -> non-ff: commit back non-ff constants */
+ if (!context->ps && ps)
+ context->commit |= NINE_STATE_COMMIT_CONST_PS;
+
+ nine_bind(&context->ps, ps);
+
+ context->changed.group |= NINE_STATE_PS;
+
+ mask = context->ps ? context->ps->rt_mask : 1;
+ /* We need to update cbufs if the pixel shader would
+ * write to different render targets */
+ if (mask != old_mask)
+ context->changed.group |= NINE_STATE_FB;
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_pixel_shader_constant_f,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(float, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, Vector4fCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
memcpy(&context->ps_const_f[StartRegister * 4],
pConstantData,
- Vector4fCount * 4 * sizeof(context->ps_const_f[0]));
+ pConstantData_size);
context->changed.ps_const_f = TRUE;
- state->changed.group |= NINE_STATE_PS_CONST;
+ context->changed.group |= NINE_STATE_PS_CONST;
}
-void
-nine_context_set_pixel_shader_constant_i(struct NineDevice9 *device,
- UINT StartRegister,
- const int *pConstantData,
- UINT Vector4iCount)
+/* For stateblocks */
+CSMT_ITEM_NO_WAIT(nine_context_set_pixel_shader_constant_i_transformed,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(int, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, Vector4iCount))
+{
+ struct nine_context *context = &device->context;
+
+ memcpy(&context->ps_const_i[StartRegister][0],
+ pConstantData,
+ Vector4iCount * sizeof(context->ps_const_i[0]));
+
+ context->changed.ps_const_i = TRUE;
+ context->changed.group |= NINE_STATE_PS_CONST;
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_pixel_shader_constant_i,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(int, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, Vector4iCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
int i;
if (device->driver_caps.ps_integer) {
memcpy(&context->ps_const_i[StartRegister][0],
pConstantData,
- Vector4iCount * sizeof(context->ps_const_i[0]));
+ pConstantData_size);
} else {
for (i = 0; i < Vector4iCount; i++) {
context->ps_const_i[StartRegister+i][0] = fui((float)(pConstantData[4*i]));
}
}
context->changed.ps_const_i = TRUE;
- state->changed.group |= NINE_STATE_PS_CONST;
+ context->changed.group |= NINE_STATE_PS_CONST;
}
-void
-nine_context_set_pixel_shader_constant_b(struct NineDevice9 *device,
- UINT StartRegister,
- const BOOL *pConstantData,
- UINT BoolCount)
+CSMT_ITEM_NO_WAIT(nine_context_set_pixel_shader_constant_b,
+ ARG_VAL(UINT, StartRegister),
+ ARG_MEM(BOOL, pConstantData),
+ ARG_MEM_SIZE(unsigned, pConstantData_size),
+ ARG_VAL(UINT, BoolCount))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
int i;
uint32_t bool_true = device->driver_caps.ps_integer ? 0xFFFFFFFF : fui(1.0f);
+ (void) pConstantData_size;
+
for (i = 0; i < BoolCount; i++)
context->ps_const_b[StartRegister + i] = pConstantData[i] ? bool_true : 0;
context->changed.ps_const_b = TRUE;
- state->changed.group |= NINE_STATE_PS_CONST;
+ context->changed.group |= NINE_STATE_PS_CONST;
}
-void
-nine_context_set_render_target(struct NineDevice9 *device,
- DWORD RenderTargetIndex,
- struct NineSurface9 *rt)
+/* XXX: use resource, as resource might change */
+CSMT_ITEM_NO_WAIT(nine_context_set_render_target,
+ ARG_VAL(DWORD, RenderTargetIndex),
+ ARG_BIND_REF(struct NineSurface9, rt))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
const unsigned i = RenderTargetIndex;
context->scissor.maxx = rt->desc.Width;
context->scissor.maxy = rt->desc.Height;
- state->changed.group |= NINE_STATE_VIEWPORT | NINE_STATE_SCISSOR | NINE_STATE_MULTISAMPLE;
+ context->changed.group |= NINE_STATE_VIEWPORT | NINE_STATE_SCISSOR | NINE_STATE_MULTISAMPLE;
if (context->rt[0] &&
(context->rt[0]->desc.MultiSampleType <= D3DMULTISAMPLE_NONMASKABLE) !=
(rt->desc.MultiSampleType <= D3DMULTISAMPLE_NONMASKABLE))
- state->changed.group |= NINE_STATE_SAMPLE_MASK;
+ context->changed.group |= NINE_STATE_SAMPLE_MASK;
}
if (context->rt[i] != rt) {
nine_bind(&context->rt[i], rt);
- state->changed.group |= NINE_STATE_FB;
+ context->changed.group |= NINE_STATE_FB;
}
}
-void
-nine_context_set_depth_stencil(struct NineDevice9 *device,
- struct NineSurface9 *ds)
+/* XXX: use resource instead of ds, as resource might change */
+CSMT_ITEM_NO_WAIT(nine_context_set_depth_stencil,
+ ARG_BIND_REF(struct NineSurface9, ds))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
nine_bind(&context->ds, ds);
- state->changed.group |= NINE_STATE_FB;
+ context->changed.group |= NINE_STATE_FB;
}
-void
-nine_context_set_viewport(struct NineDevice9 *device,
- const D3DVIEWPORT9 *viewport)
+CSMT_ITEM_NO_WAIT(nine_context_set_viewport,
+ ARG_COPY_REF(D3DVIEWPORT9, viewport))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
context->viewport = *viewport;
- state->changed.group |= NINE_STATE_VIEWPORT;
+ context->changed.group |= NINE_STATE_VIEWPORT;
}
-void
-nine_context_set_scissor(struct NineDevice9 *device,
- const struct pipe_scissor_state *scissor)
+CSMT_ITEM_NO_WAIT(nine_context_set_scissor,
+ ARG_COPY_REF(struct pipe_scissor_state, scissor))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
context->scissor = *scissor;
- state->changed.group |= NINE_STATE_SCISSOR;
+ context->changed.group |= NINE_STATE_SCISSOR;
}
-void
-nine_context_set_transform(struct NineDevice9 *device,
- D3DTRANSFORMSTATETYPE State,
- const D3DMATRIX *pMatrix)
+CSMT_ITEM_NO_WAIT(nine_context_set_transform,
+ ARG_VAL(D3DTRANSFORMSTATETYPE, State),
+ ARG_COPY_REF(D3DMATRIX, pMatrix))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
D3DMATRIX *M = nine_state_access_transform(&context->ff, State, TRUE);
*M = *pMatrix;
context->ff.changed.transform[State / 32] |= 1 << (State % 32);
- state->changed.group |= NINE_STATE_FF;
+ context->changed.group |= NINE_STATE_FF;
}
-void
-nine_context_set_material(struct NineDevice9 *device,
- const D3DMATERIAL9 *pMaterial)
+CSMT_ITEM_NO_WAIT(nine_context_set_material,
+ ARG_COPY_REF(D3DMATERIAL9, pMaterial))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
context->ff.material = *pMaterial;
- state->changed.group |= NINE_STATE_FF_MATERIAL;
+ context->changed.group |= NINE_STATE_FF_MATERIAL;
}
-void
-nine_context_set_light(struct NineDevice9 *device,
- DWORD Index,
- const D3DLIGHT9 *pLight)
+CSMT_ITEM_NO_WAIT(nine_context_set_light,
+ ARG_VAL(DWORD, Index),
+ ARG_COPY_REF(D3DLIGHT9, pLight))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
(void)nine_state_set_light(&context->ff, Index, pLight);
- state->changed.group |= NINE_STATE_FF_LIGHTING;
+ context->changed.group |= NINE_STATE_FF_LIGHTING;
}
-void
-nine_context_light_enable(struct NineDevice9 *device,
- DWORD Index,
- BOOL Enable)
+
+/* For stateblocks */
+static void
+nine_context_light_enable_stateblock(struct NineDevice9 *device,
+ const uint16_t active_light[NINE_MAX_LIGHTS_ACTIVE], /* TODO: use pointer that convey size for csmt */
+ unsigned int num_lights_active)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
- nine_state_light_enable(&context->ff, &state->changed.group, Index, Enable);
+ /* TODO: Use CSMT_* to avoid calling nine_csmt_process */
+ nine_csmt_process(device);
+ memcpy(context->ff.active_light, active_light, NINE_MAX_LIGHTS_ACTIVE * sizeof(context->ff.active_light[0]));
+ context->ff.num_lights_active = num_lights_active;
+ context->changed.group |= NINE_STATE_FF_LIGHTING;
}
-void
-nine_context_set_texture_stage_state(struct NineDevice9 *device,
- DWORD Stage,
- D3DTEXTURESTAGESTATETYPE Type,
- DWORD Value)
+CSMT_ITEM_NO_WAIT(nine_context_light_enable,
+ ARG_VAL(DWORD, Index),
+ ARG_VAL(BOOL, Enable))
+{
+ struct nine_context *context = &device->context;
+
+ nine_state_light_enable(&context->ff, &context->changed.group, Index, Enable);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_texture_stage_state,
+ ARG_VAL(DWORD, Stage),
+ ARG_VAL(D3DTEXTURESTAGESTATETYPE, Type),
+ ARG_VAL(DWORD, Value))
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
int bumpmap_index = -1;
bumpmap_index = 4 * 8 + 2 * Stage + 1;
break;
case D3DTSS_TEXTURETRANSFORMFLAGS:
- state->changed.group |= NINE_STATE_PS1X_SHADER;
+ context->changed.group |= NINE_STATE_PS1X_SHADER;
break;
default:
break;
if (bumpmap_index >= 0) {
context->bumpmap_vars[bumpmap_index] = Value;
- state->changed.group |= NINE_STATE_PS_CONST;
+ context->changed.group |= NINE_STATE_PS_CONST;
}
- state->changed.group |= NINE_STATE_FF_PSSTAGES;
+ context->changed.group |= NINE_STATE_FF_PSSTAGES;
context->ff.changed.tex_stage[Stage][Type / 32] |= 1 << (Type % 32);
}
+CSMT_ITEM_NO_WAIT(nine_context_set_clip_plane,
+ ARG_VAL(DWORD, Index),
+ ARG_COPY_REF(struct nine_clipplane, pPlane))
+{
+ struct nine_context *context = &device->context;
+
+ memcpy(&context->clip.ucp[Index][0], pPlane, sizeof(context->clip.ucp[0]));
+ context->changed.ucp = TRUE;
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_set_swvp,
+ ARG_VAL(boolean, swvp))
+{
+ struct nine_context *context = &device->context;
+
+ context->swvp = swvp;
+ context->changed.group |= NINE_STATE_SWVP;
+}
+
+#if 0
+
void
nine_context_apply_stateblock(struct NineDevice9 *device,
const struct nine_state *src)
struct nine_context *context = &device->context;
int i;
+ context->changed.group |= src->changed.group;
+
for (i = 0; i < ARRAY_SIZE(src->changed.rs); ++i) {
uint32_t m = src->changed.rs[i];
while (m) {
uint32_t m = src->changed.texture;
unsigned s;
- context->samplers_shadow &= ~m;
-
for (s = 0; m; ++s, m >>= 1) {
struct NineBaseTexture9 *tex = src->texture[s];
if (!(m & 1))
continue;
- if (tex)
- context->samplers_shadow |= tex->shadow << s;
- nine_bind(&context->texture[s], src->texture[s]);
+ nine_context_set_texture(device, s, tex);
}
}
for (i = 0; m; ++i, m >>= 1) {
if (src->changed.vtxbuf & (1 << i)) {
if (src->stream[i]) {
- context->vtxbuf[i].buffer_offset = src->vtxbuf[i].buffer_offset;
+ unsigned offset = 0;
pipe_resource_reference(&context->vtxbuf[i].buffer,
- src->stream[i] ? NineVertexBuffer9_GetResource(src->stream[i]) : NULL);
+ src->stream[i] ? NineVertexBuffer9_GetResource(src->stream[i], &offset) : NULL);
+ context->vtxbuf[i].buffer_offset = src->vtxbuf[i].buffer_offset + offset;
context->vtxbuf[i].stride = src->vtxbuf[i].stride;
}
}
context->programmable_vs = context->vs && !(context->vdecl && context->vdecl->position_t);
+ /* Pixel shader */
+ if (src->changed.group & NINE_STATE_PS)
+ nine_bind(&context->ps, src->ps);
+
/* Vertex constants */
if (src->changed.group & NINE_STATE_VS_CONST) {
struct nine_range *r;
if (src->changed.group & NINE_STATE_SCISSOR)
context->scissor = src->scissor;
+ /* User Clip Planes */
+ if (src->changed.ucp) {
+ for (i = 0; i < PIPE_MAX_CLIP_PLANES; ++i)
+ if (src->changed.ucp & (1 << i))
+ memcpy(context->clip.ucp[i],
+ src->clip.ucp[i], sizeof(src->clip.ucp[0]));
+ context->changed.ucp = TRUE;
+ }
+
if (!(src->changed.group & NINE_STATE_FF))
return;
}
}
+#endif
+
+/* Do not write to nine_context directly. Slower,
+ * but works with csmt. TODO: write a special csmt version that
+ * would record the list of commands as much as possible,
+ * and use the version above else.
+ */
+void
+nine_context_apply_stateblock(struct NineDevice9 *device,
+ const struct nine_state *src)
+{
+ int i;
+
+ /* No need to apply src->changed.group, since all calls do
+ * set context->changed.group */
+
+ for (i = 0; i < ARRAY_SIZE(src->changed.rs); ++i) {
+ uint32_t m = src->changed.rs[i];
+ while (m) {
+ const int r = ffs(m) - 1;
+ m &= ~(1 << r);
+ nine_context_set_render_state(device, i * 32 + r, src->rs_advertised[i * 32 + r]);
+ }
+ }
+
+ /* Textures */
+ if (src->changed.texture) {
+ uint32_t m = src->changed.texture;
+ unsigned s;
+
+ for (s = 0; m; ++s, m >>= 1) {
+ struct NineBaseTexture9 *tex = src->texture[s];
+ if (!(m & 1))
+ continue;
+ nine_context_set_texture(device, s, tex);
+ }
+ }
+
+ /* Sampler state */
+ if (src->changed.group & NINE_STATE_SAMPLER) {
+ unsigned s;
+
+ for (s = 0; s < NINE_MAX_SAMPLERS; ++s) {
+ uint32_t m = src->changed.sampler[s];
+ while (m) {
+ const int i = ffs(m) - 1;
+ m &= ~(1 << i);
+ nine_context_set_sampler_state(device, s, i, src->samp_advertised[s][i]);
+ }
+ }
+ }
+
+ /* Vertex buffers */
+ if (src->changed.vtxbuf | src->changed.stream_freq) {
+ uint32_t m = src->changed.vtxbuf | src->changed.stream_freq;
+ for (i = 0; m; ++i, m >>= 1) {
+ if (src->changed.vtxbuf & (1 << i))
+ nine_context_set_stream_source(device, i, src->stream[i], src->vtxbuf[i].buffer_offset, src->vtxbuf[i].stride);
+ if (src->changed.stream_freq & (1 << i))
+ nine_context_set_stream_source_freq(device, i, src->stream_freq[i]);
+ }
+ }
+
+ /* Index buffer */
+ if (src->changed.group & NINE_STATE_IDXBUF)
+ nine_context_set_indices(device, src->idxbuf);
+
+ /* Vertex declaration */
+ if ((src->changed.group & NINE_STATE_VDECL) && src->vdecl)
+ nine_context_set_vertex_declaration(device, src->vdecl);
+
+ /* Vertex shader */
+ if (src->changed.group & NINE_STATE_VS)
+ nine_context_set_vertex_shader(device, src->vs);
+
+ /* Pixel shader */
+ if (src->changed.group & NINE_STATE_PS)
+ nine_context_set_pixel_shader(device, src->ps);
+
+ /* Vertex constants */
+ if (src->changed.group & NINE_STATE_VS_CONST) {
+ struct nine_range *r;
+ for (r = src->changed.vs_const_f; r; r = r->next)
+ nine_context_set_vertex_shader_constant_f(device, r->bgn,
+ &src->vs_const_f[r->bgn * 4],
+ sizeof(float[4]) * (r->end - r->bgn),
+ r->end - r->bgn);
+ for (r = src->changed.vs_const_i; r; r = r->next)
+ nine_context_set_vertex_shader_constant_i(device, r->bgn,
+ &src->vs_const_i[r->bgn * 4],
+ sizeof(int[4]) * (r->end - r->bgn),
+ r->end - r->bgn);
+ for (r = src->changed.vs_const_b; r; r = r->next)
+ nine_context_set_vertex_shader_constant_b(device, r->bgn,
+ &src->vs_const_b[r->bgn * 4],
+ sizeof(BOOL) * (r->end - r->bgn),
+ r->end - r->bgn);
+ }
+
+ /* Pixel constants */
+ if (src->changed.group & NINE_STATE_PS_CONST) {
+ struct nine_range *r;
+ for (r = src->changed.ps_const_f; r; r = r->next)
+ nine_context_set_pixel_shader_constant_f(device, r->bgn,
+ &src->ps_const_f[r->bgn * 4],
+ sizeof(float[4]) * (r->end - r->bgn),
+ r->end - r->bgn);
+ if (src->changed.ps_const_i) {
+ uint16_t m = src->changed.ps_const_i;
+ for (i = ffs(m) - 1, m >>= i; m; ++i, m >>= 1)
+ if (m & 1)
+ nine_context_set_pixel_shader_constant_i_transformed(device, i,
+ src->ps_const_i[i], sizeof(int[4]), 1);
+ }
+ if (src->changed.ps_const_b) {
+ uint16_t m = src->changed.ps_const_b;
+ for (i = ffs(m) - 1, m >>= i; m; ++i, m >>= 1)
+ if (m & 1)
+ nine_context_set_pixel_shader_constant_b(device, i,
+ &src->ps_const_b[i], sizeof(BOOL), 1);
+ }
+ }
+
+ /* Viewport */
+ if (src->changed.group & NINE_STATE_VIEWPORT)
+ nine_context_set_viewport(device, &src->viewport);
+
+ /* Scissor */
+ if (src->changed.group & NINE_STATE_SCISSOR)
+ nine_context_set_scissor(device, &src->scissor);
+
+ /* User Clip Planes */
+ if (src->changed.ucp)
+ for (i = 0; i < PIPE_MAX_CLIP_PLANES; ++i)
+ if (src->changed.ucp & (1 << i))
+ nine_context_set_clip_plane(device, i, (struct nine_clipplane*)&src->clip.ucp[i][0]);
+
+ if (!(src->changed.group & NINE_STATE_FF))
+ return;
+
+ /* Fixed function state. */
+
+ if (src->changed.group & NINE_STATE_FF_MATERIAL)
+ nine_context_set_material(device, &src->ff.material);
+
+ if (src->changed.group & NINE_STATE_FF_PSSTAGES) {
+ unsigned s;
+ for (s = 0; s < NINE_MAX_TEXTURE_STAGES; ++s) {
+ for (i = 0; i < NINED3DTSS_COUNT; ++i)
+ if (src->ff.changed.tex_stage[s][i / 32] & (1 << (i % 32)))
+ nine_context_set_texture_stage_state(device, s, i, src->ff.tex_stage[s][i]);
+ }
+ }
+ if (src->changed.group & NINE_STATE_FF_LIGHTING) {
+ for (i = 0; i < src->ff.num_lights; ++i)
+ if (src->ff.light[i].Type != NINED3DLIGHT_INVALID)
+ nine_context_set_light(device, i, &src->ff.light[i]);
+
+ nine_context_light_enable_stateblock(device, src->ff.active_light, src->ff.num_lights_active);
+ }
+ if (src->changed.group & NINE_STATE_FF_VSTRANSF) {
+ for (i = 0; i < ARRAY_SIZE(src->ff.changed.transform); ++i) {
+ unsigned s;
+ if (!src->ff.changed.transform[i])
+ continue;
+ for (s = i * 32; s < (i * 32 + 32); ++s) {
+ if (!(src->ff.changed.transform[i] & (1 << (s % 32))))
+ continue;
+ nine_context_set_transform(device, s,
+ nine_state_access_transform(
+ (struct nine_ff_state *)&src->ff,
+ s, FALSE));
+ }
+ }
+ }
+}
+
static void
nine_update_state_framebuffer_clear(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
-
- validate_textures(device);
+ struct nine_context *context = &device->context;
- if (state->changed.group & NINE_STATE_FB)
+ if (context->changed.group & NINE_STATE_FB)
update_framebuffer(device, TRUE);
}
-/* Checks were already done before the call */
-void
-nine_context_clear_fb(struct NineDevice9 *device,
- DWORD Count,
- const D3DRECT *pRects,
- DWORD Flags,
- D3DCOLOR Color,
- float Z,
- DWORD Stencil)
+CSMT_ITEM_NO_WAIT(nine_context_clear_fb,
+ ARG_VAL(DWORD, Count),
+ ARG_COPY_REF(D3DRECT, pRects),
+ ARG_VAL(DWORD, Flags),
+ ARG_VAL(D3DCOLOR, Color),
+ ARG_VAL(float, Z),
+ ARG_VAL(DWORD, Stencil))
{
struct nine_context *context = &device->context;
const int sRGB = context->rs[D3DRS_SRGBWRITEENABLE] ? 1 : 0;
struct pipe_surface *cbuf, *zsbuf;
- struct pipe_context *pipe = device->pipe;
+ struct pipe_context *pipe = context->pipe;
struct NineSurface9 *zsbuf_surf = context->ds;
struct NineSurface9 *rt;
unsigned bufs = 0;
if (Flags & D3DCLEAR_TARGET) bufs |= PIPE_CLEAR_COLOR;
/* Ignore Z buffer if not bound */
- if (context->pipe.fb.zsbuf != NULL) {
+ if (context->pipe_data.fb.zsbuf != NULL) {
if (Flags & D3DCLEAR_ZBUFFER) bufs |= PIPE_CLEAR_DEPTH;
if (Flags & D3DCLEAR_STENCIL) bufs |= PIPE_CLEAR_STENCIL;
}
}
}
- if (rect.x1 >= context->pipe.fb.width || rect.y1 >= context->pipe.fb.height)
+ if (rect.x1 >= context->pipe_data.fb.width || rect.y1 >= context->pipe_data.fb.height)
return;
for (i = 0; i < device->caps.NumSimultaneousRTs; ++i) {
rect.x1 == 0 && rect.y1 == 0 &&
/* Case we clear only render target. Check clear region vs rt. */
((!(bufs & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL)) &&
- rect.x2 >= context->pipe.fb.width &&
- rect.y2 >= context->pipe.fb.height) ||
+ rect.x2 >= context->pipe_data.fb.width &&
+ rect.y2 >= context->pipe_data.fb.height) ||
/* Case we clear depth buffer (and eventually rt too).
* depth buffer size is always >= rt size. Compare to clear region */
((bufs & (PIPE_CLEAR_DEPTH | PIPE_CLEAR_STENCIL)) &&
info->indirect_params = NULL;
}
-void
-nine_context_draw_primitive(struct NineDevice9 *device,
- D3DPRIMITIVETYPE PrimitiveType,
- UINT StartVertex,
- UINT PrimitiveCount)
+CSMT_ITEM_NO_WAIT(nine_context_draw_primitive,
+ ARG_VAL(D3DPRIMITIVETYPE, PrimitiveType),
+ ARG_VAL(UINT, StartVertex),
+ ARG_VAL(UINT, PrimitiveCount))
{
+ struct nine_context *context = &device->context;
struct pipe_draw_info info;
nine_update_state(device);
info.min_index = info.start;
info.max_index = info.count - 1;
- device->pipe->draw_vbo(device->pipe, &info);
+ context->pipe->draw_vbo(context->pipe, &info);
}
-void
-nine_context_draw_indexed_primitive(struct NineDevice9 *device,
- D3DPRIMITIVETYPE PrimitiveType,
- INT BaseVertexIndex,
- UINT MinVertexIndex,
- UINT NumVertices,
- UINT StartIndex,
- UINT PrimitiveCount)
+CSMT_ITEM_NO_WAIT(nine_context_draw_indexed_primitive,
+ ARG_VAL(D3DPRIMITIVETYPE, PrimitiveType),
+ ARG_VAL(INT, BaseVertexIndex),
+ ARG_VAL(UINT, MinVertexIndex),
+ ARG_VAL(UINT, NumVertices),
+ ARG_VAL(UINT, StartIndex),
+ ARG_VAL(UINT, PrimitiveCount))
{
+ struct nine_context *context = &device->context;
struct pipe_draw_info info;
nine_update_state(device);
info.min_index = MinVertexIndex;
info.max_index = MinVertexIndex + NumVertices - 1;
- device->pipe->draw_vbo(device->pipe, &info);
+ context->pipe->draw_vbo(context->pipe, &info);
}
-void
-nine_context_draw_primitive_from_vtxbuf(struct NineDevice9 *device,
- D3DPRIMITIVETYPE PrimitiveType,
- UINT PrimitiveCount,
- struct pipe_vertex_buffer *vtxbuf)
+CSMT_ITEM_NO_WAIT(nine_context_draw_primitive_from_vtxbuf,
+ ARG_VAL(D3DPRIMITIVETYPE, PrimitiveType),
+ ARG_VAL(UINT, PrimitiveCount),
+ ARG_BIND_BUF(struct pipe_vertex_buffer, vtxbuf))
{
+ struct nine_context *context = &device->context;
struct pipe_draw_info info;
nine_update_state(device);
info.min_index = 0;
info.max_index = info.count - 1;
- device->pipe->set_vertex_buffers(device->pipe, 0, 1, vtxbuf);
+ context->pipe->set_vertex_buffers(context->pipe, 0, 1, vtxbuf);
- device->pipe->draw_vbo(device->pipe, &info);
+ context->pipe->draw_vbo(context->pipe, &info);
}
-void
-nine_context_draw_indexed_primitive_from_vtxbuf_idxbuf(struct NineDevice9 *device,
- D3DPRIMITIVETYPE PrimitiveType,
- UINT MinVertexIndex,
- UINT NumVertices,
- UINT PrimitiveCount,
- struct pipe_vertex_buffer *vbuf,
- struct pipe_index_buffer *ibuf)
+CSMT_ITEM_NO_WAIT(nine_context_draw_indexed_primitive_from_vtxbuf_idxbuf,
+ ARG_VAL(D3DPRIMITIVETYPE, PrimitiveType),
+ ARG_VAL(UINT, MinVertexIndex),
+ ARG_VAL(UINT, NumVertices),
+ ARG_VAL(UINT, PrimitiveCount),
+ ARG_BIND_BUF(struct pipe_vertex_buffer, vbuf),
+ ARG_BIND_BUF(struct pipe_index_buffer, ibuf))
{
+ struct nine_context *context = &device->context;
struct pipe_draw_info info;
nine_update_state(device);
info.index_bias = 0;
info.min_index = MinVertexIndex;
info.max_index = MinVertexIndex + NumVertices - 1;
- device->pipe->set_vertex_buffers(device->pipe, 0, 1, vbuf);
- device->pipe->set_index_buffer(device->pipe, ibuf);
+ context->pipe->set_vertex_buffers(context->pipe, 0, 1, vbuf);
+ context->pipe->set_index_buffer(context->pipe, ibuf);
- device->pipe->draw_vbo(device->pipe, &info);
+ context->pipe->draw_vbo(context->pipe, &info);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_resource_copy_region,
+ ARG_BIND_REF(struct NineUnknown, dst),
+ ARG_BIND_REF(struct NineUnknown, src),
+ ARG_BIND_RES(struct pipe_resource, dst_res),
+ ARG_VAL(unsigned, dst_level),
+ ARG_COPY_REF(struct pipe_box, dst_box),
+ ARG_BIND_RES(struct pipe_resource, src_res),
+ ARG_VAL(unsigned, src_level),
+ ARG_COPY_REF(struct pipe_box, src_box))
+{
+ struct nine_context *context = &device->context;
+
+ (void) dst;
+ (void) src;
+
+ context->pipe->resource_copy_region(context->pipe,
+ dst_res, dst_level,
+ dst_box->x, dst_box->y, dst_box->z,
+ src_res, src_level,
+ src_box);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_blit,
+ ARG_BIND_REF(struct NineUnknown, dst),
+ ARG_BIND_REF(struct NineUnknown, src),
+ ARG_BIND_BLIT(struct pipe_blit_info, blit))
+{
+ struct nine_context *context = &device->context;
+
+ (void) dst;
+ (void) src;
+
+ context->pipe->blit(context->pipe, blit);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_clear_render_target,
+ ARG_BIND_REF(struct NineSurface9, surface),
+ ARG_VAL(D3DCOLOR, color),
+ ARG_VAL(UINT, x),
+ ARG_VAL(UINT, y),
+ ARG_VAL(UINT, width),
+ ARG_VAL(UINT, height))
+{
+ struct nine_context *context = &device->context;
+ struct pipe_surface *surf;
+ union pipe_color_union rgba;
+
+ d3dcolor_to_pipe_color_union(&rgba, color);
+ surf = NineSurface9_GetSurface(surface, 0);
+ context->pipe->clear_render_target(context->pipe, surf, &rgba, x, y, width, height, false);
+}
+
+CSMT_ITEM_NO_WAIT(nine_context_gen_mipmap,
+ ARG_BIND_REF(struct NineUnknown, dst),
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_VAL(UINT, base_level),
+ ARG_VAL(UINT, last_level),
+ ARG_VAL(UINT, first_layer),
+ ARG_VAL(UINT, last_layer),
+ ARG_VAL(UINT, filter))
+{
+ struct nine_context *context = &device->context;
+
+ /* We just bind dst for the bind count */
+ (void)dst;
+
+ util_gen_mipmap(context->pipe, res, res->format, base_level,
+ last_level, first_layer, last_layer, filter);
+}
+
+CSMT_ITEM_NO_WAIT_WITH_COUNTER(nine_context_range_upload,
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_VAL(unsigned, offset),
+ ARG_VAL(unsigned, size),
+ ARG_VAL(const void *, data))
+{
+ struct nine_context *context = &device->context;
+
+ context->pipe->buffer_subdata(context->pipe, res, 0, offset, size, data);
+}
+
+CSMT_ITEM_NO_WAIT_WITH_COUNTER(nine_context_box_upload,
+ ARG_BIND_REF(struct NineUnknown, dst),
+ ARG_BIND_RES(struct pipe_resource, res),
+ ARG_VAL(unsigned, level),
+ ARG_COPY_REF(struct pipe_box, dst_box),
+ ARG_VAL(enum pipe_format, src_format),
+ ARG_VAL(const void *, src),
+ ARG_VAL(unsigned, src_stride),
+ ARG_VAL(unsigned, src_layer_stride),
+ ARG_COPY_REF(struct pipe_box, src_box))
+{
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
+ struct pipe_transfer *transfer = NULL;
+ uint8_t *map;
+
+ /* We just bind dst for the bind count */
+ (void)dst;
+
+ map = pipe->transfer_map(pipe,
+ res,
+ level,
+ PIPE_TRANSFER_WRITE | PIPE_TRANSFER_DISCARD_RANGE,
+ dst_box, &transfer);
+ if (!map)
+ return;
+
+ /* Note: if formats are the sames, it will revert
+ * to normal memcpy */
+ (void) util_format_translate_3d(res->format,
+ map, transfer->stride,
+ transfer->layer_stride,
+ 0, 0, 0,
+ src_format,
+ src, src_stride,
+ src_layer_stride,
+ src_box->x, src_box->y, src_box->z,
+ dst_box->width, dst_box->height,
+ dst_box->depth);
+
+ pipe_transfer_unmap(pipe, transfer);
+}
+
+struct pipe_query *
+nine_context_create_query(struct NineDevice9 *device, unsigned query_type)
+{
+ struct pipe_context *pipe;
+ struct pipe_query *res;
+
+ pipe = nine_context_get_pipe_acquire(device);
+ res = pipe->create_query(pipe, query_type, 0);
+ nine_context_get_pipe_release(device);
+ return res;
+}
+
+CSMT_ITEM_DO_WAIT(nine_context_destroy_query,
+ ARG_REF(struct pipe_query, query))
+{
+ struct nine_context *context = &device->context;
+
+ context->pipe->destroy_query(context->pipe, query);
+}
+
+CSMT_ITEM_NO_WAIT_WITH_COUNTER(nine_context_begin_query,
+ ARG_REF(struct pipe_query, query))
+{
+ struct nine_context *context = &device->context;
+
+ (void) context->pipe->begin_query(context->pipe, query);
+}
+
+CSMT_ITEM_NO_WAIT_WITH_COUNTER(nine_context_end_query,
+ ARG_REF(struct pipe_query, query))
+{
+ struct nine_context *context = &device->context;
+
+ (void) context->pipe->end_query(context->pipe, query);
+}
+
+boolean
+nine_context_get_query_result(struct NineDevice9 *device, struct pipe_query *query,
+ unsigned *counter, boolean flush, boolean wait,
+ union pipe_query_result *result)
+{
+ struct pipe_context *pipe;
+ boolean ret;
+
+ if (wait)
+ nine_csmt_process(device);
+ else if (p_atomic_read(counter) > 0) {
+ if (flush && device->csmt_active)
+ nine_queue_flush(device->csmt_ctx->pool);
+ DBG("Pending begin/end. Returning\n");
+ return false;
+ }
+
+ pipe = nine_context_get_pipe_acquire(device);
+ ret = pipe->get_query_result(pipe, query, wait, result);
+ nine_context_get_pipe_release(device);
+
+ DBG("Query result %s\n", ret ? "found" : "not yet available");
+ return ret;
}
/* State defaults */
[NINED3DSAMP_CUBETEX] = 0
};
+/* Note: The following 4 functions assume there is no
+ * pending commands */
+
void nine_state_restore_non_cso(struct NineDevice9 *device)
{
- struct nine_state *state = &device->state;
struct nine_context *context = &device->context;
- state->changed.group = NINE_STATE_ALL;
+ context->changed.group = NINE_STATE_ALL;
context->changed.vtxbuf = (1ULL << device->caps.MaxStreams) - 1;
- state->changed.ucp = (1 << PIPE_MAX_CLIP_PLANES) - 1;
+ context->changed.ucp = TRUE;
context->commit |= NINE_STATE_COMMIT_CONST_VS | NINE_STATE_COMMIT_CONST_PS;
}
/* Set changed flags to initialize driver.
*/
- state->changed.group = NINE_STATE_ALL;
+ context->changed.group = NINE_STATE_ALL;
context->changed.vtxbuf = (1ULL << device->caps.MaxStreams) - 1;
- state->changed.ucp = (1 << PIPE_MAX_CLIP_PLANES) - 1;
+ context->changed.ucp = TRUE;
context->ff.changed.transform[0] = ~0;
context->ff.changed.transform[D3DTS_WORLD / 32] |= 1 << (D3DTS_WORLD % 32);
}
void
-nine_context_clear(struct nine_context *context)
+nine_context_clear(struct NineDevice9 *device)
{
+ struct nine_context *context = &device->context;
+ struct pipe_context *pipe = context->pipe;
+ struct cso_context *cso = context->cso;
unsigned i;
+ /* Early device ctor failure. Nothing to do */
+ if (!pipe || !cso)
+ return;
+
+ pipe->bind_vs_state(pipe, NULL);
+ pipe->bind_fs_state(pipe, NULL);
+
+ /* Don't unbind constant buffers, they're device-private and
+ * do not change on Reset.
+ */
+
+ cso_set_samplers(cso, PIPE_SHADER_VERTEX, 0, NULL);
+ cso_set_samplers(cso, PIPE_SHADER_FRAGMENT, 0, NULL);
+
+ cso_set_sampler_views(cso, PIPE_SHADER_VERTEX, 0, NULL);
+ cso_set_sampler_views(cso, PIPE_SHADER_FRAGMENT, 0, NULL);
+
+ pipe->set_vertex_buffers(pipe, 0, device->caps.MaxStreams, NULL);
+ pipe->set_index_buffer(pipe, NULL);
+
for (i = 0; i < ARRAY_SIZE(context->rt); ++i)
nine_bind(&context->rt[i], NULL);
nine_bind(&context->ds, NULL);
nine_bind(&context->vs, NULL);
+ nine_bind(&context->ps, NULL);
nine_bind(&context->vdecl, NULL);
for (i = 0; i < PIPE_MAX_ATTRIBS; ++i)
pipe_resource_reference(&context->vtxbuf[i].buffer, NULL);
pipe_resource_reference(&context->idxbuf.buffer, NULL);
- for (i = 0; i < NINE_MAX_SAMPLERS; ++i)
- nine_bind(&context->texture[i], NULL);
+ for (i = 0; i < NINE_MAX_SAMPLERS; ++i) {
+ context->texture[i].enabled = FALSE;
+ pipe_resource_reference(&context->texture[i].resource,
+ NULL);
+ pipe_sampler_view_reference(&context->texture[i].view[0],
+ NULL);
+ pipe_sampler_view_reference(&context->texture[i].view[1],
+ NULL);
+ }
}
void
static void
update_vertex_buffers_sw(struct NineDevice9 *device, int start_vertice, int num_vertices)
{
- struct pipe_context *pipe = device->pipe;
+ struct pipe_context *pipe = nine_context_get_pipe_acquire(device);
struct pipe_context *pipe_sw = device->pipe_sw;
struct nine_state *state = &device->state;
struct nine_state_sw_internal *sw_internal = &device->state_sw_internal;
for (i = 0; mask; mask >>= 1, ++i) {
if (mask & 1) {
if (state->stream[i]) {
+ unsigned offset;
struct pipe_resource *buf;
struct pipe_box box;
vtxbuf = state->vtxbuf[i];
- vtxbuf.buffer = NineVertexBuffer9_GetResource(state->stream[i]);
+ vtxbuf.buffer = NineVertexBuffer9_GetResource(state->stream[i], &offset);
DBG("Locking %p (offset %d, length %d)\n", vtxbuf.buffer,
vtxbuf.buffer_offset, num_vertices * vtxbuf.stride);
- u_box_1d(vtxbuf.buffer_offset + start_vertice * vtxbuf.stride,
+ u_box_1d(vtxbuf.buffer_offset + offset + start_vertice * vtxbuf.stride,
num_vertices * vtxbuf.stride, &box);
buf = vtxbuf.buffer;
vtxbuf.user_buffer = pipe->transfer_map(pipe, buf, 0, PIPE_TRANSFER_READ, &box,
&(sw_internal->transfers_so[i]));
vtxbuf.buffer = NULL;
if (!device->driver_caps.user_sw_vbufs) {
- u_upload_data(device->vertex_sw_uploader,
+ u_upload_data(device->pipe_sw->stream_uploader,
0,
box.width,
16,
vtxbuf.user_buffer,
&(vtxbuf.buffer_offset),
&(vtxbuf.buffer));
- u_upload_unmap(device->vertex_sw_uploader);
+ u_upload_unmap(device->pipe_sw->stream_uploader);
vtxbuf.user_buffer = NULL;
}
pipe_sw->set_vertex_buffers(pipe_sw, i, 1, &vtxbuf);
pipe_sw->set_vertex_buffers(pipe_sw, i, 1, NULL);
}
}
+ nine_context_get_pipe_release(device);
}
static void
buf = cb.user_buffer;
if (!device->driver_caps.user_sw_cbufs) {
- u_upload_data(device->constbuf_sw_uploader,
+ u_upload_data(device->pipe_sw->const_uploader,
0,
cb.buffer_size,
16,
cb.user_buffer,
&(cb.buffer_offset),
&(cb.buffer));
- u_upload_unmap(device->constbuf_sw_uploader);
+ u_upload_unmap(device->pipe_sw->const_uploader);
cb.user_buffer = NULL;
}
cb.user_buffer = (char *)buf + 4096 * sizeof(float[4]);
if (!device->driver_caps.user_sw_cbufs) {
- u_upload_data(device->constbuf_sw_uploader,
+ u_upload_data(device->pipe_sw->const_uploader,
0,
cb.buffer_size,
16,
cb.user_buffer,
&(cb.buffer_offset),
&(cb.buffer));
- u_upload_unmap(device->constbuf_sw_uploader);
+ u_upload_unmap(device->pipe_sw->const_uploader);
cb.user_buffer = NULL;
}
cb.user_buffer = state->vs_const_i;
if (!device->driver_caps.user_sw_cbufs) {
- u_upload_data(device->constbuf_sw_uploader,
+ u_upload_data(device->pipe_sw->const_uploader,
0,
cb.buffer_size,
16,
cb.user_buffer,
&(cb.buffer_offset),
&(cb.buffer));
- u_upload_unmap(device->constbuf_sw_uploader);
+ u_upload_unmap(device->pipe_sw->const_uploader);
cb.user_buffer = NULL;
}
cb.user_buffer = state->vs_const_b;
if (!device->driver_caps.user_sw_cbufs) {
- u_upload_data(device->constbuf_sw_uploader,
+ u_upload_data(device->pipe_sw->const_uploader,
0,
cb.buffer_size,
16,
cb.user_buffer,
&(cb.buffer_offset),
&(cb.buffer));
- u_upload_unmap(device->constbuf_sw_uploader);
+ u_upload_unmap(device->pipe_sw->const_uploader);
cb.user_buffer = NULL;
}
cb.user_buffer = viewport_data;
{
- u_upload_data(device->constbuf_sw_uploader,
+ u_upload_data(device->pipe_sw->const_uploader,
0,
cb.buffer_size,
16,
cb.user_buffer,
&(cb.buffer_offset),
&(cb.buffer));
- u_upload_unmap(device->constbuf_sw_uploader);
+ u_upload_unmap(device->pipe_sw->const_uploader);
cb.user_buffer = NULL;
}
nine_state_after_draw_sw(struct NineDevice9 *device)
{
struct nine_state_sw_internal *sw_internal = &device->state_sw_internal;
- struct pipe_context *pipe = device->pipe;
+ struct pipe_context *pipe = nine_context_get_pipe_acquire(device);
struct pipe_context *pipe_sw = device->pipe_sw;
int i;
pipe->transfer_unmap(pipe, sw_internal->transfers_so[i]);
sw_internal->transfers_so[i] = NULL;
}
+ nine_context_get_pipe_release(device);
}
void