-/* -*- mode: C; c-file-style: "k&r"; tab-width 4; indent-tabs-mode: t; -*- */
-
/*
* Copyright (C) 2012 Rob Clark <robclark@freedesktop.org>
*
#include "freedreno_resource.h"
#include "freedreno_texture.h"
#include "freedreno_gmem.h"
+#include "freedreno_query_hw.h"
#include "freedreno_util.h"
/* All the generic state handling.. In case of CSO's that are specific
ctx->dirty |= FD_DIRTY_SAMPLE_MASK;
}
+static void
+fd_set_min_samples(struct pipe_context *pctx, unsigned min_samples)
+{
+ struct fd_context *ctx = fd_context(pctx);
+ ctx->min_samples = min_samples;
+ ctx->dirty |= FD_DIRTY_MIN_SAMPLES;
+}
+
/* notes from calim on #dri-devel:
* index==0 will be non-UBO (ie. glUniformXYZ()) all packed together padded
* out to vec4's
* index>0 will be UBO's.. well, I'll worry about that later
*/
static void
-fd_set_constant_buffer(struct pipe_context *pctx, uint shader, uint index,
+fd_set_constant_buffer(struct pipe_context *pctx,
+ enum pipe_shader_type shader, uint index,
const struct pipe_constant_buffer *cb)
{
struct fd_context *ctx = fd_context(pctx);
*/
if (unlikely(!cb)) {
so->enabled_mask &= ~(1 << index);
- so->dirty_mask &= ~(1 << index);
return;
}
so->enabled_mask |= 1 << index;
- so->dirty_mask |= 1 << index;
- ctx->dirty |= FD_DIRTY_CONSTBUF;
+ ctx->dirty_shader[shader] |= FD_DIRTY_SHADER_CONST;
+ ctx->dirty |= FD_DIRTY_CONST;
+}
+
+static void
+fd_set_shader_buffers(struct pipe_context *pctx,
+ enum pipe_shader_type shader,
+ unsigned start, unsigned count,
+ const struct pipe_shader_buffer *buffers,
+ unsigned writable_bitmask)
+{
+ struct fd_context *ctx = fd_context(pctx);
+ struct fd_shaderbuf_stateobj *so = &ctx->shaderbuf[shader];
+ unsigned mask = 0;
+
+ if (buffers) {
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + start;
+ struct pipe_shader_buffer *buf = &so->sb[n];
+
+ if ((buf->buffer == buffers[i].buffer) &&
+ (buf->buffer_offset == buffers[i].buffer_offset) &&
+ (buf->buffer_size == buffers[i].buffer_size))
+ continue;
+
+ mask |= BIT(n);
+
+ buf->buffer_offset = buffers[i].buffer_offset;
+ buf->buffer_size = buffers[i].buffer_size;
+ pipe_resource_reference(&buf->buffer, buffers[i].buffer);
+
+ if (buf->buffer)
+ so->enabled_mask |= BIT(n);
+ else
+ so->enabled_mask &= ~BIT(n);
+ }
+ } else {
+ mask = (BIT(count) - 1) << start;
+
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + start;
+ struct pipe_shader_buffer *buf = &so->sb[n];
+
+ pipe_resource_reference(&buf->buffer, NULL);
+ }
+
+ so->enabled_mask &= ~mask;
+ }
+
+ ctx->dirty_shader[shader] |= FD_DIRTY_SHADER_SSBO;
+}
+
+void
+fd_set_shader_images(struct pipe_context *pctx,
+ enum pipe_shader_type shader,
+ unsigned start, unsigned count,
+ const struct pipe_image_view *images)
+{
+ struct fd_context *ctx = fd_context(pctx);
+ struct fd_shaderimg_stateobj *so = &ctx->shaderimg[shader];
+
+ unsigned mask = 0;
+
+ if (images) {
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + start;
+ struct pipe_image_view *buf = &so->si[n];
+
+ if ((buf->resource == images[i].resource) &&
+ (buf->format == images[i].format) &&
+ (buf->access == images[i].access) &&
+ !memcmp(&buf->u, &images[i].u, sizeof(buf->u)))
+ continue;
+
+ mask |= BIT(n);
+ util_copy_image_view(buf, &images[i]);
+
+ if (buf->resource)
+ so->enabled_mask |= BIT(n);
+ else
+ so->enabled_mask &= ~BIT(n);
+ }
+ } else {
+ mask = (BIT(count) - 1) << start;
+
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + start;
+ struct pipe_image_view *img = &so->si[n];
+
+ pipe_resource_reference(&img->resource, NULL);
+ }
+
+ so->enabled_mask &= ~mask;
+ }
+
+ ctx->dirty_shader[shader] |= FD_DIRTY_SHADER_IMAGE;
}
static void
struct fd_context *ctx = fd_context(pctx);
struct pipe_framebuffer_state *cso;
- DBG("%d: cbufs[0]=%p, zsbuf=%p", ctx->batch->needs_flush,
- framebuffer->cbufs[0], framebuffer->zsbuf);
-
- fd_context_render(pctx);
+ DBG("%ux%u, %u layers, %u samples",
+ framebuffer->width, framebuffer->height,
+ framebuffer->layers, framebuffer->samples);
- cso = &ctx->batch->framebuffer;
+ cso = &ctx->framebuffer;
- if ((cso->width != framebuffer->width) ||
- (cso->height != framebuffer->height))
- ctx->needs_rb_fbd = true;
+ if (util_framebuffer_state_equal(cso, framebuffer))
+ return;
util_copy_framebuffer_state(cso, framebuffer);
+ cso->samples = util_framebuffer_get_num_samples(cso);
+
+ if (ctx->screen->reorder) {
+ struct fd_batch *old_batch = NULL;
+
+ fd_batch_reference(&old_batch, ctx->batch);
+
+ if (likely(old_batch))
+ fd_batch_set_stage(old_batch, FD_STAGE_NULL);
+
+ fd_batch_reference(&ctx->batch, NULL);
+ fd_context_all_dirty(ctx);
+
+ if (old_batch && old_batch->blit && !old_batch->back_blit) {
+ /* for blits, there is not really much point in hanging on
+ * to the uncommitted batch (ie. you probably don't blit
+ * multiple times to the same surface), so we might as
+ * well go ahead and flush this one:
+ */
+ fd_batch_flush(old_batch, false);
+ }
+
+ fd_batch_reference(&old_batch, NULL);
+ } else {
+ DBG("%d: cbufs[0]=%p, zsbuf=%p", ctx->batch->needs_flush,
+ framebuffer->cbufs[0], framebuffer->zsbuf);
+ fd_batch_flush(ctx->batch, false);
+ util_copy_framebuffer_state(&ctx->batch->framebuffer, cso);
+ }
+
ctx->dirty |= FD_DIRTY_FRAMEBUFFER;
ctx->disabled_scissor.minx = 0;
const struct pipe_viewport_state *viewport)
{
struct fd_context *ctx = fd_context(pctx);
+ struct pipe_scissor_state *scissor = &ctx->viewport_scissor;
+ float minx, miny, maxx, maxy;
+
ctx->viewport = *viewport;
+
+ /* see si_get_scissor_from_viewport(): */
+
+ /* Convert (-1, -1) and (1, 1) from clip space into window space. */
+ minx = -viewport->scale[0] + viewport->translate[0];
+ miny = -viewport->scale[1] + viewport->translate[1];
+ maxx = viewport->scale[0] + viewport->translate[0];
+ maxy = viewport->scale[1] + viewport->translate[1];
+
+ /* Handle inverted viewports. */
+ if (minx > maxx) {
+ swap(minx, maxx);
+ }
+ if (miny > maxy) {
+ swap(miny, maxy);
+ }
+
+ debug_assert(miny >= 0);
+ debug_assert(maxy >= 0);
+
+ /* Convert to integer and round up the max bounds. */
+ scissor->minx = minx;
+ scissor->miny = miny;
+ scissor->maxx = ceilf(maxx);
+ scissor->maxy = ceilf(maxy);
+
ctx->dirty |= FD_DIRTY_VIEWPORT;
}
*/
if (ctx->screen->gpu_id < 300) {
for (i = 0; i < count; i++) {
- bool new_enabled = vb && (vb[i].buffer || vb[i].user_buffer);
- bool old_enabled = so->vb[i].buffer || so->vb[i].user_buffer;
+ bool new_enabled = vb && vb[i].buffer.resource;
+ bool old_enabled = so->vb[i].buffer.resource != NULL;
uint32_t new_stride = vb ? vb[i].stride : 0;
uint32_t old_stride = so->vb[i].stride;
if ((new_enabled != old_enabled) || (new_stride != old_stride)) {
ctx->dirty |= FD_DIRTY_VTXBUF;
}
-static void
-fd_set_index_buffer(struct pipe_context *pctx,
- const struct pipe_index_buffer *ib)
-{
- struct fd_context *ctx = fd_context(pctx);
-
- if (ib) {
- pipe_resource_reference(&ctx->indexbuf.buffer, ib->buffer);
- ctx->indexbuf.index_size = ib->index_size;
- ctx->indexbuf.offset = ib->offset;
- ctx->indexbuf.user_buffer = ib->user_buffer;
- } else {
- pipe_resource_reference(&ctx->indexbuf.buffer, NULL);
- }
-
- ctx->dirty |= FD_DIRTY_INDEXBUF;
-}
-
static void
fd_blend_state_bind(struct pipe_context *pctx, void *hwcso)
{
target->buffer_offset = buffer_offset;
target->buffer_size = buffer_size;
- assert(rsc->base.b.target == PIPE_BUFFER);
- util_range_add(&rsc->valid_buffer_range,
+ assert(rsc->base.target == PIPE_BUFFER);
+ util_range_add(&rsc->base, &rsc->valid_buffer_range,
buffer_offset, buffer_offset + buffer_size);
return target;
for (i = 0; i < num_targets; i++) {
boolean changed = targets[i] != so->targets[i];
- boolean append = (offsets[i] == (unsigned)-1);
+ boolean reset = (offsets[i] != (unsigned)-1);
- if (!changed && append)
+ so->reset |= (reset << i);
+
+ if (!changed && !reset)
continue;
- if (!append)
+ if (reset)
so->offsets[i] = offsets[i];
pipe_so_target_reference(&so->targets[i], targets[i]);
ctx->dirty |= FD_DIRTY_STREAMOUT;
}
+static void
+fd_bind_compute_state(struct pipe_context *pctx, void *state)
+{
+ struct fd_context *ctx = fd_context(pctx);
+ ctx->compute = state;
+ ctx->dirty_shader[PIPE_SHADER_COMPUTE] |= FD_DIRTY_SHADER_PROG;
+}
+
+static void
+fd_set_compute_resources(struct pipe_context *pctx,
+ unsigned start, unsigned count, struct pipe_surface **prscs)
+{
+ // TODO
+}
+
+/* used by clover to bind global objects, returning the bo address
+ * via handles[n]
+ */
+static void
+fd_set_global_binding(struct pipe_context *pctx,
+ unsigned first, unsigned count, struct pipe_resource **prscs,
+ uint32_t **handles)
+{
+ struct fd_context *ctx = fd_context(pctx);
+ struct fd_global_bindings_stateobj *so = &ctx->global_bindings;
+ unsigned mask = 0;
+
+ if (prscs) {
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + first;
+
+ mask |= BIT(n);
+
+ pipe_resource_reference(&so->buf[n], prscs[i]);
+
+ if (so->buf[n]) {
+ struct fd_resource *rsc = fd_resource(so->buf[n]);
+ uint64_t iova = fd_bo_get_iova(rsc->bo);
+ // TODO need to scream if iova > 32b or fix gallium API..
+ *handles[i] += iova;
+ }
+
+ if (prscs[i])
+ so->enabled_mask |= BIT(n);
+ else
+ so->enabled_mask &= ~BIT(n);
+ }
+ } else {
+ mask = (BIT(count) - 1) << first;
+
+ for (unsigned i = 0; i < count; i++) {
+ unsigned n = i + first;
+ if (so->buf[n]) {
+ struct fd_resource *rsc = fd_resource(so->buf[n]);
+ fd_bo_put_iova(rsc->bo);
+ }
+ pipe_resource_reference(&so->buf[n], NULL);
+ }
+
+ so->enabled_mask &= ~mask;
+ }
+
+}
+
void
fd_state_init(struct pipe_context *pctx)
{
pctx->set_stencil_ref = fd_set_stencil_ref;
pctx->set_clip_state = fd_set_clip_state;
pctx->set_sample_mask = fd_set_sample_mask;
+ pctx->set_min_samples = fd_set_min_samples;
pctx->set_constant_buffer = fd_set_constant_buffer;
+ pctx->set_shader_buffers = fd_set_shader_buffers;
+ pctx->set_shader_images = fd_set_shader_images;
pctx->set_framebuffer_state = fd_set_framebuffer_state;
pctx->set_polygon_stipple = fd_set_polygon_stipple;
pctx->set_scissor_states = fd_set_scissor_states;
pctx->set_viewport_states = fd_set_viewport_states;
pctx->set_vertex_buffers = fd_set_vertex_buffers;
- pctx->set_index_buffer = fd_set_index_buffer;
pctx->bind_blend_state = fd_blend_state_bind;
pctx->delete_blend_state = fd_blend_state_delete;
pctx->create_stream_output_target = fd_create_stream_output_target;
pctx->stream_output_target_destroy = fd_stream_output_target_destroy;
pctx->set_stream_output_targets = fd_set_stream_output_targets;
+
+ if (has_compute(fd_screen(pctx->screen))) {
+ pctx->bind_compute_state = fd_bind_compute_state;
+ pctx->set_compute_resources = fd_set_compute_resources;
+ pctx->set_global_binding = fd_set_global_binding;
+ }
}