mirror of
https://gitlab.freedesktop.org/mesa/mesa.git
synced 2026-05-22 06:38:09 +02:00
333 lines
9.8 KiB
C
333 lines
9.8 KiB
C
/*
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* Copyright 2011 Nouveau Project
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
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* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF
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* OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Authors: Christoph Bumiller
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*/
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#define NV50_PUSH_EXPLICIT_SPACE_CHECKING
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#include "nv50_context.h"
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#include "nouveau/nv_object.xml.h"
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/* XXX: Nested queries, and simultaneous queries on multiple gallium contexts
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* (since we use only a single GPU channel per screen) will not work properly.
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*
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* The first is not that big of an issue because OpenGL does not allow nested
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* queries anyway.
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*/
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struct nv50_query {
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uint32_t *data;
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uint32_t type;
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uint32_t sequence;
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struct nouveau_bo *bo;
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uint32_t base;
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uint32_t offset; /* base + i * 16 */
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boolean ready;
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boolean is64bit;
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struct nouveau_mm_allocation *mm;
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};
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#define NV50_QUERY_ALLOC_SPACE 128
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static INLINE struct nv50_query *
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nv50_query(struct pipe_query *pipe)
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{
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return (struct nv50_query *)pipe;
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}
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static boolean
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nv50_query_allocate(struct nv50_context *nv50, struct nv50_query *q, int size)
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{
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struct nv50_screen *screen = nv50->screen;
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int ret;
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if (q->bo) {
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nouveau_bo_ref(NULL, &q->bo);
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if (q->mm) {
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if (q->ready)
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nouveau_mm_free(q->mm);
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else
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nouveau_fence_work(screen->base.fence.current, nouveau_mm_free_work,
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q->mm);
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}
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}
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if (size) {
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q->mm = nouveau_mm_allocate(screen->base.mm_GART, size, &q->bo, &q->base);
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if (!q->bo)
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return FALSE;
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q->offset = q->base;
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ret = nouveau_bo_map(q->bo, 0, screen->base.client);
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if (ret) {
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nv50_query_allocate(nv50, q, 0);
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return FALSE;
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}
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q->data = (uint32_t *)((uint8_t *)q->bo->map + q->base);
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}
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return TRUE;
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}
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static void
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nv50_query_destroy(struct pipe_context *pipe, struct pipe_query *pq)
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{
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nv50_query_allocate(nv50_context(pipe), nv50_query(pq), 0);
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FREE(nv50_query(pq));
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}
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static struct pipe_query *
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nv50_query_create(struct pipe_context *pipe, unsigned type)
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{
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struct nv50_context *nv50 = nv50_context(pipe);
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struct nv50_query *q;
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q = CALLOC_STRUCT(nv50_query);
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if (!q)
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return NULL;
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if (!nv50_query_allocate(nv50, q, NV50_QUERY_ALLOC_SPACE)) {
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FREE(q);
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return NULL;
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}
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q->is64bit = (type == PIPE_QUERY_PRIMITIVES_GENERATED ||
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type == PIPE_QUERY_PRIMITIVES_EMITTED ||
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type == PIPE_QUERY_SO_STATISTICS);
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q->type = type;
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if (q->type == PIPE_QUERY_OCCLUSION_COUNTER) {
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q->offset -= 16;
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q->data -= 16 / sizeof(*q->data); /* we advance before query_begin ! */
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}
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return (struct pipe_query *)q;
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}
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static void
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nv50_query_get(struct nouveau_pushbuf *push, struct nv50_query *q,
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unsigned offset, uint32_t get)
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{
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offset += q->offset;
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PUSH_SPACE(push, 5);
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PUSH_REFN (push, q->bo, NOUVEAU_BO_GART | NOUVEAU_BO_WR);
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BEGIN_NV04(push, NV50_3D(QUERY_ADDRESS_HIGH), 4);
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PUSH_DATAh(push, q->bo->offset + offset);
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PUSH_DATA (push, q->bo->offset + offset);
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PUSH_DATA (push, q->sequence);
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PUSH_DATA (push, get);
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}
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static void
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nv50_query_begin(struct pipe_context *pipe, struct pipe_query *pq)
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{
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struct nv50_context *nv50 = nv50_context(pipe);
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struct nouveau_pushbuf *push = nv50->base.pushbuf;
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struct nv50_query *q = nv50_query(pq);
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/* For occlusion queries we have to change the storage, because a previous
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* query might set the initial render conition to FALSE even *after* we re-
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* initialized it to TRUE.
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*/
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if (q->type == PIPE_QUERY_OCCLUSION_COUNTER) {
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q->offset += 16;
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q->data += 16 / sizeof(*q->data);
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if (q->offset - q->base == NV50_QUERY_ALLOC_SPACE)
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nv50_query_allocate(nv50, q, NV50_QUERY_ALLOC_SPACE);
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/* XXX: can we do this with the GPU, and sync with respect to a previous
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* query ?
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*/
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q->data[1] = 1; /* initial render condition = TRUE */
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}
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if (!q->is64bit)
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q->data[0] = q->sequence++; /* the previously used one */
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switch (q->type) {
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case PIPE_QUERY_OCCLUSION_COUNTER:
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PUSH_SPACE(push, 4);
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BEGIN_NV04(push, NV50_3D(COUNTER_RESET), 1);
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PUSH_DATA (push, NV50_3D_COUNTER_RESET_SAMPLECNT);
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BEGIN_NV04(push, NV50_3D(SAMPLECNT_ENABLE), 1);
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PUSH_DATA (push, 1);
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break;
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case PIPE_QUERY_PRIMITIVES_GENERATED: /* store before & after instead ? */
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PUSH_SPACE(push, 2);
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BEGIN_NV04(push, NV50_3D(COUNTER_RESET), 1);
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PUSH_DATA (push, NV50_3D_COUNTER_RESET_GENERATED_PRIMITIVES);
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break;
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case PIPE_QUERY_PRIMITIVES_EMITTED:
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PUSH_SPACE(push, 2);
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BEGIN_NV04(push, NV50_3D(COUNTER_RESET), 1);
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PUSH_DATA (push, NV50_3D_COUNTER_RESET_TRANSFORM_FEEDBACK);
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break;
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case PIPE_QUERY_SO_STATISTICS:
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PUSH_SPACE(push, 3);
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BEGIN_NI04(push, NV50_3D(COUNTER_RESET), 2);
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PUSH_DATA (push, NV50_3D_COUNTER_RESET_TRANSFORM_FEEDBACK);
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PUSH_DATA (push, NV50_3D_COUNTER_RESET_GENERATED_PRIMITIVES);
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break;
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case PIPE_QUERY_TIMESTAMP_DISJOINT:
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case PIPE_QUERY_TIME_ELAPSED:
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nv50_query_get(push, q, 0x10, 0x00005002);
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break;
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default:
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break;
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}
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q->ready = FALSE;
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}
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static void
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nv50_query_end(struct pipe_context *pipe, struct pipe_query *pq)
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{
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struct nv50_context *nv50 = nv50_context(pipe);
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struct nouveau_pushbuf *push = nv50->base.pushbuf;
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struct nv50_query *q = nv50_query(pq);
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switch (q->type) {
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case PIPE_QUERY_OCCLUSION_COUNTER:
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nv50_query_get(push, q, 0, 0x0100f002);
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PUSH_SPACE(push, 2);
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BEGIN_NV04(push, NV50_3D(SAMPLECNT_ENABLE), 1);
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PUSH_DATA (push, 0);
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break;
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case PIPE_QUERY_PRIMITIVES_GENERATED:
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nv50_query_get(push, q, 0, 0x06805002);
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break;
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case PIPE_QUERY_PRIMITIVES_EMITTED:
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nv50_query_get(push, q, 0, 0x05805002);
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break;
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case PIPE_QUERY_SO_STATISTICS:
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nv50_query_get(push, q, 0x00, 0x05805002);
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nv50_query_get(push, q, 0x10, 0x06805002);
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break;
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case PIPE_QUERY_TIMESTAMP_DISJOINT:
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case PIPE_QUERY_TIME_ELAPSED:
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nv50_query_get(push, q, 0, 0x00005002);
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break;
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case PIPE_QUERY_GPU_FINISHED:
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nv50_query_get(push, q, 0, 0x1000f010);
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break;
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default:
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assert(0);
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break;
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}
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}
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static INLINE boolean
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nv50_query_ready(struct nv50_query *q)
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{
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return q->ready || (!q->is64bit && (q->data[0] == q->sequence));
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}
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static boolean
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nv50_query_result(struct pipe_context *pipe, struct pipe_query *pq,
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boolean wait, union pipe_query_result *result)
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{
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struct nv50_context *nv50 = nv50_context(pipe);
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struct nv50_query *q = nv50_query(pq);
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uint64_t *res64 = (uint64_t *)result;
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boolean *res8 = (boolean *)result;
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uint64_t *data64 = (uint64_t *)q->data;
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if (!q->ready) /* update ? */
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q->ready = nv50_query_ready(q);
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if (!q->ready) {
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if (!wait) {
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/* for broken apps that spin on GL_QUERY_RESULT_AVAILABLE */
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PUSH_KICK(nv50->base.pushbuf);
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return FALSE;
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}
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if (nouveau_bo_wait(q->bo, NOUVEAU_BO_RD, nv50->screen->base.client))
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return FALSE;
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}
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q->ready = TRUE;
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switch (q->type) {
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case PIPE_QUERY_GPU_FINISHED:
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res8[0] = TRUE;
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break;
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case PIPE_QUERY_OCCLUSION_COUNTER: /* u32 sequence, u32 count, u64 time */
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res64[0] = q->data[1];
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break;
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case PIPE_QUERY_PRIMITIVES_GENERATED: /* u64 count, u64 time */
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case PIPE_QUERY_PRIMITIVES_EMITTED: /* u64 count, u64 time */
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res64[0] = data64[0];
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break;
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case PIPE_QUERY_SO_STATISTICS:
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res64[0] = data64[0];
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res64[1] = data64[1];
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break;
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case PIPE_QUERY_TIMESTAMP_DISJOINT: /* u32 sequence, u32 0, u64 time */
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res64[0] = 1000000000;
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res8[8] = (data64[0] == data64[2]) ? FALSE : TRUE;
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break;
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case PIPE_QUERY_TIME_ELAPSED:
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res64[0] = data64[1] - data64[3];
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break;
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default:
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return FALSE;
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}
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return TRUE;
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}
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static void
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nv50_render_condition(struct pipe_context *pipe,
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struct pipe_query *pq, uint mode)
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{
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struct nv50_context *nv50 = nv50_context(pipe);
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struct nouveau_pushbuf *push = nv50->base.pushbuf;
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struct nv50_query *q;
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PUSH_SPACE(push, 6);
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if (!pq) {
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BEGIN_NV04(push, NV50_3D(COND_MODE), 1);
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PUSH_DATA (push, NV50_3D_COND_MODE_ALWAYS);
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return;
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}
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q = nv50_query(pq);
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if (mode == PIPE_RENDER_COND_WAIT ||
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mode == PIPE_RENDER_COND_BY_REGION_WAIT) {
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BEGIN_NV04(push, SUBC_3D(NV50_GRAPH_SERIALIZE), 1);
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PUSH_DATA (push, 0);
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}
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BEGIN_NV04(push, NV50_3D(COND_ADDRESS_HIGH), 3);
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PUSH_DATAh(push, q->bo->offset + q->offset);
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PUSH_DATA (push, q->bo->offset + q->offset);
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PUSH_DATA (push, NV50_3D_COND_MODE_RES_NON_ZERO);
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}
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void
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nv50_init_query_functions(struct nv50_context *nv50)
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{
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struct pipe_context *pipe = &nv50->base.pipe;
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pipe->create_query = nv50_query_create;
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pipe->destroy_query = nv50_query_destroy;
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pipe->begin_query = nv50_query_begin;
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pipe->end_query = nv50_query_end;
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pipe->get_query_result = nv50_query_result;
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pipe->render_condition = nv50_render_condition;
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}
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