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We have a gk20a_busy() call in gk20a_buffer_convert_gpu_to_cde() and we again call gk20a_busy() in gk20a_submit_channel_gpfifo() If gk20a_do_idle() is triggered in between these two calls, then this leads to a deadlock and results in idle failure Hence to avoid this take power refcount in a more fine-grained way i.e. in gk20a_cde_convert() instead of taking in gk20a_buffer_convert_gpu_to_cde() Keep gk20a_cde_execute_buffer() out of the gk20a_busy()/ gk20a_idle() pair since we take power refcount in submit path anyways Add correct error handling path in gk20a_cde_convert() Bug 200287073 Change-Id: Iffea2d4c03f42b47dbf05e7fe8fe2994f9c6b37c Signed-off-by: Deepak Nibade <dnibade@nvidia.com> Reviewed-on: http://git-master/r/1324329 GVS: Gerrit_Virtual_Submit Reviewed-by: Bharat Nihalani <bnihalani@nvidia.com>
1680 lines
46 KiB
C
1680 lines
46 KiB
C
/*
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* Color decompression engine support
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*
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* Copyright (c) 2014-2017, NVIDIA Corporation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <linux/dma-mapping.h>
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#include <linux/firmware.h>
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#include <linux/fs.h>
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#include <linux/debugfs.h>
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#include <linux/dma-buf.h>
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#include <trace/events/gk20a.h>
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#include <nvgpu/timers.h>
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#include <nvgpu/nvgpu_common.h>
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#include "gk20a.h"
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#include "channel_gk20a.h"
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#include "mm_gk20a.h"
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#include "cde_gk20a.h"
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#include "fence_gk20a.h"
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#include "gr_gk20a.h"
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#include "debug_gk20a.h"
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#include <nvgpu/hw/gk20a/hw_ccsr_gk20a.h>
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#include <nvgpu/hw/gk20a/hw_pbdma_gk20a.h>
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static int gk20a_cde_load(struct gk20a_cde_ctx *cde_ctx);
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static struct gk20a_cde_ctx *gk20a_cde_allocate_context(struct gk20a *g);
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#define CTX_DELETE_TIME 1000
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#define MAX_CTX_USE_COUNT 42
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#define MAX_CTX_RETRY_TIME 2000
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static void gk20a_deinit_cde_img(struct gk20a_cde_ctx *cde_ctx)
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{
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unsigned int i;
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for (i = 0; i < cde_ctx->num_bufs; i++) {
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struct mem_desc *mem = cde_ctx->mem + i;
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gk20a_gmmu_unmap_free(cde_ctx->vm, mem);
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}
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kfree(cde_ctx->init_convert_cmd);
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cde_ctx->convert_cmd = NULL;
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cde_ctx->init_convert_cmd = NULL;
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cde_ctx->num_bufs = 0;
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cde_ctx->num_params = 0;
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cde_ctx->init_cmd_num_entries = 0;
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cde_ctx->convert_cmd_num_entries = 0;
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cde_ctx->init_cmd_executed = false;
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}
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static void gk20a_cde_remove_ctx(struct gk20a_cde_ctx *cde_ctx)
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__must_hold(&cde_app->mutex)
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{
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struct gk20a *g = cde_ctx->g;
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struct channel_gk20a *ch = cde_ctx->ch;
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struct vm_gk20a *vm = ch->vm;
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trace_gk20a_cde_remove_ctx(cde_ctx);
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/* release mapped memory */
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gk20a_deinit_cde_img(cde_ctx);
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gk20a_gmmu_unmap(vm, cde_ctx->backing_store_vaddr,
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g->gr.compbit_store.mem.size, 1);
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/* free the channel */
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gk20a_channel_close(ch);
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/* housekeeping on app */
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list_del(&cde_ctx->list);
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cde_ctx->g->cde_app.ctx_count--;
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kfree(cde_ctx);
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}
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static void gk20a_cde_cancel_deleter(struct gk20a_cde_ctx *cde_ctx,
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bool wait_finish)
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__releases(&cde_app->mutex)
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__acquires(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &cde_ctx->g->cde_app;
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/* permanent contexts do not have deleter works */
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if (!cde_ctx->is_temporary)
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return;
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if (wait_finish) {
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nvgpu_mutex_release(&cde_app->mutex);
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cancel_delayed_work_sync(&cde_ctx->ctx_deleter_work);
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nvgpu_mutex_acquire(&cde_app->mutex);
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} else {
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cancel_delayed_work(&cde_ctx->ctx_deleter_work);
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}
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}
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static void gk20a_cde_remove_contexts(struct gk20a *g)
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__must_hold(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &g->cde_app;
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struct gk20a_cde_ctx *cde_ctx, *cde_ctx_save;
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/* safe to go off the mutex in cancel_deleter since app is
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* deinitialised; no new jobs are started. deleter works may be only at
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* waiting for the mutex or before, going to abort */
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list_for_each_entry_safe(cde_ctx, cde_ctx_save,
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&cde_app->free_contexts, list) {
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gk20a_cde_cancel_deleter(cde_ctx, true);
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gk20a_cde_remove_ctx(cde_ctx);
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}
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list_for_each_entry_safe(cde_ctx, cde_ctx_save,
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&cde_app->used_contexts, list) {
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gk20a_cde_cancel_deleter(cde_ctx, true);
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gk20a_cde_remove_ctx(cde_ctx);
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}
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}
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static void gk20a_cde_stop(struct gk20a *g)
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__must_hold(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &g->cde_app;
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/* prevent further conversions and delayed works from working */
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cde_app->initialised = false;
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/* free all data, empty the list */
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gk20a_cde_remove_contexts(g);
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}
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void gk20a_cde_destroy(struct gk20a *g)
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__acquires(&cde_app->mutex)
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__releases(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &g->cde_app;
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if (!cde_app->initialised)
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return;
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nvgpu_mutex_acquire(&cde_app->mutex);
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gk20a_cde_stop(g);
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nvgpu_mutex_release(&cde_app->mutex);
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}
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void gk20a_cde_suspend(struct gk20a *g)
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__acquires(&cde_app->mutex)
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__releases(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &g->cde_app;
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struct gk20a_cde_ctx *cde_ctx, *cde_ctx_save;
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if (!cde_app->initialised)
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return;
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nvgpu_mutex_acquire(&cde_app->mutex);
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list_for_each_entry_safe(cde_ctx, cde_ctx_save,
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&cde_app->free_contexts, list) {
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gk20a_cde_cancel_deleter(cde_ctx, false);
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}
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list_for_each_entry_safe(cde_ctx, cde_ctx_save,
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&cde_app->used_contexts, list) {
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gk20a_cde_cancel_deleter(cde_ctx, false);
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}
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nvgpu_mutex_release(&cde_app->mutex);
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}
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static int gk20a_cde_create_context(struct gk20a *g)
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__must_hold(&cde_app->mutex)
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{
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struct gk20a_cde_app *cde_app = &g->cde_app;
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struct gk20a_cde_ctx *cde_ctx;
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cde_ctx = gk20a_cde_allocate_context(g);
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if (IS_ERR(cde_ctx))
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return PTR_ERR(cde_ctx);
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list_add(&cde_ctx->list, &cde_app->free_contexts);
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cde_app->ctx_count++;
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if (cde_app->ctx_count > cde_app->ctx_count_top)
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cde_app->ctx_count_top = cde_app->ctx_count;
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return 0;
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}
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static int gk20a_cde_create_contexts(struct gk20a *g)
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__must_hold(&g->cde_app->mutex)
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{
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int err;
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int i;
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for (i = 0; i < NUM_CDE_CONTEXTS; i++) {
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err = gk20a_cde_create_context(g);
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if (err)
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goto out;
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}
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return 0;
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out:
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gk20a_cde_remove_contexts(g);
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return err;
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}
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static int gk20a_init_cde_buf(struct gk20a_cde_ctx *cde_ctx,
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const struct firmware *img,
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struct gk20a_cde_hdr_buf *buf)
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{
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struct mem_desc *mem;
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int err;
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/* check that the file can hold the buf */
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if (buf->data_byte_offset != 0 &&
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buf->data_byte_offset + buf->num_bytes > img->size) {
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gk20a_warn(cde_ctx->dev, "cde: invalid data section. buffer idx = %d",
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cde_ctx->num_bufs);
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return -EINVAL;
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}
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/* check that we have enough buf elems available */
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if (cde_ctx->num_bufs >= MAX_CDE_BUFS) {
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gk20a_warn(cde_ctx->dev, "cde: invalid data section. buffer idx = %d",
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cde_ctx->num_bufs);
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return -ENOMEM;
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}
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/* allocate buf */
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mem = cde_ctx->mem + cde_ctx->num_bufs;
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err = gk20a_gmmu_alloc_map_sys(cde_ctx->vm, buf->num_bytes, mem);
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if (err) {
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gk20a_warn(cde_ctx->dev, "cde: could not allocate device memory. buffer idx = %d",
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cde_ctx->num_bufs);
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return -ENOMEM;
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}
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/* copy the content */
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if (buf->data_byte_offset != 0)
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memcpy(mem->cpu_va, img->data + buf->data_byte_offset,
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buf->num_bytes);
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cde_ctx->num_bufs++;
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return 0;
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}
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static int gk20a_replace_data(struct gk20a_cde_ctx *cde_ctx, void *target,
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int type, s32 shift, u64 mask, u64 value)
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{
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u32 *target_mem_ptr = target;
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u64 *target_mem_ptr_u64 = target;
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u64 current_value, new_value;
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value = (shift >= 0) ? value << shift : value >> -shift;
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value &= mask;
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/* read current data from the location */
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current_value = 0;
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if (type == TYPE_PARAM_TYPE_U32) {
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if (mask != 0xfffffffful)
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current_value = *target_mem_ptr;
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} else if (type == TYPE_PARAM_TYPE_U64_LITTLE) {
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if (mask != ~0ul)
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current_value = *target_mem_ptr_u64;
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} else if (type == TYPE_PARAM_TYPE_U64_BIG) {
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current_value = *target_mem_ptr_u64;
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current_value = (u64)(current_value >> 32) |
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(u64)(current_value << 32);
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} else {
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gk20a_warn(cde_ctx->dev, "cde: unknown type. type=%d",
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type);
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return -EINVAL;
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}
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current_value &= ~mask;
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new_value = current_value | value;
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/* store the element data back */
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if (type == TYPE_PARAM_TYPE_U32)
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*target_mem_ptr = (u32)new_value;
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else if (type == TYPE_PARAM_TYPE_U64_LITTLE)
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*target_mem_ptr_u64 = new_value;
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else {
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new_value = (u64)(new_value >> 32) |
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(u64)(new_value << 32);
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*target_mem_ptr_u64 = new_value;
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}
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return 0;
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}
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static int gk20a_init_cde_replace(struct gk20a_cde_ctx *cde_ctx,
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const struct firmware *img,
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struct gk20a_cde_hdr_replace *replace)
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{
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struct mem_desc *source_mem;
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struct mem_desc *target_mem;
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u32 *target_mem_ptr;
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u64 vaddr;
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int err;
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if (replace->target_buf >= cde_ctx->num_bufs ||
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replace->source_buf >= cde_ctx->num_bufs) {
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gk20a_warn(cde_ctx->dev, "cde: invalid buffer. target_buf=%u, source_buf=%u, num_bufs=%d",
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replace->target_buf, replace->source_buf,
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cde_ctx->num_bufs);
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return -EINVAL;
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}
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source_mem = cde_ctx->mem + replace->source_buf;
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target_mem = cde_ctx->mem + replace->target_buf;
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target_mem_ptr = target_mem->cpu_va;
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if (source_mem->size < (replace->source_byte_offset + 3) ||
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target_mem->size < (replace->target_byte_offset + 3)) {
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gk20a_warn(cde_ctx->dev, "cde: invalid buffer offsets. target_buf_offs=%lld, source_buf_offs=%lld, source_buf_size=%zu, dest_buf_size=%zu",
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replace->target_byte_offset,
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replace->source_byte_offset,
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source_mem->size,
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target_mem->size);
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return -EINVAL;
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}
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/* calculate the target pointer */
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target_mem_ptr += (replace->target_byte_offset / sizeof(u32));
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/* determine patch value */
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vaddr = source_mem->gpu_va + replace->source_byte_offset;
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err = gk20a_replace_data(cde_ctx, target_mem_ptr, replace->type,
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replace->shift, replace->mask,
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vaddr);
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if (err) {
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gk20a_warn(cde_ctx->dev, "cde: replace failed. err=%d, target_buf=%u, target_buf_offs=%lld, source_buf=%u, source_buf_offs=%lld",
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err, replace->target_buf,
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replace->target_byte_offset,
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replace->source_buf,
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replace->source_byte_offset);
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}
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return err;
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}
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static int gk20a_cde_patch_params(struct gk20a_cde_ctx *cde_ctx)
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{
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struct gk20a *g = cde_ctx->g;
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struct mem_desc *target_mem;
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u32 *target_mem_ptr;
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u64 new_data;
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int user_id = 0, err;
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unsigned int i;
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for (i = 0; i < cde_ctx->num_params; i++) {
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struct gk20a_cde_hdr_param *param = cde_ctx->params + i;
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target_mem = cde_ctx->mem + param->target_buf;
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target_mem_ptr = target_mem->cpu_va;
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target_mem_ptr += (param->target_byte_offset / sizeof(u32));
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switch (param->id) {
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case TYPE_PARAM_COMPTAGS_PER_CACHELINE:
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new_data = g->gr.comptags_per_cacheline;
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break;
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case TYPE_PARAM_GPU_CONFIGURATION:
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new_data = (u64)g->ltc_count * g->gr.slices_per_ltc *
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g->gr.cacheline_size;
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break;
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case TYPE_PARAM_FIRSTPAGEOFFSET:
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new_data = cde_ctx->surf_param_offset;
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break;
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case TYPE_PARAM_NUMPAGES:
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new_data = cde_ctx->surf_param_lines;
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break;
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case TYPE_PARAM_BACKINGSTORE:
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new_data = cde_ctx->backing_store_vaddr;
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break;
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case TYPE_PARAM_DESTINATION:
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new_data = cde_ctx->compbit_vaddr;
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break;
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case TYPE_PARAM_DESTINATION_SIZE:
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new_data = cde_ctx->compbit_size;
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break;
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case TYPE_PARAM_BACKINGSTORE_SIZE:
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new_data = g->gr.compbit_store.mem.size;
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break;
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case TYPE_PARAM_SOURCE_SMMU_ADDR:
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new_data = gk20a_mm_gpuva_to_iova_base(cde_ctx->vm,
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cde_ctx->surf_vaddr);
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if (new_data == 0)
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return -EINVAL;
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break;
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case TYPE_PARAM_BACKINGSTORE_BASE_HW:
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new_data = g->gr.compbit_store.base_hw;
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break;
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case TYPE_PARAM_GOBS_PER_COMPTAGLINE_PER_SLICE:
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new_data = g->gr.gobs_per_comptagline_per_slice;
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break;
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case TYPE_PARAM_SCATTERBUFFER:
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new_data = cde_ctx->scatterbuffer_vaddr;
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break;
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case TYPE_PARAM_SCATTERBUFFER_SIZE:
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new_data = cde_ctx->scatterbuffer_size;
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break;
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default:
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user_id = param->id - NUM_RESERVED_PARAMS;
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if (user_id < 0 || user_id >= MAX_CDE_USER_PARAMS)
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continue;
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new_data = cde_ctx->user_param_values[user_id];
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}
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gk20a_dbg(gpu_dbg_cde, "cde: patch: idx_in_file=%d param_id=%d target_buf=%u target_byte_offset=%lld data_value=0x%llx data_offset/data_diff=%lld data_type=%d data_shift=%d data_mask=0x%llx",
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i, param->id, param->target_buf,
|
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param->target_byte_offset, new_data,
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param->data_offset, param->type, param->shift,
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param->mask);
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new_data += param->data_offset;
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err = gk20a_replace_data(cde_ctx, target_mem_ptr, param->type,
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param->shift, param->mask, new_data);
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|
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if (err) {
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gk20a_warn(cde_ctx->dev, "cde: patch failed. err=%d, idx=%d, id=%d, target_buf=%u, target_buf_offs=%lld, patch_value=%llu",
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err, i, param->id, param->target_buf,
|
|
param->target_byte_offset, new_data);
|
|
return err;
|
|
}
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int gk20a_init_cde_param(struct gk20a_cde_ctx *cde_ctx,
|
|
const struct firmware *img,
|
|
struct gk20a_cde_hdr_param *param)
|
|
{
|
|
struct mem_desc *target_mem;
|
|
|
|
if (param->target_buf >= cde_ctx->num_bufs) {
|
|
gk20a_warn(cde_ctx->dev, "cde: invalid buffer parameter. param idx = %d, target_buf=%u, num_bufs=%u",
|
|
cde_ctx->num_params, param->target_buf,
|
|
cde_ctx->num_bufs);
|
|
return -EINVAL;
|
|
}
|
|
|
|
target_mem = cde_ctx->mem + param->target_buf;
|
|
if (target_mem->size < (param->target_byte_offset + 3)) {
|
|
gk20a_warn(cde_ctx->dev, "cde: invalid buffer parameter. param idx = %d, target_buf_offs=%lld, target_buf_size=%zu",
|
|
cde_ctx->num_params, param->target_byte_offset,
|
|
target_mem->size);
|
|
return -EINVAL;
|
|
}
|
|
|
|
/* does this parameter fit into our parameter structure */
|
|
if (cde_ctx->num_params >= MAX_CDE_PARAMS) {
|
|
gk20a_warn(cde_ctx->dev, "cde: no room for new parameters param idx = %d",
|
|
cde_ctx->num_params);
|
|
return -ENOMEM;
|
|
}
|
|
|
|
/* is the given id valid? */
|
|
if (param->id >= NUM_RESERVED_PARAMS + MAX_CDE_USER_PARAMS) {
|
|
gk20a_warn(cde_ctx->dev, "cde: parameter id is not valid. param idx = %d, id=%u, max=%u",
|
|
param->id, cde_ctx->num_params,
|
|
NUM_RESERVED_PARAMS + MAX_CDE_USER_PARAMS);
|
|
return -EINVAL;
|
|
}
|
|
|
|
cde_ctx->params[cde_ctx->num_params] = *param;
|
|
cde_ctx->num_params++;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int gk20a_init_cde_required_class(struct gk20a_cde_ctx *cde_ctx,
|
|
const struct firmware *img,
|
|
u32 required_class)
|
|
{
|
|
struct nvgpu_alloc_obj_ctx_args alloc_obj_ctx;
|
|
int err;
|
|
|
|
alloc_obj_ctx.class_num = required_class;
|
|
alloc_obj_ctx.flags = 0;
|
|
|
|
/* CDE enabled */
|
|
cde_ctx->ch->cde = true;
|
|
|
|
err = gk20a_alloc_obj_ctx(cde_ctx->ch, &alloc_obj_ctx);
|
|
if (err) {
|
|
gk20a_warn(cde_ctx->dev, "cde: failed to allocate ctx. err=%d",
|
|
err);
|
|
return err;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int gk20a_init_cde_command(struct gk20a_cde_ctx *cde_ctx,
|
|
const struct firmware *img,
|
|
u32 op,
|
|
struct gk20a_cde_cmd_elem *cmd_elem,
|
|
u32 num_elems)
|
|
{
|
|
struct nvgpu_gpfifo **gpfifo, *gpfifo_elem;
|
|
u32 *num_entries;
|
|
unsigned int i;
|
|
|
|
/* check command type */
|
|
if (op == TYPE_BUF_COMMAND_INIT) {
|
|
gpfifo = &cde_ctx->init_convert_cmd;
|
|
num_entries = &cde_ctx->init_cmd_num_entries;
|
|
} else if (op == TYPE_BUF_COMMAND_CONVERT) {
|
|
gpfifo = &cde_ctx->convert_cmd;
|
|
num_entries = &cde_ctx->convert_cmd_num_entries;
|
|
} else {
|
|
gk20a_warn(cde_ctx->dev, "cde: unknown command. op=%u",
|
|
op);
|
|
return -EINVAL;
|
|
}
|
|
|
|
/* allocate gpfifo entries to be pushed */
|
|
*gpfifo = kzalloc(sizeof(struct nvgpu_gpfifo) * num_elems,
|
|
GFP_KERNEL);
|
|
if (!*gpfifo) {
|
|
gk20a_warn(cde_ctx->dev, "cde: could not allocate memory for gpfifo entries");
|
|
return -ENOMEM;
|
|
}
|
|
|
|
gpfifo_elem = *gpfifo;
|
|
for (i = 0; i < num_elems; i++, cmd_elem++, gpfifo_elem++) {
|
|
struct mem_desc *target_mem;
|
|
|
|
/* validate the current entry */
|
|
if (cmd_elem->target_buf >= cde_ctx->num_bufs) {
|
|
gk20a_warn(cde_ctx->dev, "cde: target buffer is not available (target=%u, num_bufs=%u)",
|
|
cmd_elem->target_buf, cde_ctx->num_bufs);
|
|
return -EINVAL;
|
|
}
|
|
|
|
target_mem = cde_ctx->mem + cmd_elem->target_buf;
|
|
if (target_mem->size<
|
|
cmd_elem->target_byte_offset + cmd_elem->num_bytes) {
|
|
gk20a_warn(cde_ctx->dev, "cde: target buffer cannot hold all entries (target_size=%zu, target_byte_offset=%lld, num_bytes=%llu)",
|
|
target_mem->size,
|
|
cmd_elem->target_byte_offset,
|
|
cmd_elem->num_bytes);
|
|
return -EINVAL;
|
|
}
|
|
|
|
/* store the element into gpfifo */
|
|
gpfifo_elem->entry0 =
|
|
u64_lo32(target_mem->gpu_va +
|
|
cmd_elem->target_byte_offset);
|
|
gpfifo_elem->entry1 =
|
|
u64_hi32(target_mem->gpu_va +
|
|
cmd_elem->target_byte_offset) |
|
|
pbdma_gp_entry1_length_f(cmd_elem->num_bytes /
|
|
sizeof(u32));
|
|
}
|
|
|
|
*num_entries = num_elems;
|
|
return 0;
|
|
}
|
|
|
|
static int gk20a_cde_pack_cmdbufs(struct gk20a_cde_ctx *cde_ctx)
|
|
{
|
|
unsigned long init_bytes = cde_ctx->init_cmd_num_entries *
|
|
sizeof(struct nvgpu_gpfifo);
|
|
unsigned long conv_bytes = cde_ctx->convert_cmd_num_entries *
|
|
sizeof(struct nvgpu_gpfifo);
|
|
unsigned long total_bytes = init_bytes + conv_bytes;
|
|
struct nvgpu_gpfifo *combined_cmd;
|
|
|
|
/* allocate buffer that has space for both */
|
|
combined_cmd = kzalloc(total_bytes, GFP_KERNEL);
|
|
if (!combined_cmd) {
|
|
gk20a_warn(cde_ctx->dev,
|
|
"cde: could not allocate memory for gpfifo entries");
|
|
return -ENOMEM;
|
|
}
|
|
|
|
/* move the original init here and append convert */
|
|
memcpy(combined_cmd, cde_ctx->init_convert_cmd, init_bytes);
|
|
memcpy(combined_cmd + cde_ctx->init_cmd_num_entries,
|
|
cde_ctx->convert_cmd, conv_bytes);
|
|
|
|
kfree(cde_ctx->init_convert_cmd);
|
|
kfree(cde_ctx->convert_cmd);
|
|
|
|
cde_ctx->init_convert_cmd = combined_cmd;
|
|
cde_ctx->convert_cmd = combined_cmd
|
|
+ cde_ctx->init_cmd_num_entries;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int gk20a_init_cde_img(struct gk20a_cde_ctx *cde_ctx,
|
|
const struct firmware *img)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &cde_ctx->g->cde_app;
|
|
u32 *data = (u32 *)img->data;
|
|
u32 num_of_elems;
|
|
struct gk20a_cde_hdr_elem *elem;
|
|
u32 min_size = 0;
|
|
int err = 0;
|
|
unsigned int i;
|
|
|
|
min_size += 2 * sizeof(u32);
|
|
if (img->size < min_size) {
|
|
gk20a_warn(cde_ctx->dev, "cde: invalid image header");
|
|
return -EINVAL;
|
|
}
|
|
|
|
cde_app->firmware_version = data[0];
|
|
num_of_elems = data[1];
|
|
|
|
min_size += num_of_elems * sizeof(*elem);
|
|
if (img->size < min_size) {
|
|
gk20a_warn(cde_ctx->dev, "cde: bad image");
|
|
return -EINVAL;
|
|
}
|
|
|
|
elem = (struct gk20a_cde_hdr_elem *)&data[2];
|
|
for (i = 0; i < num_of_elems; i++) {
|
|
int err = 0;
|
|
switch (elem->type) {
|
|
case TYPE_BUF:
|
|
err = gk20a_init_cde_buf(cde_ctx, img, &elem->buf);
|
|
break;
|
|
case TYPE_REPLACE:
|
|
err = gk20a_init_cde_replace(cde_ctx, img,
|
|
&elem->replace);
|
|
break;
|
|
case TYPE_PARAM:
|
|
err = gk20a_init_cde_param(cde_ctx, img, &elem->param);
|
|
break;
|
|
case TYPE_REQUIRED_CLASS:
|
|
err = gk20a_init_cde_required_class(cde_ctx, img,
|
|
elem->required_class);
|
|
break;
|
|
case TYPE_COMMAND:
|
|
{
|
|
struct gk20a_cde_cmd_elem *cmd = (void *)
|
|
&img->data[elem->command.data_byte_offset];
|
|
err = gk20a_init_cde_command(cde_ctx, img,
|
|
elem->command.op, cmd,
|
|
elem->command.num_entries);
|
|
break;
|
|
}
|
|
case TYPE_ARRAY:
|
|
memcpy(&cde_app->arrays[elem->array.id][0],
|
|
elem->array.data,
|
|
MAX_CDE_ARRAY_ENTRIES*sizeof(u32));
|
|
break;
|
|
default:
|
|
gk20a_warn(cde_ctx->dev, "cde: unknown header element");
|
|
err = -EINVAL;
|
|
}
|
|
|
|
if (err)
|
|
goto deinit_image;
|
|
|
|
elem++;
|
|
}
|
|
|
|
if (!cde_ctx->init_convert_cmd || !cde_ctx->init_cmd_num_entries) {
|
|
gk20a_warn(cde_ctx->dev, "cde: convert command not defined");
|
|
err = -EINVAL;
|
|
goto deinit_image;
|
|
}
|
|
|
|
if (!cde_ctx->convert_cmd || !cde_ctx->convert_cmd_num_entries) {
|
|
gk20a_warn(cde_ctx->dev, "cde: convert command not defined");
|
|
err = -EINVAL;
|
|
goto deinit_image;
|
|
}
|
|
|
|
err = gk20a_cde_pack_cmdbufs(cde_ctx);
|
|
if (err)
|
|
goto deinit_image;
|
|
|
|
return 0;
|
|
|
|
deinit_image:
|
|
gk20a_deinit_cde_img(cde_ctx);
|
|
return err;
|
|
}
|
|
|
|
static int gk20a_cde_execute_buffer(struct gk20a_cde_ctx *cde_ctx,
|
|
u32 op, struct nvgpu_fence *fence,
|
|
u32 flags, struct gk20a_fence **fence_out)
|
|
{
|
|
struct nvgpu_gpfifo *gpfifo = NULL;
|
|
int num_entries = 0;
|
|
|
|
/* check command type */
|
|
if (op == TYPE_BUF_COMMAND_INIT) {
|
|
/* both init and convert combined */
|
|
gpfifo = cde_ctx->init_convert_cmd;
|
|
num_entries = cde_ctx->init_cmd_num_entries
|
|
+ cde_ctx->convert_cmd_num_entries;
|
|
} else if (op == TYPE_BUF_COMMAND_CONVERT) {
|
|
gpfifo = cde_ctx->convert_cmd;
|
|
num_entries = cde_ctx->convert_cmd_num_entries;
|
|
} else {
|
|
gk20a_warn(cde_ctx->dev, "cde: unknown buffer");
|
|
return -EINVAL;
|
|
}
|
|
|
|
if (gpfifo == NULL || num_entries == 0) {
|
|
gk20a_warn(cde_ctx->dev, "cde: buffer not available");
|
|
return -ENOSYS;
|
|
}
|
|
|
|
return gk20a_submit_channel_gpfifo(cde_ctx->ch, gpfifo, NULL,
|
|
num_entries, flags, fence, fence_out, true,
|
|
NULL);
|
|
}
|
|
|
|
static void gk20a_cde_ctx_release(struct gk20a_cde_ctx *cde_ctx)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &cde_ctx->g->cde_app;
|
|
|
|
gk20a_dbg(gpu_dbg_cde_ctx, "releasing use on %p", cde_ctx);
|
|
trace_gk20a_cde_release(cde_ctx);
|
|
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
|
|
if (cde_ctx->in_use) {
|
|
cde_ctx->in_use = false;
|
|
list_move(&cde_ctx->list, &cde_app->free_contexts);
|
|
cde_app->ctx_usecount--;
|
|
} else {
|
|
gk20a_dbg_info("double release cde context %p", cde_ctx);
|
|
}
|
|
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
}
|
|
|
|
static void gk20a_cde_ctx_deleter_fn(struct work_struct *work)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct delayed_work *delay_work = to_delayed_work(work);
|
|
struct gk20a_cde_ctx *cde_ctx = container_of(delay_work,
|
|
struct gk20a_cde_ctx, ctx_deleter_work);
|
|
struct gk20a_cde_app *cde_app = &cde_ctx->g->cde_app;
|
|
struct device *dev = cde_ctx->dev;
|
|
int err;
|
|
|
|
/* someone has just taken it? engine deletion started? */
|
|
if (cde_ctx->in_use || !cde_app->initialised)
|
|
return;
|
|
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx,
|
|
"cde: attempting to delete temporary %p", cde_ctx);
|
|
|
|
err = gk20a_busy(dev);
|
|
if (err) {
|
|
/* this context would find new use anyway later, so not freeing
|
|
* here does not leak anything */
|
|
gk20a_warn(dev, "cde: cannot set gk20a on, postponing"
|
|
" temp ctx deletion");
|
|
return;
|
|
}
|
|
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
if (cde_ctx->in_use || !cde_app->initialised) {
|
|
gk20a_dbg(gpu_dbg_cde_ctx,
|
|
"cde: context use raced, not deleting %p",
|
|
cde_ctx);
|
|
goto out;
|
|
}
|
|
|
|
WARN(delayed_work_pending(&cde_ctx->ctx_deleter_work),
|
|
"double pending %p", cde_ctx);
|
|
|
|
gk20a_cde_remove_ctx(cde_ctx);
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx,
|
|
"cde: destroyed %p count=%d use=%d max=%d",
|
|
cde_ctx, cde_app->ctx_count, cde_app->ctx_usecount,
|
|
cde_app->ctx_count_top);
|
|
|
|
out:
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
gk20a_idle(dev);
|
|
}
|
|
|
|
static struct gk20a_cde_ctx *gk20a_cde_do_get_context(struct gk20a *g)
|
|
__must_hold(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &g->cde_app;
|
|
struct gk20a_cde_ctx *cde_ctx;
|
|
|
|
/* exhausted? */
|
|
|
|
if (cde_app->ctx_usecount >= MAX_CTX_USE_COUNT)
|
|
return ERR_PTR(-EAGAIN);
|
|
|
|
/* idle context available? */
|
|
|
|
if (!list_empty(&cde_app->free_contexts)) {
|
|
cde_ctx = list_first_entry(&cde_app->free_contexts,
|
|
struct gk20a_cde_ctx, list);
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx,
|
|
"cde: got free %p count=%d use=%d max=%d",
|
|
cde_ctx, cde_app->ctx_count,
|
|
cde_app->ctx_usecount,
|
|
cde_app->ctx_count_top);
|
|
trace_gk20a_cde_get_context(cde_ctx);
|
|
|
|
/* deleter work may be scheduled, but in_use prevents it */
|
|
cde_ctx->in_use = true;
|
|
list_move(&cde_ctx->list, &cde_app->used_contexts);
|
|
cde_app->ctx_usecount++;
|
|
|
|
/* cancel any deletions now that ctx is in use */
|
|
gk20a_cde_cancel_deleter(cde_ctx, true);
|
|
return cde_ctx;
|
|
}
|
|
|
|
/* no free contexts, get a temporary one */
|
|
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx,
|
|
"cde: no free contexts, count=%d",
|
|
cde_app->ctx_count);
|
|
|
|
cde_ctx = gk20a_cde_allocate_context(g);
|
|
if (IS_ERR(cde_ctx)) {
|
|
gk20a_warn(g->dev, "cde: cannot allocate context: %ld",
|
|
PTR_ERR(cde_ctx));
|
|
return cde_ctx;
|
|
}
|
|
|
|
trace_gk20a_cde_get_context(cde_ctx);
|
|
cde_ctx->in_use = true;
|
|
cde_ctx->is_temporary = true;
|
|
cde_app->ctx_usecount++;
|
|
cde_app->ctx_count++;
|
|
if (cde_app->ctx_count > cde_app->ctx_count_top)
|
|
cde_app->ctx_count_top = cde_app->ctx_count;
|
|
list_add(&cde_ctx->list, &cde_app->used_contexts);
|
|
|
|
return cde_ctx;
|
|
}
|
|
|
|
static struct gk20a_cde_ctx *gk20a_cde_get_context(struct gk20a *g)
|
|
__releases(&cde_app->mutex)
|
|
__acquires(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &g->cde_app;
|
|
struct gk20a_cde_ctx *cde_ctx = NULL;
|
|
struct nvgpu_timeout timeout;
|
|
|
|
nvgpu_timeout_init(g, &timeout, MAX_CTX_RETRY_TIME,
|
|
NVGPU_TIMER_CPU_TIMER);
|
|
|
|
do {
|
|
cde_ctx = gk20a_cde_do_get_context(g);
|
|
if (PTR_ERR(cde_ctx) != -EAGAIN)
|
|
break;
|
|
|
|
/* exhausted, retry */
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
cond_resched();
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
} while (!nvgpu_timeout_expired(&timeout));
|
|
|
|
return cde_ctx;
|
|
}
|
|
|
|
static struct gk20a_cde_ctx *gk20a_cde_allocate_context(struct gk20a *g)
|
|
{
|
|
struct gk20a_cde_ctx *cde_ctx;
|
|
int ret;
|
|
|
|
cde_ctx = kzalloc(sizeof(*cde_ctx), GFP_KERNEL);
|
|
if (!cde_ctx)
|
|
return ERR_PTR(-ENOMEM);
|
|
|
|
cde_ctx->g = g;
|
|
cde_ctx->dev = g->dev;
|
|
|
|
ret = gk20a_cde_load(cde_ctx);
|
|
if (ret) {
|
|
kfree(cde_ctx);
|
|
return ERR_PTR(ret);
|
|
}
|
|
|
|
INIT_LIST_HEAD(&cde_ctx->list);
|
|
cde_ctx->is_temporary = false;
|
|
cde_ctx->in_use = false;
|
|
INIT_DELAYED_WORK(&cde_ctx->ctx_deleter_work,
|
|
gk20a_cde_ctx_deleter_fn);
|
|
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx, "cde: allocated %p", cde_ctx);
|
|
trace_gk20a_cde_allocate_context(cde_ctx);
|
|
return cde_ctx;
|
|
}
|
|
|
|
int gk20a_cde_convert(struct gk20a *g,
|
|
struct dma_buf *compbits_scatter_buf,
|
|
u64 compbits_byte_offset,
|
|
u64 scatterbuffer_byte_offset,
|
|
struct nvgpu_fence *fence,
|
|
u32 __flags, struct gk20a_cde_param *params,
|
|
int num_params, struct gk20a_fence **fence_out)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_ctx *cde_ctx = NULL;
|
|
struct gk20a_comptags comptags;
|
|
u64 mapped_compbits_offset = 0;
|
|
u64 compbits_size = 0;
|
|
u64 mapped_scatterbuffer_offset = 0;
|
|
u64 scatterbuffer_size = 0;
|
|
u64 map_vaddr = 0;
|
|
u64 map_offset = 0;
|
|
u64 map_size = 0;
|
|
u8 *surface = NULL;
|
|
u64 big_page_mask = 0;
|
|
u32 flags;
|
|
int err, i;
|
|
const s32 compbits_kind = 0;
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "compbits_byte_offset=%llu scatterbuffer_byte_offset=%llu",
|
|
compbits_byte_offset, scatterbuffer_byte_offset);
|
|
|
|
/* scatter buffer must be after compbits buffer */
|
|
if (scatterbuffer_byte_offset &&
|
|
scatterbuffer_byte_offset < compbits_byte_offset)
|
|
return -EINVAL;
|
|
|
|
err = gk20a_busy(g->dev);
|
|
if (err)
|
|
return err;
|
|
|
|
nvgpu_mutex_acquire(&g->cde_app.mutex);
|
|
cde_ctx = gk20a_cde_get_context(g);
|
|
nvgpu_mutex_release(&g->cde_app.mutex);
|
|
if (IS_ERR(cde_ctx)) {
|
|
err = PTR_ERR(cde_ctx);
|
|
goto exit_idle;
|
|
}
|
|
|
|
/* First, map the buffer to local va */
|
|
|
|
/* ensure that the compbits buffer has drvdata */
|
|
err = gk20a_dmabuf_alloc_drvdata(compbits_scatter_buf, g->dev);
|
|
if (err)
|
|
goto exit_idle;
|
|
|
|
/* compbits don't start at page aligned offset, so we need to align
|
|
the region to be mapped */
|
|
big_page_mask = cde_ctx->vm->big_page_size - 1;
|
|
map_offset = compbits_byte_offset & ~big_page_mask;
|
|
map_size = compbits_scatter_buf->size - map_offset;
|
|
|
|
|
|
/* compute compbit start offset from the beginning of the mapped
|
|
area */
|
|
mapped_compbits_offset = compbits_byte_offset - map_offset;
|
|
if (scatterbuffer_byte_offset) {
|
|
compbits_size = scatterbuffer_byte_offset -
|
|
compbits_byte_offset;
|
|
mapped_scatterbuffer_offset = scatterbuffer_byte_offset -
|
|
map_offset;
|
|
scatterbuffer_size = compbits_scatter_buf->size -
|
|
scatterbuffer_byte_offset;
|
|
} else {
|
|
compbits_size = compbits_scatter_buf->size -
|
|
compbits_byte_offset;
|
|
}
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "map_offset=%llu map_size=%llu",
|
|
map_offset, map_size);
|
|
gk20a_dbg(gpu_dbg_cde, "mapped_compbits_offset=%llu compbits_size=%llu",
|
|
mapped_compbits_offset, compbits_size);
|
|
gk20a_dbg(gpu_dbg_cde, "mapped_scatterbuffer_offset=%llu scatterbuffer_size=%llu",
|
|
mapped_scatterbuffer_offset, scatterbuffer_size);
|
|
|
|
|
|
/* map the destination buffer */
|
|
get_dma_buf(compbits_scatter_buf); /* a ref for gk20a_vm_map */
|
|
map_vaddr = gk20a_vm_map(cde_ctx->vm, compbits_scatter_buf, 0,
|
|
NVGPU_MAP_BUFFER_FLAGS_CACHEABLE_TRUE,
|
|
compbits_kind, NULL, true,
|
|
gk20a_mem_flag_none,
|
|
map_offset, map_size,
|
|
NULL);
|
|
if (!map_vaddr) {
|
|
dma_buf_put(compbits_scatter_buf);
|
|
err = -EINVAL;
|
|
goto exit_idle;
|
|
}
|
|
|
|
if (scatterbuffer_byte_offset &&
|
|
g->ops.cde.need_scatter_buffer &&
|
|
g->ops.cde.need_scatter_buffer(g)) {
|
|
struct sg_table *sgt;
|
|
void *scatter_buffer;
|
|
|
|
surface = dma_buf_vmap(compbits_scatter_buf);
|
|
if (IS_ERR(surface)) {
|
|
gk20a_warn(g->dev,
|
|
"dma_buf_vmap failed");
|
|
err = -EINVAL;
|
|
goto exit_unmap_vaddr;
|
|
}
|
|
|
|
scatter_buffer = surface + scatterbuffer_byte_offset;
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "surface=0x%p scatterBuffer=0x%p",
|
|
surface, scatter_buffer);
|
|
sgt = gk20a_mm_pin(g->dev, compbits_scatter_buf);
|
|
if (IS_ERR(sgt)) {
|
|
gk20a_warn(g->dev,
|
|
"mm_pin failed");
|
|
err = -EINVAL;
|
|
goto exit_unmap_surface;
|
|
} else {
|
|
err = g->ops.cde.populate_scatter_buffer(g, sgt,
|
|
compbits_byte_offset, scatter_buffer,
|
|
scatterbuffer_size);
|
|
WARN_ON(err);
|
|
|
|
gk20a_mm_unpin(g->dev, compbits_scatter_buf,
|
|
sgt);
|
|
if (err)
|
|
goto exit_unmap_surface;
|
|
}
|
|
|
|
__cpuc_flush_dcache_area(scatter_buffer, scatterbuffer_size);
|
|
dma_buf_vunmap(compbits_scatter_buf, surface);
|
|
surface = NULL;
|
|
}
|
|
|
|
/* store source buffer compression tags */
|
|
gk20a_get_comptags(g->dev, compbits_scatter_buf, &comptags);
|
|
cde_ctx->surf_param_offset = comptags.offset;
|
|
cde_ctx->surf_param_lines = comptags.lines;
|
|
|
|
/* store surface vaddr. This is actually compbit vaddr, but since
|
|
compbits live in the same surface, and we can get the alloc base
|
|
address by using gk20a_mm_gpuva_to_iova_base, this will do */
|
|
cde_ctx->surf_vaddr = map_vaddr;
|
|
|
|
/* store information about destination */
|
|
cde_ctx->compbit_vaddr = map_vaddr + mapped_compbits_offset;
|
|
cde_ctx->compbit_size = compbits_size;
|
|
|
|
cde_ctx->scatterbuffer_vaddr = map_vaddr + mapped_scatterbuffer_offset;
|
|
cde_ctx->scatterbuffer_size = scatterbuffer_size;
|
|
|
|
/* remove existing argument data */
|
|
memset(cde_ctx->user_param_values, 0,
|
|
sizeof(cde_ctx->user_param_values));
|
|
|
|
/* read user space arguments for the conversion */
|
|
for (i = 0; i < num_params; i++) {
|
|
struct gk20a_cde_param *param = params + i;
|
|
int id = param->id - NUM_RESERVED_PARAMS;
|
|
|
|
if (id < 0 || id >= MAX_CDE_USER_PARAMS) {
|
|
gk20a_warn(cde_ctx->dev, "cde: unknown user parameter");
|
|
err = -EINVAL;
|
|
goto exit_unmap_surface;
|
|
}
|
|
cde_ctx->user_param_values[id] = param->value;
|
|
}
|
|
|
|
/* patch data */
|
|
err = gk20a_cde_patch_params(cde_ctx);
|
|
if (err) {
|
|
gk20a_warn(cde_ctx->dev, "cde: failed to patch parameters");
|
|
goto exit_unmap_surface;
|
|
}
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "cde: buffer=cbc, size=%zu, gpuva=%llx\n",
|
|
g->gr.compbit_store.mem.size, cde_ctx->backing_store_vaddr);
|
|
gk20a_dbg(gpu_dbg_cde, "cde: buffer=compbits, size=%llu, gpuva=%llx\n",
|
|
cde_ctx->compbit_size, cde_ctx->compbit_vaddr);
|
|
gk20a_dbg(gpu_dbg_cde, "cde: buffer=scatterbuffer, size=%llu, gpuva=%llx\n",
|
|
cde_ctx->scatterbuffer_size, cde_ctx->scatterbuffer_vaddr);
|
|
|
|
/* take always the postfence as it is needed for protecting the
|
|
* cde context */
|
|
flags = __flags | NVGPU_SUBMIT_GPFIFO_FLAGS_FENCE_GET;
|
|
|
|
/* gk20a_cde_execute_buffer() will grab a power reference of it's own */
|
|
gk20a_idle(g->dev);
|
|
|
|
/* execute the conversion buffer, combined with init first if it's the
|
|
* first time */
|
|
err = gk20a_cde_execute_buffer(cde_ctx,
|
|
cde_ctx->init_cmd_executed
|
|
? TYPE_BUF_COMMAND_CONVERT
|
|
: TYPE_BUF_COMMAND_INIT,
|
|
fence, flags, fence_out);
|
|
|
|
cde_ctx->init_cmd_executed = true;
|
|
|
|
/* unmap the buffers - channel holds references to them now */
|
|
if (surface)
|
|
dma_buf_vunmap(compbits_scatter_buf, surface);
|
|
gk20a_vm_unmap(cde_ctx->vm, map_vaddr);
|
|
|
|
return err;
|
|
|
|
exit_unmap_surface:
|
|
if (surface)
|
|
dma_buf_vunmap(compbits_scatter_buf, surface);
|
|
exit_unmap_vaddr:
|
|
gk20a_vm_unmap(cde_ctx->vm, map_vaddr);
|
|
exit_idle:
|
|
gk20a_idle(g->dev);
|
|
return err;
|
|
}
|
|
|
|
static void gk20a_cde_finished_ctx_cb(struct channel_gk20a *ch, void *data)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_ctx *cde_ctx = data;
|
|
struct gk20a *g = cde_ctx->g;
|
|
struct gk20a_cde_app *cde_app = &g->cde_app;
|
|
bool channel_idle;
|
|
|
|
channel_gk20a_joblist_lock(ch);
|
|
channel_idle = channel_gk20a_joblist_is_empty(ch);
|
|
channel_gk20a_joblist_unlock(ch);
|
|
|
|
if (!channel_idle)
|
|
return;
|
|
|
|
trace_gk20a_cde_finished_ctx_cb(cde_ctx);
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx, "cde: finished %p", cde_ctx);
|
|
if (!cde_ctx->in_use)
|
|
gk20a_dbg_info("double finish cde context %p on channel %p",
|
|
cde_ctx, ch);
|
|
|
|
if (ch->has_timedout) {
|
|
if (cde_ctx->is_temporary) {
|
|
gk20a_warn(cde_ctx->dev,
|
|
"cde: channel had timed out"
|
|
" (temporary channel)");
|
|
/* going to be deleted anyway */
|
|
} else {
|
|
gk20a_warn(cde_ctx->dev,
|
|
"cde: channel had timed out"
|
|
", reloading");
|
|
/* mark it to be deleted, replace with a new one */
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
cde_ctx->is_temporary = true;
|
|
if (gk20a_cde_create_context(g)) {
|
|
gk20a_err(cde_ctx->dev,
|
|
"cde: can't replace context");
|
|
}
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
}
|
|
}
|
|
|
|
/* delete temporary contexts later (watch for doubles) */
|
|
if (cde_ctx->is_temporary && cde_ctx->in_use) {
|
|
WARN_ON(delayed_work_pending(&cde_ctx->ctx_deleter_work));
|
|
schedule_delayed_work(&cde_ctx->ctx_deleter_work,
|
|
msecs_to_jiffies(CTX_DELETE_TIME));
|
|
}
|
|
|
|
if (!ch->has_timedout)
|
|
gk20a_cde_ctx_release(cde_ctx);
|
|
}
|
|
|
|
static int gk20a_cde_load(struct gk20a_cde_ctx *cde_ctx)
|
|
{
|
|
struct gk20a *g = cde_ctx->g;
|
|
const struct firmware *img;
|
|
struct channel_gk20a *ch;
|
|
struct gr_gk20a *gr = &g->gr;
|
|
int err = 0;
|
|
u64 vaddr;
|
|
|
|
img = nvgpu_request_firmware(g, "gpu2cde.bin", 0);
|
|
if (!img) {
|
|
dev_err(cde_ctx->dev, "cde: could not fetch the firmware");
|
|
return -ENOSYS;
|
|
}
|
|
|
|
ch = gk20a_open_new_channel_with_cb(g, gk20a_cde_finished_ctx_cb,
|
|
cde_ctx,
|
|
-1,
|
|
false);
|
|
if (!ch) {
|
|
gk20a_warn(cde_ctx->dev, "cde: gk20a channel not available");
|
|
err = -ENOMEM;
|
|
goto err_get_gk20a_channel;
|
|
}
|
|
|
|
/* bind the channel to the vm */
|
|
err = __gk20a_vm_bind_channel(&g->mm.cde.vm, ch);
|
|
if (err) {
|
|
gk20a_warn(cde_ctx->dev, "cde: could not bind vm");
|
|
goto err_commit_va;
|
|
}
|
|
|
|
/* allocate gpfifo (1024 should be more than enough) */
|
|
err = gk20a_alloc_channel_gpfifo(ch,
|
|
&(struct nvgpu_alloc_gpfifo_ex_args){1024, 0, 0, {}});
|
|
if (err) {
|
|
gk20a_warn(cde_ctx->dev, "cde: unable to allocate gpfifo");
|
|
goto err_alloc_gpfifo;
|
|
}
|
|
|
|
/* map backing store to gpu virtual space */
|
|
vaddr = gk20a_gmmu_map(ch->vm, &gr->compbit_store.mem.sgt,
|
|
g->gr.compbit_store.mem.size,
|
|
NVGPU_MAP_BUFFER_FLAGS_CACHEABLE_TRUE,
|
|
gk20a_mem_flag_read_only,
|
|
false,
|
|
gr->compbit_store.mem.aperture);
|
|
|
|
if (!vaddr) {
|
|
gk20a_warn(cde_ctx->dev, "cde: cannot map compression bit backing store");
|
|
err = -ENOMEM;
|
|
goto err_map_backingstore;
|
|
}
|
|
|
|
/* store initialisation data */
|
|
cde_ctx->ch = ch;
|
|
cde_ctx->vm = ch->vm;
|
|
cde_ctx->backing_store_vaddr = vaddr;
|
|
|
|
/* initialise the firmware */
|
|
err = gk20a_init_cde_img(cde_ctx, img);
|
|
if (err) {
|
|
gk20a_warn(cde_ctx->dev, "cde: image initialisation failed");
|
|
goto err_init_cde_img;
|
|
}
|
|
|
|
/* initialisation done */
|
|
release_firmware(img);
|
|
|
|
return 0;
|
|
|
|
err_init_cde_img:
|
|
gk20a_gmmu_unmap(ch->vm, vaddr, g->gr.compbit_store.mem.size, 1);
|
|
err_map_backingstore:
|
|
err_alloc_gpfifo:
|
|
gk20a_vm_put(ch->vm);
|
|
err_commit_va:
|
|
err_get_gk20a_channel:
|
|
release_firmware(img);
|
|
dev_err(cde_ctx->dev, "cde: couldn't initialise buffer converter: %d",
|
|
err);
|
|
return err;
|
|
}
|
|
|
|
int gk20a_cde_reload(struct gk20a *g)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &g->cde_app;
|
|
int err;
|
|
|
|
if (!cde_app->initialised)
|
|
return -ENOSYS;
|
|
|
|
err = gk20a_busy(g->dev);
|
|
if (err)
|
|
return err;
|
|
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
|
|
gk20a_cde_stop(g);
|
|
|
|
err = gk20a_cde_create_contexts(g);
|
|
if (!err)
|
|
cde_app->initialised = true;
|
|
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
|
|
gk20a_idle(g->dev);
|
|
return err;
|
|
}
|
|
|
|
int gk20a_init_cde_support(struct gk20a *g)
|
|
__acquires(&cde_app->mutex)
|
|
__releases(&cde_app->mutex)
|
|
{
|
|
struct gk20a_cde_app *cde_app = &g->cde_app;
|
|
int err;
|
|
|
|
if (cde_app->initialised)
|
|
return 0;
|
|
|
|
gk20a_dbg(gpu_dbg_fn | gpu_dbg_cde_ctx, "cde: init");
|
|
|
|
nvgpu_mutex_init(&cde_app->mutex);
|
|
nvgpu_mutex_acquire(&cde_app->mutex);
|
|
|
|
INIT_LIST_HEAD(&cde_app->free_contexts);
|
|
INIT_LIST_HEAD(&cde_app->used_contexts);
|
|
cde_app->ctx_count = 0;
|
|
cde_app->ctx_count_top = 0;
|
|
cde_app->ctx_usecount = 0;
|
|
|
|
err = gk20a_cde_create_contexts(g);
|
|
if (!err)
|
|
cde_app->initialised = true;
|
|
|
|
nvgpu_mutex_release(&cde_app->mutex);
|
|
gk20a_dbg(gpu_dbg_cde_ctx, "cde: init finished: %d", err);
|
|
return err;
|
|
}
|
|
|
|
enum cde_launch_patch_id {
|
|
PATCH_H_QMD_CTA_RASTER_WIDTH_ID = 1024,
|
|
PATCH_H_QMD_CTA_RASTER_HEIGHT_ID = 1025,
|
|
PATCH_QMD_CTA_RASTER_DEPTH_ID = 1026, /* for firmware v0 only */
|
|
PATCH_QMD_CTA_THREAD_DIMENSION0_ID = 1027,
|
|
PATCH_QMD_CTA_THREAD_DIMENSION1_ID = 1028,
|
|
PATCH_QMD_CTA_THREAD_DIMENSION2_ID = 1029, /* for firmware v0 only */
|
|
PATCH_USER_CONST_XTILES_ID = 1030, /* for firmware v0 only */
|
|
PATCH_USER_CONST_YTILES_ID = 1031, /* for firmware v0 only */
|
|
PATCH_USER_CONST_BLOCKHEIGHTLOG2_ID = 1032,
|
|
PATCH_USER_CONST_DSTPITCH_ID = 1033, /* for firmware v0 only */
|
|
PATCH_H_USER_CONST_FLAGS_ID = 1034, /* for firmware v0 only */
|
|
PATCH_H_VPC_CURRENT_GRID_SIZE_X_ID = 1035,
|
|
PATCH_H_VPC_CURRENT_GRID_SIZE_Y_ID = 1036,
|
|
PATCH_H_VPC_CURRENT_GRID_SIZE_Z_ID = 1037,
|
|
PATCH_VPC_CURRENT_GROUP_SIZE_X_ID = 1038,
|
|
PATCH_VPC_CURRENT_GROUP_SIZE_Y_ID = 1039,
|
|
PATCH_VPC_CURRENT_GROUP_SIZE_Z_ID = 1040,
|
|
PATCH_USER_CONST_XBLOCKS_ID = 1041,
|
|
PATCH_H_USER_CONST_DSTOFFSET_ID = 1042,
|
|
PATCH_V_QMD_CTA_RASTER_WIDTH_ID = 1043,
|
|
PATCH_V_QMD_CTA_RASTER_HEIGHT_ID = 1044,
|
|
PATCH_V_USER_CONST_DSTOFFSET_ID = 1045,
|
|
PATCH_V_VPC_CURRENT_GRID_SIZE_X_ID = 1046,
|
|
PATCH_V_VPC_CURRENT_GRID_SIZE_Y_ID = 1047,
|
|
PATCH_V_VPC_CURRENT_GRID_SIZE_Z_ID = 1048,
|
|
PATCH_H_LAUNCH_WORD1_ID = 1049,
|
|
PATCH_H_LAUNCH_WORD2_ID = 1050,
|
|
PATCH_V_LAUNCH_WORD1_ID = 1051,
|
|
PATCH_V_LAUNCH_WORD2_ID = 1052,
|
|
PATCH_H_QMD_PROGRAM_OFFSET_ID = 1053,
|
|
PATCH_H_QMD_REGISTER_COUNT_ID = 1054,
|
|
PATCH_V_QMD_PROGRAM_OFFSET_ID = 1055,
|
|
PATCH_V_QMD_REGISTER_COUNT_ID = 1056,
|
|
};
|
|
|
|
/* maximum number of WRITE_PATCHes in the below function */
|
|
#define MAX_CDE_LAUNCH_PATCHES 32
|
|
|
|
static int gk20a_buffer_convert_gpu_to_cde_v1(
|
|
struct gk20a *g,
|
|
struct dma_buf *dmabuf, u32 consumer,
|
|
u64 offset, u64 compbits_hoffset, u64 compbits_voffset,
|
|
u64 scatterbuffer_offset,
|
|
u32 width, u32 height, u32 block_height_log2,
|
|
u32 submit_flags, struct nvgpu_fence *fence_in,
|
|
struct gk20a_buffer_state *state)
|
|
{
|
|
struct gk20a_cde_param params[MAX_CDE_LAUNCH_PATCHES];
|
|
int param = 0;
|
|
int err = 0;
|
|
struct gk20a_fence *new_fence = NULL;
|
|
const int wgx = 8;
|
|
const int wgy = 8;
|
|
const int compbits_per_byte = 4; /* one byte stores 4 compbit pairs */
|
|
const int xalign = compbits_per_byte * wgx;
|
|
const int yalign = wgy;
|
|
|
|
/* Compute per launch parameters */
|
|
const int xtiles = (width + 7) >> 3;
|
|
const int ytiles = (height + 7) >> 3;
|
|
const int gridw_h = roundup(xtiles, xalign) / xalign;
|
|
const int gridh_h = roundup(ytiles, yalign) / yalign;
|
|
const int gridw_v = roundup(ytiles, xalign) / xalign;
|
|
const int gridh_v = roundup(xtiles, yalign) / yalign;
|
|
const int xblocks = (xtiles + 1) >> 1;
|
|
const int voffset = compbits_voffset - compbits_hoffset;
|
|
|
|
int hprog = -1;
|
|
int vprog = -1;
|
|
|
|
if (g->ops.cde.get_program_numbers)
|
|
g->ops.cde.get_program_numbers(g, block_height_log2,
|
|
&hprog, &vprog);
|
|
else {
|
|
gk20a_warn(g->dev, "cde: chip not supported");
|
|
return -ENOSYS;
|
|
}
|
|
|
|
if (hprog < 0 || vprog < 0) {
|
|
gk20a_warn(g->dev, "cde: could not determine programs");
|
|
return -ENOSYS;
|
|
}
|
|
|
|
if (xtiles > 8192 / 8 || ytiles > 8192 / 8)
|
|
gk20a_warn(g->dev, "cde: surface is exceptionally large (xtiles=%d, ytiles=%d)",
|
|
xtiles, ytiles);
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "w=%d, h=%d, bh_log2=%d, compbits_hoffset=0x%llx, compbits_voffset=0x%llx, scatterbuffer_offset=0x%llx",
|
|
width, height, block_height_log2,
|
|
compbits_hoffset, compbits_voffset, scatterbuffer_offset);
|
|
gk20a_dbg(gpu_dbg_cde, "resolution (%d, %d) tiles (%d, %d)",
|
|
width, height, xtiles, ytiles);
|
|
gk20a_dbg(gpu_dbg_cde, "group (%d, %d) gridH (%d, %d) gridV (%d, %d)",
|
|
wgx, wgy, gridw_h, gridh_h, gridw_v, gridh_v);
|
|
gk20a_dbg(gpu_dbg_cde, "hprog=%d, offset=0x%x, regs=%d, vprog=%d, offset=0x%x, regs=%d",
|
|
hprog,
|
|
g->cde_app.arrays[ARRAY_PROGRAM_OFFSET][hprog],
|
|
g->cde_app.arrays[ARRAY_REGISTER_COUNT][hprog],
|
|
vprog,
|
|
g->cde_app.arrays[ARRAY_PROGRAM_OFFSET][vprog],
|
|
g->cde_app.arrays[ARRAY_REGISTER_COUNT][vprog]);
|
|
|
|
/* Write parameters */
|
|
#define WRITE_PATCH(NAME, VALUE) \
|
|
params[param++] = (struct gk20a_cde_param){NAME##_ID, 0, VALUE}
|
|
WRITE_PATCH(PATCH_USER_CONST_XBLOCKS, xblocks);
|
|
WRITE_PATCH(PATCH_USER_CONST_BLOCKHEIGHTLOG2,
|
|
block_height_log2);
|
|
WRITE_PATCH(PATCH_QMD_CTA_THREAD_DIMENSION0, wgx);
|
|
WRITE_PATCH(PATCH_QMD_CTA_THREAD_DIMENSION1, wgy);
|
|
WRITE_PATCH(PATCH_VPC_CURRENT_GROUP_SIZE_X, wgx);
|
|
WRITE_PATCH(PATCH_VPC_CURRENT_GROUP_SIZE_Y, wgy);
|
|
WRITE_PATCH(PATCH_VPC_CURRENT_GROUP_SIZE_Z, 1);
|
|
|
|
WRITE_PATCH(PATCH_H_QMD_CTA_RASTER_WIDTH, gridw_h);
|
|
WRITE_PATCH(PATCH_H_QMD_CTA_RASTER_HEIGHT, gridh_h);
|
|
WRITE_PATCH(PATCH_H_USER_CONST_DSTOFFSET, 0);
|
|
WRITE_PATCH(PATCH_H_VPC_CURRENT_GRID_SIZE_X, gridw_h);
|
|
WRITE_PATCH(PATCH_H_VPC_CURRENT_GRID_SIZE_Y, gridh_h);
|
|
WRITE_PATCH(PATCH_H_VPC_CURRENT_GRID_SIZE_Z, 1);
|
|
|
|
WRITE_PATCH(PATCH_V_QMD_CTA_RASTER_WIDTH, gridw_v);
|
|
WRITE_PATCH(PATCH_V_QMD_CTA_RASTER_HEIGHT, gridh_v);
|
|
WRITE_PATCH(PATCH_V_USER_CONST_DSTOFFSET, voffset);
|
|
WRITE_PATCH(PATCH_V_VPC_CURRENT_GRID_SIZE_X, gridw_v);
|
|
WRITE_PATCH(PATCH_V_VPC_CURRENT_GRID_SIZE_Y, gridh_v);
|
|
WRITE_PATCH(PATCH_V_VPC_CURRENT_GRID_SIZE_Z, 1);
|
|
|
|
WRITE_PATCH(PATCH_H_QMD_PROGRAM_OFFSET,
|
|
g->cde_app.arrays[ARRAY_PROGRAM_OFFSET][hprog]);
|
|
WRITE_PATCH(PATCH_H_QMD_REGISTER_COUNT,
|
|
g->cde_app.arrays[ARRAY_REGISTER_COUNT][hprog]);
|
|
WRITE_PATCH(PATCH_V_QMD_PROGRAM_OFFSET,
|
|
g->cde_app.arrays[ARRAY_PROGRAM_OFFSET][vprog]);
|
|
WRITE_PATCH(PATCH_V_QMD_REGISTER_COUNT,
|
|
g->cde_app.arrays[ARRAY_REGISTER_COUNT][vprog]);
|
|
|
|
if (consumer & NVGPU_GPU_COMPBITS_CDEH) {
|
|
WRITE_PATCH(PATCH_H_LAUNCH_WORD1,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][0]);
|
|
WRITE_PATCH(PATCH_H_LAUNCH_WORD2,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][1]);
|
|
} else {
|
|
WRITE_PATCH(PATCH_H_LAUNCH_WORD1,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][2]);
|
|
WRITE_PATCH(PATCH_H_LAUNCH_WORD2,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][3]);
|
|
}
|
|
|
|
if (consumer & NVGPU_GPU_COMPBITS_CDEV) {
|
|
WRITE_PATCH(PATCH_V_LAUNCH_WORD1,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][0]);
|
|
WRITE_PATCH(PATCH_V_LAUNCH_WORD2,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][1]);
|
|
} else {
|
|
WRITE_PATCH(PATCH_V_LAUNCH_WORD1,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][2]);
|
|
WRITE_PATCH(PATCH_V_LAUNCH_WORD2,
|
|
g->cde_app.arrays[ARRAY_LAUNCH_COMMAND][3]);
|
|
}
|
|
#undef WRITE_PATCH
|
|
|
|
err = gk20a_cde_convert(g, dmabuf,
|
|
compbits_hoffset,
|
|
scatterbuffer_offset,
|
|
fence_in, submit_flags,
|
|
params, param, &new_fence);
|
|
if (err)
|
|
goto out;
|
|
|
|
/* compbits generated, update state & fence */
|
|
gk20a_fence_put(state->fence);
|
|
state->fence = new_fence;
|
|
state->valid_compbits |= consumer &
|
|
(NVGPU_GPU_COMPBITS_CDEH | NVGPU_GPU_COMPBITS_CDEV);
|
|
out:
|
|
return err;
|
|
}
|
|
|
|
static int gk20a_buffer_convert_gpu_to_cde(
|
|
struct gk20a *g, struct dma_buf *dmabuf, u32 consumer,
|
|
u64 offset, u64 compbits_hoffset, u64 compbits_voffset,
|
|
u64 scatterbuffer_offset,
|
|
u32 width, u32 height, u32 block_height_log2,
|
|
u32 submit_flags, struct nvgpu_fence *fence_in,
|
|
struct gk20a_buffer_state *state)
|
|
{
|
|
int err = 0;
|
|
|
|
if (!g->cde_app.initialised)
|
|
return -ENOSYS;
|
|
|
|
gk20a_dbg(gpu_dbg_cde, "firmware version = %d\n",
|
|
g->cde_app.firmware_version);
|
|
|
|
if (g->cde_app.firmware_version == 1) {
|
|
err = gk20a_buffer_convert_gpu_to_cde_v1(
|
|
g, dmabuf, consumer, offset, compbits_hoffset,
|
|
compbits_voffset, scatterbuffer_offset,
|
|
width, height, block_height_log2,
|
|
submit_flags, fence_in, state);
|
|
} else {
|
|
dev_err(dev_from_gk20a(g), "unsupported CDE firmware version %d",
|
|
g->cde_app.firmware_version);
|
|
err = -EINVAL;
|
|
}
|
|
|
|
return err;
|
|
}
|
|
|
|
int gk20a_prepare_compressible_read(
|
|
struct gk20a *g, u32 buffer_fd, u32 request, u64 offset,
|
|
u64 compbits_hoffset, u64 compbits_voffset,
|
|
u64 scatterbuffer_offset,
|
|
u32 width, u32 height, u32 block_height_log2,
|
|
u32 submit_flags, struct nvgpu_fence *fence,
|
|
u32 *valid_compbits, u32 *zbc_color,
|
|
struct gk20a_fence **fence_out)
|
|
{
|
|
int err = 0;
|
|
struct gk20a_buffer_state *state;
|
|
struct dma_buf *dmabuf;
|
|
u32 missing_bits;
|
|
|
|
dmabuf = dma_buf_get(buffer_fd);
|
|
if (IS_ERR(dmabuf))
|
|
return -EINVAL;
|
|
|
|
err = gk20a_dmabuf_get_state(dmabuf, dev_from_gk20a(g),
|
|
offset, &state);
|
|
if (err) {
|
|
dma_buf_put(dmabuf);
|
|
return err;
|
|
}
|
|
|
|
missing_bits = (state->valid_compbits ^ request) & request;
|
|
|
|
nvgpu_mutex_acquire(&state->lock);
|
|
|
|
if (state->valid_compbits && request == NVGPU_GPU_COMPBITS_NONE) {
|
|
|
|
gk20a_fence_put(state->fence);
|
|
state->fence = NULL;
|
|
/* state->fence = decompress();
|
|
state->valid_compbits = 0; */
|
|
err = -EINVAL;
|
|
goto out;
|
|
} else if (missing_bits) {
|
|
u32 missing_cde_bits = missing_bits &
|
|
(NVGPU_GPU_COMPBITS_CDEH | NVGPU_GPU_COMPBITS_CDEV);
|
|
if ((state->valid_compbits & NVGPU_GPU_COMPBITS_GPU) &&
|
|
missing_cde_bits) {
|
|
err = gk20a_buffer_convert_gpu_to_cde(
|
|
g, dmabuf,
|
|
missing_cde_bits,
|
|
offset, compbits_hoffset,
|
|
compbits_voffset, scatterbuffer_offset,
|
|
width, height, block_height_log2,
|
|
submit_flags, fence,
|
|
state);
|
|
if (err)
|
|
goto out;
|
|
}
|
|
}
|
|
|
|
if (state->fence && fence_out)
|
|
*fence_out = gk20a_fence_get(state->fence);
|
|
|
|
if (valid_compbits)
|
|
*valid_compbits = state->valid_compbits;
|
|
|
|
if (zbc_color)
|
|
*zbc_color = state->zbc_color;
|
|
|
|
out:
|
|
nvgpu_mutex_release(&state->lock);
|
|
dma_buf_put(dmabuf);
|
|
return err;
|
|
}
|
|
|
|
int gk20a_mark_compressible_write(struct gk20a *g, u32 buffer_fd,
|
|
u32 valid_compbits, u64 offset, u32 zbc_color)
|
|
{
|
|
int err;
|
|
struct gk20a_buffer_state *state;
|
|
struct dma_buf *dmabuf;
|
|
|
|
dmabuf = dma_buf_get(buffer_fd);
|
|
if (IS_ERR(dmabuf)) {
|
|
dev_err(dev_from_gk20a(g), "invalid dmabuf");
|
|
return -EINVAL;
|
|
}
|
|
|
|
err = gk20a_dmabuf_get_state(dmabuf, dev_from_gk20a(g), offset, &state);
|
|
if (err) {
|
|
dev_err(dev_from_gk20a(g), "could not get state from dmabuf");
|
|
dma_buf_put(dmabuf);
|
|
return err;
|
|
}
|
|
|
|
nvgpu_mutex_acquire(&state->lock);
|
|
|
|
/* Update the compbits state. */
|
|
state->valid_compbits = valid_compbits;
|
|
state->zbc_color = zbc_color;
|
|
|
|
/* Discard previous compbit job fence. */
|
|
gk20a_fence_put(state->fence);
|
|
state->fence = NULL;
|
|
|
|
nvgpu_mutex_release(&state->lock);
|
|
dma_buf_put(dmabuf);
|
|
return 0;
|
|
}
|
|
|
|
static ssize_t gk20a_cde_reload_write(struct file *file,
|
|
const char __user *userbuf, size_t count, loff_t *ppos)
|
|
{
|
|
struct gk20a *g = file->private_data;
|
|
gk20a_cde_reload(g);
|
|
return count;
|
|
}
|
|
|
|
static const struct file_operations gk20a_cde_reload_fops = {
|
|
.open = simple_open,
|
|
.write = gk20a_cde_reload_write,
|
|
};
|
|
|
|
void gk20a_cde_debugfs_init(struct device *dev)
|
|
{
|
|
struct gk20a_platform *platform = dev_get_drvdata(dev);
|
|
struct gk20a *g = get_gk20a(dev);
|
|
|
|
if (!platform->has_cde)
|
|
return;
|
|
|
|
debugfs_create_u32("cde_parameter", S_IWUSR | S_IRUGO,
|
|
platform->debugfs, &g->cde_app.shader_parameter);
|
|
debugfs_create_u32("cde_ctx_count", S_IWUSR | S_IRUGO,
|
|
platform->debugfs, &g->cde_app.ctx_count);
|
|
debugfs_create_u32("cde_ctx_usecount", S_IWUSR | S_IRUGO,
|
|
platform->debugfs, &g->cde_app.ctx_usecount);
|
|
debugfs_create_u32("cde_ctx_count_top", S_IWUSR | S_IRUGO,
|
|
platform->debugfs, &g->cde_app.ctx_count_top);
|
|
debugfs_create_file("reload_cde_firmware", S_IWUSR, platform->debugfs,
|
|
g, &gk20a_cde_reload_fops);
|
|
}
|