695 lines
17 KiB
C
695 lines
17 KiB
C
/*
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* drivers/video/tegra/host/nvhost_intr.c
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*
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* Tegra Graphics Host Interrupt Management
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*
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* Copyright (c) 2010-2018, 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 "nvhost_intr.h"
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#include "dev.h"
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#include "nvhost_acm.h"
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#ifdef CONFIG_TEGRA_GRHOST_SYNC
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#include "nvhost_sync.h"
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#endif
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#include <linux/interrupt.h>
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#include <linux/slab.h>
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#include <linux/irq.h>
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#include <trace/events/nvhost.h>
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#include "nvhost_channel.h"
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#include "chip_support.h"
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/*** Wait list management ***/
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enum waitlist_state {
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WLS_PENDING,
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WLS_REMOVED,
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WLS_CANCELLED,
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WLS_HANDLED,
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WLS_CLEANUP
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};
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static inline bool __maybe_unused
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nvhost_intr_is_virtual_dev(struct nvhost_intr_syncpt *sp)
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{
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struct nvhost_intr *intr = intr_syncpt_to_intr(sp);
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struct nvhost_master *host = intr_to_dev(intr);
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return nvhost_dev_is_virtual(host->dev);
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}
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static void waiter_release(struct kref *kref)
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{
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struct nvhost_waitlist *waiter =
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container_of(kref, struct nvhost_waitlist, refcount);
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nvhost_module_idle(waiter->host->dev);
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kfree(waiter);
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}
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int nvhost_intr_release_time(void *ref, struct nvhost_timespec *ts)
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{
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struct nvhost_waitlist *waiter = ref;
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if (atomic_read(&waiter->state) == WLS_PENDING)
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return -EBUSY;
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*ts = waiter->isr_recv;
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return 0;
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}
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/**
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* add a waiter to a waiter queue, sorted by threshold
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* returns true if it was added at the head of the queue
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*/
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static bool add_waiter_to_queue(struct nvhost_waitlist *waiter,
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struct list_head *queue)
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{
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struct nvhost_waitlist *pos;
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u32 thresh = waiter->thresh;
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list_for_each_entry_reverse(pos, queue, list)
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if ((s32)(pos->thresh - thresh) <= 0) {
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list_add(&waiter->list, &pos->list);
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return false;
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}
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list_add(&waiter->list, queue);
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return true;
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}
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/**
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* run through a waiter queue for a single sync point ID
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* and gather all completed waiters into lists by actions
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*/
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static void remove_completed_waiters(struct list_head *head, u32 sync,
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struct nvhost_timespec isr_recv,
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struct list_head *completed[NVHOST_INTR_ACTION_COUNT])
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{
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struct list_head *dest;
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struct nvhost_waitlist *waiter, *next, *prev;
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list_for_each_entry_safe(waiter, next, head, list) {
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bool removed = false;
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if ((s32)(waiter->thresh - sync) > 0)
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break;
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waiter->isr_recv = isr_recv;
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dest = *(completed + waiter->action);
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/* consolidate submit cleanups */
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if (waiter->action == NVHOST_INTR_ACTION_SUBMIT_COMPLETE
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&& !list_empty(dest)) {
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prev = list_entry(dest->prev,
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struct nvhost_waitlist, list);
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if (prev->data == waiter->data) {
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prev->count++;
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removed = true;
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}
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}
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/* CANCELLED->HANDLED or PENDING->REMOVED
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* Change state to CLEANUP, which will be deferred until
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* action handlers are run; add the waiter to the head of the
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* queue, so cleanup will precede any real work.
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*/
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if ((atomic_inc_return(&waiter->state) == WLS_HANDLED)
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|| removed) {
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atomic_set(&waiter->state, WLS_CLEANUP);
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list_move(&waiter->list, dest);
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} else
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list_move_tail(&waiter->list, dest);
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}
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}
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static void reset_threshold_interrupt(struct nvhost_intr *intr,
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struct list_head *head,
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unsigned int id)
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{
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u32 thresh = list_first_entry(head,
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struct nvhost_waitlist, list)->thresh;
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intr_op().set_syncpt_threshold(intr, id, thresh);
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intr_op().enable_syncpt_intr(intr, id);
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}
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static void action_submit_complete(struct nvhost_waitlist *waiter)
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{
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struct nvhost_channel *channel;
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int nr_completed;
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if (!waiter) {
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pr_warn("%s: Empty Waiter\n", __func__);
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return;
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}
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nr_completed = waiter->count;
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channel = waiter->data;
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if (!channel || !channel->dev) {
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pr_warn("%s: Channel un-mapped\n", __func__);
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return;
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}
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nvhost_cdma_update(&channel->cdma);
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nvhost_module_idle_mult(channel->dev, nr_completed);
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/* Add nr_completed to trace */
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trace_nvhost_channel_submit_complete(channel->dev->name,
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nr_completed, waiter->thresh);
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nvhost_putchannel(channel, nr_completed);
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}
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static void action_wakeup(struct nvhost_waitlist *waiter)
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{
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wait_queue_head_t *wq = &waiter->wq;
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WARN_ON(atomic_xchg(&waiter->state, WLS_HANDLED) != WLS_REMOVED);
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wake_up(wq);
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}
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static void action_notify(struct nvhost_waitlist *waiter)
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{
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struct nvhost_waitlist_external_notifier *notifier = waiter->data;
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struct nvhost_master *master = notifier->master;
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notifier->callback(notifier->private_data, waiter->count);
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nvhost_module_idle_mult(master->dev, waiter->count);
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if (!notifier->reuse)
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kfree(notifier);
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waiter->data = NULL;
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}
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static void action_wakeup_interruptible(struct nvhost_waitlist *waiter)
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{
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wait_queue_head_t *wq = &waiter->wq;
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WARN_ON(atomic_xchg(&waiter->state, WLS_HANDLED) != WLS_REMOVED);
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wake_up_interruptible(wq);
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}
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static void action_signal_sync_pt(struct nvhost_waitlist *waiter)
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{
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#ifdef CONFIG_TEGRA_GRHOST_SYNC
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struct nvhost_sync_pt *pt = waiter->data;
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ktime_t time = timespec_to_ktime(waiter->isr_recv.ts);
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nvhost_sync_pt_signal(pt, ktime_to_ns(time));
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#endif
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}
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typedef void (*action_handler)(struct nvhost_waitlist *waiter);
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static action_handler action_handlers[NVHOST_INTR_ACTION_COUNT] = {
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action_signal_sync_pt,
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action_wakeup,
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action_wakeup_interruptible,
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action_notify,
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action_submit_complete,
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action_notify,
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};
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static void run_handlers(struct list_head *completed[NVHOST_INTR_ACTION_COUNT])
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{
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int i;
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for (i = 0; i < NVHOST_INTR_ACTION_COUNT; ++i) {
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struct list_head *head = completed[i];
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action_handler handler = action_handlers[i];
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struct nvhost_waitlist *waiter, *next;
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if (!head)
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continue;
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list_for_each_entry_safe(waiter, next, head, list) {
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list_del(&waiter->list);
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/* already processed, just need to finish cleanup */
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if (atomic_read(&waiter->state) == WLS_CLEANUP) {
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goto cleanup;
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}
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handler(waiter);
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if (handler != action_wakeup_interruptible &&
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handler != action_wakeup)
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WARN_ON(atomic_xchg(&waiter->state, WLS_HANDLED)
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!= WLS_REMOVED);
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cleanup:
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kref_put(&waiter->refcount, waiter_release);
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}
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}
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}
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/**
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* Remove & handle all waiters that have completed for the given syncpt
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*/
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static int process_wait_list(struct nvhost_intr *intr,
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struct nvhost_intr_syncpt *syncpt,
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u32 threshold)
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{
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struct list_head *completed[NVHOST_INTR_ACTION_COUNT] = {NULL};
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struct list_head high_prio_handlers[NVHOST_INTR_HIGH_PRIO_COUNT];
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bool run_low_prio_work = false;
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unsigned int i, j;
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int empty;
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/* take lock on waiter list */
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spin_lock(&syncpt->lock);
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/* keep high priority workers in local list */
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for (i = 0; i < NVHOST_INTR_HIGH_PRIO_COUNT; ++i) {
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INIT_LIST_HEAD(high_prio_handlers + i);
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completed[i] = high_prio_handlers + i;
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}
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/* .. and low priority workers in global list */
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for (j = 0; i < NVHOST_INTR_ACTION_COUNT; ++i, ++j)
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completed[i] = syncpt->low_prio_handlers + j;
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/* this functions fills completed data */
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remove_completed_waiters(&syncpt->wait_head, threshold,
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syncpt->isr_recv, completed);
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/* check if there are still waiters left */
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empty = list_empty(&syncpt->wait_head);
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/* if not, disable interrupt. If yes, update the inetrrupt */
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if (empty)
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intr_op().disable_syncpt_intr(intr, syncpt->id);
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else
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reset_threshold_interrupt(intr, &syncpt->wait_head,
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syncpt->id);
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/* remove low priority handlers from this list */
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for (i = NVHOST_INTR_HIGH_PRIO_COUNT;
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i < NVHOST_INTR_ACTION_COUNT; ++i) {
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if (!list_empty(completed[i]))
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run_low_prio_work = true;
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completed[i] = NULL;
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}
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/* release waiter lock */
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spin_unlock(&syncpt->lock);
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run_handlers(completed);
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/* schedule a separate task to handle low priority handlers */
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if (run_low_prio_work)
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queue_work(intr->low_prio_wq, &syncpt->low_prio_work);
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return empty;
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}
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static void nvhost_syncpt_low_prio_work(struct work_struct *work)
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{
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struct nvhost_intr_syncpt *syncpt = container_of(work,
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struct nvhost_intr_syncpt,
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low_prio_work);
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struct list_head *completed[NVHOST_INTR_ACTION_COUNT] = {NULL};
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struct list_head low_prio_handlers[NVHOST_INTR_LOW_PRIO_COUNT];
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unsigned int i, j;
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/* go through low priority handlers.. */
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spin_lock(&syncpt->lock);
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for (i = 0, j = NVHOST_INTR_HIGH_PRIO_COUNT;
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j < NVHOST_INTR_ACTION_COUNT;
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i++, j++) {
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struct list_head *handler = low_prio_handlers + i;
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/* move entries from low priority queue into local queue */
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INIT_LIST_HEAD(handler);
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list_cut_position(handler,
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&syncpt->low_prio_handlers[i],
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syncpt->low_prio_handlers[i].prev);
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/* maintain local completed list */
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completed[j] = handler;
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}
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spin_unlock(&syncpt->lock);
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/* ..and run them */
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run_handlers(completed);
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}
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/*** host syncpt interrupt service functions ***/
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void nvhost_syncpt_thresh_fn(void *dev_id)
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{
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struct nvhost_intr_syncpt *syncpt = dev_id;
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unsigned int id = syncpt->id;
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struct nvhost_intr *intr = intr_syncpt_to_intr(syncpt);
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struct nvhost_master *dev = intr_to_dev(intr);
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int err;
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/* make sure host1x is powered */
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err = nvhost_module_busy(dev->dev);
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if (err) {
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WARN(1, "failed to powerON host1x.");
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return;
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}
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if (nvhost_dev_is_virtual(dev->dev))
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(void)process_wait_list(intr, syncpt,
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nvhost_syncpt_read_min(&dev->syncpt, id));
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else
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(void)process_wait_list(intr, syncpt,
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nvhost_syncpt_update_min(&dev->syncpt, id));
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nvhost_module_idle(dev->dev);
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}
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/*** host general interrupt service functions ***/
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/*** Main API ***/
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bool nvhost_intr_has_pending_jobs(struct nvhost_intr *intr, u32 id,
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void *exclude_data)
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{
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struct nvhost_intr_syncpt *syncpt;
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struct nvhost_waitlist *waiter;
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bool res = false;
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syncpt = intr->syncpt + id;
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spin_lock(&syncpt->lock);
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list_for_each_entry(waiter, &syncpt->wait_head, list)
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if (((waiter->action ==
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NVHOST_INTR_ACTION_SUBMIT_COMPLETE) &&
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(waiter->data != exclude_data))) {
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res = true;
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break;
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}
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spin_unlock(&syncpt->lock);
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return res;
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}
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int nvhost_intr_add_action(struct nvhost_intr *intr, u32 id, u32 thresh,
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enum nvhost_intr_action action, void *data,
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void *_waiter,
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void **ref)
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{
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struct nvhost_waitlist *waiter = _waiter;
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struct nvhost_intr_syncpt *syncpt;
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int queue_was_empty;
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int err;
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if (waiter == NULL) {
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pr_warn("%s: NULL waiter\n", __func__);
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return -EINVAL;
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}
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/* make sure host1x stays on */
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err = nvhost_module_busy(intr_to_dev(intr)->dev);
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if (err)
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return err;
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/* initialize a new waiter */
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INIT_LIST_HEAD(&waiter->list);
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init_waitqueue_head(&waiter->wq);
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kref_init(&waiter->refcount);
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if (ref)
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kref_get(&waiter->refcount);
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waiter->thresh = thresh;
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waiter->action = action;
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atomic_set(&waiter->state, WLS_PENDING);
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waiter->data = data;
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waiter->count = 1;
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waiter->host = intr_to_dev(intr);
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syncpt = intr->syncpt + id;
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spin_lock(&syncpt->lock);
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queue_was_empty = list_empty(&syncpt->wait_head);
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if (add_waiter_to_queue(waiter, &syncpt->wait_head)) {
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/* added at head of list - new threshold value */
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intr_op().set_syncpt_threshold(intr, id, thresh);
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/* added as first waiter - enable interrupt */
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if (queue_was_empty)
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intr_op().enable_syncpt_intr(intr, id);
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}
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spin_unlock(&syncpt->lock);
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if (ref)
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*ref = waiter;
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return 0;
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}
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void *nvhost_intr_alloc_waiter(void)
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{
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return kzalloc(sizeof(struct nvhost_waitlist),
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GFP_KERNEL);
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}
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static int __nvhost_intr_register_notifier(struct platform_device *pdev,
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u32 id, u32 thresh,
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enum nvhost_intr_action action,
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void (*callback)(void *, int),
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void *private_data)
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{
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struct nvhost_waitlist *waiter;
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struct nvhost_waitlist_external_notifier *notifier;
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struct nvhost_master *master = nvhost_get_host(pdev);
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int err = 0;
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if (!callback)
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return -EINVAL;
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waiter = kzalloc(sizeof(*waiter), GFP_KERNEL);
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if (!waiter) {
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nvhost_err(&pdev->dev, "failed to allocate waiter");
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err = -ENOMEM;
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goto err_alloc_waiter;
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}
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notifier = kzalloc(sizeof(*notifier), GFP_KERNEL);
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if (!notifier) {
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nvhost_err(&pdev->dev, "failed to allocate notifier");
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err = -ENOMEM;
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goto err_alloc_notifier;
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}
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notifier->master = master;
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notifier->callback = callback;
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notifier->private_data = private_data;
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/* make sure host1x stays on */
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err = nvhost_module_busy(master->dev);
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if (err)
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goto err_busy;
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err = nvhost_intr_add_action(&master->intr,
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id, thresh,
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action,
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notifier,
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waiter,
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NULL);
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return err;
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err_busy:
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kfree(notifier);
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err_alloc_notifier:
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kfree(waiter);
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err_alloc_waiter:
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return err;
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}
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int nvhost_intr_register_notifier(struct platform_device *pdev,
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u32 id, u32 thresh,
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void (*callback)(void *, int),
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void *private_data)
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{
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return __nvhost_intr_register_notifier(pdev, id, thresh,
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NVHOST_INTR_ACTION_NOTIFY,
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callback, private_data);
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}
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EXPORT_SYMBOL(nvhost_intr_register_notifier);
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int nvhost_intr_register_fast_notifier(struct platform_device *pdev,
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u32 id, u32 thresh,
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void (*callback)(void *, int),
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void *private_data)
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{
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return __nvhost_intr_register_notifier(pdev, id, thresh,
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NVHOST_INTR_ACTION_FAST_NOTIFY,
|
|
callback, private_data);
|
|
}
|
|
EXPORT_SYMBOL(nvhost_intr_register_fast_notifier);
|
|
|
|
void nvhost_intr_put_ref(struct nvhost_intr *intr, u32 id, void *ref)
|
|
{
|
|
struct nvhost_waitlist *waiter = ref;
|
|
struct nvhost_intr_syncpt *syncpt;
|
|
struct nvhost_master *host = intr_to_dev(intr);
|
|
|
|
while (atomic_cmpxchg(&waiter->state,
|
|
WLS_PENDING, WLS_CANCELLED) == WLS_REMOVED)
|
|
schedule();
|
|
|
|
syncpt = intr->syncpt + id;
|
|
(void)process_wait_list(intr, syncpt,
|
|
nvhost_syncpt_update_min(&host->syncpt, id));
|
|
|
|
kref_put(&waiter->refcount, waiter_release);
|
|
}
|
|
|
|
|
|
/*** Init & shutdown ***/
|
|
|
|
int nvhost_intr_init(struct nvhost_intr *intr, u32 irq_gen, u32 irq_sync)
|
|
{
|
|
unsigned int id, i, err;
|
|
struct nvhost_intr_syncpt *syncpt;
|
|
struct nvhost_master *host = intr_to_dev(intr);
|
|
u32 nb_pts = nvhost_syncpt_nb_hw_pts(&host->syncpt);
|
|
|
|
mutex_init(&intr->mutex);
|
|
intr->syncpt_irq = irq_sync;
|
|
intr->general_irq = irq_gen;
|
|
|
|
intr->low_prio_wq = create_singlethread_workqueue("host_low_prio_wq");
|
|
if (!intr->low_prio_wq) {
|
|
nvhost_err(&host->dev->dev,
|
|
"failed to create low prio waitqueue");
|
|
return -EINVAL;
|
|
}
|
|
|
|
for (id = 0, syncpt = intr->syncpt;
|
|
id < nb_pts;
|
|
++id, ++syncpt) {
|
|
syncpt->intr = &host->intr;
|
|
syncpt->id = id;
|
|
spin_lock_init(&syncpt->lock);
|
|
INIT_LIST_HEAD(&syncpt->wait_head);
|
|
snprintf(syncpt->thresh_irq_name,
|
|
sizeof(syncpt->thresh_irq_name),
|
|
"host_sp_%02d", id);
|
|
for (i = 0; i < NVHOST_INTR_LOW_PRIO_COUNT; ++i)
|
|
INIT_LIST_HEAD(syncpt->low_prio_handlers + i);
|
|
INIT_WORK(&syncpt->low_prio_work,
|
|
nvhost_syncpt_low_prio_work);
|
|
}
|
|
|
|
err = intr_op().init(intr);
|
|
if (err) {
|
|
destroy_workqueue(intr->low_prio_wq);
|
|
return err;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
void nvhost_intr_deinit(struct nvhost_intr *intr)
|
|
{
|
|
nvhost_intr_stop(intr);
|
|
intr_op().deinit(intr);
|
|
destroy_workqueue(intr->low_prio_wq);
|
|
}
|
|
|
|
int nvhost_intr_start(struct nvhost_intr *intr, u32 hz)
|
|
{
|
|
int err = 0;
|
|
|
|
mutex_lock(&intr->mutex);
|
|
|
|
intr_op().resume(intr);
|
|
intr_op().set_host_clocks_per_usec(intr, (hz + 1000000 - 1)/1000000);
|
|
|
|
mutex_unlock(&intr->mutex);
|
|
return err;
|
|
}
|
|
|
|
int nvhost_intr_stop(struct nvhost_intr *intr)
|
|
{
|
|
unsigned int id;
|
|
struct nvhost_intr_syncpt *syncpt;
|
|
u32 nb_pts = nvhost_syncpt_nb_hw_pts(&intr_to_dev(intr)->syncpt);
|
|
|
|
mutex_lock(&intr->mutex);
|
|
|
|
for (id = 0, syncpt = intr->syncpt;
|
|
id < nb_pts;
|
|
++id, ++syncpt) {
|
|
struct nvhost_waitlist *waiter, *next;
|
|
|
|
intr_op().disable_syncpt_intr(intr, id);
|
|
|
|
list_for_each_entry_safe(waiter, next, &syncpt->wait_head, list) {
|
|
if (atomic_cmpxchg(&waiter->state, WLS_CANCELLED, WLS_HANDLED)
|
|
== WLS_CANCELLED) {
|
|
list_del(&waiter->list);
|
|
kref_put(&waiter->refcount, waiter_release);
|
|
}
|
|
}
|
|
|
|
if (!list_empty(&syncpt->wait_head)) { /* output diagnostics */
|
|
intr_op().enable_syncpt_intr(intr, id);
|
|
mutex_unlock(&intr->mutex);
|
|
return -EBUSY;
|
|
}
|
|
}
|
|
|
|
intr_op().suspend(intr);
|
|
|
|
mutex_unlock(&intr->mutex);
|
|
|
|
return 0;
|
|
}
|
|
|
|
void nvhost_intr_enable_host_irq(struct nvhost_intr *intr, int irq,
|
|
void (*host_isr)(u32, void *),
|
|
void *priv)
|
|
{
|
|
if (!irq)
|
|
return;
|
|
|
|
intr->host_isr[irq] = host_isr;
|
|
intr->host_isr_priv[irq] = priv;
|
|
intr_op().enable_host_irq(intr, irq);
|
|
}
|
|
|
|
void nvhost_intr_disable_host_irq(struct nvhost_intr *intr, int irq)
|
|
{
|
|
if (!irq)
|
|
return;
|
|
|
|
intr_op().disable_host_irq(intr, irq);
|
|
intr->host_isr[irq] = NULL;
|
|
intr->host_isr_priv[irq] = NULL;
|
|
}
|
|
|
|
void nvhost_intr_enable_module_intr(struct nvhost_intr *intr, int module_irq)
|
|
{
|
|
mutex_lock(&intr->mutex);
|
|
intr_op().enable_module_intr(intr, module_irq);
|
|
mutex_unlock(&intr->mutex);
|
|
}
|
|
|
|
void nvhost_intr_disable_module_intr(struct nvhost_intr *intr, int module_irq)
|
|
{
|
|
mutex_lock(&intr->mutex);
|
|
intr_op().disable_module_intr(intr, module_irq);
|
|
mutex_unlock(&intr->mutex);
|
|
}
|