mirror of
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Move all Linux source code files to drivers/gpu/nvgpu/os/linux from drivers/gpu/nvgpu/common/linux. This changes the meaning of common to be OS independent. JIRA NVGPU-598 JIRA NVGPU-601 Change-Id: Ib7f2a43d3688bb0d0b7dcc48469a6783fd988ce9 Signed-off-by: Terje Bergstrom <tbergstrom@nvidia.com> Reviewed-on: https://git-master.nvidia.com/r/1747714 Reviewed-by: mobile promotions <svcmobile_promotions@nvidia.com> Tested-by: mobile promotions <svcmobile_promotions@nvidia.com>
379 lines
10 KiB
C
379 lines
10 KiB
C
/*
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* Copyright (C) 2017-2018 NVIDIA Corporation. All rights reserved.
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*
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* This software is licensed under the terms of the GNU General Public
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* License version 2, as published by the Free Software Foundation, and
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* may be copied, distributed, and modified under those terms.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#include "debug_fifo.h"
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#include "os_linux.h"
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#include <linux/debugfs.h>
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#include <linux/seq_file.h>
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#include <nvgpu/sort.h>
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#include <nvgpu/timers.h>
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void __gk20a_fifo_profile_free(struct nvgpu_ref *ref);
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static void *gk20a_fifo_sched_debugfs_seq_start(
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struct seq_file *s, loff_t *pos)
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{
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struct gk20a *g = s->private;
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struct fifo_gk20a *f = &g->fifo;
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if (*pos >= f->num_channels)
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return NULL;
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return &f->channel[*pos];
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}
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static void *gk20a_fifo_sched_debugfs_seq_next(
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struct seq_file *s, void *v, loff_t *pos)
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{
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struct gk20a *g = s->private;
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struct fifo_gk20a *f = &g->fifo;
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++(*pos);
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if (*pos >= f->num_channels)
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return NULL;
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return &f->channel[*pos];
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}
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static void gk20a_fifo_sched_debugfs_seq_stop(
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struct seq_file *s, void *v)
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{
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}
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static int gk20a_fifo_sched_debugfs_seq_show(
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struct seq_file *s, void *v)
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{
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struct gk20a *g = s->private;
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struct fifo_gk20a *f = &g->fifo;
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struct channel_gk20a *ch = v;
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struct tsg_gk20a *tsg = NULL;
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struct fifo_engine_info_gk20a *engine_info;
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struct fifo_runlist_info_gk20a *runlist;
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u32 runlist_id;
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int ret = SEQ_SKIP;
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u32 engine_id;
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engine_id = gk20a_fifo_get_gr_engine_id(g);
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engine_info = (f->engine_info + engine_id);
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runlist_id = engine_info->runlist_id;
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runlist = &f->runlist_info[runlist_id];
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if (ch == f->channel) {
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seq_puts(s, "chid tsgid pid timeslice timeout interleave graphics_preempt compute_preempt\n");
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seq_puts(s, " (usecs) (msecs)\n");
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ret = 0;
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}
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if (!test_bit(ch->chid, runlist->active_channels))
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return ret;
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if (gk20a_channel_get(ch)) {
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tsg = tsg_gk20a_from_ch(ch);
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if (tsg)
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seq_printf(s, "%-8d %-8d %-8d %-9d %-8d %-10d %-8d %-8d\n",
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ch->chid,
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ch->tsgid,
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ch->tgid,
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tsg->timeslice_us,
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ch->timeout_ms_max,
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tsg->interleave_level,
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tsg->gr_ctx.graphics_preempt_mode,
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tsg->gr_ctx.compute_preempt_mode);
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gk20a_channel_put(ch);
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}
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return 0;
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}
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static const struct seq_operations gk20a_fifo_sched_debugfs_seq_ops = {
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.start = gk20a_fifo_sched_debugfs_seq_start,
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.next = gk20a_fifo_sched_debugfs_seq_next,
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.stop = gk20a_fifo_sched_debugfs_seq_stop,
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.show = gk20a_fifo_sched_debugfs_seq_show
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};
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static int gk20a_fifo_sched_debugfs_open(struct inode *inode,
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struct file *file)
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{
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struct gk20a *g = inode->i_private;
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int err;
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if (!capable(CAP_SYS_ADMIN))
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return -EPERM;
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err = seq_open(file, &gk20a_fifo_sched_debugfs_seq_ops);
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if (err)
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return err;
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nvgpu_log(g, gpu_dbg_info, "i_private=%p", inode->i_private);
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((struct seq_file *)file->private_data)->private = inode->i_private;
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return 0;
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};
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/*
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* The file operations structure contains our open function along with
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* set of the canned seq_ ops.
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*/
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static const struct file_operations gk20a_fifo_sched_debugfs_fops = {
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.owner = THIS_MODULE,
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.open = gk20a_fifo_sched_debugfs_open,
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.read = seq_read,
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.llseek = seq_lseek,
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.release = seq_release
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};
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static int gk20a_fifo_profile_enable(void *data, u64 val)
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{
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struct gk20a *g = (struct gk20a *) data;
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struct fifo_gk20a *f = &g->fifo;
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nvgpu_mutex_acquire(&f->profile.lock);
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if (val == 0) {
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if (f->profile.enabled) {
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f->profile.enabled = false;
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nvgpu_ref_put(&f->profile.ref,
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__gk20a_fifo_profile_free);
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}
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} else {
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if (!f->profile.enabled) {
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/* not kref init as it can have a running condition if
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* we enable/disable/enable while kickoff is happening
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*/
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if (!nvgpu_ref_get_unless_zero(&f->profile.ref)) {
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f->profile.data = nvgpu_vzalloc(g,
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FIFO_PROFILING_ENTRIES *
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sizeof(struct fifo_profile_gk20a));
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f->profile.sorted = nvgpu_vzalloc(g,
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FIFO_PROFILING_ENTRIES *
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sizeof(u64));
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if (!(f->profile.data && f->profile.sorted)) {
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nvgpu_vfree(g, f->profile.data);
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nvgpu_vfree(g, f->profile.sorted);
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nvgpu_mutex_release(&f->profile.lock);
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return -ENOMEM;
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}
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nvgpu_ref_init(&f->profile.ref);
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}
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atomic_set(&f->profile.get.atomic_var, 0);
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f->profile.enabled = true;
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}
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}
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nvgpu_mutex_release(&f->profile.lock);
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return 0;
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}
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DEFINE_SIMPLE_ATTRIBUTE(
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gk20a_fifo_profile_enable_debugfs_fops,
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NULL,
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gk20a_fifo_profile_enable,
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"%llu\n"
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);
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static int __profile_cmp(const void *a, const void *b)
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{
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return *((unsigned long long *) a) - *((unsigned long long *) b);
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}
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/*
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* This uses about 800b in the stack, but the function using it is not part
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* of a callstack where much memory is being used, so it is fine
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*/
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#define PERCENTILE_WIDTH 5
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#define PERCENTILE_RANGES (100/PERCENTILE_WIDTH)
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static unsigned int __gk20a_fifo_create_stats(struct gk20a *g,
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u64 *percentiles, u32 index_end, u32 index_start)
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{
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unsigned int nelem = 0;
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unsigned int index;
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struct fifo_profile_gk20a *profile;
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for (index = 0; index < FIFO_PROFILING_ENTRIES; index++) {
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profile = &g->fifo.profile.data[index];
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if (profile->timestamp[index_end] >
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profile->timestamp[index_start]) {
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/* This is a valid element */
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g->fifo.profile.sorted[nelem] =
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profile->timestamp[index_end] -
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profile->timestamp[index_start];
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nelem++;
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}
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}
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/* sort it */
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sort(g->fifo.profile.sorted, nelem, sizeof(unsigned long long),
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__profile_cmp, NULL);
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/* build ranges */
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for (index = 0; index < PERCENTILE_RANGES; index++) {
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percentiles[index] = nelem < PERCENTILE_RANGES ? 0 :
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g->fifo.profile.sorted[(PERCENTILE_WIDTH * (index + 1) *
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nelem)/100 - 1];
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}
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return nelem;
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}
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static int gk20a_fifo_profile_stats(struct seq_file *s, void *unused)
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{
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struct gk20a *g = s->private;
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unsigned int get, nelem, index;
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/*
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* 800B in the stack, but function is declared statically and only
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* called from debugfs handler
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*/
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u64 percentiles_ioctl[PERCENTILE_RANGES];
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u64 percentiles_kickoff[PERCENTILE_RANGES];
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u64 percentiles_jobtracking[PERCENTILE_RANGES];
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u64 percentiles_append[PERCENTILE_RANGES];
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u64 percentiles_userd[PERCENTILE_RANGES];
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if (!nvgpu_ref_get_unless_zero(&g->fifo.profile.ref)) {
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seq_printf(s, "Profiling disabled\n");
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return 0;
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}
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get = atomic_read(&g->fifo.profile.get.atomic_var);
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__gk20a_fifo_create_stats(g, percentiles_ioctl,
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PROFILE_IOCTL_EXIT, PROFILE_IOCTL_ENTRY);
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__gk20a_fifo_create_stats(g, percentiles_kickoff,
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PROFILE_END, PROFILE_ENTRY);
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__gk20a_fifo_create_stats(g, percentiles_jobtracking,
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PROFILE_JOB_TRACKING, PROFILE_IOCTL_ENTRY);
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__gk20a_fifo_create_stats(g, percentiles_append,
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PROFILE_APPEND, PROFILE_JOB_TRACKING);
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nelem = __gk20a_fifo_create_stats(g, percentiles_userd,
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PROFILE_END, PROFILE_APPEND);
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seq_printf(s, "Number of kickoffs: %d\n", nelem);
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seq_printf(s, "Perc \t ioctl(ns) \t kickoff(ns) \t pbcopy(ns) \t jobtrack(ns) \t userd(ns)\n");
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for (index = 0; index < PERCENTILE_RANGES; index++)
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seq_printf(s, "[%2dpc]\t%8lld\t%8lld\t%8lld\t%8lld\t%8lld\n",
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PERCENTILE_WIDTH * (index+1),
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percentiles_ioctl[index],
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percentiles_kickoff[index],
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percentiles_append[index],
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percentiles_jobtracking[index],
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percentiles_userd[index]);
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nvgpu_ref_put(&g->fifo.profile.ref, __gk20a_fifo_profile_free);
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return 0;
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}
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static int gk20a_fifo_profile_stats_open(struct inode *inode, struct file *file)
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{
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return single_open(file, gk20a_fifo_profile_stats, inode->i_private);
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}
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static const struct file_operations gk20a_fifo_profile_stats_debugfs_fops = {
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.open = gk20a_fifo_profile_stats_open,
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.read = seq_read,
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.llseek = seq_lseek,
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.release = single_release,
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};
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void gk20a_fifo_debugfs_init(struct gk20a *g)
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{
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struct nvgpu_os_linux *l = nvgpu_os_linux_from_gk20a(g);
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struct dentry *gpu_root = l->debugfs;
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struct dentry *fifo_root;
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struct dentry *profile_root;
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fifo_root = debugfs_create_dir("fifo", gpu_root);
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if (IS_ERR_OR_NULL(fifo_root))
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return;
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nvgpu_log(g, gpu_dbg_info, "g=%p", g);
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debugfs_create_file("sched", 0600, fifo_root, g,
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&gk20a_fifo_sched_debugfs_fops);
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profile_root = debugfs_create_dir("profile", fifo_root);
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if (IS_ERR_OR_NULL(profile_root))
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return;
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nvgpu_mutex_init(&g->fifo.profile.lock);
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g->fifo.profile.enabled = false;
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atomic_set(&g->fifo.profile.get.atomic_var, 0);
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atomic_set(&g->fifo.profile.ref.refcount.atomic_var, 0);
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debugfs_create_file("enable", 0600, profile_root, g,
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&gk20a_fifo_profile_enable_debugfs_fops);
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debugfs_create_file("stats", 0600, profile_root, g,
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&gk20a_fifo_profile_stats_debugfs_fops);
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}
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void gk20a_fifo_profile_snapshot(struct fifo_profile_gk20a *profile, int idx)
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{
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if (profile)
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profile->timestamp[idx] = nvgpu_current_time_ns();
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}
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void __gk20a_fifo_profile_free(struct nvgpu_ref *ref)
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{
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struct fifo_gk20a *f = container_of(ref, struct fifo_gk20a,
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profile.ref);
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nvgpu_vfree(f->g, f->profile.data);
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nvgpu_vfree(f->g, f->profile.sorted);
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}
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/* Get the next element in the ring buffer of profile entries
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* and grab a reference to the structure
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*/
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struct fifo_profile_gk20a *gk20a_fifo_profile_acquire(struct gk20a *g)
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{
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struct fifo_gk20a *f = &g->fifo;
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struct fifo_profile_gk20a *profile;
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unsigned int index;
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/* If kref is zero, profiling is not enabled */
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if (!nvgpu_ref_get_unless_zero(&f->profile.ref))
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return NULL;
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index = atomic_inc_return(&f->profile.get.atomic_var);
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profile = &f->profile.data[index % FIFO_PROFILING_ENTRIES];
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return profile;
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}
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/* Free the reference to the structure. This allows deferred cleanups */
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void gk20a_fifo_profile_release(struct gk20a *g,
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struct fifo_profile_gk20a *profile)
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{
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nvgpu_ref_put(&g->fifo.profile.ref, __gk20a_fifo_profile_free);
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}
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void gk20a_fifo_debugfs_deinit(struct gk20a *g)
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{
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struct fifo_gk20a *f = &g->fifo;
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nvgpu_mutex_acquire(&f->profile.lock);
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if (f->profile.enabled) {
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f->profile.enabled = false;
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nvgpu_ref_put(&f->profile.ref, __gk20a_fifo_profile_free);
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}
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nvgpu_mutex_release(&f->profile.lock);
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}
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