1 /*
2 * Copyright © 2021 Google, Inc.
3 *
4 * SPDX-License-Identifier: MIT
5 */
6
7 #include "fd_pps_driver.h"
8
9 #include <cstring>
10 #include <iostream>
11 #include <perfetto.h>
12
13 #include "pps/pps.h"
14 #include "pps/pps_algorithm.h"
15
16 namespace pps
17 {
18
19 uint64_t
get_min_sampling_period_ns()20 FreedrenoDriver::get_min_sampling_period_ns()
21 {
22 return 100000;
23 }
24
25 /*
26 TODO this sees like it would be largely the same for a5xx as well
27 (ie. same countable names)..
28 */
29 void
setup_a6xx_counters()30 FreedrenoDriver::setup_a6xx_counters()
31 {
32 /* TODO is there a reason to want more than one group? */
33 CounterGroup group = {};
34 group.name = "counters";
35 groups.clear();
36 counters.clear();
37 countables.clear();
38 enabled_counters.clear();
39 groups.emplace_back(std::move(group));
40
41 /*
42 * Create the countables that we'll be using.
43 */
44
45 auto PERF_CP_ALWAYS_COUNT = countable("PERF_CP_ALWAYS_COUNT");
46 auto PERF_CP_BUSY_CYCLES = countable("PERF_CP_BUSY_CYCLES");
47 auto PERF_RB_3D_PIXELS = countable("PERF_RB_3D_PIXELS");
48 auto PERF_SP_FS_STAGE_FULL_ALU_INSTRUCTIONS = countable("PERF_SP_FS_STAGE_FULL_ALU_INSTRUCTIONS");
49 auto PERF_SP_FS_STAGE_HALF_ALU_INSTRUCTIONS = countable("PERF_SP_FS_STAGE_HALF_ALU_INSTRUCTIONS");
50 auto PERF_TP_L1_CACHELINE_MISSES = countable("PERF_TP_L1_CACHELINE_MISSES");
51 auto PERF_SP_BUSY_CYCLES = countable("PERF_SP_BUSY_CYCLES");
52
53 /*
54 * And then setup the derived counters that we are exporting to
55 * pps based on the captured countable values
56 */
57
58 counter("GPU Frequency", Counter::Units::Hertz, [=]() {
59 return PERF_CP_ALWAYS_COUNT / time;
60 }
61 );
62
63 counter("GPU % Utilization", Counter::Units::Percent, [=]() {
64 return 100.0 * (PERF_CP_BUSY_CYCLES / time) / max_freq;
65 }
66 );
67
68 // This one is a bit of a guess, but seems plausible..
69 counter("ALU / Fragment", Counter::Units::None, [=]() {
70 return (PERF_SP_FS_STAGE_FULL_ALU_INSTRUCTIONS +
71 PERF_SP_FS_STAGE_HALF_ALU_INSTRUCTIONS / 2) / PERF_RB_3D_PIXELS;
72 }
73 );
74
75 counter("TP L1 Cache Misses", Counter::Units::None, [=]() {
76 return PERF_TP_L1_CACHELINE_MISSES / time;
77 }
78 );
79
80 counter("Shader Core Utilization", Counter::Units::Percent, [=]() {
81 return 100.0 * (PERF_SP_BUSY_CYCLES / time) / (max_freq * info->num_sp_cores);
82 }
83 );
84
85 // TODO add more.. see https://gpuinspector.dev/docs/gpu-counters/qualcomm
86 // for what blob exposes
87 }
88
89 /**
90 * Generate an submit the cmdstream to configure the counter/countable
91 * muxing
92 */
93 void
configure_counters(bool reset,bool wait)94 FreedrenoDriver::configure_counters(bool reset, bool wait)
95 {
96 struct fd_submit *submit = fd_submit_new(pipe);
97 enum fd_ringbuffer_flags flags =
98 (enum fd_ringbuffer_flags)(FD_RINGBUFFER_PRIMARY | FD_RINGBUFFER_GROWABLE);
99 struct fd_ringbuffer *ring = fd_submit_new_ringbuffer(submit, 0x1000, flags);
100
101 for (auto countable : countables)
102 countable.configure(ring, reset);
103
104 struct fd_submit_fence fence = {};
105 util_queue_fence_init(&fence.ready);
106
107 fd_submit_flush(submit, -1, &fence);
108
109 util_queue_fence_wait(&fence.ready);
110
111 fd_ringbuffer_del(ring);
112 fd_submit_del(submit);
113
114 if (wait)
115 fd_pipe_wait(pipe, &fence.fence);
116 }
117
118 /**
119 * Read the current counter values and record the time.
120 */
121 void
collect_countables()122 FreedrenoDriver::collect_countables()
123 {
124 last_dump_ts = perfetto::base::GetBootTimeNs().count();
125
126 for (auto countable : countables)
127 countable.collect();
128 }
129
130 bool
init_perfcnt()131 FreedrenoDriver::init_perfcnt()
132 {
133 uint64_t val;
134
135 dev = fd_device_new(drm_device.fd);
136 pipe = fd_pipe_new(dev, FD_PIPE_3D);
137 dev_id = fd_pipe_dev_id(pipe);
138
139 if (fd_pipe_get_param(pipe, FD_MAX_FREQ, &val)) {
140 PERFETTO_FATAL("Could not get MAX_FREQ");
141 return false;
142 }
143 max_freq = val;
144
145 if (fd_pipe_get_param(pipe, FD_SUSPEND_COUNT, &val)) {
146 PERFETTO_ILOG("Could not get SUSPEND_COUNT");
147 } else {
148 suspend_count = val;
149 has_suspend_count = true;
150 }
151
152 perfcntrs = fd_perfcntrs(fd_pipe_dev_id(pipe), &num_perfcntrs);
153 if (num_perfcntrs == 0) {
154 PERFETTO_FATAL("No hw counters available");
155 return false;
156 }
157
158 assigned_counters.resize(num_perfcntrs);
159 assigned_counters.assign(assigned_counters.size(), 0);
160
161 switch (fd_dev_gen(dev_id)) {
162 case 6:
163 setup_a6xx_counters();
164 break;
165 default:
166 PERFETTO_FATAL("Unsupported GPU: a%03u", fd_dev_gpu_id(dev_id));
167 return false;
168 }
169
170 state.resize(next_countable_id);
171
172 for (auto countable : countables)
173 countable.resolve();
174
175 info = fd_dev_info(dev_id);
176
177 io = fd_dt_find_io();
178 if (!io) {
179 PERFETTO_FATAL("Could not map GPU I/O space");
180 return false;
181 }
182
183 configure_counters(true, true);
184 collect_countables();
185
186 return true;
187 }
188
189 void
enable_counter(const uint32_t counter_id)190 FreedrenoDriver::enable_counter(const uint32_t counter_id)
191 {
192 enabled_counters.push_back(counters[counter_id]);
193 }
194
195 void
enable_all_counters()196 FreedrenoDriver::enable_all_counters()
197 {
198 enabled_counters.reserve(counters.size());
199 for (auto &counter : counters) {
200 enabled_counters.push_back(counter);
201 }
202 }
203
204 void
enable_perfcnt(const uint64_t)205 FreedrenoDriver::enable_perfcnt(const uint64_t /* sampling_period_ns */)
206 {
207 }
208
209 bool
dump_perfcnt()210 FreedrenoDriver::dump_perfcnt()
211 {
212 if (has_suspend_count) {
213 uint64_t val;
214
215 fd_pipe_get_param(pipe, FD_SUSPEND_COUNT, &val);
216
217 if (suspend_count != val) {
218 PERFETTO_ILOG("Device had suspended!");
219
220 suspend_count = val;
221
222 configure_counters(true, true);
223 collect_countables();
224
225 /* We aren't going to have anything sensible by comparing
226 * current values to values from prior to the suspend, so
227 * just skip this sampling period.
228 */
229 return false;
230 }
231 }
232
233 auto last_ts = last_dump_ts;
234
235 /* Capture the timestamp from the *start* of the sampling period: */
236 last_capture_ts = last_dump_ts;
237
238 collect_countables();
239
240 auto elapsed_time_ns = last_dump_ts - last_ts;
241
242 time = (float)elapsed_time_ns / 1000000000.0;
243
244 /* On older kernels that dont' support querying the suspend-
245 * count, just send configuration cmdstream regularly to keep
246 * the GPU alive and correctly configured for the countables
247 * we want
248 */
249 if (!has_suspend_count) {
250 configure_counters(false, false);
251 }
252
253 return true;
254 }
255
next()256 uint64_t FreedrenoDriver::next()
257 {
258 auto ret = last_capture_ts;
259 last_capture_ts = 0;
260 return ret;
261 }
262
disable_perfcnt()263 void FreedrenoDriver::disable_perfcnt()
264 {
265 /* There isn't really any disable, only reconfiguring which countables
266 * get muxed to which counters
267 */
268 }
269
270 /*
271 * Countable
272 */
273
274 FreedrenoDriver::Countable
countable(std::string name)275 FreedrenoDriver::countable(std::string name)
276 {
277 auto countable = Countable(this, name);
278 countables.emplace_back(countable);
279 return countable;
280 }
281
Countable(FreedrenoDriver * d,std::string name)282 FreedrenoDriver::Countable::Countable(FreedrenoDriver *d, std::string name)
283 : id {d->next_countable_id++}, d {d}, name {name}
284 {
285 }
286
287 /* Emit register writes on ring to configure counter/countable muxing: */
288 void
configure(struct fd_ringbuffer * ring,bool reset)289 FreedrenoDriver::Countable::configure(struct fd_ringbuffer *ring, bool reset)
290 {
291 const struct fd_perfcntr_countable *countable = d->state[id].countable;
292 const struct fd_perfcntr_counter *counter = d->state[id].counter;
293
294 OUT_PKT7(ring, CP_WAIT_FOR_IDLE, 0);
295
296 if (counter->enable && reset) {
297 OUT_PKT4(ring, counter->enable, 1);
298 OUT_RING(ring, 0);
299 }
300
301 if (counter->clear && reset) {
302 OUT_PKT4(ring, counter->clear, 1);
303 OUT_RING(ring, 1);
304
305 OUT_PKT4(ring, counter->clear, 1);
306 OUT_RING(ring, 0);
307 }
308
309 OUT_PKT4(ring, counter->select_reg, 1);
310 OUT_RING(ring, countable->selector);
311
312 if (counter->enable && reset) {
313 OUT_PKT4(ring, counter->enable, 1);
314 OUT_RING(ring, 1);
315 }
316 }
317
318 /* Collect current counter value and calculate delta since last sample: */
319 void
collect()320 FreedrenoDriver::Countable::collect()
321 {
322 const struct fd_perfcntr_counter *counter = d->state[id].counter;
323
324 d->state[id].last_value = d->state[id].value;
325
326 uint32_t *reg_lo = (uint32_t *)d->io + counter->counter_reg_lo;
327 uint32_t *reg_hi = (uint32_t *)d->io + counter->counter_reg_hi;
328
329 uint32_t lo = *reg_lo;
330 uint32_t hi = *reg_hi;
331
332 d->state[id].value = lo | ((uint64_t)hi << 32);
333 }
334
335 /* Resolve the countable and assign next counter from it's group: */
336 void
resolve()337 FreedrenoDriver::Countable::resolve()
338 {
339 for (unsigned i = 0; i < d->num_perfcntrs; i++) {
340 const struct fd_perfcntr_group *g = &d->perfcntrs[i];
341 for (unsigned j = 0; j < g->num_countables; j++) {
342 const struct fd_perfcntr_countable *c = &g->countables[j];
343 if (name == c->name) {
344 d->state[id].countable = c;
345
346 /* Assign a counter from the same group: */
347 assert(d->assigned_counters[i] < g->num_counters);
348 d->state[id].counter = &g->counters[d->assigned_counters[i]++];
349
350 std::cout << "Countable: " << name << ", group=" << g->name <<
351 ", counter=" << d->assigned_counters[i] - 1 << "\n";
352
353 return;
354 }
355 }
356 }
357 unreachable("no such countable!");
358 }
359
360 uint64_t
get_value() const361 FreedrenoDriver::Countable::get_value() const
362 {
363 return d->state[id].value - d->state[id].last_value;
364 }
365
366 /*
367 * DerivedCounter
368 */
369
DerivedCounter(FreedrenoDriver * d,std::string name,Counter::Units units,std::function<int64_t ()> derive)370 FreedrenoDriver::DerivedCounter::DerivedCounter(FreedrenoDriver *d, std::string name,
371 Counter::Units units,
372 std::function<int64_t()> derive)
373 : Counter(d->next_counter_id++, name, 0)
374 {
375 std::cout << "DerivedCounter: " << name << ", id=" << id << "\n";
376 this->units = units;
377 set_getter([=](const Counter &c, const Driver &d) {
378 return derive();
379 }
380 );
381 }
382
383 FreedrenoDriver::DerivedCounter
counter(std::string name,Counter::Units units,std::function<int64_t ()> derive)384 FreedrenoDriver::counter(std::string name, Counter::Units units,
385 std::function<int64_t()> derive)
386 {
387 auto counter = DerivedCounter(this, name, units, derive);
388 counters.emplace_back(counter);
389 return counter;
390 }
391
392 } // namespace pps
393