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1 /*
2  * Copyright 2012 The Nouveau community
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice shall be included in
12  * all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20  * OTHER DEALINGS IN THE SOFTWARE.
21  *
22  * Authors: Martin Peres
23  */
24 #include "priv.h"
25 
26 int
nvkm_therm_temp_get(struct nvkm_therm * therm)27 nvkm_therm_temp_get(struct nvkm_therm *therm)
28 {
29 	if (therm->func->temp_get)
30 		return therm->func->temp_get(therm);
31 	return -ENODEV;
32 }
33 
34 static int
nvkm_therm_update_trip(struct nvkm_therm * therm)35 nvkm_therm_update_trip(struct nvkm_therm *therm)
36 {
37 	struct nvbios_therm_trip_point *trip = therm->fan->bios.trip,
38 				       *cur_trip = NULL,
39 				       *last_trip = therm->last_trip;
40 	u8  temp = therm->func->temp_get(therm);
41 	u16 duty, i;
42 
43 	/* look for the trip point corresponding to the current temperature */
44 	cur_trip = NULL;
45 	for (i = 0; i < therm->fan->bios.nr_fan_trip; i++) {
46 		if (temp >= trip[i].temp)
47 			cur_trip = &trip[i];
48 	}
49 
50 	/* account for the hysteresis cycle */
51 	if (last_trip && temp <= (last_trip->temp) &&
52 	    temp > (last_trip->temp - last_trip->hysteresis))
53 		cur_trip = last_trip;
54 
55 	if (cur_trip) {
56 		duty = cur_trip->fan_duty;
57 		therm->last_trip = cur_trip;
58 	} else {
59 		duty = 0;
60 		therm->last_trip = NULL;
61 	}
62 
63 	return duty;
64 }
65 
66 static int
nvkm_therm_compute_linear_duty(struct nvkm_therm * therm,u8 linear_min_temp,u8 linear_max_temp)67 nvkm_therm_compute_linear_duty(struct nvkm_therm *therm, u8 linear_min_temp,
68                                u8 linear_max_temp)
69 {
70 	u8  temp = therm->func->temp_get(therm);
71 	u16 duty;
72 
73 	/* handle the non-linear part first */
74 	if (temp < linear_min_temp)
75 		return therm->fan->bios.min_duty;
76 	else if (temp > linear_max_temp)
77 		return therm->fan->bios.max_duty;
78 
79 	/* we are in the linear zone */
80 	duty  = (temp - linear_min_temp);
81 	duty *= (therm->fan->bios.max_duty - therm->fan->bios.min_duty);
82 	duty /= (linear_max_temp - linear_min_temp);
83 	duty += therm->fan->bios.min_duty;
84 	return duty;
85 }
86 
87 static int
nvkm_therm_update_linear(struct nvkm_therm * therm)88 nvkm_therm_update_linear(struct nvkm_therm *therm)
89 {
90 	u8  min = therm->fan->bios.linear_min_temp;
91 	u8  max = therm->fan->bios.linear_max_temp;
92 	return nvkm_therm_compute_linear_duty(therm, min, max);
93 }
94 
95 static int
nvkm_therm_update_linear_fallback(struct nvkm_therm * therm)96 nvkm_therm_update_linear_fallback(struct nvkm_therm *therm)
97 {
98 	u8 max = therm->bios_sensor.thrs_fan_boost.temp;
99 	return nvkm_therm_compute_linear_duty(therm, 30, max);
100 }
101 
102 static void
nvkm_therm_update(struct nvkm_therm * therm,int mode)103 nvkm_therm_update(struct nvkm_therm *therm, int mode)
104 {
105 	struct nvkm_subdev *subdev = &therm->subdev;
106 	struct nvkm_timer *tmr = subdev->device->timer;
107 	unsigned long flags;
108 	bool immd = true;
109 	bool poll = true;
110 	int duty = -1;
111 
112 	spin_lock_irqsave(&therm->lock, flags);
113 	if (mode < 0)
114 		mode = therm->mode;
115 	therm->mode = mode;
116 
117 	switch (mode) {
118 	case NVKM_THERM_CTRL_MANUAL:
119 		nvkm_timer_alarm(tmr, 0, &therm->alarm);
120 		duty = nvkm_therm_fan_get(therm);
121 		if (duty < 0)
122 			duty = 100;
123 		poll = false;
124 		break;
125 	case NVKM_THERM_CTRL_AUTO:
126 		switch(therm->fan->bios.fan_mode) {
127 		case NVBIOS_THERM_FAN_TRIP:
128 			duty = nvkm_therm_update_trip(therm);
129 			break;
130 		case NVBIOS_THERM_FAN_LINEAR:
131 			duty = nvkm_therm_update_linear(therm);
132 			break;
133 		case NVBIOS_THERM_FAN_OTHER:
134 			if (therm->cstate) {
135 				duty = therm->cstate;
136 				poll = false;
137 			} else {
138 				duty = nvkm_therm_update_linear_fallback(therm);
139 			}
140 			break;
141 		}
142 		immd = false;
143 		break;
144 	case NVKM_THERM_CTRL_NONE:
145 	default:
146 		nvkm_timer_alarm(tmr, 0, &therm->alarm);
147 		poll = false;
148 	}
149 
150 	if (poll)
151 		nvkm_timer_alarm(tmr, 1000000000ULL, &therm->alarm);
152 	spin_unlock_irqrestore(&therm->lock, flags);
153 
154 	if (duty >= 0) {
155 		nvkm_debug(subdev, "FAN target request: %d%%\n", duty);
156 		nvkm_therm_fan_set(therm, immd, duty);
157 	}
158 }
159 
160 int
nvkm_therm_cstate(struct nvkm_therm * therm,int fan,int dir)161 nvkm_therm_cstate(struct nvkm_therm *therm, int fan, int dir)
162 {
163 	struct nvkm_subdev *subdev = &therm->subdev;
164 	if (!dir || (dir < 0 && fan < therm->cstate) ||
165 		    (dir > 0 && fan > therm->cstate)) {
166 		nvkm_debug(subdev, "default fan speed -> %d%%\n", fan);
167 		therm->cstate = fan;
168 		nvkm_therm_update(therm, -1);
169 	}
170 	return 0;
171 }
172 
173 static void
nvkm_therm_alarm(struct nvkm_alarm * alarm)174 nvkm_therm_alarm(struct nvkm_alarm *alarm)
175 {
176 	struct nvkm_therm *therm =
177 	       container_of(alarm, struct nvkm_therm, alarm);
178 	nvkm_therm_update(therm, -1);
179 }
180 
181 int
nvkm_therm_fan_mode(struct nvkm_therm * therm,int mode)182 nvkm_therm_fan_mode(struct nvkm_therm *therm, int mode)
183 {
184 	struct nvkm_subdev *subdev = &therm->subdev;
185 	struct nvkm_device *device = subdev->device;
186 	static const char *name[] = {
187 		"disabled",
188 		"manual",
189 		"automatic"
190 	};
191 
192 	/* The default PPWR ucode on fermi interferes with fan management */
193 	if ((mode >= ARRAY_SIZE(name)) ||
194 	    (mode != NVKM_THERM_CTRL_NONE && device->card_type >= NV_C0 &&
195 	     !device->pmu))
196 		return -EINVAL;
197 
198 	/* do not allow automatic fan management if the thermal sensor is
199 	 * not available */
200 	if (mode == NVKM_THERM_CTRL_AUTO &&
201 	    therm->func->temp_get(therm) < 0)
202 		return -EINVAL;
203 
204 	if (therm->mode == mode)
205 		return 0;
206 
207 	nvkm_debug(subdev, "fan management: %s\n", name[mode]);
208 	nvkm_therm_update(therm, mode);
209 	return 0;
210 }
211 
212 int
nvkm_therm_attr_get(struct nvkm_therm * therm,enum nvkm_therm_attr_type type)213 nvkm_therm_attr_get(struct nvkm_therm *therm, enum nvkm_therm_attr_type type)
214 {
215 	switch (type) {
216 	case NVKM_THERM_ATTR_FAN_MIN_DUTY:
217 		return therm->fan->bios.min_duty;
218 	case NVKM_THERM_ATTR_FAN_MAX_DUTY:
219 		return therm->fan->bios.max_duty;
220 	case NVKM_THERM_ATTR_FAN_MODE:
221 		return therm->mode;
222 	case NVKM_THERM_ATTR_THRS_FAN_BOOST:
223 		return therm->bios_sensor.thrs_fan_boost.temp;
224 	case NVKM_THERM_ATTR_THRS_FAN_BOOST_HYST:
225 		return therm->bios_sensor.thrs_fan_boost.hysteresis;
226 	case NVKM_THERM_ATTR_THRS_DOWN_CLK:
227 		return therm->bios_sensor.thrs_down_clock.temp;
228 	case NVKM_THERM_ATTR_THRS_DOWN_CLK_HYST:
229 		return therm->bios_sensor.thrs_down_clock.hysteresis;
230 	case NVKM_THERM_ATTR_THRS_CRITICAL:
231 		return therm->bios_sensor.thrs_critical.temp;
232 	case NVKM_THERM_ATTR_THRS_CRITICAL_HYST:
233 		return therm->bios_sensor.thrs_critical.hysteresis;
234 	case NVKM_THERM_ATTR_THRS_SHUTDOWN:
235 		return therm->bios_sensor.thrs_shutdown.temp;
236 	case NVKM_THERM_ATTR_THRS_SHUTDOWN_HYST:
237 		return therm->bios_sensor.thrs_shutdown.hysteresis;
238 	}
239 
240 	return -EINVAL;
241 }
242 
243 int
nvkm_therm_attr_set(struct nvkm_therm * therm,enum nvkm_therm_attr_type type,int value)244 nvkm_therm_attr_set(struct nvkm_therm *therm,
245 		    enum nvkm_therm_attr_type type, int value)
246 {
247 	switch (type) {
248 	case NVKM_THERM_ATTR_FAN_MIN_DUTY:
249 		if (value < 0)
250 			value = 0;
251 		if (value > therm->fan->bios.max_duty)
252 			value = therm->fan->bios.max_duty;
253 		therm->fan->bios.min_duty = value;
254 		return 0;
255 	case NVKM_THERM_ATTR_FAN_MAX_DUTY:
256 		if (value < 0)
257 			value = 0;
258 		if (value < therm->fan->bios.min_duty)
259 			value = therm->fan->bios.min_duty;
260 		therm->fan->bios.max_duty = value;
261 		return 0;
262 	case NVKM_THERM_ATTR_FAN_MODE:
263 		return nvkm_therm_fan_mode(therm, value);
264 	case NVKM_THERM_ATTR_THRS_FAN_BOOST:
265 		therm->bios_sensor.thrs_fan_boost.temp = value;
266 		therm->func->program_alarms(therm);
267 		return 0;
268 	case NVKM_THERM_ATTR_THRS_FAN_BOOST_HYST:
269 		therm->bios_sensor.thrs_fan_boost.hysteresis = value;
270 		therm->func->program_alarms(therm);
271 		return 0;
272 	case NVKM_THERM_ATTR_THRS_DOWN_CLK:
273 		therm->bios_sensor.thrs_down_clock.temp = value;
274 		therm->func->program_alarms(therm);
275 		return 0;
276 	case NVKM_THERM_ATTR_THRS_DOWN_CLK_HYST:
277 		therm->bios_sensor.thrs_down_clock.hysteresis = value;
278 		therm->func->program_alarms(therm);
279 		return 0;
280 	case NVKM_THERM_ATTR_THRS_CRITICAL:
281 		therm->bios_sensor.thrs_critical.temp = value;
282 		therm->func->program_alarms(therm);
283 		return 0;
284 	case NVKM_THERM_ATTR_THRS_CRITICAL_HYST:
285 		therm->bios_sensor.thrs_critical.hysteresis = value;
286 		therm->func->program_alarms(therm);
287 		return 0;
288 	case NVKM_THERM_ATTR_THRS_SHUTDOWN:
289 		therm->bios_sensor.thrs_shutdown.temp = value;
290 		therm->func->program_alarms(therm);
291 		return 0;
292 	case NVKM_THERM_ATTR_THRS_SHUTDOWN_HYST:
293 		therm->bios_sensor.thrs_shutdown.hysteresis = value;
294 		therm->func->program_alarms(therm);
295 		return 0;
296 	}
297 
298 	return -EINVAL;
299 }
300 
301 static void
nvkm_therm_intr(struct nvkm_subdev * subdev)302 nvkm_therm_intr(struct nvkm_subdev *subdev)
303 {
304 	struct nvkm_therm *therm = nvkm_therm(subdev);
305 	if (therm->func->intr)
306 		therm->func->intr(therm);
307 }
308 
309 static int
nvkm_therm_fini(struct nvkm_subdev * subdev,bool suspend)310 nvkm_therm_fini(struct nvkm_subdev *subdev, bool suspend)
311 {
312 	struct nvkm_therm *therm = nvkm_therm(subdev);
313 
314 	if (therm->func->fini)
315 		therm->func->fini(therm);
316 
317 	nvkm_therm_fan_fini(therm, suspend);
318 	nvkm_therm_sensor_fini(therm, suspend);
319 
320 	if (suspend) {
321 		therm->suspend = therm->mode;
322 		therm->mode = NVKM_THERM_CTRL_NONE;
323 	}
324 
325 	return 0;
326 }
327 
328 static int
nvkm_therm_oneinit(struct nvkm_subdev * subdev)329 nvkm_therm_oneinit(struct nvkm_subdev *subdev)
330 {
331 	struct nvkm_therm *therm = nvkm_therm(subdev);
332 	nvkm_therm_sensor_ctor(therm);
333 	nvkm_therm_ic_ctor(therm);
334 	nvkm_therm_fan_ctor(therm);
335 	nvkm_therm_fan_mode(therm, NVKM_THERM_CTRL_AUTO);
336 	nvkm_therm_sensor_preinit(therm);
337 	return 0;
338 }
339 
340 static int
nvkm_therm_init(struct nvkm_subdev * subdev)341 nvkm_therm_init(struct nvkm_subdev *subdev)
342 {
343 	struct nvkm_therm *therm = nvkm_therm(subdev);
344 
345 	therm->func->init(therm);
346 
347 	if (therm->suspend >= 0) {
348 		/* restore the pwm value only when on manual or auto mode */
349 		if (therm->suspend > 0)
350 			nvkm_therm_fan_set(therm, true, therm->fan->percent);
351 
352 		nvkm_therm_fan_mode(therm, therm->suspend);
353 	}
354 
355 	nvkm_therm_sensor_init(therm);
356 	nvkm_therm_fan_init(therm);
357 	return 0;
358 }
359 
360 static void *
nvkm_therm_dtor(struct nvkm_subdev * subdev)361 nvkm_therm_dtor(struct nvkm_subdev *subdev)
362 {
363 	struct nvkm_therm *therm = nvkm_therm(subdev);
364 	kfree(therm->fan);
365 	return therm;
366 }
367 
368 static const struct nvkm_subdev_func
369 nvkm_therm = {
370 	.dtor = nvkm_therm_dtor,
371 	.oneinit = nvkm_therm_oneinit,
372 	.init = nvkm_therm_init,
373 	.fini = nvkm_therm_fini,
374 	.intr = nvkm_therm_intr,
375 };
376 
377 int
nvkm_therm_new_(const struct nvkm_therm_func * func,struct nvkm_device * device,int index,struct nvkm_therm ** ptherm)378 nvkm_therm_new_(const struct nvkm_therm_func *func, struct nvkm_device *device,
379 		int index, struct nvkm_therm **ptherm)
380 {
381 	struct nvkm_therm *therm;
382 
383 	if (!(therm = *ptherm = kzalloc(sizeof(*therm), GFP_KERNEL)))
384 		return -ENOMEM;
385 
386 	nvkm_subdev_ctor(&nvkm_therm, device, index, &therm->subdev);
387 	therm->func = func;
388 
389 	nvkm_alarm_init(&therm->alarm, nvkm_therm_alarm);
390 	spin_lock_init(&therm->lock);
391 	spin_lock_init(&therm->sensor.alarm_program_lock);
392 
393 	therm->fan_get = nvkm_therm_fan_user_get;
394 	therm->fan_set = nvkm_therm_fan_user_set;
395 	therm->attr_get = nvkm_therm_attr_get;
396 	therm->attr_set = nvkm_therm_attr_set;
397 	therm->mode = therm->suspend = -1; /* undefined */
398 	return 0;
399 }
400