• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Energy Model of devices
4  *
5  * Copyright (c) 2018-2020, Arm ltd.
6  * Written by: Quentin Perret, Arm ltd.
7  * Improvements provided by: Lukasz Luba, Arm ltd.
8  */
9 
10 #define pr_fmt(fmt) "energy_model: " fmt
11 
12 #include <linux/cpu.h>
13 #include <linux/cpumask.h>
14 #include <linux/debugfs.h>
15 #include <linux/energy_model.h>
16 #include <linux/sched/topology.h>
17 #include <linux/slab.h>
18 
19 /*
20  * Mutex serializing the registrations of performance domains and letting
21  * callbacks defined by drivers sleep.
22  */
23 static DEFINE_MUTEX(em_pd_mutex);
24 
_is_cpu_device(struct device * dev)25 static bool _is_cpu_device(struct device *dev)
26 {
27 	return (dev->bus == &cpu_subsys);
28 }
29 
30 #ifdef CONFIG_DEBUG_FS
31 static struct dentry *rootdir;
32 
em_debug_create_ps(struct em_perf_state * ps,struct dentry * pd)33 static void em_debug_create_ps(struct em_perf_state *ps, struct dentry *pd)
34 {
35 	struct dentry *d;
36 	char name[24];
37 
38 	snprintf(name, sizeof(name), "ps:%lu", ps->frequency);
39 
40 	/* Create per-ps directory */
41 	d = debugfs_create_dir(name, pd);
42 	debugfs_create_ulong("frequency", 0444, d, &ps->frequency);
43 	debugfs_create_ulong("power", 0444, d, &ps->power);
44 	debugfs_create_ulong("cost", 0444, d, &ps->cost);
45 }
46 
em_debug_cpus_show(struct seq_file * s,void * unused)47 static int em_debug_cpus_show(struct seq_file *s, void *unused)
48 {
49 	seq_printf(s, "%*pbl\n", cpumask_pr_args(to_cpumask(s->private)));
50 
51 	return 0;
52 }
53 DEFINE_SHOW_ATTRIBUTE(em_debug_cpus);
54 
em_debug_units_show(struct seq_file * s,void * unused)55 static int em_debug_units_show(struct seq_file *s, void *unused)
56 {
57 	struct em_perf_domain *pd = s->private;
58 	char *units = pd->milliwatts ? "milliWatts" : "bogoWatts";
59 
60 	seq_printf(s, "%s\n", units);
61 
62 	return 0;
63 }
64 DEFINE_SHOW_ATTRIBUTE(em_debug_units);
65 
em_debug_create_pd(struct device * dev)66 static void em_debug_create_pd(struct device *dev)
67 {
68 	struct dentry *d;
69 	int i;
70 
71 	/* Create the directory of the performance domain */
72 	d = debugfs_create_dir(dev_name(dev), rootdir);
73 
74 	if (_is_cpu_device(dev))
75 		debugfs_create_file("cpus", 0444, d, dev->em_pd->cpus,
76 				    &em_debug_cpus_fops);
77 
78 	debugfs_create_file("units", 0444, d, dev->em_pd, &em_debug_units_fops);
79 
80 	/* Create a sub-directory for each performance state */
81 	for (i = 0; i < dev->em_pd->nr_perf_states; i++)
82 		em_debug_create_ps(&dev->em_pd->table[i], d);
83 
84 }
85 
em_debug_remove_pd(struct device * dev)86 static void em_debug_remove_pd(struct device *dev)
87 {
88 	debugfs_lookup_and_remove(dev_name(dev), rootdir);
89 }
90 
em_debug_init(void)91 static int __init em_debug_init(void)
92 {
93 	/* Create /sys/kernel/debug/energy_model directory */
94 	rootdir = debugfs_create_dir("energy_model", NULL);
95 
96 	return 0;
97 }
98 fs_initcall(em_debug_init);
99 #else /* CONFIG_DEBUG_FS */
em_debug_create_pd(struct device * dev)100 static void em_debug_create_pd(struct device *dev) {}
em_debug_remove_pd(struct device * dev)101 static void em_debug_remove_pd(struct device *dev) {}
102 #endif
103 
em_create_perf_table(struct device * dev,struct em_perf_domain * pd,int nr_states,struct em_data_callback * cb)104 static int em_create_perf_table(struct device *dev, struct em_perf_domain *pd,
105 				int nr_states, struct em_data_callback *cb)
106 {
107 	unsigned long power, freq, prev_freq = 0, prev_cost = ULONG_MAX;
108 	struct em_perf_state *table;
109 	int i, ret;
110 	u64 fmax;
111 
112 	table = kcalloc(nr_states, sizeof(*table), GFP_KERNEL);
113 	if (!table)
114 		return -ENOMEM;
115 
116 	/* Build the list of performance states for this performance domain */
117 	for (i = 0, freq = 0; i < nr_states; i++, freq++) {
118 		/*
119 		 * active_power() is a driver callback which ceils 'freq' to
120 		 * lowest performance state of 'dev' above 'freq' and updates
121 		 * 'power' and 'freq' accordingly.
122 		 */
123 		ret = cb->active_power(&power, &freq, dev);
124 		if (ret) {
125 			dev_err(dev, "EM: invalid perf. state: %d\n",
126 				ret);
127 			goto free_ps_table;
128 		}
129 
130 		/*
131 		 * We expect the driver callback to increase the frequency for
132 		 * higher performance states.
133 		 */
134 		if (freq <= prev_freq) {
135 			dev_err(dev, "EM: non-increasing freq: %lu\n",
136 				freq);
137 			goto free_ps_table;
138 		}
139 
140 		/*
141 		 * The power returned by active_state() is expected to be
142 		 * positive, in milli-watts and to fit into 16 bits.
143 		 */
144 		if (!power || power > EM_MAX_POWER) {
145 			dev_err(dev, "EM: invalid power: %lu\n",
146 				power);
147 			goto free_ps_table;
148 		}
149 
150 		table[i].power = power;
151 		table[i].frequency = prev_freq = freq;
152 	}
153 
154 	/* Compute the cost of each performance state. */
155 	fmax = (u64) table[nr_states - 1].frequency;
156 	for (i = nr_states - 1; i >= 0; i--) {
157 		unsigned long power_res = em_scale_power(table[i].power);
158 
159 		table[i].cost = div64_u64(fmax * power_res,
160 					  table[i].frequency);
161 		if (table[i].cost >= prev_cost) {
162 			dev_dbg(dev, "EM: OPP:%lu is inefficient\n",
163 				table[i].frequency);
164 		} else {
165 			prev_cost = table[i].cost;
166 		}
167 	}
168 
169 	pd->table = table;
170 	pd->nr_perf_states = nr_states;
171 
172 	return 0;
173 
174 free_ps_table:
175 	kfree(table);
176 	return -EINVAL;
177 }
178 
em_create_pd(struct device * dev,int nr_states,struct em_data_callback * cb,cpumask_t * cpus)179 static int em_create_pd(struct device *dev, int nr_states,
180 			struct em_data_callback *cb, cpumask_t *cpus)
181 {
182 	struct em_perf_domain *pd;
183 	struct device *cpu_dev;
184 	int cpu, ret;
185 
186 	if (_is_cpu_device(dev)) {
187 		pd = kzalloc(sizeof(*pd) + cpumask_size(), GFP_KERNEL);
188 		if (!pd)
189 			return -ENOMEM;
190 
191 		cpumask_copy(em_span_cpus(pd), cpus);
192 	} else {
193 		pd = kzalloc(sizeof(*pd), GFP_KERNEL);
194 		if (!pd)
195 			return -ENOMEM;
196 	}
197 
198 	ret = em_create_perf_table(dev, pd, nr_states, cb);
199 	if (ret) {
200 		kfree(pd);
201 		return ret;
202 	}
203 
204 	if (_is_cpu_device(dev))
205 		for_each_cpu(cpu, cpus) {
206 			cpu_dev = get_cpu_device(cpu);
207 			cpu_dev->em_pd = pd;
208 		}
209 
210 	dev->em_pd = pd;
211 
212 	return 0;
213 }
214 
215 /**
216  * em_pd_get() - Return the performance domain for a device
217  * @dev : Device to find the performance domain for
218  *
219  * Returns the performance domain to which @dev belongs, or NULL if it doesn't
220  * exist.
221  */
em_pd_get(struct device * dev)222 struct em_perf_domain *em_pd_get(struct device *dev)
223 {
224 	if (IS_ERR_OR_NULL(dev))
225 		return NULL;
226 
227 	return dev->em_pd;
228 }
229 EXPORT_SYMBOL_GPL(em_pd_get);
230 
231 /**
232  * em_cpu_get() - Return the performance domain for a CPU
233  * @cpu : CPU to find the performance domain for
234  *
235  * Returns the performance domain to which @cpu belongs, or NULL if it doesn't
236  * exist.
237  */
em_cpu_get(int cpu)238 struct em_perf_domain *em_cpu_get(int cpu)
239 {
240 	struct device *cpu_dev;
241 
242 	cpu_dev = get_cpu_device(cpu);
243 	if (!cpu_dev)
244 		return NULL;
245 
246 	return em_pd_get(cpu_dev);
247 }
248 EXPORT_SYMBOL_GPL(em_cpu_get);
249 
250 /**
251  * em_dev_register_perf_domain() - Register the Energy Model (EM) for a device
252  * @dev		: Device for which the EM is to register
253  * @nr_states	: Number of performance states to register
254  * @cb		: Callback functions providing the data of the Energy Model
255  * @cpus	: Pointer to cpumask_t, which in case of a CPU device is
256  *		obligatory. It can be taken from i.e. 'policy->cpus'. For other
257  *		type of devices this should be set to NULL.
258  * @milliwatts	: Flag indicating that the power values are in milliWatts or
259  *		in some other scale. It must be set properly.
260  *
261  * Create Energy Model tables for a performance domain using the callbacks
262  * defined in cb.
263  *
264  * The @milliwatts is important to set with correct value. Some kernel
265  * sub-systems might rely on this flag and check if all devices in the EM are
266  * using the same scale.
267  *
268  * If multiple clients register the same performance domain, all but the first
269  * registration will be ignored.
270  *
271  * Return 0 on success
272  */
em_dev_register_perf_domain(struct device * dev,unsigned int nr_states,struct em_data_callback * cb,cpumask_t * cpus,bool milliwatts)273 int em_dev_register_perf_domain(struct device *dev, unsigned int nr_states,
274 				struct em_data_callback *cb, cpumask_t *cpus,
275 				bool milliwatts)
276 {
277 	unsigned long cap, prev_cap = 0;
278 	int cpu, ret;
279 
280 	if (!dev || !nr_states || !cb)
281 		return -EINVAL;
282 
283 	/*
284 	 * Use a mutex to serialize the registration of performance domains and
285 	 * let the driver-defined callback functions sleep.
286 	 */
287 	mutex_lock(&em_pd_mutex);
288 
289 	if (dev->em_pd) {
290 		ret = -EEXIST;
291 		goto unlock;
292 	}
293 
294 	if (_is_cpu_device(dev)) {
295 		if (!cpus) {
296 			dev_err(dev, "EM: invalid CPU mask\n");
297 			ret = -EINVAL;
298 			goto unlock;
299 		}
300 
301 		for_each_cpu(cpu, cpus) {
302 			if (em_cpu_get(cpu)) {
303 				dev_err(dev, "EM: exists for CPU%d\n", cpu);
304 				ret = -EEXIST;
305 				goto unlock;
306 			}
307 			/*
308 			 * All CPUs of a domain must have the same
309 			 * micro-architecture since they all share the same
310 			 * table.
311 			 */
312 			cap = arch_scale_cpu_capacity(cpu);
313 			if (prev_cap && prev_cap != cap) {
314 				dev_err(dev, "EM: CPUs of %*pbl must have the same capacity\n",
315 					cpumask_pr_args(cpus));
316 
317 				ret = -EINVAL;
318 				goto unlock;
319 			}
320 			prev_cap = cap;
321 		}
322 	}
323 
324 	ret = em_create_pd(dev, nr_states, cb, cpus);
325 	if (ret)
326 		goto unlock;
327 
328 	dev->em_pd->milliwatts = milliwatts;
329 
330 	em_debug_create_pd(dev);
331 	dev_info(dev, "EM: created perf domain\n");
332 
333 unlock:
334 	mutex_unlock(&em_pd_mutex);
335 	return ret;
336 }
337 EXPORT_SYMBOL_GPL(em_dev_register_perf_domain);
338 
339 /**
340  * em_dev_unregister_perf_domain() - Unregister Energy Model (EM) for a device
341  * @dev		: Device for which the EM is registered
342  *
343  * Unregister the EM for the specified @dev (but not a CPU device).
344  */
em_dev_unregister_perf_domain(struct device * dev)345 void em_dev_unregister_perf_domain(struct device *dev)
346 {
347 	if (IS_ERR_OR_NULL(dev) || !dev->em_pd)
348 		return;
349 
350 	if (_is_cpu_device(dev))
351 		return;
352 
353 	/*
354 	 * The mutex separates all register/unregister requests and protects
355 	 * from potential clean-up/setup issues in the debugfs directories.
356 	 * The debugfs directory name is the same as device's name.
357 	 */
358 	mutex_lock(&em_pd_mutex);
359 	em_debug_remove_pd(dev);
360 
361 	kfree(dev->em_pd->table);
362 	kfree(dev->em_pd);
363 	dev->em_pd = NULL;
364 	mutex_unlock(&em_pd_mutex);
365 }
366 EXPORT_SYMBOL_GPL(em_dev_unregister_perf_domain);
367