xref: /linux/mm/damon/reclaim.c (revision 7203ca412fc8e8a0588e9adc0f777d3163f8dff3)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * DAMON-based page reclamation
4  *
5  * Author: SeongJae Park <sj@kernel.org>
6  */
7 
8 #define pr_fmt(fmt) "damon-reclaim: " fmt
9 
10 #include <linux/damon.h>
11 #include <linux/kstrtox.h>
12 #include <linux/module.h>
13 
14 #include "modules-common.h"
15 
16 #ifdef MODULE_PARAM_PREFIX
17 #undef MODULE_PARAM_PREFIX
18 #endif
19 #define MODULE_PARAM_PREFIX "damon_reclaim."
20 
21 /*
22  * Enable or disable DAMON_RECLAIM.
23  *
24  * You can enable DAMON_RCLAIM by setting the value of this parameter as ``Y``.
25  * Setting it as ``N`` disables DAMON_RECLAIM.  Note that DAMON_RECLAIM could
26  * do no real monitoring and reclamation due to the watermarks-based activation
27  * condition.  Refer to below descriptions for the watermarks parameter for
28  * this.
29  */
30 static bool enabled __read_mostly;
31 
32 /*
33  * Make DAMON_RECLAIM reads the input parameters again, except ``enabled``.
34  *
35  * Input parameters that updated while DAMON_RECLAIM is running are not applied
36  * by default.  Once this parameter is set as ``Y``, DAMON_RECLAIM reads values
37  * of parametrs except ``enabled`` again.  Once the re-reading is done, this
38  * parameter is set as ``N``.  If invalid parameters are found while the
39  * re-reading, DAMON_RECLAIM will be disabled.
40  */
41 static bool commit_inputs __read_mostly;
42 module_param(commit_inputs, bool, 0600);
43 
44 /*
45  * Time threshold for cold memory regions identification in microseconds.
46  *
47  * If a memory region is not accessed for this or longer time, DAMON_RECLAIM
48  * identifies the region as cold, and reclaims.  120 seconds by default.
49  */
50 static unsigned long min_age __read_mostly = 120000000;
51 module_param(min_age, ulong, 0600);
52 
53 static struct damos_quota damon_reclaim_quota = {
54 	/* use up to 10 ms time, reclaim up to 128 MiB per 1 sec by default */
55 	.ms = 10,
56 	.sz = 128 * 1024 * 1024,
57 	.reset_interval = 1000,
58 	/* Within the quota, page out older regions first. */
59 	.weight_sz = 0,
60 	.weight_nr_accesses = 0,
61 	.weight_age = 1
62 };
63 DEFINE_DAMON_MODULES_DAMOS_QUOTAS(damon_reclaim_quota);
64 
65 /*
66  * Desired level of memory pressure-stall time in microseconds.
67  *
68  * While keeping the caps that set by other quotas, DAMON_RECLAIM automatically
69  * increases and decreases the effective level of the quota aiming this level of
70  * memory pressure is incurred.  System-wide ``some`` memory PSI in microseconds
71  * per quota reset interval (``quota_reset_interval_ms``) is collected and
72  * compared to this value to see if the aim is satisfied.  Value zero means
73  * disabling this auto-tuning feature.
74  *
75  * Disabled by default.
76  */
77 static unsigned long quota_mem_pressure_us __read_mostly;
78 module_param(quota_mem_pressure_us, ulong, 0600);
79 
80 /*
81  * User-specifiable feedback for auto-tuning of the effective quota.
82  *
83  * While keeping the caps that set by other quotas, DAMON_RECLAIM automatically
84  * increases and decreases the effective level of the quota aiming receiving this
85  * feedback of value ``10,000`` from the user.  DAMON_RECLAIM assumes the feedback
86  * value and the quota are positively proportional.  Value zero means disabling
87  * this auto-tuning feature.
88  *
89  * Disabled by default.
90  *
91  */
92 static unsigned long quota_autotune_feedback __read_mostly;
93 module_param(quota_autotune_feedback, ulong, 0600);
94 
95 static struct damos_watermarks damon_reclaim_wmarks = {
96 	.metric = DAMOS_WMARK_FREE_MEM_RATE,
97 	.interval = 5000000,	/* 5 seconds */
98 	.high = 500,		/* 50 percent */
99 	.mid = 400,		/* 40 percent */
100 	.low = 200,		/* 20 percent */
101 };
102 DEFINE_DAMON_MODULES_WMARKS_PARAMS(damon_reclaim_wmarks);
103 
104 static struct damon_attrs damon_reclaim_mon_attrs = {
105 	.sample_interval = 5000,	/* 5 ms */
106 	.aggr_interval = 100000,	/* 100 ms */
107 	.ops_update_interval = 0,
108 	.min_nr_regions = 10,
109 	.max_nr_regions = 1000,
110 };
111 DEFINE_DAMON_MODULES_MON_ATTRS_PARAMS(damon_reclaim_mon_attrs);
112 
113 /*
114  * Start of the target memory region in physical address.
115  *
116  * The start physical address of memory region that DAMON_RECLAIM will do work
117  * against.  By default, biggest System RAM is used as the region.
118  */
119 static unsigned long monitor_region_start __read_mostly;
120 module_param(monitor_region_start, ulong, 0600);
121 
122 /*
123  * End of the target memory region in physical address.
124  *
125  * The end physical address of memory region that DAMON_RECLAIM will do work
126  * against.  By default, biggest System RAM is used as the region.
127  */
128 static unsigned long monitor_region_end __read_mostly;
129 module_param(monitor_region_end, ulong, 0600);
130 
131 /*
132  * Scale factor for DAMON_RECLAIM to ops address conversion.
133  *
134  * This parameter must not be set to 0.
135  */
136 static unsigned long addr_unit __read_mostly = 1;
137 
138 /*
139  * Skip anonymous pages reclamation.
140  *
141  * If this parameter is set as ``Y``, DAMON_RECLAIM does not reclaim anonymous
142  * pages.  By default, ``N``.
143  */
144 static bool skip_anon __read_mostly;
145 module_param(skip_anon, bool, 0600);
146 
147 /*
148  * PID of the DAMON thread
149  *
150  * If DAMON_RECLAIM is enabled, this becomes the PID of the worker thread.
151  * Else, -1.
152  */
153 static int kdamond_pid __read_mostly = -1;
154 module_param(kdamond_pid, int, 0400);
155 
156 static struct damos_stat damon_reclaim_stat;
157 DEFINE_DAMON_MODULES_DAMOS_STATS_PARAMS(damon_reclaim_stat,
158 		reclaim_tried_regions, reclaimed_regions, quota_exceeds);
159 
160 static struct damon_ctx *ctx;
161 static struct damon_target *target;
162 
damon_reclaim_new_scheme(void)163 static struct damos *damon_reclaim_new_scheme(void)
164 {
165 	struct damos_access_pattern pattern = {
166 		/* Find regions having PAGE_SIZE or larger size */
167 		.min_sz_region = PAGE_SIZE,
168 		.max_sz_region = ULONG_MAX,
169 		/* and not accessed at all */
170 		.min_nr_accesses = 0,
171 		.max_nr_accesses = 0,
172 		/* for min_age or more micro-seconds */
173 		.min_age_region = min_age /
174 			damon_reclaim_mon_attrs.aggr_interval,
175 		.max_age_region = UINT_MAX,
176 	};
177 
178 	return damon_new_scheme(
179 			&pattern,
180 			/* page out those, as soon as found */
181 			DAMOS_PAGEOUT,
182 			/* for each aggregation interval */
183 			0,
184 			/* under the quota. */
185 			&damon_reclaim_quota,
186 			/* (De)activate this according to the watermarks. */
187 			&damon_reclaim_wmarks,
188 			NUMA_NO_NODE);
189 }
190 
damon_reclaim_apply_parameters(void)191 static int damon_reclaim_apply_parameters(void)
192 {
193 	struct damon_ctx *param_ctx;
194 	struct damon_target *param_target;
195 	struct damos *scheme;
196 	struct damos_quota_goal *goal;
197 	struct damos_filter *filter;
198 	int err;
199 
200 	err = damon_modules_new_paddr_ctx_target(&param_ctx, &param_target);
201 	if (err)
202 		return err;
203 
204 	/*
205 	 * If monitor_region_start/end are unset, always silently
206 	 * reset addr_unit to 1.
207 	 */
208 	if (!monitor_region_start && !monitor_region_end)
209 		addr_unit = 1;
210 	param_ctx->addr_unit = addr_unit;
211 	param_ctx->min_sz_region = max(DAMON_MIN_REGION / addr_unit, 1);
212 
213 	if (!damon_reclaim_mon_attrs.aggr_interval) {
214 		err = -EINVAL;
215 		goto out;
216 	}
217 
218 	err = damon_set_attrs(param_ctx, &damon_reclaim_mon_attrs);
219 	if (err)
220 		goto out;
221 
222 	err = -ENOMEM;
223 	scheme = damon_reclaim_new_scheme();
224 	if (!scheme)
225 		goto out;
226 	damon_set_schemes(param_ctx, &scheme, 1);
227 
228 	if (quota_mem_pressure_us) {
229 		goal = damos_new_quota_goal(DAMOS_QUOTA_SOME_MEM_PSI_US,
230 				quota_mem_pressure_us);
231 		if (!goal)
232 			goto out;
233 		damos_add_quota_goal(&scheme->quota, goal);
234 	}
235 
236 	if (quota_autotune_feedback) {
237 		goal = damos_new_quota_goal(DAMOS_QUOTA_USER_INPUT, 10000);
238 		if (!goal)
239 			goto out;
240 		goal->current_value = quota_autotune_feedback;
241 		damos_add_quota_goal(&scheme->quota, goal);
242 	}
243 
244 	if (skip_anon) {
245 		filter = damos_new_filter(DAMOS_FILTER_TYPE_ANON, true, false);
246 		if (!filter)
247 			goto out;
248 		damos_add_filter(scheme, filter);
249 	}
250 
251 	err = damon_set_region_biggest_system_ram_default(param_target,
252 					&monitor_region_start,
253 					&monitor_region_end,
254 					param_ctx->min_sz_region);
255 	if (err)
256 		goto out;
257 	err = damon_commit_ctx(ctx, param_ctx);
258 out:
259 	damon_destroy_ctx(param_ctx);
260 	return err;
261 }
262 
damon_reclaim_handle_commit_inputs(void)263 static int damon_reclaim_handle_commit_inputs(void)
264 {
265 	int err;
266 
267 	if (!commit_inputs)
268 		return 0;
269 
270 	err = damon_reclaim_apply_parameters();
271 	commit_inputs = false;
272 	return err;
273 }
274 
damon_reclaim_damon_call_fn(void * arg)275 static int damon_reclaim_damon_call_fn(void *arg)
276 {
277 	struct damon_ctx *c = arg;
278 	struct damos *s;
279 
280 	/* update the stats parameter */
281 	damon_for_each_scheme(s, c)
282 		damon_reclaim_stat = s->stat;
283 
284 	return damon_reclaim_handle_commit_inputs();
285 }
286 
287 static struct damon_call_control call_control = {
288 	.fn = damon_reclaim_damon_call_fn,
289 	.repeat = true,
290 };
291 
damon_reclaim_turn(bool on)292 static int damon_reclaim_turn(bool on)
293 {
294 	int err;
295 
296 	if (!on) {
297 		err = damon_stop(&ctx, 1);
298 		if (!err)
299 			kdamond_pid = -1;
300 		return err;
301 	}
302 
303 	err = damon_reclaim_apply_parameters();
304 	if (err)
305 		return err;
306 
307 	err = damon_start(&ctx, 1, true);
308 	if (err)
309 		return err;
310 	kdamond_pid = ctx->kdamond->pid;
311 	return damon_call(ctx, &call_control);
312 }
313 
damon_reclaim_addr_unit_store(const char * val,const struct kernel_param * kp)314 static int damon_reclaim_addr_unit_store(const char *val,
315 		const struct kernel_param *kp)
316 {
317 	unsigned long input_addr_unit;
318 	int err = kstrtoul(val, 0, &input_addr_unit);
319 
320 	if (err)
321 		return err;
322 	if (!input_addr_unit)
323 		return -EINVAL;
324 
325 	addr_unit = input_addr_unit;
326 	return 0;
327 }
328 
329 static const struct kernel_param_ops addr_unit_param_ops = {
330 	.set = damon_reclaim_addr_unit_store,
331 	.get = param_get_ulong,
332 };
333 
334 module_param_cb(addr_unit, &addr_unit_param_ops, &addr_unit, 0600);
335 MODULE_PARM_DESC(addr_unit,
336 	"Scale factor for DAMON_RECLAIM to ops address conversion (default: 1)");
337 
damon_reclaim_enabled_store(const char * val,const struct kernel_param * kp)338 static int damon_reclaim_enabled_store(const char *val,
339 		const struct kernel_param *kp)
340 {
341 	bool is_enabled = enabled;
342 	bool enable;
343 	int err;
344 
345 	err = kstrtobool(val, &enable);
346 	if (err)
347 		return err;
348 
349 	if (is_enabled == enable)
350 		return 0;
351 
352 	/* Called before init function.  The function will handle this. */
353 	if (!damon_initialized())
354 		goto set_param_out;
355 
356 	err = damon_reclaim_turn(enable);
357 	if (err)
358 		return err;
359 
360 set_param_out:
361 	enabled = enable;
362 	return err;
363 }
364 
365 static const struct kernel_param_ops enabled_param_ops = {
366 	.set = damon_reclaim_enabled_store,
367 	.get = param_get_bool,
368 };
369 
370 module_param_cb(enabled, &enabled_param_ops, &enabled, 0600);
371 MODULE_PARM_DESC(enabled,
372 	"Enable or disable DAMON_RECLAIM (default: disabled)");
373 
damon_reclaim_init(void)374 static int __init damon_reclaim_init(void)
375 {
376 	int err;
377 
378 	if (!damon_initialized()) {
379 		err = -ENOMEM;
380 		goto out;
381 	}
382 	err = damon_modules_new_paddr_ctx_target(&ctx, &target);
383 	if (err)
384 		goto out;
385 
386 	call_control.data = ctx;
387 
388 	/* 'enabled' has set before this function, probably via command line */
389 	if (enabled)
390 		err = damon_reclaim_turn(true);
391 
392 out:
393 	if (err && enabled)
394 		enabled = false;
395 	return err;
396 }
397 
398 module_init(damon_reclaim_init);
399