1 // SPDX-License-Identifier: GPL-2.0
4 * This driver adds support for perf events to use the Performance
5 * Monitor Counter Groups (PMCG) associated with an SMMUv3 node
6 * to monitor that node.
8 * SMMUv3 PMCG devices are named as smmuv3_pmcg_<phys_addr_page> where
9 * <phys_addr_page> is the physical page address of the SMMU PMCG wrapped
10 * to 4K boundary. For example, the PMCG at 0xff88840000 is named
13 * Filtering by stream id is done by specifying filtering parameters
14 * with the event. options are:
15 * filter_enable - 0 = no filtering, 1 = filtering enabled
16 * filter_span - 0 = exact match, 1 = pattern match
17 * filter_stream_id - pattern to filter against
19 * To match a partial StreamID where the X most-significant bits must match
20 * but the Y least-significant bits might differ, STREAMID is programmed
21 * with a value that contains:
22 * STREAMID[Y - 1] == 0.
23 * STREAMID[Y - 2:0] == 1 (where Y > 1).
24 * The remainder of implemented bits of STREAMID (X bits, from bit Y upwards)
25 * contain a value to match from the corresponding bits of event StreamID.
27 * Example: perf stat -e smmuv3_pmcg_ff88840/transaction,filter_enable=1,
28 * filter_span=1,filter_stream_id=0x42/ -a netperf
29 * Applies filter pattern 0x42 to transaction events, which means events
30 * matching stream ids 0x42 and 0x43 are counted. Further filtering
31 * information is available in the SMMU documentation.
33 * SMMU events are not attributable to a CPU, so task mode and sampling
37 #include <linux/acpi.h>
38 #include <linux/acpi_iort.h>
39 #include <linux/bitfield.h>
40 #include <linux/bitops.h>
41 #include <linux/cpuhotplug.h>
42 #include <linux/cpumask.h>
43 #include <linux/device.h>
44 #include <linux/errno.h>
45 #include <linux/interrupt.h>
46 #include <linux/irq.h>
47 #include <linux/kernel.h>
48 #include <linux/list.h>
49 #include <linux/msi.h>
51 #include <linux/perf_event.h>
52 #include <linux/platform_device.h>
53 #include <linux/smp.h>
54 #include <linux/sysfs.h>
55 #include <linux/types.h>
57 #define SMMU_PMCG_EVCNTR0 0x0
58 #define SMMU_PMCG_EVCNTR(n, stride) (SMMU_PMCG_EVCNTR0 + (n) * (stride))
59 #define SMMU_PMCG_EVTYPER0 0x400
60 #define SMMU_PMCG_EVTYPER(n) (SMMU_PMCG_EVTYPER0 + (n) * 4)
61 #define SMMU_PMCG_SID_SPAN_SHIFT 29
62 #define SMMU_PMCG_SMR0 0xA00
63 #define SMMU_PMCG_SMR(n) (SMMU_PMCG_SMR0 + (n) * 4)
64 #define SMMU_PMCG_CNTENSET0 0xC00
65 #define SMMU_PMCG_CNTENCLR0 0xC20
66 #define SMMU_PMCG_INTENSET0 0xC40
67 #define SMMU_PMCG_INTENCLR0 0xC60
68 #define SMMU_PMCG_OVSCLR0 0xC80
69 #define SMMU_PMCG_OVSSET0 0xCC0
70 #define SMMU_PMCG_CFGR 0xE00
71 #define SMMU_PMCG_CFGR_SID_FILTER_TYPE BIT(23)
72 #define SMMU_PMCG_CFGR_MSI BIT(21)
73 #define SMMU_PMCG_CFGR_RELOC_CTRS BIT(20)
74 #define SMMU_PMCG_CFGR_SIZE GENMASK(13, 8)
75 #define SMMU_PMCG_CFGR_NCTR GENMASK(5, 0)
76 #define SMMU_PMCG_CR 0xE04
77 #define SMMU_PMCG_CR_ENABLE BIT(0)
78 #define SMMU_PMCG_IIDR 0xE08
79 #define SMMU_PMCG_IIDR_PRODUCTID GENMASK(31, 20)
80 #define SMMU_PMCG_IIDR_VARIANT GENMASK(19, 16)
81 #define SMMU_PMCG_IIDR_REVISION GENMASK(15, 12)
82 #define SMMU_PMCG_IIDR_IMPLEMENTER GENMASK(11, 0)
83 #define SMMU_PMCG_CEID0 0xE20
84 #define SMMU_PMCG_CEID1 0xE28
85 #define SMMU_PMCG_IRQ_CTRL 0xE50
86 #define SMMU_PMCG_IRQ_CTRL_IRQEN BIT(0)
87 #define SMMU_PMCG_IRQ_CFG0 0xE58
88 #define SMMU_PMCG_IRQ_CFG1 0xE60
89 #define SMMU_PMCG_IRQ_CFG2 0xE64
91 /* IMP-DEF ID registers */
92 #define SMMU_PMCG_PIDR0 0xFE0
93 #define SMMU_PMCG_PIDR0_PART_0 GENMASK(7, 0)
94 #define SMMU_PMCG_PIDR1 0xFE4
95 #define SMMU_PMCG_PIDR1_DES_0 GENMASK(7, 4)
96 #define SMMU_PMCG_PIDR1_PART_1 GENMASK(3, 0)
97 #define SMMU_PMCG_PIDR2 0xFE8
98 #define SMMU_PMCG_PIDR2_REVISION GENMASK(7, 4)
99 #define SMMU_PMCG_PIDR2_DES_1 GENMASK(2, 0)
100 #define SMMU_PMCG_PIDR3 0xFEC
101 #define SMMU_PMCG_PIDR3_REVAND GENMASK(7, 4)
102 #define SMMU_PMCG_PIDR4 0xFD0
103 #define SMMU_PMCG_PIDR4_DES_2 GENMASK(3, 0)
105 /* MSI config fields */
106 #define MSI_CFG0_ADDR_MASK GENMASK_ULL(51, 2)
107 #define MSI_CFG2_MEMATTR_DEVICE_nGnRE 0x1
109 #define SMMU_PMCG_DEFAULT_FILTER_SPAN 1
110 #define SMMU_PMCG_DEFAULT_FILTER_SID GENMASK(31, 0)
112 #define SMMU_PMCG_MAX_COUNTERS 64
113 #define SMMU_PMCG_ARCH_MAX_EVENTS 128
115 #define SMMU_PMCG_PA_SHIFT 12
117 #define SMMU_PMCG_EVCNTR_RDONLY BIT(0)
118 #define SMMU_PMCG_HARDEN_DISABLE BIT(1)
120 static int cpuhp_state_num
;
123 struct hlist_node node
;
124 struct perf_event
*events
[SMMU_PMCG_MAX_COUNTERS
];
125 DECLARE_BITMAP(used_counters
, SMMU_PMCG_MAX_COUNTERS
);
126 DECLARE_BITMAP(supported_events
, SMMU_PMCG_ARCH_MAX_EVENTS
);
130 unsigned int num_counters
;
132 void __iomem
*reg_base
;
133 void __iomem
*reloc_base
;
140 #define to_smmu_pmu(p) (container_of(p, struct smmu_pmu, pmu))
142 #define SMMU_PMU_EVENT_ATTR_EXTRACTOR(_name, _config, _start, _end) \
143 static inline u32 get_##_name(struct perf_event *event) \
145 return FIELD_GET(GENMASK_ULL(_end, _start), \
146 event->attr._config); \
149 SMMU_PMU_EVENT_ATTR_EXTRACTOR(event, config, 0, 15);
150 SMMU_PMU_EVENT_ATTR_EXTRACTOR(filter_stream_id
, config1
, 0, 31);
151 SMMU_PMU_EVENT_ATTR_EXTRACTOR(filter_span
, config1
, 32, 32);
152 SMMU_PMU_EVENT_ATTR_EXTRACTOR(filter_enable
, config1
, 33, 33);
154 static inline void smmu_pmu_enable(struct pmu
*pmu
)
156 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(pmu
);
158 writel(SMMU_PMCG_IRQ_CTRL_IRQEN
,
159 smmu_pmu
->reg_base
+ SMMU_PMCG_IRQ_CTRL
);
160 writel(SMMU_PMCG_CR_ENABLE
, smmu_pmu
->reg_base
+ SMMU_PMCG_CR
);
163 static int smmu_pmu_apply_event_filter(struct smmu_pmu
*smmu_pmu
,
164 struct perf_event
*event
, int idx
);
166 static inline void smmu_pmu_enable_quirk_hip08_09(struct pmu
*pmu
)
168 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(pmu
);
171 for_each_set_bit(idx
, smmu_pmu
->used_counters
, smmu_pmu
->num_counters
)
172 smmu_pmu_apply_event_filter(smmu_pmu
, smmu_pmu
->events
[idx
], idx
);
174 smmu_pmu_enable(pmu
);
177 static inline void smmu_pmu_disable(struct pmu
*pmu
)
179 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(pmu
);
181 writel(0, smmu_pmu
->reg_base
+ SMMU_PMCG_CR
);
182 writel(0, smmu_pmu
->reg_base
+ SMMU_PMCG_IRQ_CTRL
);
185 static inline void smmu_pmu_disable_quirk_hip08_09(struct pmu
*pmu
)
187 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(pmu
);
191 * The global disable of PMU sometimes fail to stop the counting.
192 * Harden this by writing an invalid event type to each used counter
193 * to forcibly stop counting.
195 for_each_set_bit(idx
, smmu_pmu
->used_counters
, smmu_pmu
->num_counters
)
196 writel(0xffff, smmu_pmu
->reg_base
+ SMMU_PMCG_EVTYPER(idx
));
198 smmu_pmu_disable(pmu
);
201 static inline void smmu_pmu_counter_set_value(struct smmu_pmu
*smmu_pmu
,
204 if (smmu_pmu
->counter_mask
& BIT(32))
205 writeq(value
, smmu_pmu
->reloc_base
+ SMMU_PMCG_EVCNTR(idx
, 8));
207 writel(value
, smmu_pmu
->reloc_base
+ SMMU_PMCG_EVCNTR(idx
, 4));
210 static inline u64
smmu_pmu_counter_get_value(struct smmu_pmu
*smmu_pmu
, u32 idx
)
214 if (smmu_pmu
->counter_mask
& BIT(32))
215 value
= readq(smmu_pmu
->reloc_base
+ SMMU_PMCG_EVCNTR(idx
, 8));
217 value
= readl(smmu_pmu
->reloc_base
+ SMMU_PMCG_EVCNTR(idx
, 4));
222 static inline void smmu_pmu_counter_enable(struct smmu_pmu
*smmu_pmu
, u32 idx
)
224 writeq(BIT(idx
), smmu_pmu
->reg_base
+ SMMU_PMCG_CNTENSET0
);
227 static inline void smmu_pmu_counter_disable(struct smmu_pmu
*smmu_pmu
, u32 idx
)
229 writeq(BIT(idx
), smmu_pmu
->reg_base
+ SMMU_PMCG_CNTENCLR0
);
232 static inline void smmu_pmu_interrupt_enable(struct smmu_pmu
*smmu_pmu
, u32 idx
)
234 writeq(BIT(idx
), smmu_pmu
->reg_base
+ SMMU_PMCG_INTENSET0
);
237 static inline void smmu_pmu_interrupt_disable(struct smmu_pmu
*smmu_pmu
,
240 writeq(BIT(idx
), smmu_pmu
->reg_base
+ SMMU_PMCG_INTENCLR0
);
243 static inline void smmu_pmu_set_evtyper(struct smmu_pmu
*smmu_pmu
, u32 idx
,
246 writel(val
, smmu_pmu
->reg_base
+ SMMU_PMCG_EVTYPER(idx
));
249 static inline void smmu_pmu_set_smr(struct smmu_pmu
*smmu_pmu
, u32 idx
, u32 val
)
251 writel(val
, smmu_pmu
->reg_base
+ SMMU_PMCG_SMR(idx
));
254 static void smmu_pmu_event_update(struct perf_event
*event
)
256 struct hw_perf_event
*hwc
= &event
->hw
;
257 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
258 u64 delta
, prev
, now
;
262 prev
= local64_read(&hwc
->prev_count
);
263 now
= smmu_pmu_counter_get_value(smmu_pmu
, idx
);
264 } while (local64_cmpxchg(&hwc
->prev_count
, prev
, now
) != prev
);
266 /* handle overflow. */
268 delta
&= smmu_pmu
->counter_mask
;
270 local64_add(delta
, &event
->count
);
273 static void smmu_pmu_set_period(struct smmu_pmu
*smmu_pmu
,
274 struct hw_perf_event
*hwc
)
279 if (smmu_pmu
->options
& SMMU_PMCG_EVCNTR_RDONLY
) {
281 * On platforms that require this quirk, if the counter starts
282 * at < half_counter value and wraps, the current logic of
283 * handling the overflow may not work. It is expected that,
284 * those platforms will have full 64 counter bits implemented
285 * so that such a possibility is remote(eg: HiSilicon HIP08).
287 new = smmu_pmu_counter_get_value(smmu_pmu
, idx
);
290 * We limit the max period to half the max counter value
291 * of the counter size, so that even in the case of extreme
292 * interrupt latency the counter will (hopefully) not wrap
293 * past its initial value.
295 new = smmu_pmu
->counter_mask
>> 1;
296 smmu_pmu_counter_set_value(smmu_pmu
, idx
, new);
299 local64_set(&hwc
->prev_count
, new);
302 static void smmu_pmu_set_event_filter(struct perf_event
*event
,
303 int idx
, u32 span
, u32 sid
)
305 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
308 evtyper
= get_event(event
) | span
<< SMMU_PMCG_SID_SPAN_SHIFT
;
309 smmu_pmu_set_evtyper(smmu_pmu
, idx
, evtyper
);
310 smmu_pmu_set_smr(smmu_pmu
, idx
, sid
);
313 static bool smmu_pmu_check_global_filter(struct perf_event
*curr
,
314 struct perf_event
*new)
316 if (get_filter_enable(new) != get_filter_enable(curr
))
319 if (!get_filter_enable(new))
322 return get_filter_span(new) == get_filter_span(curr
) &&
323 get_filter_stream_id(new) == get_filter_stream_id(curr
);
326 static int smmu_pmu_apply_event_filter(struct smmu_pmu
*smmu_pmu
,
327 struct perf_event
*event
, int idx
)
330 unsigned int cur_idx
, num_ctrs
= smmu_pmu
->num_counters
;
331 bool filter_en
= !!get_filter_enable(event
);
333 span
= filter_en
? get_filter_span(event
) :
334 SMMU_PMCG_DEFAULT_FILTER_SPAN
;
335 sid
= filter_en
? get_filter_stream_id(event
) :
336 SMMU_PMCG_DEFAULT_FILTER_SID
;
338 cur_idx
= find_first_bit(smmu_pmu
->used_counters
, num_ctrs
);
340 * Per-counter filtering, or scheduling the first globally-filtered
341 * event into an empty PMU so idx == 0 and it works out equivalent.
343 if (!smmu_pmu
->global_filter
|| cur_idx
== num_ctrs
) {
344 smmu_pmu_set_event_filter(event
, idx
, span
, sid
);
348 /* Otherwise, must match whatever's currently scheduled */
349 if (smmu_pmu_check_global_filter(smmu_pmu
->events
[cur_idx
], event
)) {
350 smmu_pmu_set_evtyper(smmu_pmu
, idx
, get_event(event
));
357 static int smmu_pmu_get_event_idx(struct smmu_pmu
*smmu_pmu
,
358 struct perf_event
*event
)
361 unsigned int num_ctrs
= smmu_pmu
->num_counters
;
363 idx
= find_first_zero_bit(smmu_pmu
->used_counters
, num_ctrs
);
365 /* The counters are all in use. */
368 err
= smmu_pmu_apply_event_filter(smmu_pmu
, event
, idx
);
372 set_bit(idx
, smmu_pmu
->used_counters
);
377 static bool smmu_pmu_events_compatible(struct perf_event
*curr
,
378 struct perf_event
*new)
380 if (new->pmu
!= curr
->pmu
)
383 if (to_smmu_pmu(new->pmu
)->global_filter
&&
384 !smmu_pmu_check_global_filter(curr
, new))
391 * Implementation of abstract pmu functionality required by
392 * the core perf events code.
395 static int smmu_pmu_event_init(struct perf_event
*event
)
397 struct hw_perf_event
*hwc
= &event
->hw
;
398 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
399 struct device
*dev
= smmu_pmu
->dev
;
400 struct perf_event
*sibling
;
401 int group_num_events
= 1;
404 if (event
->attr
.type
!= event
->pmu
->type
)
407 if (hwc
->sample_period
) {
408 dev_dbg(dev
, "Sampling not supported\n");
412 if (event
->cpu
< 0) {
413 dev_dbg(dev
, "Per-task mode not supported\n");
417 /* Verify specified event is supported on this PMU */
418 event_id
= get_event(event
);
419 if (event_id
< SMMU_PMCG_ARCH_MAX_EVENTS
&&
420 (!test_bit(event_id
, smmu_pmu
->supported_events
))) {
421 dev_dbg(dev
, "Invalid event %d for this PMU\n", event_id
);
425 /* Don't allow groups with mixed PMUs, except for s/w events */
426 if (!is_software_event(event
->group_leader
)) {
427 if (!smmu_pmu_events_compatible(event
->group_leader
, event
))
430 if (++group_num_events
> smmu_pmu
->num_counters
)
434 for_each_sibling_event(sibling
, event
->group_leader
) {
435 if (is_software_event(sibling
))
438 if (!smmu_pmu_events_compatible(sibling
, event
))
441 if (++group_num_events
> smmu_pmu
->num_counters
)
448 * Ensure all events are on the same cpu so all events are in the
449 * same cpu context, to avoid races on pmu_enable etc.
451 event
->cpu
= smmu_pmu
->on_cpu
;
456 static void smmu_pmu_event_start(struct perf_event
*event
, int flags
)
458 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
459 struct hw_perf_event
*hwc
= &event
->hw
;
464 smmu_pmu_set_period(smmu_pmu
, hwc
);
466 smmu_pmu_counter_enable(smmu_pmu
, idx
);
469 static void smmu_pmu_event_stop(struct perf_event
*event
, int flags
)
471 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
472 struct hw_perf_event
*hwc
= &event
->hw
;
475 if (hwc
->state
& PERF_HES_STOPPED
)
478 smmu_pmu_counter_disable(smmu_pmu
, idx
);
479 /* As the counter gets updated on _start, ignore PERF_EF_UPDATE */
480 smmu_pmu_event_update(event
);
481 hwc
->state
|= PERF_HES_STOPPED
| PERF_HES_UPTODATE
;
484 static int smmu_pmu_event_add(struct perf_event
*event
, int flags
)
486 struct hw_perf_event
*hwc
= &event
->hw
;
488 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
490 idx
= smmu_pmu_get_event_idx(smmu_pmu
, event
);
495 hwc
->state
= PERF_HES_STOPPED
| PERF_HES_UPTODATE
;
496 smmu_pmu
->events
[idx
] = event
;
497 local64_set(&hwc
->prev_count
, 0);
499 smmu_pmu_interrupt_enable(smmu_pmu
, idx
);
501 if (flags
& PERF_EF_START
)
502 smmu_pmu_event_start(event
, flags
);
504 /* Propagate changes to the userspace mapping. */
505 perf_event_update_userpage(event
);
510 static void smmu_pmu_event_del(struct perf_event
*event
, int flags
)
512 struct hw_perf_event
*hwc
= &event
->hw
;
513 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(event
->pmu
);
516 smmu_pmu_event_stop(event
, flags
| PERF_EF_UPDATE
);
517 smmu_pmu_interrupt_disable(smmu_pmu
, idx
);
518 smmu_pmu
->events
[idx
] = NULL
;
519 clear_bit(idx
, smmu_pmu
->used_counters
);
521 perf_event_update_userpage(event
);
524 static void smmu_pmu_event_read(struct perf_event
*event
)
526 smmu_pmu_event_update(event
);
531 static ssize_t
smmu_pmu_cpumask_show(struct device
*dev
,
532 struct device_attribute
*attr
,
535 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(dev_get_drvdata(dev
));
537 return cpumap_print_to_pagebuf(true, buf
, cpumask_of(smmu_pmu
->on_cpu
));
540 static struct device_attribute smmu_pmu_cpumask_attr
=
541 __ATTR(cpumask
, 0444, smmu_pmu_cpumask_show
, NULL
);
543 static struct attribute
*smmu_pmu_cpumask_attrs
[] = {
544 &smmu_pmu_cpumask_attr
.attr
,
548 static const struct attribute_group smmu_pmu_cpumask_group
= {
549 .attrs
= smmu_pmu_cpumask_attrs
,
554 static ssize_t
smmu_pmu_event_show(struct device
*dev
,
555 struct device_attribute
*attr
, char *page
)
557 struct perf_pmu_events_attr
*pmu_attr
;
559 pmu_attr
= container_of(attr
, struct perf_pmu_events_attr
, attr
);
561 return sysfs_emit(page
, "event=0x%02llx\n", pmu_attr
->id
);
564 #define SMMU_EVENT_ATTR(name, config) \
565 PMU_EVENT_ATTR_ID(name, smmu_pmu_event_show, config)
567 static struct attribute
*smmu_pmu_events
[] = {
568 SMMU_EVENT_ATTR(cycles
, 0),
569 SMMU_EVENT_ATTR(transaction
, 1),
570 SMMU_EVENT_ATTR(tlb_miss
, 2),
571 SMMU_EVENT_ATTR(config_cache_miss
, 3),
572 SMMU_EVENT_ATTR(trans_table_walk_access
, 4),
573 SMMU_EVENT_ATTR(config_struct_access
, 5),
574 SMMU_EVENT_ATTR(pcie_ats_trans_rq
, 6),
575 SMMU_EVENT_ATTR(pcie_ats_trans_passed
, 7),
579 static umode_t
smmu_pmu_event_is_visible(struct kobject
*kobj
,
580 struct attribute
*attr
, int unused
)
582 struct device
*dev
= kobj_to_dev(kobj
);
583 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(dev_get_drvdata(dev
));
584 struct perf_pmu_events_attr
*pmu_attr
;
586 pmu_attr
= container_of(attr
, struct perf_pmu_events_attr
, attr
.attr
);
588 if (test_bit(pmu_attr
->id
, smmu_pmu
->supported_events
))
594 static const struct attribute_group smmu_pmu_events_group
= {
596 .attrs
= smmu_pmu_events
,
597 .is_visible
= smmu_pmu_event_is_visible
,
600 static ssize_t
smmu_pmu_identifier_attr_show(struct device
*dev
,
601 struct device_attribute
*attr
,
604 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(dev_get_drvdata(dev
));
606 return sysfs_emit(page
, "0x%08x\n", smmu_pmu
->iidr
);
609 static umode_t
smmu_pmu_identifier_attr_visible(struct kobject
*kobj
,
610 struct attribute
*attr
,
613 struct device
*dev
= kobj_to_dev(kobj
);
614 struct smmu_pmu
*smmu_pmu
= to_smmu_pmu(dev_get_drvdata(dev
));
621 static struct device_attribute smmu_pmu_identifier_attr
=
622 __ATTR(identifier
, 0444, smmu_pmu_identifier_attr_show
, NULL
);
624 static struct attribute
*smmu_pmu_identifier_attrs
[] = {
625 &smmu_pmu_identifier_attr
.attr
,
629 static const struct attribute_group smmu_pmu_identifier_group
= {
630 .attrs
= smmu_pmu_identifier_attrs
,
631 .is_visible
= smmu_pmu_identifier_attr_visible
,
635 PMU_FORMAT_ATTR(event
, "config:0-15");
636 PMU_FORMAT_ATTR(filter_stream_id
, "config1:0-31");
637 PMU_FORMAT_ATTR(filter_span
, "config1:32");
638 PMU_FORMAT_ATTR(filter_enable
, "config1:33");
640 static struct attribute
*smmu_pmu_formats
[] = {
641 &format_attr_event
.attr
,
642 &format_attr_filter_stream_id
.attr
,
643 &format_attr_filter_span
.attr
,
644 &format_attr_filter_enable
.attr
,
648 static const struct attribute_group smmu_pmu_format_group
= {
650 .attrs
= smmu_pmu_formats
,
653 static const struct attribute_group
*smmu_pmu_attr_grps
[] = {
654 &smmu_pmu_cpumask_group
,
655 &smmu_pmu_events_group
,
656 &smmu_pmu_format_group
,
657 &smmu_pmu_identifier_group
,
662 * Generic device handlers
665 static int smmu_pmu_offline_cpu(unsigned int cpu
, struct hlist_node
*node
)
667 struct smmu_pmu
*smmu_pmu
;
670 smmu_pmu
= hlist_entry_safe(node
, struct smmu_pmu
, node
);
671 if (cpu
!= smmu_pmu
->on_cpu
)
674 target
= cpumask_any_but(cpu_online_mask
, cpu
);
675 if (target
>= nr_cpu_ids
)
678 perf_pmu_migrate_context(&smmu_pmu
->pmu
, cpu
, target
);
679 smmu_pmu
->on_cpu
= target
;
680 WARN_ON(irq_set_affinity(smmu_pmu
->irq
, cpumask_of(target
)));
685 static irqreturn_t
smmu_pmu_handle_irq(int irq_num
, void *data
)
687 struct smmu_pmu
*smmu_pmu
= data
;
688 DECLARE_BITMAP(ovs
, BITS_PER_TYPE(u64
));
692 ovsr
= readq(smmu_pmu
->reloc_base
+ SMMU_PMCG_OVSSET0
);
696 writeq(ovsr
, smmu_pmu
->reloc_base
+ SMMU_PMCG_OVSCLR0
);
698 bitmap_from_u64(ovs
, ovsr
);
699 for_each_set_bit(idx
, ovs
, smmu_pmu
->num_counters
) {
700 struct perf_event
*event
= smmu_pmu
->events
[idx
];
701 struct hw_perf_event
*hwc
;
703 if (WARN_ON_ONCE(!event
))
706 smmu_pmu_event_update(event
);
709 smmu_pmu_set_period(smmu_pmu
, hwc
);
715 static void smmu_pmu_free_msis(void *data
)
717 struct device
*dev
= data
;
719 platform_device_msi_free_irqs_all(dev
);
722 static void smmu_pmu_write_msi_msg(struct msi_desc
*desc
, struct msi_msg
*msg
)
724 phys_addr_t doorbell
;
725 struct device
*dev
= msi_desc_to_dev(desc
);
726 struct smmu_pmu
*pmu
= dev_get_drvdata(dev
);
728 doorbell
= (((u64
)msg
->address_hi
) << 32) | msg
->address_lo
;
729 doorbell
&= MSI_CFG0_ADDR_MASK
;
731 writeq_relaxed(doorbell
, pmu
->reg_base
+ SMMU_PMCG_IRQ_CFG0
);
732 writel_relaxed(msg
->data
, pmu
->reg_base
+ SMMU_PMCG_IRQ_CFG1
);
733 writel_relaxed(MSI_CFG2_MEMATTR_DEVICE_nGnRE
,
734 pmu
->reg_base
+ SMMU_PMCG_IRQ_CFG2
);
737 static void smmu_pmu_setup_msi(struct smmu_pmu
*pmu
)
739 struct device
*dev
= pmu
->dev
;
742 /* Clear MSI address reg */
743 writeq_relaxed(0, pmu
->reg_base
+ SMMU_PMCG_IRQ_CFG0
);
745 /* MSI supported or not */
746 if (!(readl(pmu
->reg_base
+ SMMU_PMCG_CFGR
) & SMMU_PMCG_CFGR_MSI
))
749 ret
= platform_device_msi_init_and_alloc_irqs(dev
, 1, smmu_pmu_write_msi_msg
);
751 dev_warn(dev
, "failed to allocate MSIs\n");
755 pmu
->irq
= msi_get_virq(dev
, 0);
757 /* Add callback to free MSIs on teardown */
758 devm_add_action(dev
, smmu_pmu_free_msis
, dev
);
761 static int smmu_pmu_setup_irq(struct smmu_pmu
*pmu
)
763 unsigned long flags
= IRQF_NOBALANCING
| IRQF_SHARED
| IRQF_NO_THREAD
;
764 int irq
, ret
= -ENXIO
;
766 smmu_pmu_setup_msi(pmu
);
770 ret
= devm_request_irq(pmu
->dev
, irq
, smmu_pmu_handle_irq
,
771 flags
, "smmuv3-pmu", pmu
);
775 static void smmu_pmu_reset(struct smmu_pmu
*smmu_pmu
)
777 u64 counter_present_mask
= GENMASK_ULL(smmu_pmu
->num_counters
- 1, 0);
779 smmu_pmu_disable(&smmu_pmu
->pmu
);
781 /* Disable counter and interrupt */
782 writeq_relaxed(counter_present_mask
,
783 smmu_pmu
->reg_base
+ SMMU_PMCG_CNTENCLR0
);
784 writeq_relaxed(counter_present_mask
,
785 smmu_pmu
->reg_base
+ SMMU_PMCG_INTENCLR0
);
786 writeq_relaxed(counter_present_mask
,
787 smmu_pmu
->reloc_base
+ SMMU_PMCG_OVSCLR0
);
790 static void smmu_pmu_get_acpi_options(struct smmu_pmu
*smmu_pmu
)
794 model
= *(u32
*)dev_get_platdata(smmu_pmu
->dev
);
797 case IORT_SMMU_V3_PMCG_HISI_HIP08
:
798 /* HiSilicon Erratum 162001800 */
799 smmu_pmu
->options
|= SMMU_PMCG_EVCNTR_RDONLY
| SMMU_PMCG_HARDEN_DISABLE
;
801 case IORT_SMMU_V3_PMCG_HISI_HIP09
:
802 smmu_pmu
->options
|= SMMU_PMCG_HARDEN_DISABLE
;
806 dev_notice(smmu_pmu
->dev
, "option mask 0x%x\n", smmu_pmu
->options
);
809 static bool smmu_pmu_coresight_id_regs(struct smmu_pmu
*smmu_pmu
)
811 return of_device_is_compatible(smmu_pmu
->dev
->of_node
,
815 static void smmu_pmu_get_iidr(struct smmu_pmu
*smmu_pmu
)
817 u32 iidr
= readl_relaxed(smmu_pmu
->reg_base
+ SMMU_PMCG_IIDR
);
819 if (!iidr
&& smmu_pmu_coresight_id_regs(smmu_pmu
)) {
820 u32 pidr0
= readl(smmu_pmu
->reg_base
+ SMMU_PMCG_PIDR0
);
821 u32 pidr1
= readl(smmu_pmu
->reg_base
+ SMMU_PMCG_PIDR1
);
822 u32 pidr2
= readl(smmu_pmu
->reg_base
+ SMMU_PMCG_PIDR2
);
823 u32 pidr3
= readl(smmu_pmu
->reg_base
+ SMMU_PMCG_PIDR3
);
824 u32 pidr4
= readl(smmu_pmu
->reg_base
+ SMMU_PMCG_PIDR4
);
826 u32 productid
= FIELD_GET(SMMU_PMCG_PIDR0_PART_0
, pidr0
) |
827 (FIELD_GET(SMMU_PMCG_PIDR1_PART_1
, pidr1
) << 8);
828 u32 variant
= FIELD_GET(SMMU_PMCG_PIDR2_REVISION
, pidr2
);
829 u32 revision
= FIELD_GET(SMMU_PMCG_PIDR3_REVAND
, pidr3
);
831 FIELD_GET(SMMU_PMCG_PIDR1_DES_0
, pidr1
) |
832 (FIELD_GET(SMMU_PMCG_PIDR2_DES_1
, pidr2
) << 4) |
833 (FIELD_GET(SMMU_PMCG_PIDR4_DES_2
, pidr4
) << 8);
835 iidr
= FIELD_PREP(SMMU_PMCG_IIDR_PRODUCTID
, productid
) |
836 FIELD_PREP(SMMU_PMCG_IIDR_VARIANT
, variant
) |
837 FIELD_PREP(SMMU_PMCG_IIDR_REVISION
, revision
) |
838 FIELD_PREP(SMMU_PMCG_IIDR_IMPLEMENTER
, implementer
);
841 smmu_pmu
->iidr
= iidr
;
844 static int smmu_pmu_probe(struct platform_device
*pdev
)
846 struct smmu_pmu
*smmu_pmu
;
847 struct resource
*res_0
;
852 struct device
*dev
= &pdev
->dev
;
854 smmu_pmu
= devm_kzalloc(dev
, sizeof(*smmu_pmu
), GFP_KERNEL
);
859 platform_set_drvdata(pdev
, smmu_pmu
);
861 smmu_pmu
->pmu
= (struct pmu
) {
862 .module
= THIS_MODULE
,
863 .parent
= &pdev
->dev
,
864 .task_ctx_nr
= perf_invalid_context
,
865 .pmu_enable
= smmu_pmu_enable
,
866 .pmu_disable
= smmu_pmu_disable
,
867 .event_init
= smmu_pmu_event_init
,
868 .add
= smmu_pmu_event_add
,
869 .del
= smmu_pmu_event_del
,
870 .start
= smmu_pmu_event_start
,
871 .stop
= smmu_pmu_event_stop
,
872 .read
= smmu_pmu_event_read
,
873 .attr_groups
= smmu_pmu_attr_grps
,
874 .capabilities
= PERF_PMU_CAP_NO_EXCLUDE
,
877 smmu_pmu
->reg_base
= devm_platform_get_and_ioremap_resource(pdev
, 0, &res_0
);
878 if (IS_ERR(smmu_pmu
->reg_base
))
879 return PTR_ERR(smmu_pmu
->reg_base
);
881 cfgr
= readl_relaxed(smmu_pmu
->reg_base
+ SMMU_PMCG_CFGR
);
883 /* Determine if page 1 is present */
884 if (cfgr
& SMMU_PMCG_CFGR_RELOC_CTRS
) {
885 smmu_pmu
->reloc_base
= devm_platform_ioremap_resource(pdev
, 1);
886 if (IS_ERR(smmu_pmu
->reloc_base
))
887 return PTR_ERR(smmu_pmu
->reloc_base
);
889 smmu_pmu
->reloc_base
= smmu_pmu
->reg_base
;
892 irq
= platform_get_irq_optional(pdev
, 0);
896 ceid_64
[0] = readq_relaxed(smmu_pmu
->reg_base
+ SMMU_PMCG_CEID0
);
897 ceid_64
[1] = readq_relaxed(smmu_pmu
->reg_base
+ SMMU_PMCG_CEID1
);
898 bitmap_from_arr32(smmu_pmu
->supported_events
, (u32
*)ceid_64
,
899 SMMU_PMCG_ARCH_MAX_EVENTS
);
901 smmu_pmu
->num_counters
= FIELD_GET(SMMU_PMCG_CFGR_NCTR
, cfgr
) + 1;
903 smmu_pmu
->global_filter
= !!(cfgr
& SMMU_PMCG_CFGR_SID_FILTER_TYPE
);
905 reg_size
= FIELD_GET(SMMU_PMCG_CFGR_SIZE
, cfgr
);
906 smmu_pmu
->counter_mask
= GENMASK_ULL(reg_size
, 0);
908 smmu_pmu_reset(smmu_pmu
);
910 err
= smmu_pmu_setup_irq(smmu_pmu
);
912 dev_err(dev
, "Setup irq failed, PMU @%pa\n", &res_0
->start
);
916 smmu_pmu_get_iidr(smmu_pmu
);
918 name
= devm_kasprintf(&pdev
->dev
, GFP_KERNEL
, "smmuv3_pmcg_%llx",
919 (res_0
->start
) >> SMMU_PMCG_PA_SHIFT
);
921 dev_err(dev
, "Create name failed, PMU @%pa\n", &res_0
->start
);
926 smmu_pmu_get_acpi_options(smmu_pmu
);
929 * For platforms suffer this quirk, the PMU disable sometimes fails to
930 * stop the counters. This will leads to inaccurate or error counting.
931 * Forcibly disable the counters with these quirk handler.
933 if (smmu_pmu
->options
& SMMU_PMCG_HARDEN_DISABLE
) {
934 smmu_pmu
->pmu
.pmu_enable
= smmu_pmu_enable_quirk_hip08_09
;
935 smmu_pmu
->pmu
.pmu_disable
= smmu_pmu_disable_quirk_hip08_09
;
938 /* Pick one CPU to be the preferred one to use */
939 smmu_pmu
->on_cpu
= raw_smp_processor_id();
940 WARN_ON(irq_set_affinity(smmu_pmu
->irq
, cpumask_of(smmu_pmu
->on_cpu
)));
942 err
= cpuhp_state_add_instance_nocalls(cpuhp_state_num
,
945 dev_err(dev
, "Error %d registering hotplug, PMU @%pa\n",
950 err
= perf_pmu_register(&smmu_pmu
->pmu
, name
, -1);
952 dev_err(dev
, "Error %d registering PMU @%pa\n",
957 dev_info(dev
, "Registered PMU @ %pa using %d counters with %s filter settings\n",
958 &res_0
->start
, smmu_pmu
->num_counters
,
959 smmu_pmu
->global_filter
? "Global(Counter0)" :
965 cpuhp_state_remove_instance_nocalls(cpuhp_state_num
, &smmu_pmu
->node
);
969 static void smmu_pmu_remove(struct platform_device
*pdev
)
971 struct smmu_pmu
*smmu_pmu
= platform_get_drvdata(pdev
);
973 perf_pmu_unregister(&smmu_pmu
->pmu
);
974 cpuhp_state_remove_instance_nocalls(cpuhp_state_num
, &smmu_pmu
->node
);
977 static void smmu_pmu_shutdown(struct platform_device
*pdev
)
979 struct smmu_pmu
*smmu_pmu
= platform_get_drvdata(pdev
);
981 smmu_pmu_disable(&smmu_pmu
->pmu
);
985 static const struct of_device_id smmu_pmu_of_match
[] = {
986 { .compatible
= "arm,smmu-v3-pmcg" },
989 MODULE_DEVICE_TABLE(of
, smmu_pmu_of_match
);
992 static struct platform_driver smmu_pmu_driver
= {
994 .name
= "arm-smmu-v3-pmcg",
995 .of_match_table
= of_match_ptr(smmu_pmu_of_match
),
996 .suppress_bind_attrs
= true,
998 .probe
= smmu_pmu_probe
,
999 .remove_new
= smmu_pmu_remove
,
1000 .shutdown
= smmu_pmu_shutdown
,
1003 static int __init
arm_smmu_pmu_init(void)
1007 cpuhp_state_num
= cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN
,
1008 "perf/arm/pmcg:online",
1010 smmu_pmu_offline_cpu
);
1011 if (cpuhp_state_num
< 0)
1012 return cpuhp_state_num
;
1014 ret
= platform_driver_register(&smmu_pmu_driver
);
1016 cpuhp_remove_multi_state(cpuhp_state_num
);
1020 module_init(arm_smmu_pmu_init
);
1022 static void __exit
arm_smmu_pmu_exit(void)
1024 platform_driver_unregister(&smmu_pmu_driver
);
1025 cpuhp_remove_multi_state(cpuhp_state_num
);
1028 module_exit(arm_smmu_pmu_exit
);
1030 MODULE_ALIAS("platform:arm-smmu-v3-pmcg");
1031 MODULE_DESCRIPTION("PMU driver for ARM SMMUv3 Performance Monitors Extension");
1032 MODULE_AUTHOR("Neil Leeder <nleeder@codeaurora.org>");
1033 MODULE_AUTHOR("Shameer Kolothum <shameerali.kolothum.thodi@huawei.com>");
1034 MODULE_LICENSE("GPL v2");