2 * Copyright IBM Corp. 2007, 2011
3 * Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>
6 #define KMSG_COMPONENT "cpu"
7 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
9 #include <linux/workqueue.h>
10 #include <linux/cpuset.h>
11 #include <linux/device.h>
12 #include <linux/export.h>
13 #include <linux/kernel.h>
14 #include <linux/sched.h>
15 #include <linux/delay.h>
16 #include <linux/init.h>
17 #include <linux/slab.h>
18 #include <linux/cpu.h>
19 #include <linux/smp.h>
21 #include <linux/nodemask.h>
22 #include <linux/node.h>
23 #include <asm/sysinfo.h>
26 #define PTF_HORIZONTAL (0UL)
27 #define PTF_VERTICAL (1UL)
28 #define PTF_CHECK (2UL)
31 struct mask_info
*next
;
36 static void set_topology_timer(void);
37 static void topology_work_fn(struct work_struct
*work
);
38 static struct sysinfo_15_1_x
*tl_info
;
40 static bool topology_enabled
= true;
41 static DECLARE_WORK(topology_work
, topology_work_fn
);
44 * Socket/Book linked lists and per_cpu(cpu_topology) updates are
45 * protected by "sched_domains_mutex".
47 static struct mask_info socket_info
;
48 static struct mask_info book_info
;
50 DEFINE_PER_CPU(struct cpu_topology_s390
, cpu_topology
);
51 EXPORT_PER_CPU_SYMBOL_GPL(cpu_topology
);
53 static cpumask_t
cpu_group_map(struct mask_info
*info
, unsigned int cpu
)
57 cpumask_copy(&mask
, cpumask_of(cpu
));
58 if (!topology_enabled
|| !MACHINE_HAS_TOPOLOGY
)
60 for (; info
; info
= info
->next
) {
61 if (cpumask_test_cpu(cpu
, &info
->mask
))
67 static cpumask_t
cpu_thread_map(unsigned int cpu
)
72 cpumask_copy(&mask
, cpumask_of(cpu
));
73 if (!topology_enabled
|| !MACHINE_HAS_TOPOLOGY
)
75 cpu
-= cpu
% (smp_cpu_mtid
+ 1);
76 for (i
= 0; i
<= smp_cpu_mtid
; i
++)
77 if (cpu_present(cpu
+ i
))
78 cpumask_set_cpu(cpu
+ i
, &mask
);
82 static struct mask_info
*add_cpus_to_mask(struct topology_core
*tl_core
,
83 struct mask_info
*book
,
84 struct mask_info
*socket
,
85 int one_socket_per_cpu
)
87 struct cpu_topology_s390
*topo
;
90 for_each_set_bit(core
, &tl_core
->mask
[0], TOPOLOGY_CORE_BITS
) {
94 rcore
= TOPOLOGY_CORE_BITS
- 1 - core
+ tl_core
->origin
;
95 lcpu
= smp_find_processor_id(rcore
<< smp_cpu_mt_shift
);
98 for (i
= 0; i
<= smp_cpu_mtid
; i
++) {
99 topo
= &per_cpu(cpu_topology
, lcpu
+ i
);
100 topo
->book_id
= book
->id
;
101 topo
->core_id
= rcore
;
102 topo
->thread_id
= lcpu
+ i
;
103 cpumask_set_cpu(lcpu
+ i
, &book
->mask
);
104 cpumask_set_cpu(lcpu
+ i
, &socket
->mask
);
105 if (one_socket_per_cpu
)
106 topo
->socket_id
= rcore
;
108 topo
->socket_id
= socket
->id
;
109 smp_cpu_set_polarization(lcpu
+ i
, tl_core
->pp
);
111 if (one_socket_per_cpu
)
112 socket
= socket
->next
;
117 static void clear_masks(void)
119 struct mask_info
*info
;
123 cpumask_clear(&info
->mask
);
128 cpumask_clear(&info
->mask
);
133 static union topology_entry
*next_tle(union topology_entry
*tle
)
136 return (union topology_entry
*)((struct topology_core
*)tle
+ 1);
137 return (union topology_entry
*)((struct topology_container
*)tle
+ 1);
140 static void __tl_to_masks_generic(struct sysinfo_15_1_x
*info
)
142 struct mask_info
*socket
= &socket_info
;
143 struct mask_info
*book
= &book_info
;
144 union topology_entry
*tle
, *end
;
147 end
= (union topology_entry
*)((unsigned long)info
+ info
->length
);
152 book
->id
= tle
->container
.id
;
155 socket
= socket
->next
;
156 socket
->id
= tle
->container
.id
;
159 add_cpus_to_mask(&tle
->cpu
, book
, socket
, 0);
169 static void __tl_to_masks_z10(struct sysinfo_15_1_x
*info
)
171 struct mask_info
*socket
= &socket_info
;
172 struct mask_info
*book
= &book_info
;
173 union topology_entry
*tle
, *end
;
176 end
= (union topology_entry
*)((unsigned long)info
+ info
->length
);
181 book
->id
= tle
->container
.id
;
184 socket
= add_cpus_to_mask(&tle
->cpu
, book
, socket
, 1);
194 static void tl_to_masks(struct sysinfo_15_1_x
*info
)
200 switch (cpu_id
.machine
) {
203 __tl_to_masks_z10(info
);
206 __tl_to_masks_generic(info
);
210 static void topology_update_polarization_simple(void)
214 mutex_lock(&smp_cpu_state_mutex
);
215 for_each_possible_cpu(cpu
)
216 smp_cpu_set_polarization(cpu
, POLARIZATION_HRZ
);
217 mutex_unlock(&smp_cpu_state_mutex
);
220 static int ptf(unsigned long fc
)
225 " .insn rre,0xb9a20000,%1,%1\n"
233 int topology_set_cpu_management(int fc
)
237 if (!MACHINE_HAS_TOPOLOGY
)
240 rc
= ptf(PTF_VERTICAL
);
242 rc
= ptf(PTF_HORIZONTAL
);
245 for_each_possible_cpu(cpu
)
246 smp_cpu_set_polarization(cpu
, POLARIZATION_UNKNOWN
);
250 static void update_cpu_masks(void)
252 struct cpu_topology_s390
*topo
;
255 for_each_possible_cpu(cpu
) {
256 topo
= &per_cpu(cpu_topology
, cpu
);
257 topo
->thread_mask
= cpu_thread_map(cpu
);
258 topo
->core_mask
= cpu_group_map(&socket_info
, cpu
);
259 topo
->book_mask
= cpu_group_map(&book_info
, cpu
);
260 if (!MACHINE_HAS_TOPOLOGY
) {
261 topo
->thread_id
= cpu
;
263 topo
->socket_id
= cpu
;
267 numa_update_cpu_topology();
270 void store_topology(struct sysinfo_15_1_x
*info
)
272 if (topology_max_mnest
>= 3)
273 stsi(info
, 15, 1, 3);
275 stsi(info
, 15, 1, 2);
278 int arch_update_cpu_topology(void)
280 struct sysinfo_15_1_x
*info
= tl_info
;
284 if (MACHINE_HAS_TOPOLOGY
) {
286 store_topology(info
);
290 if (!MACHINE_HAS_TOPOLOGY
)
291 topology_update_polarization_simple();
292 for_each_online_cpu(cpu
) {
293 dev
= get_cpu_device(cpu
);
294 kobject_uevent(&dev
->kobj
, KOBJ_CHANGE
);
299 static void topology_work_fn(struct work_struct
*work
)
301 rebuild_sched_domains();
304 void topology_schedule_update(void)
306 schedule_work(&topology_work
);
309 static void topology_timer_fn(unsigned long ignored
)
312 topology_schedule_update();
313 set_topology_timer();
316 static struct timer_list topology_timer
=
317 TIMER_DEFERRED_INITIALIZER(topology_timer_fn
, 0, 0);
319 static atomic_t topology_poll
= ATOMIC_INIT(0);
321 static void set_topology_timer(void)
323 if (atomic_add_unless(&topology_poll
, -1, 0))
324 mod_timer(&topology_timer
, jiffies
+ HZ
/ 10);
326 mod_timer(&topology_timer
, jiffies
+ HZ
* 60);
329 void topology_expect_change(void)
331 if (!MACHINE_HAS_TOPOLOGY
)
333 /* This is racy, but it doesn't matter since it is just a heuristic.
334 * Worst case is that we poll in a higher frequency for a bit longer.
336 if (atomic_read(&topology_poll
) > 60)
338 atomic_add(60, &topology_poll
);
339 set_topology_timer();
342 static int cpu_management
;
344 static ssize_t
dispatching_show(struct device
*dev
,
345 struct device_attribute
*attr
,
350 mutex_lock(&smp_cpu_state_mutex
);
351 count
= sprintf(buf
, "%d\n", cpu_management
);
352 mutex_unlock(&smp_cpu_state_mutex
);
356 static ssize_t
dispatching_store(struct device
*dev
,
357 struct device_attribute
*attr
,
364 if (sscanf(buf
, "%d %c", &val
, &delim
) != 1)
366 if (val
!= 0 && val
!= 1)
370 mutex_lock(&smp_cpu_state_mutex
);
371 if (cpu_management
== val
)
373 rc
= topology_set_cpu_management(val
);
376 cpu_management
= val
;
377 topology_expect_change();
379 mutex_unlock(&smp_cpu_state_mutex
);
381 return rc
? rc
: count
;
383 static DEVICE_ATTR(dispatching
, 0644, dispatching_show
,
386 static ssize_t
cpu_polarization_show(struct device
*dev
,
387 struct device_attribute
*attr
, char *buf
)
392 mutex_lock(&smp_cpu_state_mutex
);
393 switch (smp_cpu_get_polarization(cpu
)) {
394 case POLARIZATION_HRZ
:
395 count
= sprintf(buf
, "horizontal\n");
397 case POLARIZATION_VL
:
398 count
= sprintf(buf
, "vertical:low\n");
400 case POLARIZATION_VM
:
401 count
= sprintf(buf
, "vertical:medium\n");
403 case POLARIZATION_VH
:
404 count
= sprintf(buf
, "vertical:high\n");
407 count
= sprintf(buf
, "unknown\n");
410 mutex_unlock(&smp_cpu_state_mutex
);
413 static DEVICE_ATTR(polarization
, 0444, cpu_polarization_show
, NULL
);
415 static struct attribute
*topology_cpu_attrs
[] = {
416 &dev_attr_polarization
.attr
,
420 static struct attribute_group topology_cpu_attr_group
= {
421 .attrs
= topology_cpu_attrs
,
424 int topology_cpu_init(struct cpu
*cpu
)
426 return sysfs_create_group(&cpu
->dev
.kobj
, &topology_cpu_attr_group
);
429 static const struct cpumask
*cpu_thread_mask(int cpu
)
431 return &per_cpu(cpu_topology
, cpu
).thread_mask
;
435 const struct cpumask
*cpu_coregroup_mask(int cpu
)
437 return &per_cpu(cpu_topology
, cpu
).core_mask
;
440 static const struct cpumask
*cpu_book_mask(int cpu
)
442 return &per_cpu(cpu_topology
, cpu
).book_mask
;
445 static int __init
early_parse_topology(char *p
)
447 return kstrtobool(p
, &topology_enabled
);
449 early_param("topology", early_parse_topology
);
451 static struct sched_domain_topology_level s390_topology
[] = {
452 { cpu_thread_mask
, cpu_smt_flags
, SD_INIT_NAME(SMT
) },
453 { cpu_coregroup_mask
, cpu_core_flags
, SD_INIT_NAME(MC
) },
454 { cpu_book_mask
, SD_INIT_NAME(BOOK
) },
455 { cpu_cpu_mask
, SD_INIT_NAME(DIE
) },
459 static void __init
alloc_masks(struct sysinfo_15_1_x
*info
,
460 struct mask_info
*mask
, int offset
)
464 nr_masks
= info
->mag
[TOPOLOGY_NR_MAG
- offset
];
465 for (i
= 0; i
< info
->mnest
- offset
; i
++)
466 nr_masks
*= info
->mag
[TOPOLOGY_NR_MAG
- offset
- 1 - i
];
467 nr_masks
= max(nr_masks
, 1);
468 for (i
= 0; i
< nr_masks
; i
++) {
469 mask
->next
= kzalloc(sizeof(*mask
->next
), GFP_KERNEL
);
474 static int __init
s390_topology_init(void)
476 struct sysinfo_15_1_x
*info
;
479 if (!MACHINE_HAS_TOPOLOGY
)
481 tl_info
= (struct sysinfo_15_1_x
*)__get_free_page(GFP_KERNEL
);
483 store_topology(info
);
484 pr_info("The CPU configuration topology of the machine is:");
485 for (i
= 0; i
< TOPOLOGY_NR_MAG
; i
++)
486 printk(KERN_CONT
" %d", info
->mag
[i
]);
487 printk(KERN_CONT
" / %d\n", info
->mnest
);
488 alloc_masks(info
, &socket_info
, 1);
489 alloc_masks(info
, &book_info
, 2);
490 set_sched_topology(s390_topology
);
493 early_initcall(s390_topology_init
);
495 static int __init
topology_init(void)
497 if (MACHINE_HAS_TOPOLOGY
)
498 set_topology_timer();
500 topology_update_polarization_simple();
501 return device_create_file(cpu_subsys
.dev_root
, &dev_attr_dispatching
);
503 device_initcall(topology_init
);