Merge branch 'exynos-drm' of git://git.infradead.org/users/kmpark/linux-samsung into...
[pandora-kernel.git] / arch / s390 / kernel / topology.c
1 /*
2  *    Copyright IBM Corp. 2007
3  *    Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>
4  */
5
6 #define KMSG_COMPONENT "cpu"
7 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
8
9 #include <linux/kernel.h>
10 #include <linux/mm.h>
11 #include <linux/init.h>
12 #include <linux/device.h>
13 #include <linux/bootmem.h>
14 #include <linux/sched.h>
15 #include <linux/workqueue.h>
16 #include <linux/cpu.h>
17 #include <linux/smp.h>
18 #include <linux/cpuset.h>
19 #include <asm/delay.h>
20
21 #define PTF_HORIZONTAL  (0UL)
22 #define PTF_VERTICAL    (1UL)
23 #define PTF_CHECK       (2UL)
24
25 struct mask_info {
26         struct mask_info *next;
27         unsigned char id;
28         cpumask_t mask;
29 };
30
31 static int topology_enabled = 1;
32 static void topology_work_fn(struct work_struct *work);
33 static struct sysinfo_15_1_x *tl_info;
34 static struct timer_list topology_timer;
35 static void set_topology_timer(void);
36 static DECLARE_WORK(topology_work, topology_work_fn);
37 /* topology_lock protects the core linked list */
38 static DEFINE_SPINLOCK(topology_lock);
39
40 static struct mask_info core_info;
41 cpumask_t cpu_core_map[NR_CPUS];
42 unsigned char cpu_core_id[NR_CPUS];
43
44 #ifdef CONFIG_SCHED_BOOK
45 static struct mask_info book_info;
46 cpumask_t cpu_book_map[NR_CPUS];
47 unsigned char cpu_book_id[NR_CPUS];
48 #endif
49
50 static cpumask_t cpu_group_map(struct mask_info *info, unsigned int cpu)
51 {
52         cpumask_t mask;
53
54         cpumask_clear(&mask);
55         if (!topology_enabled || !MACHINE_HAS_TOPOLOGY) {
56                 cpumask_copy(&mask, cpumask_of(cpu));
57                 return mask;
58         }
59         while (info) {
60                 if (cpumask_test_cpu(cpu, &info->mask)) {
61                         mask = info->mask;
62                         break;
63                 }
64                 info = info->next;
65         }
66         if (cpumask_empty(&mask))
67                 cpumask_copy(&mask, cpumask_of(cpu));
68         return mask;
69 }
70
71 static struct mask_info *add_cpus_to_mask(struct topology_cpu *tl_cpu,
72                                           struct mask_info *book,
73                                           struct mask_info *core,
74                                           int z10)
75 {
76         unsigned int cpu;
77
78         for (cpu = find_first_bit(&tl_cpu->mask[0], TOPOLOGY_CPU_BITS);
79              cpu < TOPOLOGY_CPU_BITS;
80              cpu = find_next_bit(&tl_cpu->mask[0], TOPOLOGY_CPU_BITS, cpu + 1))
81         {
82                 unsigned int rcpu, lcpu;
83
84                 rcpu = TOPOLOGY_CPU_BITS - 1 - cpu + tl_cpu->origin;
85                 for_each_present_cpu(lcpu) {
86                         if (cpu_logical_map(lcpu) != rcpu)
87                                 continue;
88 #ifdef CONFIG_SCHED_BOOK
89                         cpumask_set_cpu(lcpu, &book->mask);
90                         cpu_book_id[lcpu] = book->id;
91 #endif
92                         cpumask_set_cpu(lcpu, &core->mask);
93                         if (z10) {
94                                 cpu_core_id[lcpu] = rcpu;
95                                 core = core->next;
96                         } else {
97                                 cpu_core_id[lcpu] = core->id;
98                         }
99                         smp_cpu_polarization[lcpu] = tl_cpu->pp;
100                 }
101         }
102         return core;
103 }
104
105 static void clear_masks(void)
106 {
107         struct mask_info *info;
108
109         info = &core_info;
110         while (info) {
111                 cpumask_clear(&info->mask);
112                 info = info->next;
113         }
114 #ifdef CONFIG_SCHED_BOOK
115         info = &book_info;
116         while (info) {
117                 cpumask_clear(&info->mask);
118                 info = info->next;
119         }
120 #endif
121 }
122
123 static union topology_entry *next_tle(union topology_entry *tle)
124 {
125         if (!tle->nl)
126                 return (union topology_entry *)((struct topology_cpu *)tle + 1);
127         return (union topology_entry *)((struct topology_container *)tle + 1);
128 }
129
130 static void tl_to_cores(struct sysinfo_15_1_x *info)
131 {
132 #ifdef CONFIG_SCHED_BOOK
133         struct mask_info *book = &book_info;
134         struct cpuid cpu_id;
135 #else
136         struct mask_info *book = NULL;
137 #endif
138         struct mask_info *core = &core_info;
139         union topology_entry *tle, *end;
140         int z10 = 0;
141
142 #ifdef CONFIG_SCHED_BOOK
143         get_cpu_id(&cpu_id);
144         z10 = cpu_id.machine == 0x2097 || cpu_id.machine == 0x2098;
145 #endif
146         spin_lock_irq(&topology_lock);
147         clear_masks();
148         tle = info->tle;
149         end = (union topology_entry *)((unsigned long)info + info->length);
150         while (tle < end) {
151 #ifdef CONFIG_SCHED_BOOK
152                 if (z10) {
153                         switch (tle->nl) {
154                         case 1:
155                                 book = book->next;
156                                 book->id = tle->container.id;
157                                 break;
158                         case 0:
159                                 core = add_cpus_to_mask(&tle->cpu, book, core, z10);
160                                 break;
161                         default:
162                                 clear_masks();
163                                 goto out;
164                         }
165                         tle = next_tle(tle);
166                         continue;
167                 }
168 #endif
169                 switch (tle->nl) {
170 #ifdef CONFIG_SCHED_BOOK
171                 case 2:
172                         book = book->next;
173                         book->id = tle->container.id;
174                         break;
175 #endif
176                 case 1:
177                         core = core->next;
178                         core->id = tle->container.id;
179                         break;
180                 case 0:
181                         add_cpus_to_mask(&tle->cpu, book, core, z10);
182                         break;
183                 default:
184                         clear_masks();
185                         goto out;
186                 }
187                 tle = next_tle(tle);
188         }
189 out:
190         spin_unlock_irq(&topology_lock);
191 }
192
193 static void topology_update_polarization_simple(void)
194 {
195         int cpu;
196
197         mutex_lock(&smp_cpu_state_mutex);
198         for_each_possible_cpu(cpu)
199                 smp_cpu_polarization[cpu] = POLARIZATION_HRZ;
200         mutex_unlock(&smp_cpu_state_mutex);
201 }
202
203 static int ptf(unsigned long fc)
204 {
205         int rc;
206
207         asm volatile(
208                 "       .insn   rre,0xb9a20000,%1,%1\n"
209                 "       ipm     %0\n"
210                 "       srl     %0,28\n"
211                 : "=d" (rc)
212                 : "d" (fc)  : "cc");
213         return rc;
214 }
215
216 int topology_set_cpu_management(int fc)
217 {
218         int cpu;
219         int rc;
220
221         if (!MACHINE_HAS_TOPOLOGY)
222                 return -EOPNOTSUPP;
223         if (fc)
224                 rc = ptf(PTF_VERTICAL);
225         else
226                 rc = ptf(PTF_HORIZONTAL);
227         if (rc)
228                 return -EBUSY;
229         for_each_possible_cpu(cpu)
230                 smp_cpu_polarization[cpu] = POLARIZATION_UNKNWN;
231         return rc;
232 }
233
234 static void update_cpu_core_map(void)
235 {
236         unsigned long flags;
237         int cpu;
238
239         spin_lock_irqsave(&topology_lock, flags);
240         for_each_possible_cpu(cpu) {
241                 cpu_core_map[cpu] = cpu_group_map(&core_info, cpu);
242 #ifdef CONFIG_SCHED_BOOK
243                 cpu_book_map[cpu] = cpu_group_map(&book_info, cpu);
244 #endif
245         }
246         spin_unlock_irqrestore(&topology_lock, flags);
247 }
248
249 void store_topology(struct sysinfo_15_1_x *info)
250 {
251 #ifdef CONFIG_SCHED_BOOK
252         int rc;
253
254         rc = stsi(info, 15, 1, 3);
255         if (rc != -ENOSYS)
256                 return;
257 #endif
258         stsi(info, 15, 1, 2);
259 }
260
261 int arch_update_cpu_topology(void)
262 {
263         struct sysinfo_15_1_x *info = tl_info;
264         struct sys_device *sysdev;
265         int cpu;
266
267         if (!MACHINE_HAS_TOPOLOGY) {
268                 update_cpu_core_map();
269                 topology_update_polarization_simple();
270                 return 0;
271         }
272         store_topology(info);
273         tl_to_cores(info);
274         update_cpu_core_map();
275         for_each_online_cpu(cpu) {
276                 sysdev = get_cpu_sysdev(cpu);
277                 kobject_uevent(&sysdev->kobj, KOBJ_CHANGE);
278         }
279         return 1;
280 }
281
282 static void topology_work_fn(struct work_struct *work)
283 {
284         rebuild_sched_domains();
285 }
286
287 void topology_schedule_update(void)
288 {
289         schedule_work(&topology_work);
290 }
291
292 static void topology_timer_fn(unsigned long ignored)
293 {
294         if (ptf(PTF_CHECK))
295                 topology_schedule_update();
296         set_topology_timer();
297 }
298
299 static void set_topology_timer(void)
300 {
301         topology_timer.function = topology_timer_fn;
302         topology_timer.data = 0;
303         topology_timer.expires = jiffies + 60 * HZ;
304         add_timer(&topology_timer);
305 }
306
307 static int __init early_parse_topology(char *p)
308 {
309         if (strncmp(p, "off", 3))
310                 return 0;
311         topology_enabled = 0;
312         return 0;
313 }
314 early_param("topology", early_parse_topology);
315
316 static int __init init_topology_update(void)
317 {
318         int rc;
319
320         rc = 0;
321         if (!MACHINE_HAS_TOPOLOGY) {
322                 topology_update_polarization_simple();
323                 goto out;
324         }
325         init_timer_deferrable(&topology_timer);
326         set_topology_timer();
327 out:
328         update_cpu_core_map();
329         return rc;
330 }
331 __initcall(init_topology_update);
332
333 static void __init alloc_masks(struct sysinfo_15_1_x *info,
334                                struct mask_info *mask, int offset)
335 {
336         int i, nr_masks;
337
338         nr_masks = info->mag[TOPOLOGY_NR_MAG - offset];
339         for (i = 0; i < info->mnest - offset; i++)
340                 nr_masks *= info->mag[TOPOLOGY_NR_MAG - offset - 1 - i];
341         nr_masks = max(nr_masks, 1);
342         for (i = 0; i < nr_masks; i++) {
343                 mask->next = alloc_bootmem(sizeof(struct mask_info));
344                 mask = mask->next;
345         }
346 }
347
348 void __init s390_init_cpu_topology(void)
349 {
350         struct sysinfo_15_1_x *info;
351         int i;
352
353         if (!MACHINE_HAS_TOPOLOGY)
354                 return;
355         tl_info = alloc_bootmem_pages(PAGE_SIZE);
356         info = tl_info;
357         store_topology(info);
358         pr_info("The CPU configuration topology of the machine is:");
359         for (i = 0; i < TOPOLOGY_NR_MAG; i++)
360                 printk(" %d", info->mag[i]);
361         printk(" / %d\n", info->mnest);
362         alloc_masks(info, &core_info, 1);
363 #ifdef CONFIG_SCHED_BOOK
364         alloc_masks(info, &book_info, 2);
365 #endif
366 }