2 * Copyright IBM Corp. 2007
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/kernel.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 #include <asm/s390_ext.h>
21 #include <asm/sysinfo.h>
26 #define PTF_HORIZONTAL (0UL)
27 #define PTF_VERTICAL (1UL)
28 #define PTF_CHECK (2UL)
31 unsigned char reserved0[4];
34 unsigned char reserved1;
35 unsigned short origin;
36 unsigned long mask[CPU_BITS / BITS_PER_LONG];
40 unsigned char reserved[7];
47 struct tl_container container;
51 unsigned char reserved0[2];
52 unsigned short length;
53 unsigned char mag[NR_MAG];
54 unsigned char reserved1;
56 unsigned char reserved2[4];
57 union tl_entry tle[0];
61 struct core_info *next;
66 static int topology_enabled;
67 static void topology_work_fn(struct work_struct *work);
68 static struct tl_info *tl_info;
69 static struct core_info core_info;
70 static int machine_has_topology;
71 static struct timer_list topology_timer;
72 static void set_topology_timer(void);
73 static DECLARE_WORK(topology_work, topology_work_fn);
74 /* topology_lock protects the core linked list */
75 static DEFINE_SPINLOCK(topology_lock);
77 cpumask_t cpu_core_map[NR_CPUS];
78 unsigned char cpu_core_id[NR_CPUS];
80 static cpumask_t cpu_coregroup_map(unsigned int cpu)
82 struct core_info *core = &core_info;
87 if (!topology_enabled || !machine_has_topology)
88 return cpu_possible_map;
89 spin_lock_irqsave(&topology_lock, flags);
91 if (cpu_isset(cpu, core->mask)) {
97 spin_unlock_irqrestore(&topology_lock, flags);
99 mask = cpumask_of_cpu(cpu);
103 const struct cpumask *cpu_coregroup_mask(unsigned int cpu)
105 return &cpu_core_map[cpu];
108 static void add_cpus_to_core(struct tl_cpu *tl_cpu, struct core_info *core)
112 for (cpu = find_first_bit(&tl_cpu->mask[0], CPU_BITS);
114 cpu = find_next_bit(&tl_cpu->mask[0], CPU_BITS, cpu + 1))
116 unsigned int rcpu, lcpu;
118 rcpu = CPU_BITS - 1 - cpu + tl_cpu->origin;
119 for_each_present_cpu(lcpu) {
120 if (cpu_logical_map(lcpu) == rcpu) {
121 cpu_set(lcpu, core->mask);
122 cpu_core_id[lcpu] = core->id;
123 smp_cpu_polarization[lcpu] = tl_cpu->pp;
129 static void clear_cores(void)
131 struct core_info *core = &core_info;
134 cpus_clear(core->mask);
139 static union tl_entry *next_tle(union tl_entry *tle)
142 return (union tl_entry *)((struct tl_container *)tle + 1);
144 return (union tl_entry *)((struct tl_cpu *)tle + 1);
147 static void tl_to_cores(struct tl_info *info)
149 union tl_entry *tle, *end;
150 struct core_info *core = &core_info;
152 spin_lock_irq(&topology_lock);
155 end = (union tl_entry *)((unsigned long)info + info->length);
165 core->id = tle->container.id;
168 add_cpus_to_core(&tle->cpu, core);
172 machine_has_topology = 0;
178 spin_unlock_irq(&topology_lock);
181 static void topology_update_polarization_simple(void)
185 mutex_lock(&smp_cpu_state_mutex);
186 for_each_possible_cpu(cpu)
187 smp_cpu_polarization[cpu] = POLARIZATION_HRZ;
188 mutex_unlock(&smp_cpu_state_mutex);
191 static int ptf(unsigned long fc)
196 " .insn rre,0xb9a20000,%1,%1\n"
204 int topology_set_cpu_management(int fc)
209 if (!machine_has_topology)
212 rc = ptf(PTF_VERTICAL);
214 rc = ptf(PTF_HORIZONTAL);
217 for_each_possible_cpu(cpu)
218 smp_cpu_polarization[cpu] = POLARIZATION_UNKNWN;
222 static void update_cpu_core_map(void)
226 for_each_possible_cpu(cpu)
227 cpu_core_map[cpu] = cpu_coregroup_map(cpu);
230 int arch_update_cpu_topology(void)
232 struct tl_info *info = tl_info;
233 struct sys_device *sysdev;
236 if (!machine_has_topology) {
237 update_cpu_core_map();
238 topology_update_polarization_simple();
241 stsi(info, 15, 1, 2);
243 update_cpu_core_map();
244 for_each_online_cpu(cpu) {
245 sysdev = get_cpu_sysdev(cpu);
246 kobject_uevent(&sysdev->kobj, KOBJ_CHANGE);
251 static void topology_work_fn(struct work_struct *work)
253 rebuild_sched_domains();
256 void topology_schedule_update(void)
258 schedule_work(&topology_work);
261 static void topology_timer_fn(unsigned long ignored)
264 topology_schedule_update();
265 set_topology_timer();
268 static void set_topology_timer(void)
270 topology_timer.function = topology_timer_fn;
271 topology_timer.data = 0;
272 topology_timer.expires = jiffies + 60 * HZ;
273 add_timer(&topology_timer);
276 static int __init early_parse_topology(char *p)
278 if (strncmp(p, "on", 2))
280 topology_enabled = 1;
283 early_param("topology", early_parse_topology);
285 static int __init init_topology_update(void)
290 if (!machine_has_topology) {
291 topology_update_polarization_simple();
294 init_timer_deferrable(&topology_timer);
295 set_topology_timer();
297 update_cpu_core_map();
300 __initcall(init_topology_update);
302 void __init s390_init_cpu_topology(void)
304 unsigned long long facility_bits;
305 struct tl_info *info;
306 struct core_info *core;
310 if (stfle(&facility_bits, 1) <= 0)
312 if (!(facility_bits & (1ULL << 52)) || !(facility_bits & (1ULL << 61)))
314 machine_has_topology = 1;
316 tl_info = alloc_bootmem_pages(PAGE_SIZE);
318 stsi(info, 15, 1, 2);
320 nr_cores = info->mag[NR_MAG - 2];
321 for (i = 0; i < info->mnest - 2; i++)
322 nr_cores *= info->mag[NR_MAG - 3 - i];
324 pr_info("The CPU configuration topology of the machine is:");
325 for (i = 0; i < NR_MAG; i++)
326 printk(" %d", info->mag[i]);
327 printk(" / %d\n", info->mnest);
330 for (i = 0; i < nr_cores; i++) {
331 core->next = alloc_bootmem(sizeof(struct core_info));
338 machine_has_topology = 0;