powerpc/pseries/cpuidle: Remove MAX_IDLE_STATE macro.
[deliverable/linux.git] / drivers / cpuidle / cpuidle-pseries.c
1 /*
2 * cpuidle-pseries - idle state cpuidle driver.
3 * Adapted from drivers/idle/intel_idle.c and
4 * drivers/acpi/processor_idle.c
5 *
6 */
7
8 #include <linux/kernel.h>
9 #include <linux/module.h>
10 #include <linux/init.h>
11 #include <linux/moduleparam.h>
12 #include <linux/cpuidle.h>
13 #include <linux/cpu.h>
14 #include <linux/notifier.h>
15
16 #include <asm/paca.h>
17 #include <asm/reg.h>
18 #include <asm/machdep.h>
19 #include <asm/firmware.h>
20 #include <asm/plpar_wrappers.h>
21
22 struct cpuidle_driver pseries_idle_driver = {
23 .name = "pseries_idle",
24 .owner = THIS_MODULE,
25 };
26
27 static int max_idle_state;
28 static struct cpuidle_state *cpuidle_state_table;
29
30 static inline void idle_loop_prolog(unsigned long *in_purr)
31 {
32 *in_purr = mfspr(SPRN_PURR);
33 /*
34 * Indicate to the HV that we are idle. Now would be
35 * a good time to find other work to dispatch.
36 */
37 get_lppaca()->idle = 1;
38 }
39
40 static inline void idle_loop_epilog(unsigned long in_purr)
41 {
42 u64 wait_cycles;
43
44 wait_cycles = be64_to_cpu(get_lppaca()->wait_state_cycles);
45 wait_cycles += mfspr(SPRN_PURR) - in_purr;
46 get_lppaca()->wait_state_cycles = cpu_to_be64(wait_cycles);
47 get_lppaca()->idle = 0;
48 }
49
50 static int snooze_loop(struct cpuidle_device *dev,
51 struct cpuidle_driver *drv,
52 int index)
53 {
54 unsigned long in_purr;
55
56 idle_loop_prolog(&in_purr);
57 local_irq_enable();
58 set_thread_flag(TIF_POLLING_NRFLAG);
59
60 while (!need_resched()) {
61 HMT_low();
62 HMT_very_low();
63 }
64
65 HMT_medium();
66 clear_thread_flag(TIF_POLLING_NRFLAG);
67 smp_mb();
68
69 idle_loop_epilog(in_purr);
70
71 return index;
72 }
73
74 static void check_and_cede_processor(void)
75 {
76 /*
77 * Ensure our interrupt state is properly tracked,
78 * also checks if no interrupt has occurred while we
79 * were soft-disabled
80 */
81 if (prep_irq_for_idle()) {
82 cede_processor();
83 #ifdef CONFIG_TRACE_IRQFLAGS
84 /* Ensure that H_CEDE returns with IRQs on */
85 if (WARN_ON(!(mfmsr() & MSR_EE)))
86 __hard_irq_enable();
87 #endif
88 }
89 }
90
91 static int dedicated_cede_loop(struct cpuidle_device *dev,
92 struct cpuidle_driver *drv,
93 int index)
94 {
95 unsigned long in_purr;
96
97 idle_loop_prolog(&in_purr);
98 get_lppaca()->donate_dedicated_cpu = 1;
99
100 HMT_medium();
101 check_and_cede_processor();
102
103 get_lppaca()->donate_dedicated_cpu = 0;
104
105 idle_loop_epilog(in_purr);
106
107 return index;
108 }
109
110 static int shared_cede_loop(struct cpuidle_device *dev,
111 struct cpuidle_driver *drv,
112 int index)
113 {
114 unsigned long in_purr;
115
116 idle_loop_prolog(&in_purr);
117
118 /*
119 * Yield the processor to the hypervisor. We return if
120 * an external interrupt occurs (which are driven prior
121 * to returning here) or if a prod occurs from another
122 * processor. When returning here, external interrupts
123 * are enabled.
124 */
125 check_and_cede_processor();
126
127 idle_loop_epilog(in_purr);
128
129 return index;
130 }
131
132 /*
133 * States for dedicated partition case.
134 */
135 static struct cpuidle_state dedicated_states[] = {
136 { /* Snooze */
137 .name = "snooze",
138 .desc = "snooze",
139 .flags = CPUIDLE_FLAG_TIME_VALID,
140 .exit_latency = 0,
141 .target_residency = 0,
142 .enter = &snooze_loop },
143 { /* CEDE */
144 .name = "CEDE",
145 .desc = "CEDE",
146 .flags = CPUIDLE_FLAG_TIME_VALID,
147 .exit_latency = 10,
148 .target_residency = 100,
149 .enter = &dedicated_cede_loop },
150 };
151
152 /*
153 * States for shared partition case.
154 */
155 static struct cpuidle_state shared_states[] = {
156 { /* Shared Cede */
157 .name = "Shared Cede",
158 .desc = "Shared Cede",
159 .flags = CPUIDLE_FLAG_TIME_VALID,
160 .exit_latency = 0,
161 .target_residency = 0,
162 .enter = &shared_cede_loop },
163 };
164
165 void update_smt_snooze_delay(int cpu, int residency)
166 {
167 struct cpuidle_driver *drv = cpuidle_get_driver();
168 struct cpuidle_device *dev = per_cpu(cpuidle_devices, cpu);
169
170 if (cpuidle_state_table != dedicated_states)
171 return;
172
173 if (residency < 0) {
174 /* Disable the Nap state on that cpu */
175 if (dev)
176 dev->states_usage[1].disable = 1;
177 } else
178 if (drv)
179 drv->states[1].target_residency = residency;
180 }
181
182 static int pseries_cpuidle_add_cpu_notifier(struct notifier_block *n,
183 unsigned long action, void *hcpu)
184 {
185 int hotcpu = (unsigned long)hcpu;
186 struct cpuidle_device *dev =
187 per_cpu(cpuidle_devices, hotcpu);
188
189 if (dev && cpuidle_get_driver()) {
190 switch (action) {
191 case CPU_ONLINE:
192 case CPU_ONLINE_FROZEN:
193 cpuidle_pause_and_lock();
194 cpuidle_enable_device(dev);
195 cpuidle_resume_and_unlock();
196 break;
197
198 case CPU_DEAD:
199 case CPU_DEAD_FROZEN:
200 cpuidle_pause_and_lock();
201 cpuidle_disable_device(dev);
202 cpuidle_resume_and_unlock();
203 break;
204
205 default:
206 return NOTIFY_DONE;
207 }
208 }
209 return NOTIFY_OK;
210 }
211
212 static struct notifier_block setup_hotplug_notifier = {
213 .notifier_call = pseries_cpuidle_add_cpu_notifier,
214 };
215
216 /*
217 * pseries_cpuidle_driver_init()
218 */
219 static int pseries_cpuidle_driver_init(void)
220 {
221 int idle_state;
222 struct cpuidle_driver *drv = &pseries_idle_driver;
223
224 drv->state_count = 0;
225
226 for (idle_state = 0; idle_state < max_idle_state; ++idle_state) {
227 /* Is the state not enabled? */
228 if (cpuidle_state_table[idle_state].enter == NULL)
229 continue;
230
231 drv->states[drv->state_count] = /* structure copy */
232 cpuidle_state_table[idle_state];
233
234 drv->state_count += 1;
235 }
236
237 return 0;
238 }
239
240 /*
241 * pseries_idle_probe()
242 * Choose state table for shared versus dedicated partition
243 */
244 static int pseries_idle_probe(void)
245 {
246
247 if (cpuidle_disable != IDLE_NO_OVERRIDE)
248 return -ENODEV;
249
250 if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
251 if (lppaca_shared_proc(get_lppaca())) {
252 cpuidle_state_table = shared_states;
253 max_idle_state = ARRAY_SIZE(shared_states);
254 } else {
255 cpuidle_state_table = dedicated_states;
256 max_idle_state = ARRAY_SIZE(dedicated_states);
257 }
258 } else
259 return -ENODEV;
260
261 return 0;
262 }
263
264 static int __init pseries_processor_idle_init(void)
265 {
266 int retval;
267
268 retval = pseries_idle_probe();
269 if (retval)
270 return retval;
271
272 pseries_cpuidle_driver_init();
273 retval = cpuidle_register(&pseries_idle_driver, NULL);
274 if (retval) {
275 printk(KERN_DEBUG "Registration of pseries driver failed.\n");
276 return retval;
277 }
278
279 register_cpu_notifier(&setup_hotplug_notifier);
280 printk(KERN_DEBUG "pseries_idle_driver registered\n");
281 return 0;
282 }
283
284 device_initcall(pseries_processor_idle_init);
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