1 /* SPDX-License-Identifier: GPL-2.0 */ 2 /* 3 * include/linux/cpu.h - generic cpu definition 4 * 5 * This is mainly for topological representation. We define the 6 * basic 'struct cpu' here, which can be embedded in per-arch 7 * definitions of processors. 8 * 9 * Basic handling of the devices is done in drivers/base/cpu.c 10 * 11 * CPUs are exported via sysfs in the devices/system/cpu 12 * directory. 13 */ 14 #ifndef _LINUX_CPU_H_ 15 #define _LINUX_CPU_H_ 16 17 #include <linux/node.h> 18 #include <linux/compiler.h> 19 #include <linux/cpumask.h> 20 #include <linux/cpuhotplug.h> 21 22 struct device; 23 struct device_node; 24 struct attribute_group; 25 26 struct cpu { 27 int node_id; /* The node which contains the CPU */ 28 int hotpluggable; /* creates sysfs control file if hotpluggable */ 29 struct device dev; 30 }; 31 32 extern void boot_cpu_init(void); 33 extern void boot_cpu_hotplug_init(void); 34 extern void cpu_init(void); 35 extern void trap_init(void); 36 37 extern int register_cpu(struct cpu *cpu, int num); 38 extern struct device *get_cpu_device(unsigned cpu); 39 extern bool cpu_is_hotpluggable(unsigned cpu); 40 extern bool arch_match_cpu_phys_id(int cpu, u64 phys_id); 41 extern bool arch_find_n_match_cpu_physical_id(struct device_node *cpun, 42 int cpu, unsigned int *thread); 43 44 extern int cpu_add_dev_attr(struct device_attribute *attr); 45 extern void cpu_remove_dev_attr(struct device_attribute *attr); 46 47 extern int cpu_add_dev_attr_group(struct attribute_group *attrs); 48 extern void cpu_remove_dev_attr_group(struct attribute_group *attrs); 49 50 extern ssize_t cpu_show_meltdown(struct device *dev, 51 struct device_attribute *attr, char *buf); 52 extern ssize_t cpu_show_spectre_v1(struct device *dev, 53 struct device_attribute *attr, char *buf); 54 extern ssize_t cpu_show_spectre_v2(struct device *dev, 55 struct device_attribute *attr, char *buf); 56 extern ssize_t cpu_show_spec_store_bypass(struct device *dev, 57 struct device_attribute *attr, char *buf); 58 extern ssize_t cpu_show_l1tf(struct device *dev, 59 struct device_attribute *attr, char *buf); 60 extern ssize_t cpu_show_mds(struct device *dev, 61 struct device_attribute *attr, char *buf); 62 extern ssize_t cpu_show_tsx_async_abort(struct device *dev, 63 struct device_attribute *attr, 64 char *buf); 65 extern ssize_t cpu_show_itlb_multihit(struct device *dev, 66 struct device_attribute *attr, char *buf); 67 68 extern __printf(4, 5) 69 struct device *cpu_device_create(struct device *parent, void *drvdata, 70 const struct attribute_group **groups, 71 const char *fmt, ...); 72 #ifdef CONFIG_HOTPLUG_CPU 73 extern void unregister_cpu(struct cpu *cpu); 74 extern ssize_t arch_cpu_probe(const char *, size_t); 75 extern ssize_t arch_cpu_release(const char *, size_t); 76 #endif 77 78 /* 79 * These states are not related to the core CPU hotplug mechanism. They are 80 * used by various (sub)architectures to track internal state 81 */ 82 #define CPU_ONLINE 0x0002 /* CPU is up */ 83 #define CPU_UP_PREPARE 0x0003 /* CPU coming up */ 84 #define CPU_DEAD 0x0007 /* CPU dead */ 85 #define CPU_DEAD_FROZEN 0x0008 /* CPU timed out on unplug */ 86 #define CPU_POST_DEAD 0x0009 /* CPU successfully unplugged */ 87 #define CPU_BROKEN 0x000B /* CPU did not die properly */ 88 89 #ifdef CONFIG_SMP 90 extern bool cpuhp_tasks_frozen; 91 int add_cpu(unsigned int cpu); 92 int cpu_device_up(struct device *dev); 93 void notify_cpu_starting(unsigned int cpu); 94 extern void cpu_maps_update_begin(void); 95 extern void cpu_maps_update_done(void); 96 int bringup_hibernate_cpu(unsigned int sleep_cpu); 97 void bringup_nonboot_cpus(unsigned int setup_max_cpus); 98 99 #else /* CONFIG_SMP */ 100 #define cpuhp_tasks_frozen 0 101 102 static inline void cpu_maps_update_begin(void) 103 { 104 } 105 106 static inline void cpu_maps_update_done(void) 107 { 108 } 109 110 #endif /* CONFIG_SMP */ 111 extern struct bus_type cpu_subsys; 112 113 #ifdef CONFIG_HOTPLUG_CPU 114 extern void cpus_write_lock(void); 115 extern void cpus_write_unlock(void); 116 extern void cpus_read_lock(void); 117 extern void cpus_read_unlock(void); 118 extern int cpus_read_trylock(void); 119 extern void lockdep_assert_cpus_held(void); 120 extern void cpu_hotplug_disable(void); 121 extern void cpu_hotplug_enable(void); 122 void clear_tasks_mm_cpumask(int cpu); 123 int remove_cpu(unsigned int cpu); 124 int cpu_device_down(struct device *dev); 125 extern void smp_shutdown_nonboot_cpus(unsigned int primary_cpu); 126 127 #else /* CONFIG_HOTPLUG_CPU */ 128 129 static inline void cpus_write_lock(void) { } 130 static inline void cpus_write_unlock(void) { } 131 static inline void cpus_read_lock(void) { } 132 static inline void cpus_read_unlock(void) { } 133 static inline int cpus_read_trylock(void) { return true; } 134 static inline void lockdep_assert_cpus_held(void) { } 135 static inline void cpu_hotplug_disable(void) { } 136 static inline void cpu_hotplug_enable(void) { } 137 static inline void smp_shutdown_nonboot_cpus(unsigned int primary_cpu) { } 138 #endif /* !CONFIG_HOTPLUG_CPU */ 139 140 /* Wrappers which go away once all code is converted */ 141 static inline void cpu_hotplug_begin(void) { cpus_write_lock(); } 142 static inline void cpu_hotplug_done(void) { cpus_write_unlock(); } 143 static inline void get_online_cpus(void) { cpus_read_lock(); } 144 static inline void put_online_cpus(void) { cpus_read_unlock(); } 145 146 #ifdef CONFIG_PM_SLEEP_SMP 147 int __freeze_secondary_cpus(int primary, bool suspend); 148 static inline int freeze_secondary_cpus(int primary) 149 { 150 return __freeze_secondary_cpus(primary, true); 151 } 152 153 static inline int disable_nonboot_cpus(void) 154 { 155 return __freeze_secondary_cpus(0, false); 156 } 157 158 void enable_nonboot_cpus(void); 159 160 static inline int suspend_disable_secondary_cpus(void) 161 { 162 int cpu = 0; 163 164 if (IS_ENABLED(CONFIG_PM_SLEEP_SMP_NONZERO_CPU)) 165 cpu = -1; 166 167 return freeze_secondary_cpus(cpu); 168 } 169 static inline void suspend_enable_secondary_cpus(void) 170 { 171 return enable_nonboot_cpus(); 172 } 173 174 #else /* !CONFIG_PM_SLEEP_SMP */ 175 static inline int disable_nonboot_cpus(void) { return 0; } 176 static inline void enable_nonboot_cpus(void) {} 177 static inline int suspend_disable_secondary_cpus(void) { return 0; } 178 static inline void suspend_enable_secondary_cpus(void) { } 179 #endif /* !CONFIG_PM_SLEEP_SMP */ 180 181 void cpu_startup_entry(enum cpuhp_state state); 182 183 void cpu_idle_poll_ctrl(bool enable); 184 185 /* Attach to any functions which should be considered cpuidle. */ 186 #define __cpuidle __attribute__((__section__(".cpuidle.text"))) 187 188 bool cpu_in_idle(unsigned long pc); 189 190 void arch_cpu_idle(void); 191 void arch_cpu_idle_prepare(void); 192 void arch_cpu_idle_enter(void); 193 void arch_cpu_idle_exit(void); 194 void arch_cpu_idle_dead(void); 195 196 int cpu_report_state(int cpu); 197 int cpu_check_up_prepare(int cpu); 198 void cpu_set_state_online(int cpu); 199 void play_idle_precise(u64 duration_ns, u64 latency_ns); 200 201 static inline void play_idle(unsigned long duration_us) 202 { 203 play_idle_precise(duration_us * NSEC_PER_USEC, U64_MAX); 204 } 205 206 #ifdef CONFIG_HOTPLUG_CPU 207 bool cpu_wait_death(unsigned int cpu, int seconds); 208 bool cpu_report_death(void); 209 void cpuhp_report_idle_dead(void); 210 #else 211 static inline void cpuhp_report_idle_dead(void) { } 212 #endif /* #ifdef CONFIG_HOTPLUG_CPU */ 213 214 enum cpuhp_smt_control { 215 CPU_SMT_ENABLED, 216 CPU_SMT_DISABLED, 217 CPU_SMT_FORCE_DISABLED, 218 CPU_SMT_NOT_SUPPORTED, 219 CPU_SMT_NOT_IMPLEMENTED, 220 }; 221 222 #if defined(CONFIG_SMP) && defined(CONFIG_HOTPLUG_SMT) 223 extern enum cpuhp_smt_control cpu_smt_control; 224 extern void cpu_smt_disable(bool force); 225 extern void cpu_smt_check_topology(void); 226 extern bool cpu_smt_possible(void); 227 extern int cpuhp_smt_enable(void); 228 extern int cpuhp_smt_disable(enum cpuhp_smt_control ctrlval); 229 #else 230 # define cpu_smt_control (CPU_SMT_NOT_IMPLEMENTED) 231 static inline void cpu_smt_disable(bool force) { } 232 static inline void cpu_smt_check_topology(void) { } 233 static inline bool cpu_smt_possible(void) { return false; } 234 static inline int cpuhp_smt_enable(void) { return 0; } 235 static inline int cpuhp_smt_disable(enum cpuhp_smt_control ctrlval) { return 0; } 236 #endif 237 238 extern bool cpu_mitigations_off(void); 239 extern bool cpu_mitigations_auto_nosmt(void); 240 241 #endif /* _LINUX_CPU_H_ */ 242