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1/* 2 * pm.h - Power management interface 3 * 4 * Copyright (C) 2000 Andrew Henroid 5 * 6 * This program is free software; you can redistribute it and/or modify 7 * it under the terms of the GNU General Public License as published by 8 * the Free Software Foundation; either version 2 of the License, or 9 * (at your option) any later version. 10 * 11 * This program is distributed in the hope that it will be useful, 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 14 * GNU General Public License for more details. 15 * 16 * You should have received a copy of the GNU General Public License 17 * along with this program; if not, write to the Free Software 18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA 19 */ 20 21#ifndef _LINUX_PM_H 22#define _LINUX_PM_H 23 24#ifdef __KERNEL__ 25 26#include <linux/list.h> 27#include <asm/atomic.h> 28 29/* 30 * Power management requests... these are passed to pm_send_all() and friends. 31 * 32 * these functions are old and deprecated, see below. 33 */ 34typedef int __bitwise pm_request_t; 35 36#define PM_SUSPEND ((__force pm_request_t) 1) /* enter D1-D3 */ 37#define PM_RESUME ((__force pm_request_t) 2) /* enter D0 */ 38 39 40/* 41 * Device types... these are passed to pm_register 42 */ 43typedef int __bitwise pm_dev_t; 44 45#define PM_UNKNOWN_DEV ((__force pm_dev_t) 0) /* generic */ 46#define PM_SYS_DEV ((__force pm_dev_t) 1) /* system device (fan, KB controller, ...) */ 47#define PM_PCI_DEV ((__force pm_dev_t) 2) /* PCI device */ 48#define PM_USB_DEV ((__force pm_dev_t) 3) /* USB device */ 49#define PM_SCSI_DEV ((__force pm_dev_t) 4) /* SCSI device */ 50#define PM_ISA_DEV ((__force pm_dev_t) 5) /* ISA device */ 51#define PM_MTD_DEV ((__force pm_dev_t) 6) /* Memory Technology Device */ 52 53/* 54 * System device hardware ID (PnP) values 55 */ 56enum 57{ 58 PM_SYS_UNKNOWN = 0x00000000, /* generic */ 59 PM_SYS_KBC = 0x41d00303, /* keyboard controller */ 60 PM_SYS_COM = 0x41d00500, /* serial port */ 61 PM_SYS_IRDA = 0x41d00510, /* IRDA controller */ 62 PM_SYS_FDC = 0x41d00700, /* floppy controller */ 63 PM_SYS_VGA = 0x41d00900, /* VGA controller */ 64 PM_SYS_PCMCIA = 0x41d00e00, /* PCMCIA controller */ 65}; 66 67/* 68 * Device identifier 69 */ 70#define PM_PCI_ID(dev) ((dev)->bus->number << 16 | (dev)->devfn) 71 72/* 73 * Request handler callback 74 */ 75struct pm_dev; 76 77typedef int (*pm_callback)(struct pm_dev *dev, pm_request_t rqst, void *data); 78 79/* 80 * Dynamic device information 81 */ 82struct pm_dev 83{ 84 pm_dev_t type; 85 unsigned long id; 86 pm_callback callback; 87 void *data; 88 89 unsigned long flags; 90 unsigned long state; 91 unsigned long prev_state; 92 93 struct list_head entry; 94}; 95 96/* Functions above this comment are list-based old-style power 97 * managment. Please avoid using them. */ 98 99/* 100 * Callbacks for platform drivers to implement. 101 */ 102extern void (*pm_idle)(void); 103extern void (*pm_power_off)(void); 104 105typedef int __bitwise suspend_state_t; 106 107#define PM_SUSPEND_ON ((__force suspend_state_t) 0) 108#define PM_SUSPEND_STANDBY ((__force suspend_state_t) 1) 109#define PM_SUSPEND_MEM ((__force suspend_state_t) 3) 110#define PM_SUSPEND_DISK ((__force suspend_state_t) 4) 111#define PM_SUSPEND_MAX ((__force suspend_state_t) 5) 112 113typedef int __bitwise suspend_disk_method_t; 114 115#define PM_DISK_FIRMWARE ((__force suspend_disk_method_t) 1) 116#define PM_DISK_PLATFORM ((__force suspend_disk_method_t) 2) 117#define PM_DISK_SHUTDOWN ((__force suspend_disk_method_t) 3) 118#define PM_DISK_REBOOT ((__force suspend_disk_method_t) 4) 119#define PM_DISK_MAX ((__force suspend_disk_method_t) 5) 120 121struct pm_ops { 122 suspend_disk_method_t pm_disk_mode; 123 int (*valid)(suspend_state_t state); 124 int (*prepare)(suspend_state_t state); 125 int (*enter)(suspend_state_t state); 126 int (*finish)(suspend_state_t state); 127}; 128 129extern void pm_set_ops(struct pm_ops *); 130extern struct pm_ops *pm_ops; 131extern int pm_suspend(suspend_state_t state); 132 133 134/* 135 * Device power management 136 */ 137 138struct device; 139 140typedef struct pm_message { 141 int event; 142} pm_message_t; 143 144/* 145 * Several driver power state transitions are externally visible, affecting 146 * the state of pending I/O queues and (for drivers that touch hardware) 147 * interrupts, wakeups, DMA, and other hardware state. There may also be 148 * internal transitions to various low power modes, which are transparent 149 * to the rest of the driver stack (such as a driver that's ON gating off 150 * clocks which are not in active use). 151 * 152 * One transition is triggered by resume(), after a suspend() call; the 153 * message is implicit: 154 * 155 * ON Driver starts working again, responding to hardware events 156 * and software requests. The hardware may have gone through 157 * a power-off reset, or it may have maintained state from the 158 * previous suspend() which the driver will rely on while 159 * resuming. On most platforms, there are no restrictions on 160 * availability of resources like clocks during resume(). 161 * 162 * Other transitions are triggered by messages sent using suspend(). All 163 * these transitions quiesce the driver, so that I/O queues are inactive. 164 * That commonly entails turning off IRQs and DMA; there may be rules 165 * about how to quiesce that are specific to the bus or the device's type. 166 * (For example, network drivers mark the link state.) Other details may 167 * differ according to the message: 168 * 169 * SUSPEND Quiesce, enter a low power device state appropriate for 170 * the upcoming system state (such as PCI_D3hot), and enable 171 * wakeup events as appropriate. 172 * 173 * FREEZE Quiesce operations so that a consistent image can be saved; 174 * but do NOT otherwise enter a low power device state, and do 175 * NOT emit system wakeup events. 176 * 177 * PRETHAW Quiesce as if for FREEZE; additionally, prepare for restoring 178 * the system from a snapshot taken after an earlier FREEZE. 179 * Some drivers will need to reset their hardware state instead 180 * of preserving it, to ensure that it's never mistaken for the 181 * state which that earlier snapshot had set up. 182 * 183 * A minimally power-aware driver treats all messages as SUSPEND, fully 184 * reinitializes its device during resume() -- whether or not it was reset 185 * during the suspend/resume cycle -- and can't issue wakeup events. 186 * 187 * More power-aware drivers may also use low power states at runtime as 188 * well as during system sleep states like PM_SUSPEND_STANDBY. They may 189 * be able to use wakeup events to exit from runtime low-power states, 190 * or from system low-power states such as standby or suspend-to-RAM. 191 */ 192 193#define PM_EVENT_ON 0 194#define PM_EVENT_FREEZE 1 195#define PM_EVENT_SUSPEND 2 196#define PM_EVENT_PRETHAW 3 197 198#define PMSG_FREEZE ((struct pm_message){ .event = PM_EVENT_FREEZE, }) 199#define PMSG_PRETHAW ((struct pm_message){ .event = PM_EVENT_PRETHAW, }) 200#define PMSG_SUSPEND ((struct pm_message){ .event = PM_EVENT_SUSPEND, }) 201#define PMSG_ON ((struct pm_message){ .event = PM_EVENT_ON, }) 202 203struct dev_pm_info { 204 pm_message_t power_state; 205 unsigned can_wakeup:1; 206#ifdef CONFIG_PM 207 unsigned should_wakeup:1; 208 pm_message_t prev_state; 209 void * saved_state; 210 struct device * pm_parent; 211 struct list_head entry; 212#endif 213}; 214 215extern void device_pm_set_parent(struct device * dev, struct device * parent); 216 217extern int device_power_down(pm_message_t state); 218extern void device_power_up(void); 219extern void device_resume(void); 220 221#ifdef CONFIG_PM 222extern suspend_disk_method_t pm_disk_mode; 223 224extern int device_suspend(pm_message_t state); 225extern int device_prepare_suspend(pm_message_t state); 226 227#define device_set_wakeup_enable(dev,val) \ 228 ((dev)->power.should_wakeup = !!(val)) 229#define device_may_wakeup(dev) \ 230 (device_can_wakeup(dev) && (dev)->power.should_wakeup) 231 232extern int dpm_runtime_suspend(struct device *, pm_message_t); 233extern void dpm_runtime_resume(struct device *); 234extern void __suspend_report_result(const char *function, void *fn, int ret); 235 236#define suspend_report_result(fn, ret) \ 237 do { \ 238 __suspend_report_result(__FUNCTION__, fn, ret); \ 239 } while (0) 240 241#else /* !CONFIG_PM */ 242 243static inline int device_suspend(pm_message_t state) 244{ 245 return 0; 246} 247 248#define device_set_wakeup_enable(dev,val) do{}while(0) 249#define device_may_wakeup(dev) (0) 250 251static inline int dpm_runtime_suspend(struct device * dev, pm_message_t state) 252{ 253 return 0; 254} 255 256static inline void dpm_runtime_resume(struct device * dev) 257{ 258} 259 260#define suspend_report_result(fn, ret) do { } while (0) 261 262#endif 263 264/* changes to device_may_wakeup take effect on the next pm state change. 265 * by default, devices should wakeup if they can. 266 */ 267#define device_can_wakeup(dev) \ 268 ((dev)->power.can_wakeup) 269#define device_init_wakeup(dev,val) \ 270 do { \ 271 device_can_wakeup(dev) = !!(val); \ 272 device_set_wakeup_enable(dev,val); \ 273 } while(0) 274 275#endif /* __KERNEL__ */ 276 277#endif /* _LINUX_PM_H */