#ifndef QEMU_HW_ACPI_H #define QEMU_HW_ACPI_H /* * Copyright (c) 2009 Isaku Yamahata * VA Linux Systems Japan K.K. * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, see * . */ /* from linux include/acpi/actype.h */ /* Default ACPI register widths */ #define ACPI_GPE_REGISTER_WIDTH 8 #define ACPI_PM1_REGISTER_WIDTH 16 #define ACPI_PM2_REGISTER_WIDTH 8 #define ACPI_PM_TIMER_WIDTH 32 /* PM Timer ticks per second (HZ) */ #define PM_TIMER_FREQUENCY 3579545 /* ACPI fixed hardware registers */ /* from linux/drivers/acpi/acpica/aclocal.h */ /* Masks used to access the bit_registers */ /* PM1x_STS */ #define ACPI_BITMASK_TIMER_STATUS 0x0001 #define ACPI_BITMASK_BUS_MASTER_STATUS 0x0010 #define ACPI_BITMASK_GLOBAL_LOCK_STATUS 0x0020 #define ACPI_BITMASK_POWER_BUTTON_STATUS 0x0100 #define ACPI_BITMASK_SLEEP_BUTTON_STATUS 0x0200 #define ACPI_BITMASK_RT_CLOCK_STATUS 0x0400 #define ACPI_BITMASK_PCIEXP_WAKE_STATUS 0x4000 /* ACPI 3.0 */ #define ACPI_BITMASK_WAKE_STATUS 0x8000 #define ACPI_BITMASK_ALL_FIXED_STATUS (\ ACPI_BITMASK_TIMER_STATUS | \ ACPI_BITMASK_BUS_MASTER_STATUS | \ ACPI_BITMASK_GLOBAL_LOCK_STATUS | \ ACPI_BITMASK_POWER_BUTTON_STATUS | \ ACPI_BITMASK_SLEEP_BUTTON_STATUS | \ ACPI_BITMASK_RT_CLOCK_STATUS | \ ACPI_BITMASK_WAKE_STATUS) /* PM1x_EN */ #define ACPI_BITMASK_TIMER_ENABLE 0x0001 #define ACPI_BITMASK_GLOBAL_LOCK_ENABLE 0x0020 #define ACPI_BITMASK_POWER_BUTTON_ENABLE 0x0100 #define ACPI_BITMASK_SLEEP_BUTTON_ENABLE 0x0200 #define ACPI_BITMASK_RT_CLOCK_ENABLE 0x0400 #define ACPI_BITMASK_PCIEXP_WAKE_DISABLE 0x4000 /* ACPI 3.0 */ /* PM1x_CNT */ #define ACPI_BITMASK_SCI_ENABLE 0x0001 #define ACPI_BITMASK_BUS_MASTER_RLD 0x0002 #define ACPI_BITMASK_GLOBAL_LOCK_RELEASE 0x0004 #define ACPI_BITMASK_SLEEP_TYPE 0x1C00 #define ACPI_BITMASK_SLEEP_ENABLE 0x2000 /* PM2_CNT */ #define ACPI_BITMASK_ARB_DISABLE 0x0001 /* PM_TMR */ struct ACPIPMTimer; typedef struct ACPIPMTimer ACPIPMTimer; typedef void (*acpi_update_sci_fn)(ACPIPMTimer *tmr); struct ACPIPMTimer { QEMUTimer *timer; int64_t overflow_time; acpi_update_sci_fn update_sci; }; void acpi_pm_tmr_update(ACPIPMTimer *tmr, bool enable); void acpi_pm_tmr_calc_overflow_time(ACPIPMTimer *tmr); uint32_t acpi_pm_tmr_get(ACPIPMTimer *tmr); void acpi_pm_tmr_init(ACPIPMTimer *tmr, acpi_update_sci_fn update_sci); void acpi_pm_tmr_reset(ACPIPMTimer *tmr); #include "qemu-timer.h" static inline int64_t acpi_pm_tmr_get_clock(void) { return muldiv64(qemu_get_clock_ns(vm_clock), PM_TIMER_FREQUENCY, get_ticks_per_sec()); } /* PM1a_EVT: piix and ich9 don't implement PM1b. */ struct ACPIPM1EVT { uint16_t sts; uint16_t en; }; typedef struct ACPIPM1EVT ACPIPM1EVT; uint16_t acpi_pm1_evt_get_sts(ACPIPM1EVT *pm1, int64_t overflow_time); void acpi_pm1_evt_write_sts(ACPIPM1EVT *pm1, ACPIPMTimer *tmr, uint16_t val); void acpi_pm1_evt_power_down(ACPIPM1EVT *pm1, ACPIPMTimer *tmr); void acpi_pm1_evt_reset(ACPIPM1EVT *pm1); /* PM1a_CNT: piix and ich9 don't implement PM1b CNT. */ struct ACPIPM1CNT { uint16_t cnt; qemu_irq cmos_s3; }; typedef struct ACPIPM1CNT ACPIPM1CNT; void acpi_pm1_cnt_init(ACPIPM1CNT *pm1_cnt, qemu_irq cmos_s3); void acpi_pm1_cnt_write(ACPIPM1EVT *pm1a, ACPIPM1CNT *pm1_cnt, uint16_t val); void acpi_pm1_cnt_update(ACPIPM1CNT *pm1_cnt, bool sci_enable, bool sci_disable); void acpi_pm1_cnt_reset(ACPIPM1CNT *pm1_cnt); /* GPE0 */ struct ACPIGPE { uint32_t blk; uint8_t len; uint8_t *sts; uint8_t *en; }; typedef struct ACPIGPE ACPIGPE; void acpi_gpe_init(ACPIGPE *gpe, uint8_t len); void acpi_gpe_blk(ACPIGPE *gpe, uint32_t blk); void acpi_gpe_reset(ACPIGPE *gpe); void acpi_gpe_ioport_writeb(ACPIGPE *gpe, uint32_t addr, uint32_t val); uint32_t acpi_gpe_ioport_readb(ACPIGPE *gpe, uint32_t addr); #endif /* !QEMU_HW_ACPI_H */