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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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86794b4356
Append the SEC IRQ after the IVG6, which is consistent to BF5xx SIC. Exclude SIC irqchip fucntions from SEC code. Call handle_fasteoi_irq in SEC error and fault handler. Signed-off-by: Sonic Zhang <sonic.zhang@analog.com> Signed-off-by: Bob Liu <lliubbo@gmail.com>
362 lines
11 KiB
C
362 lines
11 KiB
C
/*
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* Blackfin bf609 power management
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*
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* Copyright 2011 Analog Devices Inc.
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*
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* Licensed under the GPL-2
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*/
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#include <linux/suspend.h>
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#include <linux/io.h>
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#include <linux/interrupt.h>
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#include <linux/gpio.h>
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#include <linux/irq.h>
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#include <linux/delay.h>
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#include <linux/syscore_ops.h>
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#include <asm/dpmc.h>
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#include <asm/pm.h>
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#include <mach/pm.h>
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#include <asm/blackfin.h>
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#include <asm/mem_init.h>
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/***********************************************************/
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/* */
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/* Wakeup Actions for DPM_RESTORE */
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/* */
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/***********************************************************/
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#define BITP_ROM_WUA_CHKHDR 24
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#define BITP_ROM_WUA_DDRLOCK 7
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#define BITP_ROM_WUA_DDRDLLEN 6
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#define BITP_ROM_WUA_DDR 5
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#define BITP_ROM_WUA_CGU 4
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#define BITP_ROM_WUA_MEMBOOT 2
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#define BITP_ROM_WUA_EN 1
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#define BITM_ROM_WUA_CHKHDR (0xFF000000)
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#define ENUM_ROM_WUA_CHKHDR_AD 0xAD000000
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#define BITM_ROM_WUA_DDRLOCK (0x00000080)
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#define BITM_ROM_WUA_DDRDLLEN (0x00000040)
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#define BITM_ROM_WUA_DDR (0x00000020)
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#define BITM_ROM_WUA_CGU (0x00000010)
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#define BITM_ROM_WUA_MEMBOOT (0x00000002)
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#define BITM_ROM_WUA_EN (0x00000001)
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/***********************************************************/
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/* */
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/* Syscontrol */
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/* */
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/***********************************************************/
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#define BITP_ROM_SYSCTRL_CGU_LOCKINGEN 28 /* unlocks CGU_CTL register */
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#define BITP_ROM_SYSCTRL_WUA_OVERRIDE 24
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#define BITP_ROM_SYSCTRL_WUA_DDRDLLEN 20 /* Saves the DDR DLL and PADS registers to the DPM registers */
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#define BITP_ROM_SYSCTRL_WUA_DDR 19 /* Saves the DDR registers to the DPM registers */
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#define BITP_ROM_SYSCTRL_WUA_CGU 18 /* Saves the CGU registers into DPM registers */
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#define BITP_ROM_SYSCTRL_WUA_DPMWRITE 17 /* Saves the Syscontrol structure structure contents into DPM registers */
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#define BITP_ROM_SYSCTRL_WUA_EN 16 /* reads current PLL and DDR configuration into structure */
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#define BITP_ROM_SYSCTRL_DDR_WRITE 13 /* writes the DDR registers from Syscontrol structure for wakeup initialization of DDR */
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#define BITP_ROM_SYSCTRL_DDR_READ 12 /* Read the DDR registers into the Syscontrol structure for storing prior to hibernate */
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#define BITP_ROM_SYSCTRL_CGU_AUTODIS 11 /* Disables auto handling of UPDT and ALGN fields */
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#define BITP_ROM_SYSCTRL_CGU_CLKOUTSEL 7 /* access CGU_CLKOUTSEL register */
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#define BITP_ROM_SYSCTRL_CGU_DIV 6 /* access CGU_DIV register */
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#define BITP_ROM_SYSCTRL_CGU_STAT 5 /* access CGU_STAT register */
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#define BITP_ROM_SYSCTRL_CGU_CTL 4 /* access CGU_CTL register */
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#define BITP_ROM_SYSCTRL_CGU_RTNSTAT 2 /* Update structure STAT field upon error */
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#define BITP_ROM_SYSCTRL_WRITE 1 /* write registers */
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#define BITP_ROM_SYSCTRL_READ 0 /* read registers */
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#define BITM_ROM_SYSCTRL_CGU_READ (0x00000001) /* Read CGU registers */
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#define BITM_ROM_SYSCTRL_CGU_WRITE (0x00000002) /* Write registers */
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#define BITM_ROM_SYSCTRL_CGU_RTNSTAT (0x00000004) /* Update structure STAT field upon error or after a write operation */
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#define BITM_ROM_SYSCTRL_CGU_CTL (0x00000010) /* Access CGU_CTL register */
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#define BITM_ROM_SYSCTRL_CGU_STAT (0x00000020) /* Access CGU_STAT register */
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#define BITM_ROM_SYSCTRL_CGU_DIV (0x00000040) /* Access CGU_DIV register */
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#define BITM_ROM_SYSCTRL_CGU_CLKOUTSEL (0x00000080) /* Access CGU_CLKOUTSEL register */
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#define BITM_ROM_SYSCTRL_CGU_AUTODIS (0x00000800) /* Disables auto handling of UPDT and ALGN fields */
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#define BITM_ROM_SYSCTRL_DDR_READ (0x00001000) /* Reads the contents of the DDR registers and stores them into the structure */
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#define BITM_ROM_SYSCTRL_DDR_WRITE (0x00002000) /* Writes the DDR registers from the structure, only really intented for wakeup functionality and not for full DDR configuration */
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#define BITM_ROM_SYSCTRL_WUA_EN (0x00010000) /* Wakeup entry or exit opertation enable */
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#define BITM_ROM_SYSCTRL_WUA_DPMWRITE (0x00020000) /* When set indicates a restore of the PLL and DDR is to be performed otherwise a save is required */
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#define BITM_ROM_SYSCTRL_WUA_CGU (0x00040000) /* Only applicable for a PLL and DDR save operation to the DPM, saves the current settings if cleared or the contents of the structure if set */
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#define BITM_ROM_SYSCTRL_WUA_DDR (0x00080000) /* Only applicable for a PLL and DDR save operation to the DPM, saves the current settings if cleared or the contents of the structure if set */
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#define BITM_ROM_SYSCTRL_WUA_DDRDLLEN (0x00100000) /* Enables saving/restoring of the DDR DLLCTL register */
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#define BITM_ROM_SYSCTRL_WUA_OVERRIDE (0x01000000)
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#define BITM_ROM_SYSCTRL_CGU_LOCKINGEN (0x10000000) /* Unlocks the CGU_CTL register */
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/* Structures for the syscontrol() function */
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struct STRUCT_ROM_SYSCTRL {
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uint32_t ulCGU_CTL;
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uint32_t ulCGU_STAT;
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uint32_t ulCGU_DIV;
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uint32_t ulCGU_CLKOUTSEL;
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uint32_t ulWUA_Flags;
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uint32_t ulWUA_BootAddr;
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uint32_t ulWUA_User;
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uint32_t ulDDR_CTL;
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uint32_t ulDDR_CFG;
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uint32_t ulDDR_TR0;
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uint32_t ulDDR_TR1;
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uint32_t ulDDR_TR2;
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uint32_t ulDDR_MR;
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uint32_t ulDDR_EMR1;
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uint32_t ulDDR_EMR2;
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uint32_t ulDDR_PADCTL;
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uint32_t ulDDR_DLLCTL;
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uint32_t ulReserved;
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};
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struct bfin_pm_data {
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uint32_t magic;
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uint32_t resume_addr;
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uint32_t sp;
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};
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struct bfin_pm_data bf609_pm_data;
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struct STRUCT_ROM_SYSCTRL configvalues;
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uint32_t dactionflags;
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#define FUNC_ROM_SYSCONTROL 0xC8000080
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__attribute__((l1_data))
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static uint32_t (* const bfrom_SysControl)(uint32_t action_flags, struct STRUCT_ROM_SYSCTRL *settings, void *reserved) = (void *)FUNC_ROM_SYSCONTROL;
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__attribute__((l1_text))
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void bfin_cpu_suspend(void)
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{
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__asm__ __volatile__( \
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".align 8;" \
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"idle;" \
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: : \
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);
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}
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__attribute__((l1_text))
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void bf609_ddr_sr(void)
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{
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dmc_enter_self_refresh();
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}
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__attribute__((l1_text))
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void bf609_ddr_sr_exit(void)
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{
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dmc_exit_self_refresh();
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/* After wake up from deep sleep and exit DDR from self refress mode,
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* should wait till CGU PLL is locked.
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*/
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while (bfin_read32(CGU0_STAT) & CLKSALGN)
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continue;
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}
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__attribute__((l1_text))
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void bf609_resume_ccbuf(void)
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{
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bfin_write32(DPM0_CCBF_EN, 3);
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bfin_write32(DPM0_CTL, 2);
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while ((bfin_read32(DPM0_STAT) & 0xf) != 1);
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}
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__attribute__((l1_text))
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void bfin_hibernate_syscontrol(void)
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{
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configvalues.ulWUA_Flags = (0xAD000000 | BITM_ROM_WUA_EN
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| BITM_ROM_WUA_CGU | BITM_ROM_WUA_DDR | BITM_ROM_WUA_DDRDLLEN);
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dactionflags = (BITM_ROM_SYSCTRL_WUA_EN
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| BITM_ROM_SYSCTRL_WUA_DPMWRITE | BITM_ROM_SYSCTRL_WUA_CGU
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| BITM_ROM_SYSCTRL_WUA_DDR | BITM_ROM_SYSCTRL_WUA_DDRDLLEN);
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bfrom_SysControl(dactionflags, &configvalues, NULL);
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bfin_write32(DPM0_RESTORE5, bfin_read32(DPM0_RESTORE5) | 4);
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}
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asmlinkage void enter_deepsleep(void);
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__attribute__((l1_text))
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void bfin_deepsleep(unsigned long mask, unsigned long pol_mask)
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{
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bfin_write32(DPM0_WAKE_EN, mask);
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bfin_write32(DPM0_WAKE_POL, pol_mask);
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SSYNC();
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enter_deepsleep();
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}
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void bfin_hibernate(unsigned long mask, unsigned long pol_mask)
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{
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bfin_write32(DPM0_WAKE_EN, mask);
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bfin_write32(DPM0_WAKE_POL, pol_mask);
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bfin_write32(DPM0_PGCNTR, 0x0000FFFF);
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bfin_write32(DPM0_HIB_DIS, 0xFFFF);
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bf609_hibernate();
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}
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void bf609_cpu_pm_enter(suspend_state_t state)
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{
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int error;
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unsigned long wakeup = 0;
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unsigned long wakeup_pol = 0;
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#ifdef CONFIG_PM_BFIN_WAKE_PA15
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wakeup |= PA15WE;
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# if CONFIG_PM_BFIN_WAKE_PA15_POL
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wakeup_pol |= PA15WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PB15
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wakeup |= PB15WE;
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# if CONFIG_PM_BFIN_WAKE_PA15_POL
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wakeup_pol |= PB15WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PC15
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wakeup |= PC15WE;
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# if CONFIG_PM_BFIN_WAKE_PC15_POL
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wakeup_pol |= PC15WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PD06
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wakeup |= PD06WE;
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# if CONFIG_PM_BFIN_WAKE_PD06_POL
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wakeup_pol |= PD06WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PE12
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wakeup |= PE12WE;
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# if CONFIG_PM_BFIN_WAKE_PE12_POL
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wakeup_pol |= PE12WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PG04
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wakeup |= PG04WE;
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# if CONFIG_PM_BFIN_WAKE_PG04_POL
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wakeup_pol |= PG04WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PG13
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wakeup |= PG13WE;
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# if CONFIG_PM_BFIN_WAKE_PG13_POL
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wakeup_pol |= PG13WE;
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# endif
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_USB
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wakeup |= USBWE;
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# if CONFIG_PM_BFIN_WAKE_USB_POL
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wakeup_pol |= USBWE;
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# endif
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#endif
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error = irq_set_irq_wake(255, 1);
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if(error < 0)
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printk(KERN_DEBUG "Unable to get irq wake\n");
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error = irq_set_irq_wake(231, 1);
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if (error < 0)
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printk(KERN_DEBUG "Unable to get irq wake\n");
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if (state == PM_SUSPEND_STANDBY)
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bfin_deepsleep(wakeup, wakeup_pol);
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else {
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bfin_hibernate(wakeup, wakeup_pol);
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}
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}
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int bf609_cpu_pm_prepare(void)
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{
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return 0;
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}
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void bf609_cpu_pm_finish(void)
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{
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}
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static struct bfin_cpu_pm_fns bf609_cpu_pm = {
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.enter = bf609_cpu_pm_enter,
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.prepare = bf609_cpu_pm_prepare,
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.finish = bf609_cpu_pm_finish,
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};
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#if defined(CONFIG_MTD_PHYSMAP) || defined(CONFIG_MTD_PHYSMAP_MODULE)
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static int smc_pm_syscore_suspend(void)
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{
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bf609_nor_flash_exit();
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return 0;
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}
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static void smc_pm_syscore_resume(void)
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{
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bf609_nor_flash_init();
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}
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static struct syscore_ops smc_pm_syscore_ops = {
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.suspend = smc_pm_syscore_suspend,
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.resume = smc_pm_syscore_resume,
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};
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#endif
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static irqreturn_t test_isr(int irq, void *dev_id)
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{
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printk(KERN_DEBUG "gpio irq %d\n", irq);
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if (irq == 231)
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bfin_sec_raise_irq(BFIN_SYSIRQ(IRQ_SOFT1));
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return IRQ_HANDLED;
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}
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static irqreturn_t dpm0_isr(int irq, void *dev_id)
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{
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bfin_write32(DPM0_WAKE_STAT, bfin_read32(DPM0_WAKE_STAT));
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bfin_write32(CGU0_STAT, bfin_read32(CGU0_STAT));
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return IRQ_HANDLED;
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}
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static int __init bf609_init_pm(void)
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{
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int irq;
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int error;
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#if defined(CONFIG_MTD_PHYSMAP) || defined(CONFIG_MTD_PHYSMAP_MODULE)
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register_syscore_ops(&smc_pm_syscore_ops);
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#endif
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#ifdef CONFIG_PM_BFIN_WAKE_PE12
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irq = gpio_to_irq(GPIO_PE12);
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if (irq < 0) {
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error = irq;
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printk(KERN_DEBUG "Unable to get irq number for GPIO %d, error %d\n",
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GPIO_PE12, error);
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}
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error = request_irq(irq, test_isr, IRQF_TRIGGER_RISING | IRQF_NO_SUSPEND
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| IRQF_FORCE_RESUME, "gpiope12", NULL);
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if(error < 0)
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printk(KERN_DEBUG "Unable to get irq\n");
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#endif
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error = request_irq(IRQ_CGU_EVT, dpm0_isr, IRQF_NO_SUSPEND |
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IRQF_FORCE_RESUME, "cgu0 event", NULL);
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if(error < 0)
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printk(KERN_DEBUG "Unable to get irq\n");
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error = request_irq(IRQ_DPM, dpm0_isr, IRQF_NO_SUSPEND |
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IRQF_FORCE_RESUME, "dpm0 event", NULL);
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if (error < 0)
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printk(KERN_DEBUG "Unable to get irq\n");
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bfin_cpu_pm = &bf609_cpu_pm;
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return 0;
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}
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late_initcall(bf609_init_pm);
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