/* * Copyright (C) 2008-2009 ST-Ericsson SA * * Author: Srinidhi KASAGAR * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2, as * published by the Free Software Foundation. * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "devices-db8500.h" #include "regulator-db8500.h" /* minimum static i/o mapping required to boot U8500 platforms */ static struct map_desc u8500_uart_io_desc[] __initdata = { __IO_DEV_DESC(U8500_UART0_BASE, SZ_4K), __IO_DEV_DESC(U8500_UART2_BASE, SZ_4K), }; static struct map_desc u8500_io_desc[] __initdata = { __IO_DEV_DESC(U8500_GIC_CPU_BASE, SZ_4K), __IO_DEV_DESC(U8500_GIC_DIST_BASE, SZ_4K), __IO_DEV_DESC(U8500_L2CC_BASE, SZ_4K), __IO_DEV_DESC(U8500_TWD_BASE, SZ_4K), __IO_DEV_DESC(U8500_MTU0_BASE, SZ_4K), __IO_DEV_DESC(U8500_MTU1_BASE, SZ_4K), __IO_DEV_DESC(U8500_RTC_BASE, SZ_4K), __IO_DEV_DESC(U8500_SCU_BASE, SZ_4K), __IO_DEV_DESC(U8500_BACKUPRAM0_BASE, SZ_8K), __IO_DEV_DESC(U8500_CLKRST1_BASE, SZ_4K), __IO_DEV_DESC(U8500_CLKRST2_BASE, SZ_4K), __IO_DEV_DESC(U8500_CLKRST3_BASE, SZ_4K), __IO_DEV_DESC(U8500_CLKRST5_BASE, SZ_4K), __IO_DEV_DESC(U8500_CLKRST6_BASE, SZ_4K), __IO_DEV_DESC(U8500_PRCMU_BASE, SZ_4K), __IO_DEV_DESC(U8500_GPIO0_BASE, SZ_4K), __IO_DEV_DESC(U8500_GPIO1_BASE, SZ_4K), __IO_DEV_DESC(U8500_GPIO2_BASE, SZ_4K), __IO_DEV_DESC(U8500_GPIO3_BASE, SZ_4K), __IO_DEV_DESC(U8500_PRCMU_TCDM_BASE, SZ_4K), }; void __init u8500_map_io(void) { /* * Map the UARTs early so that the DEBUG_LL stuff continues to work. */ iotable_init(u8500_uart_io_desc, ARRAY_SIZE(u8500_uart_io_desc)); ux500_map_io(); iotable_init(u8500_io_desc, ARRAY_SIZE(u8500_io_desc)); _PRCMU_BASE = __io_address(U8500_PRCMU_BASE); } static struct resource db8500_pmu_resources[] = { [0] = { .start = IRQ_DB8500_PMU, .end = IRQ_DB8500_PMU, .flags = IORESOURCE_IRQ, }, }; /* * The PMU IRQ lines of two cores are wired together into a single interrupt. * Bounce the interrupt to the other core if it's not ours. */ static irqreturn_t db8500_pmu_handler(int irq, void *dev, irq_handler_t handler) { irqreturn_t ret = handler(irq, dev); int other = !smp_processor_id(); if (ret == IRQ_NONE && cpu_online(other)) irq_set_affinity(irq, cpumask_of(other)); /* * We should be able to get away with the amount of IRQ_NONEs we give, * while still having the spurious IRQ detection code kick in if the * interrupt really starts hitting spuriously. */ return ret; } static struct arm_pmu_platdata db8500_pmu_platdata = { .handle_irq = db8500_pmu_handler, }; static struct platform_device db8500_pmu_device = { .name = "arm-pmu", .id = ARM_PMU_DEVICE_CPU, .num_resources = ARRAY_SIZE(db8500_pmu_resources), .resource = db8500_pmu_resources, .dev.platform_data = &db8500_pmu_platdata, }; /* * Power domain switches (ePODs) modeled as regulators for the DB8500 SoC */ static struct regulator_consumer_supply db8500_vape_consumers[] = { REGULATOR_SUPPLY("v-ape", NULL), REGULATOR_SUPPLY("v-i2c", "nmk-i2c.0"), REGULATOR_SUPPLY("v-i2c", "nmk-i2c.1"), REGULATOR_SUPPLY("v-i2c", "nmk-i2c.2"), REGULATOR_SUPPLY("v-i2c", "nmk-i2c.3"), /* "v-mmc" changed to "vcore" in the mainline kernel */ REGULATOR_SUPPLY("vcore", "sdi0"), REGULATOR_SUPPLY("vcore", "sdi1"), REGULATOR_SUPPLY("vcore", "sdi2"), REGULATOR_SUPPLY("vcore", "sdi3"), REGULATOR_SUPPLY("vcore", "sdi4"), REGULATOR_SUPPLY("v-dma", "dma40.0"), REGULATOR_SUPPLY("v-ape", "ab8500-usb.0"), /* "v-uart" changed to "vcore" in the mainline kernel */ REGULATOR_SUPPLY("vcore", "uart0"), REGULATOR_SUPPLY("vcore", "uart1"), REGULATOR_SUPPLY("vcore", "uart2"), REGULATOR_SUPPLY("v-ape", "nmk-ske-keypad.0"), }; static struct regulator_consumer_supply db8500_vsmps2_consumers[] = { REGULATOR_SUPPLY("musb_1v8", "ab8500-usb.0"), /* AV8100 regulator */ REGULATOR_SUPPLY("hdmi_1v8", "0-0070"), }; static struct regulator_consumer_supply db8500_b2r2_mcde_consumers[] = { REGULATOR_SUPPLY("vsupply", "b2r2.0"), REGULATOR_SUPPLY("vsupply", "mcde"), }; /* SVA MMDSP regulator switch */ static struct regulator_consumer_supply db8500_svammdsp_consumers[] = { REGULATOR_SUPPLY("sva-mmdsp", "cm_control"), }; /* SVA pipe regulator switch */ static struct regulator_consumer_supply db8500_svapipe_consumers[] = { REGULATOR_SUPPLY("sva-pipe", "cm_control"), }; /* SIA MMDSP regulator switch */ static struct regulator_consumer_supply db8500_siammdsp_consumers[] = { REGULATOR_SUPPLY("sia-mmdsp", "cm_control"), }; /* SIA pipe regulator switch */ static struct regulator_consumer_supply db8500_siapipe_consumers[] = { REGULATOR_SUPPLY("sia-pipe", "cm_control"), }; static struct regulator_consumer_supply db8500_sga_consumers[] = { REGULATOR_SUPPLY("v-mali", NULL), }; /* ESRAM1 and 2 regulator switch */ static struct regulator_consumer_supply db8500_esram12_consumers[] = { REGULATOR_SUPPLY("esram12", "cm_control"), }; /* ESRAM3 and 4 regulator switch */ static struct regulator_consumer_supply db8500_esram34_consumers[] = { REGULATOR_SUPPLY("v-esram34", "mcde"), REGULATOR_SUPPLY("esram34", "cm_control"), }; static struct regulator_init_data db8500_regulators[DB8500_NUM_REGULATORS] = { [DB8500_REGULATOR_VAPE] = { .constraints = { .name = "db8500-vape", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_vape_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_vape_consumers), }, [DB8500_REGULATOR_VARM] = { .constraints = { .name = "db8500-varm", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_VMODEM] = { .constraints = { .name = "db8500-vmodem", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_VPLL] = { .constraints = { .name = "db8500-vpll", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_VSMPS1] = { .constraints = { .name = "db8500-vsmps1", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_VSMPS2] = { .constraints = { .name = "db8500-vsmps2", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_vsmps2_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_vsmps2_consumers), }, [DB8500_REGULATOR_VSMPS3] = { .constraints = { .name = "db8500-vsmps3", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_VRF1] = { .constraints = { .name = "db8500-vrf1", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_SWITCH_SVAMMDSP] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-sva-mmdsp", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_svammdsp_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_svammdsp_consumers), }, [DB8500_REGULATOR_SWITCH_SVAMMDSPRET] = { .constraints = { /* "ret" means "retention" */ .name = "db8500-sva-mmdsp-ret", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_SWITCH_SVAPIPE] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-sva-pipe", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_svapipe_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_svapipe_consumers), }, [DB8500_REGULATOR_SWITCH_SIAMMDSP] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-sia-mmdsp", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_siammdsp_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_siammdsp_consumers), }, [DB8500_REGULATOR_SWITCH_SIAMMDSPRET] = { .constraints = { .name = "db8500-sia-mmdsp-ret", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_SWITCH_SIAPIPE] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-sia-pipe", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_siapipe_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_siapipe_consumers), }, [DB8500_REGULATOR_SWITCH_SGA] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-sga", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_sga_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_sga_consumers), }, [DB8500_REGULATOR_SWITCH_B2R2_MCDE] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-b2r2-mcde", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_b2r2_mcde_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_b2r2_mcde_consumers), }, [DB8500_REGULATOR_SWITCH_ESRAM12] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-esram12", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_esram12_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_esram12_consumers), }, [DB8500_REGULATOR_SWITCH_ESRAM12RET] = { .constraints = { .name = "db8500-esram12-ret", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, [DB8500_REGULATOR_SWITCH_ESRAM34] = { .supply_regulator = "db8500-vape", .constraints = { .name = "db8500-esram34", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, .consumer_supplies = db8500_esram34_consumers, .num_consumer_supplies = ARRAY_SIZE(db8500_esram34_consumers), }, [DB8500_REGULATOR_SWITCH_ESRAM34RET] = { .constraints = { .name = "db8500-esram34-ret", .valid_ops_mask = REGULATOR_CHANGE_STATUS, }, }, }; static struct platform_device db8500_regulator_device = { .name = "db8500-regulators", .id = 0, .dev = { .platform_data = &db8500_regulators, }, }; static struct platform_device *platform_devs[] __initdata = { &u8500_dma40_device, &db8500_pmu_device, &ux500_prcmu_wdt_device, &db8500_regulator_device, }; static resource_size_t __initdata db8500_gpio_base[] = { U8500_GPIOBANK0_BASE, U8500_GPIOBANK1_BASE, U8500_GPIOBANK2_BASE, U8500_GPIOBANK3_BASE, U8500_GPIOBANK4_BASE, U8500_GPIOBANK5_BASE, U8500_GPIOBANK6_BASE, U8500_GPIOBANK7_BASE, U8500_GPIOBANK8_BASE, }; static void __init db8500_add_gpios(void) { struct nmk_gpio_platform_data pdata = { /* No custom data yet */ }; dbx500_add_gpios(ARRAY_AND_SIZE(db8500_gpio_base), IRQ_DB8500_GPIO0, &pdata); } static int usb_db8500_rx_dma_cfg[] = { DB8500_DMA_DEV38_USB_OTG_IEP_1_9, DB8500_DMA_DEV37_USB_OTG_IEP_2_10, DB8500_DMA_DEV36_USB_OTG_IEP_3_11, DB8500_DMA_DEV19_USB_OTG_IEP_4_12, DB8500_DMA_DEV18_USB_OTG_IEP_5_13, DB8500_DMA_DEV17_USB_OTG_IEP_6_14, DB8500_DMA_DEV16_USB_OTG_IEP_7_15, DB8500_DMA_DEV39_USB_OTG_IEP_8 }; static int usb_db8500_tx_dma_cfg[] = { DB8500_DMA_DEV38_USB_OTG_OEP_1_9, DB8500_DMA_DEV37_USB_OTG_OEP_2_10, DB8500_DMA_DEV36_USB_OTG_OEP_3_11, DB8500_DMA_DEV19_USB_OTG_OEP_4_12, DB8500_DMA_DEV18_USB_OTG_OEP_5_13, DB8500_DMA_DEV17_USB_OTG_OEP_6_14, DB8500_DMA_DEV16_USB_OTG_OEP_7_15, DB8500_DMA_DEV39_USB_OTG_OEP_8 }; /* * This function is called from the board init */ void __init u8500_init_devices(void) { #ifdef CONFIG_STM_TRACE /* Early init for STM tracing */ platform_device_register(&ux500_stm_device); #endif db8500_add_rtc(); db8500_add_gpios(); db8500_add_usb(usb_db8500_rx_dma_cfg, usb_db8500_tx_dma_cfg); platform_device_register_simple("cpufreq-u8500", -1, NULL, 0); platform_add_devices(platform_devs, ARRAY_SIZE(platform_devs)); return ; } #ifdef CONFIG_SYS_SOC #define U8500_BB_UID_BASE (U8500_BACKUPRAM1_BASE + 0xFC0) #define U8500_BB_UID_LENGTH 5 static ssize_t ux500_get_machine(char *buf, struct sysfs_soc_info *si) { return sprintf(buf, "DB%2x00\n", dbx500_id.partnumber); } static ssize_t ux500_get_soc_id(char *buf, struct sysfs_soc_info *si) { void __iomem *uid_base; int i; ssize_t sz = 0; if (dbx500_id.partnumber == 0x85) { uid_base = __io_address(U8500_BB_UID_BASE); for (i = 0; i < U8500_BB_UID_LENGTH; i++) sz += sprintf(buf + sz, "%08x", readl(uid_base + i * sizeof(u32))); sz += sprintf(buf + sz, "\n"); } else { /* Don't know where it is located for U5500 */ sz = sprintf(buf, "N/A\n"); } return sz; } static ssize_t ux500_get_revision(char *buf, struct sysfs_soc_info *si) { unsigned int rev = dbx500_id.revision; if (rev == 0x01) return sprintf(buf, "%s\n", "ED"); else if (rev >= 0xA0) return sprintf(buf, "%d.%d\n" , (rev >> 4) - 0xA + 1, rev & 0xf); return sprintf(buf, "%s", "Unknown\n"); } static ssize_t ux500_get_process(char *buf, struct sysfs_soc_info *si) { if (dbx500_id.process == 0x00) return sprintf(buf, "Standard\n"); return sprintf(buf, "%02xnm\n", dbx500_id.process); } static ssize_t ux500_get_reset_code(char *buf, struct sysfs_soc_info *si) { return sprintf(buf, "0x%04x\n", prcmu_get_reset_code()); } static ssize_t ux500_get_reset_reason(char *buf, struct sysfs_soc_info *si) { return sprintf(buf, "%s\n", reboot_reason_string(prcmu_get_reset_code())); } static struct sysfs_soc_info soc_info[] = { SYSFS_SOC_ATTR_CALLBACK("machine", ux500_get_machine), SYSFS_SOC_ATTR_VALUE("family", "Ux500"), SYSFS_SOC_ATTR_CALLBACK("soc_id", ux500_get_soc_id), SYSFS_SOC_ATTR_CALLBACK("revision", ux500_get_revision), SYSFS_SOC_ATTR_CALLBACK("process", ux500_get_process), SYSFS_SOC_ATTR_CALLBACK("reset_code", ux500_get_reset_code), SYSFS_SOC_ATTR_CALLBACK("reset_reason", ux500_get_reset_reason), }; static int __init ux500_sys_soc_init(void) { return register_sysfs_soc(soc_info, ARRAY_SIZE(soc_info)); } module_init(ux500_sys_soc_init); #endif