Lynx framebuffers multidomain implementation.
[linux/elbrus.git] / arch / arm / mach-spear / spear1340.c
blob3fb6834247298c32cbe2b82542f79a159cc6d74a
1 /*
2 * arch/arm/mach-spear13xx/spear1340.c
4 * SPEAr1340 machine source file
6 * Copyright (C) 2012 ST Microelectronics
7 * Viresh Kumar <viresh.linux@gmail.com>
9 * This file is licensed under the terms of the GNU General Public
10 * License version 2. This program is licensed "as is" without any
11 * warranty of any kind, whether express or implied.
14 #define pr_fmt(fmt) "SPEAr1340: " fmt
16 #include <linux/ahci_platform.h>
17 #include <linux/amba/serial.h>
18 #include <linux/delay.h>
19 #include <linux/of_platform.h>
20 #include <asm/mach/arch.h>
21 #include "generic.h"
22 #include <mach/spear.h>
24 /* FIXME: Move SATA PHY code into a standalone driver */
26 /* Base addresses */
27 #define SPEAR1340_SATA_BASE UL(0xB1000000)
29 /* Power Management Registers */
30 #define SPEAR1340_PCM_CFG (VA_MISC_BASE + 0x100)
31 #define SPEAR1340_PCM_WKUP_CFG (VA_MISC_BASE + 0x104)
32 #define SPEAR1340_SWITCH_CTR (VA_MISC_BASE + 0x108)
34 #define SPEAR1340_PERIP1_SW_RST (VA_MISC_BASE + 0x318)
35 #define SPEAR1340_PERIP2_SW_RST (VA_MISC_BASE + 0x31C)
36 #define SPEAR1340_PERIP3_SW_RST (VA_MISC_BASE + 0x320)
38 /* PCIE - SATA configuration registers */
39 #define SPEAR1340_PCIE_SATA_CFG (VA_MISC_BASE + 0x424)
40 /* PCIE CFG MASks */
41 #define SPEAR1340_PCIE_CFG_DEVICE_PRESENT (1 << 11)
42 #define SPEAR1340_PCIE_CFG_POWERUP_RESET (1 << 10)
43 #define SPEAR1340_PCIE_CFG_CORE_CLK_EN (1 << 9)
44 #define SPEAR1340_PCIE_CFG_AUX_CLK_EN (1 << 8)
45 #define SPEAR1340_SATA_CFG_TX_CLK_EN (1 << 4)
46 #define SPEAR1340_SATA_CFG_RX_CLK_EN (1 << 3)
47 #define SPEAR1340_SATA_CFG_POWERUP_RESET (1 << 2)
48 #define SPEAR1340_SATA_CFG_PM_CLK_EN (1 << 1)
49 #define SPEAR1340_PCIE_SATA_SEL_PCIE (0)
50 #define SPEAR1340_PCIE_SATA_SEL_SATA (1)
51 #define SPEAR1340_SATA_PCIE_CFG_MASK 0xF1F
52 #define SPEAR1340_PCIE_CFG_VAL (SPEAR1340_PCIE_SATA_SEL_PCIE | \
53 SPEAR1340_PCIE_CFG_AUX_CLK_EN | \
54 SPEAR1340_PCIE_CFG_CORE_CLK_EN | \
55 SPEAR1340_PCIE_CFG_POWERUP_RESET | \
56 SPEAR1340_PCIE_CFG_DEVICE_PRESENT)
57 #define SPEAR1340_SATA_CFG_VAL (SPEAR1340_PCIE_SATA_SEL_SATA | \
58 SPEAR1340_SATA_CFG_PM_CLK_EN | \
59 SPEAR1340_SATA_CFG_POWERUP_RESET | \
60 SPEAR1340_SATA_CFG_RX_CLK_EN | \
61 SPEAR1340_SATA_CFG_TX_CLK_EN)
63 #define SPEAR1340_PCIE_MIPHY_CFG (VA_MISC_BASE + 0x428)
64 #define SPEAR1340_MIPHY_OSC_BYPASS_EXT (1 << 31)
65 #define SPEAR1340_MIPHY_CLK_REF_DIV2 (1 << 27)
66 #define SPEAR1340_MIPHY_CLK_REF_DIV4 (2 << 27)
67 #define SPEAR1340_MIPHY_CLK_REF_DIV8 (3 << 27)
68 #define SPEAR1340_MIPHY_PLL_RATIO_TOP(x) (x << 0)
69 #define SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA \
70 (SPEAR1340_MIPHY_OSC_BYPASS_EXT | \
71 SPEAR1340_MIPHY_CLK_REF_DIV2 | \
72 SPEAR1340_MIPHY_PLL_RATIO_TOP(60))
73 #define SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA_25M_CRYSTAL_CLK \
74 (SPEAR1340_MIPHY_PLL_RATIO_TOP(120))
75 #define SPEAR1340_PCIE_SATA_MIPHY_CFG_PCIE \
76 (SPEAR1340_MIPHY_OSC_BYPASS_EXT | \
77 SPEAR1340_MIPHY_PLL_RATIO_TOP(25))
79 /* SATA device registration */
80 static int sata_miphy_init(struct device *dev, void __iomem *addr)
82 writel(SPEAR1340_SATA_CFG_VAL, SPEAR1340_PCIE_SATA_CFG);
83 writel(SPEAR1340_PCIE_SATA_MIPHY_CFG_SATA_25M_CRYSTAL_CLK,
84 SPEAR1340_PCIE_MIPHY_CFG);
85 /* Switch on sata power domain */
86 writel((readl(SPEAR1340_PCM_CFG) | (0x800)), SPEAR1340_PCM_CFG);
87 msleep(20);
88 /* Disable PCIE SATA Controller reset */
89 writel((readl(SPEAR1340_PERIP1_SW_RST) & (~0x1000)),
90 SPEAR1340_PERIP1_SW_RST);
91 msleep(20);
93 return 0;
96 void sata_miphy_exit(struct device *dev)
98 writel(0, SPEAR1340_PCIE_SATA_CFG);
99 writel(0, SPEAR1340_PCIE_MIPHY_CFG);
101 /* Enable PCIE SATA Controller reset */
102 writel((readl(SPEAR1340_PERIP1_SW_RST) | (0x1000)),
103 SPEAR1340_PERIP1_SW_RST);
104 msleep(20);
105 /* Switch off sata power domain */
106 writel((readl(SPEAR1340_PCM_CFG) & (~0x800)), SPEAR1340_PCM_CFG);
107 msleep(20);
110 int sata_suspend(struct device *dev)
112 if (dev->power.power_state.event == PM_EVENT_FREEZE)
113 return 0;
115 sata_miphy_exit(dev);
117 return 0;
120 int sata_resume(struct device *dev)
122 if (dev->power.power_state.event == PM_EVENT_THAW)
123 return 0;
125 return sata_miphy_init(dev, NULL);
128 static struct ahci_platform_data sata_pdata = {
129 .init = sata_miphy_init,
130 .exit = sata_miphy_exit,
131 .suspend = sata_suspend,
132 .resume = sata_resume,
135 /* Add SPEAr1340 auxdata to pass platform data */
136 static struct of_dev_auxdata spear1340_auxdata_lookup[] __initdata = {
137 OF_DEV_AUXDATA("snps,spear-ahci", SPEAR1340_SATA_BASE, NULL,
138 &sata_pdata),
142 static void __init spear1340_dt_init(void)
144 of_platform_populate(NULL, of_default_bus_match_table,
145 spear1340_auxdata_lookup, NULL);
148 static const char * const spear1340_dt_board_compat[] = {
149 "st,spear1340",
150 "st,spear1340-evb",
151 NULL,
154 DT_MACHINE_START(SPEAR1340_DT, "ST SPEAr1340 SoC with Flattened Device Tree")
155 .smp = smp_ops(spear13xx_smp_ops),
156 .map_io = spear13xx_map_io,
157 .init_time = spear13xx_timer_init,
158 .init_machine = spear1340_dt_init,
159 .restart = spear_restart,
160 .dt_compat = spear1340_dt_board_compat,
161 MACHINE_END