1b6d6454fSBen Dooks /* linux/drivers/mfd/sm501.c 2b6d6454fSBen Dooks * 3b6d6454fSBen Dooks * Copyright (C) 2006 Simtec Electronics 4b6d6454fSBen Dooks * Ben Dooks <ben@simtec.co.uk> 5b6d6454fSBen Dooks * Vincent Sanders <vince@simtec.co.uk> 6b6d6454fSBen Dooks * 7b6d6454fSBen Dooks * This program is free software; you can redistribute it and/or modify 8b6d6454fSBen Dooks * it under the terms of the GNU General Public License version 2 as 9b6d6454fSBen Dooks * published by the Free Software Foundation. 10b6d6454fSBen Dooks * 11b6d6454fSBen Dooks * SM501 MFD driver 12b6d6454fSBen Dooks */ 13b6d6454fSBen Dooks 14b6d6454fSBen Dooks #include <linux/kernel.h> 15b6d6454fSBen Dooks #include <linux/module.h> 16b6d6454fSBen Dooks #include <linux/delay.h> 17b6d6454fSBen Dooks #include <linux/init.h> 18b6d6454fSBen Dooks #include <linux/list.h> 19b6d6454fSBen Dooks #include <linux/device.h> 20b6d6454fSBen Dooks #include <linux/platform_device.h> 21b6d6454fSBen Dooks #include <linux/pci.h> 22f61be273SBen Dooks #include <linux/gpio.h> 23*42cd2366SBen Dooks #include <linux/i2c-gpio.h> 24b6d6454fSBen Dooks 25b6d6454fSBen Dooks #include <linux/sm501.h> 26b6d6454fSBen Dooks #include <linux/sm501-regs.h> 2761711f8fSMagnus Damm #include <linux/serial_8250.h> 28b6d6454fSBen Dooks 29b6d6454fSBen Dooks #include <asm/io.h> 30b6d6454fSBen Dooks 31b6d6454fSBen Dooks struct sm501_device { 32b6d6454fSBen Dooks struct list_head list; 33b6d6454fSBen Dooks struct platform_device pdev; 34b6d6454fSBen Dooks }; 35b6d6454fSBen Dooks 36f61be273SBen Dooks struct sm501_gpio; 37f61be273SBen Dooks 38f61be273SBen Dooks struct sm501_gpio_chip { 39f61be273SBen Dooks struct gpio_chip gpio; 40f61be273SBen Dooks struct sm501_gpio *ourgpio; /* to get back to parent. */ 41f61be273SBen Dooks void __iomem *regbase; 42f61be273SBen Dooks }; 43f61be273SBen Dooks 44f61be273SBen Dooks struct sm501_gpio { 45f61be273SBen Dooks struct sm501_gpio_chip low; 46f61be273SBen Dooks struct sm501_gpio_chip high; 47f61be273SBen Dooks spinlock_t lock; 48f61be273SBen Dooks 49f61be273SBen Dooks unsigned int registered : 1; 50f61be273SBen Dooks void __iomem *regs; 51f61be273SBen Dooks struct resource *regs_res; 52f61be273SBen Dooks }; 53f61be273SBen Dooks 54b6d6454fSBen Dooks struct sm501_devdata { 55b6d6454fSBen Dooks spinlock_t reg_lock; 56b6d6454fSBen Dooks struct mutex clock_lock; 57b6d6454fSBen Dooks struct list_head devices; 58f61be273SBen Dooks struct sm501_gpio gpio; 59b6d6454fSBen Dooks 60b6d6454fSBen Dooks struct device *dev; 61b6d6454fSBen Dooks struct resource *io_res; 62b6d6454fSBen Dooks struct resource *mem_res; 63b6d6454fSBen Dooks struct resource *regs_claim; 64b6d6454fSBen Dooks struct sm501_platdata *platdata; 65b6d6454fSBen Dooks 66f61be273SBen Dooks 67331d7475SBen Dooks unsigned int in_suspend; 68331d7475SBen Dooks unsigned long pm_misc; 69331d7475SBen Dooks 70b6d6454fSBen Dooks int unit_power[20]; 71b6d6454fSBen Dooks unsigned int pdev_id; 72b6d6454fSBen Dooks unsigned int irq; 73b6d6454fSBen Dooks void __iomem *regs; 743149be50SVille Syrjala unsigned int rev; 75b6d6454fSBen Dooks }; 76b6d6454fSBen Dooks 77f61be273SBen Dooks 78b6d6454fSBen Dooks #define MHZ (1000 * 1000) 79b6d6454fSBen Dooks 80b6d6454fSBen Dooks #ifdef DEBUG 81245904a4SVille Syrjala static const unsigned int div_tab[] = { 82b6d6454fSBen Dooks [0] = 1, 83b6d6454fSBen Dooks [1] = 2, 84b6d6454fSBen Dooks [2] = 4, 85b6d6454fSBen Dooks [3] = 8, 86b6d6454fSBen Dooks [4] = 16, 87b6d6454fSBen Dooks [5] = 32, 88b6d6454fSBen Dooks [6] = 64, 89b6d6454fSBen Dooks [7] = 128, 90b6d6454fSBen Dooks [8] = 3, 91b6d6454fSBen Dooks [9] = 6, 92b6d6454fSBen Dooks [10] = 12, 93b6d6454fSBen Dooks [11] = 24, 94b6d6454fSBen Dooks [12] = 48, 95b6d6454fSBen Dooks [13] = 96, 96b6d6454fSBen Dooks [14] = 192, 97b6d6454fSBen Dooks [15] = 384, 98b6d6454fSBen Dooks [16] = 5, 99b6d6454fSBen Dooks [17] = 10, 100b6d6454fSBen Dooks [18] = 20, 101b6d6454fSBen Dooks [19] = 40, 102b6d6454fSBen Dooks [20] = 80, 103b6d6454fSBen Dooks [21] = 160, 104b6d6454fSBen Dooks [22] = 320, 105b6d6454fSBen Dooks [23] = 604, 106b6d6454fSBen Dooks }; 107b6d6454fSBen Dooks 108b6d6454fSBen Dooks static unsigned long decode_div(unsigned long pll2, unsigned long val, 109b6d6454fSBen Dooks unsigned int lshft, unsigned int selbit, 110245904a4SVille Syrjala unsigned long mask) 111b6d6454fSBen Dooks { 112b6d6454fSBen Dooks if (val & selbit) 113b6d6454fSBen Dooks pll2 = 288 * MHZ; 114b6d6454fSBen Dooks 115245904a4SVille Syrjala return pll2 / div_tab[(val >> lshft) & mask]; 116b6d6454fSBen Dooks } 117b6d6454fSBen Dooks 118b6d6454fSBen Dooks #define fmt_freq(x) ((x) / MHZ), ((x) % MHZ), (x) 119b6d6454fSBen Dooks 120b6d6454fSBen Dooks /* sm501_dump_clk 121b6d6454fSBen Dooks * 122b6d6454fSBen Dooks * Print out the current clock configuration for the device 123b6d6454fSBen Dooks */ 124b6d6454fSBen Dooks 125b6d6454fSBen Dooks static void sm501_dump_clk(struct sm501_devdata *sm) 126b6d6454fSBen Dooks { 127b6d6454fSBen Dooks unsigned long misct = readl(sm->regs + SM501_MISC_TIMING); 128b6d6454fSBen Dooks unsigned long pm0 = readl(sm->regs + SM501_POWER_MODE_0_CLOCK); 129b6d6454fSBen Dooks unsigned long pm1 = readl(sm->regs + SM501_POWER_MODE_1_CLOCK); 130b6d6454fSBen Dooks unsigned long pmc = readl(sm->regs + SM501_POWER_MODE_CONTROL); 131b6d6454fSBen Dooks unsigned long sdclk0, sdclk1; 132b6d6454fSBen Dooks unsigned long pll2 = 0; 133b6d6454fSBen Dooks 134b6d6454fSBen Dooks switch (misct & 0x30) { 135b6d6454fSBen Dooks case 0x00: 136b6d6454fSBen Dooks pll2 = 336 * MHZ; 137b6d6454fSBen Dooks break; 138b6d6454fSBen Dooks case 0x10: 139b6d6454fSBen Dooks pll2 = 288 * MHZ; 140b6d6454fSBen Dooks break; 141b6d6454fSBen Dooks case 0x20: 142b6d6454fSBen Dooks pll2 = 240 * MHZ; 143b6d6454fSBen Dooks break; 144b6d6454fSBen Dooks case 0x30: 145b6d6454fSBen Dooks pll2 = 192 * MHZ; 146b6d6454fSBen Dooks break; 147b6d6454fSBen Dooks } 148b6d6454fSBen Dooks 149b6d6454fSBen Dooks sdclk0 = (misct & (1<<12)) ? pll2 : 288 * MHZ; 150245904a4SVille Syrjala sdclk0 /= div_tab[((misct >> 8) & 0xf)]; 151b6d6454fSBen Dooks 152b6d6454fSBen Dooks sdclk1 = (misct & (1<<20)) ? pll2 : 288 * MHZ; 153245904a4SVille Syrjala sdclk1 /= div_tab[((misct >> 16) & 0xf)]; 154b6d6454fSBen Dooks 155b6d6454fSBen Dooks dev_dbg(sm->dev, "MISCT=%08lx, PM0=%08lx, PM1=%08lx\n", 156b6d6454fSBen Dooks misct, pm0, pm1); 157b6d6454fSBen Dooks 158b6d6454fSBen Dooks dev_dbg(sm->dev, "PLL2 = %ld.%ld MHz (%ld), SDCLK0=%08lx, SDCLK1=%08lx\n", 159b6d6454fSBen Dooks fmt_freq(pll2), sdclk0, sdclk1); 160b6d6454fSBen Dooks 161b6d6454fSBen Dooks dev_dbg(sm->dev, "SDRAM: PM0=%ld, PM1=%ld\n", sdclk0, sdclk1); 162b6d6454fSBen Dooks 163b6d6454fSBen Dooks dev_dbg(sm->dev, "PM0[%c]: " 164b6d6454fSBen Dooks "P2 %ld.%ld MHz (%ld), V2 %ld.%ld (%ld), " 16548986f06SBen Dooks "M %ld.%ld (%ld), MX1 %ld.%ld (%ld)\n", 166b6d6454fSBen Dooks (pmc & 3 ) == 0 ? '*' : '-', 167245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm0, 24, 1<<29, 31)), 168245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm0, 16, 1<<20, 15)), 169245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm0, 8, 1<<12, 15)), 170245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm0, 0, 1<<4, 15))); 171b6d6454fSBen Dooks 172b6d6454fSBen Dooks dev_dbg(sm->dev, "PM1[%c]: " 173b6d6454fSBen Dooks "P2 %ld.%ld MHz (%ld), V2 %ld.%ld (%ld), " 174b6d6454fSBen Dooks "M %ld.%ld (%ld), MX1 %ld.%ld (%ld)\n", 175b6d6454fSBen Dooks (pmc & 3 ) == 1 ? '*' : '-', 176245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm1, 24, 1<<29, 31)), 177245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm1, 16, 1<<20, 15)), 178245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm1, 8, 1<<12, 15)), 179245904a4SVille Syrjala fmt_freq(decode_div(pll2, pm1, 0, 1<<4, 15))); 180b6d6454fSBen Dooks } 181331d7475SBen Dooks 182331d7475SBen Dooks static void sm501_dump_regs(struct sm501_devdata *sm) 183b6d6454fSBen Dooks { 184331d7475SBen Dooks void __iomem *regs = sm->regs; 185331d7475SBen Dooks 186331d7475SBen Dooks dev_info(sm->dev, "System Control %08x\n", 187331d7475SBen Dooks readl(regs + SM501_SYSTEM_CONTROL)); 188331d7475SBen Dooks dev_info(sm->dev, "Misc Control %08x\n", 189331d7475SBen Dooks readl(regs + SM501_MISC_CONTROL)); 190331d7475SBen Dooks dev_info(sm->dev, "GPIO Control Low %08x\n", 191331d7475SBen Dooks readl(regs + SM501_GPIO31_0_CONTROL)); 192331d7475SBen Dooks dev_info(sm->dev, "GPIO Control Hi %08x\n", 193331d7475SBen Dooks readl(regs + SM501_GPIO63_32_CONTROL)); 194331d7475SBen Dooks dev_info(sm->dev, "DRAM Control %08x\n", 195331d7475SBen Dooks readl(regs + SM501_DRAM_CONTROL)); 196331d7475SBen Dooks dev_info(sm->dev, "Arbitration Ctrl %08x\n", 197331d7475SBen Dooks readl(regs + SM501_ARBTRTN_CONTROL)); 198331d7475SBen Dooks dev_info(sm->dev, "Misc Timing %08x\n", 199331d7475SBen Dooks readl(regs + SM501_MISC_TIMING)); 200b6d6454fSBen Dooks } 201331d7475SBen Dooks 202331d7475SBen Dooks static void sm501_dump_gate(struct sm501_devdata *sm) 203331d7475SBen Dooks { 204331d7475SBen Dooks dev_info(sm->dev, "CurrentGate %08x\n", 205331d7475SBen Dooks readl(sm->regs + SM501_CURRENT_GATE)); 206331d7475SBen Dooks dev_info(sm->dev, "CurrentClock %08x\n", 207331d7475SBen Dooks readl(sm->regs + SM501_CURRENT_CLOCK)); 208331d7475SBen Dooks dev_info(sm->dev, "PowerModeControl %08x\n", 209331d7475SBen Dooks readl(sm->regs + SM501_POWER_MODE_CONTROL)); 210331d7475SBen Dooks } 211331d7475SBen Dooks 212331d7475SBen Dooks #else 213331d7475SBen Dooks static inline void sm501_dump_gate(struct sm501_devdata *sm) { } 214331d7475SBen Dooks static inline void sm501_dump_regs(struct sm501_devdata *sm) { } 215331d7475SBen Dooks static inline void sm501_dump_clk(struct sm501_devdata *sm) { } 216b6d6454fSBen Dooks #endif 217b6d6454fSBen Dooks 218b6d6454fSBen Dooks /* sm501_sync_regs 219b6d6454fSBen Dooks * 220b6d6454fSBen Dooks * ensure the 221b6d6454fSBen Dooks */ 222b6d6454fSBen Dooks 223b6d6454fSBen Dooks static void sm501_sync_regs(struct sm501_devdata *sm) 224b6d6454fSBen Dooks { 225b6d6454fSBen Dooks readl(sm->regs); 226b6d6454fSBen Dooks } 227b6d6454fSBen Dooks 228331d7475SBen Dooks static inline void sm501_mdelay(struct sm501_devdata *sm, unsigned int delay) 229331d7475SBen Dooks { 230331d7475SBen Dooks /* during suspend/resume, we are currently not allowed to sleep, 231331d7475SBen Dooks * so change to using mdelay() instead of msleep() if we 232331d7475SBen Dooks * are in one of these paths */ 233331d7475SBen Dooks 234331d7475SBen Dooks if (sm->in_suspend) 235331d7475SBen Dooks mdelay(delay); 236331d7475SBen Dooks else 237331d7475SBen Dooks msleep(delay); 238331d7475SBen Dooks } 239331d7475SBen Dooks 240b6d6454fSBen Dooks /* sm501_misc_control 241b6d6454fSBen Dooks * 242331d7475SBen Dooks * alters the miscellaneous control parameters 243b6d6454fSBen Dooks */ 244b6d6454fSBen Dooks 245b6d6454fSBen Dooks int sm501_misc_control(struct device *dev, 246b6d6454fSBen Dooks unsigned long set, unsigned long clear) 247b6d6454fSBen Dooks { 248b6d6454fSBen Dooks struct sm501_devdata *sm = dev_get_drvdata(dev); 249b6d6454fSBen Dooks unsigned long misc; 250b6d6454fSBen Dooks unsigned long save; 251b6d6454fSBen Dooks unsigned long to; 252b6d6454fSBen Dooks 253b6d6454fSBen Dooks spin_lock_irqsave(&sm->reg_lock, save); 254b6d6454fSBen Dooks 255b6d6454fSBen Dooks misc = readl(sm->regs + SM501_MISC_CONTROL); 256b6d6454fSBen Dooks to = (misc & ~clear) | set; 257b6d6454fSBen Dooks 258b6d6454fSBen Dooks if (to != misc) { 259b6d6454fSBen Dooks writel(to, sm->regs + SM501_MISC_CONTROL); 260b6d6454fSBen Dooks sm501_sync_regs(sm); 261b6d6454fSBen Dooks 262b6d6454fSBen Dooks dev_dbg(sm->dev, "MISC_CONTROL %08lx\n", misc); 263b6d6454fSBen Dooks } 264b6d6454fSBen Dooks 265b6d6454fSBen Dooks spin_unlock_irqrestore(&sm->reg_lock, save); 266b6d6454fSBen Dooks return to; 267b6d6454fSBen Dooks } 268b6d6454fSBen Dooks 269b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_misc_control); 270b6d6454fSBen Dooks 271b6d6454fSBen Dooks /* sm501_modify_reg 272b6d6454fSBen Dooks * 273b6d6454fSBen Dooks * Modify a register in the SM501 which may be shared with other 274b6d6454fSBen Dooks * drivers. 275b6d6454fSBen Dooks */ 276b6d6454fSBen Dooks 277b6d6454fSBen Dooks unsigned long sm501_modify_reg(struct device *dev, 278b6d6454fSBen Dooks unsigned long reg, 279b6d6454fSBen Dooks unsigned long set, 280b6d6454fSBen Dooks unsigned long clear) 281b6d6454fSBen Dooks { 282b6d6454fSBen Dooks struct sm501_devdata *sm = dev_get_drvdata(dev); 283b6d6454fSBen Dooks unsigned long data; 284b6d6454fSBen Dooks unsigned long save; 285b6d6454fSBen Dooks 286b6d6454fSBen Dooks spin_lock_irqsave(&sm->reg_lock, save); 287b6d6454fSBen Dooks 288b6d6454fSBen Dooks data = readl(sm->regs + reg); 289b6d6454fSBen Dooks data |= set; 290b6d6454fSBen Dooks data &= ~clear; 291b6d6454fSBen Dooks 292b6d6454fSBen Dooks writel(data, sm->regs + reg); 293b6d6454fSBen Dooks sm501_sync_regs(sm); 294b6d6454fSBen Dooks 295b6d6454fSBen Dooks spin_unlock_irqrestore(&sm->reg_lock, save); 296b6d6454fSBen Dooks 297b6d6454fSBen Dooks return data; 298b6d6454fSBen Dooks } 299b6d6454fSBen Dooks 300b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_modify_reg); 301b6d6454fSBen Dooks 302b6d6454fSBen Dooks /* sm501_unit_power 303b6d6454fSBen Dooks * 304b6d6454fSBen Dooks * alters the power active gate to set specific units on or off 305b6d6454fSBen Dooks */ 306b6d6454fSBen Dooks 307b6d6454fSBen Dooks int sm501_unit_power(struct device *dev, unsigned int unit, unsigned int to) 308b6d6454fSBen Dooks { 309b6d6454fSBen Dooks struct sm501_devdata *sm = dev_get_drvdata(dev); 310b6d6454fSBen Dooks unsigned long mode; 311b6d6454fSBen Dooks unsigned long gate; 312b6d6454fSBen Dooks unsigned long clock; 313b6d6454fSBen Dooks 314b6d6454fSBen Dooks mutex_lock(&sm->clock_lock); 315b6d6454fSBen Dooks 316b6d6454fSBen Dooks mode = readl(sm->regs + SM501_POWER_MODE_CONTROL); 317b6d6454fSBen Dooks gate = readl(sm->regs + SM501_CURRENT_GATE); 318b6d6454fSBen Dooks clock = readl(sm->regs + SM501_CURRENT_CLOCK); 319b6d6454fSBen Dooks 320b6d6454fSBen Dooks mode &= 3; /* get current power mode */ 321b6d6454fSBen Dooks 322bf703c3fSAdrian Bunk if (unit >= ARRAY_SIZE(sm->unit_power)) { 323145980a0SHarvey Harrison dev_err(dev, "%s: bad unit %d\n", __func__, unit); 324b6d6454fSBen Dooks goto already; 325b6d6454fSBen Dooks } 326b6d6454fSBen Dooks 327145980a0SHarvey Harrison dev_dbg(sm->dev, "%s: unit %d, cur %d, to %d\n", __func__, unit, 328b6d6454fSBen Dooks sm->unit_power[unit], to); 329b6d6454fSBen Dooks 330b6d6454fSBen Dooks if (to == 0 && sm->unit_power[unit] == 0) { 331b6d6454fSBen Dooks dev_err(sm->dev, "unit %d is already shutdown\n", unit); 332b6d6454fSBen Dooks goto already; 333b6d6454fSBen Dooks } 334b6d6454fSBen Dooks 335b6d6454fSBen Dooks sm->unit_power[unit] += to ? 1 : -1; 336b6d6454fSBen Dooks to = sm->unit_power[unit] ? 1 : 0; 337b6d6454fSBen Dooks 338b6d6454fSBen Dooks if (to) { 339b6d6454fSBen Dooks if (gate & (1 << unit)) 340b6d6454fSBen Dooks goto already; 341b6d6454fSBen Dooks gate |= (1 << unit); 342b6d6454fSBen Dooks } else { 343b6d6454fSBen Dooks if (!(gate & (1 << unit))) 344b6d6454fSBen Dooks goto already; 345b6d6454fSBen Dooks gate &= ~(1 << unit); 346b6d6454fSBen Dooks } 347b6d6454fSBen Dooks 348b6d6454fSBen Dooks switch (mode) { 349b6d6454fSBen Dooks case 1: 350b6d6454fSBen Dooks writel(gate, sm->regs + SM501_POWER_MODE_0_GATE); 351b6d6454fSBen Dooks writel(clock, sm->regs + SM501_POWER_MODE_0_CLOCK); 352b6d6454fSBen Dooks mode = 0; 353b6d6454fSBen Dooks break; 354b6d6454fSBen Dooks case 2: 355b6d6454fSBen Dooks case 0: 356b6d6454fSBen Dooks writel(gate, sm->regs + SM501_POWER_MODE_1_GATE); 357b6d6454fSBen Dooks writel(clock, sm->regs + SM501_POWER_MODE_1_CLOCK); 358b6d6454fSBen Dooks mode = 1; 359b6d6454fSBen Dooks break; 360b6d6454fSBen Dooks 361b6d6454fSBen Dooks default: 362b6d6454fSBen Dooks return -1; 363b6d6454fSBen Dooks } 364b6d6454fSBen Dooks 365b6d6454fSBen Dooks writel(mode, sm->regs + SM501_POWER_MODE_CONTROL); 366b6d6454fSBen Dooks sm501_sync_regs(sm); 367b6d6454fSBen Dooks 368b6d6454fSBen Dooks dev_dbg(sm->dev, "gate %08lx, clock %08lx, mode %08lx\n", 369b6d6454fSBen Dooks gate, clock, mode); 370b6d6454fSBen Dooks 371331d7475SBen Dooks sm501_mdelay(sm, 16); 372b6d6454fSBen Dooks 373b6d6454fSBen Dooks already: 374b6d6454fSBen Dooks mutex_unlock(&sm->clock_lock); 375b6d6454fSBen Dooks return gate; 376b6d6454fSBen Dooks } 377b6d6454fSBen Dooks 378b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_unit_power); 379b6d6454fSBen Dooks 380b6d6454fSBen Dooks 381b6d6454fSBen Dooks /* Perform a rounded division. */ 382b6d6454fSBen Dooks static long sm501fb_round_div(long num, long denom) 383b6d6454fSBen Dooks { 384b6d6454fSBen Dooks /* n / d + 1 / 2 = (2n + d) / 2d */ 385b6d6454fSBen Dooks return (2 * num + denom) / (2 * denom); 386b6d6454fSBen Dooks } 387b6d6454fSBen Dooks 388b6d6454fSBen Dooks /* clock value structure. */ 389b6d6454fSBen Dooks struct sm501_clock { 390b6d6454fSBen Dooks unsigned long mclk; 391b6d6454fSBen Dooks int divider; 392b6d6454fSBen Dooks int shift; 3933149be50SVille Syrjala unsigned int m, n, k; 394b6d6454fSBen Dooks }; 395b6d6454fSBen Dooks 3963149be50SVille Syrjala /* sm501_calc_clock 397b6d6454fSBen Dooks * 3983149be50SVille Syrjala * Calculates the nearest discrete clock frequency that 3993149be50SVille Syrjala * can be achieved with the specified input clock. 400b6d6454fSBen Dooks * the maximum divisor is 3 or 5 401b6d6454fSBen Dooks */ 4023149be50SVille Syrjala 4033149be50SVille Syrjala static int sm501_calc_clock(unsigned long freq, 404b6d6454fSBen Dooks struct sm501_clock *clock, 4053149be50SVille Syrjala int max_div, 4063149be50SVille Syrjala unsigned long mclk, 4073149be50SVille Syrjala long *best_diff) 408b6d6454fSBen Dooks { 4093149be50SVille Syrjala int ret = 0; 410b6d6454fSBen Dooks int divider; 411b6d6454fSBen Dooks int shift; 412b6d6454fSBen Dooks long diff; 413b6d6454fSBen Dooks 414b6d6454fSBen Dooks /* try dividers 1 and 3 for CRT and for panel, 415b6d6454fSBen Dooks try divider 5 for panel only.*/ 416b6d6454fSBen Dooks 417b6d6454fSBen Dooks for (divider = 1; divider <= max_div; divider += 2) { 418b6d6454fSBen Dooks /* try all 8 shift values.*/ 419b6d6454fSBen Dooks for (shift = 0; shift < 8; shift++) { 420b6d6454fSBen Dooks /* Calculate difference to requested clock */ 421b6d6454fSBen Dooks diff = sm501fb_round_div(mclk, divider << shift) - freq; 422b6d6454fSBen Dooks if (diff < 0) 423b6d6454fSBen Dooks diff = -diff; 424b6d6454fSBen Dooks 425b6d6454fSBen Dooks /* If it is less than the current, use it */ 4263149be50SVille Syrjala if (diff < *best_diff) { 4273149be50SVille Syrjala *best_diff = diff; 428b6d6454fSBen Dooks 429b6d6454fSBen Dooks clock->mclk = mclk; 430b6d6454fSBen Dooks clock->divider = divider; 431b6d6454fSBen Dooks clock->shift = shift; 4323149be50SVille Syrjala ret = 1; 433b6d6454fSBen Dooks } 434b6d6454fSBen Dooks } 435b6d6454fSBen Dooks } 4363149be50SVille Syrjala 4373149be50SVille Syrjala return ret; 4383149be50SVille Syrjala } 4393149be50SVille Syrjala 4403149be50SVille Syrjala /* sm501_calc_pll 4413149be50SVille Syrjala * 4423149be50SVille Syrjala * Calculates the nearest discrete clock frequency that can be 4433149be50SVille Syrjala * achieved using the programmable PLL. 4443149be50SVille Syrjala * the maximum divisor is 3 or 5 4453149be50SVille Syrjala */ 4463149be50SVille Syrjala 4473149be50SVille Syrjala static unsigned long sm501_calc_pll(unsigned long freq, 4483149be50SVille Syrjala struct sm501_clock *clock, 4493149be50SVille Syrjala int max_div) 4503149be50SVille Syrjala { 4513149be50SVille Syrjala unsigned long mclk; 4523149be50SVille Syrjala unsigned int m, n, k; 4533149be50SVille Syrjala long best_diff = 999999999; 4543149be50SVille Syrjala 4553149be50SVille Syrjala /* 4563149be50SVille Syrjala * The SM502 datasheet doesn't specify the min/max values for M and N. 4573149be50SVille Syrjala * N = 1 at least doesn't work in practice. 4583149be50SVille Syrjala */ 4593149be50SVille Syrjala for (m = 2; m <= 255; m++) { 4603149be50SVille Syrjala for (n = 2; n <= 127; n++) { 4613149be50SVille Syrjala for (k = 0; k <= 1; k++) { 4623149be50SVille Syrjala mclk = (24000000UL * m / n) >> k; 4633149be50SVille Syrjala 4643149be50SVille Syrjala if (sm501_calc_clock(freq, clock, max_div, 4653149be50SVille Syrjala mclk, &best_diff)) { 4663149be50SVille Syrjala clock->m = m; 4673149be50SVille Syrjala clock->n = n; 4683149be50SVille Syrjala clock->k = k; 4693149be50SVille Syrjala } 4703149be50SVille Syrjala } 4713149be50SVille Syrjala } 4723149be50SVille Syrjala } 4733149be50SVille Syrjala 4743149be50SVille Syrjala /* Return best clock. */ 4753149be50SVille Syrjala return clock->mclk / (clock->divider << clock->shift); 4763149be50SVille Syrjala } 4773149be50SVille Syrjala 4783149be50SVille Syrjala /* sm501_select_clock 4793149be50SVille Syrjala * 4803149be50SVille Syrjala * Calculates the nearest discrete clock frequency that can be 4813149be50SVille Syrjala * achieved using the 288MHz and 336MHz PLLs. 4823149be50SVille Syrjala * the maximum divisor is 3 or 5 4833149be50SVille Syrjala */ 4843149be50SVille Syrjala 4853149be50SVille Syrjala static unsigned long sm501_select_clock(unsigned long freq, 4863149be50SVille Syrjala struct sm501_clock *clock, 4873149be50SVille Syrjala int max_div) 4883149be50SVille Syrjala { 4893149be50SVille Syrjala unsigned long mclk; 4903149be50SVille Syrjala long best_diff = 999999999; 4913149be50SVille Syrjala 4923149be50SVille Syrjala /* Try 288MHz and 336MHz clocks. */ 4933149be50SVille Syrjala for (mclk = 288000000; mclk <= 336000000; mclk += 48000000) { 4943149be50SVille Syrjala sm501_calc_clock(freq, clock, max_div, mclk, &best_diff); 495b6d6454fSBen Dooks } 496b6d6454fSBen Dooks 497b6d6454fSBen Dooks /* Return best clock. */ 498b6d6454fSBen Dooks return clock->mclk / (clock->divider << clock->shift); 499b6d6454fSBen Dooks } 500b6d6454fSBen Dooks 501b6d6454fSBen Dooks /* sm501_set_clock 502b6d6454fSBen Dooks * 503b6d6454fSBen Dooks * set one of the four clock sources to the closest available frequency to 504b6d6454fSBen Dooks * the one specified 505b6d6454fSBen Dooks */ 506b6d6454fSBen Dooks 507b6d6454fSBen Dooks unsigned long sm501_set_clock(struct device *dev, 508b6d6454fSBen Dooks int clksrc, 509b6d6454fSBen Dooks unsigned long req_freq) 510b6d6454fSBen Dooks { 511b6d6454fSBen Dooks struct sm501_devdata *sm = dev_get_drvdata(dev); 512b6d6454fSBen Dooks unsigned long mode = readl(sm->regs + SM501_POWER_MODE_CONTROL); 513b6d6454fSBen Dooks unsigned long gate = readl(sm->regs + SM501_CURRENT_GATE); 514b6d6454fSBen Dooks unsigned long clock = readl(sm->regs + SM501_CURRENT_CLOCK); 515b6d6454fSBen Dooks unsigned char reg; 5163149be50SVille Syrjala unsigned int pll_reg = 0; 517b6d6454fSBen Dooks unsigned long sm501_freq; /* the actual frequency acheived */ 518b6d6454fSBen Dooks 519b6d6454fSBen Dooks struct sm501_clock to; 520b6d6454fSBen Dooks 521b6d6454fSBen Dooks /* find achivable discrete frequency and setup register value 522b6d6454fSBen Dooks * accordingly, V2XCLK, MCLK and M1XCLK are the same P2XCLK 523b6d6454fSBen Dooks * has an extra bit for the divider */ 524b6d6454fSBen Dooks 525b6d6454fSBen Dooks switch (clksrc) { 526b6d6454fSBen Dooks case SM501_CLOCK_P2XCLK: 527b6d6454fSBen Dooks /* This clock is divided in half so to achive the 528b6d6454fSBen Dooks * requested frequency the value must be multiplied by 529b6d6454fSBen Dooks * 2. This clock also has an additional pre divisor */ 530b6d6454fSBen Dooks 5313149be50SVille Syrjala if (sm->rev >= 0xC0) { 5323149be50SVille Syrjala /* SM502 -> use the programmable PLL */ 5333149be50SVille Syrjala sm501_freq = (sm501_calc_pll(2 * req_freq, 5343149be50SVille Syrjala &to, 5) / 2); 5353149be50SVille Syrjala reg = to.shift & 0x07;/* bottom 3 bits are shift */ 5363149be50SVille Syrjala if (to.divider == 3) 5373149be50SVille Syrjala reg |= 0x08; /* /3 divider required */ 5383149be50SVille Syrjala else if (to.divider == 5) 5393149be50SVille Syrjala reg |= 0x10; /* /5 divider required */ 5403149be50SVille Syrjala reg |= 0x40; /* select the programmable PLL */ 5413149be50SVille Syrjala pll_reg = 0x20000 | (to.k << 15) | (to.n << 8) | to.m; 5423149be50SVille Syrjala } else { 5433149be50SVille Syrjala sm501_freq = (sm501_select_clock(2 * req_freq, 5443149be50SVille Syrjala &to, 5) / 2); 545b6d6454fSBen Dooks reg = to.shift & 0x07;/* bottom 3 bits are shift */ 546b6d6454fSBen Dooks if (to.divider == 3) 547b6d6454fSBen Dooks reg |= 0x08; /* /3 divider required */ 548b6d6454fSBen Dooks else if (to.divider == 5) 549b6d6454fSBen Dooks reg |= 0x10; /* /5 divider required */ 550b6d6454fSBen Dooks if (to.mclk != 288000000) 551b6d6454fSBen Dooks reg |= 0x20; /* which mclk pll is source */ 5523149be50SVille Syrjala } 553b6d6454fSBen Dooks break; 554b6d6454fSBen Dooks 555b6d6454fSBen Dooks case SM501_CLOCK_V2XCLK: 556b6d6454fSBen Dooks /* This clock is divided in half so to achive the 557b6d6454fSBen Dooks * requested frequency the value must be multiplied by 2. */ 558b6d6454fSBen Dooks 559b6d6454fSBen Dooks sm501_freq = (sm501_select_clock(2 * req_freq, &to, 3) / 2); 560b6d6454fSBen Dooks reg=to.shift & 0x07; /* bottom 3 bits are shift */ 561b6d6454fSBen Dooks if (to.divider == 3) 562b6d6454fSBen Dooks reg |= 0x08; /* /3 divider required */ 563b6d6454fSBen Dooks if (to.mclk != 288000000) 564b6d6454fSBen Dooks reg |= 0x10; /* which mclk pll is source */ 565b6d6454fSBen Dooks break; 566b6d6454fSBen Dooks 567b6d6454fSBen Dooks case SM501_CLOCK_MCLK: 568b6d6454fSBen Dooks case SM501_CLOCK_M1XCLK: 569b6d6454fSBen Dooks /* These clocks are the same and not further divided */ 570b6d6454fSBen Dooks 571b6d6454fSBen Dooks sm501_freq = sm501_select_clock( req_freq, &to, 3); 572b6d6454fSBen Dooks reg=to.shift & 0x07; /* bottom 3 bits are shift */ 573b6d6454fSBen Dooks if (to.divider == 3) 574b6d6454fSBen Dooks reg |= 0x08; /* /3 divider required */ 575b6d6454fSBen Dooks if (to.mclk != 288000000) 576b6d6454fSBen Dooks reg |= 0x10; /* which mclk pll is source */ 577b6d6454fSBen Dooks break; 578b6d6454fSBen Dooks 579b6d6454fSBen Dooks default: 580b6d6454fSBen Dooks return 0; /* this is bad */ 581b6d6454fSBen Dooks } 582b6d6454fSBen Dooks 583b6d6454fSBen Dooks mutex_lock(&sm->clock_lock); 584b6d6454fSBen Dooks 585b6d6454fSBen Dooks mode = readl(sm->regs + SM501_POWER_MODE_CONTROL); 586b6d6454fSBen Dooks gate = readl(sm->regs + SM501_CURRENT_GATE); 587b6d6454fSBen Dooks clock = readl(sm->regs + SM501_CURRENT_CLOCK); 588b6d6454fSBen Dooks 589b6d6454fSBen Dooks clock = clock & ~(0xFF << clksrc); 590b6d6454fSBen Dooks clock |= reg<<clksrc; 591b6d6454fSBen Dooks 592b6d6454fSBen Dooks mode &= 3; /* find current mode */ 593b6d6454fSBen Dooks 594b6d6454fSBen Dooks switch (mode) { 595b6d6454fSBen Dooks case 1: 596b6d6454fSBen Dooks writel(gate, sm->regs + SM501_POWER_MODE_0_GATE); 597b6d6454fSBen Dooks writel(clock, sm->regs + SM501_POWER_MODE_0_CLOCK); 598b6d6454fSBen Dooks mode = 0; 599b6d6454fSBen Dooks break; 600b6d6454fSBen Dooks case 2: 601b6d6454fSBen Dooks case 0: 602b6d6454fSBen Dooks writel(gate, sm->regs + SM501_POWER_MODE_1_GATE); 603b6d6454fSBen Dooks writel(clock, sm->regs + SM501_POWER_MODE_1_CLOCK); 604b6d6454fSBen Dooks mode = 1; 605b6d6454fSBen Dooks break; 606b6d6454fSBen Dooks 607b6d6454fSBen Dooks default: 608b6d6454fSBen Dooks mutex_unlock(&sm->clock_lock); 609b6d6454fSBen Dooks return -1; 610b6d6454fSBen Dooks } 611b6d6454fSBen Dooks 612b6d6454fSBen Dooks writel(mode, sm->regs + SM501_POWER_MODE_CONTROL); 6133149be50SVille Syrjala 6143149be50SVille Syrjala if (pll_reg) 6153149be50SVille Syrjala writel(pll_reg, sm->regs + SM501_PROGRAMMABLE_PLL_CONTROL); 6163149be50SVille Syrjala 617b6d6454fSBen Dooks sm501_sync_regs(sm); 618b6d6454fSBen Dooks 619b6d6454fSBen Dooks dev_info(sm->dev, "gate %08lx, clock %08lx, mode %08lx\n", 620b6d6454fSBen Dooks gate, clock, mode); 621b6d6454fSBen Dooks 622331d7475SBen Dooks sm501_mdelay(sm, 16); 623b6d6454fSBen Dooks mutex_unlock(&sm->clock_lock); 624b6d6454fSBen Dooks 625b6d6454fSBen Dooks sm501_dump_clk(sm); 626b6d6454fSBen Dooks 627b6d6454fSBen Dooks return sm501_freq; 628b6d6454fSBen Dooks } 629b6d6454fSBen Dooks 630b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_set_clock); 631b6d6454fSBen Dooks 632b6d6454fSBen Dooks /* sm501_find_clock 633b6d6454fSBen Dooks * 634b6d6454fSBen Dooks * finds the closest available frequency for a given clock 635b6d6454fSBen Dooks */ 636b6d6454fSBen Dooks 6373149be50SVille Syrjala unsigned long sm501_find_clock(struct device *dev, 6383149be50SVille Syrjala int clksrc, 639b6d6454fSBen Dooks unsigned long req_freq) 640b6d6454fSBen Dooks { 6413149be50SVille Syrjala struct sm501_devdata *sm = dev_get_drvdata(dev); 642b6d6454fSBen Dooks unsigned long sm501_freq; /* the frequency achiveable by the 501 */ 643b6d6454fSBen Dooks struct sm501_clock to; 644b6d6454fSBen Dooks 645b6d6454fSBen Dooks switch (clksrc) { 646b6d6454fSBen Dooks case SM501_CLOCK_P2XCLK: 6473149be50SVille Syrjala if (sm->rev >= 0xC0) { 6483149be50SVille Syrjala /* SM502 -> use the programmable PLL */ 6493149be50SVille Syrjala sm501_freq = (sm501_calc_pll(2 * req_freq, 6503149be50SVille Syrjala &to, 5) / 2); 6513149be50SVille Syrjala } else { 6523149be50SVille Syrjala sm501_freq = (sm501_select_clock(2 * req_freq, 6533149be50SVille Syrjala &to, 5) / 2); 6543149be50SVille Syrjala } 655b6d6454fSBen Dooks break; 656b6d6454fSBen Dooks 657b6d6454fSBen Dooks case SM501_CLOCK_V2XCLK: 658b6d6454fSBen Dooks sm501_freq = (sm501_select_clock(2 * req_freq, &to, 3) / 2); 659b6d6454fSBen Dooks break; 660b6d6454fSBen Dooks 661b6d6454fSBen Dooks case SM501_CLOCK_MCLK: 662b6d6454fSBen Dooks case SM501_CLOCK_M1XCLK: 663b6d6454fSBen Dooks sm501_freq = sm501_select_clock(req_freq, &to, 3); 664b6d6454fSBen Dooks break; 665b6d6454fSBen Dooks 666b6d6454fSBen Dooks default: 667b6d6454fSBen Dooks sm501_freq = 0; /* error */ 668b6d6454fSBen Dooks } 669b6d6454fSBen Dooks 670b6d6454fSBen Dooks return sm501_freq; 671b6d6454fSBen Dooks } 672b6d6454fSBen Dooks 673b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_find_clock); 674b6d6454fSBen Dooks 675b6d6454fSBen Dooks static struct sm501_device *to_sm_device(struct platform_device *pdev) 676b6d6454fSBen Dooks { 677b6d6454fSBen Dooks return container_of(pdev, struct sm501_device, pdev); 678b6d6454fSBen Dooks } 679b6d6454fSBen Dooks 680b6d6454fSBen Dooks /* sm501_device_release 681b6d6454fSBen Dooks * 682b6d6454fSBen Dooks * A release function for the platform devices we create to allow us to 683b6d6454fSBen Dooks * free any items we allocated 684b6d6454fSBen Dooks */ 685b6d6454fSBen Dooks 686b6d6454fSBen Dooks static void sm501_device_release(struct device *dev) 687b6d6454fSBen Dooks { 688b6d6454fSBen Dooks kfree(to_sm_device(to_platform_device(dev))); 689b6d6454fSBen Dooks } 690b6d6454fSBen Dooks 691b6d6454fSBen Dooks /* sm501_create_subdev 692b6d6454fSBen Dooks * 693b6d6454fSBen Dooks * Create a skeleton platform device with resources for passing to a 694b6d6454fSBen Dooks * sub-driver 695b6d6454fSBen Dooks */ 696b6d6454fSBen Dooks 697b6d6454fSBen Dooks static struct platform_device * 69861711f8fSMagnus Damm sm501_create_subdev(struct sm501_devdata *sm, char *name, 69961711f8fSMagnus Damm unsigned int res_count, unsigned int platform_data_size) 700b6d6454fSBen Dooks { 701b6d6454fSBen Dooks struct sm501_device *smdev; 702b6d6454fSBen Dooks 703b6d6454fSBen Dooks smdev = kzalloc(sizeof(struct sm501_device) + 70461711f8fSMagnus Damm (sizeof(struct resource) * res_count) + 70561711f8fSMagnus Damm platform_data_size, GFP_KERNEL); 706b6d6454fSBen Dooks if (!smdev) 707b6d6454fSBen Dooks return NULL; 708b6d6454fSBen Dooks 709b6d6454fSBen Dooks smdev->pdev.dev.release = sm501_device_release; 710b6d6454fSBen Dooks 711b6d6454fSBen Dooks smdev->pdev.name = name; 712b6d6454fSBen Dooks smdev->pdev.id = sm->pdev_id; 71361711f8fSMagnus Damm smdev->pdev.dev.parent = sm->dev; 71461711f8fSMagnus Damm 71561711f8fSMagnus Damm if (res_count) { 716b6d6454fSBen Dooks smdev->pdev.resource = (struct resource *)(smdev+1); 717b6d6454fSBen Dooks smdev->pdev.num_resources = res_count; 71861711f8fSMagnus Damm } 71961711f8fSMagnus Damm if (platform_data_size) 72061711f8fSMagnus Damm smdev->pdev.dev.platform_data = (void *)(smdev+1); 721b6d6454fSBen Dooks 722b6d6454fSBen Dooks return &smdev->pdev; 723b6d6454fSBen Dooks } 724b6d6454fSBen Dooks 725b6d6454fSBen Dooks /* sm501_register_device 726b6d6454fSBen Dooks * 727b6d6454fSBen Dooks * Register a platform device created with sm501_create_subdev() 728b6d6454fSBen Dooks */ 729b6d6454fSBen Dooks 730b6d6454fSBen Dooks static int sm501_register_device(struct sm501_devdata *sm, 731b6d6454fSBen Dooks struct platform_device *pdev) 732b6d6454fSBen Dooks { 733b6d6454fSBen Dooks struct sm501_device *smdev = to_sm_device(pdev); 734b6d6454fSBen Dooks int ptr; 735b6d6454fSBen Dooks int ret; 736b6d6454fSBen Dooks 737b6d6454fSBen Dooks for (ptr = 0; ptr < pdev->num_resources; ptr++) { 738b6d6454fSBen Dooks printk("%s[%d] flags %08lx: %08llx..%08llx\n", 739b6d6454fSBen Dooks pdev->name, ptr, 740b6d6454fSBen Dooks pdev->resource[ptr].flags, 741b6d6454fSBen Dooks (unsigned long long)pdev->resource[ptr].start, 742b6d6454fSBen Dooks (unsigned long long)pdev->resource[ptr].end); 743b6d6454fSBen Dooks } 744b6d6454fSBen Dooks 745b6d6454fSBen Dooks ret = platform_device_register(pdev); 746b6d6454fSBen Dooks 747b6d6454fSBen Dooks if (ret >= 0) { 748b6d6454fSBen Dooks dev_dbg(sm->dev, "registered %s\n", pdev->name); 749b6d6454fSBen Dooks list_add_tail(&smdev->list, &sm->devices); 750b6d6454fSBen Dooks } else 751b6d6454fSBen Dooks dev_err(sm->dev, "error registering %s (%d)\n", 752b6d6454fSBen Dooks pdev->name, ret); 753b6d6454fSBen Dooks 754b6d6454fSBen Dooks return ret; 755b6d6454fSBen Dooks } 756b6d6454fSBen Dooks 757b6d6454fSBen Dooks /* sm501_create_subio 758b6d6454fSBen Dooks * 759b6d6454fSBen Dooks * Fill in an IO resource for a sub device 760b6d6454fSBen Dooks */ 761b6d6454fSBen Dooks 762b6d6454fSBen Dooks static void sm501_create_subio(struct sm501_devdata *sm, 763b6d6454fSBen Dooks struct resource *res, 764b6d6454fSBen Dooks resource_size_t offs, 765b6d6454fSBen Dooks resource_size_t size) 766b6d6454fSBen Dooks { 767b6d6454fSBen Dooks res->flags = IORESOURCE_MEM; 768b6d6454fSBen Dooks res->parent = sm->io_res; 769b6d6454fSBen Dooks res->start = sm->io_res->start + offs; 770b6d6454fSBen Dooks res->end = res->start + size - 1; 771b6d6454fSBen Dooks } 772b6d6454fSBen Dooks 773b6d6454fSBen Dooks /* sm501_create_mem 774b6d6454fSBen Dooks * 775b6d6454fSBen Dooks * Fill in an MEM resource for a sub device 776b6d6454fSBen Dooks */ 777b6d6454fSBen Dooks 778b6d6454fSBen Dooks static void sm501_create_mem(struct sm501_devdata *sm, 779b6d6454fSBen Dooks struct resource *res, 780b6d6454fSBen Dooks resource_size_t *offs, 781b6d6454fSBen Dooks resource_size_t size) 782b6d6454fSBen Dooks { 783b6d6454fSBen Dooks *offs -= size; /* adjust memory size */ 784b6d6454fSBen Dooks 785b6d6454fSBen Dooks res->flags = IORESOURCE_MEM; 786b6d6454fSBen Dooks res->parent = sm->mem_res; 787b6d6454fSBen Dooks res->start = sm->mem_res->start + *offs; 788b6d6454fSBen Dooks res->end = res->start + size - 1; 789b6d6454fSBen Dooks } 790b6d6454fSBen Dooks 791b6d6454fSBen Dooks /* sm501_create_irq 792b6d6454fSBen Dooks * 793b6d6454fSBen Dooks * Fill in an IRQ resource for a sub device 794b6d6454fSBen Dooks */ 795b6d6454fSBen Dooks 796b6d6454fSBen Dooks static void sm501_create_irq(struct sm501_devdata *sm, 797b6d6454fSBen Dooks struct resource *res) 798b6d6454fSBen Dooks { 799b6d6454fSBen Dooks res->flags = IORESOURCE_IRQ; 800b6d6454fSBen Dooks res->parent = NULL; 801b6d6454fSBen Dooks res->start = res->end = sm->irq; 802b6d6454fSBen Dooks } 803b6d6454fSBen Dooks 804b6d6454fSBen Dooks static int sm501_register_usbhost(struct sm501_devdata *sm, 805b6d6454fSBen Dooks resource_size_t *mem_avail) 806b6d6454fSBen Dooks { 807b6d6454fSBen Dooks struct platform_device *pdev; 808b6d6454fSBen Dooks 80961711f8fSMagnus Damm pdev = sm501_create_subdev(sm, "sm501-usb", 3, 0); 810b6d6454fSBen Dooks if (!pdev) 811b6d6454fSBen Dooks return -ENOMEM; 812b6d6454fSBen Dooks 813b6d6454fSBen Dooks sm501_create_subio(sm, &pdev->resource[0], 0x40000, 0x20000); 814b6d6454fSBen Dooks sm501_create_mem(sm, &pdev->resource[1], mem_avail, 256*1024); 815b6d6454fSBen Dooks sm501_create_irq(sm, &pdev->resource[2]); 816b6d6454fSBen Dooks 817b6d6454fSBen Dooks return sm501_register_device(sm, pdev); 818b6d6454fSBen Dooks } 819b6d6454fSBen Dooks 82061711f8fSMagnus Damm static void sm501_setup_uart_data(struct sm501_devdata *sm, 82161711f8fSMagnus Damm struct plat_serial8250_port *uart_data, 82261711f8fSMagnus Damm unsigned int offset) 82361711f8fSMagnus Damm { 82461711f8fSMagnus Damm uart_data->membase = sm->regs + offset; 82561711f8fSMagnus Damm uart_data->mapbase = sm->io_res->start + offset; 82661711f8fSMagnus Damm uart_data->iotype = UPIO_MEM; 82761711f8fSMagnus Damm uart_data->irq = sm->irq; 82861711f8fSMagnus Damm uart_data->flags = UPF_BOOT_AUTOCONF | UPF_SKIP_TEST | UPF_SHARE_IRQ; 82961711f8fSMagnus Damm uart_data->regshift = 2; 83061711f8fSMagnus Damm uart_data->uartclk = (9600 * 16); 83161711f8fSMagnus Damm } 83261711f8fSMagnus Damm 83361711f8fSMagnus Damm static int sm501_register_uart(struct sm501_devdata *sm, int devices) 83461711f8fSMagnus Damm { 83561711f8fSMagnus Damm struct platform_device *pdev; 83661711f8fSMagnus Damm struct plat_serial8250_port *uart_data; 83761711f8fSMagnus Damm 83861711f8fSMagnus Damm pdev = sm501_create_subdev(sm, "serial8250", 0, 83961711f8fSMagnus Damm sizeof(struct plat_serial8250_port) * 3); 84061711f8fSMagnus Damm if (!pdev) 84161711f8fSMagnus Damm return -ENOMEM; 84261711f8fSMagnus Damm 84361711f8fSMagnus Damm uart_data = pdev->dev.platform_data; 84461711f8fSMagnus Damm 84561711f8fSMagnus Damm if (devices & SM501_USE_UART0) { 84661711f8fSMagnus Damm sm501_setup_uart_data(sm, uart_data++, 0x30000); 84761711f8fSMagnus Damm sm501_unit_power(sm->dev, SM501_GATE_UART0, 1); 84861711f8fSMagnus Damm sm501_modify_reg(sm->dev, SM501_IRQ_MASK, 1 << 12, 0); 84961711f8fSMagnus Damm sm501_modify_reg(sm->dev, SM501_GPIO63_32_CONTROL, 0x01e0, 0); 85061711f8fSMagnus Damm } 85161711f8fSMagnus Damm if (devices & SM501_USE_UART1) { 85261711f8fSMagnus Damm sm501_setup_uart_data(sm, uart_data++, 0x30020); 85361711f8fSMagnus Damm sm501_unit_power(sm->dev, SM501_GATE_UART1, 1); 85461711f8fSMagnus Damm sm501_modify_reg(sm->dev, SM501_IRQ_MASK, 1 << 13, 0); 85561711f8fSMagnus Damm sm501_modify_reg(sm->dev, SM501_GPIO63_32_CONTROL, 0x1e00, 0); 85661711f8fSMagnus Damm } 85761711f8fSMagnus Damm 85861711f8fSMagnus Damm pdev->id = PLAT8250_DEV_SM501; 85961711f8fSMagnus Damm 86061711f8fSMagnus Damm return sm501_register_device(sm, pdev); 86161711f8fSMagnus Damm } 86261711f8fSMagnus Damm 863b6d6454fSBen Dooks static int sm501_register_display(struct sm501_devdata *sm, 864b6d6454fSBen Dooks resource_size_t *mem_avail) 865b6d6454fSBen Dooks { 866b6d6454fSBen Dooks struct platform_device *pdev; 867b6d6454fSBen Dooks 86861711f8fSMagnus Damm pdev = sm501_create_subdev(sm, "sm501-fb", 4, 0); 869b6d6454fSBen Dooks if (!pdev) 870b6d6454fSBen Dooks return -ENOMEM; 871b6d6454fSBen Dooks 872b6d6454fSBen Dooks sm501_create_subio(sm, &pdev->resource[0], 0x80000, 0x10000); 873b6d6454fSBen Dooks sm501_create_subio(sm, &pdev->resource[1], 0x100000, 0x50000); 874b6d6454fSBen Dooks sm501_create_mem(sm, &pdev->resource[2], mem_avail, *mem_avail); 875b6d6454fSBen Dooks sm501_create_irq(sm, &pdev->resource[3]); 876b6d6454fSBen Dooks 877b6d6454fSBen Dooks return sm501_register_device(sm, pdev); 878b6d6454fSBen Dooks } 879b6d6454fSBen Dooks 880f61be273SBen Dooks #ifdef CONFIG_MFD_SM501_GPIO 881f61be273SBen Dooks 882f61be273SBen Dooks static inline struct sm501_gpio_chip *to_sm501_gpio(struct gpio_chip *gc) 883f61be273SBen Dooks { 884f61be273SBen Dooks return container_of(gc, struct sm501_gpio_chip, gpio); 885f61be273SBen Dooks } 886f61be273SBen Dooks 887f61be273SBen Dooks static inline struct sm501_devdata *sm501_gpio_to_dev(struct sm501_gpio *gpio) 888f61be273SBen Dooks { 889f61be273SBen Dooks return container_of(gpio, struct sm501_devdata, gpio); 890f61be273SBen Dooks } 891f61be273SBen Dooks 892f61be273SBen Dooks static int sm501_gpio_get(struct gpio_chip *chip, unsigned offset) 893f61be273SBen Dooks 894f61be273SBen Dooks { 895f61be273SBen Dooks struct sm501_gpio_chip *smgpio = to_sm501_gpio(chip); 896f61be273SBen Dooks unsigned long result; 897f61be273SBen Dooks 898f61be273SBen Dooks result = readl(smgpio->regbase + SM501_GPIO_DATA_LOW); 899f61be273SBen Dooks result >>= offset; 900f61be273SBen Dooks 901f61be273SBen Dooks return result & 1UL; 902f61be273SBen Dooks } 903f61be273SBen Dooks 904f61be273SBen Dooks static void sm501_gpio_set(struct gpio_chip *chip, unsigned offset, int value) 905f61be273SBen Dooks 906f61be273SBen Dooks { 907f61be273SBen Dooks struct sm501_gpio_chip *smchip = to_sm501_gpio(chip); 908f61be273SBen Dooks struct sm501_gpio *smgpio = smchip->ourgpio; 909f61be273SBen Dooks unsigned long bit = 1 << offset; 910f61be273SBen Dooks void __iomem *regs = smchip->regbase; 911f61be273SBen Dooks unsigned long save; 912f61be273SBen Dooks unsigned long val; 913f61be273SBen Dooks 914f61be273SBen Dooks dev_dbg(sm501_gpio_to_dev(smgpio)->dev, "%s(%p,%d)\n", 915f61be273SBen Dooks __func__, chip, offset); 916f61be273SBen Dooks 917f61be273SBen Dooks spin_lock_irqsave(&smgpio->lock, save); 918f61be273SBen Dooks 919f61be273SBen Dooks val = readl(regs + SM501_GPIO_DATA_LOW) & ~bit; 920f61be273SBen Dooks if (value) 921f61be273SBen Dooks val |= bit; 922f61be273SBen Dooks writel(val, regs); 923f61be273SBen Dooks 924f61be273SBen Dooks sm501_sync_regs(sm501_gpio_to_dev(smgpio)); 925f61be273SBen Dooks spin_unlock_irqrestore(&smgpio->lock, save); 926f61be273SBen Dooks } 927f61be273SBen Dooks 928f61be273SBen Dooks static int sm501_gpio_input(struct gpio_chip *chip, unsigned offset) 929f61be273SBen Dooks { 930f61be273SBen Dooks struct sm501_gpio_chip *smchip = to_sm501_gpio(chip); 931f61be273SBen Dooks struct sm501_gpio *smgpio = smchip->ourgpio; 932f61be273SBen Dooks void __iomem *regs = smchip->regbase; 933f61be273SBen Dooks unsigned long bit = 1 << offset; 934f61be273SBen Dooks unsigned long save; 935f61be273SBen Dooks unsigned long ddr; 936f61be273SBen Dooks 937f61be273SBen Dooks dev_info(sm501_gpio_to_dev(smgpio)->dev, "%s(%p,%d)\n", 938f61be273SBen Dooks __func__, chip, offset); 939f61be273SBen Dooks 940f61be273SBen Dooks spin_lock_irqsave(&smgpio->lock, save); 941f61be273SBen Dooks 942f61be273SBen Dooks ddr = readl(regs + SM501_GPIO_DDR_LOW); 943f61be273SBen Dooks writel(ddr & ~bit, regs + SM501_GPIO_DDR_LOW); 944f61be273SBen Dooks 945f61be273SBen Dooks sm501_sync_regs(sm501_gpio_to_dev(smgpio)); 946f61be273SBen Dooks spin_unlock_irqrestore(&smgpio->lock, save); 947f61be273SBen Dooks 948f61be273SBen Dooks return 0; 949f61be273SBen Dooks } 950f61be273SBen Dooks 951f61be273SBen Dooks static int sm501_gpio_output(struct gpio_chip *chip, 952f61be273SBen Dooks unsigned offset, int value) 953f61be273SBen Dooks { 954f61be273SBen Dooks struct sm501_gpio_chip *smchip = to_sm501_gpio(chip); 955f61be273SBen Dooks struct sm501_gpio *smgpio = smchip->ourgpio; 956f61be273SBen Dooks unsigned long bit = 1 << offset; 957f61be273SBen Dooks void __iomem *regs = smchip->regbase; 958f61be273SBen Dooks unsigned long save; 959f61be273SBen Dooks unsigned long val; 960f61be273SBen Dooks unsigned long ddr; 961f61be273SBen Dooks 962f61be273SBen Dooks dev_dbg(sm501_gpio_to_dev(smgpio)->dev, "%s(%p,%d,%d)\n", 963f61be273SBen Dooks __func__, chip, offset, value); 964f61be273SBen Dooks 965f61be273SBen Dooks spin_lock_irqsave(&smgpio->lock, save); 966f61be273SBen Dooks 967f61be273SBen Dooks val = readl(regs + SM501_GPIO_DATA_LOW); 968f61be273SBen Dooks if (value) 969f61be273SBen Dooks val |= bit; 970f61be273SBen Dooks else 971f61be273SBen Dooks val &= ~bit; 972f61be273SBen Dooks writel(val, regs); 973f61be273SBen Dooks 974f61be273SBen Dooks ddr = readl(regs + SM501_GPIO_DDR_LOW); 975f61be273SBen Dooks writel(ddr | bit, regs + SM501_GPIO_DDR_LOW); 976f61be273SBen Dooks 977f61be273SBen Dooks sm501_sync_regs(sm501_gpio_to_dev(smgpio)); 978f61be273SBen Dooks writel(val, regs + SM501_GPIO_DATA_LOW); 979f61be273SBen Dooks 980f61be273SBen Dooks sm501_sync_regs(sm501_gpio_to_dev(smgpio)); 981f61be273SBen Dooks spin_unlock_irqrestore(&smgpio->lock, save); 982f61be273SBen Dooks 983f61be273SBen Dooks return 0; 984f61be273SBen Dooks } 985f61be273SBen Dooks 986f61be273SBen Dooks static struct gpio_chip gpio_chip_template = { 987f61be273SBen Dooks .ngpio = 32, 988f61be273SBen Dooks .direction_input = sm501_gpio_input, 989f61be273SBen Dooks .direction_output = sm501_gpio_output, 990f61be273SBen Dooks .set = sm501_gpio_set, 991f61be273SBen Dooks .get = sm501_gpio_get, 992f61be273SBen Dooks }; 993f61be273SBen Dooks 994f61be273SBen Dooks static int __devinit sm501_gpio_register_chip(struct sm501_devdata *sm, 995f61be273SBen Dooks struct sm501_gpio *gpio, 996f61be273SBen Dooks struct sm501_gpio_chip *chip) 997f61be273SBen Dooks { 998f61be273SBen Dooks struct sm501_platdata *pdata = sm->platdata; 999f61be273SBen Dooks struct gpio_chip *gchip = &chip->gpio; 100060e540d6SArnaud Patard int base = pdata->gpio_base; 1001f61be273SBen Dooks 1002f61be273SBen Dooks memcpy(chip, &gpio_chip_template, sizeof(struct gpio_chip)); 1003f61be273SBen Dooks 1004f61be273SBen Dooks if (chip == &gpio->high) { 100560e540d6SArnaud Patard if (base > 0) 1006f61be273SBen Dooks base += 32; 1007f61be273SBen Dooks chip->regbase = gpio->regs + SM501_GPIO_DATA_HIGH; 1008f61be273SBen Dooks gchip->label = "SM501-HIGH"; 1009f61be273SBen Dooks } else { 1010f61be273SBen Dooks chip->regbase = gpio->regs + SM501_GPIO_DATA_LOW; 1011f61be273SBen Dooks gchip->label = "SM501-LOW"; 1012f61be273SBen Dooks } 1013f61be273SBen Dooks 1014f61be273SBen Dooks gchip->base = base; 1015f61be273SBen Dooks chip->ourgpio = gpio; 1016f61be273SBen Dooks 1017f61be273SBen Dooks return gpiochip_add(gchip); 1018f61be273SBen Dooks } 1019f61be273SBen Dooks 1020f61be273SBen Dooks static int sm501_register_gpio(struct sm501_devdata *sm) 1021f61be273SBen Dooks { 1022f61be273SBen Dooks struct sm501_gpio *gpio = &sm->gpio; 1023f61be273SBen Dooks resource_size_t iobase = sm->io_res->start + SM501_GPIO; 1024f61be273SBen Dooks int ret; 1025f61be273SBen Dooks int tmp; 1026f61be273SBen Dooks 1027f61be273SBen Dooks dev_dbg(sm->dev, "registering gpio block %08llx\n", 1028f61be273SBen Dooks (unsigned long long)iobase); 1029f61be273SBen Dooks 1030f61be273SBen Dooks spin_lock_init(&gpio->lock); 1031f61be273SBen Dooks 1032f61be273SBen Dooks gpio->regs_res = request_mem_region(iobase, 0x20, "sm501-gpio"); 1033f61be273SBen Dooks if (gpio->regs_res == NULL) { 1034f61be273SBen Dooks dev_err(sm->dev, "gpio: failed to request region\n"); 1035f61be273SBen Dooks return -ENXIO; 1036f61be273SBen Dooks } 1037f61be273SBen Dooks 1038f61be273SBen Dooks gpio->regs = ioremap(iobase, 0x20); 1039f61be273SBen Dooks if (gpio->regs == NULL) { 1040f61be273SBen Dooks dev_err(sm->dev, "gpio: failed to remap registers\n"); 1041f61be273SBen Dooks ret = -ENXIO; 1042f61be273SBen Dooks goto err_mapped; 1043f61be273SBen Dooks } 1044f61be273SBen Dooks 1045f61be273SBen Dooks /* Register both our chips. */ 1046f61be273SBen Dooks 1047f61be273SBen Dooks ret = sm501_gpio_register_chip(sm, gpio, &gpio->low); 1048f61be273SBen Dooks if (ret) { 1049f61be273SBen Dooks dev_err(sm->dev, "failed to add low chip\n"); 1050f61be273SBen Dooks goto err_mapped; 1051f61be273SBen Dooks } 1052f61be273SBen Dooks 1053f61be273SBen Dooks ret = sm501_gpio_register_chip(sm, gpio, &gpio->high); 1054f61be273SBen Dooks if (ret) { 1055f61be273SBen Dooks dev_err(sm->dev, "failed to add high chip\n"); 1056f61be273SBen Dooks goto err_low_chip; 1057f61be273SBen Dooks } 1058f61be273SBen Dooks 1059f61be273SBen Dooks gpio->registered = 1; 1060f61be273SBen Dooks 1061f61be273SBen Dooks return 0; 1062f61be273SBen Dooks 1063f61be273SBen Dooks err_low_chip: 1064f61be273SBen Dooks tmp = gpiochip_remove(&gpio->low.gpio); 1065f61be273SBen Dooks if (tmp) { 1066f61be273SBen Dooks dev_err(sm->dev, "cannot remove low chip, cannot tidy up\n"); 1067f61be273SBen Dooks return ret; 1068f61be273SBen Dooks } 1069f61be273SBen Dooks 1070f61be273SBen Dooks err_mapped: 1071f61be273SBen Dooks release_resource(gpio->regs_res); 1072f61be273SBen Dooks kfree(gpio->regs_res); 1073f61be273SBen Dooks 1074f61be273SBen Dooks return ret; 1075f61be273SBen Dooks } 1076f61be273SBen Dooks 1077f61be273SBen Dooks static void sm501_gpio_remove(struct sm501_devdata *sm) 1078f61be273SBen Dooks { 1079f61be273SBen Dooks int ret; 1080f61be273SBen Dooks 1081f61be273SBen Dooks ret = gpiochip_remove(&sm->gpio.low.gpio); 1082f61be273SBen Dooks if (ret) 1083f61be273SBen Dooks dev_err(sm->dev, "cannot remove low chip, cannot tidy up\n"); 1084f61be273SBen Dooks 1085f61be273SBen Dooks ret = gpiochip_remove(&sm->gpio.high.gpio); 1086f61be273SBen Dooks if (ret) 1087f61be273SBen Dooks dev_err(sm->dev, "cannot remove high chip, cannot tidy up\n"); 1088f61be273SBen Dooks } 1089f61be273SBen Dooks 1090*42cd2366SBen Dooks static int sm501_gpio_pin2nr(struct sm501_devdata *sm, unsigned int pin) 1091*42cd2366SBen Dooks { 1092*42cd2366SBen Dooks struct sm501_gpio *gpio = &sm->gpio; 1093*42cd2366SBen Dooks return pin + (pin < 32) ? gpio->low.gpio.base : gpio->high.gpio.base; 1094*42cd2366SBen Dooks } 1095f61be273SBen Dooks #else 1096f61be273SBen Dooks static int sm501_register_gpio(struct sm501_devdata *sm) 1097f61be273SBen Dooks { 1098f61be273SBen Dooks return 0; 1099f61be273SBen Dooks } 1100f61be273SBen Dooks 1101f61be273SBen Dooks static void sm501_gpio_remove(struct sm501_devdata *sm) 1102f61be273SBen Dooks { 1103f61be273SBen Dooks } 1104*42cd2366SBen Dooks 1105*42cd2366SBen Dooks static int sm501_gpio_pin2nr(struct sm501_devdata *sm, unsigned int pin) 1106*42cd2366SBen Dooks { 1107*42cd2366SBen Dooks return -1; 1108*42cd2366SBen Dooks } 1109f61be273SBen Dooks #endif 1110f61be273SBen Dooks 1111*42cd2366SBen Dooks static int sm501_register_gpio_i2c_instance(struct sm501_devdata *sm, 1112*42cd2366SBen Dooks struct sm501_platdata_gpio_i2c *iic) 1113*42cd2366SBen Dooks { 1114*42cd2366SBen Dooks struct i2c_gpio_platform_data *icd; 1115*42cd2366SBen Dooks struct platform_device *pdev; 1116*42cd2366SBen Dooks 1117*42cd2366SBen Dooks pdev = sm501_create_subdev(sm, "i2c-gpio", 0, 1118*42cd2366SBen Dooks sizeof(struct i2c_gpio_platform_data)); 1119*42cd2366SBen Dooks if (!pdev) 1120*42cd2366SBen Dooks return -ENOMEM; 1121*42cd2366SBen Dooks 1122*42cd2366SBen Dooks icd = pdev->dev.platform_data; 1123*42cd2366SBen Dooks 1124*42cd2366SBen Dooks /* We keep the pin_sda and pin_scl fields relative in case the 1125*42cd2366SBen Dooks * same platform data is passed to >1 SM501. 1126*42cd2366SBen Dooks */ 1127*42cd2366SBen Dooks 1128*42cd2366SBen Dooks icd->sda_pin = sm501_gpio_pin2nr(sm, iic->pin_sda); 1129*42cd2366SBen Dooks icd->scl_pin = sm501_gpio_pin2nr(sm, iic->pin_scl); 1130*42cd2366SBen Dooks icd->timeout = iic->timeout; 1131*42cd2366SBen Dooks icd->udelay = iic->udelay; 1132*42cd2366SBen Dooks 1133*42cd2366SBen Dooks /* note, we can't use either of the pin numbers, as the i2c-gpio 1134*42cd2366SBen Dooks * driver uses the platform.id field to generate the bus number 1135*42cd2366SBen Dooks * to register with the i2c core; The i2c core doesn't have enough 1136*42cd2366SBen Dooks * entries to deal with anything we currently use. 1137*42cd2366SBen Dooks */ 1138*42cd2366SBen Dooks 1139*42cd2366SBen Dooks pdev->id = iic->bus_num; 1140*42cd2366SBen Dooks 1141*42cd2366SBen Dooks dev_info(sm->dev, "registering i2c-%d: sda=%d (%d), scl=%d (%d)\n", 1142*42cd2366SBen Dooks iic->bus_num, 1143*42cd2366SBen Dooks icd->sda_pin, iic->pin_sda, icd->scl_pin, iic->pin_scl); 1144*42cd2366SBen Dooks 1145*42cd2366SBen Dooks return sm501_register_device(sm, pdev); 1146*42cd2366SBen Dooks } 1147*42cd2366SBen Dooks 1148*42cd2366SBen Dooks static int sm501_register_gpio_i2c(struct sm501_devdata *sm, 1149*42cd2366SBen Dooks struct sm501_platdata *pdata) 1150*42cd2366SBen Dooks { 1151*42cd2366SBen Dooks struct sm501_platdata_gpio_i2c *iic = pdata->gpio_i2c; 1152*42cd2366SBen Dooks int index; 1153*42cd2366SBen Dooks int ret; 1154*42cd2366SBen Dooks 1155*42cd2366SBen Dooks for (index = 0; index < pdata->gpio_i2c_nr; index++, iic++) { 1156*42cd2366SBen Dooks ret = sm501_register_gpio_i2c_instance(sm, iic); 1157*42cd2366SBen Dooks if (ret < 0) 1158*42cd2366SBen Dooks return ret; 1159*42cd2366SBen Dooks } 1160*42cd2366SBen Dooks 1161*42cd2366SBen Dooks return 0; 1162*42cd2366SBen Dooks } 1163*42cd2366SBen Dooks 1164b6d6454fSBen Dooks /* sm501_dbg_regs 1165b6d6454fSBen Dooks * 1166b6d6454fSBen Dooks * Debug attribute to attach to parent device to show core registers 1167b6d6454fSBen Dooks */ 1168b6d6454fSBen Dooks 1169b6d6454fSBen Dooks static ssize_t sm501_dbg_regs(struct device *dev, 1170b6d6454fSBen Dooks struct device_attribute *attr, char *buff) 1171b6d6454fSBen Dooks { 1172b6d6454fSBen Dooks struct sm501_devdata *sm = dev_get_drvdata(dev) ; 1173b6d6454fSBen Dooks unsigned int reg; 1174b6d6454fSBen Dooks char *ptr = buff; 1175b6d6454fSBen Dooks int ret; 1176b6d6454fSBen Dooks 1177b6d6454fSBen Dooks for (reg = 0x00; reg < 0x70; reg += 4) { 1178b6d6454fSBen Dooks ret = sprintf(ptr, "%08x = %08x\n", 1179b6d6454fSBen Dooks reg, readl(sm->regs + reg)); 1180b6d6454fSBen Dooks ptr += ret; 1181b6d6454fSBen Dooks } 1182b6d6454fSBen Dooks 1183b6d6454fSBen Dooks return ptr - buff; 1184b6d6454fSBen Dooks } 1185b6d6454fSBen Dooks 1186b6d6454fSBen Dooks 1187b6d6454fSBen Dooks static DEVICE_ATTR(dbg_regs, 0666, sm501_dbg_regs, NULL); 1188b6d6454fSBen Dooks 1189b6d6454fSBen Dooks /* sm501_init_reg 1190b6d6454fSBen Dooks * 1191b6d6454fSBen Dooks * Helper function for the init code to setup a register 11925136237bSBen Dooks * 11935136237bSBen Dooks * clear the bits which are set in r->mask, and then set 11945136237bSBen Dooks * the bits set in r->set. 1195b6d6454fSBen Dooks */ 1196b6d6454fSBen Dooks 1197b6d6454fSBen Dooks static inline void sm501_init_reg(struct sm501_devdata *sm, 1198b6d6454fSBen Dooks unsigned long reg, 1199b6d6454fSBen Dooks struct sm501_reg_init *r) 1200b6d6454fSBen Dooks { 1201b6d6454fSBen Dooks unsigned long tmp; 1202b6d6454fSBen Dooks 1203b6d6454fSBen Dooks tmp = readl(sm->regs + reg); 1204b6d6454fSBen Dooks tmp &= ~r->mask; 12055136237bSBen Dooks tmp |= r->set; 1206b6d6454fSBen Dooks writel(tmp, sm->regs + reg); 1207b6d6454fSBen Dooks } 1208b6d6454fSBen Dooks 1209b6d6454fSBen Dooks /* sm501_init_regs 1210b6d6454fSBen Dooks * 1211b6d6454fSBen Dooks * Setup core register values 1212b6d6454fSBen Dooks */ 1213b6d6454fSBen Dooks 1214b6d6454fSBen Dooks static void sm501_init_regs(struct sm501_devdata *sm, 1215b6d6454fSBen Dooks struct sm501_initdata *init) 1216b6d6454fSBen Dooks { 1217b6d6454fSBen Dooks sm501_misc_control(sm->dev, 1218b6d6454fSBen Dooks init->misc_control.set, 1219b6d6454fSBen Dooks init->misc_control.mask); 1220b6d6454fSBen Dooks 1221b6d6454fSBen Dooks sm501_init_reg(sm, SM501_MISC_TIMING, &init->misc_timing); 1222b6d6454fSBen Dooks sm501_init_reg(sm, SM501_GPIO31_0_CONTROL, &init->gpio_low); 1223b6d6454fSBen Dooks sm501_init_reg(sm, SM501_GPIO63_32_CONTROL, &init->gpio_high); 1224b6d6454fSBen Dooks 1225b6d6454fSBen Dooks if (init->m1xclk) { 1226b6d6454fSBen Dooks dev_info(sm->dev, "setting M1XCLK to %ld\n", init->m1xclk); 1227b6d6454fSBen Dooks sm501_set_clock(sm->dev, SM501_CLOCK_M1XCLK, init->m1xclk); 1228b6d6454fSBen Dooks } 1229b5913bbdSBen Dooks 1230b5913bbdSBen Dooks if (init->mclk) { 1231b5913bbdSBen Dooks dev_info(sm->dev, "setting MCLK to %ld\n", init->mclk); 1232b5913bbdSBen Dooks sm501_set_clock(sm->dev, SM501_CLOCK_MCLK, init->mclk); 1233b5913bbdSBen Dooks } 123481906221SBen Dooks 123581906221SBen Dooks } 123681906221SBen Dooks 123781906221SBen Dooks /* Check the PLL sources for the M1CLK and M1XCLK 123881906221SBen Dooks * 123981906221SBen Dooks * If the M1CLK and M1XCLKs are not sourced from the same PLL, then 124081906221SBen Dooks * there is a risk (see errata AB-5) that the SM501 will cease proper 124181906221SBen Dooks * function. If this happens, then it is likely the SM501 will 124281906221SBen Dooks * hang the system. 124381906221SBen Dooks */ 124481906221SBen Dooks 124581906221SBen Dooks static int sm501_check_clocks(struct sm501_devdata *sm) 124681906221SBen Dooks { 124781906221SBen Dooks unsigned long pwrmode = readl(sm->regs + SM501_CURRENT_CLOCK); 124881906221SBen Dooks unsigned long msrc = (pwrmode & SM501_POWERMODE_M_SRC); 124981906221SBen Dooks unsigned long m1src = (pwrmode & SM501_POWERMODE_M1_SRC); 125081906221SBen Dooks 125181906221SBen Dooks return ((msrc == 0 && m1src != 0) || (msrc != 0 && m1src == 0)); 1252b6d6454fSBen Dooks } 1253b6d6454fSBen Dooks 1254b6d6454fSBen Dooks static unsigned int sm501_mem_local[] = { 1255b6d6454fSBen Dooks [0] = 4*1024*1024, 1256b6d6454fSBen Dooks [1] = 8*1024*1024, 1257b6d6454fSBen Dooks [2] = 16*1024*1024, 1258b6d6454fSBen Dooks [3] = 32*1024*1024, 1259b6d6454fSBen Dooks [4] = 64*1024*1024, 1260b6d6454fSBen Dooks [5] = 2*1024*1024, 1261b6d6454fSBen Dooks }; 1262b6d6454fSBen Dooks 1263b6d6454fSBen Dooks /* sm501_init_dev 1264b6d6454fSBen Dooks * 1265b6d6454fSBen Dooks * Common init code for an SM501 1266b6d6454fSBen Dooks */ 1267b6d6454fSBen Dooks 1268b6d6454fSBen Dooks static int sm501_init_dev(struct sm501_devdata *sm) 1269b6d6454fSBen Dooks { 127061711f8fSMagnus Damm struct sm501_initdata *idata; 1271*42cd2366SBen Dooks struct sm501_platdata *pdata; 1272b6d6454fSBen Dooks resource_size_t mem_avail; 1273b6d6454fSBen Dooks unsigned long dramctrl; 12741e27dbe7SBen Dooks unsigned long devid; 1275b6d6454fSBen Dooks int ret; 1276b6d6454fSBen Dooks 1277b6d6454fSBen Dooks mutex_init(&sm->clock_lock); 1278b6d6454fSBen Dooks spin_lock_init(&sm->reg_lock); 1279b6d6454fSBen Dooks 1280b6d6454fSBen Dooks INIT_LIST_HEAD(&sm->devices); 1281b6d6454fSBen Dooks 12821e27dbe7SBen Dooks devid = readl(sm->regs + SM501_DEVICEID); 1283b6d6454fSBen Dooks 12841e27dbe7SBen Dooks if ((devid & SM501_DEVICEID_IDMASK) != SM501_DEVICEID_SM501) { 12851e27dbe7SBen Dooks dev_err(sm->dev, "incorrect device id %08lx\n", devid); 12861e27dbe7SBen Dooks return -EINVAL; 12871e27dbe7SBen Dooks } 12881e27dbe7SBen Dooks 128961711f8fSMagnus Damm /* disable irqs */ 129061711f8fSMagnus Damm writel(0, sm->regs + SM501_IRQ_MASK); 129161711f8fSMagnus Damm 12921e27dbe7SBen Dooks dramctrl = readl(sm->regs + SM501_DRAM_CONTROL); 1293b6d6454fSBen Dooks mem_avail = sm501_mem_local[(dramctrl >> 13) & 0x7]; 1294b6d6454fSBen Dooks 12951e27dbe7SBen Dooks dev_info(sm->dev, "SM501 At %p: Version %08lx, %ld Mb, IRQ %d\n", 12961e27dbe7SBen Dooks sm->regs, devid, (unsigned long)mem_avail >> 20, sm->irq); 1297b6d6454fSBen Dooks 12983149be50SVille Syrjala sm->rev = devid & SM501_DEVICEID_REVMASK; 12993149be50SVille Syrjala 1300331d7475SBen Dooks sm501_dump_gate(sm); 1301b6d6454fSBen Dooks 1302b6d6454fSBen Dooks ret = device_create_file(sm->dev, &dev_attr_dbg_regs); 1303b6d6454fSBen Dooks if (ret) 1304b6d6454fSBen Dooks dev_err(sm->dev, "failed to create debug regs file\n"); 1305b6d6454fSBen Dooks 1306b6d6454fSBen Dooks sm501_dump_clk(sm); 1307b6d6454fSBen Dooks 1308b6d6454fSBen Dooks /* check to see if we have some device initialisation */ 1309b6d6454fSBen Dooks 1310*42cd2366SBen Dooks pdata = sm->platdata; 1311*42cd2366SBen Dooks idata = pdata ? pdata->init : NULL; 1312*42cd2366SBen Dooks 131361711f8fSMagnus Damm if (idata) { 131461711f8fSMagnus Damm sm501_init_regs(sm, idata); 1315b6d6454fSBen Dooks 131661711f8fSMagnus Damm if (idata->devices & SM501_USE_USB_HOST) 1317b6d6454fSBen Dooks sm501_register_usbhost(sm, &mem_avail); 131861711f8fSMagnus Damm if (idata->devices & (SM501_USE_UART0 | SM501_USE_UART1)) 131961711f8fSMagnus Damm sm501_register_uart(sm, idata->devices); 1320f61be273SBen Dooks if (idata->devices & SM501_USE_GPIO) 1321f61be273SBen Dooks sm501_register_gpio(sm); 1322b6d6454fSBen Dooks } 1323b6d6454fSBen Dooks 1324*42cd2366SBen Dooks if (pdata->gpio_i2c != NULL && pdata->gpio_i2c_nr > 0) { 1325*42cd2366SBen Dooks if (!sm->gpio.registered) 1326*42cd2366SBen Dooks dev_err(sm->dev, "no gpio registered for i2c gpio.\n"); 1327*42cd2366SBen Dooks else 1328*42cd2366SBen Dooks sm501_register_gpio_i2c(sm, pdata); 1329*42cd2366SBen Dooks } 1330*42cd2366SBen Dooks 133181906221SBen Dooks ret = sm501_check_clocks(sm); 133281906221SBen Dooks if (ret) { 133381906221SBen Dooks dev_err(sm->dev, "M1X and M clocks sourced from different " 133481906221SBen Dooks "PLLs\n"); 133581906221SBen Dooks return -EINVAL; 133681906221SBen Dooks } 133781906221SBen Dooks 1338b6d6454fSBen Dooks /* always create a framebuffer */ 1339b6d6454fSBen Dooks sm501_register_display(sm, &mem_avail); 1340b6d6454fSBen Dooks 1341b6d6454fSBen Dooks return 0; 1342b6d6454fSBen Dooks } 1343b6d6454fSBen Dooks 1344b6d6454fSBen Dooks static int sm501_plat_probe(struct platform_device *dev) 1345b6d6454fSBen Dooks { 1346b6d6454fSBen Dooks struct sm501_devdata *sm; 1347b6d6454fSBen Dooks int err; 1348b6d6454fSBen Dooks 1349b6d6454fSBen Dooks sm = kzalloc(sizeof(struct sm501_devdata), GFP_KERNEL); 1350b6d6454fSBen Dooks if (sm == NULL) { 1351b6d6454fSBen Dooks dev_err(&dev->dev, "no memory for device data\n"); 1352b6d6454fSBen Dooks err = -ENOMEM; 1353b6d6454fSBen Dooks goto err1; 1354b6d6454fSBen Dooks } 1355b6d6454fSBen Dooks 1356b6d6454fSBen Dooks sm->dev = &dev->dev; 1357b6d6454fSBen Dooks sm->pdev_id = dev->id; 1358b6d6454fSBen Dooks sm->irq = platform_get_irq(dev, 0); 1359b6d6454fSBen Dooks sm->io_res = platform_get_resource(dev, IORESOURCE_MEM, 1); 1360b6d6454fSBen Dooks sm->mem_res = platform_get_resource(dev, IORESOURCE_MEM, 0); 1361b6d6454fSBen Dooks sm->platdata = dev->dev.platform_data; 1362b6d6454fSBen Dooks 1363b6d6454fSBen Dooks if (sm->irq < 0) { 1364b6d6454fSBen Dooks dev_err(&dev->dev, "failed to get irq resource\n"); 1365b6d6454fSBen Dooks err = sm->irq; 1366b6d6454fSBen Dooks goto err_res; 1367b6d6454fSBen Dooks } 1368b6d6454fSBen Dooks 1369b6d6454fSBen Dooks if (sm->io_res == NULL || sm->mem_res == NULL) { 1370b6d6454fSBen Dooks dev_err(&dev->dev, "failed to get IO resource\n"); 1371b6d6454fSBen Dooks err = -ENOENT; 1372b6d6454fSBen Dooks goto err_res; 1373b6d6454fSBen Dooks } 1374b6d6454fSBen Dooks 1375b6d6454fSBen Dooks sm->regs_claim = request_mem_region(sm->io_res->start, 1376b6d6454fSBen Dooks 0x100, "sm501"); 1377b6d6454fSBen Dooks 1378b6d6454fSBen Dooks if (sm->regs_claim == NULL) { 1379b6d6454fSBen Dooks dev_err(&dev->dev, "cannot claim registers\n"); 1380b6d6454fSBen Dooks err= -EBUSY; 1381b6d6454fSBen Dooks goto err_res; 1382b6d6454fSBen Dooks } 1383b6d6454fSBen Dooks 1384b6d6454fSBen Dooks platform_set_drvdata(dev, sm); 1385b6d6454fSBen Dooks 1386b6d6454fSBen Dooks sm->regs = ioremap(sm->io_res->start, 1387b6d6454fSBen Dooks (sm->io_res->end - sm->io_res->start) - 1); 1388b6d6454fSBen Dooks 1389b6d6454fSBen Dooks if (sm->regs == NULL) { 1390b6d6454fSBen Dooks dev_err(&dev->dev, "cannot remap registers\n"); 1391b6d6454fSBen Dooks err = -EIO; 1392b6d6454fSBen Dooks goto err_claim; 1393b6d6454fSBen Dooks } 1394b6d6454fSBen Dooks 1395b6d6454fSBen Dooks return sm501_init_dev(sm); 1396b6d6454fSBen Dooks 1397b6d6454fSBen Dooks err_claim: 1398b6d6454fSBen Dooks release_resource(sm->regs_claim); 1399b6d6454fSBen Dooks kfree(sm->regs_claim); 1400b6d6454fSBen Dooks err_res: 1401b6d6454fSBen Dooks kfree(sm); 1402b6d6454fSBen Dooks err1: 1403b6d6454fSBen Dooks return err; 1404b6d6454fSBen Dooks 1405b6d6454fSBen Dooks } 1406b6d6454fSBen Dooks 1407331d7475SBen Dooks #ifdef CONFIG_PM 1408472dba7dSBen Dooks 1409331d7475SBen Dooks /* power management support */ 1410331d7475SBen Dooks 1411472dba7dSBen Dooks static void sm501_set_power(struct sm501_devdata *sm, int on) 1412472dba7dSBen Dooks { 1413472dba7dSBen Dooks struct sm501_platdata *pd = sm->platdata; 1414472dba7dSBen Dooks 1415472dba7dSBen Dooks if (pd == NULL) 1416472dba7dSBen Dooks return; 1417472dba7dSBen Dooks 1418472dba7dSBen Dooks if (pd->get_power) { 1419472dba7dSBen Dooks if (pd->get_power(sm->dev) == on) { 1420472dba7dSBen Dooks dev_dbg(sm->dev, "is already %d\n", on); 1421472dba7dSBen Dooks return; 1422472dba7dSBen Dooks } 1423472dba7dSBen Dooks } 1424472dba7dSBen Dooks 1425472dba7dSBen Dooks if (pd->set_power) { 1426472dba7dSBen Dooks dev_dbg(sm->dev, "setting power to %d\n", on); 1427472dba7dSBen Dooks 1428472dba7dSBen Dooks pd->set_power(sm->dev, on); 1429472dba7dSBen Dooks sm501_mdelay(sm, 10); 1430472dba7dSBen Dooks } 1431472dba7dSBen Dooks } 1432472dba7dSBen Dooks 1433331d7475SBen Dooks static int sm501_plat_suspend(struct platform_device *pdev, pm_message_t state) 1434331d7475SBen Dooks { 1435331d7475SBen Dooks struct sm501_devdata *sm = platform_get_drvdata(pdev); 1436331d7475SBen Dooks 1437331d7475SBen Dooks sm->in_suspend = 1; 1438331d7475SBen Dooks sm->pm_misc = readl(sm->regs + SM501_MISC_CONTROL); 1439331d7475SBen Dooks 1440331d7475SBen Dooks sm501_dump_regs(sm); 1441472dba7dSBen Dooks 1442472dba7dSBen Dooks if (sm->platdata) { 1443472dba7dSBen Dooks if (sm->platdata->flags & SM501_FLAG_SUSPEND_OFF) 1444472dba7dSBen Dooks sm501_set_power(sm, 0); 1445472dba7dSBen Dooks } 1446472dba7dSBen Dooks 1447331d7475SBen Dooks return 0; 1448331d7475SBen Dooks } 1449331d7475SBen Dooks 1450331d7475SBen Dooks static int sm501_plat_resume(struct platform_device *pdev) 1451331d7475SBen Dooks { 1452331d7475SBen Dooks struct sm501_devdata *sm = platform_get_drvdata(pdev); 1453331d7475SBen Dooks 1454472dba7dSBen Dooks sm501_set_power(sm, 1); 1455472dba7dSBen Dooks 1456331d7475SBen Dooks sm501_dump_regs(sm); 1457331d7475SBen Dooks sm501_dump_gate(sm); 1458331d7475SBen Dooks sm501_dump_clk(sm); 1459331d7475SBen Dooks 1460331d7475SBen Dooks /* check to see if we are in the same state as when suspended */ 1461331d7475SBen Dooks 1462331d7475SBen Dooks if (readl(sm->regs + SM501_MISC_CONTROL) != sm->pm_misc) { 1463331d7475SBen Dooks dev_info(sm->dev, "SM501_MISC_CONTROL changed over sleep\n"); 1464331d7475SBen Dooks writel(sm->pm_misc, sm->regs + SM501_MISC_CONTROL); 1465331d7475SBen Dooks 1466331d7475SBen Dooks /* our suspend causes the controller state to change, 1467331d7475SBen Dooks * either by something attempting setup, power loss, 1468331d7475SBen Dooks * or an external reset event on power change */ 1469331d7475SBen Dooks 1470331d7475SBen Dooks if (sm->platdata && sm->platdata->init) { 1471331d7475SBen Dooks sm501_init_regs(sm, sm->platdata->init); 1472331d7475SBen Dooks } 1473331d7475SBen Dooks } 1474331d7475SBen Dooks 1475331d7475SBen Dooks /* dump our state from resume */ 1476331d7475SBen Dooks 1477331d7475SBen Dooks sm501_dump_regs(sm); 1478331d7475SBen Dooks sm501_dump_clk(sm); 1479331d7475SBen Dooks 1480331d7475SBen Dooks sm->in_suspend = 0; 1481331d7475SBen Dooks 1482331d7475SBen Dooks return 0; 1483331d7475SBen Dooks } 1484331d7475SBen Dooks #else 1485331d7475SBen Dooks #define sm501_plat_suspend NULL 1486331d7475SBen Dooks #define sm501_plat_resume NULL 1487331d7475SBen Dooks #endif 1488331d7475SBen Dooks 1489b6d6454fSBen Dooks /* Initialisation data for PCI devices */ 1490b6d6454fSBen Dooks 1491b6d6454fSBen Dooks static struct sm501_initdata sm501_pci_initdata = { 1492b6d6454fSBen Dooks .gpio_high = { 1493b6d6454fSBen Dooks .set = 0x3F000000, /* 24bit panel */ 1494b6d6454fSBen Dooks .mask = 0x0, 1495b6d6454fSBen Dooks }, 1496b6d6454fSBen Dooks .misc_timing = { 1497b6d6454fSBen Dooks .set = 0x010100, /* SDRAM timing */ 1498b6d6454fSBen Dooks .mask = 0x1F1F00, 1499b6d6454fSBen Dooks }, 1500b6d6454fSBen Dooks .misc_control = { 1501b6d6454fSBen Dooks .set = SM501_MISC_PNL_24BIT, 1502b6d6454fSBen Dooks .mask = 0, 1503b6d6454fSBen Dooks }, 1504b6d6454fSBen Dooks 1505b6d6454fSBen Dooks .devices = SM501_USE_ALL, 150681906221SBen Dooks 150781906221SBen Dooks /* Errata AB-3 says that 72MHz is the fastest available 150881906221SBen Dooks * for 33MHZ PCI with proper bus-mastering operation */ 150981906221SBen Dooks 151081906221SBen Dooks .mclk = 72 * MHZ, 151181906221SBen Dooks .m1xclk = 144 * MHZ, 1512b6d6454fSBen Dooks }; 1513b6d6454fSBen Dooks 1514b6d6454fSBen Dooks static struct sm501_platdata_fbsub sm501_pdata_fbsub = { 1515b6d6454fSBen Dooks .flags = (SM501FB_FLAG_USE_INIT_MODE | 1516b6d6454fSBen Dooks SM501FB_FLAG_USE_HWCURSOR | 1517b6d6454fSBen Dooks SM501FB_FLAG_USE_HWACCEL | 1518b6d6454fSBen Dooks SM501FB_FLAG_DISABLE_AT_EXIT), 1519b6d6454fSBen Dooks }; 1520b6d6454fSBen Dooks 1521b6d6454fSBen Dooks static struct sm501_platdata_fb sm501_fb_pdata = { 1522b6d6454fSBen Dooks .fb_route = SM501_FB_OWN, 1523b6d6454fSBen Dooks .fb_crt = &sm501_pdata_fbsub, 1524b6d6454fSBen Dooks .fb_pnl = &sm501_pdata_fbsub, 1525b6d6454fSBen Dooks }; 1526b6d6454fSBen Dooks 1527b6d6454fSBen Dooks static struct sm501_platdata sm501_pci_platdata = { 1528b6d6454fSBen Dooks .init = &sm501_pci_initdata, 1529b6d6454fSBen Dooks .fb = &sm501_fb_pdata, 153060e540d6SArnaud Patard .gpio_base = -1, 1531b6d6454fSBen Dooks }; 1532b6d6454fSBen Dooks 1533b6d6454fSBen Dooks static int sm501_pci_probe(struct pci_dev *dev, 1534b6d6454fSBen Dooks const struct pci_device_id *id) 1535b6d6454fSBen Dooks { 1536b6d6454fSBen Dooks struct sm501_devdata *sm; 1537b6d6454fSBen Dooks int err; 1538b6d6454fSBen Dooks 1539b6d6454fSBen Dooks sm = kzalloc(sizeof(struct sm501_devdata), GFP_KERNEL); 1540b6d6454fSBen Dooks if (sm == NULL) { 1541b6d6454fSBen Dooks dev_err(&dev->dev, "no memory for device data\n"); 1542b6d6454fSBen Dooks err = -ENOMEM; 1543b6d6454fSBen Dooks goto err1; 1544b6d6454fSBen Dooks } 1545b6d6454fSBen Dooks 1546b6d6454fSBen Dooks /* set a default set of platform data */ 1547b6d6454fSBen Dooks dev->dev.platform_data = sm->platdata = &sm501_pci_platdata; 1548b6d6454fSBen Dooks 1549b6d6454fSBen Dooks /* set a hopefully unique id for our child platform devices */ 1550b6d6454fSBen Dooks sm->pdev_id = 32 + dev->devfn; 1551b6d6454fSBen Dooks 1552b6d6454fSBen Dooks pci_set_drvdata(dev, sm); 1553b6d6454fSBen Dooks 1554b6d6454fSBen Dooks err = pci_enable_device(dev); 1555b6d6454fSBen Dooks if (err) { 1556b6d6454fSBen Dooks dev_err(&dev->dev, "cannot enable device\n"); 1557b6d6454fSBen Dooks goto err2; 1558b6d6454fSBen Dooks } 1559b6d6454fSBen Dooks 1560b6d6454fSBen Dooks sm->dev = &dev->dev; 1561b6d6454fSBen Dooks sm->irq = dev->irq; 1562b6d6454fSBen Dooks 1563b6d6454fSBen Dooks #ifdef __BIG_ENDIAN 1564b6d6454fSBen Dooks /* if the system is big-endian, we most probably have a 1565b6d6454fSBen Dooks * translation in the IO layer making the PCI bus little endian 1566b6d6454fSBen Dooks * so make the framebuffer swapped pixels */ 1567b6d6454fSBen Dooks 1568b6d6454fSBen Dooks sm501_fb_pdata.flags |= SM501_FBPD_SWAP_FB_ENDIAN; 1569b6d6454fSBen Dooks #endif 1570b6d6454fSBen Dooks 1571b6d6454fSBen Dooks /* check our resources */ 1572b6d6454fSBen Dooks 1573b6d6454fSBen Dooks if (!(pci_resource_flags(dev, 0) & IORESOURCE_MEM)) { 1574b6d6454fSBen Dooks dev_err(&dev->dev, "region #0 is not memory?\n"); 1575b6d6454fSBen Dooks err = -EINVAL; 1576b6d6454fSBen Dooks goto err3; 1577b6d6454fSBen Dooks } 1578b6d6454fSBen Dooks 1579b6d6454fSBen Dooks if (!(pci_resource_flags(dev, 1) & IORESOURCE_MEM)) { 1580b6d6454fSBen Dooks dev_err(&dev->dev, "region #1 is not memory?\n"); 1581b6d6454fSBen Dooks err = -EINVAL; 1582b6d6454fSBen Dooks goto err3; 1583b6d6454fSBen Dooks } 1584b6d6454fSBen Dooks 1585b6d6454fSBen Dooks /* make our resources ready for sharing */ 1586b6d6454fSBen Dooks 1587b6d6454fSBen Dooks sm->io_res = &dev->resource[1]; 1588b6d6454fSBen Dooks sm->mem_res = &dev->resource[0]; 1589b6d6454fSBen Dooks 1590b6d6454fSBen Dooks sm->regs_claim = request_mem_region(sm->io_res->start, 1591b6d6454fSBen Dooks 0x100, "sm501"); 1592b6d6454fSBen Dooks if (sm->regs_claim == NULL) { 1593b6d6454fSBen Dooks dev_err(&dev->dev, "cannot claim registers\n"); 1594b6d6454fSBen Dooks err= -EBUSY; 1595b6d6454fSBen Dooks goto err3; 1596b6d6454fSBen Dooks } 1597b6d6454fSBen Dooks 1598b6d6454fSBen Dooks sm->regs = ioremap(pci_resource_start(dev, 1), 1599b6d6454fSBen Dooks pci_resource_len(dev, 1)); 1600b6d6454fSBen Dooks 1601b6d6454fSBen Dooks if (sm->regs == NULL) { 1602b6d6454fSBen Dooks dev_err(&dev->dev, "cannot remap registers\n"); 1603b6d6454fSBen Dooks err = -EIO; 1604b6d6454fSBen Dooks goto err4; 1605b6d6454fSBen Dooks } 1606b6d6454fSBen Dooks 1607b6d6454fSBen Dooks sm501_init_dev(sm); 1608b6d6454fSBen Dooks return 0; 1609b6d6454fSBen Dooks 1610b6d6454fSBen Dooks err4: 1611b6d6454fSBen Dooks release_resource(sm->regs_claim); 1612b6d6454fSBen Dooks kfree(sm->regs_claim); 1613b6d6454fSBen Dooks err3: 1614b6d6454fSBen Dooks pci_disable_device(dev); 1615b6d6454fSBen Dooks err2: 1616b6d6454fSBen Dooks pci_set_drvdata(dev, NULL); 1617b6d6454fSBen Dooks kfree(sm); 1618b6d6454fSBen Dooks err1: 1619b6d6454fSBen Dooks return err; 1620b6d6454fSBen Dooks } 1621b6d6454fSBen Dooks 1622b6d6454fSBen Dooks static void sm501_remove_sub(struct sm501_devdata *sm, 1623b6d6454fSBen Dooks struct sm501_device *smdev) 1624b6d6454fSBen Dooks { 1625b6d6454fSBen Dooks list_del(&smdev->list); 1626b6d6454fSBen Dooks platform_device_unregister(&smdev->pdev); 1627b6d6454fSBen Dooks } 1628b6d6454fSBen Dooks 1629b6d6454fSBen Dooks static void sm501_dev_remove(struct sm501_devdata *sm) 1630b6d6454fSBen Dooks { 1631b6d6454fSBen Dooks struct sm501_device *smdev, *tmp; 1632b6d6454fSBen Dooks 1633b6d6454fSBen Dooks list_for_each_entry_safe(smdev, tmp, &sm->devices, list) 1634b6d6454fSBen Dooks sm501_remove_sub(sm, smdev); 1635b6d6454fSBen Dooks 1636b6d6454fSBen Dooks device_remove_file(sm->dev, &dev_attr_dbg_regs); 1637f61be273SBen Dooks 1638f61be273SBen Dooks if (sm->gpio.registered) 1639f61be273SBen Dooks sm501_gpio_remove(sm); 1640b6d6454fSBen Dooks } 1641b6d6454fSBen Dooks 1642b6d6454fSBen Dooks static void sm501_pci_remove(struct pci_dev *dev) 1643b6d6454fSBen Dooks { 1644b6d6454fSBen Dooks struct sm501_devdata *sm = pci_get_drvdata(dev); 1645b6d6454fSBen Dooks 1646b6d6454fSBen Dooks sm501_dev_remove(sm); 1647b6d6454fSBen Dooks iounmap(sm->regs); 1648b6d6454fSBen Dooks 1649b6d6454fSBen Dooks release_resource(sm->regs_claim); 1650b6d6454fSBen Dooks kfree(sm->regs_claim); 1651b6d6454fSBen Dooks 1652b6d6454fSBen Dooks pci_set_drvdata(dev, NULL); 1653b6d6454fSBen Dooks pci_disable_device(dev); 1654b6d6454fSBen Dooks } 1655b6d6454fSBen Dooks 1656b6d6454fSBen Dooks static int sm501_plat_remove(struct platform_device *dev) 1657b6d6454fSBen Dooks { 1658b6d6454fSBen Dooks struct sm501_devdata *sm = platform_get_drvdata(dev); 1659b6d6454fSBen Dooks 1660b6d6454fSBen Dooks sm501_dev_remove(sm); 1661b6d6454fSBen Dooks iounmap(sm->regs); 1662b6d6454fSBen Dooks 1663b6d6454fSBen Dooks release_resource(sm->regs_claim); 1664b6d6454fSBen Dooks kfree(sm->regs_claim); 1665b6d6454fSBen Dooks 1666b6d6454fSBen Dooks return 0; 1667b6d6454fSBen Dooks } 1668b6d6454fSBen Dooks 1669b6d6454fSBen Dooks static struct pci_device_id sm501_pci_tbl[] = { 1670b6d6454fSBen Dooks { 0x126f, 0x0501, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0 }, 1671b6d6454fSBen Dooks { 0, }, 1672b6d6454fSBen Dooks }; 1673b6d6454fSBen Dooks 1674b6d6454fSBen Dooks MODULE_DEVICE_TABLE(pci, sm501_pci_tbl); 1675b6d6454fSBen Dooks 1676b6d6454fSBen Dooks static struct pci_driver sm501_pci_drv = { 1677b6d6454fSBen Dooks .name = "sm501", 1678b6d6454fSBen Dooks .id_table = sm501_pci_tbl, 1679b6d6454fSBen Dooks .probe = sm501_pci_probe, 1680b6d6454fSBen Dooks .remove = sm501_pci_remove, 1681b6d6454fSBen Dooks }; 1682b6d6454fSBen Dooks 16834f46d6e7SKay Sievers MODULE_ALIAS("platform:sm501"); 16844f46d6e7SKay Sievers 1685b6d6454fSBen Dooks static struct platform_driver sm501_plat_drv = { 1686b6d6454fSBen Dooks .driver = { 1687b6d6454fSBen Dooks .name = "sm501", 1688b6d6454fSBen Dooks .owner = THIS_MODULE, 1689b6d6454fSBen Dooks }, 1690b6d6454fSBen Dooks .probe = sm501_plat_probe, 1691b6d6454fSBen Dooks .remove = sm501_plat_remove, 1692331d7475SBen Dooks .suspend = sm501_plat_suspend, 1693331d7475SBen Dooks .resume = sm501_plat_resume, 1694b6d6454fSBen Dooks }; 1695b6d6454fSBen Dooks 1696b6d6454fSBen Dooks static int __init sm501_base_init(void) 1697b6d6454fSBen Dooks { 1698b6d6454fSBen Dooks platform_driver_register(&sm501_plat_drv); 1699f15e66b9SRichard Knutsson return pci_register_driver(&sm501_pci_drv); 1700b6d6454fSBen Dooks } 1701b6d6454fSBen Dooks 1702b6d6454fSBen Dooks static void __exit sm501_base_exit(void) 1703b6d6454fSBen Dooks { 1704b6d6454fSBen Dooks platform_driver_unregister(&sm501_plat_drv); 1705b6d6454fSBen Dooks pci_unregister_driver(&sm501_pci_drv); 1706b6d6454fSBen Dooks } 1707b6d6454fSBen Dooks 1708b6d6454fSBen Dooks module_init(sm501_base_init); 1709b6d6454fSBen Dooks module_exit(sm501_base_exit); 1710b6d6454fSBen Dooks 1711b6d6454fSBen Dooks MODULE_DESCRIPTION("SM501 Core Driver"); 1712b6d6454fSBen Dooks MODULE_AUTHOR("Ben Dooks <ben@simtec.co.uk>, Vincent Sanders"); 1713b6d6454fSBen Dooks MODULE_LICENSE("GPL v2"); 1714