[ARM] pxa: make lubbock to use new smc91x platform data
[linux-ginger.git] / arch / arm / mach-pxa / pxa25x.c
blobc5b845b935bb6f5122826507bf640b2deb87e61e
1 /*
2 * linux/arch/arm/mach-pxa/pxa25x.c
4 * Author: Nicolas Pitre
5 * Created: Jun 15, 2001
6 * Copyright: MontaVista Software Inc.
8 * Code specific to PXA21x/25x/26x variants.
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
14 * Since this file should be linked before any other machine specific file,
15 * the __initcall() here will be executed first. This serves as default
16 * initialization stuff for PXA machines which can be overridden later if
17 * need be.
19 #include <linux/module.h>
20 #include <linux/kernel.h>
21 #include <linux/init.h>
22 #include <linux/platform_device.h>
23 #include <linux/suspend.h>
24 #include <linux/sysdev.h>
26 #include <asm/hardware.h>
27 #include <asm/arch/irqs.h>
28 #include <asm/arch/pxa-regs.h>
29 #include <asm/arch/pxa2xx-regs.h>
30 #include <asm/arch/mfp-pxa25x.h>
31 #include <asm/arch/pm.h>
32 #include <asm/arch/dma.h>
34 #include "generic.h"
35 #include "devices.h"
36 #include "clock.h"
39 * Various clock factors driven by the CCCR register.
42 /* Crystal Frequency to Memory Frequency Multiplier (L) */
43 static unsigned char L_clk_mult[32] = { 0, 27, 32, 36, 40, 45, 0, };
45 /* Memory Frequency to Run Mode Frequency Multiplier (M) */
46 static unsigned char M_clk_mult[4] = { 0, 1, 2, 4 };
48 /* Run Mode Frequency to Turbo Mode Frequency Multiplier (N) */
49 /* Note: we store the value N * 2 here. */
50 static unsigned char N2_clk_mult[8] = { 0, 0, 2, 3, 4, 0, 6, 0 };
52 /* Crystal clock */
53 #define BASE_CLK 3686400
56 * Get the clock frequency as reflected by CCCR and the turbo flag.
57 * We assume these values have been applied via a fcs.
58 * If info is not 0 we also display the current settings.
60 unsigned int pxa25x_get_clk_frequency_khz(int info)
62 unsigned long cccr, turbo;
63 unsigned int l, L, m, M, n2, N;
65 cccr = CCCR;
66 asm( "mrc\tp14, 0, %0, c6, c0, 0" : "=r" (turbo) );
68 l = L_clk_mult[(cccr >> 0) & 0x1f];
69 m = M_clk_mult[(cccr >> 5) & 0x03];
70 n2 = N2_clk_mult[(cccr >> 7) & 0x07];
72 L = l * BASE_CLK;
73 M = m * L;
74 N = n2 * M / 2;
76 if(info)
78 L += 5000;
79 printk( KERN_INFO "Memory clock: %d.%02dMHz (*%d)\n",
80 L / 1000000, (L % 1000000) / 10000, l );
81 M += 5000;
82 printk( KERN_INFO "Run Mode clock: %d.%02dMHz (*%d)\n",
83 M / 1000000, (M % 1000000) / 10000, m );
84 N += 5000;
85 printk( KERN_INFO "Turbo Mode clock: %d.%02dMHz (*%d.%d, %sactive)\n",
86 N / 1000000, (N % 1000000) / 10000, n2 / 2, (n2 % 2) * 5,
87 (turbo & 1) ? "" : "in" );
90 return (turbo & 1) ? (N/1000) : (M/1000);
94 * Return the current memory clock frequency in units of 10kHz
96 unsigned int pxa25x_get_memclk_frequency_10khz(void)
98 return L_clk_mult[(CCCR >> 0) & 0x1f] * BASE_CLK / 10000;
101 static unsigned long clk_pxa25x_lcd_getrate(struct clk *clk)
103 return pxa25x_get_memclk_frequency_10khz() * 10000;
106 static const struct clkops clk_pxa25x_lcd_ops = {
107 .enable = clk_cken_enable,
108 .disable = clk_cken_disable,
109 .getrate = clk_pxa25x_lcd_getrate,
112 static unsigned long gpio12_config_32k[] = {
113 GPIO12_32KHz,
116 static unsigned long gpio12_config_gpio[] = {
117 GPIO12_GPIO,
120 static void clk_gpio12_enable(struct clk *clk)
122 pxa2xx_mfp_config(gpio12_config_32k, 1);
125 static void clk_gpio12_disable(struct clk *clk)
127 pxa2xx_mfp_config(gpio12_config_gpio, 1);
130 static const struct clkops clk_pxa25x_gpio12_ops = {
131 .enable = clk_gpio12_enable,
132 .disable = clk_gpio12_disable,
135 static unsigned long gpio11_config_3m6[] = {
136 GPIO11_3_6MHz,
139 static unsigned long gpio11_config_gpio[] = {
140 GPIO11_GPIO,
143 static void clk_gpio11_enable(struct clk *clk)
145 pxa2xx_mfp_config(gpio11_config_3m6, 1);
148 static void clk_gpio11_disable(struct clk *clk)
150 pxa2xx_mfp_config(gpio11_config_gpio, 1);
153 static const struct clkops clk_pxa25x_gpio11_ops = {
154 .enable = clk_gpio11_enable,
155 .disable = clk_gpio11_disable,
159 * 3.6864MHz -> OST, GPIO, SSP, PWM, PLLs (95.842MHz, 147.456MHz)
160 * 95.842MHz -> MMC 19.169MHz, I2C 31.949MHz, FICP 47.923MHz, USB 47.923MHz
161 * 147.456MHz -> UART 14.7456MHz, AC97 12.288MHz, I2S 5.672MHz (allegedly)
163 static struct clk pxa25x_hwuart_clk =
164 INIT_CKEN("UARTCLK", HWUART, 14745600, 1, &pxa_device_hwuart.dev)
168 * PXA 2xx clock declarations. Order is important (see aliases below)
169 * Please be careful not to disrupt the ordering.
171 static struct clk pxa25x_clks[] = {
172 INIT_CK("LCDCLK", LCD, &clk_pxa25x_lcd_ops, &pxa_device_fb.dev),
173 INIT_CKEN("UARTCLK", FFUART, 14745600, 1, &pxa_device_ffuart.dev),
174 INIT_CKEN("UARTCLK", BTUART, 14745600, 1, &pxa_device_btuart.dev),
175 INIT_CKEN("UARTCLK", STUART, 14745600, 1, NULL),
176 INIT_CKEN("UDCCLK", USB, 47923000, 5, &pxa25x_device_udc.dev),
177 INIT_CLK("GPIO11_CLK", &clk_pxa25x_gpio11_ops, 3686400, 0, NULL),
178 INIT_CLK("GPIO12_CLK", &clk_pxa25x_gpio12_ops, 32768, 0, NULL),
179 INIT_CKEN("MMCCLK", MMC, 19169000, 0, &pxa_device_mci.dev),
180 INIT_CKEN("I2CCLK", I2C, 31949000, 0, &pxa_device_i2c.dev),
182 INIT_CKEN("SSPCLK", SSP, 3686400, 0, &pxa25x_device_ssp.dev),
183 INIT_CKEN("SSPCLK", NSSP, 3686400, 0, &pxa25x_device_nssp.dev),
184 INIT_CKEN("SSPCLK", ASSP, 3686400, 0, &pxa25x_device_assp.dev),
185 INIT_CKEN("PWMCLK", PWM0, 3686400, 0, &pxa25x_device_pwm0.dev),
186 INIT_CKEN("PWMCLK", PWM1, 3686400, 0, &pxa25x_device_pwm1.dev),
188 INIT_CKEN("AC97CLK", AC97, 24576000, 0, NULL),
191 INIT_CKEN("I2SCLK", I2S, 14745600, 0, NULL),
193 INIT_CKEN("FICPCLK", FICP, 47923000, 0, NULL),
196 static struct clk pxa2xx_clk_aliases[] = {
197 INIT_CKOTHER("GPIO7_CLK", &pxa25x_clks[4], NULL),
198 INIT_CKOTHER("SA1111_CLK", &pxa25x_clks[5], NULL),
201 #ifdef CONFIG_PM
203 #define SAVE(x) sleep_save[SLEEP_SAVE_##x] = x
204 #define RESTORE(x) x = sleep_save[SLEEP_SAVE_##x]
207 * List of global PXA peripheral registers to preserve.
208 * More ones like CP and general purpose register values are preserved
209 * with the stack pointer in sleep.S.
211 enum { SLEEP_SAVE_PGSR0, SLEEP_SAVE_PGSR1, SLEEP_SAVE_PGSR2,
213 SLEEP_SAVE_GAFR0_L, SLEEP_SAVE_GAFR0_U,
214 SLEEP_SAVE_GAFR1_L, SLEEP_SAVE_GAFR1_U,
215 SLEEP_SAVE_GAFR2_L, SLEEP_SAVE_GAFR2_U,
217 SLEEP_SAVE_PSTR,
219 SLEEP_SAVE_CKEN,
221 SLEEP_SAVE_COUNT
225 static void pxa25x_cpu_pm_save(unsigned long *sleep_save)
227 SAVE(PGSR0); SAVE(PGSR1); SAVE(PGSR2);
229 SAVE(GAFR0_L); SAVE(GAFR0_U);
230 SAVE(GAFR1_L); SAVE(GAFR1_U);
231 SAVE(GAFR2_L); SAVE(GAFR2_U);
233 SAVE(CKEN);
234 SAVE(PSTR);
236 /* Clear GPIO transition detect bits */
237 GEDR0 = GEDR0; GEDR1 = GEDR1; GEDR2 = GEDR2;
240 static void pxa25x_cpu_pm_restore(unsigned long *sleep_save)
242 /* ensure not to come back here if it wasn't intended */
243 PSPR = 0;
245 /* restore registers */
246 RESTORE(GAFR0_L); RESTORE(GAFR0_U);
247 RESTORE(GAFR1_L); RESTORE(GAFR1_U);
248 RESTORE(GAFR2_L); RESTORE(GAFR2_U);
249 RESTORE(PGSR0); RESTORE(PGSR1); RESTORE(PGSR2);
251 PSSR = PSSR_RDH | PSSR_PH;
253 RESTORE(CKEN);
254 RESTORE(PSTR);
257 static void pxa25x_cpu_pm_enter(suspend_state_t state)
259 /* Clear reset status */
260 RCSR = RCSR_HWR | RCSR_WDR | RCSR_SMR | RCSR_GPR;
262 switch (state) {
263 case PM_SUSPEND_MEM:
264 /* set resume return address */
265 PSPR = virt_to_phys(pxa_cpu_resume);
266 pxa25x_cpu_suspend(PWRMODE_SLEEP);
267 break;
271 static struct pxa_cpu_pm_fns pxa25x_cpu_pm_fns = {
272 .save_count = SLEEP_SAVE_COUNT,
273 .valid = suspend_valid_only_mem,
274 .save = pxa25x_cpu_pm_save,
275 .restore = pxa25x_cpu_pm_restore,
276 .enter = pxa25x_cpu_pm_enter,
279 static void __init pxa25x_init_pm(void)
281 pxa_cpu_pm_fns = &pxa25x_cpu_pm_fns;
283 #else
284 static inline void pxa25x_init_pm(void) {}
285 #endif
287 /* PXA25x: supports wakeup from GPIO0..GPIO15 and RTC alarm
290 static int pxa25x_set_wake(unsigned int irq, unsigned int on)
292 int gpio = IRQ_TO_GPIO(irq);
293 uint32_t mask = 0;
295 if (gpio >= 0 && gpio < 85)
296 return gpio_set_wake(gpio, on);
298 if (irq == IRQ_RTCAlrm) {
299 mask = PWER_RTC;
300 goto set_pwer;
303 return -EINVAL;
305 set_pwer:
306 if (on)
307 PWER |= mask;
308 else
309 PWER &=~mask;
311 return 0;
314 void __init pxa25x_init_irq(void)
316 pxa_init_irq(32, pxa25x_set_wake);
317 pxa_init_gpio(85, pxa25x_set_wake);
320 static struct platform_device *pxa25x_devices[] __initdata = {
321 &pxa25x_device_udc,
322 &pxa_device_ffuart,
323 &pxa_device_btuart,
324 &pxa_device_stuart,
325 &pxa_device_i2s,
326 &pxa_device_rtc,
327 &pxa25x_device_ssp,
328 &pxa25x_device_nssp,
329 &pxa25x_device_assp,
330 &pxa25x_device_pwm0,
331 &pxa25x_device_pwm1,
334 static struct sys_device pxa25x_sysdev[] = {
336 .cls = &pxa_irq_sysclass,
337 }, {
338 .cls = &pxa_gpio_sysclass,
342 static int __init pxa25x_init(void)
344 int i, ret = 0;
346 /* Only add HWUART for PXA255/26x; PXA210/250/27x do not have it. */
347 if (cpu_is_pxa255())
348 clks_register(&pxa25x_hwuart_clk, 1);
350 if (cpu_is_pxa21x() || cpu_is_pxa25x()) {
351 clks_register(pxa25x_clks, ARRAY_SIZE(pxa25x_clks));
353 if ((ret = pxa_init_dma(16)))
354 return ret;
356 pxa25x_init_pm();
358 for (i = 0; i < ARRAY_SIZE(pxa25x_sysdev); i++) {
359 ret = sysdev_register(&pxa25x_sysdev[i]);
360 if (ret)
361 pr_err("failed to register sysdev[%d]\n", i);
364 ret = platform_add_devices(pxa25x_devices,
365 ARRAY_SIZE(pxa25x_devices));
366 if (ret)
367 return ret;
370 /* Only add HWUART for PXA255/26x; PXA210/250/27x do not have it. */
371 if (cpu_is_pxa255())
372 ret = platform_device_register(&pxa_device_hwuart);
374 clks_register(pxa2xx_clk_aliases, ARRAY_SIZE(pxa2xx_clk_aliases));
376 return ret;
379 postcore_initcall(pxa25x_init);