xref: /openbmc/linux/drivers/mfd/sm501.c (revision 3149be50d3a31df095bcc83d752293da65a37f62)
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>
22b6d6454fSBen Dooks 
23b6d6454fSBen Dooks #include <linux/sm501.h>
24b6d6454fSBen Dooks #include <linux/sm501-regs.h>
25b6d6454fSBen Dooks 
26b6d6454fSBen Dooks #include <asm/io.h>
27b6d6454fSBen Dooks 
28b6d6454fSBen Dooks struct sm501_device {
29b6d6454fSBen Dooks 	struct list_head		list;
30b6d6454fSBen Dooks 	struct platform_device		pdev;
31b6d6454fSBen Dooks };
32b6d6454fSBen Dooks 
33b6d6454fSBen Dooks struct sm501_devdata {
34b6d6454fSBen Dooks 	spinlock_t			 reg_lock;
35b6d6454fSBen Dooks 	struct mutex			 clock_lock;
36b6d6454fSBen Dooks 	struct list_head		 devices;
37b6d6454fSBen Dooks 
38b6d6454fSBen Dooks 	struct device			*dev;
39b6d6454fSBen Dooks 	struct resource			*io_res;
40b6d6454fSBen Dooks 	struct resource			*mem_res;
41b6d6454fSBen Dooks 	struct resource			*regs_claim;
42b6d6454fSBen Dooks 	struct sm501_platdata		*platdata;
43b6d6454fSBen Dooks 
44331d7475SBen Dooks 	unsigned int			 in_suspend;
45331d7475SBen Dooks 	unsigned long			 pm_misc;
46331d7475SBen Dooks 
47b6d6454fSBen Dooks 	int				 unit_power[20];
48b6d6454fSBen Dooks 	unsigned int			 pdev_id;
49b6d6454fSBen Dooks 	unsigned int			 irq;
50b6d6454fSBen Dooks 	void __iomem			*regs;
51*3149be50SVille Syrjala 	unsigned int			 rev;
52b6d6454fSBen Dooks };
53b6d6454fSBen Dooks 
54b6d6454fSBen Dooks #define MHZ (1000 * 1000)
55b6d6454fSBen Dooks 
56b6d6454fSBen Dooks #ifdef DEBUG
57245904a4SVille Syrjala static const unsigned int div_tab[] = {
58b6d6454fSBen Dooks 	[0]		= 1,
59b6d6454fSBen Dooks 	[1]		= 2,
60b6d6454fSBen Dooks 	[2]		= 4,
61b6d6454fSBen Dooks 	[3]		= 8,
62b6d6454fSBen Dooks 	[4]		= 16,
63b6d6454fSBen Dooks 	[5]		= 32,
64b6d6454fSBen Dooks 	[6]		= 64,
65b6d6454fSBen Dooks 	[7]		= 128,
66b6d6454fSBen Dooks 	[8]		= 3,
67b6d6454fSBen Dooks 	[9]		= 6,
68b6d6454fSBen Dooks 	[10]	        = 12,
69b6d6454fSBen Dooks 	[11]		= 24,
70b6d6454fSBen Dooks 	[12]		= 48,
71b6d6454fSBen Dooks 	[13]		= 96,
72b6d6454fSBen Dooks 	[14]		= 192,
73b6d6454fSBen Dooks 	[15]		= 384,
74b6d6454fSBen Dooks 	[16]		= 5,
75b6d6454fSBen Dooks 	[17]		= 10,
76b6d6454fSBen Dooks 	[18]		= 20,
77b6d6454fSBen Dooks 	[19]		= 40,
78b6d6454fSBen Dooks 	[20]		= 80,
79b6d6454fSBen Dooks 	[21]		= 160,
80b6d6454fSBen Dooks 	[22]		= 320,
81b6d6454fSBen Dooks 	[23]		= 604,
82b6d6454fSBen Dooks };
83b6d6454fSBen Dooks 
84b6d6454fSBen Dooks static unsigned long decode_div(unsigned long pll2, unsigned long val,
85b6d6454fSBen Dooks 				unsigned int lshft, unsigned int selbit,
86245904a4SVille Syrjala 				unsigned long mask)
87b6d6454fSBen Dooks {
88b6d6454fSBen Dooks 	if (val & selbit)
89b6d6454fSBen Dooks 		pll2 = 288 * MHZ;
90b6d6454fSBen Dooks 
91245904a4SVille Syrjala 	return pll2 / div_tab[(val >> lshft) & mask];
92b6d6454fSBen Dooks }
93b6d6454fSBen Dooks 
94b6d6454fSBen Dooks #define fmt_freq(x) ((x) / MHZ), ((x) % MHZ), (x)
95b6d6454fSBen Dooks 
96b6d6454fSBen Dooks /* sm501_dump_clk
97b6d6454fSBen Dooks  *
98b6d6454fSBen Dooks  * Print out the current clock configuration for the device
99b6d6454fSBen Dooks */
100b6d6454fSBen Dooks 
101b6d6454fSBen Dooks static void sm501_dump_clk(struct sm501_devdata *sm)
102b6d6454fSBen Dooks {
103b6d6454fSBen Dooks 	unsigned long misct = readl(sm->regs + SM501_MISC_TIMING);
104b6d6454fSBen Dooks 	unsigned long pm0 = readl(sm->regs + SM501_POWER_MODE_0_CLOCK);
105b6d6454fSBen Dooks 	unsigned long pm1 = readl(sm->regs + SM501_POWER_MODE_1_CLOCK);
106b6d6454fSBen Dooks 	unsigned long pmc = readl(sm->regs + SM501_POWER_MODE_CONTROL);
107b6d6454fSBen Dooks 	unsigned long sdclk0, sdclk1;
108b6d6454fSBen Dooks 	unsigned long pll2 = 0;
109b6d6454fSBen Dooks 
110b6d6454fSBen Dooks 	switch (misct & 0x30) {
111b6d6454fSBen Dooks 	case 0x00:
112b6d6454fSBen Dooks 		pll2 = 336 * MHZ;
113b6d6454fSBen Dooks 		break;
114b6d6454fSBen Dooks 	case 0x10:
115b6d6454fSBen Dooks 		pll2 = 288 * MHZ;
116b6d6454fSBen Dooks 		break;
117b6d6454fSBen Dooks 	case 0x20:
118b6d6454fSBen Dooks 		pll2 = 240 * MHZ;
119b6d6454fSBen Dooks 		break;
120b6d6454fSBen Dooks 	case 0x30:
121b6d6454fSBen Dooks 		pll2 = 192 * MHZ;
122b6d6454fSBen Dooks 		break;
123b6d6454fSBen Dooks 	}
124b6d6454fSBen Dooks 
125b6d6454fSBen Dooks 	sdclk0 = (misct & (1<<12)) ? pll2 : 288 * MHZ;
126245904a4SVille Syrjala 	sdclk0 /= div_tab[((misct >> 8) & 0xf)];
127b6d6454fSBen Dooks 
128b6d6454fSBen Dooks 	sdclk1 = (misct & (1<<20)) ? pll2 : 288 * MHZ;
129245904a4SVille Syrjala 	sdclk1 /= div_tab[((misct >> 16) & 0xf)];
130b6d6454fSBen Dooks 
131b6d6454fSBen Dooks 	dev_dbg(sm->dev, "MISCT=%08lx, PM0=%08lx, PM1=%08lx\n",
132b6d6454fSBen Dooks 		misct, pm0, pm1);
133b6d6454fSBen Dooks 
134b6d6454fSBen Dooks 	dev_dbg(sm->dev, "PLL2 = %ld.%ld MHz (%ld), SDCLK0=%08lx, SDCLK1=%08lx\n",
135b6d6454fSBen Dooks 		fmt_freq(pll2), sdclk0, sdclk1);
136b6d6454fSBen Dooks 
137b6d6454fSBen Dooks 	dev_dbg(sm->dev, "SDRAM: PM0=%ld, PM1=%ld\n", sdclk0, sdclk1);
138b6d6454fSBen Dooks 
139b6d6454fSBen Dooks 	dev_dbg(sm->dev, "PM0[%c]: "
140b6d6454fSBen Dooks 		 "P2 %ld.%ld MHz (%ld), V2 %ld.%ld (%ld), "
14148986f06SBen Dooks 		 "M %ld.%ld (%ld), MX1 %ld.%ld (%ld)\n",
142b6d6454fSBen Dooks 		 (pmc & 3 ) == 0 ? '*' : '-',
143245904a4SVille Syrjala 		 fmt_freq(decode_div(pll2, pm0, 24, 1<<29, 31)),
144245904a4SVille Syrjala 		 fmt_freq(decode_div(pll2, pm0, 16, 1<<20, 15)),
145245904a4SVille Syrjala 		 fmt_freq(decode_div(pll2, pm0, 8,  1<<12, 15)),
146245904a4SVille Syrjala 		 fmt_freq(decode_div(pll2, pm0, 0,  1<<4,  15)));
147b6d6454fSBen Dooks 
148b6d6454fSBen Dooks 	dev_dbg(sm->dev, "PM1[%c]: "
149b6d6454fSBen Dooks 		"P2 %ld.%ld MHz (%ld), V2 %ld.%ld (%ld), "
150b6d6454fSBen Dooks 		"M %ld.%ld (%ld), MX1 %ld.%ld (%ld)\n",
151b6d6454fSBen Dooks 		(pmc & 3 ) == 1 ? '*' : '-',
152245904a4SVille Syrjala 		fmt_freq(decode_div(pll2, pm1, 24, 1<<29, 31)),
153245904a4SVille Syrjala 		fmt_freq(decode_div(pll2, pm1, 16, 1<<20, 15)),
154245904a4SVille Syrjala 		fmt_freq(decode_div(pll2, pm1, 8,  1<<12, 15)),
155245904a4SVille Syrjala 		fmt_freq(decode_div(pll2, pm1, 0,  1<<4,  15)));
156b6d6454fSBen Dooks }
157331d7475SBen Dooks 
158331d7475SBen Dooks static void sm501_dump_regs(struct sm501_devdata *sm)
159b6d6454fSBen Dooks {
160331d7475SBen Dooks 	void __iomem *regs = sm->regs;
161331d7475SBen Dooks 
162331d7475SBen Dooks 	dev_info(sm->dev, "System Control   %08x\n",
163331d7475SBen Dooks 			readl(regs + SM501_SYSTEM_CONTROL));
164331d7475SBen Dooks 	dev_info(sm->dev, "Misc Control     %08x\n",
165331d7475SBen Dooks 			readl(regs + SM501_MISC_CONTROL));
166331d7475SBen Dooks 	dev_info(sm->dev, "GPIO Control Low %08x\n",
167331d7475SBen Dooks 			readl(regs + SM501_GPIO31_0_CONTROL));
168331d7475SBen Dooks 	dev_info(sm->dev, "GPIO Control Hi  %08x\n",
169331d7475SBen Dooks 			readl(regs + SM501_GPIO63_32_CONTROL));
170331d7475SBen Dooks 	dev_info(sm->dev, "DRAM Control     %08x\n",
171331d7475SBen Dooks 			readl(regs + SM501_DRAM_CONTROL));
172331d7475SBen Dooks 	dev_info(sm->dev, "Arbitration Ctrl %08x\n",
173331d7475SBen Dooks 			readl(regs + SM501_ARBTRTN_CONTROL));
174331d7475SBen Dooks 	dev_info(sm->dev, "Misc Timing      %08x\n",
175331d7475SBen Dooks 			readl(regs + SM501_MISC_TIMING));
176b6d6454fSBen Dooks }
177331d7475SBen Dooks 
178331d7475SBen Dooks static void sm501_dump_gate(struct sm501_devdata *sm)
179331d7475SBen Dooks {
180331d7475SBen Dooks 	dev_info(sm->dev, "CurrentGate      %08x\n",
181331d7475SBen Dooks 			readl(sm->regs + SM501_CURRENT_GATE));
182331d7475SBen Dooks 	dev_info(sm->dev, "CurrentClock     %08x\n",
183331d7475SBen Dooks 			readl(sm->regs + SM501_CURRENT_CLOCK));
184331d7475SBen Dooks 	dev_info(sm->dev, "PowerModeControl %08x\n",
185331d7475SBen Dooks 			readl(sm->regs + SM501_POWER_MODE_CONTROL));
186331d7475SBen Dooks }
187331d7475SBen Dooks 
188331d7475SBen Dooks #else
189331d7475SBen Dooks static inline void sm501_dump_gate(struct sm501_devdata *sm) { }
190331d7475SBen Dooks static inline void sm501_dump_regs(struct sm501_devdata *sm) { }
191331d7475SBen Dooks static inline void sm501_dump_clk(struct sm501_devdata *sm) { }
192b6d6454fSBen Dooks #endif
193b6d6454fSBen Dooks 
194b6d6454fSBen Dooks /* sm501_sync_regs
195b6d6454fSBen Dooks  *
196b6d6454fSBen Dooks  * ensure the
197b6d6454fSBen Dooks */
198b6d6454fSBen Dooks 
199b6d6454fSBen Dooks static void sm501_sync_regs(struct sm501_devdata *sm)
200b6d6454fSBen Dooks {
201b6d6454fSBen Dooks 	readl(sm->regs);
202b6d6454fSBen Dooks }
203b6d6454fSBen Dooks 
204331d7475SBen Dooks static inline void sm501_mdelay(struct sm501_devdata *sm, unsigned int delay)
205331d7475SBen Dooks {
206331d7475SBen Dooks 	/* during suspend/resume, we are currently not allowed to sleep,
207331d7475SBen Dooks 	 * so change to using mdelay() instead of msleep() if we
208331d7475SBen Dooks 	 * are in one of these paths */
209331d7475SBen Dooks 
210331d7475SBen Dooks 	if (sm->in_suspend)
211331d7475SBen Dooks 		mdelay(delay);
212331d7475SBen Dooks 	else
213331d7475SBen Dooks 		msleep(delay);
214331d7475SBen Dooks }
215331d7475SBen Dooks 
216b6d6454fSBen Dooks /* sm501_misc_control
217b6d6454fSBen Dooks  *
218331d7475SBen Dooks  * alters the miscellaneous control parameters
219b6d6454fSBen Dooks */
220b6d6454fSBen Dooks 
221b6d6454fSBen Dooks int sm501_misc_control(struct device *dev,
222b6d6454fSBen Dooks 		       unsigned long set, unsigned long clear)
223b6d6454fSBen Dooks {
224b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
225b6d6454fSBen Dooks 	unsigned long misc;
226b6d6454fSBen Dooks 	unsigned long save;
227b6d6454fSBen Dooks 	unsigned long to;
228b6d6454fSBen Dooks 
229b6d6454fSBen Dooks 	spin_lock_irqsave(&sm->reg_lock, save);
230b6d6454fSBen Dooks 
231b6d6454fSBen Dooks 	misc = readl(sm->regs + SM501_MISC_CONTROL);
232b6d6454fSBen Dooks 	to = (misc & ~clear) | set;
233b6d6454fSBen Dooks 
234b6d6454fSBen Dooks 	if (to != misc) {
235b6d6454fSBen Dooks 		writel(to, sm->regs + SM501_MISC_CONTROL);
236b6d6454fSBen Dooks 		sm501_sync_regs(sm);
237b6d6454fSBen Dooks 
238b6d6454fSBen Dooks 		dev_dbg(sm->dev, "MISC_CONTROL %08lx\n", misc);
239b6d6454fSBen Dooks 	}
240b6d6454fSBen Dooks 
241b6d6454fSBen Dooks 	spin_unlock_irqrestore(&sm->reg_lock, save);
242b6d6454fSBen Dooks 	return to;
243b6d6454fSBen Dooks }
244b6d6454fSBen Dooks 
245b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_misc_control);
246b6d6454fSBen Dooks 
247b6d6454fSBen Dooks /* sm501_modify_reg
248b6d6454fSBen Dooks  *
249b6d6454fSBen Dooks  * Modify a register in the SM501 which may be shared with other
250b6d6454fSBen Dooks  * drivers.
251b6d6454fSBen Dooks */
252b6d6454fSBen Dooks 
253b6d6454fSBen Dooks unsigned long sm501_modify_reg(struct device *dev,
254b6d6454fSBen Dooks 			       unsigned long reg,
255b6d6454fSBen Dooks 			       unsigned long set,
256b6d6454fSBen Dooks 			       unsigned long clear)
257b6d6454fSBen Dooks {
258b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
259b6d6454fSBen Dooks 	unsigned long data;
260b6d6454fSBen Dooks 	unsigned long save;
261b6d6454fSBen Dooks 
262b6d6454fSBen Dooks 	spin_lock_irqsave(&sm->reg_lock, save);
263b6d6454fSBen Dooks 
264b6d6454fSBen Dooks 	data = readl(sm->regs + reg);
265b6d6454fSBen Dooks 	data |= set;
266b6d6454fSBen Dooks 	data &= ~clear;
267b6d6454fSBen Dooks 
268b6d6454fSBen Dooks 	writel(data, sm->regs + reg);
269b6d6454fSBen Dooks 	sm501_sync_regs(sm);
270b6d6454fSBen Dooks 
271b6d6454fSBen Dooks 	spin_unlock_irqrestore(&sm->reg_lock, save);
272b6d6454fSBen Dooks 
273b6d6454fSBen Dooks 	return data;
274b6d6454fSBen Dooks }
275b6d6454fSBen Dooks 
276b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_modify_reg);
277b6d6454fSBen Dooks 
278b6d6454fSBen Dooks unsigned long sm501_gpio_get(struct device *dev,
279b6d6454fSBen Dooks 			     unsigned long gpio)
280b6d6454fSBen Dooks {
281b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
282b6d6454fSBen Dooks 	unsigned long result;
283b6d6454fSBen Dooks 	unsigned long reg;
284b6d6454fSBen Dooks 
285b6d6454fSBen Dooks 	reg = (gpio > 32) ? SM501_GPIO_DATA_HIGH : SM501_GPIO_DATA_LOW;
286b6d6454fSBen Dooks 	result = readl(sm->regs + reg);
287b6d6454fSBen Dooks 
288b6d6454fSBen Dooks 	result >>= (gpio & 31);
289b6d6454fSBen Dooks 	return result & 1UL;
290b6d6454fSBen Dooks }
291b6d6454fSBen Dooks 
292b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_gpio_get);
293b6d6454fSBen Dooks 
294b6d6454fSBen Dooks void sm501_gpio_set(struct device *dev,
295b6d6454fSBen Dooks 		    unsigned long gpio,
296b6d6454fSBen Dooks 		    unsigned int to,
297b6d6454fSBen Dooks 		    unsigned int dir)
298b6d6454fSBen Dooks {
299b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
300b6d6454fSBen Dooks 
301b6d6454fSBen Dooks 	unsigned long bit = 1 << (gpio & 31);
302b6d6454fSBen Dooks 	unsigned long base;
303b6d6454fSBen Dooks 	unsigned long save;
304b6d6454fSBen Dooks 	unsigned long val;
305b6d6454fSBen Dooks 
306b6d6454fSBen Dooks 	base = (gpio > 32) ? SM501_GPIO_DATA_HIGH : SM501_GPIO_DATA_LOW;
307b6d6454fSBen Dooks 	base += SM501_GPIO;
308b6d6454fSBen Dooks 
309b6d6454fSBen Dooks 	spin_lock_irqsave(&sm->reg_lock, save);
310b6d6454fSBen Dooks 
311b6d6454fSBen Dooks 	val = readl(sm->regs + base) & ~bit;
312b6d6454fSBen Dooks 	if (to)
313b6d6454fSBen Dooks 		val |= bit;
314b6d6454fSBen Dooks 	writel(val, sm->regs + base);
315b6d6454fSBen Dooks 
316b6d6454fSBen Dooks 	val = readl(sm->regs + SM501_GPIO_DDR_LOW) & ~bit;
317b6d6454fSBen Dooks 	if (dir)
318b6d6454fSBen Dooks 		val |= bit;
319b6d6454fSBen Dooks 
320b6d6454fSBen Dooks 	writel(val, sm->regs + SM501_GPIO_DDR_LOW);
321b6d6454fSBen Dooks 	sm501_sync_regs(sm);
322b6d6454fSBen Dooks 
323b6d6454fSBen Dooks 	spin_unlock_irqrestore(&sm->reg_lock, save);
324b6d6454fSBen Dooks 
325b6d6454fSBen Dooks }
326b6d6454fSBen Dooks 
327b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_gpio_set);
328b6d6454fSBen Dooks 
329b6d6454fSBen Dooks 
330b6d6454fSBen Dooks /* sm501_unit_power
331b6d6454fSBen Dooks  *
332b6d6454fSBen Dooks  * alters the power active gate to set specific units on or off
333b6d6454fSBen Dooks  */
334b6d6454fSBen Dooks 
335b6d6454fSBen Dooks int sm501_unit_power(struct device *dev, unsigned int unit, unsigned int to)
336b6d6454fSBen Dooks {
337b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
338b6d6454fSBen Dooks 	unsigned long mode;
339b6d6454fSBen Dooks 	unsigned long gate;
340b6d6454fSBen Dooks 	unsigned long clock;
341b6d6454fSBen Dooks 
342b6d6454fSBen Dooks 	mutex_lock(&sm->clock_lock);
343b6d6454fSBen Dooks 
344b6d6454fSBen Dooks 	mode = readl(sm->regs + SM501_POWER_MODE_CONTROL);
345b6d6454fSBen Dooks 	gate = readl(sm->regs + SM501_CURRENT_GATE);
346b6d6454fSBen Dooks 	clock = readl(sm->regs + SM501_CURRENT_CLOCK);
347b6d6454fSBen Dooks 
348b6d6454fSBen Dooks 	mode &= 3;		/* get current power mode */
349b6d6454fSBen Dooks 
350bf703c3fSAdrian Bunk 	if (unit >= ARRAY_SIZE(sm->unit_power)) {
351b6d6454fSBen Dooks 		dev_err(dev, "%s: bad unit %d\n", __FUNCTION__, unit);
352b6d6454fSBen Dooks 		goto already;
353b6d6454fSBen Dooks 	}
354b6d6454fSBen Dooks 
355b6d6454fSBen Dooks 	dev_dbg(sm->dev, "%s: unit %d, cur %d, to %d\n", __FUNCTION__, unit,
356b6d6454fSBen Dooks 		sm->unit_power[unit], to);
357b6d6454fSBen Dooks 
358b6d6454fSBen Dooks 	if (to == 0 && sm->unit_power[unit] == 0) {
359b6d6454fSBen Dooks 		dev_err(sm->dev, "unit %d is already shutdown\n", unit);
360b6d6454fSBen Dooks 		goto already;
361b6d6454fSBen Dooks 	}
362b6d6454fSBen Dooks 
363b6d6454fSBen Dooks 	sm->unit_power[unit] += to ? 1 : -1;
364b6d6454fSBen Dooks 	to = sm->unit_power[unit] ? 1 : 0;
365b6d6454fSBen Dooks 
366b6d6454fSBen Dooks 	if (to) {
367b6d6454fSBen Dooks 		if (gate & (1 << unit))
368b6d6454fSBen Dooks 			goto already;
369b6d6454fSBen Dooks 		gate |= (1 << unit);
370b6d6454fSBen Dooks 	} else {
371b6d6454fSBen Dooks 		if (!(gate & (1 << unit)))
372b6d6454fSBen Dooks 			goto already;
373b6d6454fSBen Dooks 		gate &= ~(1 << unit);
374b6d6454fSBen Dooks 	}
375b6d6454fSBen Dooks 
376b6d6454fSBen Dooks 	switch (mode) {
377b6d6454fSBen Dooks 	case 1:
378b6d6454fSBen Dooks 		writel(gate, sm->regs + SM501_POWER_MODE_0_GATE);
379b6d6454fSBen Dooks 		writel(clock, sm->regs + SM501_POWER_MODE_0_CLOCK);
380b6d6454fSBen Dooks 		mode = 0;
381b6d6454fSBen Dooks 		break;
382b6d6454fSBen Dooks 	case 2:
383b6d6454fSBen Dooks 	case 0:
384b6d6454fSBen Dooks 		writel(gate, sm->regs + SM501_POWER_MODE_1_GATE);
385b6d6454fSBen Dooks 		writel(clock, sm->regs + SM501_POWER_MODE_1_CLOCK);
386b6d6454fSBen Dooks 		mode = 1;
387b6d6454fSBen Dooks 		break;
388b6d6454fSBen Dooks 
389b6d6454fSBen Dooks 	default:
390b6d6454fSBen Dooks 		return -1;
391b6d6454fSBen Dooks 	}
392b6d6454fSBen Dooks 
393b6d6454fSBen Dooks 	writel(mode, sm->regs + SM501_POWER_MODE_CONTROL);
394b6d6454fSBen Dooks 	sm501_sync_regs(sm);
395b6d6454fSBen Dooks 
396b6d6454fSBen Dooks 	dev_dbg(sm->dev, "gate %08lx, clock %08lx, mode %08lx\n",
397b6d6454fSBen Dooks 		gate, clock, mode);
398b6d6454fSBen Dooks 
399331d7475SBen Dooks 	sm501_mdelay(sm, 16);
400b6d6454fSBen Dooks 
401b6d6454fSBen Dooks  already:
402b6d6454fSBen Dooks 	mutex_unlock(&sm->clock_lock);
403b6d6454fSBen Dooks 	return gate;
404b6d6454fSBen Dooks }
405b6d6454fSBen Dooks 
406b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_unit_power);
407b6d6454fSBen Dooks 
408b6d6454fSBen Dooks 
409b6d6454fSBen Dooks /* Perform a rounded division. */
410b6d6454fSBen Dooks static long sm501fb_round_div(long num, long denom)
411b6d6454fSBen Dooks {
412b6d6454fSBen Dooks         /* n / d + 1 / 2 = (2n + d) / 2d */
413b6d6454fSBen Dooks         return (2 * num + denom) / (2 * denom);
414b6d6454fSBen Dooks }
415b6d6454fSBen Dooks 
416b6d6454fSBen Dooks /* clock value structure. */
417b6d6454fSBen Dooks struct sm501_clock {
418b6d6454fSBen Dooks 	unsigned long mclk;
419b6d6454fSBen Dooks 	int divider;
420b6d6454fSBen Dooks 	int shift;
421*3149be50SVille Syrjala 	unsigned int m, n, k;
422b6d6454fSBen Dooks };
423b6d6454fSBen Dooks 
424*3149be50SVille Syrjala /* sm501_calc_clock
425b6d6454fSBen Dooks  *
426*3149be50SVille Syrjala  * Calculates the nearest discrete clock frequency that
427*3149be50SVille Syrjala  * can be achieved with the specified input clock.
428b6d6454fSBen Dooks  *   the maximum divisor is 3 or 5
429b6d6454fSBen Dooks  */
430*3149be50SVille Syrjala 
431*3149be50SVille Syrjala static int sm501_calc_clock(unsigned long freq,
432b6d6454fSBen Dooks 			    struct sm501_clock *clock,
433*3149be50SVille Syrjala 			    int max_div,
434*3149be50SVille Syrjala 			    unsigned long mclk,
435*3149be50SVille Syrjala 			    long *best_diff)
436b6d6454fSBen Dooks {
437*3149be50SVille Syrjala 	int ret = 0;
438b6d6454fSBen Dooks 	int divider;
439b6d6454fSBen Dooks 	int shift;
440b6d6454fSBen Dooks 	long diff;
441b6d6454fSBen Dooks 
442b6d6454fSBen Dooks 	/* try dividers 1 and 3 for CRT and for panel,
443b6d6454fSBen Dooks 	   try divider 5 for panel only.*/
444b6d6454fSBen Dooks 
445b6d6454fSBen Dooks 	for (divider = 1; divider <= max_div; divider += 2) {
446b6d6454fSBen Dooks 		/* try all 8 shift values.*/
447b6d6454fSBen Dooks 		for (shift = 0; shift < 8; shift++) {
448b6d6454fSBen Dooks 			/* Calculate difference to requested clock */
449b6d6454fSBen Dooks 			diff = sm501fb_round_div(mclk, divider << shift) - freq;
450b6d6454fSBen Dooks 			if (diff < 0)
451b6d6454fSBen Dooks 				diff = -diff;
452b6d6454fSBen Dooks 
453b6d6454fSBen Dooks 			/* If it is less than the current, use it */
454*3149be50SVille Syrjala 			if (diff < *best_diff) {
455*3149be50SVille Syrjala 				*best_diff = diff;
456b6d6454fSBen Dooks 
457b6d6454fSBen Dooks 				clock->mclk = mclk;
458b6d6454fSBen Dooks 				clock->divider = divider;
459b6d6454fSBen Dooks 				clock->shift = shift;
460*3149be50SVille Syrjala 				ret = 1;
461b6d6454fSBen Dooks 			}
462b6d6454fSBen Dooks 		}
463b6d6454fSBen Dooks 	}
464*3149be50SVille Syrjala 
465*3149be50SVille Syrjala 	return ret;
466*3149be50SVille Syrjala }
467*3149be50SVille Syrjala 
468*3149be50SVille Syrjala /* sm501_calc_pll
469*3149be50SVille Syrjala  *
470*3149be50SVille Syrjala  * Calculates the nearest discrete clock frequency that can be
471*3149be50SVille Syrjala  * achieved using the programmable PLL.
472*3149be50SVille Syrjala  *   the maximum divisor is 3 or 5
473*3149be50SVille Syrjala  */
474*3149be50SVille Syrjala 
475*3149be50SVille Syrjala static unsigned long sm501_calc_pll(unsigned long freq,
476*3149be50SVille Syrjala 					struct sm501_clock *clock,
477*3149be50SVille Syrjala 					int max_div)
478*3149be50SVille Syrjala {
479*3149be50SVille Syrjala 	unsigned long mclk;
480*3149be50SVille Syrjala 	unsigned int m, n, k;
481*3149be50SVille Syrjala 	long best_diff = 999999999;
482*3149be50SVille Syrjala 
483*3149be50SVille Syrjala 	/*
484*3149be50SVille Syrjala 	 * The SM502 datasheet doesn't specify the min/max values for M and N.
485*3149be50SVille Syrjala 	 * N = 1 at least doesn't work in practice.
486*3149be50SVille Syrjala 	 */
487*3149be50SVille Syrjala 	for (m = 2; m <= 255; m++) {
488*3149be50SVille Syrjala 		for (n = 2; n <= 127; n++) {
489*3149be50SVille Syrjala 			for (k = 0; k <= 1; k++) {
490*3149be50SVille Syrjala 				mclk = (24000000UL * m / n) >> k;
491*3149be50SVille Syrjala 
492*3149be50SVille Syrjala 				if (sm501_calc_clock(freq, clock, max_div,
493*3149be50SVille Syrjala 						     mclk, &best_diff)) {
494*3149be50SVille Syrjala 					clock->m = m;
495*3149be50SVille Syrjala 					clock->n = n;
496*3149be50SVille Syrjala 					clock->k = k;
497*3149be50SVille Syrjala 				}
498*3149be50SVille Syrjala 			}
499*3149be50SVille Syrjala 		}
500*3149be50SVille Syrjala 	}
501*3149be50SVille Syrjala 
502*3149be50SVille Syrjala 	/* Return best clock. */
503*3149be50SVille Syrjala 	return clock->mclk / (clock->divider << clock->shift);
504*3149be50SVille Syrjala }
505*3149be50SVille Syrjala 
506*3149be50SVille Syrjala /* sm501_select_clock
507*3149be50SVille Syrjala  *
508*3149be50SVille Syrjala  * Calculates the nearest discrete clock frequency that can be
509*3149be50SVille Syrjala  * achieved using the 288MHz and 336MHz PLLs.
510*3149be50SVille Syrjala  *   the maximum divisor is 3 or 5
511*3149be50SVille Syrjala  */
512*3149be50SVille Syrjala 
513*3149be50SVille Syrjala static unsigned long sm501_select_clock(unsigned long freq,
514*3149be50SVille Syrjala 					struct sm501_clock *clock,
515*3149be50SVille Syrjala 					int max_div)
516*3149be50SVille Syrjala {
517*3149be50SVille Syrjala 	unsigned long mclk;
518*3149be50SVille Syrjala 	long best_diff = 999999999;
519*3149be50SVille Syrjala 
520*3149be50SVille Syrjala 	/* Try 288MHz and 336MHz clocks. */
521*3149be50SVille Syrjala 	for (mclk = 288000000; mclk <= 336000000; mclk += 48000000) {
522*3149be50SVille Syrjala 		sm501_calc_clock(freq, clock, max_div, mclk, &best_diff);
523b6d6454fSBen Dooks 	}
524b6d6454fSBen Dooks 
525b6d6454fSBen Dooks 	/* Return best clock. */
526b6d6454fSBen Dooks 	return clock->mclk / (clock->divider << clock->shift);
527b6d6454fSBen Dooks }
528b6d6454fSBen Dooks 
529b6d6454fSBen Dooks /* sm501_set_clock
530b6d6454fSBen Dooks  *
531b6d6454fSBen Dooks  * set one of the four clock sources to the closest available frequency to
532b6d6454fSBen Dooks  *  the one specified
533b6d6454fSBen Dooks */
534b6d6454fSBen Dooks 
535b6d6454fSBen Dooks unsigned long sm501_set_clock(struct device *dev,
536b6d6454fSBen Dooks 			      int clksrc,
537b6d6454fSBen Dooks 			      unsigned long req_freq)
538b6d6454fSBen Dooks {
539b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev);
540b6d6454fSBen Dooks 	unsigned long mode = readl(sm->regs + SM501_POWER_MODE_CONTROL);
541b6d6454fSBen Dooks 	unsigned long gate = readl(sm->regs + SM501_CURRENT_GATE);
542b6d6454fSBen Dooks 	unsigned long clock = readl(sm->regs + SM501_CURRENT_CLOCK);
543b6d6454fSBen Dooks 	unsigned char reg;
544*3149be50SVille Syrjala 	unsigned int pll_reg = 0;
545b6d6454fSBen Dooks 	unsigned long sm501_freq; /* the actual frequency acheived */
546b6d6454fSBen Dooks 
547b6d6454fSBen Dooks 	struct sm501_clock to;
548b6d6454fSBen Dooks 
549b6d6454fSBen Dooks 	/* find achivable discrete frequency and setup register value
550b6d6454fSBen Dooks 	 * accordingly, V2XCLK, MCLK and M1XCLK are the same P2XCLK
551b6d6454fSBen Dooks 	 * has an extra bit for the divider */
552b6d6454fSBen Dooks 
553b6d6454fSBen Dooks 	switch (clksrc) {
554b6d6454fSBen Dooks 	case SM501_CLOCK_P2XCLK:
555b6d6454fSBen Dooks 		/* This clock is divided in half so to achive the
556b6d6454fSBen Dooks 		 * requested frequency the value must be multiplied by
557b6d6454fSBen Dooks 		 * 2. This clock also has an additional pre divisor */
558b6d6454fSBen Dooks 
559*3149be50SVille Syrjala 		if (sm->rev >= 0xC0) {
560*3149be50SVille Syrjala 			/* SM502 -> use the programmable PLL */
561*3149be50SVille Syrjala 			sm501_freq = (sm501_calc_pll(2 * req_freq,
562*3149be50SVille Syrjala 						     &to, 5) / 2);
563*3149be50SVille Syrjala 			reg = to.shift & 0x07;/* bottom 3 bits are shift */
564*3149be50SVille Syrjala 			if (to.divider == 3)
565*3149be50SVille Syrjala 				reg |= 0x08; /* /3 divider required */
566*3149be50SVille Syrjala 			else if (to.divider == 5)
567*3149be50SVille Syrjala 				reg |= 0x10; /* /5 divider required */
568*3149be50SVille Syrjala 			reg |= 0x40; /* select the programmable PLL */
569*3149be50SVille Syrjala 			pll_reg = 0x20000 | (to.k << 15) | (to.n << 8) | to.m;
570*3149be50SVille Syrjala 		} else {
571*3149be50SVille Syrjala 			sm501_freq = (sm501_select_clock(2 * req_freq,
572*3149be50SVille Syrjala 							 &to, 5) / 2);
573b6d6454fSBen Dooks 			reg = to.shift & 0x07;/* bottom 3 bits are shift */
574b6d6454fSBen Dooks 			if (to.divider == 3)
575b6d6454fSBen Dooks 				reg |= 0x08; /* /3 divider required */
576b6d6454fSBen Dooks 			else if (to.divider == 5)
577b6d6454fSBen Dooks 				reg |= 0x10; /* /5 divider required */
578b6d6454fSBen Dooks 			if (to.mclk != 288000000)
579b6d6454fSBen Dooks 				reg |= 0x20; /* which mclk pll is source */
580*3149be50SVille Syrjala 		}
581b6d6454fSBen Dooks 		break;
582b6d6454fSBen Dooks 
583b6d6454fSBen Dooks 	case SM501_CLOCK_V2XCLK:
584b6d6454fSBen Dooks 		/* This clock is divided in half so to achive the
585b6d6454fSBen Dooks 		 * requested frequency the value must be multiplied by 2. */
586b6d6454fSBen Dooks 
587b6d6454fSBen Dooks 		sm501_freq = (sm501_select_clock(2 * req_freq, &to, 3) / 2);
588b6d6454fSBen Dooks 		reg=to.shift & 0x07;	/* bottom 3 bits are shift */
589b6d6454fSBen Dooks 		if (to.divider == 3)
590b6d6454fSBen Dooks 			reg |= 0x08;	/* /3 divider required */
591b6d6454fSBen Dooks 		if (to.mclk != 288000000)
592b6d6454fSBen Dooks 			reg |= 0x10;	/* which mclk pll is source */
593b6d6454fSBen Dooks 		break;
594b6d6454fSBen Dooks 
595b6d6454fSBen Dooks 	case SM501_CLOCK_MCLK:
596b6d6454fSBen Dooks 	case SM501_CLOCK_M1XCLK:
597b6d6454fSBen Dooks 		/* These clocks are the same and not further divided */
598b6d6454fSBen Dooks 
599b6d6454fSBen Dooks 		sm501_freq = sm501_select_clock( req_freq, &to, 3);
600b6d6454fSBen Dooks 		reg=to.shift & 0x07;	/* bottom 3 bits are shift */
601b6d6454fSBen Dooks 		if (to.divider == 3)
602b6d6454fSBen Dooks 			reg |= 0x08;	/* /3 divider required */
603b6d6454fSBen Dooks 		if (to.mclk != 288000000)
604b6d6454fSBen Dooks 			reg |= 0x10;	/* which mclk pll is source */
605b6d6454fSBen Dooks 		break;
606b6d6454fSBen Dooks 
607b6d6454fSBen Dooks 	default:
608b6d6454fSBen Dooks 		return 0; /* this is bad */
609b6d6454fSBen Dooks 	}
610b6d6454fSBen Dooks 
611b6d6454fSBen Dooks 	mutex_lock(&sm->clock_lock);
612b6d6454fSBen Dooks 
613b6d6454fSBen Dooks 	mode = readl(sm->regs + SM501_POWER_MODE_CONTROL);
614b6d6454fSBen Dooks 	gate = readl(sm->regs + SM501_CURRENT_GATE);
615b6d6454fSBen Dooks 	clock = readl(sm->regs + SM501_CURRENT_CLOCK);
616b6d6454fSBen Dooks 
617b6d6454fSBen Dooks 	clock = clock & ~(0xFF << clksrc);
618b6d6454fSBen Dooks 	clock |= reg<<clksrc;
619b6d6454fSBen Dooks 
620b6d6454fSBen Dooks 	mode &= 3;	/* find current mode */
621b6d6454fSBen Dooks 
622b6d6454fSBen Dooks 	switch (mode) {
623b6d6454fSBen Dooks 	case 1:
624b6d6454fSBen Dooks 		writel(gate, sm->regs + SM501_POWER_MODE_0_GATE);
625b6d6454fSBen Dooks 		writel(clock, sm->regs + SM501_POWER_MODE_0_CLOCK);
626b6d6454fSBen Dooks 		mode = 0;
627b6d6454fSBen Dooks 		break;
628b6d6454fSBen Dooks 	case 2:
629b6d6454fSBen Dooks 	case 0:
630b6d6454fSBen Dooks 		writel(gate, sm->regs + SM501_POWER_MODE_1_GATE);
631b6d6454fSBen Dooks 		writel(clock, sm->regs + SM501_POWER_MODE_1_CLOCK);
632b6d6454fSBen Dooks 		mode = 1;
633b6d6454fSBen Dooks 		break;
634b6d6454fSBen Dooks 
635b6d6454fSBen Dooks 	default:
636b6d6454fSBen Dooks 		mutex_unlock(&sm->clock_lock);
637b6d6454fSBen Dooks 		return -1;
638b6d6454fSBen Dooks 	}
639b6d6454fSBen Dooks 
640b6d6454fSBen Dooks 	writel(mode, sm->regs + SM501_POWER_MODE_CONTROL);
641*3149be50SVille Syrjala 
642*3149be50SVille Syrjala 	if (pll_reg)
643*3149be50SVille Syrjala 		writel(pll_reg, sm->regs + SM501_PROGRAMMABLE_PLL_CONTROL);
644*3149be50SVille Syrjala 
645b6d6454fSBen Dooks 	sm501_sync_regs(sm);
646b6d6454fSBen Dooks 
647b6d6454fSBen Dooks 	dev_info(sm->dev, "gate %08lx, clock %08lx, mode %08lx\n",
648b6d6454fSBen Dooks 		 gate, clock, mode);
649b6d6454fSBen Dooks 
650331d7475SBen Dooks 	sm501_mdelay(sm, 16);
651b6d6454fSBen Dooks 	mutex_unlock(&sm->clock_lock);
652b6d6454fSBen Dooks 
653b6d6454fSBen Dooks 	sm501_dump_clk(sm);
654b6d6454fSBen Dooks 
655b6d6454fSBen Dooks 	return sm501_freq;
656b6d6454fSBen Dooks }
657b6d6454fSBen Dooks 
658b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_set_clock);
659b6d6454fSBen Dooks 
660b6d6454fSBen Dooks /* sm501_find_clock
661b6d6454fSBen Dooks  *
662b6d6454fSBen Dooks  * finds the closest available frequency for a given clock
663b6d6454fSBen Dooks */
664b6d6454fSBen Dooks 
665*3149be50SVille Syrjala unsigned long sm501_find_clock(struct device *dev,
666*3149be50SVille Syrjala 			       int clksrc,
667b6d6454fSBen Dooks 			       unsigned long req_freq)
668b6d6454fSBen Dooks {
669*3149be50SVille Syrjala 	struct sm501_devdata *sm = dev_get_drvdata(dev);
670b6d6454fSBen Dooks 	unsigned long sm501_freq; /* the frequency achiveable by the 501 */
671b6d6454fSBen Dooks 	struct sm501_clock to;
672b6d6454fSBen Dooks 
673b6d6454fSBen Dooks 	switch (clksrc) {
674b6d6454fSBen Dooks 	case SM501_CLOCK_P2XCLK:
675*3149be50SVille Syrjala 		if (sm->rev >= 0xC0) {
676*3149be50SVille Syrjala 			/* SM502 -> use the programmable PLL */
677*3149be50SVille Syrjala 			sm501_freq = (sm501_calc_pll(2 * req_freq,
678*3149be50SVille Syrjala 						     &to, 5) / 2);
679*3149be50SVille Syrjala 		} else {
680*3149be50SVille Syrjala 			sm501_freq = (sm501_select_clock(2 * req_freq,
681*3149be50SVille Syrjala 							 &to, 5) / 2);
682*3149be50SVille Syrjala 		}
683b6d6454fSBen Dooks 		break;
684b6d6454fSBen Dooks 
685b6d6454fSBen Dooks 	case SM501_CLOCK_V2XCLK:
686b6d6454fSBen Dooks 		sm501_freq = (sm501_select_clock(2 * req_freq, &to, 3) / 2);
687b6d6454fSBen Dooks 		break;
688b6d6454fSBen Dooks 
689b6d6454fSBen Dooks 	case SM501_CLOCK_MCLK:
690b6d6454fSBen Dooks 	case SM501_CLOCK_M1XCLK:
691b6d6454fSBen Dooks 		sm501_freq = sm501_select_clock(req_freq, &to, 3);
692b6d6454fSBen Dooks 		break;
693b6d6454fSBen Dooks 
694b6d6454fSBen Dooks 	default:
695b6d6454fSBen Dooks 		sm501_freq = 0;		/* error */
696b6d6454fSBen Dooks 	}
697b6d6454fSBen Dooks 
698b6d6454fSBen Dooks 	return sm501_freq;
699b6d6454fSBen Dooks }
700b6d6454fSBen Dooks 
701b6d6454fSBen Dooks EXPORT_SYMBOL_GPL(sm501_find_clock);
702b6d6454fSBen Dooks 
703b6d6454fSBen Dooks static struct sm501_device *to_sm_device(struct platform_device *pdev)
704b6d6454fSBen Dooks {
705b6d6454fSBen Dooks 	return container_of(pdev, struct sm501_device, pdev);
706b6d6454fSBen Dooks }
707b6d6454fSBen Dooks 
708b6d6454fSBen Dooks /* sm501_device_release
709b6d6454fSBen Dooks  *
710b6d6454fSBen Dooks  * A release function for the platform devices we create to allow us to
711b6d6454fSBen Dooks  * free any items we allocated
712b6d6454fSBen Dooks */
713b6d6454fSBen Dooks 
714b6d6454fSBen Dooks static void sm501_device_release(struct device *dev)
715b6d6454fSBen Dooks {
716b6d6454fSBen Dooks 	kfree(to_sm_device(to_platform_device(dev)));
717b6d6454fSBen Dooks }
718b6d6454fSBen Dooks 
719b6d6454fSBen Dooks /* sm501_create_subdev
720b6d6454fSBen Dooks  *
721b6d6454fSBen Dooks  * Create a skeleton platform device with resources for passing to a
722b6d6454fSBen Dooks  * sub-driver
723b6d6454fSBen Dooks */
724b6d6454fSBen Dooks 
725b6d6454fSBen Dooks static struct platform_device *
726b6d6454fSBen Dooks sm501_create_subdev(struct sm501_devdata *sm,
727b6d6454fSBen Dooks 		    char *name, unsigned int res_count)
728b6d6454fSBen Dooks {
729b6d6454fSBen Dooks 	struct sm501_device *smdev;
730b6d6454fSBen Dooks 
731b6d6454fSBen Dooks 	smdev = kzalloc(sizeof(struct sm501_device) +
732b6d6454fSBen Dooks 			sizeof(struct resource) * res_count, GFP_KERNEL);
733b6d6454fSBen Dooks 	if (!smdev)
734b6d6454fSBen Dooks 		return NULL;
735b6d6454fSBen Dooks 
736b6d6454fSBen Dooks 	smdev->pdev.dev.release = sm501_device_release;
737b6d6454fSBen Dooks 
738b6d6454fSBen Dooks 	smdev->pdev.name = name;
739b6d6454fSBen Dooks 	smdev->pdev.id = sm->pdev_id;
740b6d6454fSBen Dooks 	smdev->pdev.resource = (struct resource *)(smdev+1);
741b6d6454fSBen Dooks 	smdev->pdev.num_resources = res_count;
742b6d6454fSBen Dooks 
743b6d6454fSBen Dooks 	smdev->pdev.dev.parent = sm->dev;
744b6d6454fSBen Dooks 
745b6d6454fSBen Dooks 	return &smdev->pdev;
746b6d6454fSBen Dooks }
747b6d6454fSBen Dooks 
748b6d6454fSBen Dooks /* sm501_register_device
749b6d6454fSBen Dooks  *
750b6d6454fSBen Dooks  * Register a platform device created with sm501_create_subdev()
751b6d6454fSBen Dooks */
752b6d6454fSBen Dooks 
753b6d6454fSBen Dooks static int sm501_register_device(struct sm501_devdata *sm,
754b6d6454fSBen Dooks 				 struct platform_device *pdev)
755b6d6454fSBen Dooks {
756b6d6454fSBen Dooks 	struct sm501_device *smdev = to_sm_device(pdev);
757b6d6454fSBen Dooks 	int ptr;
758b6d6454fSBen Dooks 	int ret;
759b6d6454fSBen Dooks 
760b6d6454fSBen Dooks 	for (ptr = 0; ptr < pdev->num_resources; ptr++) {
761b6d6454fSBen Dooks 		printk("%s[%d] flags %08lx: %08llx..%08llx\n",
762b6d6454fSBen Dooks 		       pdev->name, ptr,
763b6d6454fSBen Dooks 		       pdev->resource[ptr].flags,
764b6d6454fSBen Dooks 		       (unsigned long long)pdev->resource[ptr].start,
765b6d6454fSBen Dooks 		       (unsigned long long)pdev->resource[ptr].end);
766b6d6454fSBen Dooks 	}
767b6d6454fSBen Dooks 
768b6d6454fSBen Dooks 	ret = platform_device_register(pdev);
769b6d6454fSBen Dooks 
770b6d6454fSBen Dooks 	if (ret >= 0) {
771b6d6454fSBen Dooks 		dev_dbg(sm->dev, "registered %s\n", pdev->name);
772b6d6454fSBen Dooks 		list_add_tail(&smdev->list, &sm->devices);
773b6d6454fSBen Dooks 	} else
774b6d6454fSBen Dooks 		dev_err(sm->dev, "error registering %s (%d)\n",
775b6d6454fSBen Dooks 			pdev->name, ret);
776b6d6454fSBen Dooks 
777b6d6454fSBen Dooks 	return ret;
778b6d6454fSBen Dooks }
779b6d6454fSBen Dooks 
780b6d6454fSBen Dooks /* sm501_create_subio
781b6d6454fSBen Dooks  *
782b6d6454fSBen Dooks  * Fill in an IO resource for a sub device
783b6d6454fSBen Dooks */
784b6d6454fSBen Dooks 
785b6d6454fSBen Dooks static void sm501_create_subio(struct sm501_devdata *sm,
786b6d6454fSBen Dooks 			       struct resource *res,
787b6d6454fSBen Dooks 			       resource_size_t offs,
788b6d6454fSBen Dooks 			       resource_size_t size)
789b6d6454fSBen Dooks {
790b6d6454fSBen Dooks 	res->flags = IORESOURCE_MEM;
791b6d6454fSBen Dooks 	res->parent = sm->io_res;
792b6d6454fSBen Dooks 	res->start = sm->io_res->start + offs;
793b6d6454fSBen Dooks 	res->end = res->start + size - 1;
794b6d6454fSBen Dooks }
795b6d6454fSBen Dooks 
796b6d6454fSBen Dooks /* sm501_create_mem
797b6d6454fSBen Dooks  *
798b6d6454fSBen Dooks  * Fill in an MEM resource for a sub device
799b6d6454fSBen Dooks */
800b6d6454fSBen Dooks 
801b6d6454fSBen Dooks static void sm501_create_mem(struct sm501_devdata *sm,
802b6d6454fSBen Dooks 			     struct resource *res,
803b6d6454fSBen Dooks 			     resource_size_t *offs,
804b6d6454fSBen Dooks 			     resource_size_t size)
805b6d6454fSBen Dooks {
806b6d6454fSBen Dooks 	*offs -= size;		/* adjust memory size */
807b6d6454fSBen Dooks 
808b6d6454fSBen Dooks 	res->flags = IORESOURCE_MEM;
809b6d6454fSBen Dooks 	res->parent = sm->mem_res;
810b6d6454fSBen Dooks 	res->start = sm->mem_res->start + *offs;
811b6d6454fSBen Dooks 	res->end = res->start + size - 1;
812b6d6454fSBen Dooks }
813b6d6454fSBen Dooks 
814b6d6454fSBen Dooks /* sm501_create_irq
815b6d6454fSBen Dooks  *
816b6d6454fSBen Dooks  * Fill in an IRQ resource for a sub device
817b6d6454fSBen Dooks */
818b6d6454fSBen Dooks 
819b6d6454fSBen Dooks static void sm501_create_irq(struct sm501_devdata *sm,
820b6d6454fSBen Dooks 			     struct resource *res)
821b6d6454fSBen Dooks {
822b6d6454fSBen Dooks 	res->flags = IORESOURCE_IRQ;
823b6d6454fSBen Dooks 	res->parent = NULL;
824b6d6454fSBen Dooks 	res->start = res->end = sm->irq;
825b6d6454fSBen Dooks }
826b6d6454fSBen Dooks 
827b6d6454fSBen Dooks static int sm501_register_usbhost(struct sm501_devdata *sm,
828b6d6454fSBen Dooks 				  resource_size_t *mem_avail)
829b6d6454fSBen Dooks {
830b6d6454fSBen Dooks 	struct platform_device *pdev;
831b6d6454fSBen Dooks 
832b6d6454fSBen Dooks 	pdev = sm501_create_subdev(sm, "sm501-usb", 3);
833b6d6454fSBen Dooks 	if (!pdev)
834b6d6454fSBen Dooks 		return -ENOMEM;
835b6d6454fSBen Dooks 
836b6d6454fSBen Dooks 	sm501_create_subio(sm, &pdev->resource[0], 0x40000, 0x20000);
837b6d6454fSBen Dooks 	sm501_create_mem(sm, &pdev->resource[1], mem_avail, 256*1024);
838b6d6454fSBen Dooks 	sm501_create_irq(sm, &pdev->resource[2]);
839b6d6454fSBen Dooks 
840b6d6454fSBen Dooks 	return sm501_register_device(sm, pdev);
841b6d6454fSBen Dooks }
842b6d6454fSBen Dooks 
843b6d6454fSBen Dooks static int sm501_register_display(struct sm501_devdata *sm,
844b6d6454fSBen Dooks 				  resource_size_t *mem_avail)
845b6d6454fSBen Dooks {
846b6d6454fSBen Dooks 	struct platform_device *pdev;
847b6d6454fSBen Dooks 
848b6d6454fSBen Dooks 	pdev = sm501_create_subdev(sm, "sm501-fb", 4);
849b6d6454fSBen Dooks 	if (!pdev)
850b6d6454fSBen Dooks 		return -ENOMEM;
851b6d6454fSBen Dooks 
852b6d6454fSBen Dooks 	sm501_create_subio(sm, &pdev->resource[0], 0x80000, 0x10000);
853b6d6454fSBen Dooks 	sm501_create_subio(sm, &pdev->resource[1], 0x100000, 0x50000);
854b6d6454fSBen Dooks 	sm501_create_mem(sm, &pdev->resource[2], mem_avail, *mem_avail);
855b6d6454fSBen Dooks 	sm501_create_irq(sm, &pdev->resource[3]);
856b6d6454fSBen Dooks 
857b6d6454fSBen Dooks 	return sm501_register_device(sm, pdev);
858b6d6454fSBen Dooks }
859b6d6454fSBen Dooks 
860b6d6454fSBen Dooks /* sm501_dbg_regs
861b6d6454fSBen Dooks  *
862b6d6454fSBen Dooks  * Debug attribute to attach to parent device to show core registers
863b6d6454fSBen Dooks */
864b6d6454fSBen Dooks 
865b6d6454fSBen Dooks static ssize_t sm501_dbg_regs(struct device *dev,
866b6d6454fSBen Dooks 			      struct device_attribute *attr, char *buff)
867b6d6454fSBen Dooks {
868b6d6454fSBen Dooks 	struct sm501_devdata *sm = dev_get_drvdata(dev)	;
869b6d6454fSBen Dooks 	unsigned int reg;
870b6d6454fSBen Dooks 	char *ptr = buff;
871b6d6454fSBen Dooks 	int ret;
872b6d6454fSBen Dooks 
873b6d6454fSBen Dooks 	for (reg = 0x00; reg < 0x70; reg += 4) {
874b6d6454fSBen Dooks 		ret = sprintf(ptr, "%08x = %08x\n",
875b6d6454fSBen Dooks 			      reg, readl(sm->regs + reg));
876b6d6454fSBen Dooks 		ptr += ret;
877b6d6454fSBen Dooks 	}
878b6d6454fSBen Dooks 
879b6d6454fSBen Dooks 	return ptr - buff;
880b6d6454fSBen Dooks }
881b6d6454fSBen Dooks 
882b6d6454fSBen Dooks 
883b6d6454fSBen Dooks static DEVICE_ATTR(dbg_regs, 0666, sm501_dbg_regs, NULL);
884b6d6454fSBen Dooks 
885b6d6454fSBen Dooks /* sm501_init_reg
886b6d6454fSBen Dooks  *
887b6d6454fSBen Dooks  * Helper function for the init code to setup a register
8885136237bSBen Dooks  *
8895136237bSBen Dooks  * clear the bits which are set in r->mask, and then set
8905136237bSBen Dooks  * the bits set in r->set.
891b6d6454fSBen Dooks */
892b6d6454fSBen Dooks 
893b6d6454fSBen Dooks static inline void sm501_init_reg(struct sm501_devdata *sm,
894b6d6454fSBen Dooks 				  unsigned long reg,
895b6d6454fSBen Dooks 				  struct sm501_reg_init *r)
896b6d6454fSBen Dooks {
897b6d6454fSBen Dooks 	unsigned long tmp;
898b6d6454fSBen Dooks 
899b6d6454fSBen Dooks 	tmp = readl(sm->regs + reg);
900b6d6454fSBen Dooks 	tmp &= ~r->mask;
9015136237bSBen Dooks 	tmp |= r->set;
902b6d6454fSBen Dooks 	writel(tmp, sm->regs + reg);
903b6d6454fSBen Dooks }
904b6d6454fSBen Dooks 
905b6d6454fSBen Dooks /* sm501_init_regs
906b6d6454fSBen Dooks  *
907b6d6454fSBen Dooks  * Setup core register values
908b6d6454fSBen Dooks */
909b6d6454fSBen Dooks 
910b6d6454fSBen Dooks static void sm501_init_regs(struct sm501_devdata *sm,
911b6d6454fSBen Dooks 			    struct sm501_initdata *init)
912b6d6454fSBen Dooks {
913b6d6454fSBen Dooks 	sm501_misc_control(sm->dev,
914b6d6454fSBen Dooks 			   init->misc_control.set,
915b6d6454fSBen Dooks 			   init->misc_control.mask);
916b6d6454fSBen Dooks 
917b6d6454fSBen Dooks 	sm501_init_reg(sm, SM501_MISC_TIMING, &init->misc_timing);
918b6d6454fSBen Dooks 	sm501_init_reg(sm, SM501_GPIO31_0_CONTROL, &init->gpio_low);
919b6d6454fSBen Dooks 	sm501_init_reg(sm, SM501_GPIO63_32_CONTROL, &init->gpio_high);
920b6d6454fSBen Dooks 
921b6d6454fSBen Dooks 	if (init->m1xclk) {
922b6d6454fSBen Dooks 		dev_info(sm->dev, "setting M1XCLK to %ld\n", init->m1xclk);
923b6d6454fSBen Dooks 		sm501_set_clock(sm->dev, SM501_CLOCK_M1XCLK, init->m1xclk);
924b6d6454fSBen Dooks 	}
925b5913bbdSBen Dooks 
926b5913bbdSBen Dooks 	if (init->mclk) {
927b5913bbdSBen Dooks 		dev_info(sm->dev, "setting MCLK to %ld\n", init->mclk);
928b5913bbdSBen Dooks 		sm501_set_clock(sm->dev, SM501_CLOCK_MCLK, init->mclk);
929b5913bbdSBen Dooks 	}
93081906221SBen Dooks 
93181906221SBen Dooks }
93281906221SBen Dooks 
93381906221SBen Dooks /* Check the PLL sources for the M1CLK and M1XCLK
93481906221SBen Dooks  *
93581906221SBen Dooks  * If the M1CLK and M1XCLKs are not sourced from the same PLL, then
93681906221SBen Dooks  * there is a risk (see errata AB-5) that the SM501 will cease proper
93781906221SBen Dooks  * function. If this happens, then it is likely the SM501 will
93881906221SBen Dooks  * hang the system.
93981906221SBen Dooks */
94081906221SBen Dooks 
94181906221SBen Dooks static int sm501_check_clocks(struct sm501_devdata *sm)
94281906221SBen Dooks {
94381906221SBen Dooks 	unsigned long pwrmode = readl(sm->regs + SM501_CURRENT_CLOCK);
94481906221SBen Dooks 	unsigned long msrc = (pwrmode & SM501_POWERMODE_M_SRC);
94581906221SBen Dooks 	unsigned long m1src = (pwrmode & SM501_POWERMODE_M1_SRC);
94681906221SBen Dooks 
94781906221SBen Dooks 	return ((msrc == 0 && m1src != 0) || (msrc != 0 && m1src == 0));
948b6d6454fSBen Dooks }
949b6d6454fSBen Dooks 
950b6d6454fSBen Dooks static unsigned int sm501_mem_local[] = {
951b6d6454fSBen Dooks 	[0]	= 4*1024*1024,
952b6d6454fSBen Dooks 	[1]	= 8*1024*1024,
953b6d6454fSBen Dooks 	[2]	= 16*1024*1024,
954b6d6454fSBen Dooks 	[3]	= 32*1024*1024,
955b6d6454fSBen Dooks 	[4]	= 64*1024*1024,
956b6d6454fSBen Dooks 	[5]	= 2*1024*1024,
957b6d6454fSBen Dooks };
958b6d6454fSBen Dooks 
959b6d6454fSBen Dooks /* sm501_init_dev
960b6d6454fSBen Dooks  *
961b6d6454fSBen Dooks  * Common init code for an SM501
962b6d6454fSBen Dooks */
963b6d6454fSBen Dooks 
964b6d6454fSBen Dooks static int sm501_init_dev(struct sm501_devdata *sm)
965b6d6454fSBen Dooks {
966b6d6454fSBen Dooks 	resource_size_t mem_avail;
967b6d6454fSBen Dooks 	unsigned long dramctrl;
9681e27dbe7SBen Dooks 	unsigned long devid;
969b6d6454fSBen Dooks 	int ret;
970b6d6454fSBen Dooks 
971b6d6454fSBen Dooks 	mutex_init(&sm->clock_lock);
972b6d6454fSBen Dooks 	spin_lock_init(&sm->reg_lock);
973b6d6454fSBen Dooks 
974b6d6454fSBen Dooks 	INIT_LIST_HEAD(&sm->devices);
975b6d6454fSBen Dooks 
9761e27dbe7SBen Dooks 	devid = readl(sm->regs + SM501_DEVICEID);
977b6d6454fSBen Dooks 
9781e27dbe7SBen Dooks 	if ((devid & SM501_DEVICEID_IDMASK) != SM501_DEVICEID_SM501) {
9791e27dbe7SBen Dooks 		dev_err(sm->dev, "incorrect device id %08lx\n", devid);
9801e27dbe7SBen Dooks 		return -EINVAL;
9811e27dbe7SBen Dooks 	}
9821e27dbe7SBen Dooks 
9831e27dbe7SBen Dooks 	dramctrl = readl(sm->regs + SM501_DRAM_CONTROL);
984b6d6454fSBen Dooks 	mem_avail = sm501_mem_local[(dramctrl >> 13) & 0x7];
985b6d6454fSBen Dooks 
9861e27dbe7SBen Dooks 	dev_info(sm->dev, "SM501 At %p: Version %08lx, %ld Mb, IRQ %d\n",
9871e27dbe7SBen Dooks 		 sm->regs, devid, (unsigned long)mem_avail >> 20, sm->irq);
988b6d6454fSBen Dooks 
989*3149be50SVille Syrjala 	sm->rev = devid & SM501_DEVICEID_REVMASK;
990*3149be50SVille Syrjala 
991331d7475SBen Dooks 	sm501_dump_gate(sm);
992b6d6454fSBen Dooks 
993b6d6454fSBen Dooks 	ret = device_create_file(sm->dev, &dev_attr_dbg_regs);
994b6d6454fSBen Dooks 	if (ret)
995b6d6454fSBen Dooks 		dev_err(sm->dev, "failed to create debug regs file\n");
996b6d6454fSBen Dooks 
997b6d6454fSBen Dooks 	sm501_dump_clk(sm);
998b6d6454fSBen Dooks 
999b6d6454fSBen Dooks 	/* check to see if we have some device initialisation */
1000b6d6454fSBen Dooks 
1001b6d6454fSBen Dooks 	if (sm->platdata) {
1002b6d6454fSBen Dooks 		struct sm501_platdata *pdata = sm->platdata;
1003b6d6454fSBen Dooks 
1004b6d6454fSBen Dooks 		if (pdata->init) {
1005b6d6454fSBen Dooks 			sm501_init_regs(sm, sm->platdata->init);
1006b6d6454fSBen Dooks 
1007b6d6454fSBen Dooks 			if (pdata->init->devices & SM501_USE_USB_HOST)
1008b6d6454fSBen Dooks 				sm501_register_usbhost(sm, &mem_avail);
1009b6d6454fSBen Dooks 		}
1010b6d6454fSBen Dooks 	}
1011b6d6454fSBen Dooks 
101281906221SBen Dooks 	ret = sm501_check_clocks(sm);
101381906221SBen Dooks 	if (ret) {
101481906221SBen Dooks 		dev_err(sm->dev, "M1X and M clocks sourced from different "
101581906221SBen Dooks 					"PLLs\n");
101681906221SBen Dooks 		return -EINVAL;
101781906221SBen Dooks 	}
101881906221SBen Dooks 
1019b6d6454fSBen Dooks 	/* always create a framebuffer */
1020b6d6454fSBen Dooks 	sm501_register_display(sm, &mem_avail);
1021b6d6454fSBen Dooks 
1022b6d6454fSBen Dooks 	return 0;
1023b6d6454fSBen Dooks }
1024b6d6454fSBen Dooks 
1025b6d6454fSBen Dooks static int sm501_plat_probe(struct platform_device *dev)
1026b6d6454fSBen Dooks {
1027b6d6454fSBen Dooks 	struct sm501_devdata *sm;
1028b6d6454fSBen Dooks 	int err;
1029b6d6454fSBen Dooks 
1030b6d6454fSBen Dooks 	sm = kzalloc(sizeof(struct sm501_devdata), GFP_KERNEL);
1031b6d6454fSBen Dooks 	if (sm == NULL) {
1032b6d6454fSBen Dooks 		dev_err(&dev->dev, "no memory for device data\n");
1033b6d6454fSBen Dooks 		err = -ENOMEM;
1034b6d6454fSBen Dooks 		goto err1;
1035b6d6454fSBen Dooks 	}
1036b6d6454fSBen Dooks 
1037b6d6454fSBen Dooks 	sm->dev = &dev->dev;
1038b6d6454fSBen Dooks 	sm->pdev_id = dev->id;
1039b6d6454fSBen Dooks 	sm->irq = platform_get_irq(dev, 0);
1040b6d6454fSBen Dooks 	sm->io_res = platform_get_resource(dev, IORESOURCE_MEM, 1);
1041b6d6454fSBen Dooks 	sm->mem_res = platform_get_resource(dev, IORESOURCE_MEM, 0);
1042b6d6454fSBen Dooks 	sm->platdata = dev->dev.platform_data;
1043b6d6454fSBen Dooks 
1044b6d6454fSBen Dooks 	if (sm->irq < 0) {
1045b6d6454fSBen Dooks 		dev_err(&dev->dev, "failed to get irq resource\n");
1046b6d6454fSBen Dooks 		err = sm->irq;
1047b6d6454fSBen Dooks 		goto err_res;
1048b6d6454fSBen Dooks 	}
1049b6d6454fSBen Dooks 
1050b6d6454fSBen Dooks 	if (sm->io_res == NULL || sm->mem_res == NULL) {
1051b6d6454fSBen Dooks 		dev_err(&dev->dev, "failed to get IO resource\n");
1052b6d6454fSBen Dooks 		err = -ENOENT;
1053b6d6454fSBen Dooks 		goto err_res;
1054b6d6454fSBen Dooks 	}
1055b6d6454fSBen Dooks 
1056b6d6454fSBen Dooks 	sm->regs_claim = request_mem_region(sm->io_res->start,
1057b6d6454fSBen Dooks 					    0x100, "sm501");
1058b6d6454fSBen Dooks 
1059b6d6454fSBen Dooks 	if (sm->regs_claim == NULL) {
1060b6d6454fSBen Dooks 		dev_err(&dev->dev, "cannot claim registers\n");
1061b6d6454fSBen Dooks 		err= -EBUSY;
1062b6d6454fSBen Dooks 		goto err_res;
1063b6d6454fSBen Dooks 	}
1064b6d6454fSBen Dooks 
1065b6d6454fSBen Dooks 	platform_set_drvdata(dev, sm);
1066b6d6454fSBen Dooks 
1067b6d6454fSBen Dooks 	sm->regs = ioremap(sm->io_res->start,
1068b6d6454fSBen Dooks 			   (sm->io_res->end - sm->io_res->start) - 1);
1069b6d6454fSBen Dooks 
1070b6d6454fSBen Dooks 	if (sm->regs == NULL) {
1071b6d6454fSBen Dooks 		dev_err(&dev->dev, "cannot remap registers\n");
1072b6d6454fSBen Dooks 		err = -EIO;
1073b6d6454fSBen Dooks 		goto err_claim;
1074b6d6454fSBen Dooks 	}
1075b6d6454fSBen Dooks 
1076b6d6454fSBen Dooks 	return sm501_init_dev(sm);
1077b6d6454fSBen Dooks 
1078b6d6454fSBen Dooks  err_claim:
1079b6d6454fSBen Dooks 	release_resource(sm->regs_claim);
1080b6d6454fSBen Dooks 	kfree(sm->regs_claim);
1081b6d6454fSBen Dooks  err_res:
1082b6d6454fSBen Dooks 	kfree(sm);
1083b6d6454fSBen Dooks  err1:
1084b6d6454fSBen Dooks 	return err;
1085b6d6454fSBen Dooks 
1086b6d6454fSBen Dooks }
1087b6d6454fSBen Dooks 
1088331d7475SBen Dooks #ifdef CONFIG_PM
1089331d7475SBen Dooks /* power management support */
1090331d7475SBen Dooks 
1091331d7475SBen Dooks static int sm501_plat_suspend(struct platform_device *pdev, pm_message_t state)
1092331d7475SBen Dooks {
1093331d7475SBen Dooks 	struct sm501_devdata *sm = platform_get_drvdata(pdev);
1094331d7475SBen Dooks 
1095331d7475SBen Dooks 	sm->in_suspend = 1;
1096331d7475SBen Dooks 	sm->pm_misc = readl(sm->regs + SM501_MISC_CONTROL);
1097331d7475SBen Dooks 
1098331d7475SBen Dooks 	sm501_dump_regs(sm);
1099331d7475SBen Dooks 	return 0;
1100331d7475SBen Dooks }
1101331d7475SBen Dooks 
1102331d7475SBen Dooks static int sm501_plat_resume(struct platform_device *pdev)
1103331d7475SBen Dooks {
1104331d7475SBen Dooks 	struct sm501_devdata *sm = platform_get_drvdata(pdev);
1105331d7475SBen Dooks 
1106331d7475SBen Dooks 	sm501_dump_regs(sm);
1107331d7475SBen Dooks 	sm501_dump_gate(sm);
1108331d7475SBen Dooks 	sm501_dump_clk(sm);
1109331d7475SBen Dooks 
1110331d7475SBen Dooks 	/* check to see if we are in the same state as when suspended */
1111331d7475SBen Dooks 
1112331d7475SBen Dooks 	if (readl(sm->regs + SM501_MISC_CONTROL) != sm->pm_misc) {
1113331d7475SBen Dooks 		dev_info(sm->dev, "SM501_MISC_CONTROL changed over sleep\n");
1114331d7475SBen Dooks 		writel(sm->pm_misc, sm->regs + SM501_MISC_CONTROL);
1115331d7475SBen Dooks 
1116331d7475SBen Dooks 		/* our suspend causes the controller state to change,
1117331d7475SBen Dooks 		 * either by something attempting setup, power loss,
1118331d7475SBen Dooks 		 * or an external reset event on power change */
1119331d7475SBen Dooks 
1120331d7475SBen Dooks 		if (sm->platdata && sm->platdata->init) {
1121331d7475SBen Dooks 			sm501_init_regs(sm, sm->platdata->init);
1122331d7475SBen Dooks 		}
1123331d7475SBen Dooks 	}
1124331d7475SBen Dooks 
1125331d7475SBen Dooks 	/* dump our state from resume */
1126331d7475SBen Dooks 
1127331d7475SBen Dooks 	sm501_dump_regs(sm);
1128331d7475SBen Dooks 	sm501_dump_clk(sm);
1129331d7475SBen Dooks 
1130331d7475SBen Dooks 	sm->in_suspend = 0;
1131331d7475SBen Dooks 
1132331d7475SBen Dooks 	return 0;
1133331d7475SBen Dooks }
1134331d7475SBen Dooks #else
1135331d7475SBen Dooks #define sm501_plat_suspend NULL
1136331d7475SBen Dooks #define sm501_plat_resume NULL
1137331d7475SBen Dooks #endif
1138331d7475SBen Dooks 
1139b6d6454fSBen Dooks /* Initialisation data for PCI devices */
1140b6d6454fSBen Dooks 
1141b6d6454fSBen Dooks static struct sm501_initdata sm501_pci_initdata = {
1142b6d6454fSBen Dooks 	.gpio_high	= {
1143b6d6454fSBen Dooks 		.set	= 0x3F000000,		/* 24bit panel */
1144b6d6454fSBen Dooks 		.mask	= 0x0,
1145b6d6454fSBen Dooks 	},
1146b6d6454fSBen Dooks 	.misc_timing	= {
1147b6d6454fSBen Dooks 		.set	= 0x010100,		/* SDRAM timing */
1148b6d6454fSBen Dooks 		.mask	= 0x1F1F00,
1149b6d6454fSBen Dooks 	},
1150b6d6454fSBen Dooks 	.misc_control	= {
1151b6d6454fSBen Dooks 		.set	= SM501_MISC_PNL_24BIT,
1152b6d6454fSBen Dooks 		.mask	= 0,
1153b6d6454fSBen Dooks 	},
1154b6d6454fSBen Dooks 
1155b6d6454fSBen Dooks 	.devices	= SM501_USE_ALL,
115681906221SBen Dooks 
115781906221SBen Dooks 	/* Errata AB-3 says that 72MHz is the fastest available
115881906221SBen Dooks 	 * for 33MHZ PCI with proper bus-mastering operation */
115981906221SBen Dooks 
116081906221SBen Dooks 	.mclk		= 72 * MHZ,
116181906221SBen Dooks 	.m1xclk		= 144 * MHZ,
1162b6d6454fSBen Dooks };
1163b6d6454fSBen Dooks 
1164b6d6454fSBen Dooks static struct sm501_platdata_fbsub sm501_pdata_fbsub = {
1165b6d6454fSBen Dooks 	.flags		= (SM501FB_FLAG_USE_INIT_MODE |
1166b6d6454fSBen Dooks 			   SM501FB_FLAG_USE_HWCURSOR |
1167b6d6454fSBen Dooks 			   SM501FB_FLAG_USE_HWACCEL |
1168b6d6454fSBen Dooks 			   SM501FB_FLAG_DISABLE_AT_EXIT),
1169b6d6454fSBen Dooks };
1170b6d6454fSBen Dooks 
1171b6d6454fSBen Dooks static struct sm501_platdata_fb sm501_fb_pdata = {
1172b6d6454fSBen Dooks 	.fb_route	= SM501_FB_OWN,
1173b6d6454fSBen Dooks 	.fb_crt		= &sm501_pdata_fbsub,
1174b6d6454fSBen Dooks 	.fb_pnl		= &sm501_pdata_fbsub,
1175b6d6454fSBen Dooks };
1176b6d6454fSBen Dooks 
1177b6d6454fSBen Dooks static struct sm501_platdata sm501_pci_platdata = {
1178b6d6454fSBen Dooks 	.init		= &sm501_pci_initdata,
1179b6d6454fSBen Dooks 	.fb		= &sm501_fb_pdata,
1180b6d6454fSBen Dooks };
1181b6d6454fSBen Dooks 
1182b6d6454fSBen Dooks static int sm501_pci_probe(struct pci_dev *dev,
1183b6d6454fSBen Dooks 			   const struct pci_device_id *id)
1184b6d6454fSBen Dooks {
1185b6d6454fSBen Dooks 	struct sm501_devdata *sm;
1186b6d6454fSBen Dooks 	int err;
1187b6d6454fSBen Dooks 
1188b6d6454fSBen Dooks 	sm = kzalloc(sizeof(struct sm501_devdata), GFP_KERNEL);
1189b6d6454fSBen Dooks 	if (sm == NULL) {
1190b6d6454fSBen Dooks 		dev_err(&dev->dev, "no memory for device data\n");
1191b6d6454fSBen Dooks 		err = -ENOMEM;
1192b6d6454fSBen Dooks 		goto err1;
1193b6d6454fSBen Dooks 	}
1194b6d6454fSBen Dooks 
1195b6d6454fSBen Dooks 	/* set a default set of platform data */
1196b6d6454fSBen Dooks 	dev->dev.platform_data = sm->platdata = &sm501_pci_platdata;
1197b6d6454fSBen Dooks 
1198b6d6454fSBen Dooks 	/* set a hopefully unique id for our child platform devices */
1199b6d6454fSBen Dooks 	sm->pdev_id = 32 + dev->devfn;
1200b6d6454fSBen Dooks 
1201b6d6454fSBen Dooks 	pci_set_drvdata(dev, sm);
1202b6d6454fSBen Dooks 
1203b6d6454fSBen Dooks 	err = pci_enable_device(dev);
1204b6d6454fSBen Dooks 	if (err) {
1205b6d6454fSBen Dooks 		dev_err(&dev->dev, "cannot enable device\n");
1206b6d6454fSBen Dooks 		goto err2;
1207b6d6454fSBen Dooks 	}
1208b6d6454fSBen Dooks 
1209b6d6454fSBen Dooks 	sm->dev = &dev->dev;
1210b6d6454fSBen Dooks 	sm->irq = dev->irq;
1211b6d6454fSBen Dooks 
1212b6d6454fSBen Dooks #ifdef __BIG_ENDIAN
1213b6d6454fSBen Dooks 	/* if the system is big-endian, we most probably have a
1214b6d6454fSBen Dooks 	 * translation in the IO layer making the PCI bus little endian
1215b6d6454fSBen Dooks 	 * so make the framebuffer swapped pixels */
1216b6d6454fSBen Dooks 
1217b6d6454fSBen Dooks 	sm501_fb_pdata.flags |= SM501_FBPD_SWAP_FB_ENDIAN;
1218b6d6454fSBen Dooks #endif
1219b6d6454fSBen Dooks 
1220b6d6454fSBen Dooks 	/* check our resources */
1221b6d6454fSBen Dooks 
1222b6d6454fSBen Dooks 	if (!(pci_resource_flags(dev, 0) & IORESOURCE_MEM)) {
1223b6d6454fSBen Dooks 		dev_err(&dev->dev, "region #0 is not memory?\n");
1224b6d6454fSBen Dooks 		err = -EINVAL;
1225b6d6454fSBen Dooks 		goto err3;
1226b6d6454fSBen Dooks 	}
1227b6d6454fSBen Dooks 
1228b6d6454fSBen Dooks 	if (!(pci_resource_flags(dev, 1) & IORESOURCE_MEM)) {
1229b6d6454fSBen Dooks 		dev_err(&dev->dev, "region #1 is not memory?\n");
1230b6d6454fSBen Dooks 		err = -EINVAL;
1231b6d6454fSBen Dooks 		goto err3;
1232b6d6454fSBen Dooks 	}
1233b6d6454fSBen Dooks 
1234b6d6454fSBen Dooks 	/* make our resources ready for sharing */
1235b6d6454fSBen Dooks 
1236b6d6454fSBen Dooks 	sm->io_res = &dev->resource[1];
1237b6d6454fSBen Dooks 	sm->mem_res = &dev->resource[0];
1238b6d6454fSBen Dooks 
1239b6d6454fSBen Dooks 	sm->regs_claim = request_mem_region(sm->io_res->start,
1240b6d6454fSBen Dooks 					    0x100, "sm501");
1241b6d6454fSBen Dooks 	if (sm->regs_claim == NULL) {
1242b6d6454fSBen Dooks 		dev_err(&dev->dev, "cannot claim registers\n");
1243b6d6454fSBen Dooks 		err= -EBUSY;
1244b6d6454fSBen Dooks 		goto err3;
1245b6d6454fSBen Dooks 	}
1246b6d6454fSBen Dooks 
1247b6d6454fSBen Dooks 	sm->regs = ioremap(pci_resource_start(dev, 1),
1248b6d6454fSBen Dooks 			   pci_resource_len(dev, 1));
1249b6d6454fSBen Dooks 
1250b6d6454fSBen Dooks 	if (sm->regs == NULL) {
1251b6d6454fSBen Dooks 		dev_err(&dev->dev, "cannot remap registers\n");
1252b6d6454fSBen Dooks 		err = -EIO;
1253b6d6454fSBen Dooks 		goto err4;
1254b6d6454fSBen Dooks 	}
1255b6d6454fSBen Dooks 
1256b6d6454fSBen Dooks 	sm501_init_dev(sm);
1257b6d6454fSBen Dooks 	return 0;
1258b6d6454fSBen Dooks 
1259b6d6454fSBen Dooks  err4:
1260b6d6454fSBen Dooks 	release_resource(sm->regs_claim);
1261b6d6454fSBen Dooks 	kfree(sm->regs_claim);
1262b6d6454fSBen Dooks  err3:
1263b6d6454fSBen Dooks 	pci_disable_device(dev);
1264b6d6454fSBen Dooks  err2:
1265b6d6454fSBen Dooks 	pci_set_drvdata(dev, NULL);
1266b6d6454fSBen Dooks 	kfree(sm);
1267b6d6454fSBen Dooks  err1:
1268b6d6454fSBen Dooks 	return err;
1269b6d6454fSBen Dooks }
1270b6d6454fSBen Dooks 
1271b6d6454fSBen Dooks static void sm501_remove_sub(struct sm501_devdata *sm,
1272b6d6454fSBen Dooks 			     struct sm501_device *smdev)
1273b6d6454fSBen Dooks {
1274b6d6454fSBen Dooks 	list_del(&smdev->list);
1275b6d6454fSBen Dooks 	platform_device_unregister(&smdev->pdev);
1276b6d6454fSBen Dooks }
1277b6d6454fSBen Dooks 
1278b6d6454fSBen Dooks static void sm501_dev_remove(struct sm501_devdata *sm)
1279b6d6454fSBen Dooks {
1280b6d6454fSBen Dooks 	struct sm501_device *smdev, *tmp;
1281b6d6454fSBen Dooks 
1282b6d6454fSBen Dooks 	list_for_each_entry_safe(smdev, tmp, &sm->devices, list)
1283b6d6454fSBen Dooks 		sm501_remove_sub(sm, smdev);
1284b6d6454fSBen Dooks 
1285b6d6454fSBen Dooks 	device_remove_file(sm->dev, &dev_attr_dbg_regs);
1286b6d6454fSBen Dooks }
1287b6d6454fSBen Dooks 
1288b6d6454fSBen Dooks static void sm501_pci_remove(struct pci_dev *dev)
1289b6d6454fSBen Dooks {
1290b6d6454fSBen Dooks 	struct sm501_devdata *sm = pci_get_drvdata(dev);
1291b6d6454fSBen Dooks 
1292b6d6454fSBen Dooks 	sm501_dev_remove(sm);
1293b6d6454fSBen Dooks 	iounmap(sm->regs);
1294b6d6454fSBen Dooks 
1295b6d6454fSBen Dooks 	release_resource(sm->regs_claim);
1296b6d6454fSBen Dooks 	kfree(sm->regs_claim);
1297b6d6454fSBen Dooks 
1298b6d6454fSBen Dooks 	pci_set_drvdata(dev, NULL);
1299b6d6454fSBen Dooks 	pci_disable_device(dev);
1300b6d6454fSBen Dooks }
1301b6d6454fSBen Dooks 
1302b6d6454fSBen Dooks static int sm501_plat_remove(struct platform_device *dev)
1303b6d6454fSBen Dooks {
1304b6d6454fSBen Dooks 	struct sm501_devdata *sm = platform_get_drvdata(dev);
1305b6d6454fSBen Dooks 
1306b6d6454fSBen Dooks 	sm501_dev_remove(sm);
1307b6d6454fSBen Dooks 	iounmap(sm->regs);
1308b6d6454fSBen Dooks 
1309b6d6454fSBen Dooks 	release_resource(sm->regs_claim);
1310b6d6454fSBen Dooks 	kfree(sm->regs_claim);
1311b6d6454fSBen Dooks 
1312b6d6454fSBen Dooks 	return 0;
1313b6d6454fSBen Dooks }
1314b6d6454fSBen Dooks 
1315b6d6454fSBen Dooks static struct pci_device_id sm501_pci_tbl[] = {
1316b6d6454fSBen Dooks 	{ 0x126f, 0x0501, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0 },
1317b6d6454fSBen Dooks 	{ 0, },
1318b6d6454fSBen Dooks };
1319b6d6454fSBen Dooks 
1320b6d6454fSBen Dooks MODULE_DEVICE_TABLE(pci, sm501_pci_tbl);
1321b6d6454fSBen Dooks 
1322b6d6454fSBen Dooks static struct pci_driver sm501_pci_drv = {
1323b6d6454fSBen Dooks 	.name		= "sm501",
1324b6d6454fSBen Dooks 	.id_table	= sm501_pci_tbl,
1325b6d6454fSBen Dooks 	.probe		= sm501_pci_probe,
1326b6d6454fSBen Dooks 	.remove		= sm501_pci_remove,
1327b6d6454fSBen Dooks };
1328b6d6454fSBen Dooks 
1329b6d6454fSBen Dooks static struct platform_driver sm501_plat_drv = {
1330b6d6454fSBen Dooks 	.driver		= {
1331b6d6454fSBen Dooks 		.name	= "sm501",
1332b6d6454fSBen Dooks 		.owner	= THIS_MODULE,
1333b6d6454fSBen Dooks 	},
1334b6d6454fSBen Dooks 	.probe		= sm501_plat_probe,
1335b6d6454fSBen Dooks 	.remove		= sm501_plat_remove,
1336331d7475SBen Dooks 	.suspend	= sm501_plat_suspend,
1337331d7475SBen Dooks 	.resume		= sm501_plat_resume,
1338b6d6454fSBen Dooks };
1339b6d6454fSBen Dooks 
1340b6d6454fSBen Dooks static int __init sm501_base_init(void)
1341b6d6454fSBen Dooks {
1342b6d6454fSBen Dooks 	platform_driver_register(&sm501_plat_drv);
1343f15e66b9SRichard Knutsson 	return pci_register_driver(&sm501_pci_drv);
1344b6d6454fSBen Dooks }
1345b6d6454fSBen Dooks 
1346b6d6454fSBen Dooks static void __exit sm501_base_exit(void)
1347b6d6454fSBen Dooks {
1348b6d6454fSBen Dooks 	platform_driver_unregister(&sm501_plat_drv);
1349b6d6454fSBen Dooks 	pci_unregister_driver(&sm501_pci_drv);
1350b6d6454fSBen Dooks }
1351b6d6454fSBen Dooks 
1352b6d6454fSBen Dooks module_init(sm501_base_init);
1353b6d6454fSBen Dooks module_exit(sm501_base_exit);
1354b6d6454fSBen Dooks 
1355b6d6454fSBen Dooks MODULE_DESCRIPTION("SM501 Core Driver");
1356b6d6454fSBen Dooks MODULE_AUTHOR("Ben Dooks <ben@simtec.co.uk>, Vincent Sanders");
1357b6d6454fSBen Dooks MODULE_LICENSE("GPL v2");
1358