2 * arch/arm/mach-imx/generic.c
5 * Created: april 20th, 2004
6 * Copyright: Synertronixx GmbH
8 * Common code for i.MX machines
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
25 #include <linux/device.h>
26 #include <linux/init.h>
27 #include <linux/kernel.h>
28 #include <linux/module.h>
29 #include <asm/arch/imxfb.h>
30 #include <asm/hardware.h>
32 #include <asm/mach/map.h>
34 void imx_gpio_mode(int gpio_mode
)
36 unsigned int pin
= gpio_mode
& GPIO_PIN_MASK
;
37 unsigned int port
= (gpio_mode
& GPIO_PORT_MASK
) >> 5;
38 unsigned int ocr
= (gpio_mode
& GPIO_OCR_MASK
) >> 10;
42 if(gpio_mode
& GPIO_PUEN
)
43 PUEN(port
) |= (1<<pin
);
45 PUEN(port
) &= ~(1<<pin
);
48 if(gpio_mode
& GPIO_OUT
)
51 DDIR(port
) &= ~(1<<pin
);
53 /* Primary / alternate function */
54 if(gpio_mode
& GPIO_AF
)
55 GPR(port
) |= (1<<pin
);
57 GPR(port
) &= ~(1<<pin
);
61 GIUS(port
) |= (1<<pin
);
63 GIUS(port
) &= ~(1<<pin
);
65 /* Output / input configuration */
66 /* FIXME: I'm not very sure about OCR and ICONF, someone
67 * should have a look over it
71 tmp
&= ~( 3<<(pin
*2));
72 tmp
|= (ocr
<< (pin
*2));
75 if( gpio_mode
& GPIO_AOUT
)
76 ICONFA1(port
) &= ~( 3<<(pin
*2));
77 if( gpio_mode
& GPIO_BOUT
)
78 ICONFB1(port
) &= ~( 3<<(pin
*2));
81 tmp
&= ~( 3<<((pin
-16)*2));
82 tmp
|= (ocr
<< ((pin
-16)*2));
85 if( gpio_mode
& GPIO_AOUT
)
86 ICONFA2(port
) &= ~( 3<<((pin
-16)*2));
87 if( gpio_mode
& GPIO_BOUT
)
88 ICONFB2(port
) &= ~( 3<<((pin
-16)*2));
92 EXPORT_SYMBOL(imx_gpio_mode
);
95 * get the system pll clock in Hz
97 * mfi + mfn / (mfd +1)
98 * f = 2 * f_ref * --------------------
101 static unsigned int imx_decode_pll(unsigned int pll
)
103 u32 mfi
= (pll
>> 10) & 0xf;
104 u32 mfn
= pll
& 0x3ff;
105 u32 mfd
= (pll
>> 16) & 0x3ff;
106 u32 pd
= (pll
>> 26) & 0xf;
107 u32 f_ref
= (CSCR
& CSCR_SYSTEM_SEL
) ? 16000000 : (CLK32
* 512);
109 mfi
= mfi
<= 5 ? 5 : mfi
;
111 return (2 * (f_ref
>>10) * ( (mfi
<<10) + (mfn
<<10) / (mfd
+1) )) / (pd
+1);
114 unsigned int imx_get_system_clk(void)
116 return imx_decode_pll(SPCTL0
);
118 EXPORT_SYMBOL(imx_get_system_clk
);
120 unsigned int imx_get_mcu_clk(void)
122 return imx_decode_pll(MPCTL0
);
124 EXPORT_SYMBOL(imx_get_mcu_clk
);
127 * get peripheral clock 1 ( UART[12], Timer[12], PWM )
129 unsigned int imx_get_perclk1(void)
131 return imx_get_system_clk() / (((PCDR
) & 0xf)+1);
133 EXPORT_SYMBOL(imx_get_perclk1
);
136 * get peripheral clock 2 ( LCD, SD, SPI[12] )
138 unsigned int imx_get_perclk2(void)
140 return imx_get_system_clk() / (((PCDR
>>4) & 0xf)+1);
142 EXPORT_SYMBOL(imx_get_perclk2
);
145 * get peripheral clock 3 ( SSI )
147 unsigned int imx_get_perclk3(void)
149 return imx_get_system_clk() / (((PCDR
>>16) & 0x7f)+1);
151 EXPORT_SYMBOL(imx_get_perclk3
);
154 * get hclk ( SDRAM, CSI, Memory Stick, I2C, DMA )
156 unsigned int imx_get_hclk(void)
158 return imx_get_system_clk() / (((CSCR
>>10) & 0xf)+1);
160 EXPORT_SYMBOL(imx_get_hclk
);
162 static struct resource imx_mmc_resources
[] = {
166 .flags
= IORESOURCE_MEM
,
171 .flags
= IORESOURCE_IRQ
,
175 static struct platform_device imx_mmc_device
= {
178 .num_resources
= ARRAY_SIZE(imx_mmc_resources
),
179 .resource
= imx_mmc_resources
,
182 static struct resource imx_uart1_resources
[] = {
186 .flags
= IORESOURCE_MEM
,
189 .start
= (UART1_MINT_RX
),
190 .end
= (UART1_MINT_RX
),
191 .flags
= IORESOURCE_IRQ
,
194 .start
= (UART1_MINT_TX
),
195 .end
= (UART1_MINT_TX
),
196 .flags
= IORESOURCE_IRQ
,
200 static struct platform_device imx_uart1_device
= {
203 .num_resources
= ARRAY_SIZE(imx_uart1_resources
),
204 .resource
= imx_uart1_resources
,
207 static struct resource imx_uart2_resources
[] = {
211 .flags
= IORESOURCE_MEM
,
214 .start
= (UART2_MINT_RX
),
215 .end
= (UART2_MINT_RX
),
216 .flags
= IORESOURCE_IRQ
,
219 .start
= (UART2_MINT_TX
),
220 .end
= (UART2_MINT_TX
),
221 .flags
= IORESOURCE_IRQ
,
225 static struct platform_device imx_uart2_device
= {
228 .num_resources
= ARRAY_SIZE(imx_uart2_resources
),
229 .resource
= imx_uart2_resources
,
232 static struct imxfb_mach_info imx_fb_info
;
234 void __init
set_imx_fb_info(struct imxfb_mach_info
*hard_imx_fb_info
)
236 memcpy(&imx_fb_info
,hard_imx_fb_info
,sizeof(struct imxfb_mach_info
));
238 EXPORT_SYMBOL(set_imx_fb_info
);
240 static struct resource imxfb_resources
[] = {
244 .flags
= IORESOURCE_MEM
,
249 .flags
= IORESOURCE_IRQ
,
253 static u64 fb_dma_mask
= ~(u64
)0;
255 static struct platform_device imxfb_device
= {
259 .platform_data
= &imx_fb_info
,
260 .dma_mask
= &fb_dma_mask
,
261 .coherent_dma_mask
= 0xffffffff,
263 .num_resources
= ARRAY_SIZE(imxfb_resources
),
264 .resource
= imxfb_resources
,
267 static struct platform_device
*devices
[] __initdata
= {
274 static struct map_desc imx_io_desc
[] __initdata
= {
275 /* virtual physical length type */
276 {IMX_IO_BASE
, IMX_IO_PHYS
, IMX_IO_SIZE
, MT_DEVICE
},
282 iotable_init(imx_io_desc
, ARRAY_SIZE(imx_io_desc
));
285 static int __init
imx_init(void)
287 return platform_add_devices(devices
, ARRAY_SIZE(devices
));
290 subsys_initcall(imx_init
);