#include <asm/mach-au1x00/au1000.h>
static unsigned int au1x00_clock; /* Hz */
-static unsigned int lcd_clock; /* KHz */
static unsigned long uart_baud_base;
/*
{
uart_baud_base = new_baud_base;
}
-
-/*
- * Calculate the Au1x00's LCD clock based on the current
- * cpu clock and the system bus clock, and try to keep it
- * below 40 MHz (the Pb1000 board can lock-up if the LCD
- * clock is over 40 MHz).
- */
-void set_au1x00_lcd_clock(void)
-{
- unsigned int static_cfg0;
- unsigned int sys_busclk = (get_au1x00_speed() / 1000) /
- ((int)(au_readl(SYS_POWERCTRL) & 0x03) + 2);
-
- static_cfg0 = au_readl(MEM_STCFG0);
-
- if (static_cfg0 & (1 << 11))
- lcd_clock = sys_busclk / 5; /* note: BCLK switching fails with D5 */
- else
- lcd_clock = sys_busclk / 4;
-
- if (lcd_clock > 50000) /* Epson MAX */
- printk(KERN_WARNING "warning: LCD clock too high (%u KHz)\n",
- lcd_clock);
-}
-
-unsigned int get_au1x00_lcd_clock(void)
-{
- return lcd_clock;
-}
-EXPORT_SYMBOL(get_au1x00_lcd_clock);
printk(KERN_INFO "CPU frequency %u.%02u MHz\n",
est_freq / 1000000, ((est_freq % 1000000) * 100) / 1000000);
set_au1x00_speed(est_freq);
- set_au1x00_lcd_clock(); /* program the LCD clock */
#ifdef CONFIG_PM
/*
extern unsigned int get_au1x00_speed(void);
extern void set_au1x00_uart_baud_base(unsigned long new_baud_base);
extern unsigned long get_au1x00_uart_baud_base(void);
-extern void set_au1x00_lcd_clock(void);
-extern unsigned int get_au1x00_lcd_clock(void);
/*
* Every board describes its IRQ mapping with this table.