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			241 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			241 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * (C) Copyright 2004
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 * DAVE Srl
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 * http://www.dave-tech.it
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 * http://www.wawnet.biz
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 * mailto:info@wawnet.biz
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 *
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 * See file CREDITS for list of people who contributed to this
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 * project.
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 *
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 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public License as
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 * published by the Free Software Foundation; either version 2 of
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 * the License, or (at your option) any later version.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, write to the Free Software
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 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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 * MA 02111-1307 USA
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 */
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#include <common.h>
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#include <asm/hardware.h>
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#include <asm/proc-armv/ptrace.h>
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/* we always count down the max. */
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#define TIMER_LOAD_VAL 0xffff
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/* macro to read the 16 bit timer */
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#define READ_TIMER (TCNTO1 & 0xffff)
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#ifdef CONFIG_USE_IRQ
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#error CONFIG_USE_IRQ NOT supported
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#else
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void enable_interrupts (void)
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{
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	return;
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}
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int disable_interrupts (void)
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{
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	return 0;
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}
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#endif
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void bad_mode (void)
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{
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	panic ("Resetting CPU ...\n");
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	reset_cpu (0);
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}
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void show_regs (struct pt_regs *regs)
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{
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	unsigned long flags;
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	const char *processor_modes[] =
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		{ "USER_26", "FIQ_26", "IRQ_26", "SVC_26", "UK4_26", "UK5_26",
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				"UK6_26", "UK7_26",
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		"UK8_26", "UK9_26", "UK10_26", "UK11_26", "UK12_26", "UK13_26",
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				"UK14_26", "UK15_26",
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		"USER_32", "FIQ_32", "IRQ_32", "SVC_32", "UK4_32", "UK5_32",
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				"UK6_32", "ABT_32",
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		"UK8_32", "UK9_32", "UK10_32", "UND_32", "UK12_32", "UK13_32",
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				"UK14_32", "SYS_32"
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	};
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	flags = condition_codes (regs);
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	printf ("pc : [<%08lx>]    lr : [<%08lx>]\n"
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			"sp : %08lx  ip : %08lx  fp : %08lx\n",
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			instruction_pointer (regs),
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			regs->ARM_lr, regs->ARM_sp, regs->ARM_ip, regs->ARM_fp);
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	printf ("r10: %08lx  r9 : %08lx  r8 : %08lx\n",
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			regs->ARM_r10, regs->ARM_r9, regs->ARM_r8);
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	printf ("r7 : %08lx  r6 : %08lx  r5 : %08lx  r4 : %08lx\n",
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			regs->ARM_r7, regs->ARM_r6, regs->ARM_r5, regs->ARM_r4);
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	printf ("r3 : %08lx  r2 : %08lx  r1 : %08lx  r0 : %08lx\n",
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			regs->ARM_r3, regs->ARM_r2, regs->ARM_r1, regs->ARM_r0);
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	printf ("Flags: %c%c%c%c",
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			flags & CC_N_BIT ? 'N' : 'n',
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			flags & CC_Z_BIT ? 'Z' : 'z',
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			flags & CC_C_BIT ? 'C' : 'c', flags & CC_V_BIT ? 'V' : 'v');
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	printf ("  IRQs %s  FIQs %s  Mode %s%s\n",
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			interrupts_enabled (regs) ? "on" : "off",
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			fast_interrupts_enabled (regs) ? "on" : "off",
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			processor_modes[processor_mode (regs)],
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			thumb_mode (regs) ? " (T)" : "");
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}
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void do_undefined_instruction (struct pt_regs *pt_regs)
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{
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	printf ("undefined instruction\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_software_interrupt (struct pt_regs *pt_regs)
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{
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	printf ("software interrupt\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_prefetch_abort (struct pt_regs *pt_regs)
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{
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	printf ("prefetch abort\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_data_abort (struct pt_regs *pt_regs)
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{
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	printf ("data abort\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_not_used (struct pt_regs *pt_regs)
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{
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	printf ("not used\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_fiq (struct pt_regs *pt_regs)
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{
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	printf ("fast interrupt request\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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void do_irq (struct pt_regs *pt_regs)
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{
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	printf ("interrupt request\n");
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	show_regs (pt_regs);
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	bad_mode ();
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}
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static ulong timestamp;
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static ulong lastdec;
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int interrupt_init (void)
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{
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	TCFG0 = 0x000000E9;
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	TCFG1 = 0x00000004;
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	TCON = 0x00000900;
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	TCNTB1 = TIMER_LOAD_VAL;
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	TCMPB1 = 0;
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	TCON = 0x00000B00;
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	TCON = 0x00000900;
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	lastdec = TCNTB1 = TIMER_LOAD_VAL;
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	timestamp = 0;
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	return 0;
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}
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/*
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 * timer without interrupts
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 */
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void reset_timer (void)
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{
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	reset_timer_masked ();
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}
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ulong get_timer (ulong base)
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{
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	return get_timer_masked () - base;
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}
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void set_timer (ulong t)
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{
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	timestamp = t;
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}
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void udelay (unsigned long usec)
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{
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	ulong tmo;
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	tmo = usec / 1000;
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	tmo *= CFG_HZ;
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	tmo /= 8;
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	tmo += get_timer (0);
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	while (get_timer_masked () < tmo)
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		/*NOP*/;
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}
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void reset_timer_masked (void)
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{
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	/* reset time */
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	lastdec = READ_TIMER;
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	timestamp = 0;
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}
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ulong get_timer_masked (void)
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{
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	ulong now = READ_TIMER;
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	if (lastdec >= now) {
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		/* normal mode */
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		timestamp += lastdec - now;
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	} else {
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		/* we have an overflow ... */
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		timestamp += lastdec + TIMER_LOAD_VAL - now;
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	}
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	lastdec = now;
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	return timestamp;
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}
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void udelay_masked (unsigned long usec)
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{
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	ulong tmo;
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	ulong endtime;
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	signed long diff;
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	if (usec >= 1000) {
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		tmo = usec / 1000;
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		tmo *= CFG_HZ;
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		tmo /= 8;
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	} else {
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		tmo = usec * CFG_HZ;
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		tmo /= (1000*8);
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	}
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	endtime = get_timer(0) + tmo;
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	do {
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		ulong now = get_timer_masked ();
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		diff = endtime - now;
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	} while (diff >= 0);
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}
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