📄 sysalib.s
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/* sysALib.s - ARM Integrator system-dependent routines */
/* Copyright 1999-2001 ARM Limited */
/* Copyright 1999-2001 Wind River Systems, Inc. */
/*
modification history
--------------------
01h,09oct01,jpd added clock speed setting for 946ES.
01g,03oct01,jpd tidied slightly.
01f,28sep01,pr added support for ARM946E.
01g,04jun01,rec memory clock rate changes for 740t
01f,21feb01,h_k added support for ARM966ES and ARM966ES_T.
01e,23oct00,jpd changed speeds on 920T; added conditional early
enabling of instruction cache on 920T.
01d,21feb00,jpd added further initialisation code.
01c,07feb00,jpd added support for ARM720T and ARM920T.
01b,13jan00,pr added support for ARM740T.
01a,15nov99,ajb copied from pid940t version 01h.
*/
/*
DESCRIPTION
This module contains system-dependent routines written in assembly
language. It contains the entry code, sysInit(), for VxWorks images
that start running from RAM, such as 'vxWorks'. These images are
loaded into memory by some external program (e.g., a boot ROM) and then
started. The routine sysInit() must come first in the text segment.
Its job is to perform the minimal setup needed to call the generic C
routine usrInit().
sysInit() masks interrupts in the processor and the interrupt
controller and sets the initial stack pointer. Other hardware and
device initialisation is performed later in the sysHwInit routine in
sysLib.c.
NOTE
The routines in this module don't use the "C" frame pointer %r11@ ! or
establish a stack frame.
SEE ALSO:
.I "ARM Architecture Reference Manual,"
.I "ARM 7TDMI Data Sheet,"
.I "ARM 720T Data Sheet,"
.I "ARM 740T Data Sheet,"
.I "ARM 920T Technical Reference Manual",
.I "ARM 940T Technical Reference Manual",
.I "ARM 946E-S Technical Reference Manual",
.I "ARM 966E-S Technical Reference Manual",
.I "ARM Reference Peripherals Specification,"
.I "ARM Integrator/AP User Guide",
.I "ARM Integrator/CM7TDMI User Guide",
.I "ARM Integrator/CM720T User Guide",
.I "ARM Integrator/CM740T User Guide",
.I "ARM Integrator/CM920T User Guide",
.I "ARM Integrator/CM940T User Guide",
.I "ARM Integrator/CM946E User Guide",
.I "ARM Integrator/CM9x6ES Datasheet".
*/
#define _ASMLANGUAGE
#include "vxWorks.h"
#include "asm.h"
#include "regs.h"
#include "sysLib.h"
#include "config.h"
#include "arch/arm/mmuArmLib.h"
#include "integrator.h"
.data
.globl VAR(copyright_wind_river)
.long VAR(copyright_wind_river)
/* internals */
.globl FUNC(sysInit) /* start of system code */
.globl FUNC(sysIntStackSplit) /* routine to split interrupt stack */
/* externals */
.extern FUNC(usrInit) /* system initialization routine */
.extern FUNC(vxSvcIntStackBase) /* base of SVC-mode interrupt stack */
.extern FUNC(vxSvcIntStackEnd) /* end of SVC-mode interrupt stack */
.extern FUNC(vxIrqIntStackBase) /* base of IRQ-mode interrupt stack */
.extern FUNC(vxIrqIntStackEnd) /* end of IRQ-mode interrupt stack */
#if defined(CPU_720T) || defined(CPU_720T_T) || \
defined(CPU_740T) || defined(CPU_740T_T)
/* variables */
.data
.balign 1 /* no alignment necessary */
/* variable used with a SWPB instruction to drain the write-buffer */
sysCacheSwapVar:
.byte 0
.balign 4
#endif /* defined(720T/720T_T740T/740T_T) */
.text
.balign 4
/*******************************************************************************
*
* sysInit - start after boot
*
* This routine is the system start-up entry point for VxWorks in RAM, the
* first code executed after booting. It disables interrupts, sets up
* the stack, and jumps to the C routine usrInit() in usrConfig.c.
*
* The initial stack is set to grow down from the address of sysInit(). This
* stack is used only by usrInit() and is never used again. Memory for the
* stack must be accounted for when determining the system load address.
*
* NOTE: This routine should not be called by the user.
*
* RETURNS: N/A
* sysInit () /@ THIS IS NOT A CALLABLE ROUTINE @/
*/
_ARM_FUNCTION(sysInit)
#if defined(CPU_720T) || defined(CPU_720T_T) || \
defined(CPU_740T) || defined(CPU_740T_T) || \
defined(CPU_920T) || defined(CPU_920T_T) || \
defined(CPU_940T) || defined(CPU_940T_T) || \
defined(CPU_946ES) || defined(CPU_946ES_T)
/*
* Set processor and MMU to known state as follows (we may have not
* been entered from a reset). We must do this before setting the CPU
* mode as we must set PROG32/DATA32.
*
* MMU Control Register layout.
*
* bit
* 0 M 0 MMU disabled
* 1 A 0 Address alignment fault disabled, initially
* 2 C 0 Data cache disabled
* 3 W 0 Write Buffer disabled
* 4 P 1 PROG32
* 5 D 1 DATA32
* 6 L 1 Should Be One (Late abort on earlier CPUs)
* 7 B ? Endianness (1 => big)
* 8 S 0 System bit to zero } Modifies MMU protections, not really
* 9 R 1 ROM bit to one } relevant until MMU switched on later.
* 10 F 0 Should Be Zero
* 11 Z 0 Should Be Zero (Branch prediction control on 810)
* 12 I 0 Instruction cache control
*/
/* Setup MMU Control Register */
MOV r1, #MMU_INIT_VALUE /* Defined in mmuArmLib.h */
#if defined(CPU_920T) || defined(CPU_920T_T)
#if defined(INTEGRATOR_EARLY_I_CACHE_ENABLE)
ORR r1, r1, #MMUCR_I_ENABLE /* conditionally enable Icache*/
#endif
#endif
MCR CP_MMU, 0, r1, c1, c0, 0 /* Write to MMU CR */
/*
* If MMU was on before this, then we'd better hope it was set
* up for flat translation or there will be problems. The next
* 2/3 instructions will be fetched "translated" (number depends
* on CPU).
*
* We would like to discard the contents of the Write-Buffer
* altogether, but there is no facility to do this. Failing that,
* we do not want any pending writes to happen at a later stage,
* so drain the Write-Buffer, i.e. force any pending writes to
* happen now.
*/
#if defined(CPU_720T) || defined(CPU_720T_T) || \
defined(CPU_740T) || defined(CPU_740T_T)
LDR r2, L$_sysCacheSwapVar /* R2 -> sysCacheSwapVar */
SWPB r1, r1, [r2]
/* Flush, (i.e. invalidate) all entries in the ID-cache */
MCR CP_MMU, 0, r1, c7, c0, 0 /* Flush (inval) all ID-cache */
#endif /* defined(CPU_720T,740T) */
#if defined(CPU_920T) || defined(CPU_920T_T) || \
defined(CPU_946ES) || defined(CPU_946ES_T)
MOV r1, #0 /* data SBZ */
MCR CP_MMU, 0, r1, c7, c10, 4 /* drain write-buffer */
/* Flush (invalidate) both I and D caches */
MCR CP_MMU, 0, r1, c7, c7, 0 /* R1 = 0 from above, data SBZ*/
#endif /* defined(CPU_920T,946ES) */
#if defined(CPU_940T) || defined(CPU_940T_T)
LDR r1, L$_sysCacheUncachedAdrs /* R1 -> uncached area */
LDR r1, [r1] /* drain write-buffer */
/* Flush (invalidate) both caches */
MOV r1, #0 /* data SBZ */
MCR CP_MMU, 0, r1, c7, c5, 0 /* Flush (inval) all I-cache */
MCR CP_MMU, 0, r1, c7, c6, 0 /* Flush (inval) all D-cache */
#endif /* defined(CPU_940T,940T_T) */
#if defined(CPU_720T) || defined(CPU_720T_T) || \
defined(CPU_920T) || defined(CPU_920T_T)
/*
* Set Process ID Register to zero, this effectively disables
* the process ID remapping feature.
*/
MOV r1, #0
MCR CP_MMU, 0, r1, c13, c0, 0
#endif /* defined(CPU_720T,920T) */
#endif /* defined(CPU_720T,740T,920T,940T,946ES) */
/* disable interrupts in CPU and switch to SVC32 mode */
MRS r1, cpsr
BIC r1, r1, #MASK_MODE
ORR r1, r1, #MODE_SVC32 | I_BIT | F_BIT
MSR cpsr, r1
/*
* CPU INTERRUPTS DISABLED
*
* disable individual interrupts in the interrupt controller
*/
/* MOV r2, #IC_BASE *//* R2->interrupt controller */
/* MVN r1, #0 *//* &FFFFFFFF */
/* STR r1, [r2, #FIQ_DISABLE-IC_BASE] *//* disable all FIQ sources */
/* STR r1, [r2, #IRQ_DISABLE-IC_BASE] *//* disable all IRQ sources */
LDR r2, =AT91C_BASE_AIC /* R2->interrupt controller */
MVN r1, #0 /* &FFFFFFFF */
STR r1, [r2,#0x124] /* disable all IRQ sources */
/* Setup asynchronous clocking (eg. core and memory clocks different) */
LDR r1, =INTEGRATOR_HDR_BASE
LDR r2, [r1, #INTEGRATOR_HDR_OSC_OFFSET]
AND r2, r2, #(3 << 23)
CMP r2, #(1 << 23)
BNE clock1
#if defined(CPU_920T) || defined(CPU_920T_T) || \
defined(CPU_940T) || defined(CPU_940T_T)
/*
* if HDR_OSC indicates (bits[23:24] = 01), set
* implementation-specific bits in the MMU control register - set
* asynchronous mode.
*/
MRC CP_MMU, 0, r2, c1, c0, 0
ORR r2, r2, #MMUCR_ASYNC
MCR CP_MMU, 0, r2, c1, c0, 0
#endif
clock1:
/* If bits[23:24] were 0, set asynchronous mode in HDR_CTRL */
LDRLT r2, [r1, #INTEGRATOR_HDR_CTRL_OFFSET]
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