Gets rid of places where there is no need to include these files at all, or places where these files are being indirectly included due to the inclusion of nanokernel.h. Change-Id: I7b58148af454b977830c00a6b519a78d0595603b Signed-off-by: Allan Stephens <allan.stephens@windriver.com>
272 lines
7.8 KiB
C
272 lines
7.8 KiB
C
/* nanokernel initialization module */
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/*
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* Copyright (c) 2010-2014 Wind River Systems, Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1) Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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*
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* 2) Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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*
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* 3) Neither the name of Wind River Systems nor the names of its contributors
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* may be used to endorse or promote products derived from this software without
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* specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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/*
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DESCRIPTION
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This module contains routines that are used to initialize the nanokernel.
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*/
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#include <offsets.h>
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#include <nanokernel.h>
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#include <misc/printk.h>
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#include <drivers/rand32.h>
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#include <sections.h>
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#include <toolchain.h>
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#include <nanok.h>
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/* kernel build timestamp items */
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#define BUILD_TIMESTAMP "BUILD: " __DATE__ " " __TIME__
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#ifdef CONFIG_BUILD_TIMESTAMP
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const char * const build_timestamp = BUILD_TIMESTAMP;
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#endif
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/* boot banner items */
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#define BOOT_BANNER "****** BOOTING VXMICRO ******"
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#if !defined(CONFIG_BOOT_BANNER)
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#define PRINT_BOOT_BANNER() do { } while (0)
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#elif !defined(CONFIG_BUILD_TIMESTAMP)
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#define PRINT_BOOT_BANNER() printk(BOOT_BANNER "\n")
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#else
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#define PRINT_BOOT_BANNER() printk(BOOT_BANNER " %s\n", build_timestamp)
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#endif
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/* random number generator items */
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#if defined(CONFIG_TEST_RANDOM_GENERATOR) || \
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defined(CONFIG_CUSTOM_RANDOM_GENERATOR)
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#define RAND32_INIT() sys_rand32_init()
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#else
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#define RAND32_INIT()
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#endif
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/* stack space for the background (or idle) task context */
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char __noinit __stack main_task_stack[CONFIG_MAIN_STACK_SIZE];
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/*
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* storage space for the interrupt stack
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*
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* Note: This area is used as the system stack during nanokernel initialization,
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* since the nanokernel hasn't yet set up its own stack areas. The dual
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* purposing of this area is safe since interrupts are disabled until the
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* nanokernel context switches to the background (or idle) task.
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*/
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#ifndef CONFIG_NO_ISRS
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char __noinit _interrupt_stack[CONFIG_ISR_STACK_SIZE];
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#endif
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/*
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* entry point for background task in a nanokernel-only system,
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* or the idle task in a microkernel system
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*/
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extern void main(void);
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/* hardware initialization routine provided by BSP */
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extern void _InitHardware(void);
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/* constructor initialization */
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extern void _Ctors(void);
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/*******************************************************************************
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*
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* nano_init - initializes nanokernel data structures
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*
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* This routine initializes various nanokernel data structures, including
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* the background (or idle) task and any architecture-specific initialization.
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*
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* Note that all fields of "_nanokernel" are set to zero on entry, which may
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* be all the initialization many of them require.
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*
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* RETURNS: N/A
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*/
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static void nano_init(tCCS *dummyOutContext)
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{
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/*
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* Initialize the current execution context to permit a level of debugging
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* output if an exception should happen during nanokernel initialization.
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* However, don't waste effort initializing the fields of the dummy context
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* beyond those needed to identify it as a dummy context.
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*/
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_nanokernel.current = dummyOutContext;
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dummyOutContext->link =
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(tCCS *)NULL; /* context not inserted into list */
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dummyOutContext->flags = FIBER | ESSENTIAL;
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dummyOutContext->prio = 0;
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#ifndef CONFIG_NO_ISRS
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/*
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* The interrupt library needs to be initialized early since a series of
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* handlers are installed into the interrupt table to catch spurious
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* interrupts. This must be performed before other nanokernel subsystems
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* install bonafide handlers, or before hardware device drivers are
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* initialized (in the BSPs' _InitHardware).
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*/
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_IntLibInit();
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#endif
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/*
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* Initialize the context control block (CCS) for the background task
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* (or idle task). The entry point for this context is 'main'.
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*/
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_nanokernel.task = (tCCS *) main_task_stack;
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_NewContext(main_task_stack, /* pStackMem */
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CONFIG_MAIN_STACK_SIZE, /* stackSize */
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(_ContextEntry)main, /* pEntry */
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(_ContextArg)0, /* parameter1 */
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(_ContextArg)0, /* parameter2 */
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(_ContextArg)0, /* parameter3 */
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-1, /* priority */
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0 /* options */
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);
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/* indicate that failure of this task may be fatal to the entire system */
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_nanokernel.task->flags |= ESSENTIAL;
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/* perform any architecture-specific initialization */
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nanoArchInit();
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}
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#ifdef CONFIG_STACK_CANARIES
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/*******************************************************************************
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*
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* STACK_CANARY_INIT - initialize the kernel's stack canary
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*
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* This macro initializes the kernel's stack canary global variable,
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* __stack_chk_guard, with a random value.
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*
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* INTERNAL
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* Depending upon the compiler, modifying __stack_chk_guard directly at runtime
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* may generate a build error. In-line assembly is used as a workaround.
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*/
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extern void *__stack_chk_guard;
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#if defined(VXMICRO_ARCH_x86)
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#define _MOVE_INSTR "movl "
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#elif defined(VXMICRO_ARCH_arm)
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#define _MOVE_INSTR "str "
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#else
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#error "Unknown VXMICRO_ARCH type"
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#endif /* VXMICRO_ARCH */
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#define STACK_CANARY_INIT() \
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do { \
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register void *tmp; \
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tmp = (void *)sys_rand32_get(); \
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__asm__ volatile(_MOVE_INSTR "%1, %0;\n\t" \
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: "=m"(__stack_chk_guard) \
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: "r"(tmp)); \
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} while (0)
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#else /* !CONFIG_STACK_CANARIES */
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#define STACK_CANARY_INIT()
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#endif /* CONFIG_STACK_CANARIES */
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/*******************************************************************************
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*
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* _Cstart - initialize nanokernel
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*
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* This routine is invoked by the BSP when the system is ready to run C code.
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* The processor must be running in 32-bit mode, and the BSS must have been
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* cleared/zeroed.
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*
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* RETURNS: Does not return
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*/
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FUNC_NORETURN void _Cstart(void)
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{
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/* floating point operations are NOT performed during nanokernel init */
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char dummyCCS[__tCCS_NOFLOAT_SIZEOF];
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/*
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* Initialize nanokernel data structures. This step includes
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* initializing the interrupt subsystem, which must be performed
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* before the hardware initialization phase.
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*/
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nano_init((tCCS *)&dummyCCS);
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/* perform basic hardware initialization */
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_InitHardware();
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/*
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* Initialize random number generator
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* As a platform may implement it in hardware, it has to be
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* initialized after rest of hardware initialization and
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* before stack canaries that use it
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*/
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RAND32_INIT();
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/* initialize stack canaries */
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STACK_CANARY_INIT();
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/* invoke C++ constructors */
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_Ctors();
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/* display boot banner */
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PRINT_BOOT_BANNER();
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/* context switch into background context (entry function is main()) */
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_nano_fiber_swap();
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/*
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* Compiler can't tell that the above routines won't return and issues
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* a warning unless we explicitly tell it that control never gets this
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* far.
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*/
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CODE_UNREACHABLE;
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}
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