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228 lines
4.9 KiB
ArmAsm
228 lines
4.9 KiB
ArmAsm
/*****************************************************************************
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* Copyright (c) 2009 Rowley Associates Limited. *
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* *
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* This file may be distributed under the terms of the License Agreement *
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* provided with this software. *
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* *
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* THIS FILE IS PROVIDED AS IS WITH NO WARRANTY OF ANY KIND, INCLUDING THE *
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* WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. *
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*****************************************************************************/
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/*****************************************************************************
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* Preprocessor Definitions
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* ------------------------
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* APP_ENTRY_POINT
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*
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* Defines the application entry point function, if undefined this setting
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* defaults to "main".
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*
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* USE_PROCESS_STACK
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*
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* If defined, thread mode will be configured to use the process stack if
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* the size of the process stack is greater than zero bytes in length.
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*
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* INITIALIZE_STACK
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*
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* If defined, the contents of the stack will be initialized to a the
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* value 0xCC.
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*
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* FULL_LIBRARY
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*
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* If defined then
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* - argc, argv are setup by the debug_getargs.
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* - the exit symbol is defined and executes on return from main.
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* - the exit symbol calls destructors, atexit functions and then debug_exit.
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*
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* If not defined then
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* - argc and argv are zero.
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* - no exit symbol, code loops on return from main.
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*****************************************************************************/
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#ifndef APP_ENTRY_POINT
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#define APP_ENTRY_POINT main
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#endif
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#ifndef ARGSSPACE
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#define ARGSSPACE 128
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#endif
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.global _start
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.syntax unified
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.extern APP_ENTRY_POINT
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#ifdef FULL_LIBRARY
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.global exit
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#endif
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.section .init, "ax"
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.code 16
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.align 2
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.thumb_func
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_start:
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#ifdef __RAM_BUILD
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ldr r1, =__stack_end__
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mov sp, r1
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#endif
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#ifdef INITIALIZE_STACK
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mov r2, #0xCC
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ldr r0, =__stack_start__
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#ifndef __RAM_BUILD
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mov r1, sp
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#endif
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bl memory_set
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#endif
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#ifdef USE_PROCESS_STACK
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/* Set up process stack if size > 0 */
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ldr r1, =__stack_process_end__
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ldr r0, =__stack_process_start__
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subs r2, r1, r0
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beq 1f
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msr psp, r1
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mov r2, #2
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msr control, r2
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#ifdef INITIALIZE_STACK
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mov r2, #0xCC
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bl memory_set
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#endif
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1:
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#endif
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/* Copy initialised memory sections into RAM (if necessary). */
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ldr r0, =__data_load_start__
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ldr r1, =__data_start__
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ldr r2, =__data_end__
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bl memory_copy
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ldr r0, =__text_load_start__
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ldr r1, =__text_start__
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ldr r2, =__text_end__
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bl memory_copy
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ldr r0, =__fast_load_start__
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ldr r1, =__fast_start__
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ldr r2, =__fast_end__
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bl memory_copy
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ldr r0, =__ctors_load_start__
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ldr r1, =__ctors_start__
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ldr r2, =__ctors_end__
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bl memory_copy
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ldr r0, =__dtors_load_start__
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ldr r1, =__dtors_start__
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ldr r2, =__dtors_end__
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bl memory_copy
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ldr r0, =__rodata_load_start__
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ldr r1, =__rodata_start__
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ldr r2, =__rodata_end__
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bl memory_copy
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/* Zero the bss. */
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ldr r0, =__bss_start__
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ldr r1, =__bss_end__
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mov r2, #0
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bl memory_set
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/* Initialise the heap */
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ldr r0, = __heap_start__
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ldr r1, = __heap_end__
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sub r1, r1, r0
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mov r2, #0
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str r2, [r0]
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add r0, r0, #4
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str r1, [r0]
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/* Call constructors */
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ldr r0, =__ctors_start__
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ldr r1, =__ctors_end__
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ctor_loop:
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cmp r0, r1
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beq ctor_end
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ldr r2, [r0]
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add r0, #4
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push {r0-r1}
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blx r2
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pop {r0-r1}
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b ctor_loop
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ctor_end:
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/* Setup initial call frame */
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mov r0, #0
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mov lr, r0
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mov r12, sp
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start:
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/* Jump to application entry point */
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#ifdef FULL_LIBRARY
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mov r0, #ARGSSPACE
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ldr r1, =args
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ldr r2, =debug_getargs
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blx r2
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ldr r1, =args
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#else
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mov r0, #0
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mov r1, #0
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#endif
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ldr r2, =APP_ENTRY_POINT
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blx r2
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#ifdef FULL_LIBRARY
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.thumb_func
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exit:
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mov r5, r0 // save the exit parameter/return result
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/* Call destructors */
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ldr r0, =__dtors_start__
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ldr r1, =__dtors_end__
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dtor_loop:
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cmp r0, r1
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beq dtor_end
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ldr r2, [r0]
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add r0, #4
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push {r0-r1}
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blx r2
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pop {r0-r1}
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b dtor_loop
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dtor_end:
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/* Call atexit functions */
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ldr r2, =_execute_at_exit_fns
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blx r2
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/* Call debug_exit with return result/exit parameter */
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mov r0, r5
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ldr r2, =debug_exit
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blx r2
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#endif
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/* Returned from application entry point, loop forever. */
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exit_loop:
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b exit_loop
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memory_copy:
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cmp r0, r1
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beq 2f
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subs r2, r2, r1
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beq 2f
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1:
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ldrb r3, [r0]
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add r0, r0, #1
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strb r3, [r1]
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add r1, r1, #1
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subs r2, r2, #1
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bne 1b
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2:
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bx lr
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memory_set:
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cmp r0, r1
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beq 1f
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strb r2, [r0]
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add r0, r0, #1
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b memory_set
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1:
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bx lr
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#ifdef FULL_LIBRARY
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.bss
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args:
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.space ARGSSPACE
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#endif
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