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174d4dd80c
This example platform for this port is the EVAL-ADF7XXXMB4Z w/ radio daughter cards: http://www.analog.com/en/evaluation/eval-adf7023/eb.html See the platform readme for usage and platform information: https://github.com/contiki-os/contiki/tree/master/platform/eval-adf7xxxmb4z/readme.md All files provided by Analog Devices for this port are released under the same license as Contiki and copyright Analog Devices Inc. per agreement between Redwire Consulting, LLC and Analog Devices Inc. (SOW 08122013)
332 lines
6.1 KiB
ArmAsm
332 lines
6.1 KiB
ArmAsm
/* Copyright (c) 2011 Red Hat Incorporated.
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All rights reserved.
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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
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are met:
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Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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The name of Red Hat Incorporated may not be used to endorse
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or promote products derived from this software without specific
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prior written permission.
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This software is provided by the copyright holders and contributors
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"AS IS" and any express or implied warranties, including, but not
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limited to, the implied warranties of merchantability and fitness for
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a particular purpose are disclaimed. In no event shall Red Hat
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incorporated be liable for any direct, indirect, incidental, special,
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exemplary, or consequential damages (including, but not limited to,
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procurement of substitute goods or services; loss of use, data, or
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profits; or business interruption) however caused and on any theory of
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liability, whether in contract, strict liability, or tort (including
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negligence or otherwise) arising in any way out of the use of this
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software, even if advised of the possibility of such damage. */
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#include "rl78-sys.h"
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.section ".vec","a"
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.short _start
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.section ".ivec","a"
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.macro _iv x
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.weak \x
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.short \x
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.endm
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#define IV(x) _iv _##x##_handler
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#define IVx() .short 0
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/* To use a vector, simply define a global function named foo_handler()
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for any IV(foo) listed below (i.e. tm05_handler) */
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.global _interrupt_vector_table
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_interrupt_vector_table:
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IV(wdti)
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IV(lvi)
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IV(p0)
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IV(p1)
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IV(p2)
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IV(p3)
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IV(p4)
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IV(p5)
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IV(st2)
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IV(sr2)
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IV(sre2)
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IV(dma0)
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IV(dma1)
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IV(st0)
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IV(sr0)
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IV(tm01h)
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IV(st1)
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IV(sr1)
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IV(sre1)
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IV(iica0)
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IV(tm00)
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IV(tm01)
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IV(tm02)
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IV(tm03)
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IV(ad)
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IV(rtc)
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IV(it)
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IV(kr)
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IV(st3)
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IV(sr3)
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IV(tm13)
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IV(tm04)
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IV(tm05)
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IV(tm06)
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IV(tm07)
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IV(p6)
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IV(p7)
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IV(p8)
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IV(p9)
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IV(p10)
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IV(p11)
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IV(tm10)
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IV(tm12)
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IV(sre3)
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IV(tm13h)
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IV(md)
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IV(iica1)
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IV(fl)
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IV(dma2)
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IV(dma3)
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IV(tm14)
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IV(tm15)
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IV(tm16)
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IV(tm17)
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IVx()
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IVx()
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IVx()
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IVx()
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IVx()
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IVx()
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IVx()
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IV(brk)
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/* Note: 126 vectors */
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.section ".csstart", "ax"
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.global __csstart
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__csstart:
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br !!_start
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.weak __rl78_option_byte_0
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.weak __rl78_option_byte_1
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.weak __rl78_option_byte_2
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.weak __rl78_option_byte_3
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__rl78_option_byte_0 = 0x6e
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__rl78_option_byte_1 = 0xff
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__rl78_option_byte_2 = 0xe8
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__rl78_option_byte_3 = 0x85
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.section ".opt", "a"
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.byte __rl78_option_byte_0
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.byte __rl78_option_byte_1
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.byte __rl78_option_byte_2
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.byte __rl78_option_byte_3
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.text
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.global _start
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.type _start, @function
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_start:
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movw sp, #__stack
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;; block move to initialize .data
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;; we're copying from 00:[_romdatastart] to 0F:[_datastart]
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;; and our data is not in the mirrored area.
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mov es, #0
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sel rb0 ; bank 0
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movw hl, #__datastart
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movw de, #__romdatastart
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sel rb1 ; bank 1
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movw ax, #__romdatacopysize
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shrw ax,1
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1:
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cmpw ax, #0
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bz $1f
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decw ax
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sel rb0 ; bank 0
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movw ax, es:[de]
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movw [hl], ax
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incw de
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incw de
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incw hl
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incw hl
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sel rb1
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br $1b
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1:
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sel rb0 ; bank 0
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;; block fill to .bss
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sel rb0 ; bank 0
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movw hl, #__bssstart
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movw ax, #0
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sel rb1 ; bank 1
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movw ax, #__bsssize
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shrw ax,1
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1:
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cmpw ax, #0
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bz $1f
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decw ax
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sel rb0 ; bank 0
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movw [hl], ax
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incw hl
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incw hl
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sel rb1
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br $1b
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1:
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sel rb0 ; bank 0
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; call !!__rl78_init
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#ifdef PROFILE_SUPPORT /* Defined in gcrt0.S. */
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movw ax, # _start
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push ax
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movw ax, # _etext
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push ax
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call !!__monstartup
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#endif
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movw ax, #0
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push ax /* envp */
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push ax /* argv */
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push ax /* argc */
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call !!_main
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.LFE2:
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movw ax, r8 ; Save return code.
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push ax
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#ifdef PROFILE_SUPPORT
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call !!__mcleanup
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#endif
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call !!_exit
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.size _start, . - _start
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.global _rl78_run_preinit_array
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.type _rl78_run_preinit_array,@function
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_rl78_run_preinit_array:
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movw hl, #__preinit_array_start
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movw de, #__preinit_array_end
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movw bc, #-2
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br $_rl78_run_inilist
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.global _rl78_run_init_array
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.type _rl78_run_init_array,@function
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_rl78_run_init_array:
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movw hl, #__init_array_start
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movw de, #__init_array_end
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movw bc, #2
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br $_rl78_run_inilist
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.global _rl78_run_fini_array
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.type _rl78_run_fini_array,@function
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_rl78_run_fini_array:
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movw hl, #__fini_array_start
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movw de, #__fini_array_end
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movw bc, #-2
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/* fall through */
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;; HL = start of list
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;; DE = end of list
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;; BC = step direction (+2 or -2)
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_rl78_run_inilist:
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next_inilist:
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movw ax, hl
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cmpw ax, de
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bz $done_inilist
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movw ax, [hl]
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cmpw ax, #-1
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bz $skip_inilist
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cmpw ax, #0
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bz $skip_inilist
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push ax
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push bc
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push de
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push hl
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call ax
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pop hl
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pop de
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pop bc
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pop ax
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skip_inilist:
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movw ax, hl
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addw ax, bc
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movw hl, ax
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br $next_inilist
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done_inilist:
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ret
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.section .init,"ax"
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.global __rl78_init
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__rl78_init:
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.section .fini,"ax"
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.global __rl78_fini
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__rl78_fini:
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call !!_rl78_run_fini_array
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.section .data
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.global ___dso_handle
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.weak ___dso_handle
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___dso_handle:
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.long 0
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;;; Provide Dwarf unwinding information that will help GDB stop
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;;; backtraces at the right place. This is stolen from assembly
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;;; code generated by GCC with -dA.
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.section .debug_frame,"",@progbits
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.Lframe0:
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.4byte .LECIE0-.LSCIE0 ; Length of Common Information Entry
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.LSCIE0:
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.4byte 0xffffffff ; CIE Identifier Tag
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.byte 0x1 ; CIE Version
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.ascii "\0" ; CIE Augmentation
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.uleb128 0x1 ; CIE Code Alignment Factor
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.sleb128 -1 ; CIE Data Alignment Factor
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.byte 0xd ; CIE RA Column
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.byte 0xc ; DW_CFA_def_cfa
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.uleb128 0xc
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.uleb128 0x3
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.byte 0x8d ; DW_CFA_offset, column 0xd
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.uleb128 0x3
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.p2align 2
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.LECIE0:
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.LSFDE0:
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.4byte .LEFDE0-.LASFDE0 ; FDE Length
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.LASFDE0:
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.4byte .Lframe0 ; FDE CIE offset
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.4byte _start ; FDE initial location
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.4byte .LFE2 - _start ; FDE address range
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.byte 0xf ; DW_CFA_def_cfa_expression
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.uleb128 1 ; length of expression
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.byte 0x30 ; DW_OP_lit0
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.p2align 2
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.LEFDE0:
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.text
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