ec67912b63
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@20061 a1c6a512-1295-4272-9138-f99709370657
219 lines
5.1 KiB
ArmAsm
219 lines
5.1 KiB
ArmAsm
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Copyright (C) 2002 by Linus Nielsen Feltzing
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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
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#include "config.h"
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#include "cpu.h"
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.section .init.text,"ax",@progbits
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.global start
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start:
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mov.l .vbr_k,r1
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#ifdef DEBUG
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/* If we have built our code to be loaded via the standalone GDB
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* stub, we will have out VBR at some other location than 0x9000000.
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* We must copy the trap vectors for the GDB stub to our vector table. */
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mov.l .orig_vbr_k,r2
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/* Move the invalid instruction vector (4) */
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mov #4,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the invalid slot vector (6) */
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mov #6,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the bus error vector (9) */
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mov #9,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the DMA bus error vector (10) */
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mov #10,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the NMI vector as well (11) */
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mov #11,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the UserBreak vector as well (12) */
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mov #12,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the breakpoint trap vector (32) */
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mov #32,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the IO trap vector (33) */
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mov #33,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the serial Rx interrupt vector (105) */
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mov #105,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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/* Move the single step trap vector (127) */
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mov #127,r0
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shll2 r0
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mov.l @(r0,r2),r3
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mov.l r3,@(r0,r1)
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#endif /* DEBUG */
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ldc r1,vbr
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mov #0,r0
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ldc r0,gbr
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/* .iram copy is done first since it is reclaimed for other
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* uninitialized sections */
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/* copy the .iram section */
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mov.l .iramcopy_k,r0
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mov.l .iram_k,r1
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mov.l .iramend_k,r2
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/* Note: We cannot put a PC relative load into the delay slot of a 'bra'
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instruction (the offset would be wrong), but there is nothing else to
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do before the loop, so the delay slot would be 'nop'. The cmp / bf
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sequence is the same length, but more efficient. */
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cmp/hi r1,r2
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bf .noiramcopy
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.iramloop:
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mov.l @r0+,r3
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mov.l r3,@r1
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add #4,r1
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cmp/hi r1,r2
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bt .iramloop
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.noiramcopy:
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/* zero out .ibss */
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mov.l .iedata_k,r0
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mov.l .iend_k,r1
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bra .iedatastart
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mov #0,r2
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.iedataloop: /* backwards is faster and shorter */
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mov.l r2,@-r1
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.iedatastart:
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cmp/hi r0,r1
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bt .iedataloop
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/* zero out bss */
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mov.l .edata_k,r0
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mov.l .end_k,r1
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bra .edatastart
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mov #0,r2
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.edataloop: /* backwards is faster and shorter */
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mov.l r2,@-r1
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.edatastart:
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cmp/hi r0,r1
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bt .edataloop
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/* copy the .data section, for rombased execution */
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mov.l .datacopy_k,r0
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mov.l .data_k,r1
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cmp/eq r0,r1
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bt .nodatacopy /* Don't copy if src and dest are equal */
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mov.l .dataend_k,r2
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cmp/hi r1,r2
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bf .nodatacopy
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.dataloop:
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mov.l @r0+,r3
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mov.l r3,@r1
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add #4,r1
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cmp/hi r1,r2
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bt .dataloop
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.nodatacopy:
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/* Munge the main thread stack */
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mov.l .stackbegin_k,r0
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mov.l .stackend_k,r1
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mov r1,r15
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mov.l .deadbeef_k,r2
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.mungeloop: /* backwards is faster and shorter */
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mov.l r2,@-r1
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cmp/hi r0,r1
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bt .mungeloop
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/* call the mainline */
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mov.l .main_k,r0
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jsr @r0
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nop
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.hoo:
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bra .hoo
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nop
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.align 2
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.vbr_k:
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.long vectors
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#ifdef DEBUG
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.orig_vbr_k:
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.long 0x09000000
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#endif
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.iedata_k:
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.long _iedata
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.iend_k:
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.long _iend
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.iramcopy_k:
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.long _iramcopy
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.iram_k:
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.long _iramstart
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.iramend_k:
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.long _iramend
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.edata_k:
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.long _edata
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.end_k:
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.long _end
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.datacopy_k:
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.long _datacopy
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.data_k:
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.long _datastart
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.dataend_k:
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.long _dataend
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.stackbegin_k:
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.long _stackbegin
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.stackend_k:
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.long _stackend
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.deadbeef_k:
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.long 0xdeadbeef
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.main_k:
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.long _main
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.section .resetvectors
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vectors:
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.long start
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.long _stackend
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.long start
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.long _stackend
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