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anton
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1.1
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\ Compare nonrelocatable images and produce a relocatable image |
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anton
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1.23
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\ Copyright (C) 1996,1997,1998,2002,2003,2004,2007,2010 Free Software Foundation, Inc. |
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anton
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1.1
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\ This file is part of Gforth. |
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\ Gforth 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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anton
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1.19
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\ as published by the Free Software Foundation, either version 3 |
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anton
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1.1
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\ of the License, or (at your option) any later version. |
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\ This program is distributed in the hope that it will be useful, |
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\ but WITHOUT ANY WARRANTY; without even the implied warranty of |
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\ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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\ GNU General Public License for more details. |
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\ You should have received a copy of the GNU General Public License |
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anton
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1.19
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\ along with this program. If not, see http://www.gnu.org/licenses/. |
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anton
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1.1
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s" address-unit-bits" environment? drop constant bits/au |
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pazsan
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1.17
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7 constant dodoes-tag |
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anton
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1.1
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: write-cell { w^ w file-id -- ior } |
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\ write a cell to the file |
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w cell file-id write-file ; |
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anton
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1.7
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: bset ( bmask c-addr -- ) |
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tuck c@ or swap c! ; |
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anton
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1.1
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: set-bit { u addr -- } |
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\ set bit u in bit-vector addr |
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u bits/au /mod |
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>r 1 bits/au 1- rot - lshift |
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anton
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1.7
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r> addr + bset ; |
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anton
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1.1
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anton
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1.9
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: image-data { image1 image2 i-field expected-offset -- base offset } |
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image1 i-field + @ image2 i-field + @ over - { base offset } |
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offset 0= |
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if |
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." : images have the same base address; producing only a data-relocatable image" cr |
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else |
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anton
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1.15
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\ the following sanity check produces false positices with exec-shield |
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\ offset abs expected-offset <> abort" images produced by different engines" |
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anton
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1.9
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." offset=" offset . cr |
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0 image1 i-field + ! 0 image2 i-field + ! |
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endif |
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base offset ; |
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pazsan
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1.11
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: >tag ( index -- tag ) |
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pazsan
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1.13
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dup dodoes-tag 2 + > IF |
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pazsan
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1.11
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$21 1 DO dup tag-offsets I cells + @ < IF |
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pazsan
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1.13
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tag-offsets I 1- cells + @ - I 1- 9 lshift + negate |
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pazsan
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1.11
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UNLOOP EXIT THEN LOOP |
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THEN -2 swap - ; |
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anton
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1.9
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anton
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1.1
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: compare-images { image1 image2 reloc-bits size file-id -- } |
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\G compares image1 and image2 (of size cells) and sets reloc-bits. |
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\G offset is the difference for relocated addresses |
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\ this definition is certainly to long and too complex, but is |
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\ hard to factor. |
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image1 @ image2 @ over - { dbase doffset } |
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doffset 0= abort" images have the same dictionary base address" |
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." data offset=" doffset . cr |
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anton
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1.9
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." code" image1 image2 cell 26 cells image-data { cbase coffset } |
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pazsan
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1.25
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." xt" image1 image2 13 cells 22 cells image-data { xbase xoffset } |
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anton
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1.1
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size 0 |
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u+do |
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image1 i th @ image2 i th @ { cell1 cell2 } |
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cell1 doffset + cell2 = |
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if |
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cell1 dbase - file-id write-cell throw |
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i reloc-bits set-bit |
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else |
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coffset 0<> cell1 coffset + cell2 = and |
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if |
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cell1 cbase - cell / { tag } |
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pazsan
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1.11
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tag >tag $4000 xor file-id write-cell throw |
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anton
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1.1
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i reloc-bits set-bit |
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else |
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anton
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1.9
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xoffset 0<> cell1 xoffset + cell2 = and |
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anton
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1.1
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if |
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anton
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1.9
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cell1 xbase - cell / { tag } |
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pazsan
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1.11
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tag >tag file-id write-cell throw |
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anton
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1.9
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i reloc-bits set-bit |
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else |
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cell1 file-id write-cell throw |
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cell1 cell2 <> |
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if |
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0 i th 9 u.r cell1 17 u.r cell2 17 u.r cr |
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endif |
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anton
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1.1
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endif |
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endif |
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endif |
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loop ; |
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: comp-image ( "image-file1" "image-file2" "new-image" -- ) |
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name slurp-file { image1 size1 } |
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anton
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1.21
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image1 size1 s" Gforth4" search 0= abort" not a Gforth image" |
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anton
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1.1
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drop 8 + image1 - { header-offset } |
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size1 aligned size1 <> abort" unaligned image size" |
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anton
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1.8
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image1 header-offset + 2 cells + @ header-offset + size1 <> abort" header gives wrong size" |
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anton
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1.1
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name slurp-file { image2 size2 } |
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size1 size2 <> abort" image sizes differ" |
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name ( "new-image" ) w/o bin create-file throw { outfile } |
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size1 header-offset - 1- cell / bits/au / 1+ { reloc-size } |
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reloc-size allocate throw { reloc-bits } |
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reloc-bits reloc-size erase |
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image1 header-offset outfile write-file throw |
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base @ hex |
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image1 header-offset + image2 header-offset + reloc-bits |
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size1 header-offset - aligned cell / outfile compare-images |
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base ! |
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reloc-bits reloc-size outfile write-file throw |
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outfile close-file throw ; |
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