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4160c8ebbf |
6
blk/083
6
blk/083
@ -1,5 +1,6 @@
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C<?* is a pointer to a word being called by C<?. If 0 or 1,
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will return that value as-is.
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C<? is a flag indicating whether a character is waiting in the
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input stream. 1 means yes, 0 means no. It is the responsibility
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of C<* to update that flag.
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WORDBUF is the buffer used by WORD
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@ -12,5 +13,4 @@ jump to this address. If you use one of those slots for an
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interrupt, write a jump to the appropriate offset in that RAM
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location.
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(cont.)
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6
blk/267
Normal file
6
blk/267
Normal file
@ -0,0 +1,6 @@
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XPACK - pack source code
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The goal of this word is to pack source code in tight places,
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such as on the boot section of an EEPROM. It takes a block
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number, reads it and packs it to HERE. It normalizes all
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whitespaces to a single space and ignore comments.
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16
blk/268
Normal file
16
blk/268
Normal file
@ -0,0 +1,16 @@
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: XPACK ( blkno -- )
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BLK@
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BLK( 0x2e RAM+ ! ( boot ptr )
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['] (boot<) 0x08 RAM+ ! ( C<* override )
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BEGIN
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WORD
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0x2e RAM+ @ BLK( 1024 + < IF
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DUP LIT< ( S= IF
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DROP [COMPILE] (
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ELSE
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SCPY 0x20 H@ 1- C!
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THEN 0 ( loop again )
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ELSE 1 ( stop looping ) THEN
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UNTIL
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0 0x08 RAM+ !
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;
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2
blk/398
2
blk/398
@ -2,7 +2,7 @@
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for an abort message )
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: (parse) (parsed) NOT IF ABORT THEN ;
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: C<? 0x06 RAM+ @ DUP 2 > IF EXECUTE THEN ( 06 == C<?* ) ;
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: C<? 0x06 RAM+ @ ;
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: C<
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0x08 RAM+ @ ( 08 == C<* override )
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DUP NOT IF DROP 0x0c RAM+ @ THEN ( 0c == C<* )
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BIN
emul/z80c.bin
BIN
emul/z80c.bin
Binary file not shown.
@ -61,17 +61,21 @@
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;
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: LOAD
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( save BLK>, C<* override and boot< ptr to RSP )
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( save restorable variables to RSP )
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BLK> @ >R
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0x08 RAM+ @ >R
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0x2e RAM+ @ >R
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0x06 RAM+ @ >R ( C<? )
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0x2e RAM+ @ >R ( boot ptr )
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BLK@
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( Point to beginning of BLK )
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BLK( 0x2e RAM+ !
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( 08 == C<* override )
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['] _ 0x08 RAM+ !
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( While we interpret, don't print "ok" after every word )
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1 0x06 RAM+ ! ( 06 == C<? )
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INTERPRET
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R> 0x2e RAM+ !
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R> 0x06 RAM+ !
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( Before we restore C<* are we restoring it to "_"?
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if yes, it means we're in a nested LOAD which means we
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should also load back the saved BLK>. Otherwise, we can
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@ -18,7 +18,8 @@
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: BEGIN H@ ; IMMEDIATE
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: AGAIN COMPILE (br) H@ - , ; IMMEDIATE
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: UNTIL COMPILE (?br) H@ - , ; IMMEDIATE
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: ( BEGIN LIT< ) WORD S= UNTIL ; IMMEDIATE
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: _ BEGIN LIT< ) WORD S= UNTIL ; IMMEDIATE
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40 CURRENT @ 4 - C!
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( Hello, hello, krkrkrkr... do you hear me?
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Ah, voice at last! Some lines above need comments
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BTW: Forth lines limited to 64 cols because of default
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@ -27,6 +28,8 @@
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"_": words starting with "_" are meant to be "private",
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that is, only used by their immediate surrondings.
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40 is ASCII for '('. We do this to simplify XPACK's task of
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not mistakenly consider '(' definition as a comment.
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LITS: 34 == litWord
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LITA: 36 == addrWord
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COMPILE: Tough one. Get addr of caller word (example above
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@ -54,7 +54,7 @@
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DUP @ 25136 = NOT IF 0 EXIT THEN ( a 0 )
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( We have "0b" prefix )
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2+
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0 ( a r )
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0 ( a r )
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BEGIN
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SWAP C@+ ( r a+1 c )
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DUP NOT IF 2DROP 1 EXIT THEN ( r 1 )
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@ -59,15 +59,18 @@
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LF IN( IN> !
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;
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: RDLN<? IN> @ C@ ;
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( And finally, implement a replacement for the (c<) routine )
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( And finally, implement C<* )
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: RDLN<
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RDLN<? ( c )
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( not EOL? good, inc and return )
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DUP IF 1 IN> +! EXIT THEN ( c )
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( EOL ? readline. we still return typed char though )
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(rdln) ( c )
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IN> @ C@
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DUP IF
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( not EOL? good, inc and return )
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1 IN> +!
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ELSE
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( EOL ? readline. we still return null though )
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(rdln)
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THEN
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( update C<? flag )
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IN> @ C@ 0 > 0x06 RAM+ ! ( 06 == C<? )
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;
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( Initializes the readln subsystem )
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@ -78,7 +81,7 @@
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the last typed 0x0a and one for the following NULL. )
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INBUFSZ 4 + ALLOT
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(infl)
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['] RDLN<? 0x06 RAM+ !
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['] RDLN< 0x0c RAM+ !
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1 0x06 RAM+ ! ( 06 == C<? )
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;
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@ -25,7 +25,7 @@ are other recipes related to the RC2014:
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* [Writing to a AT28 from Collapse OS](eeprom/README.md)
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* [Accessing a MicroSD card](sdcard/README.md)
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* [Assembling binaries](zasm/README.md)
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* [Self-hosting](selfhost/README.md)
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* [Interfacing a PS/2 keyboard](ps2/README.md)
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## Recipe
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@ -1,7 +1,2 @@
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: (c<) KEY DUP EMIT ;
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: _
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ACIA$
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." Collapse OS" CRLF
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( 0c == CINPTR )
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['] (c<) 0x0c RAM+ !
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; _
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: x KEY DUP EMIT ;
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: _ ACIA$ (ok) ['] x 0x0c RAM+ ! ; _
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@ -105,5 +105,11 @@ And thats it! You have full access to disk block mechanism:
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(at this moment, the driver is a bit slow though...)
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## How do I fill my SD card with Collapse OS' FS?
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Very easy. You see that `/emul/blkfs` file? You dump it to your raw device.
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For example, if the device you get when you insert your SD card is `/dev/sdb`,
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then you type `cat emul/blkfs | sudo tee /dev/sdb > /dev/null`.
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[schematic]: spirelay/spirelay.pdf
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[inspiration]: https://www.ecstaticlyrics.com/electronics/SPI/fast_z80_interface.html
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54
recipes/rc2014/selfhost/README.md
Normal file
54
recipes/rc2014/selfhost/README.md
Normal file
@ -0,0 +1,54 @@
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# Assembling Collapse OS from within it
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This is where we tie lose ends, complete the circle, loop the loop: we assemble
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a new Collapse OS *entirely* from within Collapse OS and write it to EEPROM,
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either for another RC2014 or for an OS upgrade.
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## Gathering parts
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* stage4 from `sdcard` recipe. If you want to write to EEPROM as the final step,
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you'll need a hybrid stage4 that also includes stuff from the `eeprom` recipe.
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## Building stage 1
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### Part 1
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Building the first part of stage 1 (the binary part, before the inlined-source
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part) from within Collapse OS is actually very similar from building it from a
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modern environment. If you take the time to look at the base recipe `Makefile`,
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you'll see `cat xcomp.fs | $(STAGE2)`. That command builds part 1. Open
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`xcomp.fs` in a text editor and take a look at it.
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To assemble stage 1 from RC2014, all you need to do is to type those commands
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in the same order, and replace the `H@ 256 /MOD 2 PC! 2 PC!` lines with `H@ .X`.
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Those commands will inform you of the begin/end offsets of the assembled binary.
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The meaning of these commands is not explained here. You are encouraged to read
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the in-system documentation for more information.
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However, one thing you should know is that because the SD card driver is a bit
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slow, some of these commands take a long time. Multiple minutes. Be patient.
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Once all your commands are run and that you have your begin/end offset (write
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them down somewhere), you're ready to assemble part 2.
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### What to do on SDerr?
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If you get `SDerr` in the middle of a LOAD operation, something went wrong with
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the SD card. The bad news is that it left your xcomp operation in an
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inconsistent state. If your at the beginning of it, it's easier to restart it
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entirely.
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If you're towards the end, you might want to repair it. To do so, you'll have to
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bring your `XCURRENT` and `HERE` values to where they were before the LOAD
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operation. You could have thought ahead and printed them before the LOAD, but if
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you didn't, you'll just have to dig in your memory with `DUMP`.
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You're looking at the offset of the last wordref of the *previous* LOAD
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operation. That offset is going in `XCURRENT`. Then, you're looking at the end
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of that word. That offset goes in `HERE`. Once you've done that, relaunch your
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LOAD.
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### Part 2
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TODO
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@ -13,7 +13,7 @@ by more than once space or by a newline. Hackish, but works.
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int main()
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{
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int spccnt = 2; // if the first char is a (, consider it a comment opener.
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int spccnt = 1; // if the first char is a (, consider it a comment opener.
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int incomment = 0;
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int c;
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c = getchar();
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@ -24,7 +24,7 @@ int main()
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// doesn't like when they're not there...
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putchar(c);
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}
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spccnt += 2;
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spccnt += 1;
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} else if (c == ' ') {
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spccnt++;
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} else {
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@ -33,7 +33,7 @@ int main()
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incomment = 0;
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}
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} else {
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if ((c == '(') && (spccnt > 1)) {
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if ((c == '(') && spccnt) {
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putchar(' ');
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spccnt = 0;
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int next = getchar();
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