Twenty four places moved Q into A or B by pushing it and popping it back. That is four bus cycles and two bytes to do what MVQA does in one of each, and several of them are inside loops - Life, the calculator, int8. Nineteen more loaded zero with INIA 0d0 where RSTA says the same thing in one byte. Both are equivalent at the CPU rather than by assertion: RSTA and INIA both leave Status alone, and PSHQ followed by POPA nets to A = Q with the Stack Pointer where it started. The one difference is that the pair leaves a copy of Q in memory just below the Stack Pointer and MVQA does not, which nothing here reads. Five recorded outputs moved and every one of them says the change worked: - 16x16Life fits five more generations into the same cycle budget, the first 457 lines identical, because the loop got cheaper. - Life.sbx is 1409 bytes rather than 1411, in three tests that list it. - Edit.sbx is 1995 rather than 1996. That last one broke a check I added this morning, and the hole is worth recording: the CosmOS README's claim about Edit's size did not have the word "Edit" on the same line as the number, because the subject was in the sentence before, so the check that measures quoted sizes skipped it silently. The sentence now names what it is talking about, which makes it both checkable and clearer, and the check fails on a wrong number there. Comments on either half of a replaced pair are carried onto the instruction that replaces them, so nothing anybody wrote was lost.
306 lines
6.5 KiB
NASM
306 lines
6.5 KiB
NASM
; text.asm
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; Picking a line of typing apart.
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;
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; A shell reads a line and has to decide what was asked for. That is two jobs: cutting the
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; first word off the line, and telling whether a word is the one being looked for. There
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; is nothing else here, because there is nothing else a command line needs yet.
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;
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; Written by Anachronaut
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#Program
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; DP0 names a line ending in a zero byte. Cuts the first word off it, in place, by writing
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; a zero byte over the space that ends the word. DP0 is unchanged, because a RET puts it
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; back, so afterwards DP0 names just the first word.
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;
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; Where the rest of the line begins goes in TextRest, with any spaces between skipped. A
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; line with only one word on it leaves TextRest naming that line's zero byte, which reads
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; as an empty argument rather than as a missing one, and is the same thing here.
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textSplit:
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LDA.0
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BRA textSplitHere ; The line ended, so the whole of it was one word.
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INIB 0x20
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CCF
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SUB
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BRQ textSplitCut
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INCD.0
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BRI textSplit
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textSplitCut:
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RSTA
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STA.0 ; The space becomes the end of the word.
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INCD.0
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textSplitSkip:
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LDA.0
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BRA textSplitHere
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INIB 0x20
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CCF
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SUB
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BNQ textSplitHere ; Something that is not a space: the rest starts here.
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INCD.0
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BRI textSplitSkip
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textSplitHere:
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SETD.1 TextRest
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STD.0.1
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RET
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; DP0 and DP1 name strings ending in zero bytes. Q is zero if they are the same.
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;
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; The two ending together is what makes them the same. Comparing until one of them ends
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; would call "dir" and "dirty" the same word, which is the kind of thing a shell gets
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; wrong once and confusingly.
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textSame:
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LDA.0
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LDB.1
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CCF
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SUB
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BNQ textDiffer
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LDA.0
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BRA textAlike ; Equal, and both of them zero: they ended together.
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INCD.0
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INCD.1
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BRI textSame
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textAlike:
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RSTA
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RSTB
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CCF
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ADD ; Q is zero: the same.
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RET
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textDiffer:
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RSTA
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INIB 0d1
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CCF
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ADD ; Q is one: not the same.
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RET
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; DP0 names text. Reads hexadecimal digits off the front of it into TextValue, most
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; significant byte first. Q is zero if there was at least one digit to read.
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;
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; Digits past the fourth push the earlier ones off the top rather than being refused,
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; which is what typing over an address does on every monitor there has ever been.
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textHexWord:
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RSTA
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SETD.1 TextValue
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STA.1
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INCD.1
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STA.1
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SETD.1 TextDigits
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STA.1
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textHexLoop:
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LDA.0
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CALL textHexDigit
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MVQA
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INIB 0xFF
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CCF
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SUB
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BRQ textHexEnd ; Not a digit, so the number stopped before it.
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CALL textHexShift
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SETD.1 TextDigits
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LDA.1
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INCA
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STA.1
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INCD.0
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BRI textHexLoop
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textHexEnd:
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SETD.1 TextDigits
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LDA.1
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BRA textHexNothing
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RSTA
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RSTB
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CCF
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ADD ; Q is zero: there was a number.
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RET
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textHexNothing:
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RSTA
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INIB 0d1
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CCF
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ADD ; Q is one: there was not.
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RET
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; A holds the digit just read. Moves TextValue up by one place and puts the digit in the
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; hole that leaves.
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;
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; A and B are a circular shift register sixteen bits long, so rotating them left four
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; times multiplies the pair by sixteen. What fell off the top of the high byte comes round
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; into the bottom of the low one, which is exactly the nybble the new digit wants, so it
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; is masked away first.
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textHexShift:
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SETD.1 TextDigit
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STA.1
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SETD.0 TextValue
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LDA.0
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INCD.0
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LDB.0
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SHL SHL SHL SHL
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SETD.0 TextValue
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STA.0 ; The high byte is finished.
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PSHB
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POPA
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INIB 0xF0
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AND
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MVQA
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SETD.1 TextDigit
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LDB.1
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OR
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SETD.0 TextValue
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INCD.0
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STQ.0
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RET
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; A holds a character. Q is what it is worth as a hexadecimal digit, or 0xFF if it is not
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; one. Upper and lower case both count, because nobody wants to be told which they meant.
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;
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; Everything below works from the distance above '0', which is why the letters are tested
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; at seventeen and thirty two rather than at anything recognisable.
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textHexDigit:
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INIB 0x30
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CCF
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SUB
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BRC textHexNo ; Below '0'.
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MVQA
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INIB 0d10
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CCF
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SUB
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BNC textHexUpper ; Ten or more above '0', so not 0 to 9.
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RSTB
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CCF
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ADD ; Q is the digit itself.
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RET
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textHexUpper:
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INIB 0d17
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CCF
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SUB
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BRC textHexNo ; Between '9' and 'A'.
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MVQA
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INIB 0d6
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CCF
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SUB
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BNC textHexLower ; Past 'F'.
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INIB 0d10
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CCF
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ADD
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RET
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textHexLower:
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INIB 0d32
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CCF
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SUB
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BRC textHexNo ; Between 'F' and 'a'.
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MVQA
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INIB 0d6
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CCF
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SUB
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BNC textHexNo ; Past 'f'.
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INIB 0d10
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CCF
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ADD
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RET
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textHexNo:
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RSTA
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INIB 0xFF
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CCF
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ADD
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RET
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; ---- A number written in decimal ----
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;
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; DP0 names it. Q is the value, and TextDigits says how many digits were read, which is
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; zero when there was no number there at all. Stops at the first thing that is not a digit.
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;
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; Decimal rather than hex, and one byte rather than two, because this is for the numbers a
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; person types at a program: a line number, a count, a how many. Nobody counts lines in
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; hex, and nobody types a line number above 255 on a machine this size. textHexWord is
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; still the one for an address, where hex is what everybody means.
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;
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; Ten times the running total is worked out as eight of it plus two of it, because nothing
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; on this machine multiplies. Anything past 255 wraps, which is what the same sum does
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; everywhere else here.
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textNumber:
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RSTA
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SETD.1 TextValue
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STA.1
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SETD.1 TextDigits
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STA.1
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textNumberLoop:
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LDA.0
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BRA textNumberDone
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; Below '0' or above '9' ends it.
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INIB 0d48
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CCF
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SUB
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BRC textNumberDone ; It borrowed, so the character was below '0'.
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MVQA
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INIB 0d10
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CCF
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SUB
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BNC textNumberDone ; It did not borrow, so it was ten or more past '0'.
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PSHA ; The digit, while the total is multiplied.
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SETD.1 TextValue
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LDA.1
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LDB.1
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CCF
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ADD ; Twice.
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MVQA
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MVQB
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PSHA ; Twice, kept: ten is eight and two.
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CCF
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ADD ; Four times.
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MVQA
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MVQB
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CCF
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ADD ; Eight times.
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MVQA
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POPB
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CCF
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ADD ; Ten times.
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MVQA
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POPB
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CCF
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ADD ; And the digit.
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SETD.1 TextValue
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STQ.1
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SETD.1 TextDigits
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LDA.1
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INCA
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STA.1
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INCD.0
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BRI textNumberLoop
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textNumberDone:
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SETD.1 TextValue
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LDA.1
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RSTB
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CCF
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ADD ; Q is the value, the way a routine hands a byte back.
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RET
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#Data
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; Where the rest of the line begins, after textSplit has taken a word off the front.
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TextRest:
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0x00 0x00
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; What textHexWord read, and what it needs while reading it.
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TextValue:
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0x00 0x00
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TextDigits:
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0x00
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TextDigit:
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0x00
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