mirror of
https://github.com/irmen/prog8.git
synced 2024-11-25 19:31:36 +00:00
neo skeletons added in docs
This commit is contained in:
parent
7d4dc3c063
commit
e7ab7b6d7a
@ -22,6 +22,7 @@ symboldumps:
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prog8c -target c128 import-all-c128.p8 -dumpsymbols > source/_static/symboldumps/skeletons-c128.txt
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prog8c -target cx16 import-all-cx16.p8 -dumpsymbols > source/_static/symboldumps/skeletons-cx16.txt
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prog8c -target pet32 import-all-pet32.p8 -dumpsymbols > source/_static/symboldumps/skeletons-pet32.txt
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prog8c -target neo import-all-neo.p8 -dumpsymbols > source/_static/symboldumps/skeletons-neo.txt
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prog8c -target virtual import-all-virtual.p8 -dumpsymbols > source/_static/symboldumps/skeletons-virtual.txt
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323
docs/source/_static/symboldumps/skeletons-neo.txt
Normal file
323
docs/source/_static/symboldumps/skeletons-neo.txt
Normal file
@ -0,0 +1,323 @@
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Prog8 compiler v10.5-SNAPSHOT by Irmen de Jong (irmen@razorvine.net)
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Prerelease version from git commit 7d4dc3c0 in branch master
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This software is licensed under the GNU GPL 3.0, see https://www.gnu.org/licenses/gpl.html
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Compiling program import-all-neo.p8
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Compiler target: neo
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LIBRARY MODULE NAME: anyall
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---------------------------
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anyall {
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all (uword arrayptr, uword num_elements) -> bool
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allw (uword arrayptr, uword num_elements) -> bool
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any (uword arrayptr, uword num_elements) -> bool
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anyw (uword arrayptr, uword num_elements) -> bool
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}
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LIBRARY MODULE NAME: buffers
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----------------------------
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smallringbuffer {
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ubyte[] buffer
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ubyte fill
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ubyte head
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ubyte tail
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get () -> ubyte
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getw () -> uword
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init ()
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put (ubyte value) -> bool
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putw (uword value) -> bool
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}
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ringbuffer {
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uword buffer_ptr
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uword fill
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uword head
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uword tail
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get () -> ubyte
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getw () -> uword
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inc_head ()
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inc_tail ()
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init ()
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put (ubyte value) -> bool
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putw (uword value) -> bool
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}
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LIBRARY MODULE NAME: compression
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--------------------------------
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compression {
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decode_rle (uword compressed @AY, uword target @R0, uword maxsize @R1) -> clobbers (X) -> uword @AY
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decode_rle_srcfunc (uword source_function @AY, uword target @R0, uword maxsize @R1) -> clobbers (X) -> uword @AY
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encode_rle (uword data, uword size, uword target, bool is_last_block) -> uword
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encode_rle_outfunc (uword data, uword size, uword output_function, bool is_last_block)
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}
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LIBRARY MODULE NAME: conv
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-------------------------
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conv {
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str @shared string_out
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any2uword (str string @AY) -> clobbers (Y) -> ubyte @A
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bin2uword (str string @AY) -> uword @AY
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hex2uword (str string @AY) -> uword @AY
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internal_byte2decimal (byte value @A) -> ubyte @Y, ubyte @A, ubyte @X
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internal_ubyte2decimal (ubyte value @A) -> ubyte @Y, ubyte @X, ubyte @A
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internal_ubyte2hex (ubyte value @A) -> clobbers (X) -> ubyte @A, ubyte @Y
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internal_uword2decimal (uword value @AY) -> ubyte @Y, ubyte @A, ubyte @X
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internal_uword2hex (uword value @AY) -> clobbers (A,Y)
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str2byte (str string @AY) -> clobbers (Y) -> byte @A
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str2ubyte (str string @AY) -> clobbers (Y) -> ubyte @A
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str2uword (str string @AY) -> uword @AY
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str2word (str string @AY) -> word @AY
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str_b (byte value @A) -> clobbers (X) -> str @AY
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str_ub (ubyte value @A) -> clobbers (X) -> str @AY
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str_ub0 (ubyte value @A) -> clobbers (X) -> str @AY
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str_ubbin (ubyte value @A) -> clobbers (X) -> str @AY
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str_ubhex (ubyte value @A) -> clobbers (X) -> str @AY
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str_uw (uword value @AY) -> clobbers (X) -> str @AY
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str_uw0 (uword value @AY) -> clobbers (X) -> str @AY
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str_uwbin (uword value @AY) -> clobbers (X) -> str @AY
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str_uwhex (uword value @AY) -> str @AY
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str_w (word value @AY) -> clobbers (X) -> str @AY
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}
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LIBRARY MODULE NAME: math
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-------------------------
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math {
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atan2 (ubyte x1 @R0, ubyte y1 @R1, ubyte x2 @R2, ubyte y2 @R3) -> ubyte @A
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cos8 (ubyte angle @A) -> clobbers (Y) -> byte @A
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cos8u (ubyte angle @A) -> clobbers (Y) -> ubyte @A
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cosr8 (ubyte radians @A) -> clobbers (Y) -> byte @A
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cosr8u (ubyte radians @A) -> clobbers (Y) -> ubyte @A
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crc16 (uword data, uword length) -> uword
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crc16_end () -> uword
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crc16_start ()
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crc16_update (ubyte value @A)
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crc32 (uword data, uword length)
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crc32_end ()
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crc32_start ()
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crc32_update (ubyte value @A)
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diff (ubyte v1 @A, ubyte v2 @Y) -> ubyte @A
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diffw (uword w1 @R0, uword w2 @AY) -> uword @AY
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direction (ubyte x1, ubyte y1, ubyte x2, ubyte y2) -> ubyte
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direction_qd (ubyte quadrant @A, ubyte xdelta @X, ubyte ydelta @Y) -> ubyte @A
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direction_sc (byte x1, byte y1, byte x2, byte y2) -> ubyte
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lerp (ubyte v0, ubyte v1, ubyte t) -> ubyte
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log2 (ubyte value @A) -> ubyte @Y
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log2w (uword value @AY) -> ubyte @Y
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mul16_last_upper () -> uword @AY
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randrange (ubyte n) -> ubyte
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randrangew (uword n) -> uword
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rnd () -> clobbers (Y) -> ubyte @A
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rndseed (uword seed1 @AY, uword seed2 @R0) -> clobbers (A,Y)
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rndw () -> uword @AY
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sin8 (ubyte angle @A) -> clobbers (Y) -> byte @A
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sin8u (ubyte angle @A) -> clobbers (Y) -> ubyte @A
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sinr8 (ubyte radians @A) -> clobbers (Y) -> byte @A
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sinr8u (ubyte radians @A) -> clobbers (Y) -> ubyte @A
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}
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LIBRARY MODULE NAME: string
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---------------------------
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string {
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append (uword target @R0, uword suffix @R1) -> clobbers (Y) -> ubyte @A
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compare (uword string1 @R0, uword string2 @AY) -> clobbers (Y) -> byte @A
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contains (uword string @AY, ubyte character @X) -> bool @Pc
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copy (uword source @R0, uword target @AY) -> clobbers (A) -> ubyte @Y
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endswith (str st, str suffix) -> bool
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find (uword string @AY, ubyte character @X) -> ubyte @A, bool @Pc
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findstr (str haystack, str needle) -> ubyte
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hash (str string @R0) -> ubyte @A
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isdigit (ubyte petsciichar @A) -> bool @Pc
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isletter (ubyte petsciichar @A) -> bool @Pc
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islower (ubyte petsciichar @A) -> bool @Pc
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isprint (ubyte petsciichar @A) -> bool @Pc
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isspace (ubyte petsciichar @A) -> bool @Pc
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isupper (ubyte petsciichar @A) -> bool @Pc
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left (uword source @AX, ubyte length @Y, uword target @R1) -> clobbers (A,Y)
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length (uword string @AY) -> clobbers (A) -> ubyte @Y
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lower (uword st @AY) -> ubyte @Y
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lowerchar (ubyte character @A) -> ubyte @A
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lstrip (str s)
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lstripped (str s) -> str
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ltrim (str s)
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ltrimmed (str s) -> str
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pattern_match (str string @AY, str pattern @R0) -> clobbers (Y) -> bool @A
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rfind (uword string @AY, ubyte character @X) -> ubyte @A, bool @Pc
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right (uword source @AY, ubyte length @X, uword target @R1) -> clobbers (A,Y)
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rstrip (str s)
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rtrim (str s)
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slice (uword source @R0, ubyte start @A, ubyte length @Y, uword target @R1) -> clobbers (A,Y)
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startswith (str st, str prefix) -> bool
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strip (str s)
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trim (str s)
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upper (uword st @AY) -> ubyte @Y
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upperchar (ubyte character @A) -> ubyte @A
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}
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LIBRARY MODULE NAME: syslib
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---------------------------
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neo {
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&uword IRQ_VEC
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&uword NMI_VEC
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&uword RESET_VEC
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}
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sys {
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const ubyte sizeof_bool
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const ubyte sizeof_byte
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const ubyte sizeof_float
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const ubyte sizeof_ubyte
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const ubyte sizeof_uword
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const ubyte sizeof_word
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const ubyte target
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clear_carry ()
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clear_irqd ()
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disable_caseswitch ()
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enable_caseswitch ()
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exit (ubyte returnvalue @A)
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exit2 (ubyte resulta @A, ubyte resultx @X, ubyte resulty @Y)
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exit3 (ubyte resulta @A, ubyte resultx @X, ubyte resulty @Y, bool carry @Pc)
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internal_stringcopy (uword source @R0, uword target @AY) -> clobbers (A,Y)
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irqsafe_clear_irqd ()
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irqsafe_set_irqd ()
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memcopy (uword source @R0, uword target @R1, uword count @AY) -> clobbers (A,X,Y)
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memset (uword mem @R0, uword numbytes @R1, ubyte value @A) -> clobbers (A,X,Y)
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memsetw (uword mem @R0, uword numwords @R1, uword value @AY) -> clobbers (A,X,Y)
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pop () -> ubyte @A
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popw () -> uword @AY
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progend () -> uword @AY
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push (ubyte value @A)
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pushw (uword value @AY)
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read_flags () -> ubyte @A
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reset_system ()
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restore_prog8_internals ()
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save_prog8_internals ()
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set_carry ()
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set_irqd ()
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wait (uword jiffies)
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waitvsync () -> clobbers (A)
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}
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cx16 {
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&uword r0
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&ubyte r0H
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&ubyte r0L
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&word r0s
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&byte r0sH
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&byte r0sL
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&uword r1
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&uword r10
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&ubyte r10H
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&ubyte r10L
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&word r10s
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&byte r10sH
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&byte r10sL
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&uword r11
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&ubyte r11H
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&ubyte r11L
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&word r11s
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&byte r11sH
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&byte r11sL
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&uword r12
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&ubyte r12H
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&ubyte r12L
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&word r12s
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&byte r12sH
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&byte r12sL
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&uword r13
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&ubyte r13H
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&ubyte r13L
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&word r13s
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&byte r13sH
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&byte r13sL
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&uword r14
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&ubyte r14H
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&ubyte r14L
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&word r14s
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&byte r14sH
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&byte r14sL
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&uword r15
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&ubyte r15H
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&ubyte r15L
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&word r15s
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&byte r15sH
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&byte r15sL
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&ubyte r1H
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&ubyte r1L
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&word r1s
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&byte r1sH
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&byte r1sL
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&uword r2
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&ubyte r2H
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&ubyte r2L
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&word r2s
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&byte r2sH
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&byte r2sL
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&uword r3
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&ubyte r3H
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&ubyte r3L
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&word r3s
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&byte r3sH
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&byte r3sL
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&uword r4
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&ubyte r4H
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&ubyte r4L
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&word r4s
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&byte r4sH
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&byte r4sL
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&uword r5
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&ubyte r5H
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&ubyte r5L
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&word r5s
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&byte r5sH
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&byte r5sL
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&uword r6
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&ubyte r6H
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&ubyte r6L
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&word r6s
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&byte r6sH
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&byte r6sL
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&uword r7
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&ubyte r7H
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&ubyte r7L
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&word r7s
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&byte r7sH
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&byte r7sL
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&uword r8
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&ubyte r8H
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&ubyte r8L
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&word r8s
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&byte r8sH
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&byte r8sL
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&uword r9
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&ubyte r9H
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&ubyte r9L
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&word r9s
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&byte r9sH
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&byte r9sL
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cpu_is_65816 () -> bool
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restore_virtual_registers () -> clobbers (A,Y)
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save_virtual_registers () -> clobbers (A,Y)
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}
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p8_sys_startup {
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cleanup_at_exit ()
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init_system ()
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init_system_phase2 ()
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}
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@ -15,7 +15,7 @@ Currently these machines can be selected as a compilation target (via the ``-tar
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- 'cx16': the `Commander X16 <https://www.commanderx16.com/>`_
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- 'c128': the Commodore 128 (*limited support*)
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- 'pet32': the Commodore PET 4032 (*limited support*)
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- 'atari': the Atari 800 XL (*experimental support*)
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- 'atari': the Atari 800 XL (*experimental*)
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- 'neo': the `Neo6502 <https://github.com/paulscottrobson/neo6502-firmware/wiki>`_ (*experimental*)
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- 'virtual': a builtin virtual machine
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|
118
examples/neo/hello.p8
Normal file
118
examples/neo/hello.p8
Normal file
@ -0,0 +1,118 @@
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%output raw
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%launcher none
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main {
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sub start() {
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romsub $fff1 = WriteCharacter(ubyte character @A)
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for cx16.r0L in "\n\n\n.... Hello from Prog8 :-)"
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WriteCharacter(cx16.r0L)
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repeat {
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}
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}
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sub start2() {
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%asm {{
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; Program constants
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CURSOR_POS_X = #0 ; character display 'X' coordinate
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CURSOR_POS_Y = #21 ; character display 'Y' coordinate
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NEWLINE_CHAR = #13 ; ASCII character code
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;--------------;
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; Main Program ;
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;--------------;
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||||
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start:
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;-----------------------------------------------;
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; Play sound effect - (API Group 8, Function 5) ;
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;-----------------------------------------------;
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lda neo.API_SOUND_CH_00 ; sound channel (API::sound->play->channel)
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sta neo.API_PARAMETERS + 0 ; set API 'Parameter0' (API::sound->play->channel)
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lda neo.API_SFX_COIN ; sound effect index (API::sound->play->effect)
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sta neo.API_PARAMETERS + 1 ; set API 'Parameter1' (API::sound->play->effect)
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lda neo.API_FN_PLAY_SOUND ; sound effect function (API::sound->play)
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sta neo.API_FUNCTION ; set API 'Function' (API::sound->play)
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lda neo.API_GROUP_SOUND ; 'Sound' API function group (API::sound)
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sta neo.API_COMMAND ; trigger 'Sound' API routine (API::sound)
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||||
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||||
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;--------------------------------------------------;
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||||
; Set cursor position - (API Group 2, Function 7) ;
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;--------------------------------------------------;
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||||
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; reposition the cursor to overwrite the default welcome text
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lda neo.API_FN_SET_CURSOR_POS ; set cursor position function (API::console->cursor)
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sta neo.API_FUNCTION ; set API 'Function' (API::console->cursor)
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lda CURSOR_POS_X ; cursor 'X' coordinate (API::console->cursor->x)
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sta neo.API_PARAMETERS + 0 ; set API 'Parameter0' (API::console->cursor->x)
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lda CURSOR_POS_Y ; cursor 'Y' coordinate (API::console->cursor->y)
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sta neo.API_PARAMETERS + 1 ; set API 'Parameter1' (API::console->cursor->y)
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lda neo.API_GROUP_CONSOLE ; 'Console' API function group (API::console)
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sta neo.API_COMMAND ; trigger 'Console' API routine (API::console)
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; this simply repeats the same routine as the previous block,
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||||
; but using the generic convenience macro, for the sake of demonstration
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lda CURSOR_POS_X
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sta neo.API_PARAMETERS + 0
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lda CURSOR_POS_Y
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sta neo.API_PARAMETERS + 1
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#neo.DoSendMessage ; send command 2,7
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.byte 2,7
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||||
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||||
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||||
;--------------------------------------------------------;
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||||
; Write character to console - (API Group 2, Function 6) ;
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||||
;--------------------------------------------------------;
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||||
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||||
; first, write a single newline character, using the special convenience macro
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lda NEWLINE_CHAR
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jsr neo.WriteCharacter
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||||
; the text foreground color can also be set by injecting a control character
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||||
lda neo.COLOR_DARK_GREEN
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jsr neo.WriteCharacter
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||||
; next, print the welcome message (a string of characters), using the API
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||||
ldx #0 ; initialize string iteration index
|
||||
lda neo.API_FN_WRITE_CHAR ; console write function (API::console->write)
|
||||
sta neo.API_FUNCTION ; set API 'Function' (API::console->write)
|
||||
print_next_char:
|
||||
lda neo.API_COMMAND ; previous API routine status
|
||||
bne print_next_char ; wait for previous API routine to complete
|
||||
|
||||
lda hello_msg , x ; next character of 'hello_msg' (API::console->write->char)
|
||||
beq end ; test for string end null byte
|
||||
sta neo.API_PARAMETERS + 0 ; set API 'Parameter0' (API::console->write->char)
|
||||
lda neo.API_GROUP_CONSOLE ; 'Console' API function group (API::console)
|
||||
sta neo.API_COMMAND ; trigger 'Console' API routine (API::console)
|
||||
|
||||
inx ; increment iteration index
|
||||
jmp print_next_char ; continue 'hello_msg' print loop
|
||||
|
||||
end:
|
||||
jmp end ; infinite loop
|
||||
|
||||
|
||||
;--------------;
|
||||
; Program data ;
|
||||
;--------------;
|
||||
|
||||
hello_msg:
|
||||
.text " Hello Neo6502" ; line 1 to display
|
||||
.text 13 ; newline
|
||||
.text " " ; 53 blanks
|
||||
.text 13 ; newline
|
||||
.text " Now you're playing with Neo Power!" ; line 2 to display
|
||||
.text 13 ; newline
|
||||
.text " (Some assembly required)" ; line 3 to display
|
||||
.text 0 ; null-terminated
|
||||
|
||||
|
||||
}}
|
||||
}
|
||||
}
|
Loading…
Reference in New Issue
Block a user