lawless-legends/Platform/Apple/virtual/src/plasma/gameloop.pla

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2014-08-21 15:17:50 +00:00
///////////////////////////////////////////////////////////////////////////////////////////////////
// Copyright (C) 2015 The 8-Bit Bunch. Licensed under the Apache License, Version 1.1
// (the "License"); you may not use this file except in compliance with the License.
// You may obtain a copy of the License at <http://www.apache.org/licenses/LICENSE-1.1>.
// Unless required by applicable law or agreed to in writing, software distributed under
// the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF
// ANY KIND, either express or implied. See the License for the specific language
// governing permissions and limitations under the License.
///////////////////////////////////////////////////////////////////////////////////////////////////
include "gamelib.plh"
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Fixed memory locations
const seed = $4E // Incremented continuously by keyboard read routine
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const displayEngine = $6000 // main mem (raycaster and tile engine at same location)
const expandVec = $2000 // aux mem (only for raycaster)
const fontEngine = $E000 // main mem
const heapStart = $F000 // main mem
const heapSize = $800
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Other constants
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const callbacks = $300
const kbd = $C000
const kbdStrobe = $C010
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const CHAR_WND_LIFE_X = 91
const CHAR_WND_GUN_X = 114
const ANIM_FLAG_FWD = $20
const ANIM_FLAG_FWD_BKWD = $40
const ANIM_FLAG_RANDOM = $80
const ANIM_PAUSE_MAX = 300
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include "playtype.plh"
include "gen_images.plh"
include "gen_modules.plh"
word global // the global heap object, from which all live objects must be reachable
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Predefined functions, for circular calls or out-of-order calls
predef setWindow2, initCmds, nextAnimFrame
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Global variables
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byte mapNum
byte mapIs3D
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word mapNameHash = 0
word totalMapWidth
word totalMapHeight
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byte needRender = FALSE
byte textDrawn = FALSE
byte isPlural = FALSE
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word skyNum = 9
word groundNum = 10
byte portraitNum = 1
word triggerOriginX, triggerOriginY
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word triggerTbl
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word cmdTbl[64]
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byte frameLoaded = 0
// Queue setMap / teleport, since otherwise script might be replaced while executing
byte q_mapIs3D
byte q_mapNum = 0
word q_x
word q_y
byte q_dir
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// For decimal conversion and display tabbing
byte decimalBuf[7]
byte tabBuf[5]
// Animation tracking
word curPortrait = 0
byte animFlags
byte animDir
byte animDirCt
byte animNumFrames
byte animFrame
word animPauseCt
// Game library functions
predef _getGlobals, _rand16
predef _printf1, _printf2, _printf3, _printf4
predef _displayf1, _displayf2, _displayf3, _displayf4
predef _buildString, _addToString, _finishString, _rawDisplayStr, _displayStr
predef _puts, _min, _max
predef _countList, _countListFiltered, _randomFromListFiltered, _addToList, _getUpperKey, _beep
predef _showParty, _mmgr, _setPortrait, _setWindow1, _setWindow2, _setWindow3, _clearWindow
predef _getYN, _reboot, _brk, _encodeDice, _rollDice
predef _setNeedRender, _setPlural, _setTextDrawn
word gameLib_addrs = @_getGlobals, @_rand16
word = @_printf1, @_printf2, @_printf3, @_printf4
word = @_displayf1, @_displayf2, @_displayf3, @_displayf4
word = @_buildString, @_addToString, @_finishString, @_rawDisplayStr, @_displayStr
word = @_puts, @_min, @_max
word = @_countList, @_countListFiltered, @_randomFromListFiltered, @_addToList, @_getUpperKey, @_beep
word = @_showParty, @_mmgr, @_setPortrait, @_setWindow1, @_setWindow2, @_setWindow3, @_clearWindow
word = @_getYN, @_reboot, @_brk, @_encodeDice, @_rollDice
word = @_setNeedRender, @_setPlural, @_setTextDrawn
word = 0 // end of library functions
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Definitions used by assembly code
asm __defs
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; Use hi-bit ASCII for Apple II
!convtab "../../include/hiBitAscii.ct"
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; Headers
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!source "../../include/global.i"
!source "../../include/plasma.i"
!source "../../include/mem.i"
!source "../../include/fontEngine.i"
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; Optional debug printing support
DEBUG = 0
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; General use
tmp = $2
pTmp = $4
ysav = $34
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ysav1 = $35
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; 16-bit random number seed - incremented by ROM kbd routine
seed = $4E
magic = $2227 ; there are 2048 magic values that work; this one caught my eye. - MH
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; NOTE ABOUT ABSOLUTE ADDRESSES
; You cannot use them: this code, including variable space, can be loaded *anywhere*.
; So don't declare any variables as !byte or !word here.
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// API to call rendering engine (same API for raycaster and tile engine)
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asm initDisplay // params: mapNum, pMapData, x, y, dir
+asmPlasm 5
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jmp $6000
end
asm flipToPage1 // no params
+asmPlasm 0
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jmp $6003
end
asm getPos // params: @x, @y
+asmPlasm 2
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jmp $6006
end
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asm setPos // params: x, y
+asmPlasm 2
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jmp $6009
end
asm getDir // no params; returns: dir (0-15)
+asmPlasm 0
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jmp $600C
end
asm setDir // params: dir (0-15)
+asmPlasm 1
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jmp $600F
end
asm advance // no params; return: 0 if same pos, 1 if new pos, 2 if new pos and scripted
+asmPlasm 0
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jmp $6012
end
asm setColor // params: slot (0=sky/1=ground), color (0-17)
+asmPlasm 2
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jmp $6015
end
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asm render // no params
+asmPlasm 0
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jmp $6018
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
asm setAuxCopy
rts
end
///////////////////////////////////////////////////////////////////////////////////////////////////
asm readAuxByte // params: ptr; ret: char
+asmPlasm 1
; Create the following subroutine, used to copy one char from aux to main:
;0010- 8D 03 C0 STA $C003
;0013- AD XX XX LDA $XXXX
;0016- 8D 02 C0 STA $C002
;0019- 60 RTS
sta $14
sty $15
lda #$8D
sta $10
sta $16
ldx #2
stx $17
inx
stx $11
lda #$C0
sta $12
sta $18
lda #$AD
sta $13
lda #$60
sta $19
; And call the routine
ldy #0
jmp $10
end
///////////////////////////////////////////////////////////////////////////////////////////////////
asm pushAuxStr // params: none; ret: $200 (inbuf)
stx tmp ; save PLASMA's X reg eval stack index
tsx
lda $103,x ; get PLASMA's Y-reg value from its place in the stack
tay
; Create the following subroutine, used to copy chars from aux to main:
;0010- 8D 03 C0 STA $C003
;0013- B1 F4 LDA ($F4),Y
;0015- 8D 02 C0 STA $C002
;0018- 60 RTS
lda #$8D
sta $10
sta $15
ldx #2
stx $16
inx
stx $11
lda #$C0
sta $12
sta $17
lda #$B1
sta $13
lda #$F4
sta $14
lda #$60
sta $18
; Get string length and save it
iny ; advance to next code byte
bne +
inc $F5 ; next pg if necessary
tsx
inc $105,x ; also PLASMA's copy of the page pointer
+ jsr $10
sta $200
ldx #0
; Copy entire string
.lup cpx $200
beq ++
iny ; advance to next code byte
bne +
inc $F5 ; next pg if necessary
stx tmp+1
tsx
inc $105,x ; also PLASMA's copy of the page pointer
ldx tmp+1
+ jsr $10 ; now fetch the byte from aux mem
inx
sta $200,x ; and stuff it in the string / input buffer
bne .lup ; always taken
++ tsx
tya
sta $103,x ; modify PLASMA's Y reg so it picks up code execution just after the string
ldx tmp ; retrieve PLASMA's eval stack ptr
dex ; make room for ret value
lda #0
sta evalStkL,x ; return value lo (<$200)
lda #2
sta evalStkH,x ; and hi (>$200)
rts
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// String building for display with the font engine. Includes plurality processing to handily
// handle things like "Dirt bag(s)" and "his/their"
asm _buildString
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+asmPlasm 1
sta cswl
sty cswh
lda #0
sta inbuf
rts
end
asm _addToString
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sty ysav1
inc inbuf
ldy inbuf
sta inbuf,y
ldy ysav1
rts
end
asm _finishString
!zone {
+asmPlasm 1
sta tmp ; save isPlural flag
jsr setvid ; put the cout vector back to default
bit monrts ; V flag for prev-is-punctuation
ldy #1 ; dest offset in Y
ldx #1 ; source offset in X
cpx inbuf
beq + ; only process if string has at least 1 char
bcs .done
+ sty tmp+1 ; offset of last punctuation
.fetch lda inbuf,x
cmp #"("
bne .notpar
bvs .notpar ; skip paren processing right punctuation
lda tmp ; check isPlural flag
bne .plurpr
- lda inbuf,x ; it's singular, so skip everything in parens
cmp #")"
beq .next
inx
cpx inbuf
bne -
beq .done ; handle missing trailing paren
.plurpr inx ; it's plural, so copy everything within the parens
lda inbuf,x ; copy characters
cpx inbuf ; handle missing trailing paren
beq .store
cmp #")" ; go until we reach ending paren
beq .next
sta inbuf,y
iny
bne .plurpr ; always taken
.notpar cmp #"/"
bne .notsl
bvs .notsl ; skip slash processing right after punctuation
lda tmp ; check isPlural flag
bne .plursl
- inx ; loop that skips plural form
cpx inbuf
beq +
bcs .done ; handle end of string
+ lda inbuf,x
cmp #"A" ; eat letters (and stop when we hit punctuation)
bcs -
bcc .store ; copy the ending punctuation and continue normal processing
.plursl ldy tmp+1 ; erase singular form by backing up to prev punc
iny ; plus 1 to retain prev punc
bne .next ; resume regular copying of the plural form
.notsl cmp #"A" ; if <= ASCII "A", consider it punctuation
bcc +
clv ; clear last-is-punc flag
bvc .store ; always taken
+ bit monrts ; set prev-is-punc flag
sty tmp+1 ; save dest offset of last punctuation
.store sta inbuf,y ; save to dest
iny
.next inx
cpx inbuf ; compare src offset to length
bcc .fetch ; loop while less than
beq .fetch ; or equal
.done dey
sty inbuf ; save new length
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lda #<inbuf
ldy #>inbuf
rts
}
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
asm blitPortrait // params: srcData, dstScreenPtr
+asmPlasm 2
; Save the dest pointer
sta pTmp
sty pTmp+1
; Save the source pointer
lda evalStkL+1,x
sta tmp
lda evalStkH+1,x
sta tmp+1
; Create the following subroutine, used to copy pixels from aux to main:
; 0010- 8D 03 C0 STA $C003
; 0013- B1 02 LDA ($02),Y
; 0015- 91 04 STA ($04),Y
; 0017- 88 DEY
; 0018- 10 F9 BPL $0013
; 001A- 8D 02 C0 STA $C002
; 001D- 60 RTS
lda #$8D
sta $10
sta $1A
ldx #2
stx $14
stx $1B
inx
stx $11
lda #$C0
sta $12
sta $1C
lda #$B1
sta $13
lda #$91
sta $15
inx
stx $16
lda #$88
sta $17
lda #$10
sta $18
lda #$F9
sta $19
lda #$60
sta $1D
; Outer copy loop
ldx #128 ; line count
.loop ldy #17 ; byte count minus 1. There are 18 bytes per line
jsr $10 ; copy pixel bytes
; Advance to next row of data
lda tmp
clc
adc #18
sta tmp
bcc +
inc tmp+1
+
; Fun code to advance to the next hi-res line
ldy pTmp+1
iny
iny
iny
iny
cpy #$40
bcc .ok2
tya
sbc #$20 ; carry already set
tay
lda pTmp
eor #$80
bmi .ok
iny
cpy #$24
bcc .ok
ldy #$20
adc #$27 ; carry was set, so actually adding $28
.ok sta pTmp
.ok2 sty pTmp+1
; Loop until we've done all rows.
dex
bne .loop
rts
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Simply retrieve the X register. Used to double-check that we're not leaking PLASMA eval
// stack entries.
asm getXReg
+asmPlasm 0
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txa
ldy #0
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rts
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Calculate 16-bit hash of a string
asm hashString
+asmPlasm 1
sta pTmp
sty pTmp+1
ldy #0
sty tmp+1
lda (pTmp),y
tax
iny
- clc
adc (pTmp),y
bcc +
inc tmp+1
+ asl
rol tmp+1
bcc +
ora #1
+ asl
rol tmp+1
bcc +
ora #1
+ asl
rol tmp+1
bcc +
ora #1
+ iny
dex
bne -
ldy tmp+1
rts
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Print a string
asm _puts
+asmPlasm 1
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sta pTmp
sty pTmp+1
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ldy #0
lda (pTmp),y
tax
iny
- lda (pTmp),y
ora #$80
jsr cout
iny
dex
bne -
rts
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end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Get a character from the keyboard
asm rdkey
+asmPlasm 0
jmp rdkey
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Print part of a string, until we hit the end or a '%' code. Return how far we got, or -1 for end.
asm partialPrintf
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!zone {
+asmPlasm 2
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lda evalStkL+1,x ; get string pointer
sta pTmp
lda evalStkH+1,x
sta pTmp+1
ldy #0
lda (pTmp),y ; get length byte
sec
sbc evalStkL,x ; minus offset
sta tmp ; to count of characters left to print
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bcc .eos ; avoid overrunning
beq .eos
lda evalStkL,x ; get desired offset into string
tay
iny ; increment past length byte
- lda (pTmp),y
ora #$80
cmp #'%' ; stop if we hit % code
beq +
jsr cout
iny
dec tmp ; otherwise go until end of string
bne -
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.eos ldy #$FF ; if we hit end of string, return -1
tya
rts
+ dey ; adjust back for length byte
tya ; that's the lo byte of return
ldy #0 ; hi byte of return is zero
rts
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}
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Print a 16-bit hex value
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asm printHex
+asmPlasm 1
tax
tya
jmp prntax
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Print a single character
asm printChar
+asmPlasm 1
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ora #$80
jmp cout
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Print a carriage return
asm crout
+asmPlasm 0
jmp crout
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Ring the bell
asm _beep
+asmPlasm 0
jmp bell
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Read a string from the keyboard, turn it into a PLASMA string and return a pointer to the string.
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asm readStr
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+asmPlasm 0
jsr getln1
txa
pha
beq +
- lda inbuf-1,x
and #$7F
sta inbuf,x
dex
bne -
+ pla
sta inbuf,x
lda #<inbuf
ldy #>inbuf
rts
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Send a command to the memory manager
// Params: cmd, wordParam
asm _mmgr
+asmPlasm 2
lda evalStkL+1,x ; command code
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pha
ldy evalStkH,x ; address (or other param)... hi byte in Y
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lda evalStkL,x
tax ; ...lo byte in X
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pla
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jsr mainLoader ; ret value in X=lo/Y=hi
txa ; to A=lo/Y=hi for asmPlasm
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rts
end
// Aux version of memory manager command
asm auxMmgr
+asmPlasm 2
lda evalStkL+1,x ; command code
pha
ldy evalStkH,x ; address (or other param)
lda evalStkL,x
tax
pla
jsr auxLoader ; ret value in X=lo/Y=hi
txa ; to A=lo/Y=hi for asmPlasm
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rts
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end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Jump straight to the system monitor
// Params: None
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asm goMon
jmp $FF69
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Execute a monitor breakpoint
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// Params: None
asm _brk
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bit setText
bit page1
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brk
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Clear the screen and reboot the machine
// Params: None
asm _reboot
bit setROM
jsr home
bit setText
bit page1
inc $3F4 ; invalidate reset vector
jmp $FA62 ; and reset
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set up the font engine
// Params: pFont
asm setFont
+asmPlasm 1
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp SetFont
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Use the font engine to clear the current text window.
// Parameters: top, bottom, left, right
asm setWindow
+asmPlasm 4
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp SetWindow
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Save the cursor position (1 save slot)
asm saveCursor
+asmPlasm 0
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp SaveCursor
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Restore the cursor position (1 save slot)
asm restoreCursor
+asmPlasm 0
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp RestCursor
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Use the font engine to clear the current text window
// Params: None
asm _clearWindow
+asmPlasm 0
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp ClearWindow
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Use the font engine to copy the current text window to hi-res page 2
// Params: None
asm copyWindow
+asmPlasm 0
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp CopyWindow
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Display a character using the font engine.
// Params: ch
asm displayChar
+asmPlasm 1
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp DisplayChar
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Display a string using the font engine.
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// Params: pStr
asm _displayStr
+asmPlasm 1
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp DisplayStr
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Calculate string width using the font engine.
// Params: pStr
asm calcWidth
+asmPlasm 1
bit setLcRW+lcBank2
bit setLcRW+lcBank2
jmp CalcWidth
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Display a string using the font engine but not its parser.
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// Params: pStr
asm _rawDisplayStr
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+asmPlasm 1
bit setLcRW+lcBank2
bit setLcRW+lcBank2
sta pTmp
sty pTmp+1
ldy #0
lda (pTmp),y
sta tmp
- cpy tmp
bcc +
rts
+ iny
lda (pTmp),y
ora #$80
cmp #"^"
bne +
iny
lda (pTmp),y
and #$1F
ora #$80
+ sty tmp+1
jsr DisplayChar
ldy tmp+1
bne -
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Random number generator
// Adapted from http://codebase64.org/doku.php?id=base:small_fast_16-bit_prng
asm _rand16
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+asmPlasm 0
lda seed
beq .lowZero ; $0000 and $8000 are special values to test for
; Do a normal shift
asl seed
lda seed+1
rol
bcc .noEor
.doEor:
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; high byte is in A
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eor #>magic
sta seed+1
tay ; for asmPlasm, return hi byte in Y, lo byte in A
lda seed
eor #<magic
sta seed
rts
.lowZero:
lda seed+1
beq .doEor ; High byte is also zero, so apply the EOR
; For speed, you could store 'magic' into 'seed' directly
; instead of running the EORs
; wasn't zero, check for $8000
asl
beq .noEor ; if $00 is left after the shift, then it was $80
bcs .doEor ; else, do the EOR based on the carry bit as usual
.noEor:
sta seed+1
tay ; for asmPlasm, return hi byte in Y, lo byte in A
lda seed
rts
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Data structures
include "playtype.pla"
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///////////////////////////////////////////////////////////////////////////////////////////////////
// General methods
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Fatal error: print message and stop the system.
def fatal(msg)
mmgr(FATAL_ERROR, msg)
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Return the max of two signed 16-bit numbers
def _max(a, b)
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if a < b
return b
else
return a
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Return the min of two signed 16-bit numbers
def _min(a, b)
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if a < b
return a
else
return b
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Setter functions for library use
def _setNeedRender(flg)
needRender = flg
end
def _setPlural(flg)
isPlural = flg
end
def _setTextDrawn(flg)
textDrawn = flg
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Convert signed decimal to string in decimalBuf
def convertDec(n)
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word n0
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word p
p = @decimalBuf + 1
if n < 0; ^p = '-'; p=p+1; n = -n; fin
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n0 = n
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if n0 > 9999; ^p = '0' + n/10000; p=p+1; n = n%10000; fin
if n0 > 999; ^p = '0' + n/1000; p=p+1; n = n%1000; fin
if n0 > 99; ^p = '0' + n/100; p=p+1; n = n%100; fin
if n0 > 9; ^p = '0' + n/10; p=p+1; n = n%10; fin
^p = '0' + n; p=p+1
decimalBuf[0] = p - @decimalBuf - 1 // record final length of string
return @decimalBuf
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Print a formatted string a'la C printf, with up to four parameters.
def _printf4(str, arg1, arg2, arg3, arg4)
word pos
word curArg
word p
pos = 0
curArg = @arg1
while TRUE
pos = partialPrintf(str, pos)
if pos < 0
break
fin
p = str + pos + 2
when ^p
is 'c'
printChar(*curArg); break
is 'd'
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puts(convertDec(*curArg)); break
is 's'
puts(*curArg); break
is 'x'
printHex(*curArg); break
is '%'
printChar('%'); break
otherwise
printHex(^p); fatal("Unknown % code")
wend
curArg = curArg + 2
pos = pos + 2
loop
end
def _printf1(str, arg1); printf4(str, arg1, 0, 0, 0); end
def _printf2(str, arg1, arg2); printf4(str, arg1, arg2, 0, 0); end
def _printf3(str, arg1, arg2, arg3); printf4(str, arg1, arg2, arg3, 0); end
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// Like printf, but displays text using font engine
def _displayf4(str, arg1, arg2, arg3, arg4)
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buildString(@addToString)
printf4(str, arg1, arg2, arg3, arg4)
displayStr(finishString(isPlural))
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end
def _displayf1(str, arg1); displayf4(str, arg1, 0, 0, 0); end
def _displayf2(str, arg1, arg2); displayf4(str, arg1, arg2, 0, 0); end
def _displayf3(str, arg1, arg2, arg3); displayf4(str, arg1, arg2, arg3, 0); end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def parseDec(str)
word n
word pend
word p
byte neg
neg = FALSE
n = 0
p = str + 1
pend = p + ^str
while p < pend
if p == (str+1) and ^p == '-'
neg = TRUE
elsif ^p >= '0' and ^p <= '9'
n = (n*10) + (^p - '0')
else
break
fin
p = p+1
loop
if neg; return -n; fin
return n
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def parseDecWithDefault(str, default)
if ^str == 0
return default
fin
return parseDec(str)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Get a keystroke and convert it to upper case
def _getUpperKey()
byte key
while ^kbd < 128
*seed = *seed + 1
animPauseCt = animPauseCt - 1
if animPauseCt < 0
if curPortrait and animNumFrames > 1
nextAnimFrame()
fin
animPauseCt = ANIM_PAUSE_MAX
fin
loop
key = ^kbd
^kbdStrobe
key = key & $7F
if key >= $60
key = key - $20
fin
return key
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def _encodeDice(nDice, dieSize, add) // ndice=0..15, dieSize=0..15, add=0..255
return (nDice << 12) | (dieSize << 8) | add
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def _rollDice(encoded)
byte i, nDice, dieSize, add, result
nDice = encoded >> 12
dieSize = (encoded >> 8) & $F
add = encoded & $F
result = add
for i = 1 to nDice
add = (rand16() % dieSize) + 1
result = result + add
next
return result
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set the sky color (relevant to 3D display only)
def setSky(num)
skyNum = num
setColor(0, skyNum)
needRender = TRUE
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Switch to the next sky color (3D only)
def nextSky()
setSky((skyNum + 1) % 18)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set the ground color (relevant to 3D display only)
def setGround(num)
groundNum = num
setColor(1, groundNum)
needRender = TRUE
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Switch to the next ground color (3D only)
def nextGround()
setGround((groundNum + 1) % 18)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Establish a keystroke -> command association in the command table
def initCmd(key, func)
if key >= $60
key = key - $20
fin
cmdTbl[key-$20] = func
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Load the Frame Image, and lock it.
def loadFrameImg()
byte img
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img = mapIs3D+2
if frameLoaded <> img
if frameLoaded
mmgr(UNLOCK_MEMORY,$2000)
mmgr(FREE_MEMORY, $2000)
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fin
mmgr(SET_MEM_TARGET, $2000)
mmgr(QUEUE_LOAD, img<<8 | RES_TYPE_SCREEN)
mmgr(LOCK_MEMORY, $2000)
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frameLoaded = img
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Window for the map name bar
def _setWindow1()
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setWindow(8, 18, 35, 119) // Top, Bottom, Left, Right
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Window for the large upper right bar
def _setWindow2()
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displayChar('N'-$40) // Set normal mode - clear all special modes (like underline, etc.)
setWindow(24, 132, 154, 269) // Top, Bottom, Left, Right
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Window for the mid-size lower right bar
def _setWindow3()
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setWindow(144, 180, 154, 269) // Top, Bottom, Left, Right
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Window for the map area (used for clearing it)
def setMapWindow()
if mapIs3D
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setWindow(24, 153, 14, 140) // Top, Bottom, Left, Right
else
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setWindow(24, 169, 14, 140) // Top, Bottom, Left, Right
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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def rightJustifyStr(str, rightX)
word x
x = rightX - calcWidth(str)
tabBuf[0] = 4 // length
tabBuf[1] = 20 // Ctrl-T
tabBuf[2] = (x / 100) + '0'
tabBuf[3] = ((x / 10) % 10) + '0'
tabBuf[4] = (x % 10) + '0'
rawDisplayStr(@tabBuf)
rawDisplayStr(str)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def rightJustifyNum(num, rightX)
rightJustifyStr(convertDec(num), rightX)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def displayPlayerData(player)
word pi
// Display the player's name and health
rawDisplayStr(player=>s_name)
rightJustifyNum(player=>w_health, CHAR_WND_LIFE_X)
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// Locate the first weapon, and display it's clip
pi = player=>p_items
while pi and pi->t_type <> TYPE_WEAPON; pi = pi=>p_nextObj; loop
if pi
rightJustifyNum(pi->b_clipCurrent, CHAR_WND_GUN_X)
else
rightJustifyStr("---", CHAR_WND_GUN_X)
fin
// All done.
rawDisplayStr("\n")
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Display the party data on the screen
def _showParty()
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word p
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saveCursor()
setWindow3()
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clearWindow()
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// Display header
rawDisplayStr("^LName") // begin underline mode
rightJustifyStr("Life", CHAR_WND_LIFE_X)
rightJustifyStr("Gun", CHAR_WND_GUN_X)
rawDisplayStr("^L\n") // end underline mode
// Display each character
p = global=>p_players
while p
displayPlayerData(p)
p = p=>p_nextObj
loop
// Finish up
if mapIs3D; copyWindow(); fin
setWindow2()
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restoreCursor()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Load code and data, set up everything to display a 2D or 3D map
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def initMap(x, y, dir)
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word pMap
// Set up the command table
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initCmds()
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// Reset memory (our module will stay since memory manager locked it upon load)
mmgr(RESET_MEMORY, 0)
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// Queue loading of the raycaster or tile engine and the map data
mmgr(SET_MEM_TARGET, displayEngine)
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if mapIs3D
mmgr(QUEUE_LOAD, CODE_RENDER<<8 | RES_TYPE_CODE)
pMap = mmgr(QUEUE_LOAD, mapNum<<8 | RES_TYPE_3D_MAP)
auxMmgr(SET_MEM_TARGET, expandVec)
auxMmgr(QUEUE_LOAD, CODE_EXPAND<<8 | RES_TYPE_CODE)
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else
mmgr(QUEUE_LOAD, CODE_TILE_ENGINE<<8 | RES_TYPE_CODE)
pMap = mmgr(QUEUE_LOAD, mapNum<<8 | RES_TYPE_2D_MAP)
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fin
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// Load everything that we just queued
mmgr(FINISH_LOAD, 1) // 1 = keep open
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// Load the frame image (and lock it there)
loadFrameImg()
mmgr(FINISH_LOAD, 1) // 1 = keep open
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// Start up the display engine with map data and starting position. This will also load and
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// init the script module, if any, which will end up calling us back at the setScriptInfo
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triggerTbl = NULL
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setWindow2()
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initDisplay(mapNum, pMap, x, y, dir)
needRender = FALSE
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// Display the party characters
showParty()
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Check for script(s) attached to the current location, and call them if there are any.
def checkScripts()
word x
word y
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word p
word pNext
word script
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if !triggerTbl; return; fin
setWindow2()
getPos(@x, @y)
x = x - triggerOriginX
y = y - triggerOriginY
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p = triggerTbl
while TRUE
if ^p == $FF
return
fin
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pNext = p + p->1
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if ^p == y
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p = p + 2
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while p < pNext
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if x == ^p
script = p=>1
script()
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fin
p = p + 3
loop
fin
p = pNext
loop
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Display a portrait drawing (typically called from scripts)
def clearPortrait()
if curPortrait
auxMmgr(FREE_MEMORY, curPortrait)
curPortrait = 0
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needRender = TRUE
fin
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end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Perform rendering, copy if necessary, clear appropriate flags
def doRender()
if curPortrait; clearPortrait(); fin
render()
if textDrawn and mapIs3D; copyWindow(); fin
needRender = FALSE
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Advance one step forward (3D maps only)
def moveForward()
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byte val
val = advance()
// If not blocked, render at the new position.
if val > 0
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if !mapIs3D
doRender()
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else
needRender = TRUE
fin
fin
// If we're on a new map tile, clear text from script(s) on the old tile.
if val >= 2 and textDrawn
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clearWindow()
if textDrawn and mapIs3D; copyWindow(); fin
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textDrawn = FALSE
fin
// If there are script(s) on the new tile, run them.
if val == 3
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checkScripts()
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
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// Adjust player's direction plus or minus n increments
def adjustDir(n)
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setDir((getDir() + n) & 15)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Move backward one step (3D mode)
def moveBackward()
adjustDir(8)
moveForward()
adjustDir(8)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Turn left (3D mode)
def rotateLeft()
adjustDir(-1)
needRender = TRUE
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Rotate to the right (3D mode)
def rotateRight()
adjustDir(1)
needRender = TRUE
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Sidestep to the right (3D mode)
def strafeRight()
adjustDir(4)
moveForward()
adjustDir(-4)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Sidestep to the left (3D mode)
def strafeLeft()
adjustDir(-4)
moveForward()
adjustDir(4)
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def moveNorth()
word x, y
getPos(@x, @y)
if y > 4
setDir(0)
moveForward()
else
beep()
fin
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end
def moveEast()
word x, y
getPos(@x, @y)
if x < totalMapWidth-5
setDir(4)
moveForward()
else
beep()
fin
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end
def moveSouth()
word x, y
getPos(@x, @y)
if y < totalMapHeight-5
setDir(8)
moveForward()
else
beep()
fin
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end
def moveWest()
word x, y
getPos(@x, @y)
if x > 4
setDir(12)
moveForward()
else
beep()
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Switch to a new map (2D or 3D) and establish position on it
def setMap(is3D, num, x, y, dir)
if is3D == mapIs3D and num == mapNum
setPos(x, y)
setDir(dir)
needRender = TRUE
else
flipToPage1()
setWindow1(); clearWindow()
displayChar('Y'-$40) // center mode
displayStr("Traveling...")
mapNameHash = 0 // because we replaced the title text
displayChar('N'-$40) // normal mode
setMapWindow(); clearWindow()
setWindow2(); clearWindow()
mapIs3D = is3D
mapNum = num
initMap(x, y, dir)
fin
// Don't check scripts, because we often land on an "Exit to wilderness?" script
//NO:checkScripts()
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def kbdTeleport()
byte d3, num
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word x, y
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byte dir
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flipToPage1()
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^$c053
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if ^$25 < 23; ^$25 = 23; fin
getPos(@x, @y)
printf3("\nCurrent: X=%d Y=%d Facing=%d\n", x, y, getDir())
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printf1("3D [%d]: ", mapIs3D)
d3 = parseDecWithDefault(readStr(), mapIs3D)
if d3 > 1; d3 = 1; fin
printf1("Map [%d]: ", mapNum)
num = parseDecWithDefault(readStr(), mapNum)
printf1("X [%d] : ", x)
x = parseDecWithDefault(readStr(), x)
printf1("Y [%d] : ", y)
y = parseDecWithDefault(readStr(), y)
printf1("Facing [%d]: ", dir)
dir = parseDecWithDefault(readStr(), dir)
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^$c052
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setMap(d3, num, x, y, dir)
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
def showPos()
word x, y
byte dir
flipToPage1()
^$c053
if ^$25 < 23; ^$25 = 23; fin
getPos(@x, @y)
printf2("\nX=%d Y=%d ", x, y)
if mapIs3D
printf3("Facing=%d Sky=%d Ground=%d", getDir(), skyNum, groundNum)
fin
puts("\nHit any key.\n")
getUpperKey()
^$c052
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def queue_setMap(is3D, num, x, y, dir)
q_mapIs3D = is3D
q_mapNum = num
q_x = x
q_y = y
q_dir = dir
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def queue_teleport(x, y, dir)
queue_setMap(mapIs3D, mapNum, x, y, dir)
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Get a key and dispatch it to a command. Then do it again, forever.
def kbdLoop()
word key, func
word errMsg
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byte xreg, tmp
errMsg = "Error: x reg changed from %x to %x\n"
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xreg = getXReg()
while TRUE
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tmp = getXReg()
if tmp <> xreg
printf2(errMsg, xreg, tmp)
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brk()
fin
key = getUpperKey()
key = key - $20
if key >= 0 and key < $40
func = cmdTbl[key]
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if func; func(); fin
fin
if q_mapNum
setMap(q_mapIs3D, q_mapNum, q_x, q_y, q_dir)
q_mapNum = 0
fin
if needRender
doRender()
fin
loop
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def showMapName(mapName)
word newNameHash
newNameHash = hashString(mapName)
if newNameHash <> mapNameHash
setWindow1()
clearWindow()
displayChar('Y'-$40) // center mode
displayStr(mapName)
displayChar('N'-$40) // normal mode
if mapIs3D; copyWindow(); fin
mapNameHash = newNameHash
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set initial info for the scripts on this map: the name of the map, its trigger table, and the
// maximum extent (width, height). This is called by the init function for the scripts.
def setScriptInfo(mapName, trigTbl, wdt, hgt)
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// Grab the trigger table origins (used so the table can be more compact)
triggerOriginX = trigTbl=>0
triggerOriginY = trigTbl=>2
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// Record the trigger table pointer
triggerTbl = trigTbl + 4
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// Record the maximum width and height
totalMapWidth = wdt
totalMapHeight = hgt
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// Display map name
showMapName(mapName)
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// Back to the main text window.
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setWindow2()
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end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Called by scripts to display a string. We set the flag noting that something has been
// displayed, then use an assembly routine to do the work.
def scriptDisplayStr(str)
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textDrawn = TRUE
flipToPage1()
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displayStr(str)
end
def scriptDisplayStrNL(str)
scriptDisplayStr(str)
displayStr("\n")
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Get a key, and don't return until it's Y or N (or lower-case of those). Returns 1 for Y.
def _getYN()
byte key
while TRUE
key = getUpperKey()
if key == 'Y'
return 1
elsif key == 'N'
clearWindow()
if textDrawn and mapIs3D; clearWindow(); fin
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textDrawn = FALSE
return 0
fin
beep()
loop
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Show the current animation frame
def showAnimFrame()
word pData
// Determine data pointer based on current animation frame
if !curPortrait; return; fin
pData = curPortrait + 1 + (animFrame * 2304) // 18*128 = 2304
// Show it on-screen
if mapIs3D
blitPortrait(pData, $2182) // start at 3rd text line
else
blitPortrait(pData, $2202) // start at 4th text line
fin
needRender = FALSE // suppress display of map for this frame
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Advance to next frame of current animation, if any
def nextAnimFrame()
word oldAnimFrame
if !curPortrait; return; fin
oldAnimFrame = animFrame
// Choose a new direction based on the flags. Do this the first time, and once every 3-7 frames.
animDirCt = animDirCt - 1
if !animDir or animDirCt == 0
if animFlags & ANIM_FLAG_FWD
animDir = 'F'
elsif animFlags & ANIM_FLAG_FWD_BKWD
if animDir == 'B'
animDir = 'F'
else
animDir = 'B'
fin
elsif (animFlags & ANIM_FLAG_RANDOM)
animDir = 'R'
else
animDir = 0
fin
animDirCt = (rand16() % 5) + 3
fin
// Advance in the current direction
if animDir == 'F' // forward
animFrame = animFrame + 1
if animFrame >= animNumFrames
animFrame = 0
fin
elsif animDir == 'B' // backward
if animFrame == 0
animFrame = animNumFrames - 1
else
animFrame = animFrame - 1
fin
elsif animDir == 'R' // random
animFrame = rand16() % animNumFrames
fin
// And show it.
if animFrame <> oldAnimFrame
showAnimFrame()
fin
// Reset the animation pause
animPauseCt = ANIM_PAUSE_MAX
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Display a portrait drawing (typically called from scripts)
def _setPortrait(portraitNum)
word srcData
byte cx, cy
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clearPortrait()
flipToPage1()
// We're going to switch windows. Save the cursor pos in the text window.
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saveCursor()
// Now clear out the map area
setMapWindow()
clearWindow()
// Restore the cursor position
setWindow2()
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restoreCursor()
// Load the portrait image and display it
curPortrait = auxMmgr(QUEUE_LOAD, portraitNum<<8 | RES_TYPE_PORTRAIT)
mmgr(FINISH_LOAD, 0) // 0 = close
animFrame = 0
animFlags = readAuxByte(curPortrait)
animNumFrames = animFlags & $F
animDir = 0
animDirCt = 1
animPauseCt = ANIM_PAUSE_MAX
// And show the first frame
showAnimFrame()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Clear the displayed portrait drawing
def clrPortrait()
doRender()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Test out portrait drawing
def testPortrait()
setPortrait(portraitNum)
portraitNum = portraitNum + 1
needRender = FALSE
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def _countList(p)
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byte n
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n = 0
while p
n = n+1
p = p=>p_nextObj
loop
return n
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def _countListFiltered(p, offset, filterFunc)
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byte n
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n = 0
while p
if filterFunc(p)
n = n+1
fin
p = *(p + offset)
loop
return n
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def _randomFromListFiltered(p, offset, filterFunc)
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byte n
n = rand16() % countListFiltered(p, offset, filterFunc)
while p
if filterFunc(p)
if n == 0; return p; fin
n = n+1
fin
p = *(p + offset)
loop
return NULL
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Call like this: addToList(player + items, itemToAdd)
def _addToList(addTo, p)
// Get to the end of the list
while *addTo
addTo = (*addTo) + p_nextObj
loop
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p=>p_nextObj = *addTo
*addTo = p
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Call like this: removeFromList(player + items, itemToRemove)
def _removeFromList(pList, toRemove)
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word p
p = *pList
while p and p <> toRemove
pList = p + p_nextObj
p = *pList
loop
if p
*pList = p=>p_nextObj
p=>p_nextObj = NULL
else
fatal("InvalUnlink")
fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Show player data
def showPlayerSheet(num)
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word pl
word x, y
byte dir
pl = global=>p_players
while num > 0
pl = pl=>p_nextObj
num = num - 1
loop
getPos(@x, @y)
dir = getDir()
// First, display the player's name in the title bar
showMapName(pl=>s_name)
// Next, show stats in the main map area
setMapWindow()
clearWindow()
displayStr("Stats")
// Show inventory in the right hand area
setWindow2()
clearWindow()
displayStr("Inventory")
// Wait, then back to normal
getUpperKey()
setWindow2()
clearWindow()
initMap(x, y, dir)
end
def showPlayer1()
showPlayerSheet(0)
end
def showPlayer2()
showPlayerSheet(1)
end
def showPlayer3()
showPlayerSheet(2)
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
def saveMapPos()
global->b_mapIs3D = mapIs3D
global->b_mapNum = mapNum
getPos(global + w_mapX, global + w_mapY)
global->b_mapDir = getDir()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def restoreMapPos()
mapIs3D = global->b_mapIs3D
mapNum = global->b_mapNum
initMap(global=>w_mapX, global=>w_mapY, global->b_mapDir)
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def testCombat()
word combatEngine
word x, y
byte dir
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saveMapPos()
// Load the combat engine
flipToPage1()
mmgr(RESET_MEMORY, 0)
combatEngine = mmgr(QUEUE_LOAD, MODULE_COMBAT<<8 | RES_TYPE_MODULE)
mmgr(FINISH_LOAD, 1) // 0 = close
// Create the enemy group(s).
global=>p_enemyGroups = NULL
when rand16() % 2
is 0
addToList(global + p_enemyGroups, new_EnemyGroup_Dirt_Bags())
break
otherwise
addToList(global + p_enemyGroups, new_EnemyGroup_Flesh_Feeders())
break
wend
// Run the combat engine
combatEngine()
// Clear out the heap
global=>p_enemyGroups = NULL
mmgr(HEAP_COLLECT, 0)
// Resume where we left off
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clearPortrait()
setWindow2()
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restoreMapPos()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set up the command table for 3D mode
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def initCmds()
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// Clear the command table
byte i
for i = 0 to 63
cmdTbl[i] = 0
next
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// Commands common to both 2D and 3D
initCmd('T', @kbdTeleport)
initCmd('P', @showPos)
initCmd('/', @testPortrait)
initCmd('!', @testCombat)
initCmd('1', @showPlayer1)
initCmd('2', @showPlayer2)
initCmd('3', @showPlayer3)
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// Commands handled differently in 3D vs 2D
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if mapIs3D
initCmd('W', @moveForward)
initCmd('A', @rotateLeft)
initCmd('D', @rotateRight)
initCmd('S', @moveBackward)
initCmd('X', @moveBackward)
initCmd('Z', @strafeLeft)
initCmd('C', @strafeRight)
initCmd('I', @moveForward)
initCmd('J', @rotateLeft)
initCmd('L', @rotateRight)
initCmd('K', @moveBackward)
initCmd(',', @moveBackward)
initCmd('M', @strafeLeft)
initCmd('.', @strafeRight)
initCmd('Y', @nextSky)
initCmd('G', @nextGround)
else
initCmd('W', @moveNorth)
initCmd('D', @moveEast)
initCmd('S', @moveSouth)
initCmd('X', @moveSouth)
initCmd('A', @moveWest)
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initCmd('I', @moveNorth)
initCmd('J', @moveWest)
initCmd('L', @moveEast)
initCmd('K', @moveSouth)
initCmd(',', @moveSouth)
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fin
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Load and display the title screen.
def loadTitle()
word pFont
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puts("Loading Lawless Legends.\n")
// Load the title screen
mmgr(UNLOCK_MEMORY, $2000)
mmgr(FREE_MEMORY, $2000)
mmgr(SET_MEM_TARGET, $2000)
mmgr(QUEUE_LOAD, 1<<8 | RES_TYPE_SCREEN) // title screen is fixed at #1
mmgr(LOCK_MEMORY, $2000)
mmgr(FINISH_LOAD, 1) // 1 = keep open
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frameLoaded = 1
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^$C050 // graphics
^$C057 // hi-res
^$C054 // page 1
^$C052 // full screen
// Hack for real (not emulated) IIc: sometimes displays only lo-bit graphics
// unless we do this. *HUGE* thanks to Brendan Robert for the fix!
^$C07E=0 // disable double-hi-res
^$C05F // disable double-hi-res
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// Load the font engine and its font, and lock them in place forever.
mmgr(SET_MEM_TARGET, fontEngine)
mmgr(QUEUE_LOAD, CODE_FONT_ENGINE<<8 | RES_TYPE_CODE)
mmgr(LOCK_MEMORY, fontEngine)
mmgr(SET_MEM_TARGET, $9000)
pFont = mmgr(QUEUE_LOAD, 1<<8 | RES_TYPE_FONT)
mmgr(LOCK_MEMORY, pFont)
mmgr(FINISH_LOAD, 1) // 1 = keep open
// Tell the font engine where to find its font
setFont(pFont)
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// Wait for a key.
getUpperKey()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set vectors so that scripts in PLASMA can call back to do things with this engine.
def setCallbacks()
// $300
callbacks.0 = $4c
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callbacks:1 = @setScriptInfo
// $303
callbacks.3 = $4c
callbacks:4 = @pushAuxStr
// $306
callbacks.6 = $4c
callbacks:7 = @scriptDisplayStr
// $309
callbacks.9 = $4c
callbacks:10 = @scriptDisplayStrNL
// $30C
callbacks.12 = $4c
callbacks:13 = @getYN
// $30F
callbacks.15 = $4c
callbacks:16 = @queue_setMap
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// $312
callbacks.18 = $4c
callbacks:19 = @setSky
// $315
callbacks.21 = $4c
callbacks:22 = @setGround
// $318
callbacks.24 = $4c
callbacks:25 = @queue_teleport
// $31B
callbacks.27 = $4c
callbacks:28 = @setPortrait
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// $31E
callbacks.30 = $4c
callbacks:31 = @clrPortrait
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// $321
callbacks.33 = $4c
callbacks:34 = @moveBackward
// $324
callbacks.36 = $4c
callbacks:37 = @getUpperKey
// $327
callbacks.39 = $4c
callbacks:40 = @clearWindow
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set up the small-object heap
def initHeap()
mmgr(SET_MEM_TARGET, heapStart)
mmgr(REQUEST_MEMORY, heapSize)
mmgr(LOCK_MEMORY, heapStart)
mmgr(HEAP_SET, heapStart)
addTypes()
end
///////////////////////////////////////////////////////////////////////////////////////////////////
def _getGlobals()
return global
end
///////////////////////////////////////////////////////////////////////////////////////////////////
// Set up the library vectors so we can share the library routines
def setLibVecs()
word sp, dp
// We're going to put the vectors at a known location, and lock that space
_mmgr(SET_MEM_TARGET, gameLibVecs)
_mmgr(REQUEST_MEMORY, $100)
_mmgr(LOCK_MEMORY, gameLibVecs)
// Now set up the jump vectors
sp = @gameLib_addrs
dp = gameLibVecs
while *sp
dp->0 = $4c
dp=>1 = *sp
sp = sp + 2
dp = dp + 3
loop
end
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///////////////////////////////////////////////////////////////////////////////////////////////////
// Main code.
//
textDrawn = FALSE
needRender = TRUE
setLibVecs()
initHeap()
addToList(global + p_players, new_Player_Hue_Hauser())
addToList(global + p_players, new_Player_Mokahnu())
loadTitle()
setCallbacks()
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// Start map/loc per Seth. Need to have this in a script in the futurecheckScripts()
mapIs3D = 0
mapNum = 1
initMap(6, 123, 12)
kbdLoop()
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done