prog8/testsource/dtypes.ill

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; var definitions and immediate primitive data type tests
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%output raw
%zp clobber
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%import c64lib
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~ ZP {
; ZeroPage block definition:
; base address is set to $04 (because $00 and $01 are used by the hardware, and $02/$03 are scratch)
; everything here ends up in the zeropage, as long as there is space.
; you can NOT put subroutines in here (yet).
}
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~ ZP {
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var zpvar1
var zpvar2
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memory zpmem1 = $f0
const zpconst = 1.234
var .word zpvarw1
var .word zpvarw2
var .float zpvarflt1 = 11.11
var .float zpvarflt2 = 22.22
var .float zpvarflt3
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}
~ ZP {
; will be merged with other ZP blocks!
var zpvar1b = $88
}
~ foo {
var foovar1
memory foomem1 = $f0f0
const fooconst = 1.234
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return
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}
~ main {
; variables
var uninitbyte1
var .byte uninitbyte2
var initbyte1 = $12
var initbyte1b = true
var .byte initbyte2 = $12
var .byte initbyte2b = false
var .byte initbyte3 = 99.876
var initchar1 = '@'
var .byte initchar2 = '@'
var .word uninitword
var .word initword1 = $1234
var .word initword1b = true
var .word initword2 = false
var .word initword3 = 9876.554321
var .word initword5 = 20
var .float uninitfloat
var .float initfloat1 = 0
var .float initfloat1b = true
var .float initfloat2 = -1.234e-14
var .float initfloat3 = 9.87e+14
var .float initfloat4 = 1.70141183e+38
var .float initfloat5 = -1.70141183e+38
var .float initfloat6 = 1.234
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var .wordarray( 256 ) uninit_wordarray
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var .wordarray(10) init_wordarray = $1234
var .wordarray(10) init_wordarrayb = true
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var .array( 256) uninit_bytearray
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var .array(10 ) init_bytearray =$12
var .array(10 ) init_bytearrayb =true
var .array(10 ) init_bytearrayc ='@'
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var .text text = "hello-null"
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var .ptext ptext = 'hello-pascal'
var .stext stext = 'screencodes-null'
var .pstext pstext = "screencodes-pascal"
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var .matrix( 2, 128 ) uninitmatrix
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var .matrix(10, 20) initmatrix1 = $12
var .matrix(10, 20) initmatrix1b = true
var .matrix(10, 20) initmatrix1c = '@'
var .matrix(10, 20) initmatrix1d = 123.456
; memory-mapped variables
memory membyte1 = $cf01
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memory .byte membyte2 = $c222
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memory .word memword1 = $cf03
memory .float memfloat = $cf04
memory .array(10 ) membytes = $cf05
memory .wordarray( 10) memwords = $cf06
memory .matrix( 10, 20 ) memmatrix = $cf07
; constants (= names for constant values, can never occur as lvalue)
const cbyte1 = 1
const cbyte1b = false
const .byte cbyte2 = 1
const .byte cbyte3 = '@'
const .byte cbyte4 = true
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const .word cword1 = false
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const .word cword2 = $1234
const .word cword5 = 9876.5432
const cfloat1 = 1.2345
const .float cfloat2 = 2.3456
const .float cfloat2b = cfloat2*3.44
const .float cfloat3 = true
const .text ctext3 = "constant-text"
const .ptext ctext4 = "constant-ptext"
const .stext ctext5 = "constant-stext"
const .pstext ctext6 = "constant-pstext"
; taking the address of various things:
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var .word vmemaddr1 = &membyte1
var .word vmemaddr2 = &memword1
var .word vmemaddr3 = &memfloat
var .word vmemaddr4 = &membytes
var .word vmemaddr5 = &memwords
var .word vmemaddr6 = &memmatrix
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var .word vmemaddr8 = 100*sin(cbyte1)
var .word vmemaddr9 = cword2+$5432
var .word vmemaddr10 = cfloat2b
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; taking the address of things from the ZP will work even when it is a var
; because zp-vars get assigned a specific address (from a pool). Also, it's a byte.
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var .word initword0a = &ZP.zpmem1
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var initbytea0 = &ZP.zpmem1
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; (constant) expressions
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var .word expr_byte1b = -1-2-3-4-$22+$80+ZP.zpconst
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var .byte expr_fault2 = 1 + (8/3)+sin(33) + max(1,2,3)
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sin:
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return
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max:
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return
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start:
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; --- immediate primitive value assignments ----
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A = [$99]
A = [$aabb]
A = $99
A = [cbyte3]
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A = 0
A = '@'
A = 1.2345
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A=X=Y= true
A=XY= true
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A = false
A = 255
A = X
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A = [$99]
A = [$c020.byte]
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A = [$c020]
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A = cbyte3
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A = membyte2
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A = uninitbyte1
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XY = 0
XY = '@'
XY = 1.2345
XY = 456.66
XY = 65535
XY = true
XY = false
XY = text
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XY = cbyte3
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XY = [cbyte3]
XY = [cword2]
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XY = uninitbyte1
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XY = "text-immediate"
AY = "text-immediate"
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; AX = &"text-immediate" ; equivalent to simply assigning the string directly
; AX = & "text-immediate" ; equivalent to simply assigning the string directly
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AX = ctext3
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AX = ""
AX = XY
AX = Y
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XY = membyte2
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XY = membyte2
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XY = memword1
XY = sin
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; XY = &sin ; @todo not yet implemented
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[$c000] = A
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[$c000] = 255
[$c000] = '@'
[$c000] = true
[$c000] = false
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[$c000] = cbyte3
[$c000] = uninitbyte1
[$c000] = membyte2
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[$c000] = cbyte2
[$c000] = [cword2]
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[$c000.word] = A
[$c000.word] = AX
[$c000.word] = cbyte3
[$c000.word] = cword2
[$c000.word] = ctext3
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[$c000.word] = 65535
[$c000.word] = "text"
[$c000.word] = ""
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[$c000.word] = uninitbyte1
[$c000.word] = membyte2
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; [$c000.word] = &membyte2 ; @todo not yet implemented
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[$c000.word] = [cword2]
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[$c000.word] = memword1
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[$c000.float] = 65535
[$c000.float] = 456.66
[$c000.float] = 1.70141183e+38
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[$c000.float] = cbyte3
[$c000.float] = cword2
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[$c001] = [$c002]
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[$c111.word] = [$c222]
[$c112.word] = [$c223.byte]
[$c222.word] = [$c333.word]
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[$c333.word] = sin
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; [$c333.word] = &sin ; @todo not yet implemented
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SC = 0
SC = 1
SC = false
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SI = 1
SI = 0
SI = false
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uninitbyte1 = 99
uninitbyte1 = 1.234
uninitbyte1 = '@'
initbyte1 = 99
initbyte1 = 1.234
initbyte1 = '@'
initbyte1 = A
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initbyte1 = cbyte3
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uninitword = 99
uninitword = 5.6778
uninitword = "test"
uninitword = '@'
uninitword = A
uninitword = XY
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uninitword = ctext3
initword1 = cbyte3
initword1 = cword2
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initfloat1 = 99
initfloat1 = 9.8765
initfloat1 = '@'
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initfloat1 = cbyte3
initfloat1 = cword2
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uninitfloat = 99
uninitfloat = 9.8765
uninitfloat = '@'
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initword1 = sin
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; initword1 = &sin ; @todo not yet implemented
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membyte1 = A
membyte1 = cbyte3
memword1 = A
memword1 = AX
memword1 = cbyte3
memword1 = cword2
memword1 = ctext3
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membyte1 = 22
memword1 = 2233
memfloat = 3.4567
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memword1 = sin
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; memword1 = &sin ; @todo not yet implemented
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membyte1 = A
memword1 = A
memword1 = XY
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memfloat = cbyte3
memfloat = cword2
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; float assignments that require ROM functions from c64lib:
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memfloat = Y
memfloat = XY
uninitfloat = Y
uninitfloat = XY
initfloat2 = Y
initfloat2 = XY
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initfloat2 = initbyte2
initfloat2 = initword2
initfloat1 = uninitfloat
initfloat1 = initfloat2
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return
}
~ footer {
XY = "text-immediate" ; reuses existing
AY = "text-immediate" ; reuses existing
AX = "another"
AX = ""
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[$c000.word] = "another" ; must reuse string
[$c100.word] = "text-immediate" ; must reuse string
[$c200.word] = "" ; must reuse string
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return
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}