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https://gitlab.com/xCrystal/pokecrystal-board.git
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221 lines
3.4 KiB
NASM
221 lines
3.4 KiB
NASM
CalcMagikarpLength: ; fbbfc
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; Return Magikarp's length (in mm) in MagikarpLength (big endian)
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;
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; input:
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; de: EnemyMonDVs
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; bc: PlayerID
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; This function is needlessly convoluted, and poorly commented.
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; Reading is discouraged.
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; In short, it generates a value between 190 and 1786 using
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; a Magikarp's DVs and its trainer ID. This value is further
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; scrutinized in GetEnemyMon to make longer Magikarp even rarer.
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; This is done by calculating the value using operands from
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; a conversion lookup table.
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; Our index is calculated by xoring DVs with the trainer ID:
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; bc = rrc(rrc(dvs)) xor rrc(id)
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; if bc < $a: MagikarpLength = c + 190
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; if bc >= $ff00: MagikarpLength = c + 1370
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; else: MagikarpLength = z*100 + (bc-x)/y
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; X, Y, and Z depend on the value of b as follows:
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; if b = 0: x = 310, y = 2, z = 3
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; if b = 1: x = 710, y = 4, z = 4
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; if b = 2-9: x = 2710, y = 20, z = 5
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; if b = 10-29: x = 7710, y = 50, z = 6
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; if b = 30-68: x = 17710, y = 100, z = 7
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; if b = 69-126: x = 32710, y = 150, z = 8
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; if b = 127-185: x = 47710, y = 150, z = 9
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; if b = 186-224: x = 57710, y = 100, z = 10
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; if b = 225-243: x = 62710, y = 50, z = 11
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; if b = 244-251: x = 64710, y = 20, z = 12
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; if b = 252-253: x = 65210, y = 5, z = 13
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; if b = 254: x = 65410, y = 2, z = 14
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; These values represent arbitrary conversion points.
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; b = rrcrrc(atkdefdv) xor rrc(id[0])
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; id
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ld h, b
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ld l, c
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ld a, [hli]
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ld b, a
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ld c, [hl]
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rrc b
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rrc c
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; dvs
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ld a, [de]
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inc de
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rrca
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rrca
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xor b
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ld b, a
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; c = rrcrrc(spdspcdv) xor rrc(id[1])
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ld a, [de]
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rrca
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rrca
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xor c
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ld c, a
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; if bc < $000a:
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ld a, b
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and a
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jr nz, .loadtable
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ld a, c
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cp a, $a
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jr nc, .loadtable
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; de = hl = bc + $be
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ld hl, $be
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add hl, bc
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ld d, h
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ld e, l
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jr .endtable
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.loadtable
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ld hl, .MagikarpLengthTable
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ld a, $02
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ld [$d265], a
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.readtable
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ld a, [hli]
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ld e, a
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ld a, [hli]
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ld d, a
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call .BLessThanD
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jr nc, .advancetable
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; c = bc / [hl]
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call .BCMinusDE
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ld a, b
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ld [$ffb3], a
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ld a, c
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ld [$ffb4], a
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ld a, [hl]
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ld [$ffb7], a
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ld b, $02
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call Divide
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ld a, [$ffb6]
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ld c, a
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; de = c + 100 * (2 + number of rows down the table)
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xor a
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ld [$ffb4], a
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ld [$ffb5], a
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ld a, $64
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ld [$ffb6], a
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ld a, [$d265]
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ld [$ffb7], a
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call Multiply
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ld b, $00
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ld a, [$ffb6]
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add c
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ld e, a
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ld a, [$ffb5]
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adc b
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ld d, a
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jr .endtable
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.advancetable
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inc hl ; align to next triplet
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ld a, [$d265]
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inc a
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ld [$d265], a
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cp a, $10
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jr c, .readtable
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call .BCMinusDE
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ld hl, $0640
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add hl, bc
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ld d, h
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ld e, l
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.endtable
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ld h, d
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ld l, e
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add hl, hl
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add hl, hl
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add hl, de
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add hl, hl ; hl = de * 10
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ld de, $ff02
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ld a, $ff
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.loop
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inc a
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add hl, de ; - 254
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jr c, .loop
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ld d, $00
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; mod $0c
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.modloop
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cp a, $0c
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jr c, .done
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sub a, $0c
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inc d
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jr .modloop
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.done
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ld e, a
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ld hl, MagikarpLength
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ld [hl], d
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inc hl
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ld [hl], e
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ret
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; fbc9a
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.BLessThanD ; fbc9a
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; return carry if b < d
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ld a, b
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cp d
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ret c
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ret nc
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; fbc9e
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.CLessThanE ; fbc9e
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; unused
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ld a, c
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cp e
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ret
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; fbca1
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.BCMinusDE ; fbca1
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; bc -= de
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ld a, c
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sub e
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ld c, a
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ld a, b
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sbc d
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ld b, a
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ret
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; fbca8
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.MagikarpLengthTable ; fbca8
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; ????, divisor
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dwb $006e, $01
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dwb $0136, $02
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dwb $02c6, $04
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dwb $0a96, $14
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dwb $1e1e, $32
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dwb $452e, $64
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dwb $7fc6, $96
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dwb $ba5e, $96
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dwb $e16e, $64
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dwb $f4f6, $32
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dwb $fcc6, $14
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dwb $feba, $05
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dwb $ff82, $02
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; fbccf
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