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Rom.py
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2452 lines (2183 loc) · 130 KB
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import bisect
import io
import json
import hashlib
import logging
import os
import random
import struct
import sys
import subprocess
from BaseClasses import CollectionState, ShopType, Region, Location, DoorType
from DoorShuffle import compass_data, DROptions, boss_indicator
from Dungeons import dungeon_music_addresses
from Regions import location_table
from Text import MultiByteTextMapper, CompressedTextMapper, text_addresses, Credits, TextTable
from Text import Uncle_texts, Ganon1_texts, TavernMan_texts, Sahasrahla2_texts, Triforce_texts, Blind_texts, BombShop2_texts, junk_texts
from Text import KingsReturn_texts, Sanctuary_texts, Kakariko_texts, Blacksmiths_texts, DeathMountain_texts, LostWoods_texts, WishingWell_texts, DesertPalace_texts, MountainTower_texts, LinksHouse_texts, Lumberjacks_texts, SickKid_texts, FluteBoy_texts, Zora_texts, MagicShop_texts, Sahasrahla_names
from Utils import output_path, local_path, int16_as_bytes, int32_as_bytes, snes_to_pc
from Items import ItemFactory
from EntranceShuffle import door_addresses, exit_ids
JAP10HASH = '03a63945398191337e896e5771f77173'
RANDOMIZERBASEHASH = '9ed3ae2d129faa1cd3858e2f72b11b62'
class JsonRom(object):
def __init__(self, name=None, hash=None):
self.name = name
self.hash = hash
self.orig_buffer = None
self.patches = {}
self.addresses = []
def write_byte(self, address, value):
self.write_bytes(address, [value])
def write_bytes(self, startaddress, values):
if not values:
return
values = list(values)
pos = bisect.bisect_right(self.addresses, startaddress)
intervalstart = self.addresses[pos-1] if pos else None
intervalpatch = self.patches[str(intervalstart)] if pos else None
if pos and startaddress <= intervalstart + len(intervalpatch): # merge with previous segment
offset = startaddress - intervalstart
intervalpatch[offset:offset+len(values)] = values
startaddress = intervalstart
values = intervalpatch
else: # new segment
self.addresses.insert(pos, startaddress)
self.patches[str(startaddress)] = values
pos = pos + 1
while pos < len(self.addresses) and self.addresses[pos] <= startaddress + len(values): # merge the next segment into this one
intervalstart = self.addresses[pos]
values.extend(self.patches[str(intervalstart)][startaddress+len(values)-intervalstart:])
del self.patches[str(intervalstart)]
del self.addresses[pos]
def write_to_file(self, file):
with open(file, 'w') as stream:
json.dump([self.patches], stream)
def get_hash(self):
h = hashlib.md5()
h.update(json.dumps([self.patches]).encode('utf-8'))
return h.hexdigest()
class LocalRom(object):
def __init__(self, file, patch=True, name=None, hash=None):
self.name = name
self.hash = hash
self.orig_buffer = None
if not os.path.isfile(file):
raise RuntimeError("Could not find valid local base rom for patching at expected path %s." % file)
with open(file, 'rb') as stream:
self.buffer = read_rom(stream)
if patch:
self.patch_base_rom()
self.orig_buffer = self.buffer.copy()
def write_byte(self, address, value):
self.buffer[address] = value
def write_bytes(self, startaddress, values):
for i, value in enumerate(values):
self.write_byte(startaddress + i, value)
def write_to_file(self, file):
with open(file, 'wb') as outfile:
outfile.write(self.buffer)
@staticmethod
def fromJsonRom(rom, file, rom_size = 0x200000):
ret = LocalRom(file, True, rom.name, rom.hash)
ret.buffer.extend(bytearray([0x00] * (rom_size - len(ret.buffer))))
for address, values in rom.patches.items():
ret.write_bytes(int(address), values)
return ret
def patch_base_rom(self):
# verify correct checksum of baserom
basemd5 = hashlib.md5()
basemd5.update(self.buffer)
if JAP10HASH != basemd5.hexdigest():
logging.getLogger('').warning('Supplied Base Rom does not match known MD5 for JAP(1.0) release. Will try to patch anyway.')
# extend to 2MB
self.buffer.extend(bytearray([0x00] * (0x200000 - len(self.buffer))))
# load randomizer patches
with open(local_path('data/base2current.json'), 'r') as stream:
patches = json.load(stream)
for patch in patches:
if isinstance(patch, dict):
for baseaddress, values in patch.items():
self.write_bytes(int(baseaddress), values)
# verify md5
patchedmd5 = hashlib.md5()
patchedmd5.update(self.buffer)
if RANDOMIZERBASEHASH != patchedmd5.hexdigest():
raise RuntimeError('Provided Base Rom unsuitable for patching. Please provide a JAP(1.0) "Zelda no Densetsu - Kamigami no Triforce (Japan).sfc" rom to use as a base.')
def write_crc(self):
crc = (sum(self.buffer[:0x7FDC] + self.buffer[0x7FE0:]) + 0x01FE) & 0xFFFF
inv = crc ^ 0xFFFF
self.write_bytes(0x7FDC, [inv & 0xFF, (inv >> 8) & 0xFF, crc & 0xFF, (crc >> 8) & 0xFF])
def get_hash(self):
h = hashlib.md5()
h.update(self.buffer)
return h.hexdigest()
def write_int16(rom, address, value):
rom.write_bytes(address, int16_as_bytes(value))
def write_int32(rom, address, value):
rom.write_bytes(address, int32_as_bytes(value))
def write_int16s(rom, startaddress, values):
for i, value in enumerate(values):
write_int16(rom, startaddress + (i * 2), value)
def write_int32s(rom, startaddress, values):
for i, value in enumerate(values):
write_int32(rom, startaddress + (i * 4), value)
def read_rom(stream):
"Reads rom into bytearray and strips off any smc header"
buffer = bytearray(stream.read())
if len(buffer)%0x400 == 0x200:
buffer = buffer[0x200:]
return buffer
def patch_enemizer(world, player, rom, baserom_path, enemizercli, shufflepots, random_sprite_on_hit):
baserom_path = os.path.abspath(baserom_path)
basepatch_path = os.path.abspath(local_path(os.path.join("data","base2current.json")))
enemizer_basepatch_path = os.path.join(os.path.dirname(enemizercli), "enemizerBasePatch.json")
randopatch_path = os.path.abspath(output_path('enemizer_randopatch.json'))
options_path = os.path.abspath(output_path('enemizer_options.json'))
enemizer_output_path = os.path.abspath(output_path('enemizer_output.json'))
# write options file for enemizer
options = {
'RandomizeEnemies': world.enemy_shuffle[player] != 'none',
'RandomizeEnemiesType': 3,
'RandomizeBushEnemyChance': world.enemy_shuffle[player] == 'chaos',
'RandomizeEnemyHealthRange': world.enemy_health[player] != 'default',
'RandomizeEnemyHealthType': {'default': 0, 'easy': 0, 'normal': 1, 'hard': 2, 'expert': 3}[world.enemy_health[player]],
'OHKO': False,
'RandomizeEnemyDamage': world.enemy_damage[player] != 'default',
'AllowEnemyZeroDamage': True,
'ShuffleEnemyDamageGroups': world.enemy_damage[player] != 'default',
'EnemyDamageChaosMode': world.enemy_damage[player] == 'chaos',
'EasyModeEscape': False,
'EnemiesAbsorbable': False,
'AbsorbableSpawnRate': 10,
'AbsorbableTypes': {
'FullMagic': True, 'SmallMagic': True, 'Bomb_1': True, 'BlueRupee': True, 'Heart': True, 'BigKey': True, 'Key': True,
'Fairy': True, 'Arrow_10': True, 'Arrow_5': True, 'Bomb_8': True, 'Bomb_4': True, 'GreenRupee': True, 'RedRupee': True
},
'BossMadness': False,
'RandomizeBosses': True,
'RandomizeBossesType': 0,
'RandomizeBossHealth': False,
'RandomizeBossHealthMinAmount': 0,
'RandomizeBossHealthMaxAmount': 300,
'RandomizeBossDamage': False,
'RandomizeBossDamageMinAmount': 0,
'RandomizeBossDamageMaxAmount': 200,
'RandomizeBossBehavior': False,
'RandomizeDungeonPalettes': False,
'SetBlackoutMode': False,
'RandomizeOverworldPalettes': False,
'RandomizeSpritePalettes': False,
'SetAdvancedSpritePalettes': False,
'PukeMode': False,
'NegativeMode': False,
'GrayscaleMode': False,
'GenerateSpoilers': False,
'RandomizeLinkSpritePalette': False,
'RandomizePots': shufflepots,
'ShuffleMusic': False,
'BootlegMagic': True,
'CustomBosses': False,
'AndyMode': False,
'HeartBeepSpeed': 0,
'AlternateGfx': False,
'ShieldGraphics': "shield_gfx/normal.gfx",
'SwordGraphics': "sword_gfx/normal.gfx",
'BeeMizer': False,
'BeesLevel': 0,
'RandomizeTileTrapPattern': world.enemy_shuffle[player] == 'chaos',
'RandomizeTileTrapFloorTile': False,
'AllowKillableThief': bool(random.randint(0,1)) if world.enemy_shuffle[player] == 'chaos' else world.enemy_shuffle[player] != 'none',
'RandomizeSpriteOnHit': random_sprite_on_hit,
'DebugMode': False,
'DebugForceEnemy': False,
'DebugForceEnemyId': 0,
'DebugForceBoss': False,
'DebugForceBossId': 0,
'DebugOpenShutterDoors': False,
'DebugForceEnemyDamageZero': False,
'DebugShowRoomIdInRupeeCounter': False,
'UseManualBosses': True,
'ManualBosses': {
'EasternPalace': world.get_dungeon("Eastern Palace", player).boss.enemizer_name,
'DesertPalace': world.get_dungeon("Desert Palace", player).boss.enemizer_name,
'TowerOfHera': world.get_dungeon("Tower of Hera", player).boss.enemizer_name,
'AgahnimsTower': 'Agahnim',
'PalaceOfDarkness': world.get_dungeon("Palace of Darkness", player).boss.enemizer_name,
'SwampPalace': world.get_dungeon("Swamp Palace", player).boss.enemizer_name,
'SkullWoods': world.get_dungeon("Skull Woods", player).boss.enemizer_name,
'ThievesTown': world.get_dungeon("Thieves Town", player).boss.enemizer_name,
'IcePalace': world.get_dungeon("Ice Palace", player).boss.enemizer_name,
'MiseryMire': world.get_dungeon("Misery Mire", player).boss.enemizer_name,
'TurtleRock': world.get_dungeon("Turtle Rock", player).boss.enemizer_name,
'GanonsTower1': [x for x in world.dungeons if x.player == player and 'bottom' in x.bosses.keys()][0].bosses['bottom'].enemizer_name,
'GanonsTower2': [x for x in world.dungeons if x.player == player and 'middle' in x.bosses.keys()][0].bosses['middle'].enemizer_name,
'GanonsTower3': [x for x in world.dungeons if x.player == player and 'top' in x.bosses.keys()][0].bosses['top'].enemizer_name,
'GanonsTower4': 'Agahnim2',
'Ganon': 'Ganon',
}
}
rom.write_to_file(randopatch_path)
with open(options_path, 'w') as f:
json.dump(options, f)
subprocess.check_call([os.path.abspath(enemizercli),
'--rom', baserom_path,
'--seed', str(world.rom_seeds[player]),
'--base', basepatch_path,
'--randomizer', randopatch_path,
'--enemizer', options_path,
'--output', enemizer_output_path],
cwd=os.path.dirname(enemizercli), stdout=subprocess.DEVNULL)
with open(enemizer_basepatch_path, 'r') as f:
for patch in json.load(f):
rom.write_bytes(patch["address"], patch["patchData"])
with open(enemizer_output_path, 'r') as f:
for patch in json.load(f):
rom.write_bytes(patch["address"], patch["patchData"])
if random_sprite_on_hit:
_populate_sprite_table()
sprites = list(_sprite_table.values())
if sprites:
while len(sprites) < 32:
sprites.extend(sprites)
random.shuffle(sprites)
for i, path in enumerate(sprites[:32]):
sprite = Sprite(path)
rom.write_bytes(0x300000 + (i * 0x8000), sprite.sprite)
rom.write_bytes(0x307000 + (i * 0x8000), sprite.palette)
rom.write_bytes(0x307078 + (i * 0x8000), sprite.glove_palette)
try:
os.remove(randopatch_path)
except OSError:
pass
try:
os.remove(options_path)
except OSError:
pass
try:
os.remove(enemizer_output_path)
except OSError:
pass
_sprite_table = {}
def _populate_sprite_table():
if not _sprite_table:
for dir in [local_path(os.path.join("data","sprites","official")), local_path(os.path.join("data","sprites","unofficial"))]:
for file in os.listdir(dir):
filepath = os.path.join(dir, file)
if not os.path.isfile(filepath):
continue
sprite = Sprite(filepath)
if sprite.valid:
_sprite_table[sprite.name.lower()] = filepath
def get_sprite_from_name(name):
_populate_sprite_table()
name = name.lower()
if name in ['random', 'randomonhit']:
return Sprite(random.choice(list(_sprite_table.values())))
return Sprite(_sprite_table[name]) if name in _sprite_table else None
class Sprite(object):
default_palette = [255, 127, 126, 35, 183, 17, 158, 54, 165, 20, 255, 1, 120, 16, 157,
89, 71, 54, 104, 59, 74, 10, 239, 18, 92, 42, 113, 21, 24, 122,
255, 127, 126, 35, 183, 17, 158, 54, 165, 20, 255, 1, 120, 16, 157,
89, 128, 105, 145, 118, 184, 38, 127, 67, 92, 42, 153, 17, 24, 122,
255, 127, 126, 35, 183, 17, 158, 54, 165, 20, 255, 1, 120, 16, 157,
89, 87, 16, 126, 69, 243, 109, 185, 126, 92, 42, 39, 34, 24, 122,
255, 127, 126, 35, 218, 17, 158, 54, 165, 20, 255, 1, 120, 16, 151,
61, 71, 54, 104, 59, 74, 10, 239, 18, 126, 86, 114, 24, 24, 122]
default_glove_palette = [246, 82, 118, 3]
def __init__(self, filename):
with open(filename, 'rb') as file:
filedata = bytearray(file.read())
self.name = os.path.basename(filename)
self.author_name = None
self.valid = True
if len(filedata) == 0x7000:
# sprite file with graphics and without palette data
self.sprite = filedata[:0x7000]
self.palette = list(self.default_palette)
self.glove_palette = list(self.default_glove_palette)
elif len(filedata) == 0x7078:
# sprite file with graphics and palette data
self.sprite = filedata[:0x7000]
self.palette = filedata[0x7000:]
self.glove_palette = filedata[0x7036:0x7038] + filedata[0x7054:0x7056]
elif len(filedata) == 0x707C:
# sprite file with graphics and palette data including gloves
self.sprite = filedata[:0x7000]
self.palette = filedata[0x7000:0x7078]
self.glove_palette = filedata[0x7078:]
elif len(filedata) in [0x100000, 0x200000]:
# full rom with patched sprite, extract it
self.sprite = filedata[0x80000:0x87000]
self.palette = filedata[0xDD308:0xDD380]
self.glove_palette = filedata[0xDEDF5:0xDEDF9]
elif filedata.startswith(b'ZSPR'):
result = self.parse_zspr(filedata, 1)
if result is None:
self.valid = False
return
(sprite, palette, self.name, self.author_name) = result
if len(sprite) != 0x7000:
self.valid = False
return
self.sprite = sprite
if len(palette) == 0:
self.palette = list(self.default_palette)
self.glove_palette = list(self.default_glove_palette)
elif len(palette) == 0x78:
self.palette = palette
self.glove_palette = list(self.default_glove_palette)
elif len(palette) == 0x7C:
self.palette = palette[:0x78]
self.glove_palette = palette[0x78:]
else:
self.valid = False
else:
self.valid = False
@staticmethod
def default_link_sprite():
return get_sprite_from_name('Link')
def decode8(self, pos):
arr = [[0 for _ in range(8)] for _ in range(8)]
for y in range(8):
for x in range(8):
position = 1<<(7-x)
val = 0
if self.sprite[pos+2*y] & position:
val += 1
if self.sprite[pos+2*y+1] & position:
val += 2
if self.sprite[pos+2*y+16] & position:
val += 4
if self.sprite[pos+2*y+17] & position:
val += 8
arr[y][x] = val
return arr
def decode16(self, pos):
arr = [[0 for _ in range(16)] for _ in range(16)]
top_left = self.decode8(pos)
top_right = self.decode8(pos+0x20)
bottom_left = self.decode8(pos+0x200)
bottom_right = self.decode8(pos+0x220)
for x in range(8):
for y in range(8):
arr[y][x] = top_left[y][x]
arr[y][x+8] = top_right[y][x]
arr[y+8][x] = bottom_left[y][x]
arr[y+8][x+8] = bottom_right[y][x]
return arr
def parse_zspr(self, filedata, expected_kind):
logger = logging.getLogger('')
headerstr = "<4xBHHIHIHH6x"
headersize = struct.calcsize(headerstr)
if len(filedata) < headersize:
return None
(version, csum, icsum, sprite_offset, sprite_size, palette_offset, palette_size, kind) = struct.unpack_from(headerstr, filedata)
if version not in [1]:
logger.error('Error parsing ZSPR file: Version %g not supported', version)
return None
if kind != expected_kind:
return None
stream = io.BytesIO(filedata)
stream.seek(headersize)
def read_utf16le(stream):
"Decodes a null-terminated UTF-16_LE string of unknown size from a stream"
raw = bytearray()
while True:
char = stream.read(2)
if char in [b'', b'\x00\x00']:
break
raw += char
return raw.decode('utf-16_le')
sprite_name = read_utf16le(stream)
author_name = read_utf16le(stream)
# Ignoring the Author Rom name for the time being.
real_csum = sum(filedata) % 0x10000
if real_csum != csum or real_csum ^ 0xFFFF != icsum:
logger.warning('ZSPR file has incorrect checksum. It may be corrupted.')
sprite = filedata[sprite_offset:sprite_offset + sprite_size]
palette = filedata[palette_offset:palette_offset + palette_size]
if len(sprite) != sprite_size or len(palette) != palette_size:
logger.error('Error parsing ZSPR file: Unexpected end of file')
return None
return (sprite, palette, sprite_name, author_name)
def decode_palette(self):
"Returns the palettes as an array of arrays of 15 colors"
def array_chunk(arr, size):
return list(zip(*[iter(arr)] * size))
def make_int16(pair):
return pair[1]<<8 | pair[0]
def expand_color(i):
return ((i & 0x1F) * 8, (i>>5 & 0x1F) * 8, (i>>10 & 0x1F) * 8)
raw_palette = self.palette
if raw_palette is None:
raw_palette = Sprite.default_palette
# turn palette data into a list of RGB tuples with 8 bit values
palette_as_colors = [expand_color(make_int16(chnk)) for chnk in array_chunk(raw_palette, 2)]
# split into palettes of 15 colors
return array_chunk(palette_as_colors, 15)
def patch_rom(world, rom, player, team, enemized):
random.seed(world.rom_seeds[player])
# progressive bow silver arrow hint hack
prog_bow_locs = world.find_items('Progressive Bow', player)
if len(prog_bow_locs) > 1:
# only pick a distingushed bow if we have at least two
distinguished_prog_bow_loc = random.choice(prog_bow_locs)
distinguished_prog_bow_loc.item.code = 0x65
# patch items
for location in world.get_locations():
if location.player != player:
continue
itemid = location.item.code if location.item is not None else 0x5A
if location.address is None:
continue
if not location.crystal:
if location.item is not None:
# Keys in their native dungeon should use the orignal item code for keys
if location.parent_region.dungeon:
if location.parent_region.dungeon.is_dungeon_item(location.item):
if location.item.bigkey:
itemid = 0x32
if location.item.smallkey:
itemid = 0x24
if location.item.map:
itemid = 0x33
if location.item.compass:
itemid = 0x25
if world.remote_items[player]:
itemid = list(location_table.keys()).index(location.name) + 1
assert itemid < 0x100
rom.write_byte(location.player_address, 0xFF)
elif location.item.player != player:
if location.player_address is not None:
rom.write_byte(location.player_address, location.item.player)
else:
itemid = 0x5A
rom.write_byte(location.address, itemid)
else:
# crystals
for address, value in zip(location.address, itemid):
rom.write_byte(address, value)
# patch music
music_addresses = dungeon_music_addresses[location.name]
if world.mapshuffle[player]:
music = random.choice([0x11, 0x16])
else:
music = 0x11 if 'Pendant' in location.item.name else 0x16
for music_address in music_addresses:
rom.write_byte(music_address, music)
if world.mapshuffle[player]:
rom.write_byte(0x155C9, random.choice([0x11, 0x16])) # Randomize GT music too with map shuffle
# patch entrance/exits/holes
for region in world.regions:
for exit in region.exits:
if exit.target is not None and exit.player == player:
if isinstance(exit.addresses, tuple):
offset = exit.target
room_id, ow_area, vram_loc, scroll_y, scroll_x, link_y, link_x, camera_y, camera_x, unknown_1, unknown_2, door_1, door_2 = exit.addresses
#room id is deliberately not written
rom.write_byte(0x15B8C + offset, ow_area)
write_int16(rom, 0x15BDB + 2 * offset, vram_loc)
write_int16(rom, 0x15C79 + 2 * offset, scroll_y)
write_int16(rom, 0x15D17 + 2 * offset, scroll_x)
# for positioning fixups we abuse the roomid as a way of identifying which exit data we are appling
# Thanks to Zarby89 for originally finding these values
# todo fix screen scrolling
if world.shuffle[player] not in ['insanity', 'insanity_legacy', 'madness_legacy'] and \
exit.name in ['Eastern Palace Exit', 'Tower of Hera Exit', 'Thieves Town Exit', 'Ice Palace Exit', 'Misery Mire Exit',
'Palace of Darkness Exit', 'Swamp Palace Exit', 'Ganons Tower Exit', 'Desert Palace Exit (North)', 'Agahnims Tower Exit', 'Spiral Cave Exit (Top)',
'Superbunny Cave Exit (Bottom)', 'Turtle Rock Ledge Exit (East)']:
# For exits that connot be reached from another, no need to apply offset fixes.
write_int16(rom, 0x15DB5 + 2 * offset, link_y) # same as final else
elif room_id == 0x0059 and world.fix_skullwoods_exit[player]:
write_int16(rom, 0x15DB5 + 2 * offset, 0x00F8)
elif room_id == 0x004a and world.fix_palaceofdarkness_exit[player]:
write_int16(rom, 0x15DB5 + 2 * offset, 0x0640)
elif room_id == 0x00d6 and world.fix_trock_exit[player]:
write_int16(rom, 0x15DB5 + 2 * offset, 0x0134)
elif room_id == 0x000c and world.fix_gtower_exit: # fix ganons tower exit point
write_int16(rom, 0x15DB5 + 2 * offset, 0x00A4)
else:
write_int16(rom, 0x15DB5 + 2 * offset, link_y)
write_int16(rom, 0x15E53 + 2 * offset, link_x)
write_int16(rom, 0x15EF1 + 2 * offset, camera_y)
write_int16(rom, 0x15F8F + 2 * offset, camera_x)
rom.write_byte(0x1602D + offset, unknown_1)
rom.write_byte(0x1607C + offset, unknown_2)
write_int16(rom, 0x160CB + 2 * offset, door_1)
write_int16(rom, 0x16169 + 2 * offset, door_2)
elif isinstance(exit.addresses, list):
# is hole
for address in exit.addresses:
rom.write_byte(address, exit.target)
else:
# patch door table
rom.write_byte(0xDBB73 + exit.addresses, exit.target)
if world.mode[player] == 'inverted':
patch_shuffled_dark_sanc(world, rom, player)
# setup dr option flags based on experimental, etc.
dr_flags = DROptions.Eternal_Mini_Bosses if world.doorShuffle[player] == 'vanilla' else DROptions.Town_Portal
if world.experimental[player]:
dr_flags |= DROptions.Map_Info
# patch doors
if world.doorShuffle[player] == 'crossed':
rom.write_byte(0x139004, 2)
for name, layout in world.key_layout[player].items():
offset = compass_data[name][4]//2
rom.write_byte(0x13f01c+offset, layout.max_chests + layout.max_drops)
rom.write_byte(0x13f02a+offset, layout.max_chests)
builder = world.dungeon_layouts[player][name]
bk_status = 1 if builder.bk_required else 0
bk_status = 2 if builder.bk_provided else bk_status
rom.write_byte(0x13f038+offset*2, bk_status)
rom.write_byte(0x151f1, 2)
rom.write_byte(0x15270, 2)
rom.write_byte(0x1597b, 2)
if compass_code_good(rom):
update_compasses(rom, world, player)
else:
logging.getLogger('').warning('Randomizer rom update! Compasses in crossed are borken')
if world.doorShuffle[player] == 'basic':
rom.write_byte(0x139004, 1)
for door in world.doors:
if door.dest is not None and door.player == player and door.type in [DoorType.Normal, DoorType.SpiralStairs]:
rom.write_bytes(door.getAddress(), door.dest.getTarget(door))
for room in world.rooms:
if room.player == player and room.modified:
rom.write_bytes(room.address(), room.rom_data())
for paired_door in world.paired_doors[player]:
rom.write_bytes(paired_door.address_a(world, player), paired_door.rom_data_a(world, player))
rom.write_bytes(paired_door.address_b(world, player), paired_door.rom_data_b(world, player))
if world.doorShuffle[player] != 'vanilla':
for builder in world.dungeon_layouts[player].values():
if builder.pre_open_stonewall:
if builder.pre_open_stonewall.name == 'Desert Wall Slide NW':
dr_flags |= DROptions.Open_Desert_Wall
for name, pair in boss_indicator.items():
dungeon_id, boss_door = pair
opposite_door = world.get_door(boss_door, player).dest
if opposite_door.roomIndex > -1:
dungeon_name = opposite_door.entrance.parent_region.dungeon.name
dungeon_id = boss_indicator[dungeon_name][0]
rom.write_byte(0x13f000+dungeon_id, opposite_door.roomIndex)
rom.write_byte(0x139006, dr_flags.value)
if dr_flags & DROptions.Town_Portal and world.mode[player] == 'inverted':
rom.write_byte(0x139008, 1)
# fix skull woods exit, if not fixed during exit patching
if world.fix_skullwoods_exit[player] and world.shuffle[player] == 'vanilla':
write_int16(rom, 0x15DB5 + 2 * exit_ids['Skull Woods Final Section Exit'][1], 0x00F8)
write_custom_shops(rom, world, player)
# patch medallion requirements
if world.required_medallions[player][0] == 'Bombos':
rom.write_byte(0x180022, 0x00) # requirement
rom.write_byte(0x4FF2, 0x31) # sprite
rom.write_byte(0x50D1, 0x80)
rom.write_byte(0x51B0, 0x00)
elif world.required_medallions[player][0] == 'Quake':
rom.write_byte(0x180022, 0x02) # requirement
rom.write_byte(0x4FF2, 0x31) # sprite
rom.write_byte(0x50D1, 0x88)
rom.write_byte(0x51B0, 0x00)
if world.required_medallions[player][1] == 'Bombos':
rom.write_byte(0x180023, 0x00) # requirement
rom.write_byte(0x5020, 0x31) # sprite
rom.write_byte(0x50FF, 0x90)
rom.write_byte(0x51DE, 0x00)
elif world.required_medallions[player][1] == 'Ether':
rom.write_byte(0x180023, 0x01) # requirement
rom.write_byte(0x5020, 0x31) # sprite
rom.write_byte(0x50FF, 0x98)
rom.write_byte(0x51DE, 0x00)
# set open mode:
if world.mode[player] in ['open', 'inverted']:
rom.write_byte(0x180032, 0x01) # open mode
if world.mode[player] == 'inverted':
set_inverted_mode(world, player, rom)
elif world.mode[player] == 'standard':
rom.write_byte(0x180032, 0x00) # standard mode
uncle_location = world.get_location('Link\'s Uncle', player)
if uncle_location.item is None or uncle_location.item.name not in ['Master Sword', 'Tempered Sword', 'Fighter Sword', 'Golden Sword', 'Progressive Sword']:
# disable sword sprite from uncle
rom.write_bytes(0x6D263, [0x00, 0x00, 0xf6, 0xff, 0x00, 0x0E])
rom.write_bytes(0x6D26B, [0x00, 0x00, 0xf6, 0xff, 0x00, 0x0E])
rom.write_bytes(0x6D293, [0x00, 0x00, 0xf6, 0xff, 0x00, 0x0E])
rom.write_bytes(0x6D29B, [0x00, 0x00, 0xf7, 0xff, 0x00, 0x0E])
rom.write_bytes(0x6D2B3, [0x00, 0x00, 0xf6, 0xff, 0x02, 0x0E])
rom.write_bytes(0x6D2BB, [0x00, 0x00, 0xf6, 0xff, 0x02, 0x0E])
rom.write_bytes(0x6D2E3, [0x00, 0x00, 0xf7, 0xff, 0x02, 0x0E])
rom.write_bytes(0x6D2EB, [0x00, 0x00, 0xf7, 0xff, 0x02, 0x0E])
rom.write_bytes(0x6D31B, [0x00, 0x00, 0xe4, 0xff, 0x08, 0x0E])
rom.write_bytes(0x6D323, [0x00, 0x00, 0xe4, 0xff, 0x08, 0x0E])
# set light cones
rom.write_byte(0x180038, 0x01 if world.sewer_light_cone[player] else 0x00)
rom.write_byte(0x180039, 0x01 if world.light_world_light_cone else 0x00)
rom.write_byte(0x18003A, 0x01 if world.dark_world_light_cone else 0x00)
GREEN_TWENTY_RUPEES = 0x47
TRIFORCE_PIECE = ItemFactory('Triforce Piece', player).code
GREEN_CLOCK = ItemFactory('Green Clock', player).code
rom.write_byte(0x18004F, 0x01) # Byrna Invulnerability: on
# handle difficulty_adjustments
if world.difficulty_adjustments[player] == 'hard':
rom.write_byte(0x180181, 0x01) # Make silver arrows work only on ganon
rom.write_byte(0x180182, 0x00) # Don't auto equip silvers on pickup
# Powdered Fairies Prize
rom.write_byte(0x36DD0, 0xD8) # One Heart
# potion heal amount
rom.write_byte(0x180084, 0x38) # Seven Hearts
# potion magic restore amount
rom.write_byte(0x180085, 0x40) # Half Magic
#Cape magic cost
rom.write_bytes(0x3ADA7, [0x02, 0x04, 0x08])
# Byrna Invulnerability: off
rom.write_byte(0x18004F, 0x00)
#Disable catching fairies
rom.write_byte(0x34FD6, 0x80)
overflow_replacement = GREEN_TWENTY_RUPEES
# Rupoor negative value
write_int16(rom, 0x180036, world.rupoor_cost)
# Set stun items
rom.write_byte(0x180180, 0x02) # Hookshot only
elif world.difficulty_adjustments[player] == 'expert':
rom.write_byte(0x180181, 0x01) # Make silver arrows work only on ganon
rom.write_byte(0x180182, 0x00) # Don't auto equip silvers on pickup
# Powdered Fairies Prize
rom.write_byte(0x36DD0, 0xD8) # One Heart
# potion heal amount
rom.write_byte(0x180084, 0x20) # 4 Hearts
# potion magic restore amount
rom.write_byte(0x180085, 0x20) # Quarter Magic
#Cape magic cost
rom.write_bytes(0x3ADA7, [0x02, 0x04, 0x08])
# Byrna Invulnerability: off
rom.write_byte(0x18004F, 0x00)
#Disable catching fairies
rom.write_byte(0x34FD6, 0x80)
overflow_replacement = GREEN_TWENTY_RUPEES
# Rupoor negative value
write_int16(rom, 0x180036, world.rupoor_cost)
# Set stun items
rom.write_byte(0x180180, 0x00) # Nothing
else:
rom.write_byte(0x180181, 0x00) # Make silver arrows freely usable
rom.write_byte(0x180182, 0x01) # auto equip silvers on pickup
# Powdered Fairies Prize
rom.write_byte(0x36DD0, 0xE3) # fairy
# potion heal amount
rom.write_byte(0x180084, 0xA0) # full
# potion magic restore amount
rom.write_byte(0x180085, 0x80) # full
#Cape magic cost
rom.write_bytes(0x3ADA7, [0x04, 0x08, 0x10])
# Byrna Invulnerability: on
rom.write_byte(0x18004F, 0x01)
#Enable catching fairies
rom.write_byte(0x34FD6, 0xF0)
# Rupoor negative value
write_int16(rom, 0x180036, world.rupoor_cost)
# Set stun items
rom.write_byte(0x180180, 0x03) # All standard items
#Set overflow items for progressive equipment
if world.timer in ['timed', 'timed-countdown', 'timed-ohko']:
overflow_replacement = GREEN_CLOCK
else:
overflow_replacement = GREEN_TWENTY_RUPEES
#Byrna residual magic cost
rom.write_bytes(0x45C42, [0x04, 0x02, 0x01])
difficulty = world.difficulty_requirements[player]
#Set overflow items for progressive equipment
rom.write_bytes(0x180090,
[difficulty.progressive_sword_limit if world.swords[player] != 'swordless' else 0, overflow_replacement,
difficulty.progressive_shield_limit, overflow_replacement,
difficulty.progressive_armor_limit, overflow_replacement,
difficulty.progressive_bottle_limit, overflow_replacement])
#Work around for json patch ordering issues - write bow limit separately so that it is replaced in the patch
rom.write_bytes(0x180098, [difficulty.progressive_bow_limit, overflow_replacement])
if difficulty.progressive_bow_limit < 2 and world.swords == 'swordless':
rom.write_bytes(0x180098, [2, overflow_replacement])
rom.write_byte(0x180181, 0x01) # Make silver arrows work only on ganon
rom.write_byte(0x180182, 0x00) # Don't auto equip silvers on pickup
# set up game internal RNG seed
for i in range(1024):
rom.write_byte(0x178000 + i, random.randint(0, 255))
# shuffle prize packs
prizes = [0xD8, 0xD8, 0xD8, 0xD8, 0xD9, 0xD8, 0xD8, 0xD9, 0xDA, 0xD9, 0xDA, 0xDB, 0xDA, 0xD9, 0xDA, 0xDA, 0xE0, 0xDF, 0xDF, 0xDA, 0xE0, 0xDF, 0xD8, 0xDF,
0xDC, 0xDC, 0xDC, 0xDD, 0xDC, 0xDC, 0xDE, 0xDC, 0xE1, 0xD8, 0xE1, 0xE2, 0xE1, 0xD8, 0xE1, 0xE2, 0xDF, 0xD9, 0xD8, 0xE1, 0xDF, 0xDC, 0xD9, 0xD8,
0xD8, 0xE3, 0xE0, 0xDB, 0xDE, 0xD8, 0xDB, 0xE2, 0xD9, 0xDA, 0xDB, 0xD9, 0xDB, 0xD9, 0xDB]
dig_prizes = [0xB2, 0xD8, 0xD8, 0xD8, 0xD8, 0xD8, 0xD8, 0xD8, 0xD8,
0xD9, 0xD9, 0xD9, 0xD9, 0xD9, 0xDA, 0xDA, 0xDA, 0xDA, 0xDA,
0xDB, 0xDB, 0xDB, 0xDB, 0xDB, 0xDC, 0xDC, 0xDC, 0xDC, 0xDC,
0xDD, 0xDD, 0xDD, 0xDD, 0xDD, 0xDE, 0xDE, 0xDE, 0xDE, 0xDE,
0xDF, 0xDF, 0xDF, 0xDF, 0xDF, 0xE0, 0xE0, 0xE0, 0xE0, 0xE0,
0xE1, 0xE1, 0xE1, 0xE1, 0xE1, 0xE2, 0xE2, 0xE2, 0xE2, 0xE2,
0xE3, 0xE3, 0xE3, 0xE3, 0xE3]
def chunk(l,n):
return [l[i:i+n] for i in range(0, len(l), n)]
# randomize last 7 slots
prizes [-7:] = random.sample(prizes, 7)
#shuffle order of 7 main packs
packs = chunk(prizes[:56], 8)
random.shuffle(packs)
prizes[:56] = [drop for pack in packs for drop in pack]
if world.difficulty_adjustments[player] in ['hard', 'expert']:
prize_replacements = {0xE0: 0xDF, # Fairy -> heart
0xE3: 0xD8} # Big magic -> small magic
prizes = [prize_replacements.get(prize, prize) for prize in prizes]
dig_prizes = [prize_replacements.get(prize, prize) for prize in dig_prizes]
if world.retro[player]:
prize_replacements = {0xE1: 0xDA, #5 Arrows -> Blue Rupee
0xE2: 0xDB} #10 Arrows -> Red Rupee
prizes = [prize_replacements.get(prize, prize) for prize in prizes]
dig_prizes = [prize_replacements.get(prize, prize) for prize in dig_prizes]
rom.write_bytes(0x180100, dig_prizes)
# write tree pull prizes
rom.write_byte(0xEFBD4, prizes.pop())
rom.write_byte(0xEFBD5, prizes.pop())
rom.write_byte(0xEFBD6, prizes.pop())
# rupee crab prizes
rom.write_byte(0x329C8, prizes.pop()) # first prize
rom.write_byte(0x329C4, prizes.pop()) # final prize
# stunned enemy prize
rom.write_byte(0x37993, prizes.pop())
# saved fish prize
rom.write_byte(0xE82CC, prizes.pop())
# fill enemy prize packs
rom.write_bytes(0x37A78, prizes)
# set bonk prizes
bonk_prizes = [0x79, 0xE3, 0x79, 0xAC, 0xAC, 0xE0, 0xDC, 0xAC, 0xE3, 0xE3, 0xDA, 0xE3, 0xDA, 0xD8, 0xAC, 0xAC, 0xE3, 0xD8, 0xE3, 0xE3, 0xE3, 0xE3, 0xE3, 0xE3, 0xDC, 0xDB, 0xE3, 0xDA, 0x79, 0x79, 0xE3, 0xE3,
0xDA, 0x79, 0xAC, 0xAC, 0x79, 0xE3, 0x79, 0xAC, 0xAC, 0xE0, 0xDC, 0xE3, 0x79, 0xDE, 0xE3, 0xAC, 0xDB, 0x79, 0xE3, 0xD8, 0xAC, 0x79, 0xE3, 0xDB, 0xDB, 0xE3, 0xE3, 0x79, 0xD8, 0xDD]
bonk_addresses = [0x4CF6C, 0x4CFBA, 0x4CFE0, 0x4CFFB, 0x4D018, 0x4D01B, 0x4D028, 0x4D03C, 0x4D059, 0x4D07A, 0x4D09E, 0x4D0A8, 0x4D0AB, 0x4D0AE, 0x4D0BE, 0x4D0DD,
0x4D16A, 0x4D1E5, 0x4D1EE, 0x4D20B, 0x4CBBF, 0x4CBBF, 0x4CC17, 0x4CC1A, 0x4CC4A, 0x4CC4D, 0x4CC53, 0x4CC69, 0x4CC6F, 0x4CC7C, 0x4CCEF, 0x4CD51,
0x4CDC0, 0x4CDC3, 0x4CDC6, 0x4CE37, 0x4D2DE, 0x4D32F, 0x4D355, 0x4D367, 0x4D384, 0x4D387, 0x4D397, 0x4D39E, 0x4D3AB, 0x4D3AE, 0x4D3D1, 0x4D3D7,
0x4D3F8, 0x4D416, 0x4D420, 0x4D423, 0x4D42D, 0x4D449, 0x4D48C, 0x4D4D9, 0x4D4DC, 0x4D4E3, 0x4D504, 0x4D507, 0x4D55E, 0x4D56A]
if world.shuffle_bonk_prizes:
random.shuffle(bonk_prizes)
for prize, address in zip(bonk_prizes, bonk_addresses):
rom.write_byte(address, prize)
# Fill in item substitutions table
rom.write_bytes(0x184000, [
# original_item, limit, replacement_item, filler
0x12, 0x01, 0x35, 0xFF, # lamp -> 5 rupees
0x51, 0x06, 0x52, 0xFF, # 6 +5 bomb upgrades -> +10 bomb upgrade
0x53, 0x06, 0x54, 0xFF, # 6 +5 arrow upgrades -> +10 arrow upgrade
0x58, 0x01, 0x36 if world.retro[player] else 0x43, 0xFF, # silver arrows -> single arrow (red 20 in retro mode)
0x3E, difficulty.boss_heart_container_limit, 0x47, 0xff, # boss heart -> green 20
0x17, difficulty.heart_piece_limit, 0x47, 0xff, # piece of heart -> green 20
0xFF, 0xFF, 0xFF, 0xFF, # end of table sentinel
])
# set Fountain bottle exchange items
if world.difficulty[player] in ['hard', 'expert']:
rom.write_byte(0x348FF, [0x16, 0x2B, 0x2C, 0x2D, 0x3C, 0x48][random.randint(0, 5)])
rom.write_byte(0x3493B, [0x16, 0x2B, 0x2C, 0x2D, 0x3C, 0x48][random.randint(0, 5)])
else:
rom.write_byte(0x348FF, [0x16, 0x2B, 0x2C, 0x2D, 0x3C, 0x3D, 0x48][random.randint(0, 6)])
rom.write_byte(0x3493B, [0x16, 0x2B, 0x2C, 0x2D, 0x3C, 0x3D, 0x48][random.randint(0, 6)])
#enable Fat Fairy Chests
rom.write_bytes(0x1FC16, [0xB1, 0xC6, 0xF9, 0xC9, 0xC6, 0xF9])
# set Fat Fairy Bow/Sword prizes to be disappointing
rom.write_byte(0x34914, 0x3A) # Bow and Arrow
rom.write_byte(0x180028, 0x49) # Fighter Sword
# enable Waterfall fairy chests
rom.write_bytes(0xE9AE, [0x14, 0x01])
rom.write_bytes(0xE9CF, [0x14, 0x01])
rom.write_bytes(0x1F714, [225, 0, 16, 172, 13, 41, 154, 1, 88, 152, 15, 17, 177, 97, 252, 77, 129, 32, 218, 2, 44, 225, 97, 252, 190, 129, 97, 177, 98, 84, 218, 2,
253, 141, 131, 68, 225, 98, 253, 30, 131, 49, 165, 201, 49, 164, 105, 49, 192, 34, 77, 164, 105, 49, 198, 249, 73, 198, 249, 16, 153, 160, 92, 153,
162, 11, 152, 96, 13, 232, 192, 85, 232, 192, 11, 146, 0, 115, 152, 96, 254, 105, 0, 152, 163, 97, 254, 107, 129, 254, 171, 133, 169, 200, 97, 254,
174, 129, 255, 105, 2, 216, 163, 98, 255, 107, 131, 255, 43, 135, 201, 200, 98, 255, 46, 131, 254, 161, 0, 170, 33, 97, 254, 166, 129, 255, 33, 2,
202, 33, 98, 255, 38, 131, 187, 35, 250, 195, 35, 250, 187, 43, 250, 195, 43, 250, 187, 83, 250, 195, 83, 250, 176, 160, 61, 152, 19, 192, 152, 82,
192, 136, 0, 96, 144, 0, 96, 232, 0, 96, 240, 0, 96, 152, 202, 192, 216, 202, 192, 216, 19, 192, 216, 82, 192, 252, 189, 133, 253, 29, 135, 255,
255, 255, 255, 240, 255, 128, 46, 97, 14, 129, 14, 255, 255])
# set Waterfall fairy prizes to be disappointing
rom.write_byte(0x348DB, 0x3A) # Red Boomerang becomes Red Boomerang
rom.write_byte(0x348EB, 0x05) # Blue Shield becomes Blue Shield
# Remove Statues for upgrade fairy
rom.write_bytes(0x01F810, [0x1A, 0x1E, 0x01, 0x1A, 0x1E, 0x01])
rom.write_byte(0x180029, 0x01) # Smithy quick item give
# set swordless mode settings
rom.write_byte(0x18003F, 0x01 if world.swords[player] == 'swordless' else 0x00) # hammer can harm ganon
rom.write_byte(0x180040, 0x01 if world.swords[player] == 'swordless' else 0x00) # open curtains
rom.write_byte(0x180041, 0x01 if world.swords[player] == 'swordless' else 0x00) # swordless medallions
rom.write_byte(0x180043, 0xFF if world.swords[player] == 'swordless' else 0x00) # starting sword for link
rom.write_byte(0x180044, 0x01 if world.swords[player] == 'swordless' else 0x00) # hammer activates tablets
# set up clocks for timed modes
if world.shuffle[player] == 'vanilla':
ERtimeincrease = 0
elif world.shuffle[player] in ['dungeonssimple', 'dungeonsfull']:
ERtimeincrease = 10
else:
ERtimeincrease = 20
if world.keyshuffle[player] or world.bigkeyshuffle[player] or world.mapshuffle[player]:
ERtimeincrease = ERtimeincrease + 15
if world.clock_mode == 'none':
rom.write_bytes(0x180190, [0x00, 0x00, 0x00]) # turn off clock mode
write_int32(rom, 0x180200, 0) # red clock adjustment time (in frames, sint32)
write_int32(rom, 0x180204, 0) # blue clock adjustment time (in frames, sint32)
write_int32(rom, 0x180208, 0) # green clock adjustment time (in frames, sint32)
write_int32(rom, 0x18020C, 0) # starting time (in frames, sint32)
elif world.clock_mode == 'ohko':
rom.write_bytes(0x180190, [0x01, 0x02, 0x01]) # ohko timer with resetable timer functionality
write_int32(rom, 0x180200, 0) # red clock adjustment time (in frames, sint32)
write_int32(rom, 0x180204, 0) # blue clock adjustment time (in frames, sint32)
write_int32(rom, 0x180208, 0) # green clock adjustment time (in frames, sint32)
write_int32(rom, 0x18020C, 0) # starting time (in frames, sint32)
elif world.clock_mode == 'countdown-ohko':
rom.write_bytes(0x180190, [0x01, 0x02, 0x01]) # ohko timer with resetable timer functionality
write_int32(rom, 0x180200, -100 * 60 * 60 * 60) # red clock adjustment time (in frames, sint32)
write_int32(rom, 0x180204, 2 * 60 * 60) # blue clock adjustment time (in frames, sint32)
write_int32(rom, 0x180208, 4 * 60 * 60) # green clock adjustment time (in frames, sint32)
if world.difficulty_adjustments[player] == 'normal':
write_int32(rom, 0x18020C, (10 + ERtimeincrease) * 60 * 60) # starting time (in frames, sint32)
else:
write_int32(rom, 0x18020C, int((5 + ERtimeincrease / 2) * 60 * 60)) # starting time (in frames, sint32)
if world.clock_mode == 'stopwatch':
rom.write_bytes(0x180190, [0x02, 0x01, 0x00]) # set stopwatch mode
write_int32(rom, 0x180200, -2 * 60 * 60) # red clock adjustment time (in frames, sint32)
write_int32(rom, 0x180204, 2 * 60 * 60) # blue clock adjustment time (in frames, sint32)
write_int32(rom, 0x180208, 4 * 60 * 60) # green clock adjustment time (in frames, sint32)
write_int32(rom, 0x18020C, 0) # starting time (in frames, sint32)
if world.clock_mode == 'countdown':
rom.write_bytes(0x180190, [0x01, 0x01, 0x00]) # set countdown, with no reset available
write_int32(rom, 0x180200, -2 * 60 * 60) # red clock adjustment time (in frames, sint32)
write_int32(rom, 0x180204, 2 * 60 * 60) # blue clock adjustment time (in frames, sint32)
write_int32(rom, 0x180208, 4 * 60 * 60) # green clock adjustment time (in frames, sint32)
write_int32(rom, 0x18020C, (40 + ERtimeincrease) * 60 * 60) # starting time (in frames, sint32)
# set up goals for treasure hunt
rom.write_bytes(0x180165, [0x0E, 0x28] if world.treasure_hunt_icon[player] == 'Triforce Piece' else [0x0D, 0x28])
rom.write_byte(0x180167, world.treasure_hunt_count[player] % 256)
rom.write_byte(0x180194, 1) # Must turn in triforced pieces (instant win not enabled)
rom.write_bytes(0x180213, [0x00, 0x01]) # Not a Tournament Seed
gametype = 0x04 # item
if world.shuffle[player] != 'vanilla':
gametype |= 0x02 # entrance
if enemized:
gametype |= 0x01 # enemizer
rom.write_byte(0x180211, gametype) # Game type
# assorted fixes
rom.write_byte(0x1800A2, 0x01) # remain in real dark world when dying in dark world dungeon before killing aga1
rom.write_byte(0x180169, 0x01 if world.lock_aga_door_in_escape else 0x00) # Lock or unlock aga tower door during escape sequence.
if world.mode[player] == 'inverted':
rom.write_byte(0x180169, 0x02) # lock aga/ganon tower door with crystals in inverted
rom.write_byte(0x180171, 0x01 if world.ganon_at_pyramid[player] else 0x00) # Enable respawning on pyramid after ganon death
rom.write_byte(0x180173, 0x01) # Bob is enabled
rom.write_byte(0x180168, 0x08) # Spike Cave Damage
rom.write_bytes(0x18016B, [0x04, 0x02, 0x01]) #Set spike cave and MM spike room Cape usage
rom.write_bytes(0x18016E, [0x04, 0x08, 0x10]) #Set spike cave and MM spike room Cape usage
rom.write_bytes(0x50563, [0x3F, 0x14]) # disable below ganon chest
rom.write_byte(0x50599, 0x00) # disable below ganon chest
rom.write_bytes(0xE9A5, [0x7E, 0x00, 0x24]) # disable below ganon chest
rom.write_byte(0x18008B, 0x01 if world.open_pyramid[player] else 0x00) # pre-open Pyramid Hole
rom.write_byte(0x18008C, 0x01 if world.crystals_needed_for_gt[player] == 0 else 0x00) # GT pre-opened if crystal requirement is 0
rom.write_byte(0xF5D73, 0xF0) # bees are catchable
rom.write_byte(0xF5F10, 0xF0) # bees are catchable
rom.write_byte(0x180086, 0x00 if world.aga_randomness else 0x01) # set blue ball and ganon warp randomness
rom.write_byte(0x1800A0, 0x01) # return to light world on s+q without mirror
rom.write_byte(0x1800A1, 0x01) # enable overworld screen transition draining for water level inside swamp
rom.write_byte(0x180174, 0x01 if world.fix_fake_world[player] else 0x00)
rom.write_byte(0x18017E, 0x01) # Fairy fountains only trade in bottles
# Starting equipment
equip = [0] * (0x340 + 0x4F)
equip[0x36C] = 0x18
equip[0x36D] = 0x18
equip[0x379] = 0x68
starting_max_bombs = 10
starting_max_arrows = 30