mirror of
https://gitlab.com/xCrystal/pokecrystal-board.git
synced 2024-11-16 11:27:33 -08:00
start using classes instead of functions everywhere
This commit is contained in:
parent
253c897bbd
commit
d497a0a001
@ -523,6 +523,7 @@ def clean_up_long_info(long_info):
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return long_info
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def command_debug_information(command_byte=None, map_group=None, map_id=None, address=0, info=None, long_info=None, pksv_name=None):
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"used to help debug in parse_script_engine_script_at"
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info1 = "parsing command byte " + hex(command_byte) + " for map " + \
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str(map_group) + "." + str(map_id) + " at " + hex(address)
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info1 += " pksv: " + str(pksv_name)
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@ -530,60 +531,390 @@ def command_debug_information(command_byte=None, map_group=None, map_id=None, ad
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#info1 += " long_info: " + long_info
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return info1
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class TextScript():
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"a text is a sequence of commands different from a script-engine script"
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def to_asm(self): pass
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@staticmethod
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def find_addresses():
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"""returns a list of text pointers
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useful for testing parse_text_engine_script_at
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Note that this list is not exhaustive. There are some texts that
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are only pointed to from some script that a current script just
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points to. So find_all_text_pointers_in_script_engine_script will
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have to recursively follow through each script to find those.
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.. it does this now :)
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"""
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addresses = set()
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#for each map group
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for map_group in map_names:
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#for each map id
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for map_id in map_names[map_group]:
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#skip the offset key
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if map_id == "offset": continue
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#dump this into smap
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smap = map_names[map_group][map_id]
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#signposts
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signposts = smap["signposts"]
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#for each signpost
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for signpost in signposts:
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if signpost["func"] in [0, 1, 2, 3, 4]:
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#dump this into script
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script = signpost["script"]
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elif signpost["func"] in [05, 06]:
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script = signpost["script"]
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else: continue
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#skip signposts with no bytes
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if len(script) == 0: continue
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#find all text pointers in script
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texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
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#dump these addresses in
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addresses.update(texts)
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#xy triggers
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xy_triggers = smap["xy_triggers"]
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#for each xy trigger
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for xy_trigger in xy_triggers:
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#dump this into script
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script = xy_trigger["script"]
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#find all text pointers in script
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texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
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#dump these addresses in
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addresses.update(texts)
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#trigger scripts
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triggers = smap["trigger_scripts"]
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#for each trigger
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for (i, trigger) in triggers.items():
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#dump this into script
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script = trigger["script"]
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#find all text pointers in script
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texts = find_all_text_pointers_in_script_engine_script(script, calculate_bank(trigger["address"]))
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#dump these addresses in
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addresses.update(texts)
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#callback scripts
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callbacks = smap["callback_scripts"]
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#for each callback
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for (k, callback) in callbacks.items():
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#dump this into script
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script = callback["script"]
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#find all text pointers in script
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texts = find_all_text_pointers_in_script_engine_script(script, calculate_bank(callback["address"]))
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#dump these addresses in
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addresses.update(texts)
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#people-events
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events = smap["people_events"]
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#for each event
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for event in events:
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if event["event_type"] == "script":
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#dump this into script
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script = event["script"]
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#find all text pointers in script
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texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
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#dump these addresses in
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addresses.update(texts)
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if event["event_type"] == "trainer":
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trainer_data = event["trainer_data"]
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addresses.update([trainer_data["text_when_seen_ptr"]])
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addresses.update([trainer_data["text_when_trainer_beaten_ptr"]])
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trainer_bank = calculate_bank(event["trainer_data_address"])
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script1 = trainer_data["script_talk_again"]
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texts1 = find_all_text_pointers_in_script_engine_script(script1, trainer_bank)
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addresses.update(texts1)
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script2 = trainer_data["script_when_lost"]
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texts2 = find_all_text_pointers_in_script_engine_script(script2, trainer_bank)
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addresses.update(texts2)
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return addresses
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@staticmethod
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def parse_text_at(address, map_group=None, map_id=None, debug=True, show=True):
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"""parses a text-engine script ("in-text scripts")
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http://hax.iimarck.us/files/scriptingcodes_eng.htm#InText
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This is presently very broken.
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see parse_text_at2, parse_text_at, and process_00_subcommands
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"""
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global rom, text_count, max_texts, texts
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if rom == None:
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load_rom()
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if address == None:
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return "not a script"
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commands = {}
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total_text_commands = 0
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command_counter = 0
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original_address = address
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offset = address
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end = False
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while not end:
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address = offset
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command = {}
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command_byte = ord(rom[address])
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print "parse_text_engine_script_at has encountered a command byte " + hex(command_byte) + " at " + hex(address)
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end_address = address + 1
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if command_byte == 0:
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#read until $57, $50 or $58
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jump57 = how_many_until(chr(0x57), offset)
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jump50 = how_many_until(chr(0x50), offset)
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jump58 = how_many_until(chr(0x58), offset)
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#whichever command comes first
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jump = min([jump57, jump50, jump58])
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end_address = offset + jump - 1 #we want the address before $57
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lines = process_00_subcommands(offset+1, end_address)
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if show:
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text = parse_text_at2(offset+1, end_address-offset+1)
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texts.append(text)
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print text
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command = {"type": command_byte,
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"start_address": offset,
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"end_address": end_address,
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"size": jump,
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"lines": lines,
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}
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offset += jump
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elif command_byte == 0x17:
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#TX_FAR [pointer][bank]
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pointer_byte1 = ord(rom[offset+1])
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pointer_byte2 = ord(rom[offset+2])
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pointer_bank = ord(rom[offset+3])
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pointer = (pointer_byte1 + (pointer_byte2 << 8))
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pointer = extract_maps.calculate_pointer(pointer, pointer_bank)
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command = {"type": command_byte,
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"start_address": offset,
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"end_address": offset + 3, #last byte belonging to this command
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"pointer": pointer, #parameter
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}
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offset += 3 + 1
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elif command_byte == 0x50 or command_byte == 0x57 or command_byte == 0x58: #end text
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command = {"type": command_byte,
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"start_address": offset,
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"end_address": offset,
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}
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#this byte simply indicates to end the script
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end = True
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#this byte simply indicates to end the script
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if command_byte == 0x50 and ord(rom[offset+1]) == 0x50: #$50$50 means end completely
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end = True
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commands[command_counter+1] = command
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#also save the next byte, before we quit
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commands[command_counter+1]["start_address"] += 1
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commands[command_counter+1]["end_address"] += 1
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add_command_byte_to_totals(command_byte)
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elif command_byte == 0x50: #only end if we started with $0
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if len(commands.keys()) > 0:
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if commands[0]["type"] == 0x0: end = True
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elif command_byte == 0x57 or command_byte == 0x58: #end completely
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end = True
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offset += 1 #go past this 0x50
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elif command_byte == 0x1:
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#01 = text from RAM. [01][2-byte pointer]
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size = 3 #total size, including the command byte
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pointer_byte1 = ord(rom[offset+1])
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pointer_byte2 = ord(rom[offset+2])
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command = {"type": command_byte,
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"start_address": offset+1,
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"end_address": offset+2, #last byte belonging to this command
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"pointer": [pointer_byte1, pointer_byte2], #RAM pointer
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}
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#view near these bytes
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#subsection = rom[offset:offset+size+1] #peak ahead
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#for x in subsection:
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# print hex(ord(x))
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#print "--"
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offset += 2 + 1 #go to the next byte
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#use this to look at the surrounding bytes
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if debug:
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print "next command is: " + hex(ord(rom[offset])) + " ... we are at command number: " + str(command_counter) + " near " + hex(offset) + " on map_id=" + str(map_id)
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elif command_byte == 0x7:
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#07 = shift texts 1 row above (2nd line becomes 1st line); address for next text = 2nd line. [07]
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size = 1
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command = {"type": command_byte,
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"start_address": offset,
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"end_address": offset,
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}
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offset += 1
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elif command_byte == 0x3:
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#03 = set new address in RAM for text. [03][2-byte RAM address]
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size = 3
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command = {"type": command_byte, "start_address": offset, "end_address": offset+2}
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offset += size
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elif command_byte == 0x4: #draw box
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#04 = draw box. [04][2-Byte pointer][height Y][width X]
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size = 5 #including the command
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command = {
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"type": command_byte,
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"start_address": offset,
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"end_address": offset + size,
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"pointer_bytes": [ord(rom[offset+1]), ord(rom[offset+2])],
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"y": ord(rom[offset+3]),
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"x": ord(rom[offset+4]),
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}
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offset += size + 1
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elif command_byte == 0x5:
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#05 = write text starting at 2nd line of text-box. [05][text][ending command]
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#read until $57, $50 or $58
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jump57 = how_many_until(chr(0x57), offset)
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jump50 = how_many_until(chr(0x50), offset)
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jump58 = how_many_until(chr(0x58), offset)
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#whichever command comes first
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jump = min([jump57, jump50, jump58])
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end_address = offset + jump - 1 #we want the address before $57
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lines = process_00_subcommands(offset+1, end_address)
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if show:
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text = parse_text_at2(offset+1, end_address-offset+1)
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texts.append(text)
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print text
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command = {"type": command_byte,
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"start_address": offset,
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"end_address": end_address,
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"size": jump,
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"lines": lines,
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}
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offset = end_address + 1
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elif command_byte == 0x6:
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#06 = wait for keypress A or B (put blinking arrow in textbox). [06]
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command = {"type": command_byte, "start_address": offset, "end_address": offset}
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offset += 1
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elif command_byte == 0x7:
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#07 = shift texts 1 row above (2nd line becomes 1st line); address for next text = 2nd line. [07]
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command = {"type": command_byte, "start_address": offset, "end_address": offset}
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offset += 1
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elif command_byte == 0x8:
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#08 = asm until whenever
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command = {"type": command_byte, "start_address": offset, "end_address": offset}
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offset += 1
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end = True
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elif command_byte == 0x9:
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#09 = write hex-to-dec number from RAM to textbox [09][2-byte RAM address][byte bbbbcccc]
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# bbbb = how many bytes to read (read number is big-endian)
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# cccc = how many digits display (decimal)
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#(note: max of decimal digits is 7,i.e. max number correctly displayable is 9999999)
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ram_address_byte1 = ord(rom[offset+1])
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ram_address_byte2 = ord(rom[offset+2])
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read_byte = ord(rom[offset+3])
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command = {
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"type": command_byte,
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"address": [ram_address_byte1, ram_address_byte2],
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"read_byte": read_byte, #split this up when we make a macro for this
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}
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offset += 4
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else:
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#if len(commands) > 0:
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# print "Unknown text command " + hex(command_byte) + " at " + hex(offset) + ", script began with " + hex(commands[0]["type"])
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if debug:
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print "Unknown text command at " + hex(offset) + " - command: " + hex(ord(rom[offset])) + " on map_id=" + str(map_id)
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#end at the first unknown command
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end = True
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commands[command_counter] = command
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command_counter += 1
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total_text_commands += len(commands)
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text_count += 1
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#if text_count >= max_texts:
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# sys.exit()
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return commands
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def parse_text_engine_script_at(address, map_group=None, map_id=None, debug=True, show=True):
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"""parses a text-engine script ("in-text scripts")
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http://hax.iimarck.us/files/scriptingcodes_eng.htm#InText
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see parse_text_at2, parse_text_at, and process_00_subcommands
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"""
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return TextScript.parse_text_at(address, map_group=map_group, map_id=map_id, debug=debug, show=show)
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def find_text_addresses():
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"""returns a list of text pointers
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useful for testing parse_text_engine_script_at"""
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return TextScript.find_addresses()
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class EncodedText():
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"""a sequence of bytes that, when decoded, represent readable text
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based on the chars table from textpre.py and other places"""
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def to_asm(self): pass
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@staticmethod
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def process_00_subcommands(start_address, end_address):
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"""split this text up into multiple lines
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based on subcommands ending each line"""
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print "process_00_subcommands(" + hex(start_address) + ", " + hex(end_address) + ")"
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lines = {}
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subsection = rom[start_address:end_address]
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line_count = 0
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current_line = []
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for pbyte in subsection:
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byte = ord(pbyte)
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current_line.append(byte)
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if byte == 0x4f or byte == 0x51 or byte == 0x55:
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lines[line_count] = current_line
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current_line = []
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line_count += 1
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#don't forget the last line
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lines[line_count] = current_line
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line_count += 1
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return lines
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@staticmethod
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def from_bytes(bytes):
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"""assembles a string based on bytes looked up in the chars table"""
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line = ""
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for byte in bytes:
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if type(byte) != int:
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byte = ord(byte)
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if byte in chars.keys():
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line += chars[byte]
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else:
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print "byte not known: " + hex(byte)
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return line
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@staticmethod
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def parse_text_at(address, count=10):
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"""returns a string of text from an address
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this does not handle text commands"""
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output = ""
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commands = process_00_subcommands(address, address+count)
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for (line_id, line) in commands.items():
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output += parse_text_from_bytes(line)
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output += "\n"
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return output
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def process_00_subcommands(start_address, end_address):
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"""split this text up into multiple lines
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based on subcommands ending each line"""
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print "process_00_subcommands(" + hex(start_address) + ", " + hex(end_address) + ")"
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lines = {}
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subsection = rom[start_address:end_address]
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line_count = 0
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current_line = []
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for pbyte in subsection:
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byte = ord(pbyte)
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current_line.append(byte)
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if byte == 0x4f or byte == 0x51 or byte == 0x55:
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lines[line_count] = current_line
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current_line = []
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line_count += 1
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#don't forget the last line
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lines[line_count] = current_line
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line_count += 1
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return lines
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return EncodedText.process_00_subcommands(start_address, end_address)
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def parse_text_from_bytes(bytes):
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"""assembles a string based on bytes looked up in the chars table"""
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line = ""
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for byte in bytes:
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if type(byte) != int:
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byte = ord(byte)
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if byte in chars.keys():
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line += chars[byte]
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else:
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print "byte not known: " + hex(byte)
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return line
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return EncodedText.from_bytes(bytes)
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def parse_text_at(address, count=10):
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"""returns a list of bytes from an address
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see parse_text_at2 for pretty printing"""
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return parse_text_from_bytes(rom_interval(address, count, strings=False))
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def parse_text_at2(address, count=10):
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"""returns a string of text from an address
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this does not handle text commands"""
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return EncodedText.parse_text_at(address, count)
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def rom_text_at(address, count=10):
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"""prints out raw text from the ROM
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like for 0x112110"""
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return "".join([chr(x) for x in rom_interval(address, count, strings=False)])
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def parse_text_at2(address, count=10):
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"""returns a string of text from an address
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this does not handle text commands"""
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output = ""
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commands = process_00_subcommands(address, address+count)
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for (line_id, line) in commands.items():
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output += parse_text_from_bytes(line)
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output += "\n"
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return output
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def find_all_text_pointers_in_script_engine_script(script, bank):
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"""returns a list of text pointers
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based on each script-engine script command"""
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@ -604,310 +935,6 @@ def find_all_text_pointers_in_script_engine_script(script, bank):
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addresses.add(command["lost_pointer"])
|
||||
return addresses
|
||||
|
||||
def find_text_addresses():
|
||||
"""returns a list of text pointers
|
||||
useful for testing parse_text_engine_script_at
|
||||
|
||||
Note that this list is not exhaustive. There are some texts that
|
||||
are only pointed to from some script that a current script just
|
||||
points to. So find_all_text_pointers_in_script_engine_script will
|
||||
have to recursively follow through each script to find those.
|
||||
.. it does this now :)
|
||||
"""
|
||||
addresses = set()
|
||||
#for each map group
|
||||
for map_group in map_names:
|
||||
#for each map id
|
||||
for map_id in map_names[map_group]:
|
||||
#skip the offset key
|
||||
if map_id == "offset": continue
|
||||
#dump this into smap
|
||||
smap = map_names[map_group][map_id]
|
||||
#signposts
|
||||
signposts = smap["signposts"]
|
||||
#for each signpost
|
||||
for signpost in signposts:
|
||||
if signpost["func"] in [0, 1, 2, 3, 4]:
|
||||
#dump this into script
|
||||
script = signpost["script"]
|
||||
elif signpost["func"] in [05, 06]:
|
||||
script = signpost["script"]
|
||||
else: continue
|
||||
#skip signposts with no bytes
|
||||
if len(script) == 0: continue
|
||||
#find all text pointers in script
|
||||
texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
|
||||
#dump these addresses in
|
||||
addresses.update(texts)
|
||||
#xy triggers
|
||||
xy_triggers = smap["xy_triggers"]
|
||||
#for each xy trigger
|
||||
for xy_trigger in xy_triggers:
|
||||
#dump this into script
|
||||
script = xy_trigger["script"]
|
||||
#find all text pointers in script
|
||||
texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
|
||||
#dump these addresses in
|
||||
addresses.update(texts)
|
||||
#trigger scripts
|
||||
triggers = smap["trigger_scripts"]
|
||||
#for each trigger
|
||||
for (i, trigger) in triggers.items():
|
||||
#dump this into script
|
||||
script = trigger["script"]
|
||||
#find all text pointers in script
|
||||
texts = find_all_text_pointers_in_script_engine_script(script, calculate_bank(trigger["address"]))
|
||||
#dump these addresses in
|
||||
addresses.update(texts)
|
||||
#callback scripts
|
||||
callbacks = smap["callback_scripts"]
|
||||
#for each callback
|
||||
for (k, callback) in callbacks.items():
|
||||
#dump this into script
|
||||
script = callback["script"]
|
||||
#find all text pointers in script
|
||||
texts = find_all_text_pointers_in_script_engine_script(script, calculate_bank(callback["address"]))
|
||||
#dump these addresses in
|
||||
addresses.update(texts)
|
||||
#people-events
|
||||
events = smap["people_events"]
|
||||
#for each event
|
||||
for event in events:
|
||||
if event["event_type"] == "script":
|
||||
#dump this into script
|
||||
script = event["script"]
|
||||
#find all text pointers in script
|
||||
texts = find_all_text_pointers_in_script_engine_script(script, smap["event_bank"])
|
||||
#dump these addresses in
|
||||
addresses.update(texts)
|
||||
if event["event_type"] == "trainer":
|
||||
trainer_data = event["trainer_data"]
|
||||
addresses.update([trainer_data["text_when_seen_ptr"]])
|
||||
addresses.update([trainer_data["text_when_trainer_beaten_ptr"]])
|
||||
trainer_bank = calculate_bank(event["trainer_data_address"])
|
||||
script1 = trainer_data["script_talk_again"]
|
||||
texts1 = find_all_text_pointers_in_script_engine_script(script1, trainer_bank)
|
||||
addresses.update(texts1)
|
||||
script2 = trainer_data["script_when_lost"]
|
||||
texts2 = find_all_text_pointers_in_script_engine_script(script2, trainer_bank)
|
||||
addresses.update(texts2)
|
||||
return addresses
|
||||
|
||||
def old_parse_text_engine_script_at(address, map_group=None, map_id=None, debug=True):
|
||||
return {}
|
||||
|
||||
def parse_text_engine_script_at(address, map_group=None, map_id=None, debug=True, show=True):
|
||||
"""parses a text-engine script ("in-text scripts")
|
||||
http://hax.iimarck.us/files/scriptingcodes_eng.htm#InText
|
||||
|
||||
This is presently very broken.
|
||||
|
||||
see parse_text_at2, parse_text_at, and process_00_subcommands
|
||||
"""
|
||||
global rom, text_count, max_texts, texts
|
||||
if rom == None:
|
||||
load_rom()
|
||||
if address == None:
|
||||
return "not a script"
|
||||
commands = {}
|
||||
|
||||
total_text_commands = 0
|
||||
command_counter = 0
|
||||
original_address = address
|
||||
offset = address
|
||||
end = False
|
||||
while not end:
|
||||
address = offset
|
||||
command = {}
|
||||
command_byte = ord(rom[address])
|
||||
print "parse_text_engine_script_at has encountered a command byte " + hex(command_byte) + " at " + hex(address)
|
||||
end_address = address + 1
|
||||
if command_byte == 0:
|
||||
#read until $57, $50 or $58
|
||||
jump57 = how_many_until(chr(0x57), offset)
|
||||
jump50 = how_many_until(chr(0x50), offset)
|
||||
jump58 = how_many_until(chr(0x58), offset)
|
||||
|
||||
#whichever command comes first
|
||||
jump = min([jump57, jump50, jump58])
|
||||
|
||||
end_address = offset + jump - 1 #we want the address before $57
|
||||
|
||||
lines = process_00_subcommands(offset+1, end_address)
|
||||
|
||||
if show:
|
||||
text = parse_text_at2(offset+1, end_address-offset+1)
|
||||
texts.append(text)
|
||||
print text
|
||||
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": end_address,
|
||||
"size": jump,
|
||||
"lines": lines,
|
||||
}
|
||||
|
||||
offset += jump
|
||||
elif command_byte == 0x17:
|
||||
#TX_FAR [pointer][bank]
|
||||
pointer_byte1 = ord(rom[offset+1])
|
||||
pointer_byte2 = ord(rom[offset+2])
|
||||
pointer_bank = ord(rom[offset+3])
|
||||
|
||||
pointer = (pointer_byte1 + (pointer_byte2 << 8))
|
||||
pointer = extract_maps.calculate_pointer(pointer, pointer_bank)
|
||||
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": offset + 3, #last byte belonging to this command
|
||||
"pointer": pointer, #parameter
|
||||
}
|
||||
|
||||
offset += 3 + 1
|
||||
elif command_byte == 0x50 or command_byte == 0x57 or command_byte == 0x58: #end text
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": offset,
|
||||
}
|
||||
|
||||
#this byte simply indicates to end the script
|
||||
end = True
|
||||
|
||||
#this byte simply indicates to end the script
|
||||
if command_byte == 0x50 and ord(rom[offset+1]) == 0x50: #$50$50 means end completely
|
||||
end = True
|
||||
commands[command_counter+1] = command
|
||||
|
||||
#also save the next byte, before we quit
|
||||
commands[command_counter+1]["start_address"] += 1
|
||||
commands[command_counter+1]["end_address"] += 1
|
||||
add_command_byte_to_totals(command_byte)
|
||||
elif command_byte == 0x50: #only end if we started with $0
|
||||
if len(commands.keys()) > 0:
|
||||
if commands[0]["type"] == 0x0: end = True
|
||||
elif command_byte == 0x57 or command_byte == 0x58: #end completely
|
||||
end = True
|
||||
offset += 1 #go past this 0x50
|
||||
elif command_byte == 0x1:
|
||||
#01 = text from RAM. [01][2-byte pointer]
|
||||
size = 3 #total size, including the command byte
|
||||
pointer_byte1 = ord(rom[offset+1])
|
||||
pointer_byte2 = ord(rom[offset+2])
|
||||
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset+1,
|
||||
"end_address": offset+2, #last byte belonging to this command
|
||||
"pointer": [pointer_byte1, pointer_byte2], #RAM pointer
|
||||
}
|
||||
|
||||
#view near these bytes
|
||||
#subsection = rom[offset:offset+size+1] #peak ahead
|
||||
#for x in subsection:
|
||||
# print hex(ord(x))
|
||||
#print "--"
|
||||
|
||||
offset += 2 + 1 #go to the next byte
|
||||
|
||||
#use this to look at the surrounding bytes
|
||||
if debug:
|
||||
print "next command is: " + hex(ord(rom[offset])) + " ... we are at command number: " + str(command_counter) + " near " + hex(offset) + " on map_id=" + str(map_id)
|
||||
elif command_byte == 0x7:
|
||||
#07 = shift texts 1 row above (2nd line becomes 1st line); address for next text = 2nd line. [07]
|
||||
size = 1
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": offset,
|
||||
}
|
||||
offset += 1
|
||||
elif command_byte == 0x3:
|
||||
#03 = set new address in RAM for text. [03][2-byte RAM address]
|
||||
size = 3
|
||||
command = {"type": command_byte, "start_address": offset, "end_address": offset+2}
|
||||
offset += size
|
||||
elif command_byte == 0x4: #draw box
|
||||
#04 = draw box. [04][2-Byte pointer][height Y][width X]
|
||||
size = 5 #including the command
|
||||
command = {
|
||||
"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": offset + size,
|
||||
"pointer_bytes": [ord(rom[offset+1]), ord(rom[offset+2])],
|
||||
"y": ord(rom[offset+3]),
|
||||
"x": ord(rom[offset+4]),
|
||||
}
|
||||
offset += size + 1
|
||||
elif command_byte == 0x5:
|
||||
#05 = write text starting at 2nd line of text-box. [05][text][ending command]
|
||||
#read until $57, $50 or $58
|
||||
jump57 = how_many_until(chr(0x57), offset)
|
||||
jump50 = how_many_until(chr(0x50), offset)
|
||||
jump58 = how_many_until(chr(0x58), offset)
|
||||
|
||||
#whichever command comes first
|
||||
jump = min([jump57, jump50, jump58])
|
||||
|
||||
end_address = offset + jump - 1 #we want the address before $57
|
||||
lines = process_00_subcommands(offset+1, end_address)
|
||||
|
||||
if show:
|
||||
text = parse_text_at2(offset+1, end_address-offset+1)
|
||||
texts.append(text)
|
||||
print text
|
||||
|
||||
command = {"type": command_byte,
|
||||
"start_address": offset,
|
||||
"end_address": end_address,
|
||||
"size": jump,
|
||||
"lines": lines,
|
||||
}
|
||||
offset = end_address + 1
|
||||
elif command_byte == 0x6:
|
||||
#06 = wait for keypress A or B (put blinking arrow in textbox). [06]
|
||||
command = {"type": command_byte, "start_address": offset, "end_address": offset}
|
||||
offset += 1
|
||||
elif command_byte == 0x7:
|
||||
#07 = shift texts 1 row above (2nd line becomes 1st line); address for next text = 2nd line. [07]
|
||||
command = {"type": command_byte, "start_address": offset, "end_address": offset}
|
||||
offset += 1
|
||||
elif command_byte == 0x8:
|
||||
#08 = asm until whenever
|
||||
command = {"type": command_byte, "start_address": offset, "end_address": offset}
|
||||
offset += 1
|
||||
end = True
|
||||
elif command_byte == 0x9:
|
||||
#09 = write hex-to-dec number from RAM to textbox [09][2-byte RAM address][byte bbbbcccc]
|
||||
# bbbb = how many bytes to read (read number is big-endian)
|
||||
# cccc = how many digits display (decimal)
|
||||
#(note: max of decimal digits is 7,i.e. max number correctly displayable is 9999999)
|
||||
ram_address_byte1 = ord(rom[offset+1])
|
||||
ram_address_byte2 = ord(rom[offset+2])
|
||||
read_byte = ord(rom[offset+3])
|
||||
|
||||
command = {
|
||||
"type": command_byte,
|
||||
"address": [ram_address_byte1, ram_address_byte2],
|
||||
"read_byte": read_byte, #split this up when we make a macro for this
|
||||
}
|
||||
|
||||
offset += 4
|
||||
else:
|
||||
#if len(commands) > 0:
|
||||
# print "Unknown text command " + hex(command_byte) + " at " + hex(offset) + ", script began with " + hex(commands[0]["type"])
|
||||
if debug:
|
||||
print "Unknown text command at " + hex(offset) + " - command: " + hex(ord(rom[offset])) + " on map_id=" + str(map_id)
|
||||
|
||||
#end at the first unknown command
|
||||
end = True
|
||||
commands[command_counter] = command
|
||||
command_counter += 1
|
||||
total_text_commands += len(commands)
|
||||
|
||||
text_count += 1
|
||||
#if text_count >= max_texts:
|
||||
# sys.exit()
|
||||
|
||||
return commands
|
||||
|
||||
def translate_command_byte(crystal=None, gold=None):
|
||||
"""takes a command byte from either crystal or gold
|
||||
returns the command byte in the other (non-given) game
|
||||
@ -1242,7 +1269,6 @@ def pretty_print_pksv_no_names():
|
||||
for address in addresses:
|
||||
print " " + hex(address)
|
||||
|
||||
|
||||
recursive_scripts = set([])
|
||||
def rec_parse_script_engine_script_at(address, origin=None):
|
||||
"""this is called in parse_script_engine_script_at for recursion
|
||||
|
Loading…
Reference in New Issue
Block a user