2023-01-20 00:31:45 +08:00
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import math
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import os
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key = {
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"x": [b"\x0f", b"\x0e", b"\x1c", b"\x14", b"\x15"],
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"y": [b"\x11", b"\x10", b"\x1d", b"\x16", b"\x17"],
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"z": [b"\x13", b"\x12", b"\x1e", b"\x18", b"\x19"],
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}
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"""key存储了方块移动指令的数据,其中可以用key[x|y|z][0|1]来表示xyz的减或增
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而key[][2+]是用来增加指定数目的"""
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x = "x"
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y = "y"
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z = "z"
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def move(axis: str, value: int):
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if value == 0:
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return b""
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if abs(value) == 1:
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return key[axis][0 if value == -1 else 1]
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pointer = sum(
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[
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1 if i else 0
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for i in (
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value != -1,
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value < -1 or value > 1,
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value < -128 or value > 127,
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value < -32768 or value > 32767,
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)
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]
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)
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2023-01-28 11:56:09 +08:00
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return key[axis][pointer] + value.to_bytes(2 ** (pointer - 2), "big", signed=True)
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2023-01-20 00:31:45 +08:00
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2023-01-29 13:02:43 +08:00
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def compressZipFile(sourceDir, outFilename, compression=8, exceptFile=None):
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2023-01-20 00:31:45 +08:00
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"""使用compression指定的算法打包目录为zip文件\n
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默认算法为DEFLATED(8),可用算法如下:\n
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STORED = 0\n
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DEFLATED = 8\n
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BZIP2 = 12\n
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LZMA = 14\n
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"""
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import zipfile
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zipf = zipfile.ZipFile(outFilename, "w", compression)
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pre_len = len(os.path.dirname(sourceDir))
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for parent, dirnames, filenames in os.walk(sourceDir):
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for filename in filenames:
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if filename == exceptFile:
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continue
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pathfile = os.path.join(parent, filename)
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arc_name = pathfile[pre_len:].strip(os.path.sep) # 相对路径
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zipf.write(pathfile, arc_name)
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zipf.close()
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2023-01-29 13:02:43 +08:00
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def form_command_block_in_BDX_bytes(
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command: str,
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particularValue: int,
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impluse: int = 0,
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condition: bool = False,
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needRedstone: bool = True,
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tickDelay: int = 0,
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customName: str = "",
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executeOnFirstTick: bool = False,
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trackOutput: bool = True,
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):
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"""
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使用指定项目返回指定的指令方块放置指令项
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:param command: `str`
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指令
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:param particularValue:
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方块特殊值,即朝向
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:0 下 无条件
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:1 上 无条件
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:2 z轴负方向 无条件
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:3 z轴正方向 无条件
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:4 x轴负方向 无条件
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:5 x轴正方向 无条件
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:6 下 无条件
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:7 下 无条件
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:8 下 有条件
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:9 上 有条件
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:10 z轴负方向 有条件
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:11 z轴正方向 有条件
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:12 x轴负方向 有条件
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:13 x轴正方向 有条件
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:14 下 有条件
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:14 下 有条件
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注意!此处特殊值中的条件会被下面condition参数覆写
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:param impluse: `int 0|1|2`
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方块类型
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0脉冲 1循环 2连锁
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:param condition: `bool`
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是否有条件
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:param needRedstone: `bool`
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是否需要红石
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:param tickDelay: `int`
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执行延时
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:param customName: `str`
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悬浮字
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lastOutput: `str`
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上次输出字符串,注意此处需要留空
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:param executeOnFirstTick: `bool`
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执行第一个已选项(循环指令方块是否激活后立即执行,若为False,则从激活时起延迟后第一次执行)
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:param trackOutput: `bool`
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是否输出
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:return:str
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"""
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block = b"\x24" + particularValue.to_bytes(2, byteorder="big", signed=False)
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for i in [
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impluse.to_bytes(4, byteorder="big", signed=False),
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bytes(command, encoding="utf-8") + b"\x00",
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bytes(customName, encoding="utf-8") + b"\x00",
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bytes("", encoding="utf-8") + b"\x00",
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tickDelay.to_bytes(4, byteorder="big", signed=True),
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executeOnFirstTick.to_bytes(1, byteorder="big"),
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trackOutput.to_bytes(1, byteorder="big"),
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condition.to_bytes(1, byteorder="big"),
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needRedstone.to_bytes(1, byteorder="big"),
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]:
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block += i
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return block
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def __fillSquareSideLength(total: int, maxHeight: int):
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"""给定总方块数量和最大高度,返回所构成的图形外切正方形的边长
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:param total: 总方块数量
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:param maxHeight: 最大高度
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:return: 外切正方形的边长 int"""
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return math.ceil(math.sqrt(math.ceil(total / maxHeight)))
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2023-01-29 13:02:43 +08:00
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def to_BDX_bytes(
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commands: list,
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max_height: int = 64,
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):
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"""
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:param commands: 指令列表(指令, 延迟)
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:param max_height: 生成结构最大高度
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:return 成功与否,成功返回(True,未经过压缩的源,结构占用大小),失败返回(False,str失败原因)
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"""
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_sideLength = __fillSquareSideLength(len(commands), max_height)
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_bytes = b""
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y_forward = True
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z_forward = True
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now_y = 0
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now_z = 0
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now_x = 0
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for cmd, delay in commands:
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impluse = 2
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condition = False
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needRedstone = False
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tickDelay = delay
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customName = ""
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executeOnFirstTick = False
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trackOutput = True
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_bytes += form_command_block_in_BDX_bytes(
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cmd,
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(1 if y_forward else 0)
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if (
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((now_y != 0) and (not y_forward))
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or (y_forward and (now_y != (max_height - 1)))
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)
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else (3 if z_forward else 2)
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if (
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((now_z != 0) and (not z_forward))
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or (z_forward and (now_z != _sideLength))
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)
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else 5,
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impluse=impluse,
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condition=condition,
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needRedstone=needRedstone,
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tickDelay=tickDelay,
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customName=customName,
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executeOnFirstTick=executeOnFirstTick,
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trackOutput=trackOutput,
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)
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2023-01-27 23:25:28 +08:00
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now_y += 1 if y_forward else -1
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if ((now_y >= max_height) and y_forward) or ((now_y < 0) and (not y_forward)):
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now_y -= 1 if y_forward else -1
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y_forward = not y_forward
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now_z += 1 if z_forward else -1
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if ((now_z > _sideLength) and z_forward) or (
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(now_z < 0) and (not z_forward)
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):
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now_z -= 1 if z_forward else -1
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z_forward = not z_forward
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_bytes += key[x][1]
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now_x += 1
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else:
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_bytes += key[z][int(z_forward)]
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else:
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_bytes += key[y][int(y_forward)]
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return (
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_bytes,
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[
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now_x + 1,
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max_height if now_x or now_z else now_y,
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_sideLength if now_x else now_z,
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],
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[now_x, now_y, now_z],
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)
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