Factorio

Factorio模块设计指北

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看Linux内核看了一半来打游戏了qaq

电路

秒表0型

点信号恒定输出1,第一个判断器设置点信号小于60时输出点信号,且反馈到输入端。

这样,在0tick时,输入端恒定1个点,1tick点信号通过判断器反馈到输入端,此时判断器上不仅有反馈来的点信号量,也有常量箱中恒定的1个点信号增量。不断反复循环,累积量通过判断器反馈,常量箱给出增量。该信号系统的点信号在1到60之间循环,每tick变换一次。

第二个判断器检查点信号是否为60,注意,当第一个判断器输入59+1个点信号时,尽管不会输出60,但是在该信号系统中的点信号为60,因而与该系统相连的第二个判断器应该检查60。检查成功后输出一个S信号表示秒,类似地给出一个累加器即可记录总共经历的秒数。

秒表0型实现简单,逻辑器件少,但是由于常量箱表示增量,因而开关常量箱只会暂停/继续计数,所以不支持清零。

蓝图代码:

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秒表1型(可清零)

上述的简单模型无法解决清零的操作,因为每个信号都被存放在信号系统中而不可能被清零(除非手动拆线等),因而本模型添加了一个运算器,判断器在获得累加的结果后不直接反馈到输入端,而是通过一个运算器后再输出到输入端。这样我们就可以通过运算器来进行清零/不变的操作,但是要注意的是,每通过一个运算器都要消耗1tick,所以该模型下点信号达到30时就已经度过了1秒。

具体来说,运算器中进行点信号乘以检查信号,输出点信号。当打开检查信号时开始计数,当关闭检查信号时反馈终止,判断器只能获得最初的一个点信号而无法获得以往的累积量,这样就实现了点信号的可清零操作。

接下来考察秒数。如果直接按照计时器0统计S信号,会发现S每次跨度为2地增长。这是因为在模型0中,每个信号脉冲都只持续1tick,而在该模型中,点信号的传递经过2个运算器,需要2tick,也就是说2tick才会进行一次点信号自增,那么也就意味着该系统中信号的脉冲宽度为2,这就解释了为什么S信号会以2为步长进行增加。

我们使用如下的结构来统计秒数,S信号输入到判断器中,判断器输出到运算器中,运算器再反馈到判断器的输入端。这个结构与点信号的结构相同,所以自然也支持清零操作。但是更精妙的是,在本模型中进位来的S信号持续2tick,在第1tick时累加的S信号通过判断器,达到运算器,在2tick时通过运算器,回到输入端,正好与进位S信号汇合。该过程说明了一个宽度为2的S进位信号脉冲恰好引起一次秒数累加器的进位(其实这也说明了为什么1秒60tick的常量箱点信号只能产生30个点信号累加结果),那么累加器中的秒数就直接是实际的秒数,而不需要任何的二次转化。

蓝图代码:

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产物计数器

借助秒表1型和一个简单的可清零累加器,就能够统计传送带上的物品速度。打开检查信号后开始统计,记录经过的秒数和经过的物品,作除法输出在最后一个运算器中。

为了避免信号冲突,必须使用绿线与传送带连接。统计不同的产物时,应该更改累加器和均值器中对应的物品。

蓝图代码:

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电子时钟

八段数码管

设置ABCDEFG七个信号,同时开启颜色选项,不支持小数点。

蓝图代码:

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控制信号

10个常量箱中分别给出了0-9对应的7位硬编码,用于控制7个数码管。T信号为0-9的一个数码,通过绿线给进后,10个判断器会根据T的值决定到底输出哪一个X,X在10个逻辑与运算器下输出0/1决定7个数码管的开关。

蓝图代码:

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*/60/60计数器

计数时分秒,暂时不限制小时的上限。大概一定玩不到那么久。

蓝图代码:

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完整时钟实现

1
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

产线

为了实现标准的3*n物理结构,开始尝试学习混料技术,本章中的模板基本只使用混料技术,非插件模板使用蓝色组装机,插件模板使用绿色组装机。

小标题命名规则:<产物名><组装机数量>

绿板2

组装机配比:铜线3,绿板2

原材料配比:铁板2,铜板3

测定了5台组装机不同的排序方式,使用了如下的方式,可以获得较高的产量。

使用时需要往出口处放80个绿板左右以启动设施。

稳定产量大约在133绿板/min

1
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