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https://github.com/MikaylaFischler/cc-mek-scada.git
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94 lines
2.3 KiB
Lua
94 lines
2.3 KiB
Lua
-- #REQUIRES rtu.lua
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-- #REQUIRES rsio.lua
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-- note: this RTU makes extensive use of the programming concept of closures
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local digital_read = rsio.digital_read
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local digital_is_active = rsio.digital_is_active
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function new()
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local self = {
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rtu = rtu.rtu_init()
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}
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local rtu_interface = function ()
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return self.rtu
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end
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local link_di = function (channel, side, color)
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local f_read = nil
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if color then
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f_read = function ()
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return digital_read(rs.testBundledInput(side, color))
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end
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else
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f_read = function ()
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return digital_read(rs.getInput(side))
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end
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end
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self.rtu.connect_di(f_read)
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end
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local link_do = function (channel, side, color)
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local f_read = nil
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local f_write = nil
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if color then
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f_read = function ()
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return digital_read(colors.test(rs.getBundledOutput(side), color))
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end
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f_write = function (level)
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local output = rs.getBundledOutput(side)
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local active = digital_is_active(channel, level)
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if active then
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colors.combine(output, color)
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else
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colors.subtract(output, color)
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end
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rs.setBundledOutput(side, output)
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end
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else
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f_read = function ()
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return digital_read(rs.getOutput(side))
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end
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f_write = function (level)
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rs.setOutput(side, digital_is_active(channel, level))
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end
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end
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self.rtu.connect_coil(f_read, f_write)
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end
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local link_ai = function (channel, side)
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self.rtu.connect_input_reg(
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function ()
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return rs.getAnalogInput(side)
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end
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)
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end
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local link_ao = function (channel, side)
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self.rtu.connect_holding_reg(
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function ()
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return rs.getAnalogOutput(side)
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end,
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function (value)
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rs.setAnalogOutput(side, value)
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end
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)
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end
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return {
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rtu_interface = rtu_interface,
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link_di = link_di,
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link_do = link_do,
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link_ai = link_ai,
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link_ao = link_ao
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}
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end
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