Basic hardware test examples for adc and gpio + define hardware setup (#3324)
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@ -202,8 +202,8 @@ local function NTest(testrunname, failoldinterface)
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env.eq = deepeq
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env.eq = deepeq
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env.spy = spy
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env.spy = spy
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env.ok = function (cond, msg1, msg2) wrap(assertok, false, cond, msg1, msg2) end
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env.ok = function (cond, msg) wrap(assertok, false, cond, msg) end
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env.nok = function(cond, msg1, msg2) wrap(assertok, true, cond, msg1, msg2) end
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env.nok = function(cond, msg) wrap(assertok, true, cond, msg) end
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env.fail = function (func, expected, msg) wrap(fail, func, expected, msg) end
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env.fail = function (func, expected, msg) wrap(fail, func, expected, msg) end
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handler('begin', name)
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handler('begin', name)
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@ -0,0 +1,61 @@
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-- Walk the ADC through a stepped triangle wave using the attached voltage
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-- divider and I2C GPIO expander.
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local N = require('NTest')("adc-env")
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-- TODO: Preflight test that we are in the correct environment with an I2C
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-- expander in the right place with the right connections.
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-- TODO: Use the mcp23017 module in the main tree rather than hand-coding
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-- the commands
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N.test('setup', function()
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-- Configure the ADC
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if adc.force_init_mode(adc.INIT_ADC)
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then
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node.restart()
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error "Must reboot to get to ADC mode"
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end
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-- Configure the I2C bus
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i2c.setup(0, 2, 1, i2c.FAST)
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-- Set the IO expander port B to channels 0 and 1 as outputs
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i2c.start(0)
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ok(i2c.address(0, 0x20, i2c.TRANSMITTER))
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i2c.write(0, 0x01, 0xFC)
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i2c.stop(0)
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end)
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-- set the two-bit voltage divider output value to v (in 0,1,2,3)
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local function setv(v)
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assert (0 <= v and v <= 3)
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i2c.start(0)
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i2c.address(0, 0x20, i2c.TRANSMITTER)
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i2c.write(0, 0x15, v)
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i2c.stop(0)
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end
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-- read out the ADC and compare to given range
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local function checkadc(min, max)
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local v = adc.read(0)
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return ok(min <= v and v <= max, ("read adc: %d <= %d <= %d"):format(min,v,max))
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end
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-- Since we have a rail-to-rail 4-tap DAC, as it were, give us some one-sided
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-- wiggle around either rail and some two-sided wiggle around both middle stops
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local vmin = { 0, 300, 700, 1000 }
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local vmax = { 24, 400, 800, 1024 }
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-- Set the DAC, wait a brief while for physics, and then read the ADC
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local function mktest(fs, i)
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N.test(fs:format(i), function()
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setv(i)
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tmr.delay(10)
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checkadc(vmin[i+1], vmax[i+1])
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end)
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end
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-- test all four stops on the way up, and the three to come back down
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for i=0,3 do mktest("%d up", i) end
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for i=2,0,-1 do mktest("%d down", i) end
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@ -0,0 +1,88 @@
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-- Walk the GPIO subsystem through its paces, using the attached I2C GPIO chip
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--
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-- Node GPIO 13 (index 7) is connected to I2C expander channel B6; node OUT
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-- Node GPIO 15 (index 8) is connected to I2C expander channel B7; node IN
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local N = require('NTest')("gpio-env")
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-- TODO: Preflight test that we are in the correct environment with an I2C
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-- expander in the right place with the right connections.
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-- TODO: Use the mcp23017 module in the main tree rather than hand-coding
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-- the commands
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N.test('setup', function()
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-- Set gpio pin directions
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gpio.mode(8, gpio.INPUT)
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gpio.mode(7, gpio.OUTPUT, gpio.FLOAT)
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-- Configure the I2C bus
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i2c.setup(0, 2, 1, i2c.FAST)
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-- Set the IO expander port B to channel 7 as output, 6 as input
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i2c.start(0)
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ok(i2c.address(0, 0x20, i2c.TRANSMITTER))
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i2c.write(0, 0x01, 0x7F)
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i2c.stop(0)
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end)
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local function seti2cb7(v)
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i2c.start(0)
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i2c.address(0, 0x20, i2c.TRANSMITTER)
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i2c.write(0, 0x15, v and 0x80 or 0x00)
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i2c.stop(0)
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end
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local function geti2cb6()
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i2c.start(0)
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i2c.address(0, 0x20, i2c.TRANSMITTER)
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i2c.write(0, 0x13)
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i2c.start(0)
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i2c.address(0, 0x20, i2c.RECEIVER)
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local v = i2c.read(0, 1):byte(1)
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i2c.stop(0)
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return (bit.band(v,0x40) ~= 0)
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end
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N.test('gpio read 0', function()
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seti2cb7(false)
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ok(eq(0, gpio.read(8)))
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end)
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N.test('gpio read 1', function()
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seti2cb7(true)
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ok(eq(1, gpio.read(8)))
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end)
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N.test('i2c read 0', function()
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gpio.write(7, 0)
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ok(eq(false, geti2cb6()))
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end)
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N.test('i2c read 1', function()
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gpio.write(7, 1)
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ok(eq(true, geti2cb6()))
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end)
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N.testasync('gpio toggle trigger 1', function(next)
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seti2cb7(false)
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tmr.delay(10)
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gpio.trig(8, "both", function(l,_,c)
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ok(c == 1 and l == 1)
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return next()
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end)
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seti2cb7(true)
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end, true)
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N.testasync('gpio toggle trigger 2', function(next)
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gpio.trig(8, "both", function(l,_,c)
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ok(c == 1 and l == 0)
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return next()
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end)
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seti2cb7(false)
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end, true)
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N.test('gpio toggle trigger end', function()
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gpio.trig(8, "none")
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ok(true)
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end)
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@ -0,0 +1,157 @@
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###########################
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NodeMCU Testing Environment
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###########################
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Herein we define the environment our testing framework expects to see when it
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runs. It is composed of two ESP8266 devices, each capable of holding an entire
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NodeMCU firmware, LFS image, and SPIFFS file system, as well as additional
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peripheral hardware. It is designed to fit comfortably on a breadboard and so
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should be easily replicated and integrated into any firmware validation
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testing.
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The test harness runs from a dedicated host computer, which is expected to have
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reset- and programming-capable UART links to both ESP8266 devices, as found on
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almost all ESP8266 boards with USB to UART adapters, but the host does not
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necessarily need to use USB to connect, so long as TXD, RXD, DTR, and RTS are
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wired across.
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Peripherals
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###########
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I2C Bus
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=======
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There is an I2C bus hanging off DUT 0. Attached hardware is used both as tests
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of modules directly and also to facilitate testing other modules (e.g., gpio).
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MCP23017: I/O Expander
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----------------------
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At address 0x20. An 16-bit tristate GPIO expander, this chip is used to test
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I2C, GPIO, and ADC functionality. This chip's interconnections are as follows:
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+---------+-------------------------------------------------------------------+
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| /RESET | DUT0 reset. This resets the chip whenever the host computer |
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| | resets DUT 0 over its serial link (using DTR/RTS). |
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+---------+-------------------------------------------------------------------+
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| B 0 | 4K7 resistor to DUT 0 ADC. |
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+---------+-------------------------------------------------------------------+
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| B 1 | 2K2 resistor to DUT 0 ADC. |
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+---------+-------------------------------------------------------------------+
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| B 5 | DUT1 GPIO16/WAKE via 4K7 resitor |
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+---------+-------------------------------------------------------------------+
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| B 6 | DUT0 GPIO13 via 4K7 resistor and DUT1 GPIO15 via 4K7 resistor |
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+---------+-------------------------------------------------------------------+
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| B 7 | DUT0 GPIO15 via 4K7 resistor and DUT1 GPIO13 via 4K7 resistor |
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+---------+-------------------------------------------------------------------+
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Notes:
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* DUT 0's ADC pin is connected via a 2K2 reistor to this chip's port B, pin 1
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and via a 4K7 resistor to port B, pin 0. This gives us the ability to
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produce approximately 0 (both pins low), 1.1 (pin 0 high, pin 1 low), 2.2
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(pin 1 high, pin 0 low), and 3.3V (both pins high) on the ADC pin.
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* Port B pins 6 and 7 sit on the UART cross-wiring between DUT 0 and DUT 1.
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The 23017 will be tristated for inter-DUT UART tests, but these
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* Port B pins 2, 3, and 4, as well as all of port A, remain available for
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expansion.
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* The interrupt pins are not yet routed, but could be. We reserve DUT 0
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GPIO 2 for this purpose with the understanding that the 23017's
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interrupt functionality will be disabled (INTA, INTB set to open-drain,
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GPINTEN set to 0) when not explicitly under test.
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ESP8266 Device 0 Connections
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############################
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+---------+---------------------------------------------------------+
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| ESP | |
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+---------+---------------------------------------------------------+
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| GPIO 0 | Used to enter programming mode; otherwise unused in |
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| | test environment. |
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+---------+---------------------------------------------------------+
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| GPIO 1 | Primary UART transmit; reserved for host communication |
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+---------+---------------------------------------------------------+
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| GPIO 2 | [reserved for 1-Wire] |
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| | [+ reserved for 23017 INT[AB] connections] |
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+---------+---------------------------------------------------------+
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| GPIO 3 | Primary UART recieve; reserved for host communication |
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+---------+---------------------------------------------------------+
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| GPIO 4 | I2C SDA |
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+---------+---------------------------------------------------------+
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| GPIO 5 | I2C SCL |
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+---------+---------------------------------------------------------+
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| GPIO 6 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 7 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 8 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 9 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 10 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 11 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 12 | |
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+---------+---------------------------------------------------------+
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| GPIO 13 | Secondary UART RX; DUT 1 GPIO 15, I/O expander B 6 |
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+---------+---------------------------------------------------------+
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| GPIO 14 | |
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+---------+---------------------------------------------------------+
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| GPIO 15 | Secondary UART TX; DUT 1 GPIO 13, I/O expander B 7 |
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+---------+---------------------------------------------------------+
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| GPIO 16 | |
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+---------+---------------------------------------------------------+
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| ADC 0 | Resistor divider with I/O expander |
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+---------+---------------------------------------------------------+
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ESP8266 Device 1 Connections
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############################
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+---------+---------------------------------------------------------+
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| ESP | |
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+---------+---------------------------------------------------------+
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| GPIO 0 | Used to enter programming mode; otherwise unused in |
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| | test environment. |
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+---------+---------------------------------------------------------+
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| GPIO 1 | Primary UART transmit; reserved for host communication |
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+---------+---------------------------------------------------------+
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| GPIO 2 | [Reserved for WS2812] |
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+---------+---------------------------------------------------------+
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| GPIO 3 | Primary UART recieve; reserved for host communication |
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+---------+---------------------------------------------------------+
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| GPIO 4 | |
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+---------+---------------------------------------------------------+
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| GPIO 5 | |
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+---------+---------------------------------------------------------+
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| GPIO 6 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 7 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 8 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 9 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 10 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 11 | [Reserved for on-chip flash] |
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+---------+---------------------------------------------------------+
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| GPIO 12 | HSPI MISO |
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+---------+---------------------------------------------------------+
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| GPIO 13 | Secondary UART RX; DUT 0 GPIO 15, I/O exp B 7 via 4K7 |
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| | Also used as HSPI MOSI for SPI tests |
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+---------+---------------------------------------------------------+
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| GPIO 14 | HSPI CLK |
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+---------+---------------------------------------------------------+
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| GPIO 15 | Secondary UART TX; DUT 0 GPIO 13, I/O exp B 6 via 4K7 |
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| | Also used as HSPI /CS for SPI tests |
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+---------+---------------------------------------------------------+
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| GPIO 16 | I/O expander B 5 via 4K7 resistor, for deep-sleep tests |
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+---------+---------------------------------------------------------+
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| ADC 0 | |
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+---------+---------------------------------------------------------+
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