moved Debouncer_Not to Keybrd lib
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c026df8aa4
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@ -104,7 +104,7 @@ const uint8_t KEY_R0_COUNT = sizeof(ptrsKeys_R0)/sizeof(*ptrsKeys_R0);
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Row_ShiftRegisters row_R0(8, ptrsKeys_R0, KEY_R0_COUNT);
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*/
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//prints 0 1 2 3 4 5 6 7 8, microseconds_per_scan=87
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//prints 0 1 2 3 4 5 6 7 8, microseconds_per_scan=87 with SAMPLE_COUNT 4
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Key* ptrsKeys_R0[] = { &s_0, &s_z, &s_z, &s_z, &s_1, &s_z, &s_z, &s_z,
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&s_2, &s_z, &s_z, &s_z, &s_3, &s_z, &s_z, &s_z,
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&s_4, &s_z, &s_z, &s_z, &s_5, &s_z, &s_z, &s_z,
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@ -163,5 +163,5 @@ void loop()
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//delay(100);
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//Keyboard.println("");
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debug.print_microseconds_per_scan();
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//debug.print_microseconds_per_scan();
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}
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15
src/Debouncer_Not.cpp
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15
src/Debouncer_Not.cpp
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@ -0,0 +1,15 @@
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#include "Debouncer_Not.h"
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/* debounce() sets debounced and returns debouncedChanged. All variables are bitwise.
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For parameters, 1 means pressed, 0 means released.
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For return, 1 means debounced changed.
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*/
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read_pins_t Debouncer_Not::debounce(const read_pins_t rawSignal, read_pins_t& debounced)
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{
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read_pins_t previousDebounced; //bitwise, 1 means pressed, 0 means released
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previousDebounced = debounced;
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debounced = rawSignal;
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return debounced xor previousDebounced;
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}
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21
src/Debouncer_Not.h
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21
src/Debouncer_Not.h
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@ -0,0 +1,21 @@
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#ifndef DEBOUNCER_NOT_H
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#define DEBOUNCER_NOT_H
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#include <Arduino.h>
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#include <inttypes.h>
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#include <config_keybrd.h>
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#include <DebouncerInterface.h>
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/* Debouncer_Not does not debounce.
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debounce() returns raw signal, no debouncing is performed.
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A keyboard does not need a debouncing if one of the following is true:
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* keypad has hardware debouncers
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* poling I2C makes scan rate slower than debounce time
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* optic switches are used (because they don't bounce)
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*/
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class Debouncer_Not : public DebouncerInterface
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{
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public:
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virtual read_pins_t debounce(const read_pins_t rawSignal, read_pins_t& debounced);
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};
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#endif
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@ -35,7 +35,6 @@ read_pins_t RowScanner_SPIShiftRegisters::scan(read_pins_mask_t& rowEnd)
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digitalWrite(STROBE_PIN, LOW);
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rowEnd = ROW_END;
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//rowEnd = 1 << 8;
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//clear unpowered pins (for testing bb) todo
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rowState &= 0b01010001000100010001000100010001; //also 31st key
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@ -21,6 +21,12 @@ The shift registers are active high:
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10k pull-down resistors are grounded
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connect controller's MISO pin to shift register's QH pin
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The shift register needs 5 wires.
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In addition, each row needs to be connected to a strobe pin from controller.
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The two parts of a split keyboard can be connected by one of:
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* eSATA cable (has 7 wires, good for 2 rows)
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* Ethernet cable (has 8 wires, good for 3 rows)
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*/
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class RowScanner_SPIShiftRegisters : public RowScannerInterface
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{
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@ -4,7 +4,7 @@
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#include <RowBase.h>
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#include <RowScanner_SPIShiftRegisters.h>
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#include <Debouncer_4Samples.h>
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//todo #include <Debouncer_Not.h>
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//#include <Debouncer_Not.h>
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/* Row_DH_IOE is a row connected to an Input/Output Expander.
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@ -29,7 +29,7 @@ class Row_ShiftRegisters : public RowBase
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private:
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RowScanner_SPIShiftRegisters scanner;
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Debouncer_4Samples debouncer;
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//Debouncer_Not debouncer; //todo test
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//Debouncer_Not debouncer; //tested
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public:
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Row_ShiftRegisters(const uint8_t STROBE_PIN, Key *const ptrsKeys[], uint8_t KEY_COUNT)
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: RowBase(ptrsKeys), scanner(STROBE_PIN, KEY_COUNT) { }
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