1 /* Copyright (C) 2011,2014-2015 by Jacob Alexander
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24 // ----- Includes -----
31 // ----- Scan Mode Setting (See matrix_scan.h for more details) -----
32 #define scanMode scanDual
36 // ----- Key Settings -----
38 // -- Example for scanCol --
40 #define KEYBOARD_KEYS 16 // # of keys
41 #define MAX_ROW_SIZE 16 // # of keys in the largest row
42 #define MAX_COL_SIZE 1 // # of keys in the largest column
46 // -- Example for scanRow --
48 #define KEYBOARD_KEYS 16 // # of keys
49 #define MAX_ROW_SIZE 1 // # of keys in the largest row
50 #define MAX_COL_SIZE 16 // # of keys in the largest column
54 // -- Example for scanRow_powrCol, scanCol_powrRow, and scanDual --
56 #define KEYBOARD_KEYS 69 // # of keys
57 #define MAX_ROW_SIZE 8 // # of keys in the largest row
58 #define MAX_COL_SIZE 9 // # of keys in the largest column
63 // ----- Matrix Configuration -----
64 static const uint8_t matrix_pinout[][MAX_ROW_SIZE + 1] = {
68 // Just layout the matrix by rows and columns
69 // Usually you'll want to set the scanMode above to scanDual or scanCol_powrRow/scanRow_powrCol
70 // The mode allows for optimization in the kind of scanning algorithms that are done
72 // The key numbers are used to translate into the keymap table (array) (and always start from 1, not 0).
73 // Thus if a row doesn't use all the key positions, you can denote it as 0, which will be ignored/skipped on each scan
74 // See the keymap.h file for the various preconfigured arrays.
76 // Scan Mode | Col 1 | Col 2 | Col 3 | Col 4 | Col 5 | ...
77 // -------------------------------------------------------
78 // Row 1 | Key 1 Key 7 Key32 ...
79 // Row 2 | Key 3 Key92 ...
86 // -- scanCol Example --
88 { scanMode, pinF0, pinF4, pinB7, pinD3, pinF5, pinF1, pinD1, pinD2, pinF6, pinF7, pinB2, pinD0, pinB0, pinB6, pinB1, pinB3 },
89 { pinNULL, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16 },
93 // -- scanRow Example --
95 { scanMode, pinNULL },
115 // -- scanRow_powrCol Example and scanCol_powrRow Example --
116 // The example is the same, as the difference is whether the row or col is powered, and the other is used to detect the signal
118 { scanMode, pinF0, pinF4, pinB7, pinD3, pinF5, pinF1, pinD1, pinD2 },
119 { pinF6, 1, 2, 3, 4, 5, 6, 7, 8 },
120 { pinF7, 9, 10, 11, 12, 13, 14, 15, 16 },
121 { pinB2, 17, 20, 30, 40, 50, 60, 59, 38 },
122 { pinD0, 18, 21, 31, 41, 51, 61, 67, 39 },
123 { pinB0, 19, 22, 32, 42, 52, 62, 68, 47 },
124 { pinB6, 27, 23, 33, 43, 53, 63, 69, 48 },
125 { pinB1, 28, 24, 34, 44, 54, 64, 0, 49 }, // 0 signifies no key at that location
126 { pinB3, 29, 25, 35, 45, 55, 65, 0, 57 },
127 { pinA0, 37, 26, 36, 46, 56, 66, 0, 58 },
131 // -- scanDual Example --
132 // The example is the same as the previous one, but uses both columns and rows to power and detect, needed for non-NKRO matrices.
134 { scanMode, pinF0, pinF4, pinB7, pinD3, pinF5, pinF1, pinD1, pinD2 },
135 { pinF6, 1, 2, 3, 4, 5, 6, 7, 8 },
136 { pinF7, 9, 10, 11, 12, 13, 14, 15, 16 },
137 { pinB2, 17, 20, 30, 40, 50, 60, 59, 38 },
138 { pinD0, 18, 21, 31, 41, 51, 61, 67, 39 },
139 { pinB0, 19, 22, 32, 42, 52, 62, 68, 47 },
140 { pinB6, 27, 23, 33, 43, 53, 63, 69, 48 },
141 { pinB1, 28, 24, 34, 44, 54, 64, 0, 49 }, // 0 signifies no key at that location
142 { pinB3, 29, 25, 35, 45, 55, 65, 0, 57 },
143 { pinA0, 37, 26, 36, 46, 56, 66, 0, 58 },