Keyboard firmwares for Atmel AVR and Cortex-M
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matrix.c 3.1KB

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  1. /*
  2. * scan matrix
  3. */
  4. #include <avr/io.h>
  5. #include <util/delay.h>
  6. #include "keymap.h"
  7. #include "matrix.h"
  8. #include "print.h"
  9. // matrix is active low. (key on: 0/key off: 1)
  10. //
  11. // HHKB has no ghost and no bounce.
  12. // row: HC4051 select input channel(0-8)
  13. // PB0, PB1, PB2(A, B, C)
  14. // col: LS145 select low output line(0-8)
  15. // PB3, PB4, PB5, PB6(A, B, C, D)
  16. // use D as ENABLE: (enable: 0/unenable: 1)
  17. // key: KEY: (on: 0/ off:1)
  18. // UNKNOWN: unknown whether input or output
  19. // PE6,PE7(KEY, UNKNOWN)
  20. #define COL_ENABLE (1<<6)
  21. #define KEY_SELELCT(ROW, COL) (PORTB = COL_ENABLE|(((COL)&0x07)<<3)|((ROW)&0x07))
  22. #define KEY_ENABLE (PORTB &= ~COL_ENABLE)
  23. #define KEY_UNABLE (PORTB |= COL_ENABLE)
  24. #define KEY_ON ((PINE&(1<<6)) ? false : true)
  25. // matrix state buffer
  26. uint8_t *matrix;
  27. uint8_t *matrix_prev;
  28. static uint8_t _matrix0[MATRIX_ROWS];
  29. static uint8_t _matrix1[MATRIX_ROWS];
  30. static bool matrix_has_ghost_in_row(int row);
  31. static int bit_pop(uint8_t bits);
  32. inline
  33. int matrix_rows(void) {
  34. return MATRIX_ROWS;
  35. }
  36. inline
  37. int matrix_cols(void) {
  38. return MATRIX_COLS;
  39. }
  40. // this must be called once before matrix_scan.
  41. void matrix_init(void)
  42. {
  43. // row & col output(PB0-6)
  44. DDRB = 0xFF;
  45. PORTB = KEY_SELELCT(0, 0);
  46. // KEY & VALID input with pullup(PE6,7)
  47. DDRE = 0x3F;
  48. PORTE = 0xC0;
  49. // initialize matrix state: all keys off
  50. for (int i=0; i < MATRIX_ROWS; i++) _matrix0[i] = 0xFF;
  51. for (int i=0; i < MATRIX_ROWS; i++) _matrix1[i] = 0xFF;
  52. matrix = _matrix0;
  53. matrix_prev = _matrix1;
  54. }
  55. int matrix_scan(void)
  56. {
  57. uint8_t *tmp;
  58. tmp = matrix_prev;
  59. matrix_prev = matrix;
  60. matrix = tmp;
  61. for (int row = 0; row < MATRIX_ROWS; row++) {
  62. for (int col = 0; col < MATRIX_COLS; col++) {
  63. KEY_SELELCT(row, col);
  64. _delay_us(50); // from logic analyzer chart
  65. KEY_ENABLE;
  66. _delay_us(10); // from logic analyzer chart
  67. if (KEY_ON) {
  68. matrix[row] &= ~(1<<col);
  69. } else {
  70. matrix[row] |= (1<<col);
  71. }
  72. KEY_UNABLE;
  73. _delay_us(150); // from logic analyzer chart
  74. }
  75. }
  76. return 1;
  77. }
  78. bool matrix_is_modified(void) {
  79. for (int i = 0; i < MATRIX_ROWS; i++) {
  80. if (matrix[i] != matrix_prev[i])
  81. return true;
  82. }
  83. return false;
  84. }
  85. inline
  86. bool matrix_has_ghost(void) {
  87. return false;
  88. }
  89. inline
  90. uint16_t matrix_get_row(int row) {
  91. return matrix[row];
  92. }
  93. void matrix_print(void) {
  94. print("\nr/c 01234567\n");
  95. for (int row = 0; row < matrix_rows(); row++) {
  96. phex(row); print(": ");
  97. pbin_reverse(matrix_get_row(row));
  98. if (matrix_has_ghost_in_row(row)) {
  99. print(" <ghost");
  100. }
  101. print("\n");
  102. }
  103. }
  104. int matrix_key_count(void) {
  105. int count = 0;
  106. for (int i = 0; i < MATRIX_ROWS; i++) {
  107. count += bit_pop(~matrix[i]);
  108. }
  109. return count;
  110. }
  111. inline
  112. static bool matrix_has_ghost_in_row(int row) {
  113. return false;
  114. }
  115. static int bit_pop(uint8_t bits) {
  116. int c;
  117. for (c = 0; bits; c++)
  118. bits &= bits -1;
  119. return c;
  120. }