pmw33xx_common.c 5.8 KB

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  1. // Copyright 2022 Pablo Martinez (@elpekenin)
  2. // Copyright 2022 Daniel Kao (dkao)
  3. // Copyright 2022 Stefan Kerkmann (KarlK90)
  4. // Copyright 2022 Ulrich Spörlein (@uqs)
  5. // Copyright 2021 Alabastard (@Alabastard-64)
  6. // Copyright 2020 Christopher Courtney, aka Drashna Jael're (@drashna) <drashna@live.com>
  7. // Copyright 2019 Sunjun Kim
  8. // Copyright 2020 Ploopy Corporation
  9. // SPDX-License-Identifier: GPL-2.0-or-later
  10. #include "pointing_device_internal.h"
  11. #include "pmw33xx_common.h"
  12. #include "string.h"
  13. #include "wait.h"
  14. #include "spi_master.h"
  15. #include "progmem.h"
  16. extern const uint8_t pmw33xx_firmware_data[PMW33XX_FIRMWARE_LENGTH] PROGMEM;
  17. extern const uint8_t pmw33xx_firmware_signature[3] PROGMEM;
  18. static const pin_t cs_pins_left[] = PMW33XX_CS_PINS;
  19. static const pin_t cs_pins_right[] = PMW33XX_CS_PINS_RIGHT;
  20. static bool in_burst_left[ARRAY_SIZE(cs_pins_left)] = {0};
  21. static bool in_burst_right[ARRAY_SIZE(cs_pins_right)] = {0};
  22. bool __attribute__((cold)) pmw33xx_upload_firmware(uint8_t sensor);
  23. bool __attribute__((cold)) pmw33xx_check_signature(uint8_t sensor);
  24. void pmw33xx_set_cpi_all_sensors(uint16_t cpi) {
  25. for (uint8_t sensor = 0; sensor < pmw33xx_number_of_sensors; sensor++) {
  26. pmw33xx_set_cpi(sensor, cpi);
  27. }
  28. }
  29. bool pmw33xx_spi_start(uint8_t sensor) {
  30. if (!spi_start(cs_pins[sensor], false, 3, PMW33XX_SPI_DIVISOR)) {
  31. spi_stop();
  32. return false;
  33. }
  34. // tNCS-SCLK, 10ns
  35. wait_us(1);
  36. return true;
  37. }
  38. bool pmw33xx_write(uint8_t sensor, uint8_t reg_addr, uint8_t data) {
  39. if (!pmw33xx_spi_start(sensor)) {
  40. return false;
  41. }
  42. if (reg_addr != REG_Motion_Burst) {
  43. in_burst[sensor] = false;
  44. }
  45. // send address of the register, with MSBit = 1 to indicate it's a write
  46. uint8_t command[2] = {reg_addr | 0x80, data};
  47. if (spi_transmit(command, sizeof(command)) != SPI_STATUS_SUCCESS) {
  48. return false;
  49. }
  50. // tSCLK-NCS for write operation is 35us
  51. wait_us(35);
  52. spi_stop();
  53. // tSWW/tSWR (=18us) minus tSCLK-NCS. Could be shortened, but it looks like
  54. // a safe lower bound
  55. wait_us(145);
  56. return true;
  57. }
  58. uint8_t pmw33xx_read(uint8_t sensor, uint8_t reg_addr) {
  59. if (!pmw33xx_spi_start(sensor)) {
  60. return 0;
  61. }
  62. // send adress of the register, with MSBit = 0 to indicate it's a read
  63. spi_write(reg_addr & 0x7f);
  64. // tSRAD (=160us)
  65. wait_us(160);
  66. uint8_t data = spi_read();
  67. // tSCLK-NCS, 120ns
  68. wait_us(1);
  69. spi_stop();
  70. // tSRW/tSRR (=20us) mins tSCLK-NCS
  71. wait_us(19);
  72. return data;
  73. }
  74. bool pmw33xx_check_signature(uint8_t sensor) {
  75. uint8_t signature_dump[3] = {
  76. pmw33xx_read(sensor, REG_Product_ID),
  77. pmw33xx_read(sensor, REG_Inverse_Product_ID),
  78. pmw33xx_read(sensor, REG_SROM_ID),
  79. };
  80. return memcmp(pmw33xx_firmware_signature, signature_dump, sizeof(signature_dump)) == 0;
  81. }
  82. bool pmw33xx_upload_firmware(uint8_t sensor) {
  83. // Datasheet claims we need to disable REST mode first, but during startup
  84. // it's already disabled and we're not turning it on ...
  85. // pmw33xx_write(REG_Config2, 0x00); // disable REST mode
  86. if (!pmw33xx_write(sensor, REG_SROM_Enable, 0x1d)) {
  87. return false;
  88. }
  89. wait_ms(10);
  90. pmw33xx_write(sensor, REG_SROM_Enable, 0x18);
  91. if (!pmw33xx_spi_start(sensor)) {
  92. return false;
  93. }
  94. spi_write(REG_SROM_Load_Burst | 0x80);
  95. wait_us(15);
  96. for (size_t i = 0; i < PMW33XX_FIRMWARE_LENGTH; i++) {
  97. spi_write(pgm_read_byte(pmw33xx_firmware_data + i));
  98. wait_us(15);
  99. }
  100. wait_us(200);
  101. pmw33xx_read(sensor, REG_SROM_ID);
  102. pmw33xx_write(sensor, REG_Config2, 0x00);
  103. return true;
  104. }
  105. bool pmw33xx_init(uint8_t sensor) {
  106. if (sensor >= pmw33xx_number_of_sensors) {
  107. return false;
  108. }
  109. spi_init();
  110. // power up, need to first drive NCS high then low. the datasheet does not
  111. // say for how long, 40us works well in practice.
  112. if (!pmw33xx_spi_start(sensor)) {
  113. return false;
  114. }
  115. wait_us(40);
  116. spi_stop();
  117. wait_us(40);
  118. if (!pmw33xx_write(sensor, REG_Power_Up_Reset, 0x5a)) {
  119. return false;
  120. }
  121. wait_ms(50);
  122. // read registers and discard
  123. pmw33xx_read(sensor, REG_Motion);
  124. pmw33xx_read(sensor, REG_Delta_X_L);
  125. pmw33xx_read(sensor, REG_Delta_X_H);
  126. pmw33xx_read(sensor, REG_Delta_Y_L);
  127. pmw33xx_read(sensor, REG_Delta_Y_H);
  128. if (!pmw33xx_upload_firmware(sensor)) {
  129. pd_dprintf("PMW33XX (%d): firmware upload failed!\n", sensor);
  130. return false;
  131. }
  132. spi_stop();
  133. wait_ms(10);
  134. pmw33xx_set_cpi(sensor, PMW33XX_CPI);
  135. wait_ms(1);
  136. pmw33xx_write(sensor, REG_Config2, 0x00);
  137. pmw33xx_write(sensor, REG_Angle_Tune, CONSTRAIN(ROTATIONAL_TRANSFORM_ANGLE, -127, 127));
  138. pmw33xx_write(sensor, REG_Lift_Config, PMW33XX_LIFTOFF_DISTANCE);
  139. if (!pmw33xx_check_signature(sensor)) {
  140. pd_dprintf("PMW33XX (%d): firmware signature verification failed!\n", sensor);
  141. return false;
  142. }
  143. return true;
  144. }
  145. pmw33xx_report_t pmw33xx_read_burst(uint8_t sensor) {
  146. pmw33xx_report_t report = {0};
  147. if (sensor >= pmw33xx_number_of_sensors) {
  148. return report;
  149. }
  150. if (!in_burst[sensor]) {
  151. pd_dprintf("PMW33XX (%d): burst\n", sensor);
  152. if (!pmw33xx_write(sensor, REG_Motion_Burst, 0x00)) {
  153. return report;
  154. }
  155. in_burst[sensor] = true;
  156. }
  157. if (!pmw33xx_spi_start(sensor)) {
  158. return report;
  159. }
  160. spi_write(REG_Motion_Burst);
  161. wait_us(35); // waits for tSRAD_MOTBR
  162. spi_receive((uint8_t*)&report, sizeof(report));
  163. // panic recovery, sometimes burst mode works weird.
  164. if (report.motion.w & 0b111) {
  165. in_burst[sensor] = false;
  166. }
  167. spi_stop();
  168. pd_dprintf("PMW33XX (%d): motion: 0x%x dx: %i dy: %i\n", sensor, report.motion.w, report.delta_x, report.delta_y);
  169. report.delta_x *= -1;
  170. report.delta_y *= -1;
  171. return report;
  172. }