ws2812.c 5.7 KB

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  1. /*
  2. * light weight WS2812 lib V2.0b
  3. *
  4. * Controls WS2811/WS2812/WS2812B RGB-LEDs
  5. * Author: Tim (cpldcpu@gmail.com)
  6. *
  7. * Jan 18th, 2014 v2.0b Initial Version
  8. * Nov 29th, 2015 v2.3 Added SK6812RGBW support
  9. *
  10. * This program is free software: you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation, either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. * GNU General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  22. */
  23. #include "ws2812.h"
  24. #include <avr/interrupt.h>
  25. #include <avr/io.h>
  26. #include <util/delay.h>
  27. /*
  28. * Forward declare internal functions
  29. *
  30. * The functions take a byte-array and send to the data output as WS2812 bitstream.
  31. * The length is the number of bytes to send - three per LED.
  32. */
  33. void ws2812_sendarray(uint8_t *array, uint16_t length);
  34. void ws2812_sendarray_mask(uint8_t *array, uint16_t length, uint8_t pinmask);
  35. // Setleds for standard RGB
  36. void inline ws2812_setleds(LED_TYPE *ledarray, uint16_t leds) {
  37. // ws2812_setleds_pin(ledarray,leds, _BV(ws2812_pin));
  38. ws2812_setleds_pin(ledarray, leds, _BV(RGB_DI_PIN & 0xF));
  39. }
  40. void inline ws2812_setleds_pin(LED_TYPE *ledarray, uint16_t leds, uint8_t pinmask) {
  41. // new universal format (DDR)
  42. _SFR_IO8((RGB_DI_PIN >> 4) + 1) |= pinmask;
  43. ws2812_sendarray_mask((uint8_t *)ledarray, leds * sizeof(LED_TYPE), pinmask);
  44. #ifdef RGBW
  45. _delay_us(80);
  46. #else
  47. _delay_us(50);
  48. #endif
  49. }
  50. void ws2812_sendarray(uint8_t *data, uint16_t datlen) { ws2812_sendarray_mask(data, datlen, _BV(RGB_DI_PIN & 0xF)); }
  51. /*
  52. This routine writes an array of bytes with RGB values to the Dataout pin
  53. using the fast 800kHz clockless WS2811/2812 protocol.
  54. */
  55. // Timing in ns
  56. #define w_zeropulse 350
  57. #define w_onepulse 900
  58. #define w_totalperiod 1250
  59. // Fixed cycles used by the inner loop
  60. #define w_fixedlow 2
  61. #define w_fixedhigh 4
  62. #define w_fixedtotal 8
  63. // Insert NOPs to match the timing, if possible
  64. #define w_zerocycles (((F_CPU / 1000) * w_zeropulse) / 1000000)
  65. #define w_onecycles (((F_CPU / 1000) * w_onepulse + 500000) / 1000000)
  66. #define w_totalcycles (((F_CPU / 1000) * w_totalperiod + 500000) / 1000000)
  67. // w1 - nops between rising edge and falling edge - low
  68. #define w1 (w_zerocycles - w_fixedlow)
  69. // w2 nops between fe low and fe high
  70. #define w2 (w_onecycles - w_fixedhigh - w1)
  71. // w3 nops to complete loop
  72. #define w3 (w_totalcycles - w_fixedtotal - w1 - w2)
  73. #if w1 > 0
  74. # define w1_nops w1
  75. #else
  76. # define w1_nops 0
  77. #endif
  78. // The only critical timing parameter is the minimum pulse length of the "0"
  79. // Warn or throw error if this timing can not be met with current F_CPU settings.
  80. #define w_lowtime ((w1_nops + w_fixedlow) * 1000000) / (F_CPU / 1000)
  81. #if w_lowtime > 550
  82. # error "Light_ws2812: Sorry, the clock speed is too low. Did you set F_CPU correctly?"
  83. #elif w_lowtime > 450
  84. # warning "Light_ws2812: The timing is critical and may only work on WS2812B, not on WS2812(S)."
  85. # warning "Please consider a higher clockspeed, if possible"
  86. #endif
  87. #if w2 > 0
  88. # define w2_nops w2
  89. #else
  90. # define w2_nops 0
  91. #endif
  92. #if w3 > 0
  93. # define w3_nops w3
  94. #else
  95. # define w3_nops 0
  96. #endif
  97. #define w_nop1 "nop \n\t"
  98. #define w_nop2 "rjmp .+0 \n\t"
  99. #define w_nop4 w_nop2 w_nop2
  100. #define w_nop8 w_nop4 w_nop4
  101. #define w_nop16 w_nop8 w_nop8
  102. void inline ws2812_sendarray_mask(uint8_t *data, uint16_t datlen, uint8_t maskhi) {
  103. uint8_t curbyte, ctr, masklo;
  104. uint8_t sreg_prev;
  105. // masklo =~maskhi&ws2812_PORTREG;
  106. // maskhi |= ws2812_PORTREG;
  107. masklo = ~maskhi & _SFR_IO8((RGB_DI_PIN >> 4) + 2);
  108. maskhi |= _SFR_IO8((RGB_DI_PIN >> 4) + 2);
  109. sreg_prev = SREG;
  110. cli();
  111. while (datlen--) {
  112. curbyte = (*data++);
  113. asm volatile(" ldi %0,8 \n\t"
  114. "loop%=: \n\t"
  115. " out %2,%3 \n\t" // '1' [01] '0' [01] - re
  116. #if (w1_nops & 1)
  117. w_nop1
  118. #endif
  119. #if (w1_nops & 2)
  120. w_nop2
  121. #endif
  122. #if (w1_nops & 4)
  123. w_nop4
  124. #endif
  125. #if (w1_nops & 8)
  126. w_nop8
  127. #endif
  128. #if (w1_nops & 16)
  129. w_nop16
  130. #endif
  131. " sbrs %1,7 \n\t" // '1' [03] '0' [02]
  132. " out %2,%4 \n\t" // '1' [--] '0' [03] - fe-low
  133. " lsl %1 \n\t" // '1' [04] '0' [04]
  134. #if (w2_nops & 1)
  135. w_nop1
  136. #endif
  137. #if (w2_nops & 2)
  138. w_nop2
  139. #endif
  140. #if (w2_nops & 4)
  141. w_nop4
  142. #endif
  143. #if (w2_nops & 8)
  144. w_nop8
  145. #endif
  146. #if (w2_nops & 16)
  147. w_nop16
  148. #endif
  149. " out %2,%4 \n\t" // '1' [+1] '0' [+1] - fe-high
  150. #if (w3_nops & 1)
  151. w_nop1
  152. #endif
  153. #if (w3_nops & 2)
  154. w_nop2
  155. #endif
  156. #if (w3_nops & 4)
  157. w_nop4
  158. #endif
  159. #if (w3_nops & 8)
  160. w_nop8
  161. #endif
  162. #if (w3_nops & 16)
  163. w_nop16
  164. #endif
  165. " dec %0 \n\t" // '1' [+2] '0' [+2]
  166. " brne loop%=\n\t" // '1' [+3] '0' [+4]
  167. : "=&d"(ctr)
  168. : "r"(curbyte), "I"(_SFR_IO_ADDR(_SFR_IO8((RGB_DI_PIN >> 4) + 2))), "r"(maskhi), "r"(masklo));
  169. }
  170. SREG = sreg_prev;
  171. }