adc.h 5.3 KB

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  1. #ifndef _ADC_H__
  2. #define _ADC_H__
  3. #include "bsp/bsp.h"
  4. #include "os/os_types.h"
  5. float adc_vref_compesion(void);
  6. float adc_5vref_compesion(void);
  7. /*
  8. inserted ADC 由timer0 ch3触发,
  9. 注意:adc所有外部触发都是下降沿触发
  10. */
  11. #define ISQ0_OFFSET 0
  12. #define ISQ1_OFFSET 5
  13. #define ISQ2_OFFSET 10
  14. #define ISQ3_OFFSET 15
  15. #define IL_OFFSET 20
  16. #define ADC_INSERT_SAMPLE_TIME ADC_SAMPLETIME_13POINT5
  17. #ifdef CONFIG_SENSORLESS_TOW_SAMPLES
  18. #define ADC_TRIGGER_PHASE ADC0_1_EXTTRIG_INSERTED_T0_TRGO
  19. #else
  20. #define ADC_TRIGGER_PHASE ADC0_1_EXTTRIG_INSERTED_T0_CH3
  21. #endif
  22. #define ADC_TRIGGER_PHASE2 ADC0_1_EXTTRIG_INSERTED_T1_CH0
  23. #define ADC_TRIGGER_NONE ADC0_1_2_EXTTRIG_INSERTED_NONE
  24. #define ADC_TRIGGER_VBUS ADC0_1_EXTTRIG_INSERTED_T1_CH0
  25. #define ADC_RANK_CHANNEL(c) ((c)<<ISQ3_OFFSET | (0)<<IL_OFFSET)
  26. #define ADC_INS_RANK_4_CHANS(c1,c2,c3,c4) (((c1)<<ISQ0_OFFSET) | ((c2)<<ISQ1_OFFSET) | ((c3)<<ISQ2_OFFSET) | ((c4)<<ISQ3_OFFSET) | ((3)<<IL_OFFSET))
  27. #define INJ_CHAN_NUM 1
  28. #ifndef HIGH_SIDE_CURRENT_SENSOR
  29. static u32 adc0_rank_channels[3] = {
  30. ADC_RANK_CHANNEL(U_PHASE_I_CHAN),//0, A, AB
  31. ADC_RANK_CHANNEL(U_PHASE_I_CHAN),//1, A, AC
  32. ADC_RANK_CHANNEL(V_PHASE_I_CHAN),//2, B, BC
  33. };
  34. static u32 adc1_rank_channels[3] = {
  35. ADC_RANK_CHANNEL(V_PHASE_I_CHAN),//0, B
  36. ADC_RANK_CHANNEL(W_PHASE_I_CHAN),//1, C
  37. ADC_RANK_CHANNEL(W_PHASE_I_CHAN),//2, C
  38. };
  39. static u32 volatile * adc_phase_reg1[3] = {
  40. &ADC_IDATA0(ADC0),//0, A
  41. &ADC_IDATA0(ADC0),//1, A
  42. &ADC_IDATA0(ADC0),//2, B
  43. };
  44. static u32 volatile * adc_phase_reg2[3] = {
  45. &ADC_IDATA0(ADC1),//0, B
  46. &ADC_IDATA0(ADC1),//1, C
  47. &ADC_IDATA0(ADC1),//2, C
  48. };
  49. #endif
  50. #define v_calc(sum, v, min, max) \
  51. do { \
  52. if (v > max) { \
  53. max = v; \
  54. } \
  55. if (v < min) { \
  56. min = v; \
  57. }\
  58. sum += v; \
  59. }while(0);
  60. static void __inline adc_phase_current_read(u8 phases, s32 *pv1, s32 *pv2) {
  61. #ifdef HIGH_SIDE_CURRENT_SENSOR
  62. #if (INJ_CHAN_NUM==4)
  63. u16 min, max;
  64. u16 sum = 0;
  65. u16 v1 = ADC_IDATA0(ADC0);
  66. u16 v2 = ADC_IDATA1(ADC1);
  67. u16 v3 = ADC_IDATA2(ADC0);
  68. u16 v4 = ADC_IDATA3(ADC1);
  69. min = max = v1;
  70. sum += v1;
  71. v_calc(sum, v2, min, max);
  72. v_calc(sum, v3, min, max);
  73. v_calc(sum, v4, min, max);
  74. *pv1 = (s32) ((sum-min-max)/2.0f * adc_5vref_compesion());
  75. sum = 0;
  76. v1 = ADC_IDATA0(ADC1);
  77. v2 = ADC_IDATA1(ADC0);
  78. v3 = ADC_IDATA2(ADC1);
  79. v4 = ADC_IDATA3(ADC0);
  80. min = max = v1;
  81. sum += v1;
  82. v_calc(sum, v2, min, max);
  83. v_calc(sum, v3, min, max);
  84. v_calc(sum, v4, min, max);
  85. *pv2 = (s32) ((sum-min-max)/2.0f * adc_5vref_compesion());
  86. #else
  87. *pv1 = (s32)((float)ADC_IDATA0(ADC0) * adc_5vref_compesion());
  88. *pv2 = (s32)((float)ADC_IDATA0(ADC1) * adc_5vref_compesion());
  89. #endif
  90. #else
  91. *pv1 = (s32)(*adc_phase_reg1[phases]) ;
  92. *pv2 = (s32)(*adc_phase_reg2[phases]) ;
  93. #endif
  94. }
  95. static void __inline adc_current_sample_config(u8 phases) {
  96. #ifdef HIGH_SIDE_CURRENT_SENSOR
  97. #if (INJ_CHAN_NUM==4)
  98. //ADC_ISQ(ADC0) = ADC_INS_RANK_4_CHANS(V_PHASE_I_CHAN, W_PHASE_I_CHAN, V_PHASE_I_CHAN, W_PHASE_I_CHAN);
  99. //ADC_ISQ(ADC1) = ADC_INS_RANK_4_CHANS(W_PHASE_I_CHAN, V_PHASE_I_CHAN, W_PHASE_I_CHAN, V_PHASE_I_CHAN);
  100. #else
  101. ADC_ISQ(ADC0) = ADC_RANK_CHANNEL(V_PHASE_I_CHAN);
  102. ADC_ISQ(ADC1) = ADC_RANK_CHANNEL(W_PHASE_I_CHAN);
  103. #endif
  104. #else
  105. ADC_ISQ(ADC0) = adc0_rank_channels[phases];
  106. ADC_ISQ(ADC1) = adc1_rank_channels[phases];
  107. #endif
  108. }
  109. static void __inline adc_disable_ext_trigger(void) {
  110. ADC_CTL1(ADC0) &= ~ADC_CTL1_ETEIC;
  111. }
  112. static void __inline adc_enable_ext_trigger(void) {
  113. ADC_CTL1(ADC0) |= ADC_CTL1_ETEIC;
  114. }
  115. /* insert len fixed to 2(IL=1), ISQ2 >> ISQ3*/
  116. static __inline__ void adc_update_insert_sample_rank(u32 adc, u8 channel) {
  117. ADC_ISQ(adc) = ADC_RANK_CHANNEL(channel);
  118. }
  119. static __inline__ void adc_update_insert_sample_time(u32 adc, uint8_t adc_channel , uint32_t sample_time)
  120. {
  121. uint32_t sampt;
  122. /* ADC sampling time config */
  123. if(adc_channel < 10U){
  124. sampt = ADC_SAMPT1(adc);
  125. sampt &= ~((u32)(ADC_SAMPTX_SPTN << (3U*adc_channel)));
  126. sampt |= (u32) sample_time << (3U*adc_channel);
  127. ADC_SAMPT1(adc) = sampt;
  128. }else if(adc_channel < 18U){
  129. sampt = ADC_SAMPT0(adc);
  130. sampt &= ~((u32)(ADC_SAMPTX_SPTN << (3U*(adc_channel-10U))));
  131. sampt |= ((u32)sample_time << (3U*(adc_channel-10U)));
  132. ADC_SAMPT0(adc) = sampt;
  133. }
  134. }
  135. static __inline__ bool adc_eoic_interrupt(void)
  136. {
  137. if (ADC_STAT(ADC0) & ADC_STAT_EOIC){
  138. return true;
  139. }
  140. return false;
  141. }
  142. static __inline__ void adc_clear_irq_flags(void) {
  143. ADC_STAT(ADC0) &= ~((u32) ADC_INT_FLAG_EOIC);
  144. ADC_STAT(ADC1) &= ~((u32) ADC_INT_FLAG_EOIC);
  145. }
  146. static __inline void adc_update_ext_trigger(u32 trigger) {
  147. adc_external_trigger_source_config(ADC0, ADC_INSERTED_CHANNEL, trigger);
  148. }
  149. void adc_init(bool mot_ind);
  150. s32 adc_sample_regular_channel(int chan, int times);
  151. void adc_start_convert(void);
  152. void adc_stop_convert(void);
  153. u16 adc_get_vbus(void);
  154. u16 adc_get_acc(void);
  155. u16 adc_get_throttle(void);
  156. void adc_get_uvw_phaseV(u16 *uvw);
  157. u16 adc_get_mos_temp(void);
  158. u16 adc_get_motor_temp(void);
  159. u16 adc_get_ibus(void);
  160. u16 adc_get_vref(void);
  161. void adc_set_vref_calc(float v);
  162. void adc_vref_filter(void);
  163. u16 adc_get_5v_ref(void);
  164. void adc_set_5vref_calc(float v);
  165. u16 adc_get_throttle2(void);
  166. u16 adc_get_thro_5v(void);
  167. u16 adc_get_thro2_5v(void);
  168. #endif /* _ADC_H__ */