phy-qcom-qmp-usbc.c 34 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Copyright (c) 2017, The Linux Foundation. All rights reserved.
  4. */
  5. #include <linux/clk.h>
  6. #include <linux/clk-provider.h>
  7. #include <linux/delay.h>
  8. #include <linux/err.h>
  9. #include <linux/io.h>
  10. #include <linux/iopoll.h>
  11. #include <linux/kernel.h>
  12. #include <linux/mfd/syscon.h>
  13. #include <linux/module.h>
  14. #include <linux/of.h>
  15. #include <linux/of_address.h>
  16. #include <linux/phy/phy.h>
  17. #include <linux/platform_device.h>
  18. #include <linux/regmap.h>
  19. #include <linux/regulator/consumer.h>
  20. #include <linux/reset.h>
  21. #include <linux/slab.h>
  22. #include <linux/usb/typec.h>
  23. #include <linux/usb/typec_mux.h>
  24. #include "phy-qcom-qmp-common.h"
  25. #include "phy-qcom-qmp.h"
  26. #include "phy-qcom-qmp-pcs-misc-v3.h"
  27. #define PHY_INIT_COMPLETE_TIMEOUT 10000
  28. /* set of registers with offsets different per-PHY */
  29. enum qphy_reg_layout {
  30. /* PCS registers */
  31. QPHY_SW_RESET,
  32. QPHY_START_CTRL,
  33. QPHY_PCS_STATUS,
  34. QPHY_PCS_AUTONOMOUS_MODE_CTRL,
  35. QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR,
  36. QPHY_PCS_POWER_DOWN_CONTROL,
  37. /* Keep last to ensure regs_layout arrays are properly initialized */
  38. QPHY_LAYOUT_SIZE
  39. };
  40. static const unsigned int qmp_v3_usb3phy_regs_layout[QPHY_LAYOUT_SIZE] = {
  41. [QPHY_SW_RESET] = QPHY_V3_PCS_SW_RESET,
  42. [QPHY_START_CTRL] = QPHY_V3_PCS_START_CONTROL,
  43. [QPHY_PCS_STATUS] = QPHY_V3_PCS_PCS_STATUS,
  44. [QPHY_PCS_AUTONOMOUS_MODE_CTRL] = QPHY_V3_PCS_AUTONOMOUS_MODE_CTRL,
  45. [QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR] = QPHY_V3_PCS_LFPS_RXTERM_IRQ_CLEAR,
  46. [QPHY_PCS_POWER_DOWN_CONTROL] = QPHY_V3_PCS_POWER_DOWN_CONTROL,
  47. };
  48. static const unsigned int qmp_v3_usb3phy_regs_layout_qcm2290[QPHY_LAYOUT_SIZE] = {
  49. [QPHY_SW_RESET] = QPHY_V3_PCS_SW_RESET,
  50. [QPHY_START_CTRL] = QPHY_V3_PCS_START_CONTROL,
  51. [QPHY_PCS_STATUS] = QPHY_V3_PCS_PCS_STATUS,
  52. [QPHY_PCS_AUTONOMOUS_MODE_CTRL] = QPHY_V3_PCS_AUTONOMOUS_MODE_CTRL,
  53. [QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR] = QPHY_V3_PCS_LFPS_RXTERM_IRQ_CLEAR,
  54. [QPHY_PCS_POWER_DOWN_CONTROL] = QPHY_V3_PCS_POWER_DOWN_CONTROL,
  55. };
  56. static const struct qmp_phy_init_tbl msm8998_usb3_serdes_tbl[] = {
  57. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CLK_SELECT, 0x30),
  58. QMP_PHY_INIT_CFG(QSERDES_V3_COM_BIAS_EN_CLKBUFLR_EN, 0x04),
  59. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SYSCLK_EN_SEL, 0x14),
  60. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SYS_CLK_CTRL, 0x06),
  61. QMP_PHY_INIT_CFG(QSERDES_V3_COM_RESETSM_CNTRL2, 0x08),
  62. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CMN_CONFIG, 0x06),
  63. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SVS_MODE_CLK_SEL, 0x01),
  64. QMP_PHY_INIT_CFG(QSERDES_V3_COM_HSCLK_SEL, 0x80),
  65. QMP_PHY_INIT_CFG(QSERDES_V3_COM_DEC_START_MODE0, 0x82),
  66. QMP_PHY_INIT_CFG(QSERDES_V3_COM_DIV_FRAC_START1_MODE0, 0xab),
  67. QMP_PHY_INIT_CFG(QSERDES_V3_COM_DIV_FRAC_START2_MODE0, 0xea),
  68. QMP_PHY_INIT_CFG(QSERDES_V3_COM_DIV_FRAC_START3_MODE0, 0x02),
  69. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CP_CTRL_MODE0, 0x06),
  70. QMP_PHY_INIT_CFG(QSERDES_V3_COM_PLL_RCTRL_MODE0, 0x16),
  71. QMP_PHY_INIT_CFG(QSERDES_V3_COM_PLL_CCTRL_MODE0, 0x36),
  72. QMP_PHY_INIT_CFG(QSERDES_V3_COM_INTEGLOOP_GAIN1_MODE0, 0x00),
  73. QMP_PHY_INIT_CFG(QSERDES_V3_COM_INTEGLOOP_GAIN0_MODE0, 0x3f),
  74. QMP_PHY_INIT_CFG(QSERDES_V3_COM_VCO_TUNE2_MODE0, 0x01),
  75. QMP_PHY_INIT_CFG(QSERDES_V3_COM_VCO_TUNE1_MODE0, 0xc9),
  76. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CORECLK_DIV_MODE0, 0x0a),
  77. QMP_PHY_INIT_CFG(QSERDES_V3_COM_LOCK_CMP3_MODE0, 0x00),
  78. QMP_PHY_INIT_CFG(QSERDES_V3_COM_LOCK_CMP2_MODE0, 0x34),
  79. QMP_PHY_INIT_CFG(QSERDES_V3_COM_LOCK_CMP1_MODE0, 0x15),
  80. QMP_PHY_INIT_CFG(QSERDES_V3_COM_LOCK_CMP_EN, 0x04),
  81. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CORE_CLK_EN, 0x00),
  82. QMP_PHY_INIT_CFG(QSERDES_V3_COM_LOCK_CMP_CFG, 0x00),
  83. QMP_PHY_INIT_CFG(QSERDES_V3_COM_VCO_TUNE_MAP, 0x00),
  84. QMP_PHY_INIT_CFG(QSERDES_V3_COM_BG_TIMER, 0x0a),
  85. QMP_PHY_INIT_CFG(QSERDES_V3_COM_PLL_IVCO, 0x07),
  86. QMP_PHY_INIT_CFG(QSERDES_V3_COM_INTEGLOOP_INITVAL, 0x80),
  87. QMP_PHY_INIT_CFG(QSERDES_V3_COM_CMN_MODE, 0x01),
  88. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_EN_CENTER, 0x01),
  89. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_PER1, 0x31),
  90. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_PER2, 0x01),
  91. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_ADJ_PER1, 0x00),
  92. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_ADJ_PER2, 0x00),
  93. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_STEP_SIZE1, 0x85),
  94. QMP_PHY_INIT_CFG(QSERDES_V3_COM_SSC_STEP_SIZE2, 0x07),
  95. };
  96. static const struct qmp_phy_init_tbl msm8998_usb3_tx_tbl[] = {
  97. QMP_PHY_INIT_CFG(QSERDES_V3_TX_HIGHZ_DRVR_EN, 0x10),
  98. QMP_PHY_INIT_CFG(QSERDES_V3_TX_RCV_DETECT_LVL_2, 0x12),
  99. QMP_PHY_INIT_CFG(QSERDES_V3_TX_LANE_MODE_1, 0x16),
  100. QMP_PHY_INIT_CFG(QSERDES_V3_TX_RES_CODE_LANE_OFFSET_TX, 0x00),
  101. };
  102. static const struct qmp_phy_init_tbl msm8998_usb3_rx_tbl[] = {
  103. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_FO_GAIN, 0x0b),
  104. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL2, 0x0f),
  105. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL3, 0x4e),
  106. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL4, 0x18),
  107. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQ_OFFSET_ADAPTOR_CNTRL1, 0x07),
  108. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_OFFSET_ADAPTOR_CNTRL2, 0x80),
  109. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_CNTRL, 0x43),
  110. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_DEGLITCH_CNTRL, 0x1c),
  111. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_SATURATION_AND_ENABLE, 0x75),
  112. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_LOW, 0x00),
  113. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_HIGH, 0x00),
  114. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_PI_CONTROLS, 0x80),
  115. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FO_GAIN, 0x0a),
  116. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_GAIN, 0x06),
  117. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_ENABLES, 0x00),
  118. QMP_PHY_INIT_CFG(QSERDES_V3_RX_VGA_CAL_CNTRL2, 0x03),
  119. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_MODE_00, 0x05),
  120. };
  121. static const struct qmp_phy_init_tbl msm8998_usb3_pcs_tbl[] = {
  122. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNTRL2, 0x83),
  123. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNT_VAL_L, 0x09),
  124. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNT_VAL_H_TOL, 0xa2),
  125. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_MAN_CODE, 0x40),
  126. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNTRL1, 0x02),
  127. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG1, 0xd1),
  128. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG2, 0x1f),
  129. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG3, 0x47),
  130. QMP_PHY_INIT_CFG(QPHY_V3_PCS_POWER_STATE_CONFIG2, 0x1b),
  131. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V0, 0x9f),
  132. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V1, 0x9f),
  133. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V2, 0xb7),
  134. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V3, 0x4e),
  135. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V4, 0x65),
  136. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_LS, 0x6b),
  137. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V0, 0x15),
  138. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V0, 0x0d),
  139. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V1, 0x15),
  140. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V1, 0x0d),
  141. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V2, 0x15),
  142. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V2, 0x0d),
  143. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V3, 0x15),
  144. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V3, 0x0d),
  145. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V4, 0x15),
  146. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V4, 0x0d),
  147. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_LS, 0x15),
  148. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_LS, 0x0d),
  149. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RATE_SLEW_CNTRL, 0x02),
  150. QMP_PHY_INIT_CFG(QPHY_V3_PCS_PWRUP_RESET_DLY_TIME_AUXCLK, 0x04),
  151. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TSYNC_RSYNC_TIME, 0x44),
  152. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_P1U2_L, 0xe7),
  153. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_P1U2_H, 0x03),
  154. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_U3_L, 0x40),
  155. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_U3_H, 0x00),
  156. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RX_SIGDET_LVL, 0x8a),
  157. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RXEQTRAINING_WAIT_TIME, 0x75),
  158. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LFPS_TX_ECSTART_EQTLOCK, 0x86),
  159. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RXEQTRAINING_RUN_TIME, 0x13),
  160. };
  161. static const struct qmp_phy_init_tbl qcm2290_usb3_serdes_tbl[] = {
  162. QMP_PHY_INIT_CFG(QSERDES_COM_SYSCLK_EN_SEL, 0x14),
  163. QMP_PHY_INIT_CFG(QSERDES_COM_BIAS_EN_CLKBUFLR_EN, 0x08),
  164. QMP_PHY_INIT_CFG(QSERDES_COM_CLK_SELECT, 0x30),
  165. QMP_PHY_INIT_CFG(QSERDES_COM_SYS_CLK_CTRL, 0x06),
  166. QMP_PHY_INIT_CFG(QSERDES_COM_RESETSM_CNTRL, 0x00),
  167. QMP_PHY_INIT_CFG(QSERDES_COM_RESETSM_CNTRL2, 0x08),
  168. QMP_PHY_INIT_CFG(QSERDES_COM_BG_TRIM, 0x0f),
  169. QMP_PHY_INIT_CFG(QSERDES_COM_SVS_MODE_CLK_SEL, 0x01),
  170. QMP_PHY_INIT_CFG(QSERDES_COM_HSCLK_SEL, 0x00),
  171. QMP_PHY_INIT_CFG(QSERDES_COM_DEC_START_MODE0, 0x82),
  172. QMP_PHY_INIT_CFG(QSERDES_COM_DIV_FRAC_START1_MODE0, 0x55),
  173. QMP_PHY_INIT_CFG(QSERDES_COM_DIV_FRAC_START2_MODE0, 0x55),
  174. QMP_PHY_INIT_CFG(QSERDES_COM_DIV_FRAC_START3_MODE0, 0x03),
  175. QMP_PHY_INIT_CFG(QSERDES_COM_CP_CTRL_MODE0, 0x0b),
  176. QMP_PHY_INIT_CFG(QSERDES_COM_PLL_RCTRL_MODE0, 0x16),
  177. QMP_PHY_INIT_CFG(QSERDES_COM_PLL_CCTRL_MODE0, 0x28),
  178. QMP_PHY_INIT_CFG(QSERDES_COM_INTEGLOOP_GAIN0_MODE0, 0x80),
  179. QMP_PHY_INIT_CFG(QSERDES_COM_INTEGLOOP_GAIN1_MODE0, 0x00),
  180. QMP_PHY_INIT_CFG(QSERDES_COM_CORECLK_DIV, 0x0a),
  181. QMP_PHY_INIT_CFG(QSERDES_COM_LOCK_CMP1_MODE0, 0x15),
  182. QMP_PHY_INIT_CFG(QSERDES_COM_LOCK_CMP2_MODE0, 0x34),
  183. QMP_PHY_INIT_CFG(QSERDES_COM_LOCK_CMP3_MODE0, 0x00),
  184. QMP_PHY_INIT_CFG(QSERDES_COM_LOCK_CMP_EN, 0x00),
  185. QMP_PHY_INIT_CFG(QSERDES_COM_CORE_CLK_EN, 0x00),
  186. QMP_PHY_INIT_CFG(QSERDES_COM_LOCK_CMP_CFG, 0x00),
  187. QMP_PHY_INIT_CFG(QSERDES_COM_VCO_TUNE_MAP, 0x00),
  188. QMP_PHY_INIT_CFG(QSERDES_COM_BG_TIMER, 0x0a),
  189. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_EN_CENTER, 0x01),
  190. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_PER1, 0x31),
  191. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_PER2, 0x01),
  192. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_ADJ_PER1, 0x00),
  193. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_ADJ_PER2, 0x00),
  194. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_STEP_SIZE1, 0xde),
  195. QMP_PHY_INIT_CFG(QSERDES_COM_SSC_STEP_SIZE2, 0x07),
  196. QMP_PHY_INIT_CFG(QSERDES_COM_PLL_IVCO, 0x0f),
  197. QMP_PHY_INIT_CFG(QSERDES_COM_CMN_CONFIG, 0x06),
  198. QMP_PHY_INIT_CFG(QSERDES_COM_INTEGLOOP_INITVAL, 0x80),
  199. QMP_PHY_INIT_CFG(QSERDES_COM_BIAS_EN_CTRL_BY_PSM, 0x01),
  200. };
  201. static const struct qmp_phy_init_tbl qcm2290_usb3_tx_tbl[] = {
  202. QMP_PHY_INIT_CFG(QSERDES_V3_TX_HIGHZ_DRVR_EN, 0x10),
  203. QMP_PHY_INIT_CFG(QSERDES_V3_TX_RCV_DETECT_LVL_2, 0x12),
  204. QMP_PHY_INIT_CFG(QSERDES_V3_TX_LANE_MODE_1, 0xc6),
  205. QMP_PHY_INIT_CFG(QSERDES_V3_TX_RES_CODE_LANE_OFFSET_TX, 0x00),
  206. QMP_PHY_INIT_CFG(QSERDES_V3_TX_RES_CODE_LANE_OFFSET_RX, 0x00),
  207. };
  208. static const struct qmp_phy_init_tbl qcm2290_usb3_rx_tbl[] = {
  209. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_FO_GAIN, 0x0b),
  210. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_PI_CONTROLS, 0x80),
  211. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_LOW, 0x00),
  212. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_HIGH, 0x00),
  213. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FO_GAIN, 0x0a),
  214. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_GAIN, 0x06),
  215. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_SATURATION_AND_ENABLE, 0x75),
  216. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL2, 0x02),
  217. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL3, 0x4e),
  218. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL4, 0x18),
  219. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQ_OFFSET_ADAPTOR_CNTRL1, 0x77),
  220. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_OFFSET_ADAPTOR_CNTRL2, 0x80),
  221. QMP_PHY_INIT_CFG(QSERDES_V3_RX_VGA_CAL_CNTRL2, 0x0a),
  222. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_CNTRL, 0x03),
  223. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_DEGLITCH_CNTRL, 0x16),
  224. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_ENABLES, 0x00),
  225. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_MODE_00, 0x00),
  226. };
  227. /* the only difference is QSERDES_V3_RX_UCDR_PI_CONTROLS */
  228. static const struct qmp_phy_init_tbl sdm660_usb3_rx_tbl[] = {
  229. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_FO_GAIN, 0x0b),
  230. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_PI_CONTROLS, 0x00),
  231. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_LOW, 0x00),
  232. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FASTLOCK_COUNT_HIGH, 0x00),
  233. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_FO_GAIN, 0x0a),
  234. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_GAIN, 0x06),
  235. QMP_PHY_INIT_CFG(QSERDES_V3_RX_UCDR_SO_SATURATION_AND_ENABLE, 0x75),
  236. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL2, 0x02),
  237. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL3, 0x4e),
  238. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQU_ADAPTOR_CNTRL4, 0x18),
  239. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_EQ_OFFSET_ADAPTOR_CNTRL1, 0x77),
  240. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_OFFSET_ADAPTOR_CNTRL2, 0x80),
  241. QMP_PHY_INIT_CFG(QSERDES_V3_RX_VGA_CAL_CNTRL2, 0x0a),
  242. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_CNTRL, 0x03),
  243. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_DEGLITCH_CNTRL, 0x16),
  244. QMP_PHY_INIT_CFG(QSERDES_V3_RX_SIGDET_ENABLES, 0x00),
  245. QMP_PHY_INIT_CFG(QSERDES_V3_RX_RX_MODE_00, 0x00),
  246. };
  247. static const struct qmp_phy_init_tbl qcm2290_usb3_pcs_tbl[] = {
  248. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXMGN_V0, 0x9f),
  249. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M6DB_V0, 0x17),
  250. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TXDEEMPH_M3P5DB_V0, 0x0f),
  251. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNTRL2, 0x83),
  252. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNTRL1, 0x02),
  253. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNT_VAL_L, 0x09),
  254. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_CNT_VAL_H_TOL, 0xa2),
  255. QMP_PHY_INIT_CFG(QPHY_V3_PCS_FLL_MAN_CODE, 0x85),
  256. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG1, 0xd1),
  257. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG2, 0x1f),
  258. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LOCK_DETECT_CONFIG3, 0x47),
  259. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RXEQTRAINING_WAIT_TIME, 0x75),
  260. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RXEQTRAINING_RUN_TIME, 0x13),
  261. QMP_PHY_INIT_CFG(QPHY_V3_PCS_LFPS_TX_ECSTART_EQTLOCK, 0x86),
  262. QMP_PHY_INIT_CFG(QPHY_V3_PCS_PWRUP_RESET_DLY_TIME_AUXCLK, 0x04),
  263. QMP_PHY_INIT_CFG(QPHY_V3_PCS_TSYNC_RSYNC_TIME, 0x44),
  264. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_P1U2_L, 0xe7),
  265. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_P1U2_H, 0x03),
  266. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_U3_L, 0x40),
  267. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RCVR_DTCT_DLY_U3_H, 0x00),
  268. QMP_PHY_INIT_CFG(QPHY_V3_PCS_RX_SIGDET_LVL, 0x88),
  269. };
  270. struct qmp_usbc_offsets {
  271. u16 serdes;
  272. u16 pcs;
  273. u16 pcs_misc;
  274. u16 tx;
  275. u16 rx;
  276. /* for PHYs with >= 2 lanes */
  277. u16 tx2;
  278. u16 rx2;
  279. };
  280. /* struct qmp_phy_cfg - per-PHY initialization config */
  281. struct qmp_phy_cfg {
  282. const struct qmp_usbc_offsets *offsets;
  283. /* Init sequence for PHY blocks - serdes, tx, rx, pcs */
  284. const struct qmp_phy_init_tbl *serdes_tbl;
  285. int serdes_tbl_num;
  286. const struct qmp_phy_init_tbl *tx_tbl;
  287. int tx_tbl_num;
  288. const struct qmp_phy_init_tbl *rx_tbl;
  289. int rx_tbl_num;
  290. const struct qmp_phy_init_tbl *pcs_tbl;
  291. int pcs_tbl_num;
  292. /* regulators to be requested */
  293. const char * const *vreg_list;
  294. int num_vregs;
  295. /* array of registers with different offsets */
  296. const unsigned int *regs;
  297. };
  298. struct qmp_usbc {
  299. struct device *dev;
  300. const struct qmp_phy_cfg *cfg;
  301. void __iomem *serdes;
  302. void __iomem *pcs;
  303. void __iomem *pcs_misc;
  304. void __iomem *tx;
  305. void __iomem *rx;
  306. void __iomem *tx2;
  307. void __iomem *rx2;
  308. struct regmap *tcsr_map;
  309. u32 vls_clamp_reg;
  310. struct clk *pipe_clk;
  311. struct clk_bulk_data *clks;
  312. int num_clks;
  313. int num_resets;
  314. struct reset_control_bulk_data *resets;
  315. struct regulator_bulk_data *vregs;
  316. struct mutex phy_mutex;
  317. enum phy_mode mode;
  318. unsigned int usb_init_count;
  319. struct phy *phy;
  320. struct clk_fixed_rate pipe_clk_fixed;
  321. struct typec_switch_dev *sw;
  322. enum typec_orientation orientation;
  323. };
  324. static inline void qphy_setbits(void __iomem *base, u32 offset, u32 val)
  325. {
  326. u32 reg;
  327. reg = readl(base + offset);
  328. reg |= val;
  329. writel(reg, base + offset);
  330. /* ensure that above write is through */
  331. readl(base + offset);
  332. }
  333. static inline void qphy_clrbits(void __iomem *base, u32 offset, u32 val)
  334. {
  335. u32 reg;
  336. reg = readl(base + offset);
  337. reg &= ~val;
  338. writel(reg, base + offset);
  339. /* ensure that above write is through */
  340. readl(base + offset);
  341. }
  342. /* list of clocks required by phy */
  343. static const char * const qmp_usbc_phy_clk_l[] = {
  344. "aux", "cfg_ahb", "ref", "com_aux",
  345. };
  346. /* list of resets */
  347. static const char * const usb3phy_legacy_reset_l[] = {
  348. "phy", "common",
  349. };
  350. static const char * const usb3phy_reset_l[] = {
  351. "phy_phy", "phy",
  352. };
  353. /* list of regulators */
  354. static const char * const qmp_phy_vreg_l[] = {
  355. "vdda-phy", "vdda-pll",
  356. };
  357. static const struct qmp_usbc_offsets qmp_usbc_offsets_v3_qcm2290 = {
  358. .serdes = 0x0,
  359. .pcs = 0xc00,
  360. .pcs_misc = 0xa00,
  361. .tx = 0x200,
  362. .rx = 0x400,
  363. .tx2 = 0x600,
  364. .rx2 = 0x800,
  365. };
  366. static const struct qmp_phy_cfg msm8998_usb3phy_cfg = {
  367. .offsets = &qmp_usbc_offsets_v3_qcm2290,
  368. .serdes_tbl = msm8998_usb3_serdes_tbl,
  369. .serdes_tbl_num = ARRAY_SIZE(msm8998_usb3_serdes_tbl),
  370. .tx_tbl = msm8998_usb3_tx_tbl,
  371. .tx_tbl_num = ARRAY_SIZE(msm8998_usb3_tx_tbl),
  372. .rx_tbl = msm8998_usb3_rx_tbl,
  373. .rx_tbl_num = ARRAY_SIZE(msm8998_usb3_rx_tbl),
  374. .pcs_tbl = msm8998_usb3_pcs_tbl,
  375. .pcs_tbl_num = ARRAY_SIZE(msm8998_usb3_pcs_tbl),
  376. .vreg_list = qmp_phy_vreg_l,
  377. .num_vregs = ARRAY_SIZE(qmp_phy_vreg_l),
  378. .regs = qmp_v3_usb3phy_regs_layout,
  379. };
  380. static const struct qmp_phy_cfg qcm2290_usb3phy_cfg = {
  381. .offsets = &qmp_usbc_offsets_v3_qcm2290,
  382. .serdes_tbl = qcm2290_usb3_serdes_tbl,
  383. .serdes_tbl_num = ARRAY_SIZE(qcm2290_usb3_serdes_tbl),
  384. .tx_tbl = qcm2290_usb3_tx_tbl,
  385. .tx_tbl_num = ARRAY_SIZE(qcm2290_usb3_tx_tbl),
  386. .rx_tbl = qcm2290_usb3_rx_tbl,
  387. .rx_tbl_num = ARRAY_SIZE(qcm2290_usb3_rx_tbl),
  388. .pcs_tbl = qcm2290_usb3_pcs_tbl,
  389. .pcs_tbl_num = ARRAY_SIZE(qcm2290_usb3_pcs_tbl),
  390. .vreg_list = qmp_phy_vreg_l,
  391. .num_vregs = ARRAY_SIZE(qmp_phy_vreg_l),
  392. .regs = qmp_v3_usb3phy_regs_layout_qcm2290,
  393. };
  394. static const struct qmp_phy_cfg sdm660_usb3phy_cfg = {
  395. .offsets = &qmp_usbc_offsets_v3_qcm2290,
  396. .serdes_tbl = qcm2290_usb3_serdes_tbl,
  397. .serdes_tbl_num = ARRAY_SIZE(qcm2290_usb3_serdes_tbl),
  398. .tx_tbl = qcm2290_usb3_tx_tbl,
  399. .tx_tbl_num = ARRAY_SIZE(qcm2290_usb3_tx_tbl),
  400. .rx_tbl = sdm660_usb3_rx_tbl,
  401. .rx_tbl_num = ARRAY_SIZE(sdm660_usb3_rx_tbl),
  402. .pcs_tbl = qcm2290_usb3_pcs_tbl,
  403. .pcs_tbl_num = ARRAY_SIZE(qcm2290_usb3_pcs_tbl),
  404. .vreg_list = qmp_phy_vreg_l,
  405. .num_vregs = ARRAY_SIZE(qmp_phy_vreg_l),
  406. .regs = qmp_v3_usb3phy_regs_layout_qcm2290,
  407. };
  408. static int qmp_usbc_init(struct phy *phy)
  409. {
  410. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  411. const struct qmp_phy_cfg *cfg = qmp->cfg;
  412. void __iomem *pcs = qmp->pcs;
  413. u32 val = 0;
  414. int ret;
  415. ret = regulator_bulk_enable(cfg->num_vregs, qmp->vregs);
  416. if (ret) {
  417. dev_err(qmp->dev, "failed to enable regulators, err=%d\n", ret);
  418. return ret;
  419. }
  420. ret = reset_control_bulk_assert(qmp->num_resets, qmp->resets);
  421. if (ret) {
  422. dev_err(qmp->dev, "reset assert failed\n");
  423. goto err_disable_regulators;
  424. }
  425. ret = reset_control_bulk_deassert(qmp->num_resets, qmp->resets);
  426. if (ret) {
  427. dev_err(qmp->dev, "reset deassert failed\n");
  428. goto err_disable_regulators;
  429. }
  430. ret = clk_bulk_prepare_enable(qmp->num_clks, qmp->clks);
  431. if (ret)
  432. goto err_assert_reset;
  433. qphy_setbits(pcs, cfg->regs[QPHY_PCS_POWER_DOWN_CONTROL], SW_PWRDN);
  434. #define SW_PORTSELECT_VAL BIT(0)
  435. #define SW_PORTSELECT_MUX BIT(1)
  436. /* Use software based port select and switch on typec orientation */
  437. val = SW_PORTSELECT_MUX;
  438. if (qmp->orientation == TYPEC_ORIENTATION_REVERSE)
  439. val |= SW_PORTSELECT_VAL;
  440. writel(val, qmp->pcs_misc);
  441. return 0;
  442. err_assert_reset:
  443. reset_control_bulk_assert(qmp->num_resets, qmp->resets);
  444. err_disable_regulators:
  445. regulator_bulk_disable(cfg->num_vregs, qmp->vregs);
  446. return ret;
  447. }
  448. static int qmp_usbc_exit(struct phy *phy)
  449. {
  450. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  451. const struct qmp_phy_cfg *cfg = qmp->cfg;
  452. reset_control_bulk_assert(qmp->num_resets, qmp->resets);
  453. clk_bulk_disable_unprepare(qmp->num_clks, qmp->clks);
  454. regulator_bulk_disable(cfg->num_vregs, qmp->vregs);
  455. return 0;
  456. }
  457. static int qmp_usbc_power_on(struct phy *phy)
  458. {
  459. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  460. const struct qmp_phy_cfg *cfg = qmp->cfg;
  461. void __iomem *status;
  462. unsigned int val;
  463. int ret;
  464. qmp_configure(qmp->dev, qmp->serdes, cfg->serdes_tbl,
  465. cfg->serdes_tbl_num);
  466. ret = clk_prepare_enable(qmp->pipe_clk);
  467. if (ret) {
  468. dev_err(qmp->dev, "pipe_clk enable failed err=%d\n", ret);
  469. return ret;
  470. }
  471. /* Tx, Rx, and PCS configurations */
  472. qmp_configure_lane(qmp->dev, qmp->tx, cfg->tx_tbl, cfg->tx_tbl_num, 1);
  473. qmp_configure_lane(qmp->dev, qmp->rx, cfg->rx_tbl, cfg->rx_tbl_num, 1);
  474. qmp_configure_lane(qmp->dev, qmp->tx2, cfg->tx_tbl, cfg->tx_tbl_num, 2);
  475. qmp_configure_lane(qmp->dev, qmp->rx2, cfg->rx_tbl, cfg->rx_tbl_num, 2);
  476. qmp_configure(qmp->dev, qmp->pcs, cfg->pcs_tbl, cfg->pcs_tbl_num);
  477. /* Pull PHY out of reset state */
  478. qphy_clrbits(qmp->pcs, cfg->regs[QPHY_SW_RESET], SW_RESET);
  479. /* start SerDes and Phy-Coding-Sublayer */
  480. qphy_setbits(qmp->pcs, cfg->regs[QPHY_START_CTRL], SERDES_START | PCS_START);
  481. status = qmp->pcs + cfg->regs[QPHY_PCS_STATUS];
  482. ret = readl_poll_timeout(status, val, !(val & PHYSTATUS), 200,
  483. PHY_INIT_COMPLETE_TIMEOUT);
  484. if (ret) {
  485. dev_err(qmp->dev, "phy initialization timed-out\n");
  486. goto err_disable_pipe_clk;
  487. }
  488. return 0;
  489. err_disable_pipe_clk:
  490. clk_disable_unprepare(qmp->pipe_clk);
  491. return ret;
  492. }
  493. static int qmp_usbc_power_off(struct phy *phy)
  494. {
  495. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  496. const struct qmp_phy_cfg *cfg = qmp->cfg;
  497. clk_disable_unprepare(qmp->pipe_clk);
  498. /* PHY reset */
  499. qphy_setbits(qmp->pcs, cfg->regs[QPHY_SW_RESET], SW_RESET);
  500. /* stop SerDes and Phy-Coding-Sublayer */
  501. qphy_clrbits(qmp->pcs, cfg->regs[QPHY_START_CTRL],
  502. SERDES_START | PCS_START);
  503. /* Put PHY into POWER DOWN state: active low */
  504. qphy_clrbits(qmp->pcs, cfg->regs[QPHY_PCS_POWER_DOWN_CONTROL],
  505. SW_PWRDN);
  506. return 0;
  507. }
  508. static int qmp_usbc_enable(struct phy *phy)
  509. {
  510. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  511. int ret;
  512. mutex_lock(&qmp->phy_mutex);
  513. ret = qmp_usbc_init(phy);
  514. if (ret)
  515. goto out_unlock;
  516. ret = qmp_usbc_power_on(phy);
  517. if (ret) {
  518. qmp_usbc_exit(phy);
  519. goto out_unlock;
  520. }
  521. qmp->usb_init_count++;
  522. out_unlock:
  523. mutex_unlock(&qmp->phy_mutex);
  524. return ret;
  525. }
  526. static int qmp_usbc_disable(struct phy *phy)
  527. {
  528. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  529. int ret;
  530. qmp->usb_init_count--;
  531. ret = qmp_usbc_power_off(phy);
  532. if (ret)
  533. return ret;
  534. return qmp_usbc_exit(phy);
  535. }
  536. static int qmp_usbc_set_mode(struct phy *phy, enum phy_mode mode, int submode)
  537. {
  538. struct qmp_usbc *qmp = phy_get_drvdata(phy);
  539. qmp->mode = mode;
  540. return 0;
  541. }
  542. static const struct phy_ops qmp_usbc_phy_ops = {
  543. .init = qmp_usbc_enable,
  544. .exit = qmp_usbc_disable,
  545. .set_mode = qmp_usbc_set_mode,
  546. .owner = THIS_MODULE,
  547. };
  548. static void qmp_usbc_enable_autonomous_mode(struct qmp_usbc *qmp)
  549. {
  550. const struct qmp_phy_cfg *cfg = qmp->cfg;
  551. void __iomem *pcs = qmp->pcs;
  552. u32 intr_mask;
  553. if (qmp->mode == PHY_MODE_USB_HOST_SS ||
  554. qmp->mode == PHY_MODE_USB_DEVICE_SS)
  555. intr_mask = ARCVR_DTCT_EN | ALFPS_DTCT_EN;
  556. else
  557. intr_mask = ARCVR_DTCT_EN | ARCVR_DTCT_EVENT_SEL;
  558. /* Clear any pending interrupts status */
  559. qphy_setbits(pcs, cfg->regs[QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR], IRQ_CLEAR);
  560. /* Writing 1 followed by 0 clears the interrupt */
  561. qphy_clrbits(pcs, cfg->regs[QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR], IRQ_CLEAR);
  562. qphy_clrbits(pcs, cfg->regs[QPHY_PCS_AUTONOMOUS_MODE_CTRL],
  563. ARCVR_DTCT_EN | ALFPS_DTCT_EN | ARCVR_DTCT_EVENT_SEL);
  564. /* Enable required PHY autonomous mode interrupts */
  565. qphy_setbits(pcs, cfg->regs[QPHY_PCS_AUTONOMOUS_MODE_CTRL], intr_mask);
  566. /* Enable i/o clamp_n for autonomous mode */
  567. if (qmp->tcsr_map && qmp->vls_clamp_reg)
  568. regmap_write(qmp->tcsr_map, qmp->vls_clamp_reg, 1);
  569. }
  570. static void qmp_usbc_disable_autonomous_mode(struct qmp_usbc *qmp)
  571. {
  572. const struct qmp_phy_cfg *cfg = qmp->cfg;
  573. void __iomem *pcs = qmp->pcs;
  574. /* Disable i/o clamp_n on resume for normal mode */
  575. if (qmp->tcsr_map && qmp->vls_clamp_reg)
  576. regmap_write(qmp->tcsr_map, qmp->vls_clamp_reg, 0);
  577. qphy_clrbits(pcs, cfg->regs[QPHY_PCS_AUTONOMOUS_MODE_CTRL],
  578. ARCVR_DTCT_EN | ARCVR_DTCT_EVENT_SEL | ALFPS_DTCT_EN);
  579. qphy_setbits(pcs, cfg->regs[QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR], IRQ_CLEAR);
  580. /* Writing 1 followed by 0 clears the interrupt */
  581. qphy_clrbits(pcs, cfg->regs[QPHY_PCS_LFPS_RXTERM_IRQ_CLEAR], IRQ_CLEAR);
  582. }
  583. static int __maybe_unused qmp_usbc_runtime_suspend(struct device *dev)
  584. {
  585. struct qmp_usbc *qmp = dev_get_drvdata(dev);
  586. dev_vdbg(dev, "Suspending QMP phy, mode:%d\n", qmp->mode);
  587. if (!qmp->phy->init_count) {
  588. dev_vdbg(dev, "PHY not initialized, bailing out\n");
  589. return 0;
  590. }
  591. qmp_usbc_enable_autonomous_mode(qmp);
  592. clk_disable_unprepare(qmp->pipe_clk);
  593. clk_bulk_disable_unprepare(qmp->num_clks, qmp->clks);
  594. return 0;
  595. }
  596. static int __maybe_unused qmp_usbc_runtime_resume(struct device *dev)
  597. {
  598. struct qmp_usbc *qmp = dev_get_drvdata(dev);
  599. int ret = 0;
  600. dev_vdbg(dev, "Resuming QMP phy, mode:%d\n", qmp->mode);
  601. if (!qmp->phy->init_count) {
  602. dev_vdbg(dev, "PHY not initialized, bailing out\n");
  603. return 0;
  604. }
  605. ret = clk_bulk_prepare_enable(qmp->num_clks, qmp->clks);
  606. if (ret)
  607. return ret;
  608. ret = clk_prepare_enable(qmp->pipe_clk);
  609. if (ret) {
  610. dev_err(dev, "pipe_clk enable failed, err=%d\n", ret);
  611. clk_bulk_disable_unprepare(qmp->num_clks, qmp->clks);
  612. return ret;
  613. }
  614. qmp_usbc_disable_autonomous_mode(qmp);
  615. return 0;
  616. }
  617. static const struct dev_pm_ops qmp_usbc_pm_ops = {
  618. SET_RUNTIME_PM_OPS(qmp_usbc_runtime_suspend,
  619. qmp_usbc_runtime_resume, NULL)
  620. };
  621. static int qmp_usbc_vreg_init(struct qmp_usbc *qmp)
  622. {
  623. const struct qmp_phy_cfg *cfg = qmp->cfg;
  624. struct device *dev = qmp->dev;
  625. int num = cfg->num_vregs;
  626. int i;
  627. qmp->vregs = devm_kcalloc(dev, num, sizeof(*qmp->vregs), GFP_KERNEL);
  628. if (!qmp->vregs)
  629. return -ENOMEM;
  630. for (i = 0; i < num; i++)
  631. qmp->vregs[i].supply = cfg->vreg_list[i];
  632. return devm_regulator_bulk_get(dev, num, qmp->vregs);
  633. }
  634. static int qmp_usbc_reset_init(struct qmp_usbc *qmp,
  635. const char *const *reset_list,
  636. int num_resets)
  637. {
  638. struct device *dev = qmp->dev;
  639. int i;
  640. int ret;
  641. qmp->resets = devm_kcalloc(dev, num_resets,
  642. sizeof(*qmp->resets), GFP_KERNEL);
  643. if (!qmp->resets)
  644. return -ENOMEM;
  645. for (i = 0; i < num_resets; i++)
  646. qmp->resets[i].id = reset_list[i];
  647. qmp->num_resets = num_resets;
  648. ret = devm_reset_control_bulk_get_exclusive(dev, num_resets, qmp->resets);
  649. if (ret)
  650. return dev_err_probe(dev, ret, "failed to get resets\n");
  651. return 0;
  652. }
  653. static int qmp_usbc_clk_init(struct qmp_usbc *qmp)
  654. {
  655. struct device *dev = qmp->dev;
  656. int num = ARRAY_SIZE(qmp_usbc_phy_clk_l);
  657. int i;
  658. qmp->clks = devm_kcalloc(dev, num, sizeof(*qmp->clks), GFP_KERNEL);
  659. if (!qmp->clks)
  660. return -ENOMEM;
  661. for (i = 0; i < num; i++)
  662. qmp->clks[i].id = qmp_usbc_phy_clk_l[i];
  663. qmp->num_clks = num;
  664. return devm_clk_bulk_get_optional(dev, num, qmp->clks);
  665. }
  666. static void phy_clk_release_provider(void *res)
  667. {
  668. of_clk_del_provider(res);
  669. }
  670. /*
  671. * Register a fixed rate pipe clock.
  672. *
  673. * The <s>_pipe_clksrc generated by PHY goes to the GCC that gate
  674. * controls it. The <s>_pipe_clk coming out of the GCC is requested
  675. * by the PHY driver for its operations.
  676. * We register the <s>_pipe_clksrc here. The gcc driver takes care
  677. * of assigning this <s>_pipe_clksrc as parent to <s>_pipe_clk.
  678. * Below picture shows this relationship.
  679. *
  680. * +---------------+
  681. * | PHY block |<<---------------------------------------+
  682. * | | |
  683. * | +-------+ | +-----+ |
  684. * I/P---^-->| PLL |---^--->pipe_clksrc--->| GCC |--->pipe_clk---+
  685. * clk | +-------+ | +-----+
  686. * +---------------+
  687. */
  688. static int phy_pipe_clk_register(struct qmp_usbc *qmp, struct device_node *np)
  689. {
  690. struct clk_fixed_rate *fixed = &qmp->pipe_clk_fixed;
  691. struct clk_init_data init = { };
  692. int ret;
  693. ret = of_property_read_string(np, "clock-output-names", &init.name);
  694. if (ret) {
  695. dev_err(qmp->dev, "%pOFn: No clock-output-names\n", np);
  696. return ret;
  697. }
  698. init.ops = &clk_fixed_rate_ops;
  699. /* controllers using QMP phys use 125MHz pipe clock interface */
  700. fixed->fixed_rate = 125000000;
  701. fixed->hw.init = &init;
  702. ret = devm_clk_hw_register(qmp->dev, &fixed->hw);
  703. if (ret)
  704. return ret;
  705. ret = of_clk_add_hw_provider(np, of_clk_hw_simple_get, &fixed->hw);
  706. if (ret)
  707. return ret;
  708. /*
  709. * Roll a devm action because the clock provider is the child node, but
  710. * the child node is not actually a device.
  711. */
  712. return devm_add_action_or_reset(qmp->dev, phy_clk_release_provider, np);
  713. }
  714. #if IS_ENABLED(CONFIG_TYPEC)
  715. static int qmp_usbc_typec_switch_set(struct typec_switch_dev *sw,
  716. enum typec_orientation orientation)
  717. {
  718. struct qmp_usbc *qmp = typec_switch_get_drvdata(sw);
  719. if (orientation == qmp->orientation || orientation == TYPEC_ORIENTATION_NONE)
  720. return 0;
  721. mutex_lock(&qmp->phy_mutex);
  722. qmp->orientation = orientation;
  723. if (qmp->usb_init_count) {
  724. qmp_usbc_power_off(qmp->phy);
  725. qmp_usbc_exit(qmp->phy);
  726. qmp_usbc_init(qmp->phy);
  727. qmp_usbc_power_on(qmp->phy);
  728. }
  729. mutex_unlock(&qmp->phy_mutex);
  730. return 0;
  731. }
  732. static void qmp_usbc_typec_unregister(void *data)
  733. {
  734. struct qmp_usbc *qmp = data;
  735. typec_switch_unregister(qmp->sw);
  736. }
  737. static int qmp_usbc_typec_switch_register(struct qmp_usbc *qmp)
  738. {
  739. struct typec_switch_desc sw_desc = {};
  740. struct device *dev = qmp->dev;
  741. sw_desc.drvdata = qmp;
  742. sw_desc.fwnode = dev->fwnode;
  743. sw_desc.set = qmp_usbc_typec_switch_set;
  744. qmp->sw = typec_switch_register(dev, &sw_desc);
  745. if (IS_ERR(qmp->sw)) {
  746. dev_err(dev, "Unable to register typec switch: %pe\n", qmp->sw);
  747. return PTR_ERR(qmp->sw);
  748. }
  749. return devm_add_action_or_reset(dev, qmp_usbc_typec_unregister, qmp);
  750. }
  751. #else
  752. static int qmp_usbc_typec_switch_register(struct qmp_usbc *qmp)
  753. {
  754. return 0;
  755. }
  756. #endif
  757. static int qmp_usbc_parse_dt_legacy(struct qmp_usbc *qmp, struct device_node *np)
  758. {
  759. struct platform_device *pdev = to_platform_device(qmp->dev);
  760. struct device *dev = qmp->dev;
  761. int ret;
  762. qmp->serdes = devm_platform_ioremap_resource(pdev, 0);
  763. if (IS_ERR(qmp->serdes))
  764. return PTR_ERR(qmp->serdes);
  765. /*
  766. * Get memory resources for the PHY:
  767. * Resources are indexed as: tx -> 0; rx -> 1; pcs -> 2.
  768. * For dual lane PHYs: tx2 -> 3, rx2 -> 4, pcs_misc (optional) -> 5
  769. * For single lane PHYs: pcs_misc (optional) -> 3.
  770. */
  771. qmp->tx = devm_of_iomap(dev, np, 0, NULL);
  772. if (IS_ERR(qmp->tx))
  773. return PTR_ERR(qmp->tx);
  774. qmp->rx = devm_of_iomap(dev, np, 1, NULL);
  775. if (IS_ERR(qmp->rx))
  776. return PTR_ERR(qmp->rx);
  777. qmp->pcs = devm_of_iomap(dev, np, 2, NULL);
  778. if (IS_ERR(qmp->pcs))
  779. return PTR_ERR(qmp->pcs);
  780. qmp->tx2 = devm_of_iomap(dev, np, 3, NULL);
  781. if (IS_ERR(qmp->tx2))
  782. return PTR_ERR(qmp->tx2);
  783. qmp->rx2 = devm_of_iomap(dev, np, 4, NULL);
  784. if (IS_ERR(qmp->rx2))
  785. return PTR_ERR(qmp->rx2);
  786. qmp->pcs_misc = devm_of_iomap(dev, np, 5, NULL);
  787. if (IS_ERR(qmp->pcs_misc)) {
  788. dev_vdbg(dev, "PHY pcs_misc-reg not used\n");
  789. qmp->pcs_misc = NULL;
  790. }
  791. qmp->pipe_clk = devm_get_clk_from_child(dev, np, NULL);
  792. if (IS_ERR(qmp->pipe_clk)) {
  793. return dev_err_probe(dev, PTR_ERR(qmp->pipe_clk),
  794. "failed to get pipe clock\n");
  795. }
  796. ret = devm_clk_bulk_get_all(qmp->dev, &qmp->clks);
  797. if (ret < 0)
  798. return ret;
  799. qmp->num_clks = ret;
  800. ret = qmp_usbc_reset_init(qmp, usb3phy_legacy_reset_l,
  801. ARRAY_SIZE(usb3phy_legacy_reset_l));
  802. if (ret)
  803. return ret;
  804. return 0;
  805. }
  806. static int qmp_usbc_parse_dt(struct qmp_usbc *qmp)
  807. {
  808. struct platform_device *pdev = to_platform_device(qmp->dev);
  809. const struct qmp_phy_cfg *cfg = qmp->cfg;
  810. const struct qmp_usbc_offsets *offs = cfg->offsets;
  811. struct device *dev = qmp->dev;
  812. void __iomem *base;
  813. int ret;
  814. if (!offs)
  815. return -EINVAL;
  816. base = devm_platform_ioremap_resource(pdev, 0);
  817. if (IS_ERR(base))
  818. return PTR_ERR(base);
  819. qmp->serdes = base + offs->serdes;
  820. qmp->pcs = base + offs->pcs;
  821. if (offs->pcs_misc)
  822. qmp->pcs_misc = base + offs->pcs_misc;
  823. qmp->tx = base + offs->tx;
  824. qmp->rx = base + offs->rx;
  825. qmp->tx2 = base + offs->tx2;
  826. qmp->rx2 = base + offs->rx2;
  827. ret = qmp_usbc_clk_init(qmp);
  828. if (ret)
  829. return ret;
  830. qmp->pipe_clk = devm_clk_get(dev, "pipe");
  831. if (IS_ERR(qmp->pipe_clk)) {
  832. return dev_err_probe(dev, PTR_ERR(qmp->pipe_clk),
  833. "failed to get pipe clock\n");
  834. }
  835. ret = qmp_usbc_reset_init(qmp, usb3phy_reset_l,
  836. ARRAY_SIZE(usb3phy_reset_l));
  837. if (ret)
  838. return ret;
  839. return 0;
  840. }
  841. static int qmp_usbc_parse_vls_clamp(struct qmp_usbc *qmp)
  842. {
  843. struct of_phandle_args tcsr_args;
  844. struct device *dev = qmp->dev;
  845. int ret;
  846. /* for backwards compatibility ignore if there is no property */
  847. ret = of_parse_phandle_with_fixed_args(dev->of_node, "qcom,tcsr-reg", 1, 0,
  848. &tcsr_args);
  849. if (ret == -ENOENT)
  850. return 0;
  851. else if (ret < 0)
  852. return dev_err_probe(dev, ret, "Failed to parse qcom,tcsr-reg\n");
  853. qmp->tcsr_map = syscon_node_to_regmap(tcsr_args.np);
  854. of_node_put(tcsr_args.np);
  855. if (IS_ERR(qmp->tcsr_map))
  856. return PTR_ERR(qmp->tcsr_map);
  857. qmp->vls_clamp_reg = tcsr_args.args[0];
  858. return 0;
  859. }
  860. static int qmp_usbc_probe(struct platform_device *pdev)
  861. {
  862. struct device *dev = &pdev->dev;
  863. struct phy_provider *phy_provider;
  864. struct device_node *np;
  865. struct qmp_usbc *qmp;
  866. int ret;
  867. qmp = devm_kzalloc(dev, sizeof(*qmp), GFP_KERNEL);
  868. if (!qmp)
  869. return -ENOMEM;
  870. qmp->dev = dev;
  871. dev_set_drvdata(dev, qmp);
  872. qmp->orientation = TYPEC_ORIENTATION_NORMAL;
  873. qmp->cfg = of_device_get_match_data(dev);
  874. if (!qmp->cfg)
  875. return -EINVAL;
  876. mutex_init(&qmp->phy_mutex);
  877. ret = qmp_usbc_vreg_init(qmp);
  878. if (ret)
  879. return ret;
  880. ret = qmp_usbc_typec_switch_register(qmp);
  881. if (ret)
  882. return ret;
  883. ret = qmp_usbc_parse_vls_clamp(qmp);
  884. if (ret)
  885. return ret;
  886. /* Check for legacy binding with child node. */
  887. np = of_get_child_by_name(dev->of_node, "phy");
  888. if (np) {
  889. ret = qmp_usbc_parse_dt_legacy(qmp, np);
  890. } else {
  891. np = of_node_get(dev->of_node);
  892. ret = qmp_usbc_parse_dt(qmp);
  893. }
  894. if (ret)
  895. goto err_node_put;
  896. pm_runtime_set_active(dev);
  897. ret = devm_pm_runtime_enable(dev);
  898. if (ret)
  899. goto err_node_put;
  900. /*
  901. * Prevent runtime pm from being ON by default. Users can enable
  902. * it using power/control in sysfs.
  903. */
  904. pm_runtime_forbid(dev);
  905. ret = phy_pipe_clk_register(qmp, np);
  906. if (ret)
  907. goto err_node_put;
  908. qmp->phy = devm_phy_create(dev, np, &qmp_usbc_phy_ops);
  909. if (IS_ERR(qmp->phy)) {
  910. ret = PTR_ERR(qmp->phy);
  911. dev_err(dev, "failed to create PHY: %d\n", ret);
  912. goto err_node_put;
  913. }
  914. phy_set_drvdata(qmp->phy, qmp);
  915. of_node_put(np);
  916. phy_provider = devm_of_phy_provider_register(dev, of_phy_simple_xlate);
  917. return PTR_ERR_OR_ZERO(phy_provider);
  918. err_node_put:
  919. of_node_put(np);
  920. return ret;
  921. }
  922. static const struct of_device_id qmp_usbc_of_match_table[] = {
  923. {
  924. .compatible = "qcom,msm8998-qmp-usb3-phy",
  925. .data = &msm8998_usb3phy_cfg,
  926. }, {
  927. .compatible = "qcom,qcm2290-qmp-usb3-phy",
  928. .data = &qcm2290_usb3phy_cfg,
  929. }, {
  930. .compatible = "qcom,sdm660-qmp-usb3-phy",
  931. .data = &sdm660_usb3phy_cfg,
  932. }, {
  933. .compatible = "qcom,sm6115-qmp-usb3-phy",
  934. .data = &qcm2290_usb3phy_cfg,
  935. },
  936. { },
  937. };
  938. MODULE_DEVICE_TABLE(of, qmp_usbc_of_match_table);
  939. static struct platform_driver qmp_usbc_driver = {
  940. .probe = qmp_usbc_probe,
  941. .driver = {
  942. .name = "qcom-qmp-usbc-phy",
  943. .pm = &qmp_usbc_pm_ops,
  944. .of_match_table = qmp_usbc_of_match_table,
  945. },
  946. };
  947. module_platform_driver(qmp_usbc_driver);
  948. MODULE_AUTHOR("Vivek Gautam <vivek.gautam@codeaurora.org>");
  949. MODULE_DESCRIPTION("Qualcomm QMP USB-C PHY driver");
  950. MODULE_LICENSE("GPL");