blob: 3b904d307535095abd4609043320601d2323953a [file] [log] [blame]
Konstantin Porotchkinede192d2018-10-08 16:48:52 +03001/*
2 * Copyright (C) 2018 Marvell International Ltd.
3 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 * https://spdx.org/licenses
6 */
7
Konstantin Porotchkinede192d2018-10-08 16:48:52 +03008#include <errno.h>
Antonio Nino Diaze0f90632018-12-14 00:18:21 +00009
10#include <common/debug.h>
11#include <drivers/delay_timer.h>
12#include <lib/mmio.h>
13#include <lib/spinlock.h>
14
Konstantin Porotchkinede192d2018-10-08 16:48:52 +030015#include <mvebu.h>
16#include <mvebu_def.h>
Pali Rohár52c1de52021-05-14 15:52:11 +020017#include <plat_marvell.h>
Antonio Nino Diaze0f90632018-12-14 00:18:21 +000018
Konstantin Porotchkinede192d2018-10-08 16:48:52 +030019#include "phy-comphy-3700.h"
20#include "phy-comphy-common.h"
21
22/*
23 * COMPHY_INDIRECT_REG points to ahci address space but the ahci region used in
24 * Linux is up to 0x178 so none will access it from Linux in runtime
25 * concurrently.
26 */
27#define COMPHY_INDIRECT_REG (MVEBU_REGS_BASE + 0xE0178)
28
29/* The USB3_GBE1_PHY range is above USB3 registers used in dts */
30#define USB3_GBE1_PHY (MVEBU_REGS_BASE + 0x5C000)
31#define COMPHY_SD_ADDR (MVEBU_REGS_BASE + 0x1F000)
32
Konstantin Porotchkinede192d2018-10-08 16:48:52 +030033struct sgmii_phy_init_data_fix {
34 uint16_t addr;
35 uint16_t value;
36};
37
38/* Changes to 40M1G25 mode data required for running 40M3G125 init mode */
39static struct sgmii_phy_init_data_fix sgmii_phy_init_fix[] = {
40 {0x005, 0x07CC}, {0x015, 0x0000}, {0x01B, 0x0000}, {0x01D, 0x0000},
41 {0x01E, 0x0000}, {0x01F, 0x0000}, {0x020, 0x0000}, {0x021, 0x0030},
42 {0x026, 0x0888}, {0x04D, 0x0152}, {0x04F, 0xA020}, {0x050, 0x07CC},
43 {0x053, 0xE9CA}, {0x055, 0xBD97}, {0x071, 0x3015}, {0x076, 0x03AA},
44 {0x07C, 0x0FDF}, {0x0C2, 0x3030}, {0x0C3, 0x8000}, {0x0E2, 0x5550},
45 {0x0E3, 0x12A4}, {0x0E4, 0x7D00}, {0x0E6, 0x0C83}, {0x101, 0xFCC0},
46 {0x104, 0x0C10}
47};
48
49/* 40M1G25 mode init data */
50static uint16_t sgmii_phy_init[512] = {
51 /* 0 1 2 3 4 5 6 7 */
52 /*-----------------------------------------------------------*/
53 /* 8 9 A B C D E F */
54 0x3110, 0xFD83, 0x6430, 0x412F, 0x82C0, 0x06FA, 0x4500, 0x6D26, /* 00 */
55 0xAFC0, 0x8000, 0xC000, 0x0000, 0x2000, 0x49CC, 0x0BC9, 0x2A52, /* 08 */
56 0x0BD2, 0x0CDE, 0x13D2, 0x0CE8, 0x1149, 0x10E0, 0x0000, 0x0000, /* 10 */
57 0x0000, 0x0000, 0x0000, 0x0001, 0x0000, 0x4134, 0x0D2D, 0xFFFF, /* 18 */
58 0xFFE0, 0x4030, 0x1016, 0x0030, 0x0000, 0x0800, 0x0866, 0x0000, /* 20 */
59 0x0000, 0x0000, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, /* 28 */
60 0xFFFF, 0xFFFF, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /* 30 */
61 0x0000, 0x0000, 0x000F, 0x6A62, 0x1988, 0x3100, 0x3100, 0x3100, /* 38 */
62 0x3100, 0xA708, 0x2430, 0x0830, 0x1030, 0x4610, 0xFF00, 0xFF00, /* 40 */
63 0x0060, 0x1000, 0x0400, 0x0040, 0x00F0, 0x0155, 0x1100, 0xA02A, /* 48 */
64 0x06FA, 0x0080, 0xB008, 0xE3ED, 0x5002, 0xB592, 0x7A80, 0x0001, /* 50 */
65 0x020A, 0x8820, 0x6014, 0x8054, 0xACAA, 0xFC88, 0x2A02, 0x45CF, /* 58 */
66 0x000F, 0x1817, 0x2860, 0x064F, 0x0000, 0x0204, 0x1800, 0x6000, /* 60 */
67 0x810F, 0x4F23, 0x4000, 0x4498, 0x0850, 0x0000, 0x000E, 0x1002, /* 68 */
68 0x9D3A, 0x3009, 0xD066, 0x0491, 0x0001, 0x6AB0, 0x0399, 0x3780, /* 70 */
69 0x0040, 0x5AC0, 0x4A80, 0x0000, 0x01DF, 0x0000, 0x0007, 0x0000, /* 78 */
70 0x2D54, 0x00A1, 0x4000, 0x0100, 0xA20A, 0x0000, 0x0000, 0x0000, /* 80 */
71 0x0000, 0x0000, 0x0000, 0x7400, 0x0E81, 0x1000, 0x1242, 0x0210, /* 88 */
72 0x80DF, 0x0F1F, 0x2F3F, 0x4F5F, 0x6F7F, 0x0F1F, 0x2F3F, 0x4F5F, /* 90 */
73 0x6F7F, 0x4BAD, 0x0000, 0x0000, 0x0800, 0x0000, 0x2400, 0xB651, /* 98 */
74 0xC9E0, 0x4247, 0x0A24, 0x0000, 0xAF19, 0x1004, 0x0000, 0x0000, /* A0 */
75 0x0000, 0x0013, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /* A8 */
76 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /* B0 */
77 0x0000, 0x0000, 0x0000, 0x0060, 0x0000, 0x0000, 0x0000, 0x0000, /* B8 */
78 0x0000, 0x0000, 0x3010, 0xFA00, 0x0000, 0x0000, 0x0000, 0x0003, /* C0 */
79 0x1618, 0x8200, 0x8000, 0x0400, 0x050F, 0x0000, 0x0000, 0x0000, /* C8 */
80 0x4C93, 0x0000, 0x1000, 0x1120, 0x0010, 0x1242, 0x1242, 0x1E00, /* D0 */
81 0x0000, 0x0000, 0x0000, 0x00F8, 0x0000, 0x0041, 0x0800, 0x0000, /* D8 */
82 0x82A0, 0x572E, 0x2490, 0x14A9, 0x4E00, 0x0000, 0x0803, 0x0541, /* E0 */
83 0x0C15, 0x0000, 0x0000, 0x0400, 0x2626, 0x0000, 0x0000, 0x4200, /* E8 */
84 0x0000, 0xAA55, 0x1020, 0x0000, 0x0000, 0x5010, 0x0000, 0x0000, /* F0 */
85 0x0000, 0x0000, 0x5000, 0x0000, 0x0000, 0x0000, 0x02F2, 0x0000, /* F8 */
86 0x101F, 0xFDC0, 0x4000, 0x8010, 0x0110, 0x0006, 0x0000, 0x0000, /*100 */
87 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*108 */
88 0x04CF, 0x0000, 0x04CF, 0x0000, 0x04CF, 0x0000, 0x04C6, 0x0000, /*110 */
89 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*118 */
90 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*120 */
91 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*128 */
92 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*130 */
93 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*138 */
94 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*140 */
95 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*148 */
96 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*150 */
97 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*158 */
98 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*160 */
99 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*168 */
100 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*170 */
101 0x0000, 0x0000, 0x0000, 0x00F0, 0x08A2, 0x3112, 0x0A14, 0x0000, /*178 */
102 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*180 */
103 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*188 */
104 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*190 */
105 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*198 */
106 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1A0 */
107 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1A8 */
108 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1B0 */
109 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1B8 */
110 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1C0 */
111 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1C8 */
112 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1D0 */
113 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1D8 */
114 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1E0 */
115 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1E8 */
116 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, /*1F0 */
117 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000, 0x0000 /*1F8 */
118};
119
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300120/* PHY selector configures with corresponding modes */
121static void mvebu_a3700_comphy_set_phy_selector(uint8_t comphy_index,
122 uint32_t comphy_mode)
123{
124 uint32_t reg;
125 int mode = COMPHY_GET_MODE(comphy_mode);
126
127 reg = mmio_read_32(MVEBU_COMPHY_REG_BASE + COMPHY_SELECTOR_PHY_REG);
128 switch (mode) {
129 case (COMPHY_SATA_MODE):
130 /* SATA must be in Lane2 */
131 if (comphy_index == COMPHY_LANE2)
132 reg &= ~COMPHY_SELECTOR_USB3_PHY_SEL_BIT;
133 else
134 goto error;
135 break;
136
137 case (COMPHY_SGMII_MODE):
Pali Rohár51974d22021-08-27 11:16:43 +0200138 case (COMPHY_2500BASEX_MODE):
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300139 if (comphy_index == COMPHY_LANE0)
140 reg &= ~COMPHY_SELECTOR_USB3_GBE1_SEL_BIT;
141 else if (comphy_index == COMPHY_LANE1)
142 reg &= ~COMPHY_SELECTOR_PCIE_GBE0_SEL_BIT;
143 else
144 goto error;
145 break;
146
147 case (COMPHY_USB3H_MODE):
148 case (COMPHY_USB3D_MODE):
149 case (COMPHY_USB3_MODE):
150 if (comphy_index == COMPHY_LANE2)
151 reg |= COMPHY_SELECTOR_USB3_PHY_SEL_BIT;
152 else if (comphy_index == COMPHY_LANE0)
153 reg |= COMPHY_SELECTOR_USB3_GBE1_SEL_BIT;
154 else
155 goto error;
156 break;
157
158 case (COMPHY_PCIE_MODE):
159 /* PCIE must be in Lane1 */
160 if (comphy_index == COMPHY_LANE1)
161 reg |= COMPHY_SELECTOR_PCIE_GBE0_SEL_BIT;
162 else
163 goto error;
164 break;
165
166 default:
167 goto error;
168 }
169
170 mmio_write_32(MVEBU_COMPHY_REG_BASE + COMPHY_SELECTOR_PHY_REG, reg);
171 return;
172error:
173 ERROR("COMPHY[%d] mode[%d] is invalid\n", comphy_index, mode);
174}
175
Marek Behún4f94cbc2019-11-05 15:21:54 +0100176/*
177 * This is something like the inverse of the previous function: for given
178 * lane it returns COMPHY_*_MODE.
179 *
180 * It is useful when powering the phy off.
181 *
182 * This function returns COMPHY_USB3_MODE even if the phy was configured
183 * with COMPHY_USB3D_MODE or COMPHY_USB3H_MODE. (The usb3 phy initialization
184 * code does not differentiate between these modes.)
185 * Also it returns COMPHY_SGMII_MODE even if the phy was configures with
Pali Rohár51974d22021-08-27 11:16:43 +0200186 * COMPHY_2500BASEX_MODE. (The sgmii phy initialization code does differentiate
Marek Behún4f94cbc2019-11-05 15:21:54 +0100187 * between these modes, but it is irrelevant when powering the phy off.)
188 */
189static int mvebu_a3700_comphy_get_mode(uint8_t comphy_index)
190{
191 uint32_t reg;
192
193 reg = mmio_read_32(MVEBU_COMPHY_REG_BASE + COMPHY_SELECTOR_PHY_REG);
194 switch (comphy_index) {
195 case COMPHY_LANE0:
196 if ((reg & COMPHY_SELECTOR_USB3_GBE1_SEL_BIT) != 0)
197 return COMPHY_USB3_MODE;
198 else
199 return COMPHY_SGMII_MODE;
200 case COMPHY_LANE1:
201 if ((reg & COMPHY_SELECTOR_PCIE_GBE0_SEL_BIT) != 0)
202 return COMPHY_PCIE_MODE;
203 else
204 return COMPHY_SGMII_MODE;
205 case COMPHY_LANE2:
206 if ((reg & COMPHY_SELECTOR_USB3_PHY_SEL_BIT) != 0)
207 return COMPHY_USB3_MODE;
208 else
209 return COMPHY_SATA_MODE;
210 }
211
212 return COMPHY_UNUSED;
213}
214
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300215/* It is only used for SATA and USB3 on comphy lane2. */
216static void comphy_set_indirect(uintptr_t addr, uint32_t offset, uint16_t data,
Pali Rohár15b183c2021-09-23 14:11:25 +0200217 uint16_t mask, bool is_sata)
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300218{
219 /*
220 * When Lane 2 PHY is for USB3, access the PHY registers
221 * through indirect Address and Data registers:
222 * INDIR_ACC_PHY_ADDR (RD00E0178h [31:0]),
223 * INDIR_ACC_PHY_DATA (RD00E017Ch [31:0]),
224 * within the SATA Host Controller registers, Lane 2 base register
225 * offset is 0x200
226 */
Pali Rohár15b183c2021-09-23 14:11:25 +0200227 if (is_sata) {
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300228 mmio_write_32(addr + COMPHY_LANE2_INDIR_ADDR_OFFSET, offset);
Pali Rohár15b183c2021-09-23 14:11:25 +0200229 } else {
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300230 mmio_write_32(addr + COMPHY_LANE2_INDIR_ADDR_OFFSET,
231 offset + USB3PHY_LANE2_REG_BASE_OFFSET);
Pali Rohár15b183c2021-09-23 14:11:25 +0200232 }
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300233
234 reg_set(addr + COMPHY_LANE2_INDIR_DATA_OFFSET, data, mask);
235}
236
Pali Rohár15b183c2021-09-23 14:11:25 +0200237/* It is only used for SATA on comphy lane2. */
238static void comphy_sata_set_indirect(uintptr_t addr, uint32_t reg_offset,
239 uint16_t data, uint16_t mask)
240{
241 comphy_set_indirect(addr, reg_offset, data, mask, true);
242}
243
244/* It is only used for USB3 indirect access on comphy lane2. */
245static void comphy_usb3_set_indirect(uintptr_t addr, uint32_t reg_offset,
246 uint16_t data, uint16_t mask)
247{
248 comphy_set_indirect(addr, reg_offset, data, mask, false);
249}
250
251/* It is only used for USB3 direct access not on comphy lane2. */
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300252static void comphy_usb3_set_direct(uintptr_t addr, uint32_t reg_offset,
Pali Rohár15b183c2021-09-23 14:11:25 +0200253 uint16_t data, uint16_t mask)
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300254{
255 reg_set16((reg_offset * PHY_SHFT(USB3) + addr), data, mask);
256}
257
Pali Rohár58e99252021-09-23 15:08:00 +0200258static void comphy_sgmii_phy_init(uintptr_t sd_ip_addr, bool is_1gbps)
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300259{
260 const int fix_arr_sz = ARRAY_SIZE(sgmii_phy_init_fix);
261 int addr, fix_idx;
262 uint16_t val;
263
264 fix_idx = 0;
265 for (addr = 0; addr < 512; addr++) {
266 /*
267 * All PHY register values are defined in full for 3.125Gbps
268 * SERDES speed. The values required for 1.25 Gbps are almost
269 * the same and only few registers should be "fixed" in
270 * comparison to 3.125 Gbps values. These register values are
271 * stored in "sgmii_phy_init_fix" array.
272 */
Pali Rohár58e99252021-09-23 15:08:00 +0200273 if (!is_1gbps && sgmii_phy_init_fix[fix_idx].addr == addr) {
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300274 /* Use new value */
275 val = sgmii_phy_init_fix[fix_idx].value;
276 if (fix_idx < fix_arr_sz)
277 fix_idx++;
278 } else {
279 val = sgmii_phy_init[addr];
280 }
281
282 reg_set16(SGMIIPHY_ADDR(addr, sd_ip_addr), val, 0xFFFF);
283 }
284}
285
286static int mvebu_a3700_comphy_sata_power_on(uint8_t comphy_index,
287 uint32_t comphy_mode)
288{
289 int ret = 0;
290 uint32_t offset, data = 0, ref_clk;
291 uintptr_t comphy_indir_regs = COMPHY_INDIRECT_REG;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300292 int invert = COMPHY_GET_POLARITY_INVERT(comphy_mode);
293
294 debug_enter();
295
296 /* Configure phy selector for SATA */
297 mvebu_a3700_comphy_set_phy_selector(comphy_index, comphy_mode);
298
299 /* Clear phy isolation mode to make it work in normal mode */
300 offset = COMPHY_ISOLATION_CTRL_REG + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200301 comphy_sata_set_indirect(comphy_indir_regs, offset, 0, PHY_ISOLATE_MODE);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300302
303 /* 0. Check the Polarity invert bits */
304 if (invert & COMPHY_POLARITY_TXD_INVERT)
305 data |= TXD_INVERT_BIT;
306 if (invert & COMPHY_POLARITY_RXD_INVERT)
307 data |= RXD_INVERT_BIT;
308
309 offset = COMPHY_SYNC_PATTERN_REG + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200310 comphy_sata_set_indirect(comphy_indir_regs, offset, data, TXD_INVERT_BIT |
311 RXD_INVERT_BIT);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300312
313 /* 1. Select 40-bit data width width */
314 offset = COMPHY_LOOPBACK_REG0 + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200315 comphy_sata_set_indirect(comphy_indir_regs, offset, DATA_WIDTH_40BIT,
316 SEL_DATA_WIDTH_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300317
318 /* 2. Select reference clock(25M) and PHY mode (SATA) */
319 offset = COMPHY_POWER_PLL_CTRL + SATAPHY_LANE2_REG_BASE_OFFSET;
320 if (get_ref_clk() == 40)
321 ref_clk = REF_CLOCK_SPEED_40M;
322 else
323 ref_clk = REF_CLOCK_SPEED_25M;
324
Pali Rohár15b183c2021-09-23 14:11:25 +0200325 comphy_sata_set_indirect(comphy_indir_regs, offset, ref_clk | PHY_MODE_SATA,
326 REF_FREF_SEL_MASK | PHY_MODE_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300327
328 /* 3. Use maximum PLL rate (no power save) */
329 offset = COMPHY_KVCO_CAL_CTRL + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200330 comphy_sata_set_indirect(comphy_indir_regs, offset, USE_MAX_PLL_RATE_BIT,
331 USE_MAX_PLL_RATE_BIT);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300332
333 /* 4. Reset reserved bit */
Pali Rohár15b183c2021-09-23 14:11:25 +0200334 comphy_sata_set_indirect(comphy_indir_regs, COMPHY_RESERVED_REG, 0,
335 PHYCTRL_FRM_PIN_BIT);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300336
337 /* 5. Set vendor-specific configuration (It is done in sata driver) */
338 /* XXX: in U-Boot below sequence was executed in this place, in Linux
339 * not. Now it is done only in U-Boot before this comphy
340 * initialization - tests shows that it works ok, but in case of any
341 * future problem it is left for reference.
342 * reg_set(MVEBU_REGS_BASE + 0xe00a0, 0, 0xffffffff);
343 * reg_set(MVEBU_REGS_BASE + 0xe00a4, BIT(6), BIT(6));
344 */
345
346 /* Wait for > 55 us to allow PLL be enabled */
347 udelay(PLL_SET_DELAY_US);
348
349 /* Polling status */
350 mmio_write_32(comphy_indir_regs + COMPHY_LANE2_INDIR_ADDR_OFFSET,
351 COMPHY_LOOPBACK_REG0 + SATAPHY_LANE2_REG_BASE_OFFSET);
352
353 ret = polling_with_timeout(comphy_indir_regs +
354 COMPHY_LANE2_INDIR_DATA_OFFSET,
355 PLL_READY_TX_BIT, PLL_READY_TX_BIT,
356 COMPHY_PLL_TIMEOUT, REG_32BIT);
357
358 debug_exit();
359
360 return ret;
361}
362
363static int mvebu_a3700_comphy_sgmii_power_on(uint8_t comphy_index,
364 uint32_t comphy_mode)
365{
366 int ret = 0;
367 uint32_t mask, data, offset;
368 uintptr_t sd_ip_addr;
369 int mode = COMPHY_GET_MODE(comphy_mode);
370 int invert = COMPHY_GET_POLARITY_INVERT(comphy_mode);
371
372 debug_enter();
373
374 /* Set selector */
375 mvebu_a3700_comphy_set_phy_selector(comphy_index, comphy_mode);
376
377 /* Serdes IP Base address
378 * COMPHY Lane0 -- USB3/GBE1
379 * COMPHY Lane1 -- PCIe/GBE0
380 */
381 if (comphy_index == COMPHY_LANE0) {
382 /* Get usb3 and gbe */
383 sd_ip_addr = USB3_GBE1_PHY;
384 } else
385 sd_ip_addr = COMPHY_SD_ADDR;
386
387 /*
388 * 1. Reset PHY by setting PHY input port PIN_RESET=1.
389 * 2. Set PHY input port PIN_TX_IDLE=1, PIN_PU_IVREF=1 to keep
390 * PHY TXP/TXN output to idle state during PHY initialization
391 * 3. Set PHY input port PIN_PU_PLL=0, PIN_PU_RX=0, PIN_PU_TX=0.
392 */
393 data = PIN_PU_IVEREF_BIT | PIN_TX_IDLE_BIT | PIN_RESET_COMPHY_BIT;
394 mask = PIN_RESET_CORE_BIT | PIN_PU_PLL_BIT | PIN_PU_RX_BIT |
395 PIN_PU_TX_BIT;
396 offset = MVEBU_COMPHY_REG_BASE + COMPHY_PHY_CFG1_OFFSET(comphy_index);
397 reg_set(offset, data, mask);
398
399 /* 4. Release reset to the PHY by setting PIN_RESET=0. */
400 data = 0;
401 mask = PIN_RESET_COMPHY_BIT;
402 reg_set(offset, data, mask);
403
404 /*
405 * 5. Set PIN_PHY_GEN_TX[3:0] and PIN_PHY_GEN_RX[3:0] to decide COMPHY
406 * bit rate
407 */
408 if (mode == COMPHY_SGMII_MODE) {
409 /* SGMII 1G, SerDes speed 1.25G */
410 data |= SD_SPEED_1_25_G << GEN_RX_SEL_OFFSET;
411 data |= SD_SPEED_1_25_G << GEN_TX_SEL_OFFSET;
Pali Rohár51974d22021-08-27 11:16:43 +0200412 } else if (mode == COMPHY_2500BASEX_MODE) {
413 /* 2500Base-X, SerDes speed 3.125G */
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300414 data |= SD_SPEED_2_5_G << GEN_RX_SEL_OFFSET;
415 data |= SD_SPEED_2_5_G << GEN_TX_SEL_OFFSET;
416 } else {
417 /* Other rates are not supported */
418 ERROR("unsupported SGMII speed on comphy lane%d\n",
419 comphy_index);
420 return -EINVAL;
421 }
422 mask = GEN_RX_SEL_MASK | GEN_TX_SEL_MASK;
423 reg_set(offset, data, mask);
424
425 /*
426 * 6. Wait 10mS for bandgap and reference clocks to stabilize; then
427 * start SW programming.
428 */
429 mdelay(10);
430
431 /* 7. Program COMPHY register PHY_MODE */
432 data = PHY_MODE_SGMII;
433 mask = PHY_MODE_MASK;
434 reg_set16(SGMIIPHY_ADDR(COMPHY_POWER_PLL_CTRL, sd_ip_addr), data, mask);
435
436 /*
437 * 8. Set COMPHY register REFCLK_SEL to select the correct REFCLK
438 * source
439 */
440 data = 0;
441 mask = PHY_REF_CLK_SEL;
442 reg_set16(SGMIIPHY_ADDR(COMPHY_MISC_REG0_ADDR, sd_ip_addr), data, mask);
443
444 /*
445 * 9. Set correct reference clock frequency in COMPHY register
446 * REF_FREF_SEL.
447 */
448 if (get_ref_clk() == 40)
449 data = REF_CLOCK_SPEED_50M;
450 else
451 data = REF_CLOCK_SPEED_25M;
452
453 mask = REF_FREF_SEL_MASK;
454 reg_set16(SGMIIPHY_ADDR(COMPHY_POWER_PLL_CTRL, sd_ip_addr), data, mask);
455
456 /* 10. Program COMPHY register PHY_GEN_MAX[1:0]
457 * This step is mentioned in the flow received from verification team.
458 * However the PHY_GEN_MAX value is only meaningful for other interfaces
459 * (not SGMII). For instance, it selects SATA speed 1.5/3/6 Gbps or PCIe
460 * speed 2.5/5 Gbps
461 */
462
463 /*
464 * 11. Program COMPHY register SEL_BITS to set correct parallel data
465 * bus width
466 */
467 data = DATA_WIDTH_10BIT;
468 mask = SEL_DATA_WIDTH_MASK;
469 reg_set16(SGMIIPHY_ADDR(COMPHY_LOOPBACK_REG0, sd_ip_addr), data, mask);
470
471 /*
472 * 12. As long as DFE function needs to be enabled in any mode,
473 * COMPHY register DFE_UPDATE_EN[5:0] shall be programmed to 0x3F
474 * for real chip during COMPHY power on.
475 * The step 14 exists (and empty) in the original initialization flow
476 * obtained from the verification team. According to the functional
477 * specification DFE_UPDATE_EN already has the default value 0x3F
478 */
479
480 /*
481 * 13. Program COMPHY GEN registers.
482 * These registers should be programmed based on the lab testing result
483 * to achieve optimal performance. Please contact the CEA group to get
484 * the related GEN table during real chip bring-up. We only required to
485 * run though the entire registers programming flow defined by
486 * "comphy_sgmii_phy_init" when the REF clock is 40 MHz. For REF clock
487 * 25 MHz the default values stored in PHY registers are OK.
488 */
489 debug("Running C-DPI phy init %s mode\n",
Pali Rohár51974d22021-08-27 11:16:43 +0200490 mode == COMPHY_2500BASEX_MODE ? "2G5" : "1G");
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300491 if (get_ref_clk() == 40)
Pali Rohár58e99252021-09-23 15:08:00 +0200492 comphy_sgmii_phy_init(sd_ip_addr, mode != COMPHY_2500BASEX_MODE);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300493
494 /*
495 * 14. [Simulation Only] should not be used for real chip.
496 * By pass power up calibration by programming EXT_FORCE_CAL_DONE
497 * (R02h[9]) to 1 to shorten COMPHY simulation time.
498 */
499
500 /*
501 * 15. [Simulation Only: should not be used for real chip]
502 * Program COMPHY register FAST_DFE_TIMER_EN=1 to shorten RX training
503 * simulation time.
504 */
505
506 /*
507 * 16. Check the PHY Polarity invert bit
508 */
509 data = 0x0;
510 if (invert & COMPHY_POLARITY_TXD_INVERT)
511 data |= TXD_INVERT_BIT;
512 if (invert & COMPHY_POLARITY_RXD_INVERT)
513 data |= RXD_INVERT_BIT;
Pali Rohár741f7d62021-03-24 16:34:45 +0100514 mask = TXD_INVERT_BIT | RXD_INVERT_BIT;
515 reg_set16(SGMIIPHY_ADDR(COMPHY_SYNC_PATTERN_REG, sd_ip_addr), data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300516
517 /*
518 * 17. Set PHY input ports PIN_PU_PLL, PIN_PU_TX and PIN_PU_RX to 1 to
519 * start PHY power up sequence. All the PHY register programming should
520 * be done before PIN_PU_PLL=1. There should be no register programming
521 * for normal PHY operation from this point.
522 */
523 reg_set(MVEBU_COMPHY_REG_BASE + COMPHY_PHY_CFG1_OFFSET(comphy_index),
524 PIN_PU_PLL_BIT | PIN_PU_RX_BIT | PIN_PU_TX_BIT,
525 PIN_PU_PLL_BIT | PIN_PU_RX_BIT | PIN_PU_TX_BIT);
526
527 /*
528 * 18. Wait for PHY power up sequence to finish by checking output ports
529 * PIN_PLL_READY_TX=1 and PIN_PLL_READY_RX=1.
530 */
531 ret = polling_with_timeout(MVEBU_COMPHY_REG_BASE +
532 COMPHY_PHY_STATUS_OFFSET(comphy_index),
533 PHY_PLL_READY_TX_BIT | PHY_PLL_READY_RX_BIT,
534 PHY_PLL_READY_TX_BIT | PHY_PLL_READY_RX_BIT,
535 COMPHY_PLL_TIMEOUT, REG_32BIT);
536 if (ret)
537 ERROR("Failed to lock PLL for SGMII PHY %d\n", comphy_index);
538
539 /*
540 * 19. Set COMPHY input port PIN_TX_IDLE=0
541 */
542 reg_set(MVEBU_COMPHY_REG_BASE + COMPHY_PHY_CFG1_OFFSET(comphy_index),
543 0x0, PIN_TX_IDLE_BIT);
544
545 /*
546 * 20. After valid data appear on PIN_RXDATA bus, set PIN_RX_INIT=1. To
547 * start RX initialization. PIN_RX_INIT_DONE will be cleared to 0 by the
548 * PHY After RX initialization is done, PIN_RX_INIT_DONE will be set to
549 * 1 by COMPHY Set PIN_RX_INIT=0 after PIN_RX_INIT_DONE= 1. Please
550 * refer to RX initialization part for details.
551 */
552 reg_set(MVEBU_COMPHY_REG_BASE + COMPHY_PHY_CFG1_OFFSET(comphy_index),
Pali Rohárc9ae2362021-03-24 16:40:46 +0100553 PHY_RX_INIT_BIT, PHY_RX_INIT_BIT);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300554
555 ret = polling_with_timeout(MVEBU_COMPHY_REG_BASE +
556 COMPHY_PHY_STATUS_OFFSET(comphy_index),
557 PHY_PLL_READY_TX_BIT | PHY_PLL_READY_RX_BIT,
558 PHY_PLL_READY_TX_BIT | PHY_PLL_READY_RX_BIT,
559 COMPHY_PLL_TIMEOUT, REG_32BIT);
560 if (ret)
561 ERROR("Failed to lock PLL for SGMII PHY %d\n", comphy_index);
562
563
564 ret = polling_with_timeout(MVEBU_COMPHY_REG_BASE +
565 COMPHY_PHY_STATUS_OFFSET(comphy_index),
566 PHY_RX_INIT_DONE_BIT, PHY_RX_INIT_DONE_BIT,
567 COMPHY_PLL_TIMEOUT, REG_32BIT);
568 if (ret)
569 ERROR("Failed to init RX of SGMII PHY %d\n", comphy_index);
570
571 debug_exit();
572
573 return ret;
574}
575
Marek Behún4f94cbc2019-11-05 15:21:54 +0100576static int mvebu_a3700_comphy_sgmii_power_off(uint8_t comphy_index)
577{
578 int ret = 0;
579 uint32_t mask, data, offset;
580
581 debug_enter();
582
583 data = PIN_RESET_CORE_BIT | PIN_RESET_COMPHY_BIT;
Pali Rohárc9ae2362021-03-24 16:40:46 +0100584 mask = data;
Marek Behún4f94cbc2019-11-05 15:21:54 +0100585 offset = MVEBU_COMPHY_REG_BASE + COMPHY_PHY_CFG1_OFFSET(comphy_index);
586 reg_set(offset, data, mask);
587
588 debug_exit();
589
590 return ret;
591}
592
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300593static int mvebu_a3700_comphy_usb3_power_on(uint8_t comphy_index,
594 uint32_t comphy_mode)
595{
596 int ret = 0;
597 uintptr_t reg_base = 0;
598 uint32_t mask, data, addr, cfg, ref_clk;
599 void (*usb3_reg_set)(uintptr_t addr, uint32_t reg_offset, uint16_t data,
Pali Rohár15b183c2021-09-23 14:11:25 +0200600 uint16_t mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300601 int invert = COMPHY_GET_POLARITY_INVERT(comphy_mode);
602
603 debug_enter();
604
605 /* Set phy seclector */
606 mvebu_a3700_comphy_set_phy_selector(comphy_index, comphy_mode);
607
608 /* Set usb3 reg access func, Lane2 is indirect access */
609 if (comphy_index == COMPHY_LANE2) {
Pali Rohár15b183c2021-09-23 14:11:25 +0200610 usb3_reg_set = &comphy_usb3_set_indirect;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300611 reg_base = COMPHY_INDIRECT_REG;
612 } else {
613 /* Get the direct access register resource and map */
614 usb3_reg_set = &comphy_usb3_set_direct;
615 reg_base = USB3_GBE1_PHY;
616 }
617
618 /*
619 * 0. Set PHY OTG Control(0x5d034), bit 4, Power up OTG module The
620 * register belong to UTMI module, so it is set in UTMI phy driver.
621 */
622
623 /*
624 * 1. Set PRD_TXDEEMPH (3.5db de-emph)
625 */
626 mask = PRD_TXDEEMPH0_MASK | PRD_TXMARGIN_MASK | PRD_TXSWING_MASK |
627 CFG_TX_ALIGN_POS_MASK;
628 usb3_reg_set(reg_base, COMPHY_REG_LANE_CFG0_ADDR, PRD_TXDEEMPH0_MASK,
Pali Rohár15b183c2021-09-23 14:11:25 +0200629 mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300630
631 /*
632 * 2. Set BIT0: enable transmitter in high impedance mode
633 * Set BIT[3:4]: delay 2 clock cycles for HiZ off latency
634 * Set BIT6: Tx detect Rx at HiZ mode
635 * Unset BIT15: set to 0 to set USB3 De-emphasize level to -3.5db
636 * together with bit 0 of COMPHY_REG_LANE_CFG0_ADDR register
637 */
638 mask = PRD_TXDEEMPH1_MASK | TX_DET_RX_MODE | GEN2_TX_DATA_DLY_MASK |
639 TX_ELEC_IDLE_MODE_EN;
640 data = TX_DET_RX_MODE | GEN2_TX_DATA_DLY_DEFT | TX_ELEC_IDLE_MODE_EN;
Pali Rohár15b183c2021-09-23 14:11:25 +0200641 usb3_reg_set(reg_base, COMPHY_REG_LANE_CFG1_ADDR, data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300642
643 /*
644 * 3. Set Spread Spectrum Clock Enabled
645 */
646 usb3_reg_set(reg_base, COMPHY_REG_LANE_CFG4_ADDR,
Pali Rohár15b183c2021-09-23 14:11:25 +0200647 SPREAD_SPECTRUM_CLK_EN, SPREAD_SPECTRUM_CLK_EN);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300648
649 /*
650 * 4. Set Override Margining Controls From the MAC:
651 * Use margining signals from lane configuration
652 */
653 usb3_reg_set(reg_base, COMPHY_REG_TEST_MODE_CTRL_ADDR,
Pali Rohár15b183c2021-09-23 14:11:25 +0200654 MODE_MARGIN_OVERRIDE, REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300655
656 /*
657 * 5. Set Lane-to-Lane Bundle Clock Sampling Period = per PCLK cycles
658 * set Mode Clock Source = PCLK is generated from REFCLK
659 */
660 usb3_reg_set(reg_base, COMPHY_REG_GLOB_CLK_SRC_LO_ADDR, 0x0,
661 (MODE_CLK_SRC | BUNDLE_PERIOD_SEL | BUNDLE_PERIOD_SCALE |
Pali Rohár15b183c2021-09-23 14:11:25 +0200662 BUNDLE_SAMPLE_CTRL | PLL_READY_DLY));
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300663
664 /*
665 * 6. Set G2 Spread Spectrum Clock Amplitude at 4K
666 */
667 usb3_reg_set(reg_base, COMPHY_REG_GEN2_SET_2,
Pali Rohár15b183c2021-09-23 14:11:25 +0200668 G2_TX_SSC_AMP_VALUE_20, G2_TX_SSC_AMP_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300669
670 /*
671 * 7. Unset G3 Spread Spectrum Clock Amplitude
672 * set G3 TX and RX Register Master Current Select
673 */
674 mask = G3_TX_SSC_AMP_MASK | G3_VREG_RXTX_MAS_ISET_MASK |
675 RSVD_PH03FH_6_0_MASK;
676 usb3_reg_set(reg_base, COMPHY_REG_GEN2_SET_3,
Pali Rohár15b183c2021-09-23 14:11:25 +0200677 G3_VREG_RXTX_MAS_ISET_60U, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300678
679 /*
680 * 8. Check crystal jumper setting and program the Power and PLL Control
681 * accordingly Change RX wait
682 */
683 if (get_ref_clk() == 40) {
684 ref_clk = REF_CLOCK_SPEED_40M;
685 cfg = CFG_PM_RXDLOZ_WAIT_12_UNIT;
686
687 } else {
688 /* 25 MHz */
689 ref_clk = USB3_REF_CLOCK_SPEED_25M;
690 cfg = CFG_PM_RXDLOZ_WAIT_7_UNIT;
691 }
692
693 mask = PU_IVREF_BIT | PU_PLL_BIT | PU_RX_BIT | PU_TX_BIT |
694 PU_TX_INTP_BIT | PU_DFE_BIT | PLL_LOCK_BIT | PHY_MODE_MASK |
695 REF_FREF_SEL_MASK;
696 data = PU_IVREF_BIT | PU_PLL_BIT | PU_RX_BIT | PU_TX_BIT |
697 PU_TX_INTP_BIT | PU_DFE_BIT | PHY_MODE_USB3 | ref_clk;
Pali Rohár15b183c2021-09-23 14:11:25 +0200698 usb3_reg_set(reg_base, COMPHY_POWER_PLL_CTRL, data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300699
700 mask = CFG_PM_OSCCLK_WAIT_MASK | CFG_PM_RXDEN_WAIT_MASK |
701 CFG_PM_RXDLOZ_WAIT_MASK;
702 data = CFG_PM_RXDEN_WAIT_1_UNIT | cfg;
Pali Rohár15b183c2021-09-23 14:11:25 +0200703 usb3_reg_set(reg_base, COMPHY_REG_PWR_MGM_TIM1_ADDR, data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300704
705 /*
706 * 9. Enable idle sync
707 */
708 data = UNIT_CTRL_DEFAULT_VALUE | IDLE_SYNC_EN;
Pali Rohár15b183c2021-09-23 14:11:25 +0200709 usb3_reg_set(reg_base, COMPHY_REG_UNIT_CTRL_ADDR, data, REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300710
711 /*
712 * 10. Enable the output of 500M clock
713 */
714 data = MISC_REG0_DEFAULT_VALUE | CLK500M_EN;
Pali Rohár15b183c2021-09-23 14:11:25 +0200715 usb3_reg_set(reg_base, COMPHY_MISC_REG0_ADDR, data, REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300716
717 /*
718 * 11. Set 20-bit data width
719 */
720 usb3_reg_set(reg_base, COMPHY_LOOPBACK_REG0, DATA_WIDTH_20BIT,
Pali Rohár15b183c2021-09-23 14:11:25 +0200721 REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300722
723 /*
724 * 12. Override Speed_PLL value and use MAC PLL
725 */
726 usb3_reg_set(reg_base, COMPHY_KVCO_CAL_CTRL,
727 (SPEED_PLL_VALUE_16 | USE_MAX_PLL_RATE_BIT),
Pali Rohár15b183c2021-09-23 14:11:25 +0200728 REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300729
730 /*
731 * 13. Check the Polarity invert bit
732 */
Pali Rohár741f7d62021-03-24 16:34:45 +0100733 data = 0U;
734 if (invert & COMPHY_POLARITY_TXD_INVERT) {
735 data |= TXD_INVERT_BIT;
736 }
737 if (invert & COMPHY_POLARITY_RXD_INVERT) {
738 data |= RXD_INVERT_BIT;
739 }
740 mask = TXD_INVERT_BIT | RXD_INVERT_BIT;
Pali Rohár15b183c2021-09-23 14:11:25 +0200741 usb3_reg_set(reg_base, COMPHY_SYNC_PATTERN_REG, data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300742
743 /*
744 * 14. Set max speed generation to USB3.0 5Gbps
745 */
746 usb3_reg_set(reg_base, COMPHY_SYNC_MASK_GEN_REG, PHY_GEN_USB3_5G,
Pali Rohár15b183c2021-09-23 14:11:25 +0200747 PHY_GEN_MAX_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300748
749 /*
750 * 15. Set capacitor value for FFE gain peaking to 0xF
751 */
752 usb3_reg_set(reg_base, COMPHY_REG_GEN3_SETTINGS_3,
Pali Rohár15b183c2021-09-23 14:11:25 +0200753 COMPHY_GEN_FFE_CAP_SEL_VALUE, COMPHY_GEN_FFE_CAP_SEL_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300754
755 /*
756 * 16. Release SW reset
757 */
758 data = MODE_CORE_CLK_FREQ_SEL | MODE_PIPE_WIDTH_32 | MODE_REFDIV_BY_4;
759 usb3_reg_set(reg_base, COMPHY_REG_GLOB_PHY_CTRL0_ADDR, data,
Pali Rohár15b183c2021-09-23 14:11:25 +0200760 REG_16_BIT_MASK);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300761
762 /* Wait for > 55 us to allow PCLK be enabled */
763 udelay(PLL_SET_DELAY_US);
764
765 if (comphy_index == COMPHY_LANE2) {
Marek Behún718e02c2019-10-08 17:36:14 +0200766 data = COMPHY_REG_LANE_STATUS1_ADDR + USB3PHY_LANE2_REG_BASE_OFFSET;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300767 mmio_write_32(reg_base + COMPHY_LANE2_INDIR_ADDR_OFFSET,
768 data);
769
Marek Behún718e02c2019-10-08 17:36:14 +0200770 addr = reg_base + COMPHY_LANE2_INDIR_DATA_OFFSET;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300771 ret = polling_with_timeout(addr, TXDCLK_PCLK_EN, TXDCLK_PCLK_EN,
772 COMPHY_PLL_TIMEOUT, REG_32BIT);
773 } else {
774 ret = polling_with_timeout(LANE_STATUS1_ADDR(USB3) + reg_base,
775 TXDCLK_PCLK_EN, TXDCLK_PCLK_EN,
776 COMPHY_PLL_TIMEOUT, REG_16BIT);
777 }
778 if (ret)
779 ERROR("Failed to lock USB3 PLL\n");
780
781 debug_exit();
782
783 return ret;
784}
785
786static int mvebu_a3700_comphy_pcie_power_on(uint8_t comphy_index,
787 uint32_t comphy_mode)
788{
789 int ret;
790 uint32_t ref_clk;
Pali Rohár741f7d62021-03-24 16:34:45 +0100791 uint32_t mask, data;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300792 int invert = COMPHY_GET_POLARITY_INVERT(comphy_mode);
793
794 debug_enter();
795
796 /* 1. Enable max PLL. */
797 reg_set16(LANE_CFG1_ADDR(PCIE) + COMPHY_SD_ADDR,
Pali Rohárc9ae2362021-03-24 16:40:46 +0100798 USE_MAX_PLL_RATE_EN, USE_MAX_PLL_RATE_EN);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300799
800 /* 2. Select 20 bit SERDES interface. */
801 reg_set16(GLOB_CLK_SRC_LO_ADDR(PCIE) + COMPHY_SD_ADDR,
Pali Rohárc9ae2362021-03-24 16:40:46 +0100802 CFG_SEL_20B, CFG_SEL_20B);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300803
804 /* 3. Force to use reg setting for PCIe mode */
805 reg_set16(MISC_REG1_ADDR(PCIE) + COMPHY_SD_ADDR,
Pali Rohárc9ae2362021-03-24 16:40:46 +0100806 SEL_BITS_PCIE_FORCE, SEL_BITS_PCIE_FORCE);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300807
808 /* 4. Change RX wait */
809 reg_set16(PWR_MGM_TIM1_ADDR(PCIE) + COMPHY_SD_ADDR,
810 CFG_PM_RXDEN_WAIT_1_UNIT | CFG_PM_RXDLOZ_WAIT_12_UNIT,
811 (CFG_PM_OSCCLK_WAIT_MASK | CFG_PM_RXDEN_WAIT_MASK |
812 CFG_PM_RXDLOZ_WAIT_MASK));
813
814 /* 5. Enable idle sync */
815 reg_set16(UNIT_CTRL_ADDR(PCIE) + COMPHY_SD_ADDR,
816 UNIT_CTRL_DEFAULT_VALUE | IDLE_SYNC_EN, REG_16_BIT_MASK);
817
818 /* 6. Enable the output of 100M/125M/500M clock */
819 reg_set16(MISC_REG0_ADDR(PCIE) + COMPHY_SD_ADDR,
Pali Rohárbcc4416b2021-03-24 17:03:43 +0100820 MISC_REG0_DEFAULT_VALUE | CLK500M_EN | TXDCLK_2X_SEL | CLK100M_125M_EN,
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300821 REG_16_BIT_MASK);
822
823 /*
824 * 7. Enable TX, PCIE global register, 0xd0074814, it is done in
825 * PCI-E driver
826 */
827
828 /*
829 * 8. Check crystal jumper setting and program the Power and PLL
830 * Control accordingly
831 */
832
833 if (get_ref_clk() == 40)
834 ref_clk = REF_CLOCK_SPEED_40M;
835 else
836 ref_clk = PCIE_REF_CLOCK_SPEED_25M;
837
838 reg_set16(PWR_PLL_CTRL_ADDR(PCIE) + COMPHY_SD_ADDR,
839 (PU_IVREF_BIT | PU_PLL_BIT | PU_RX_BIT | PU_TX_BIT |
840 PU_TX_INTP_BIT | PU_DFE_BIT | ref_clk | PHY_MODE_PCIE),
841 REG_16_BIT_MASK);
842
843 /* 9. Override Speed_PLL value and use MAC PLL */
844 reg_set16(KVCO_CAL_CTRL_ADDR(PCIE) + COMPHY_SD_ADDR,
845 SPEED_PLL_VALUE_16 | USE_MAX_PLL_RATE_BIT, REG_16_BIT_MASK);
846
847 /* 10. Check the Polarity invert bit */
Pali Rohár741f7d62021-03-24 16:34:45 +0100848 data = 0U;
849 if (invert & COMPHY_POLARITY_TXD_INVERT) {
850 data |= TXD_INVERT_BIT;
851 }
852 if (invert & COMPHY_POLARITY_RXD_INVERT) {
853 data |= RXD_INVERT_BIT;
854 }
855 mask = TXD_INVERT_BIT | RXD_INVERT_BIT;
856 reg_set16(SYNC_PATTERN_REG_ADDR(PCIE) + COMPHY_SD_ADDR, data, mask);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300857
858 /* 11. Release SW reset */
859 reg_set16(GLOB_PHY_CTRL0_ADDR(PCIE) + COMPHY_SD_ADDR,
860 MODE_CORE_CLK_FREQ_SEL | MODE_PIPE_WIDTH_32,
861 SOFT_RESET | MODE_REFDIV);
862
863 /* Wait for > 55 us to allow PCLK be enabled */
864 udelay(PLL_SET_DELAY_US);
865
866 ret = polling_with_timeout(LANE_STATUS1_ADDR(PCIE) + COMPHY_SD_ADDR,
867 TXDCLK_PCLK_EN, TXDCLK_PCLK_EN,
868 COMPHY_PLL_TIMEOUT, REG_16BIT);
869 if (ret)
870 ERROR("Failed to lock PCIE PLL\n");
871
872 debug_exit();
873
874 return ret;
875}
876
877int mvebu_3700_comphy_power_on(uint8_t comphy_index, uint32_t comphy_mode)
878{
879 int mode = COMPHY_GET_MODE(comphy_mode);
880 int ret = 0;
881
882 debug_enter();
883
884 switch (mode) {
885 case(COMPHY_SATA_MODE):
886 ret = mvebu_a3700_comphy_sata_power_on(comphy_index,
887 comphy_mode);
888 break;
889 case(COMPHY_SGMII_MODE):
Pali Rohár51974d22021-08-27 11:16:43 +0200890 case(COMPHY_2500BASEX_MODE):
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300891 ret = mvebu_a3700_comphy_sgmii_power_on(comphy_index,
892 comphy_mode);
893 break;
894 case (COMPHY_USB3_MODE):
895 case (COMPHY_USB3H_MODE):
896 ret = mvebu_a3700_comphy_usb3_power_on(comphy_index,
897 comphy_mode);
898 break;
899 case (COMPHY_PCIE_MODE):
900 ret = mvebu_a3700_comphy_pcie_power_on(comphy_index,
901 comphy_mode);
902 break;
903 default:
904 ERROR("comphy%d: unsupported comphy mode\n", comphy_index);
905 ret = -EINVAL;
906 break;
907 }
908
909 debug_exit();
910
911 return ret;
912}
913
914static int mvebu_a3700_comphy_usb3_power_off(void)
915{
916 /*
917 * Currently the USB3 MAC will control the USB3 PHY to set it to low
918 * state, thus do not need to power off USB3 PHY again.
919 */
920 debug_enter();
921 debug_exit();
922
923 return 0;
924}
925
Pali Rohár754cec92021-09-23 12:33:42 +0200926static int mvebu_a3700_comphy_sata_power_off(void)
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300927{
928 uintptr_t comphy_indir_regs = COMPHY_INDIRECT_REG;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300929 uint32_t offset;
930
931 debug_enter();
932
933 /* Set phy isolation mode */
934 offset = COMPHY_ISOLATION_CTRL_REG + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200935 comphy_sata_set_indirect(comphy_indir_regs, offset, PHY_ISOLATE_MODE,
936 PHY_ISOLATE_MODE);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300937
938 /* Power off PLL, Tx, Rx */
939 offset = COMPHY_POWER_PLL_CTRL + SATAPHY_LANE2_REG_BASE_OFFSET;
Pali Rohár15b183c2021-09-23 14:11:25 +0200940 comphy_sata_set_indirect(comphy_indir_regs, offset, 0,
941 PU_PLL_BIT | PU_RX_BIT | PU_TX_BIT);
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300942
943 debug_exit();
944
945 return 0;
946}
947
948int mvebu_3700_comphy_power_off(uint8_t comphy_index, uint32_t comphy_mode)
949{
950 int mode = COMPHY_GET_MODE(comphy_mode);
951 int err = 0;
952
953 debug_enter();
954
Marek Behún4f94cbc2019-11-05 15:21:54 +0100955 if (!mode) {
956 /*
957 * The user did not specify which mode should be powered off.
958 * In this case we can identify this by reading the phy selector
959 * register.
960 */
961 mode = mvebu_a3700_comphy_get_mode(comphy_index);
962 }
963
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300964 switch (mode) {
Marek Behún4f94cbc2019-11-05 15:21:54 +0100965 case(COMPHY_SGMII_MODE):
Pali Rohár51974d22021-08-27 11:16:43 +0200966 case(COMPHY_2500BASEX_MODE):
Marek Behún4f94cbc2019-11-05 15:21:54 +0100967 err = mvebu_a3700_comphy_sgmii_power_off(comphy_index);
968 break;
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300969 case (COMPHY_USB3_MODE):
970 case (COMPHY_USB3H_MODE):
971 err = mvebu_a3700_comphy_usb3_power_off();
972 break;
973 case (COMPHY_SATA_MODE):
Pali Rohár754cec92021-09-23 12:33:42 +0200974 err = mvebu_a3700_comphy_sata_power_off();
Konstantin Porotchkinede192d2018-10-08 16:48:52 +0300975 break;
976
977 default:
978 debug("comphy%d: power off is not implemented for mode %d\n",
979 comphy_index, mode);
980 break;
981 }
982
983 debug_exit();
984
985 return err;
986}
987
988static int mvebu_a3700_comphy_sata_is_pll_locked(void)
989{
990 uint32_t data, addr;
991 uintptr_t comphy_indir_regs = COMPHY_INDIRECT_REG;
992 int ret = 0;
993
994 debug_enter();
995
996 /* Polling status */
997 mmio_write_32(comphy_indir_regs + COMPHY_LANE2_INDIR_ADDR_OFFSET,
998 COMPHY_LOOPBACK_REG0 + SATAPHY_LANE2_REG_BASE_OFFSET);
999 addr = comphy_indir_regs + COMPHY_LANE2_INDIR_DATA_OFFSET;
1000 data = polling_with_timeout(addr, PLL_READY_TX_BIT, PLL_READY_TX_BIT,
1001 COMPHY_PLL_TIMEOUT, REG_32BIT);
1002
1003 if (data != 0) {
1004 ERROR("TX PLL is not locked\n");
1005 ret = -ETIMEDOUT;
1006 }
1007
1008 debug_exit();
1009
1010 return ret;
1011}
1012
1013int mvebu_3700_comphy_is_pll_locked(uint8_t comphy_index, uint32_t comphy_mode)
1014{
1015 int mode = COMPHY_GET_MODE(comphy_mode);
1016 int ret = 0;
1017
1018 debug_enter();
1019
1020 switch (mode) {
1021 case(COMPHY_SATA_MODE):
1022 ret = mvebu_a3700_comphy_sata_is_pll_locked();
1023 break;
1024
1025 default:
1026 ERROR("comphy[%d] mode[%d] doesn't support PLL lock check\n",
1027 comphy_index, mode);
1028 ret = -EINVAL;
1029 break;
1030 }
1031
1032 debug_exit();
1033
1034 return ret;
1035}