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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * camss-csiphy-3ph-1-0.c
4  *
5  * Qualcomm MSM Camera Subsystem - CSIPHY Module 3phase v1.0
6  *
7  * Copyright (c) 2011-2015, The Linux Foundation. All rights reserved.
8  * Copyright (C) 2016-2018 Linaro Ltd.
9  */
10 
11 #include "camss-csiphy.h"
12 
13 #include <linux/delay.h>
14 #include <linux/interrupt.h>
15 #include <linux/io.h>
16 
17 #define CSIPHY_3PH_LNn_CFG1(n)			(0x000 + 0x100 * (n))
18 #define CSIPHY_3PH_LNn_CFG1_SWI_REC_DLY_PRG	(BIT(7) | BIT(6))
19 #define CSIPHY_3PH_LNn_CFG2(n)			(0x004 + 0x100 * (n))
20 #define CSIPHY_3PH_LNn_CFG2_LP_REC_EN_INT	BIT(3)
21 #define CSIPHY_3PH_LNn_CFG3(n)			(0x008 + 0x100 * (n))
22 #define CSIPHY_3PH_LNn_CFG4(n)			(0x00c + 0x100 * (n))
23 #define CSIPHY_3PH_LNn_CFG4_T_HS_CLK_MISS	0xa4
24 #define CSIPHY_3PH_LNn_CFG5(n)			(0x010 + 0x100 * (n))
25 #define CSIPHY_3PH_LNn_CFG5_T_HS_DTERM		0x02
26 #define CSIPHY_3PH_LNn_CFG5_HS_REC_EQ_FQ_INT	0x50
27 #define CSIPHY_3PH_LNn_TEST_IMP(n)		(0x01c + 0x100 * (n))
28 #define CSIPHY_3PH_LNn_TEST_IMP_HS_TERM_IMP	0xa
29 #define CSIPHY_3PH_LNn_MISC1(n)			(0x028 + 0x100 * (n))
30 #define CSIPHY_3PH_LNn_MISC1_IS_CLKLANE		BIT(2)
31 #define CSIPHY_3PH_LNn_CFG6(n)			(0x02c + 0x100 * (n))
32 #define CSIPHY_3PH_LNn_CFG6_SWI_FORCE_INIT_EXIT	BIT(0)
33 #define CSIPHY_3PH_LNn_CFG7(n)			(0x030 + 0x100 * (n))
34 #define CSIPHY_3PH_LNn_CFG7_SWI_T_INIT		0x2
35 #define CSIPHY_3PH_LNn_CFG8(n)			(0x034 + 0x100 * (n))
36 #define CSIPHY_3PH_LNn_CFG8_SWI_SKIP_WAKEUP	BIT(0)
37 #define CSIPHY_3PH_LNn_CFG8_SKEW_FILTER_ENABLE	BIT(1)
38 #define CSIPHY_3PH_LNn_CFG9(n)			(0x038 + 0x100 * (n))
39 #define CSIPHY_3PH_LNn_CFG9_SWI_T_WAKEUP	0x1
40 #define CSIPHY_3PH_LNn_CSI_LANE_CTRL15(n)	(0x03c + 0x100 * (n))
41 #define CSIPHY_3PH_LNn_CSI_LANE_CTRL15_SWI_SOT_SYMBOL	0xb8
42 
43 #define CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(n)	(0x800 + 0x4 * (n))
44 #define CSIPHY_3PH_CMN_CSI_COMMON_CTRL6_COMMON_PWRDN_B	BIT(0)
45 #define CSIPHY_3PH_CMN_CSI_COMMON_CTRL6_SHOW_REV_ID	BIT(1)
46 #define CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(n)	(0x8b0 + 0x4 * (n))
47 
csiphy_hw_version_read(struct csiphy_device * csiphy,struct device * dev)48 static void csiphy_hw_version_read(struct csiphy_device *csiphy,
49 				   struct device *dev)
50 {
51 	u32 hw_version;
52 
53 	writel(CSIPHY_3PH_CMN_CSI_COMMON_CTRL6_SHOW_REV_ID,
54 	       csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(6));
55 
56 	hw_version = readl_relaxed(csiphy->base +
57 				   CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(12));
58 	hw_version |= readl_relaxed(csiphy->base +
59 				   CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(13)) << 8;
60 	hw_version |= readl_relaxed(csiphy->base +
61 				   CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(14)) << 16;
62 	hw_version |= readl_relaxed(csiphy->base +
63 				   CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(15)) << 24;
64 
65 	dev_err(dev, "CSIPHY 3PH HW Version = 0x%08x\n", hw_version);
66 }
67 
68 /*
69  * csiphy_reset - Perform software reset on CSIPHY module
70  * @csiphy: CSIPHY device
71  */
csiphy_reset(struct csiphy_device * csiphy)72 static void csiphy_reset(struct csiphy_device *csiphy)
73 {
74 	writel_relaxed(0x1, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(0));
75 	usleep_range(5000, 8000);
76 	writel_relaxed(0x0, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(0));
77 }
78 
csiphy_isr(int irq,void * dev)79 static irqreturn_t csiphy_isr(int irq, void *dev)
80 {
81 	struct csiphy_device *csiphy = dev;
82 	int i;
83 
84 	for (i = 0; i < 11; i++) {
85 		int c = i + 22;
86 		u8 val = readl_relaxed(csiphy->base +
87 				       CSIPHY_3PH_CMN_CSI_COMMON_STATUSn(i));
88 
89 		writel_relaxed(val, csiphy->base +
90 				    CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(c));
91 	}
92 
93 	writel_relaxed(0x1, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(10));
94 	writel_relaxed(0x0, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(10));
95 
96 	for (i = 22; i < 33; i++)
97 		writel_relaxed(0x0, csiphy->base +
98 				    CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(i));
99 
100 	return IRQ_HANDLED;
101 }
102 
103 /*
104  * csiphy_settle_cnt_calc - Calculate settle count value
105  *
106  * Helper function to calculate settle count value. This is
107  * based on the CSI2 T_hs_settle parameter which in turn
108  * is calculated based on the CSI2 transmitter pixel clock
109  * frequency.
110  *
111  * Return settle count value or 0 if the CSI2 pixel clock
112  * frequency is not available
113  */
csiphy_settle_cnt_calc(u32 pixel_clock,u8 bpp,u8 num_lanes,u32 timer_clk_rate)114 static u8 csiphy_settle_cnt_calc(u32 pixel_clock, u8 bpp, u8 num_lanes,
115 				 u32 timer_clk_rate)
116 {
117 	u32 mipi_clock; /* Hz */
118 	u32 ui; /* ps */
119 	u32 timer_period; /* ps */
120 	u32 t_hs_prepare_max; /* ps */
121 	u32 t_hs_settle; /* ps */
122 	u8 settle_cnt;
123 
124 	mipi_clock = pixel_clock * bpp / (2 * num_lanes);
125 	ui = div_u64(1000000000000LL, mipi_clock);
126 	ui /= 2;
127 	t_hs_prepare_max = 85000 + 6 * ui;
128 	t_hs_settle = t_hs_prepare_max;
129 
130 	timer_period = div_u64(1000000000000LL, timer_clk_rate);
131 	settle_cnt = t_hs_settle / timer_period - 6;
132 
133 	return settle_cnt;
134 }
135 
csiphy_lanes_enable(struct csiphy_device * csiphy,struct csiphy_config * cfg,u32 pixel_clock,u8 bpp,u8 lane_mask)136 static void csiphy_lanes_enable(struct csiphy_device *csiphy,
137 				struct csiphy_config *cfg,
138 				u32 pixel_clock, u8 bpp, u8 lane_mask)
139 {
140 	struct csiphy_lanes_cfg *c = &cfg->csi2->lane_cfg;
141 	u8 settle_cnt;
142 	u8 val, l = 0;
143 	int i;
144 
145 	settle_cnt = csiphy_settle_cnt_calc(pixel_clock, bpp, c->num_data,
146 					    csiphy->timer_clk_rate);
147 
148 	val = BIT(c->clk.pos);
149 	for (i = 0; i < c->num_data; i++)
150 		val |= BIT(c->data[i].pos * 2);
151 
152 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(5));
153 
154 	val = CSIPHY_3PH_CMN_CSI_COMMON_CTRL6_COMMON_PWRDN_B;
155 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(6));
156 
157 	for (i = 0; i <= c->num_data; i++) {
158 		if (i == c->num_data)
159 			l = 7;
160 		else
161 			l = c->data[i].pos * 2;
162 
163 		val = CSIPHY_3PH_LNn_CFG1_SWI_REC_DLY_PRG;
164 		val |= 0x17;
165 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG1(l));
166 
167 		val = CSIPHY_3PH_LNn_CFG2_LP_REC_EN_INT;
168 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG2(l));
169 
170 		val = settle_cnt;
171 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG3(l));
172 
173 		val = CSIPHY_3PH_LNn_CFG5_T_HS_DTERM |
174 			CSIPHY_3PH_LNn_CFG5_HS_REC_EQ_FQ_INT;
175 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG5(l));
176 
177 		val = CSIPHY_3PH_LNn_CFG6_SWI_FORCE_INIT_EXIT;
178 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG6(l));
179 
180 		val = CSIPHY_3PH_LNn_CFG7_SWI_T_INIT;
181 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG7(l));
182 
183 		val = CSIPHY_3PH_LNn_CFG8_SWI_SKIP_WAKEUP |
184 			CSIPHY_3PH_LNn_CFG8_SKEW_FILTER_ENABLE;
185 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG8(l));
186 
187 		val = CSIPHY_3PH_LNn_CFG9_SWI_T_WAKEUP;
188 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG9(l));
189 
190 		val = CSIPHY_3PH_LNn_TEST_IMP_HS_TERM_IMP;
191 		writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_TEST_IMP(l));
192 
193 		val = CSIPHY_3PH_LNn_CSI_LANE_CTRL15_SWI_SOT_SYMBOL;
194 		writel_relaxed(val, csiphy->base +
195 				    CSIPHY_3PH_LNn_CSI_LANE_CTRL15(l));
196 	}
197 
198 	val = CSIPHY_3PH_LNn_CFG1_SWI_REC_DLY_PRG;
199 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG1(l));
200 
201 	val = CSIPHY_3PH_LNn_CFG4_T_HS_CLK_MISS;
202 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_CFG4(l));
203 
204 	val = CSIPHY_3PH_LNn_MISC1_IS_CLKLANE;
205 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_LNn_MISC1(l));
206 
207 	val = 0xff;
208 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(11));
209 
210 	val = 0xff;
211 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(12));
212 
213 	val = 0xfb;
214 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(13));
215 
216 	val = 0xff;
217 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(14));
218 
219 	val = 0x7f;
220 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(15));
221 
222 	val = 0xff;
223 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(16));
224 
225 	val = 0xff;
226 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(17));
227 
228 	val = 0xef;
229 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(18));
230 
231 	val = 0xff;
232 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(19));
233 
234 	val = 0xff;
235 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(20));
236 
237 	val = 0xff;
238 	writel_relaxed(val, csiphy->base + CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(21));
239 }
240 
csiphy_lanes_disable(struct csiphy_device * csiphy,struct csiphy_config * cfg)241 static void csiphy_lanes_disable(struct csiphy_device *csiphy,
242 				 struct csiphy_config *cfg)
243 {
244 	writel_relaxed(0, csiphy->base +
245 			  CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(5));
246 
247 	writel_relaxed(0, csiphy->base +
248 			  CSIPHY_3PH_CMN_CSI_COMMON_CTRLn(6));
249 }
250 
251 const struct csiphy_hw_ops csiphy_ops_3ph_1_0 = {
252 	.hw_version_read = csiphy_hw_version_read,
253 	.reset = csiphy_reset,
254 	.lanes_enable = csiphy_lanes_enable,
255 	.lanes_disable = csiphy_lanes_disable,
256 	.isr = csiphy_isr,
257 };
258