xref: /openbmc/linux/drivers/mfd/rsmu_spi.c (revision 6192a8a1)
1a1867f85SMin Li // SPDX-License-Identifier: GPL-2.0+
2a1867f85SMin Li /*
3a1867f85SMin Li  * SPI driver for Renesas Synchronization Management Unit (SMU) devices.
4a1867f85SMin Li  *
5a1867f85SMin Li  * Copyright (C) 2021 Integrated Device Technology, Inc., a Renesas Company.
6a1867f85SMin Li  */
7a1867f85SMin Li 
8a1867f85SMin Li #include <linux/init.h>
9a1867f85SMin Li #include <linux/kernel.h>
10a1867f85SMin Li #include <linux/mfd/core.h>
11a1867f85SMin Li #include <linux/mfd/rsmu.h>
12a1867f85SMin Li #include <linux/module.h>
13a1867f85SMin Li #include <linux/of.h>
14a1867f85SMin Li #include <linux/regmap.h>
15a1867f85SMin Li #include <linux/slab.h>
16a1867f85SMin Li #include <linux/spi/spi.h>
17a1867f85SMin Li 
18a1867f85SMin Li #include "rsmu.h"
19a1867f85SMin Li 
20a1867f85SMin Li #define	RSMU_CM_PAGE_ADDR		0x7C
21a1867f85SMin Li #define	RSMU_SABRE_PAGE_ADDR		0x7F
2267d6c76fSMin Li #define	RSMU_PAGE_MASK			0xFFFFFF80
2367d6c76fSMin Li #define	RSMU_ADDR_MASK			0x7F
24a1867f85SMin Li 
rsmu_read_device(struct rsmu_ddata * rsmu,u8 reg,u8 * buf,u16 bytes)25a1867f85SMin Li static int rsmu_read_device(struct rsmu_ddata *rsmu, u8 reg, u8 *buf, u16 bytes)
26a1867f85SMin Li {
27a1867f85SMin Li 	struct spi_device *client = to_spi_device(rsmu->dev);
28a1867f85SMin Li 	struct spi_transfer xfer = {0};
29a1867f85SMin Li 	struct spi_message msg;
3067d6c76fSMin Li 	u8 cmd[RSMU_MAX_READ_COUNT + 1] = {0};
3167d6c76fSMin Li 	u8 rsp[RSMU_MAX_READ_COUNT + 1] = {0};
32a1867f85SMin Li 	int ret;
33a1867f85SMin Li 
3467d6c76fSMin Li 	if (bytes > RSMU_MAX_READ_COUNT)
3567d6c76fSMin Li 		return -EINVAL;
3667d6c76fSMin Li 
37a1867f85SMin Li 	cmd[0] = reg | 0x80;
38a1867f85SMin Li 	xfer.rx_buf = rsp;
39a1867f85SMin Li 	xfer.len = bytes + 1;
40a1867f85SMin Li 	xfer.tx_buf = cmd;
41a1867f85SMin Li 	xfer.bits_per_word = client->bits_per_word;
42a1867f85SMin Li 	xfer.speed_hz = client->max_speed_hz;
43a1867f85SMin Li 
44a1867f85SMin Li 	spi_message_init(&msg);
45a1867f85SMin Li 	spi_message_add_tail(&xfer, &msg);
46a1867f85SMin Li 
47a1867f85SMin Li 	/*
48a1867f85SMin Li 	 * 4-wire SPI is a shift register, so for every byte you send,
49a1867f85SMin Li 	 * you get one back at the same time. Example read from 0xC024,
50a1867f85SMin Li 	 * which has value of 0x2D
51a1867f85SMin Li 	 *
52a1867f85SMin Li 	 * MOSI:
53a1867f85SMin Li 	 *       7C 00 C0 #Set page register
54a1867f85SMin Li 	 *       A4 00    #MSB is set, so this is read command
55a1867f85SMin Li 	 * MISO:
56a1867f85SMin Li 	 *       XX 2D    #XX is a dummy byte from sending A4 and we
57a1867f85SMin Li 	 *                 need to throw it away
58a1867f85SMin Li 	 */
59a1867f85SMin Li 	ret = spi_sync(client, &msg);
60a1867f85SMin Li 	if (ret >= 0)
61a1867f85SMin Li 		memcpy(buf, &rsp[1], xfer.len-1);
62a1867f85SMin Li 
63a1867f85SMin Li 	return ret;
64a1867f85SMin Li }
65a1867f85SMin Li 
rsmu_write_device(struct rsmu_ddata * rsmu,u8 reg,u8 * buf,u16 bytes)66a1867f85SMin Li static int rsmu_write_device(struct rsmu_ddata *rsmu, u8 reg, u8 *buf, u16 bytes)
67a1867f85SMin Li {
68a1867f85SMin Li 	struct spi_device *client = to_spi_device(rsmu->dev);
69a1867f85SMin Li 	struct spi_transfer xfer = {0};
70a1867f85SMin Li 	struct spi_message msg;
7167d6c76fSMin Li 	u8 cmd[RSMU_MAX_WRITE_COUNT + 1] = {0};
7267d6c76fSMin Li 
7367d6c76fSMin Li 	if (bytes > RSMU_MAX_WRITE_COUNT)
7467d6c76fSMin Li 		return -EINVAL;
75a1867f85SMin Li 
76a1867f85SMin Li 	cmd[0] = reg;
77a1867f85SMin Li 	memcpy(&cmd[1], buf, bytes);
78a1867f85SMin Li 
79a1867f85SMin Li 	xfer.len = bytes + 1;
80a1867f85SMin Li 	xfer.tx_buf = cmd;
81a1867f85SMin Li 	xfer.bits_per_word = client->bits_per_word;
82a1867f85SMin Li 	xfer.speed_hz = client->max_speed_hz;
83a1867f85SMin Li 	spi_message_init(&msg);
84a1867f85SMin Li 	spi_message_add_tail(&xfer, &msg);
85a1867f85SMin Li 
86a1867f85SMin Li 	return  spi_sync(client, &msg);
87a1867f85SMin Li }
88a1867f85SMin Li 
89a1867f85SMin Li /*
90a1867f85SMin Li  * 1-byte (1B) offset addressing:
91a1867f85SMin Li  * 16-bit register address: the lower 7 bits of the register address come
92a1867f85SMin Li  * from the offset addr byte and the upper 9 bits come from the page register.
93a1867f85SMin Li  */
rsmu_write_page_register(struct rsmu_ddata * rsmu,u32 reg)9467d6c76fSMin Li static int rsmu_write_page_register(struct rsmu_ddata *rsmu, u32 reg)
95a1867f85SMin Li {
96a1867f85SMin Li 	u8 page_reg;
9767d6c76fSMin Li 	u8 buf[4];
98a1867f85SMin Li 	u16 bytes;
9967d6c76fSMin Li 	u32 page;
100a1867f85SMin Li 	int err;
101a1867f85SMin Li 
102a1867f85SMin Li 	switch (rsmu->type) {
103a1867f85SMin Li 	case RSMU_CM:
10467d6c76fSMin Li 		/* Do not modify page register for none-scsr registers */
10567d6c76fSMin Li 		if (reg < RSMU_CM_SCSR_BASE)
10667d6c76fSMin Li 			return 0;
107a1867f85SMin Li 		page_reg = RSMU_CM_PAGE_ADDR;
10867d6c76fSMin Li 		page = reg & RSMU_PAGE_MASK;
109a1867f85SMin Li 		buf[0] = (u8)(page & 0xff);
110a1867f85SMin Li 		buf[1] = (u8)((page >> 8) & 0xff);
11167d6c76fSMin Li 		buf[2] = (u8)((page >> 16) & 0xff);
11267d6c76fSMin Li 		buf[3] = (u8)((page >> 24) & 0xff);
11367d6c76fSMin Li 		bytes = 4;
114a1867f85SMin Li 		break;
115a1867f85SMin Li 	case RSMU_SABRE:
11667d6c76fSMin Li 		/* Do not modify page register if reg is page register itself */
11767d6c76fSMin Li 		if ((reg & RSMU_ADDR_MASK) == RSMU_ADDR_MASK)
11867d6c76fSMin Li 			return 0;
119a1867f85SMin Li 		page_reg = RSMU_SABRE_PAGE_ADDR;
12067d6c76fSMin Li 		page = reg & RSMU_PAGE_MASK;
12167d6c76fSMin Li 		/* The three page bits are located in the single Page Register */
12267d6c76fSMin Li 		buf[0] = (u8)((page >> 7) & 0x7);
123a1867f85SMin Li 		bytes = 1;
124a1867f85SMin Li 		break;
125a1867f85SMin Li 	default:
126a1867f85SMin Li 		dev_err(rsmu->dev, "Unsupported RSMU device type: %d\n", rsmu->type);
127a1867f85SMin Li 		return -ENODEV;
128a1867f85SMin Li 	}
129a1867f85SMin Li 
130a1867f85SMin Li 	/* Simply return if we are on the same page */
131a1867f85SMin Li 	if (rsmu->page == page)
132a1867f85SMin Li 		return 0;
133a1867f85SMin Li 
134a1867f85SMin Li 	err = rsmu_write_device(rsmu, page_reg, buf, bytes);
135a1867f85SMin Li 	if (err)
136a1867f85SMin Li 		dev_err(rsmu->dev, "Failed to set page offset 0x%x\n", page);
137a1867f85SMin Li 	else
138a1867f85SMin Li 		/* Remember the last page */
139a1867f85SMin Li 		rsmu->page = page;
140a1867f85SMin Li 
141a1867f85SMin Li 	return err;
142a1867f85SMin Li }
143a1867f85SMin Li 
rsmu_reg_read(void * context,unsigned int reg,unsigned int * val)144a1867f85SMin Li static int rsmu_reg_read(void *context, unsigned int reg, unsigned int *val)
145a1867f85SMin Li {
14667d6c76fSMin Li 	struct rsmu_ddata *rsmu = spi_get_drvdata((struct spi_device *)context);
14767d6c76fSMin Li 	u8 addr = (u8)(reg & RSMU_ADDR_MASK);
148a1867f85SMin Li 	int err;
149a1867f85SMin Li 
150a1867f85SMin Li 	err = rsmu_write_page_register(rsmu, reg);
151a1867f85SMin Li 	if (err)
152a1867f85SMin Li 		return err;
153a1867f85SMin Li 
154a1867f85SMin Li 	err = rsmu_read_device(rsmu, addr, (u8 *)val, 1);
155a1867f85SMin Li 	if (err)
156a1867f85SMin Li 		dev_err(rsmu->dev, "Failed to read offset address 0x%x\n", addr);
157a1867f85SMin Li 
158a1867f85SMin Li 	return err;
159a1867f85SMin Li }
160a1867f85SMin Li 
rsmu_reg_write(void * context,unsigned int reg,unsigned int val)161a1867f85SMin Li static int rsmu_reg_write(void *context, unsigned int reg, unsigned int val)
162a1867f85SMin Li {
16367d6c76fSMin Li 	struct rsmu_ddata *rsmu = spi_get_drvdata((struct spi_device *)context);
16467d6c76fSMin Li 	u8 addr = (u8)(reg & RSMU_ADDR_MASK);
165a1867f85SMin Li 	u8 data = (u8)val;
166a1867f85SMin Li 	int err;
167a1867f85SMin Li 
168a1867f85SMin Li 	err = rsmu_write_page_register(rsmu, reg);
169a1867f85SMin Li 	if (err)
170a1867f85SMin Li 		return err;
171a1867f85SMin Li 
172a1867f85SMin Li 	err = rsmu_write_device(rsmu, addr, &data, 1);
173a1867f85SMin Li 	if (err)
174a1867f85SMin Li 		dev_err(rsmu->dev,
175a1867f85SMin Li 			"Failed to write offset address 0x%x\n", addr);
176a1867f85SMin Li 
177a1867f85SMin Li 	return err;
178a1867f85SMin Li }
179a1867f85SMin Li 
180a1867f85SMin Li static const struct regmap_config rsmu_cm_regmap_config = {
18167d6c76fSMin Li 	.reg_bits = 32,
182a1867f85SMin Li 	.val_bits = 8,
18367d6c76fSMin Li 	.max_register = 0x20120000,
184a1867f85SMin Li 	.reg_read = rsmu_reg_read,
185a1867f85SMin Li 	.reg_write = rsmu_reg_write,
186a1867f85SMin Li 	.cache_type = REGCACHE_NONE,
187a1867f85SMin Li };
188a1867f85SMin Li 
189a1867f85SMin Li static const struct regmap_config rsmu_sabre_regmap_config = {
190a1867f85SMin Li 	.reg_bits = 16,
191a1867f85SMin Li 	.val_bits = 8,
192a1867f85SMin Li 	.max_register = 0x400,
193a1867f85SMin Li 	.reg_read = rsmu_reg_read,
194a1867f85SMin Li 	.reg_write = rsmu_reg_write,
195a1867f85SMin Li 	.cache_type = REGCACHE_NONE,
196a1867f85SMin Li };
197a1867f85SMin Li 
rsmu_spi_probe(struct spi_device * client)198a1867f85SMin Li static int rsmu_spi_probe(struct spi_device *client)
199a1867f85SMin Li {
200a1867f85SMin Li 	const struct spi_device_id *id = spi_get_device_id(client);
201a1867f85SMin Li 	const struct regmap_config *cfg;
202a1867f85SMin Li 	struct rsmu_ddata *rsmu;
203a1867f85SMin Li 	int ret;
204a1867f85SMin Li 
205a1867f85SMin Li 	rsmu = devm_kzalloc(&client->dev, sizeof(*rsmu), GFP_KERNEL);
206a1867f85SMin Li 	if (!rsmu)
207a1867f85SMin Li 		return -ENOMEM;
208a1867f85SMin Li 
209a1867f85SMin Li 	spi_set_drvdata(client, rsmu);
210a1867f85SMin Li 
211a1867f85SMin Li 	rsmu->dev = &client->dev;
212a1867f85SMin Li 	rsmu->type = (enum rsmu_type)id->driver_data;
213a1867f85SMin Li 
214a1867f85SMin Li 	/* Initialize regmap */
215a1867f85SMin Li 	switch (rsmu->type) {
216a1867f85SMin Li 	case RSMU_CM:
217a1867f85SMin Li 		cfg = &rsmu_cm_regmap_config;
218a1867f85SMin Li 		break;
219a1867f85SMin Li 	case RSMU_SABRE:
220a1867f85SMin Li 		cfg = &rsmu_sabre_regmap_config;
221a1867f85SMin Li 		break;
222a1867f85SMin Li 	default:
223a1867f85SMin Li 		dev_err(rsmu->dev, "Unsupported RSMU device type: %d\n", rsmu->type);
224a1867f85SMin Li 		return -ENODEV;
225a1867f85SMin Li 	}
226a1867f85SMin Li 
227a1867f85SMin Li 	rsmu->regmap = devm_regmap_init(&client->dev, NULL, client, cfg);
228a1867f85SMin Li 	if (IS_ERR(rsmu->regmap)) {
229a1867f85SMin Li 		ret = PTR_ERR(rsmu->regmap);
230a1867f85SMin Li 		dev_err(rsmu->dev, "Failed to allocate register map: %d\n", ret);
231a1867f85SMin Li 		return ret;
232a1867f85SMin Li 	}
233a1867f85SMin Li 
234a1867f85SMin Li 	return rsmu_core_init(rsmu);
235a1867f85SMin Li }
236a1867f85SMin Li 
rsmu_spi_remove(struct spi_device * client)237a0386bbaSUwe Kleine-König static void rsmu_spi_remove(struct spi_device *client)
238a1867f85SMin Li {
239a1867f85SMin Li 	struct rsmu_ddata *rsmu = spi_get_drvdata(client);
240a1867f85SMin Li 
241a1867f85SMin Li 	rsmu_core_exit(rsmu);
242a1867f85SMin Li }
243a1867f85SMin Li 
244a1867f85SMin Li static const struct spi_device_id rsmu_spi_id[] = {
245a1867f85SMin Li 	{ "8a34000",  RSMU_CM },
246a1867f85SMin Li 	{ "8a34001",  RSMU_CM },
247a1867f85SMin Li 	{ "82p33810", RSMU_SABRE },
248a1867f85SMin Li 	{ "82p33811", RSMU_SABRE },
249a1867f85SMin Li 	{}
250a1867f85SMin Li };
251a1867f85SMin Li MODULE_DEVICE_TABLE(spi, rsmu_spi_id);
252a1867f85SMin Li 
253a1867f85SMin Li static const struct of_device_id rsmu_spi_of_match[] = {
254a1867f85SMin Li 	{ .compatible = "idt,8a34000",  .data = (void *)RSMU_CM },
255a1867f85SMin Li 	{ .compatible = "idt,8a34001",  .data = (void *)RSMU_CM },
256a1867f85SMin Li 	{ .compatible = "idt,82p33810", .data = (void *)RSMU_SABRE },
257a1867f85SMin Li 	{ .compatible = "idt,82p33811", .data = (void *)RSMU_SABRE },
258a1867f85SMin Li 	{}
259a1867f85SMin Li };
260a1867f85SMin Li MODULE_DEVICE_TABLE(of, rsmu_spi_of_match);
261a1867f85SMin Li 
262a1867f85SMin Li static struct spi_driver rsmu_spi_driver = {
263a1867f85SMin Li 	.driver = {
264a1867f85SMin Li 		.name = "rsmu-spi",
265*6192a8a1SZhu Wang 		.of_match_table = rsmu_spi_of_match,
266a1867f85SMin Li 	},
267a1867f85SMin Li 	.probe = rsmu_spi_probe,
268a1867f85SMin Li 	.remove	= rsmu_spi_remove,
269a1867f85SMin Li 	.id_table = rsmu_spi_id,
270a1867f85SMin Li };
271a1867f85SMin Li 
rsmu_spi_init(void)272a1867f85SMin Li static int __init rsmu_spi_init(void)
273a1867f85SMin Li {
274a1867f85SMin Li 	return spi_register_driver(&rsmu_spi_driver);
275a1867f85SMin Li }
276a1867f85SMin Li subsys_initcall(rsmu_spi_init);
277a1867f85SMin Li 
rsmu_spi_exit(void)278a1867f85SMin Li static void __exit rsmu_spi_exit(void)
279a1867f85SMin Li {
280a1867f85SMin Li 	spi_unregister_driver(&rsmu_spi_driver);
281a1867f85SMin Li }
282a1867f85SMin Li module_exit(rsmu_spi_exit);
283a1867f85SMin Li 
284a1867f85SMin Li MODULE_DESCRIPTION("Renesas SMU SPI driver");
285a1867f85SMin Li MODULE_LICENSE("GPL");
286