xref: /rk3399_rockchip-uboot/drivers/pinctrl/pinctrl-uclass.c (revision 52db39a22b0544446e630c853292bfa255a21e24)
1d90a5a30SMasahiro Yamada /*
2d90a5a30SMasahiro Yamada  * Copyright (C) 2015  Masahiro Yamada <yamada.masahiro@socionext.com>
3d90a5a30SMasahiro Yamada  *
4d90a5a30SMasahiro Yamada  * SPDX-License-Identifier:	GPL-2.0+
5d90a5a30SMasahiro Yamada  */
6d90a5a30SMasahiro Yamada 
7d90a5a30SMasahiro Yamada #include <common.h>
8d90a5a30SMasahiro Yamada #include <libfdt.h>
9d90a5a30SMasahiro Yamada #include <linux/err.h>
10d90a5a30SMasahiro Yamada #include <linux/list.h>
11d90a5a30SMasahiro Yamada #include <dm/device.h>
12d90a5a30SMasahiro Yamada #include <dm/lists.h>
13d90a5a30SMasahiro Yamada #include <dm/pinctrl.h>
14d90a5a30SMasahiro Yamada #include <dm/uclass.h>
15d90a5a30SMasahiro Yamada 
16d90a5a30SMasahiro Yamada DECLARE_GLOBAL_DATA_PTR;
17d90a5a30SMasahiro Yamada 
18*52db39a2SSimon Glass int pinctrl_decode_pin_config(const void *blob, int node)
19*52db39a2SSimon Glass {
20*52db39a2SSimon Glass 	int flags = 0;
21*52db39a2SSimon Glass 
22*52db39a2SSimon Glass 	if (fdtdec_get_bool(blob, node, "bias-pull-up"))
23*52db39a2SSimon Glass 		flags |= 1 << PIN_CONFIG_BIAS_PULL_UP;
24*52db39a2SSimon Glass 	else if (fdtdec_get_bool(blob, node, "bias-pull-down"))
25*52db39a2SSimon Glass 		flags |= 1 << PIN_CONFIG_BIAS_PULL_DOWN;
26*52db39a2SSimon Glass 
27*52db39a2SSimon Glass 	return flags;
28*52db39a2SSimon Glass }
29*52db39a2SSimon Glass 
30d90a5a30SMasahiro Yamada #if CONFIG_IS_ENABLED(PINCTRL_FULL)
31d90a5a30SMasahiro Yamada /**
32d90a5a30SMasahiro Yamada  * pinctrl_config_one() - apply pinctrl settings for a single node
33d90a5a30SMasahiro Yamada  *
34d90a5a30SMasahiro Yamada  * @config: pin configuration node
35d90a5a30SMasahiro Yamada  * @return: 0 on success, or negative error code on failure
36d90a5a30SMasahiro Yamada  */
37d90a5a30SMasahiro Yamada static int pinctrl_config_one(struct udevice *config)
38d90a5a30SMasahiro Yamada {
39d90a5a30SMasahiro Yamada 	struct udevice *pctldev;
40d90a5a30SMasahiro Yamada 	const struct pinctrl_ops *ops;
41d90a5a30SMasahiro Yamada 
42d90a5a30SMasahiro Yamada 	pctldev = config;
43d90a5a30SMasahiro Yamada 	for (;;) {
44d90a5a30SMasahiro Yamada 		pctldev = dev_get_parent(pctldev);
45d90a5a30SMasahiro Yamada 		if (!pctldev) {
46d90a5a30SMasahiro Yamada 			dev_err(config, "could not find pctldev\n");
47d90a5a30SMasahiro Yamada 			return -EINVAL;
48d90a5a30SMasahiro Yamada 		}
49d90a5a30SMasahiro Yamada 		if (pctldev->uclass->uc_drv->id == UCLASS_PINCTRL)
50d90a5a30SMasahiro Yamada 			break;
51d90a5a30SMasahiro Yamada 	}
52d90a5a30SMasahiro Yamada 
53d90a5a30SMasahiro Yamada 	ops = pinctrl_get_ops(pctldev);
54d90a5a30SMasahiro Yamada 	return ops->set_state(pctldev, config);
55d90a5a30SMasahiro Yamada }
56d90a5a30SMasahiro Yamada 
57d90a5a30SMasahiro Yamada /**
58d90a5a30SMasahiro Yamada  * pinctrl_select_state_full() - full implementation of pinctrl_select_state
59d90a5a30SMasahiro Yamada  *
60d90a5a30SMasahiro Yamada  * @dev: peripheral device
61d90a5a30SMasahiro Yamada  * @statename: state name, like "default"
62d90a5a30SMasahiro Yamada  * @return: 0 on success, or negative error code on failure
63d90a5a30SMasahiro Yamada  */
64d90a5a30SMasahiro Yamada static int pinctrl_select_state_full(struct udevice *dev, const char *statename)
65d90a5a30SMasahiro Yamada {
66d90a5a30SMasahiro Yamada 	const void *fdt = gd->fdt_blob;
67d90a5a30SMasahiro Yamada 	int node = dev->of_offset;
68d90a5a30SMasahiro Yamada 	char propname[32]; /* long enough */
69d90a5a30SMasahiro Yamada 	const fdt32_t *list;
70d90a5a30SMasahiro Yamada 	uint32_t phandle;
71d90a5a30SMasahiro Yamada 	int config_node;
72d90a5a30SMasahiro Yamada 	struct udevice *config;
73d90a5a30SMasahiro Yamada 	int state, size, i, ret;
74d90a5a30SMasahiro Yamada 
75d90a5a30SMasahiro Yamada 	state = fdt_find_string(fdt, node, "pinctrl-names", statename);
76d90a5a30SMasahiro Yamada 	if (state < 0) {
77d90a5a30SMasahiro Yamada 		char *end;
78d90a5a30SMasahiro Yamada 		/*
79d90a5a30SMasahiro Yamada 		 * If statename is not found in "pinctrl-names",
80d90a5a30SMasahiro Yamada 		 * assume statename is just the integer state ID.
81d90a5a30SMasahiro Yamada 		 */
82d90a5a30SMasahiro Yamada 		state = simple_strtoul(statename, &end, 10);
83d90a5a30SMasahiro Yamada 		if (*end)
84d90a5a30SMasahiro Yamada 			return -EINVAL;
85d90a5a30SMasahiro Yamada 	}
86d90a5a30SMasahiro Yamada 
87d90a5a30SMasahiro Yamada 	snprintf(propname, sizeof(propname), "pinctrl-%d", state);
88d90a5a30SMasahiro Yamada 	list = fdt_getprop(fdt, node, propname, &size);
89d90a5a30SMasahiro Yamada 	if (!list)
90d90a5a30SMasahiro Yamada 		return -EINVAL;
91d90a5a30SMasahiro Yamada 
92d90a5a30SMasahiro Yamada 	size /= sizeof(*list);
93d90a5a30SMasahiro Yamada 	for (i = 0; i < size; i++) {
94d90a5a30SMasahiro Yamada 		phandle = fdt32_to_cpu(*list++);
95d90a5a30SMasahiro Yamada 
96d90a5a30SMasahiro Yamada 		config_node = fdt_node_offset_by_phandle(fdt, phandle);
97d90a5a30SMasahiro Yamada 		if (config_node < 0) {
98d90a5a30SMasahiro Yamada 			dev_err(dev, "prop %s index %d invalid phandle\n",
99d90a5a30SMasahiro Yamada 				propname, i);
100d90a5a30SMasahiro Yamada 			return -EINVAL;
101d90a5a30SMasahiro Yamada 		}
102d90a5a30SMasahiro Yamada 		ret = uclass_get_device_by_of_offset(UCLASS_PINCONFIG,
103d90a5a30SMasahiro Yamada 						     config_node, &config);
104d90a5a30SMasahiro Yamada 		if (ret)
105d90a5a30SMasahiro Yamada 			return ret;
106d90a5a30SMasahiro Yamada 
107d90a5a30SMasahiro Yamada 		ret = pinctrl_config_one(config);
108d90a5a30SMasahiro Yamada 		if (ret)
109d90a5a30SMasahiro Yamada 			return ret;
110d90a5a30SMasahiro Yamada 	}
111d90a5a30SMasahiro Yamada 
112d90a5a30SMasahiro Yamada 	return 0;
113d90a5a30SMasahiro Yamada }
114d90a5a30SMasahiro Yamada 
115d90a5a30SMasahiro Yamada /**
116d90a5a30SMasahiro Yamada  * pinconfig_post-bind() - post binding for PINCONFIG uclass
117d90a5a30SMasahiro Yamada  * Recursively bind its children as pinconfig devices.
118d90a5a30SMasahiro Yamada  *
119d90a5a30SMasahiro Yamada  * @dev: pinconfig device
120d90a5a30SMasahiro Yamada  * @return: 0 on success, or negative error code on failure
121d90a5a30SMasahiro Yamada  */
122d90a5a30SMasahiro Yamada static int pinconfig_post_bind(struct udevice *dev)
123d90a5a30SMasahiro Yamada {
124d90a5a30SMasahiro Yamada 	const void *fdt = gd->fdt_blob;
125d90a5a30SMasahiro Yamada 	int offset = dev->of_offset;
1265589a818SSimon Glass 	bool pre_reloc_only = !(gd->flags & GD_FLG_RELOC);
127d90a5a30SMasahiro Yamada 	const char *name;
128d90a5a30SMasahiro Yamada 	int ret;
129d90a5a30SMasahiro Yamada 
130d90a5a30SMasahiro Yamada 	for (offset = fdt_first_subnode(fdt, offset);
131d90a5a30SMasahiro Yamada 	     offset > 0;
132d90a5a30SMasahiro Yamada 	     offset = fdt_next_subnode(fdt, offset)) {
1335589a818SSimon Glass 		if (pre_reloc_only &&
1345589a818SSimon Glass 		    !fdt_getprop(fdt, offset, "u-boot,dm-pre-reloc", NULL))
1355589a818SSimon Glass 			continue;
136d90a5a30SMasahiro Yamada 		/*
137d90a5a30SMasahiro Yamada 		 * If this node has "compatible" property, this is not
138d90a5a30SMasahiro Yamada 		 * a pin configuration node, but a normal device. skip.
139d90a5a30SMasahiro Yamada 		 */
140d90a5a30SMasahiro Yamada 		fdt_get_property(fdt, offset, "compatible", &ret);
141d90a5a30SMasahiro Yamada 		if (ret >= 0)
142d90a5a30SMasahiro Yamada 			continue;
143d90a5a30SMasahiro Yamada 
144d90a5a30SMasahiro Yamada 		if (ret != -FDT_ERR_NOTFOUND)
145d90a5a30SMasahiro Yamada 			return ret;
146d90a5a30SMasahiro Yamada 
147d90a5a30SMasahiro Yamada 		name = fdt_get_name(fdt, offset, NULL);
148d90a5a30SMasahiro Yamada 		if (!name)
149d90a5a30SMasahiro Yamada 			return -EINVAL;
150d90a5a30SMasahiro Yamada 		ret = device_bind_driver_to_node(dev, "pinconfig", name,
151d90a5a30SMasahiro Yamada 						 offset, NULL);
152d90a5a30SMasahiro Yamada 		if (ret)
153d90a5a30SMasahiro Yamada 			return ret;
154d90a5a30SMasahiro Yamada 	}
155d90a5a30SMasahiro Yamada 
156d90a5a30SMasahiro Yamada 	return 0;
157d90a5a30SMasahiro Yamada }
158d90a5a30SMasahiro Yamada 
159d90a5a30SMasahiro Yamada UCLASS_DRIVER(pinconfig) = {
160d90a5a30SMasahiro Yamada 	.id = UCLASS_PINCONFIG,
161d90a5a30SMasahiro Yamada 	.post_bind = pinconfig_post_bind,
162d90a5a30SMasahiro Yamada 	.name = "pinconfig",
163d90a5a30SMasahiro Yamada };
164d90a5a30SMasahiro Yamada 
165d90a5a30SMasahiro Yamada U_BOOT_DRIVER(pinconfig_generic) = {
166d90a5a30SMasahiro Yamada 	.name = "pinconfig",
167d90a5a30SMasahiro Yamada 	.id = UCLASS_PINCONFIG,
168d90a5a30SMasahiro Yamada };
169d90a5a30SMasahiro Yamada 
170d90a5a30SMasahiro Yamada #else
171d90a5a30SMasahiro Yamada static int pinctrl_select_state_full(struct udevice *dev, const char *statename)
172d90a5a30SMasahiro Yamada {
173d90a5a30SMasahiro Yamada 	return -ENODEV;
174d90a5a30SMasahiro Yamada }
175d90a5a30SMasahiro Yamada 
176d90a5a30SMasahiro Yamada static int pinconfig_post_bind(struct udevice *dev)
177d90a5a30SMasahiro Yamada {
1788a5f6129SMasahiro Yamada 	return 0;
179d90a5a30SMasahiro Yamada }
180d90a5a30SMasahiro Yamada #endif
181d90a5a30SMasahiro Yamada 
182d90a5a30SMasahiro Yamada /**
183d90a5a30SMasahiro Yamada  * pinctrl_select_state_simple() - simple implementation of pinctrl_select_state
184d90a5a30SMasahiro Yamada  *
185d90a5a30SMasahiro Yamada  * @dev: peripheral device
186d90a5a30SMasahiro Yamada  * @return: 0 on success, or negative error code on failure
187d90a5a30SMasahiro Yamada  */
188d90a5a30SMasahiro Yamada static int pinctrl_select_state_simple(struct udevice *dev)
189d90a5a30SMasahiro Yamada {
190d90a5a30SMasahiro Yamada 	struct udevice *pctldev;
191d90a5a30SMasahiro Yamada 	struct pinctrl_ops *ops;
192d90a5a30SMasahiro Yamada 	int ret;
193d90a5a30SMasahiro Yamada 
194d90a5a30SMasahiro Yamada 	/*
195d90a5a30SMasahiro Yamada 	 * For simplicity, assume the first device of PINCTRL uclass
196d90a5a30SMasahiro Yamada 	 * is the correct one.  This is most likely OK as there is
197d90a5a30SMasahiro Yamada 	 * usually only one pinctrl device on the system.
198d90a5a30SMasahiro Yamada 	 */
199d90a5a30SMasahiro Yamada 	ret = uclass_get_device(UCLASS_PINCTRL, 0, &pctldev);
200d90a5a30SMasahiro Yamada 	if (ret)
201d90a5a30SMasahiro Yamada 		return ret;
202d90a5a30SMasahiro Yamada 
203d90a5a30SMasahiro Yamada 	ops = pinctrl_get_ops(pctldev);
204d90a5a30SMasahiro Yamada 	if (!ops->set_state_simple) {
205d90a5a30SMasahiro Yamada 		dev_dbg(dev, "set_state_simple op missing\n");
206d90a5a30SMasahiro Yamada 		return -ENOSYS;
207d90a5a30SMasahiro Yamada 	}
208d90a5a30SMasahiro Yamada 
209d90a5a30SMasahiro Yamada 	return ops->set_state_simple(pctldev, dev);
210d90a5a30SMasahiro Yamada }
211d90a5a30SMasahiro Yamada 
212d90a5a30SMasahiro Yamada int pinctrl_select_state(struct udevice *dev, const char *statename)
213d90a5a30SMasahiro Yamada {
214d90a5a30SMasahiro Yamada 	/*
215d90a5a30SMasahiro Yamada 	 * Try full-implemented pinctrl first.
216d90a5a30SMasahiro Yamada 	 * If it fails or is not implemented, try simple one.
217d90a5a30SMasahiro Yamada 	 */
218d90a5a30SMasahiro Yamada 	if (pinctrl_select_state_full(dev, statename))
219d90a5a30SMasahiro Yamada 		return pinctrl_select_state_simple(dev);
220d90a5a30SMasahiro Yamada 
221d90a5a30SMasahiro Yamada 	return 0;
222d90a5a30SMasahiro Yamada }
223d90a5a30SMasahiro Yamada 
224c5acf4a2SSimon Glass int pinctrl_request(struct udevice *dev, int func, int flags)
225c5acf4a2SSimon Glass {
226c5acf4a2SSimon Glass 	struct pinctrl_ops *ops = pinctrl_get_ops(dev);
227c5acf4a2SSimon Glass 
228c5acf4a2SSimon Glass 	if (!ops->request)
229c5acf4a2SSimon Glass 		return -ENOSYS;
230c5acf4a2SSimon Glass 
231c5acf4a2SSimon Glass 	return ops->request(dev, func, flags);
232c5acf4a2SSimon Glass }
233c5acf4a2SSimon Glass 
234c5acf4a2SSimon Glass int pinctrl_request_noflags(struct udevice *dev, int func)
235c5acf4a2SSimon Glass {
236c5acf4a2SSimon Glass 	return pinctrl_request(dev, func, 0);
237c5acf4a2SSimon Glass }
238c5acf4a2SSimon Glass 
239c5acf4a2SSimon Glass int pinctrl_get_periph_id(struct udevice *dev, struct udevice *periph)
240c5acf4a2SSimon Glass {
241c5acf4a2SSimon Glass 	struct pinctrl_ops *ops = pinctrl_get_ops(dev);
242c5acf4a2SSimon Glass 
243c5acf4a2SSimon Glass 	if (!ops->get_periph_id)
244c5acf4a2SSimon Glass 		return -ENOSYS;
245c5acf4a2SSimon Glass 
246c5acf4a2SSimon Glass 	return ops->get_periph_id(dev, periph);
247c5acf4a2SSimon Glass }
248c5acf4a2SSimon Glass 
249d90a5a30SMasahiro Yamada /**
250d90a5a30SMasahiro Yamada  * pinconfig_post-bind() - post binding for PINCTRL uclass
251d90a5a30SMasahiro Yamada  * Recursively bind child nodes as pinconfig devices in case of full pinctrl.
252d90a5a30SMasahiro Yamada  *
253d90a5a30SMasahiro Yamada  * @dev: pinctrl device
254d90a5a30SMasahiro Yamada  * @return: 0 on success, or negative error code on failure
255d90a5a30SMasahiro Yamada  */
256d90a5a30SMasahiro Yamada static int pinctrl_post_bind(struct udevice *dev)
257d90a5a30SMasahiro Yamada {
258d90a5a30SMasahiro Yamada 	const struct pinctrl_ops *ops = pinctrl_get_ops(dev);
259d90a5a30SMasahiro Yamada 
260d90a5a30SMasahiro Yamada 	if (!ops) {
261d90a5a30SMasahiro Yamada 		dev_dbg(dev, "ops is not set.  Do not bind.\n");
262d90a5a30SMasahiro Yamada 		return -EINVAL;
263d90a5a30SMasahiro Yamada 	}
264d90a5a30SMasahiro Yamada 
265d90a5a30SMasahiro Yamada 	/*
2668a5f6129SMasahiro Yamada 	 * If set_state callback is set, we assume this pinctrl driver is the
2678a5f6129SMasahiro Yamada 	 * full implementation.  In this case, its child nodes should be bound
2688a5f6129SMasahiro Yamada 	 * so that peripheral devices can easily search in parent devices
2698a5f6129SMasahiro Yamada 	 * during later DT-parsing.
270d90a5a30SMasahiro Yamada 	 */
2718a5f6129SMasahiro Yamada 	if (ops->set_state)
272d90a5a30SMasahiro Yamada 		return pinconfig_post_bind(dev);
2738a5f6129SMasahiro Yamada 
2748a5f6129SMasahiro Yamada 	return 0;
275d90a5a30SMasahiro Yamada }
276d90a5a30SMasahiro Yamada 
277d90a5a30SMasahiro Yamada UCLASS_DRIVER(pinctrl) = {
278d90a5a30SMasahiro Yamada 	.id = UCLASS_PINCTRL,
279d90a5a30SMasahiro Yamada 	.post_bind = pinctrl_post_bind,
280d90a5a30SMasahiro Yamada 	.name = "pinctrl",
281d90a5a30SMasahiro Yamada };
282