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1 /*
2  * Core driver for the generic pin config portions of the pin control subsystem
3  *
4  * Copyright (C) 2011 ST-Ericsson SA
5  * Written on behalf of Linaro for ST-Ericsson
6  *
7  * Author: Linus Walleij <linus.walleij@linaro.org>
8  *
9  * License terms: GNU General Public License (GPL) version 2
10  */
11
12 #define pr_fmt(fmt) "generic pinconfig core: " fmt
13
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/init.h>
17 #include <linux/device.h>
18 #include <linux/slab.h>
19 #include <linux/debugfs.h>
20 #include <linux/seq_file.h>
21 #include <linux/pinctrl/pinctrl.h>
22 #include <linux/pinctrl/pinconf.h>
23 #include <linux/pinctrl/pinconf-generic.h>
24 #include <linux/of.h>
25 #include "core.h"
26 #include "pinconf.h"
27 #include "pinctrl-utils.h"
28
29 #ifdef CONFIG_DEBUG_FS
30 static const struct pin_config_item conf_items[] = {
31         PCONFDUMP(PIN_CONFIG_BIAS_BUS_HOLD, "input bias bus hold", NULL, false),
32         PCONFDUMP(PIN_CONFIG_BIAS_DISABLE, "input bias disabled", NULL, false),
33         PCONFDUMP(PIN_CONFIG_BIAS_HIGH_IMPEDANCE, "input bias high impedance", NULL, false),
34         PCONFDUMP(PIN_CONFIG_BIAS_PULL_DOWN, "input bias pull down", NULL, false),
35         PCONFDUMP(PIN_CONFIG_BIAS_PULL_PIN_DEFAULT,
36                                 "input bias pull to pin specific state", NULL, false),
37         PCONFDUMP(PIN_CONFIG_BIAS_PULL_UP, "input bias pull up", NULL, false),
38         PCONFDUMP(PIN_CONFIG_BIDIRECTIONAL, "bi-directional pin operations", NULL, false),
39         PCONFDUMP(PIN_CONFIG_DRIVE_OPEN_DRAIN, "output drive open drain", NULL, false),
40         PCONFDUMP(PIN_CONFIG_DRIVE_OPEN_SOURCE, "output drive open source", NULL, false),
41         PCONFDUMP(PIN_CONFIG_DRIVE_PUSH_PULL, "output drive push pull", NULL, false),
42         PCONFDUMP(PIN_CONFIG_DRIVE_STRENGTH, "output drive strength", "mA", true),
43         PCONFDUMP(PIN_CONFIG_INPUT_DEBOUNCE, "input debounce", "usec", true),
44         PCONFDUMP(PIN_CONFIG_INPUT_ENABLE, "input enabled", NULL, false),
45         PCONFDUMP(PIN_CONFIG_INPUT_SCHMITT, "input schmitt trigger", NULL, false),
46         PCONFDUMP(PIN_CONFIG_INPUT_SCHMITT_ENABLE, "input schmitt enabled", NULL, false),
47         PCONFDUMP(PIN_CONFIG_LOW_POWER_MODE, "pin low power", "mode", true),
48         PCONFDUMP(PIN_CONFIG_OUTPUT, "pin output", "level", true),
49         PCONFDUMP(PIN_CONFIG_POWER_SOURCE, "pin power source", "selector", true),
50         PCONFDUMP(PIN_CONFIG_SLEW_RATE, "slew rate", NULL, true),
51 };
52
53 static void pinconf_generic_dump_one(struct pinctrl_dev *pctldev,
54                                      struct seq_file *s, const char *gname,
55                                      unsigned pin,
56                                      const struct pin_config_item *items,
57                                      int nitems, int *print_sep)
58 {
59         int i;
60
61         for (i = 0; i < nitems; i++) {
62                 unsigned long config;
63                 int ret;
64
65                 /* We want to check out this parameter */
66                 config = pinconf_to_config_packed(items[i].param, 0);
67                 if (gname)
68                         ret = pin_config_group_get(dev_name(pctldev->dev),
69                                                    gname, &config);
70                 else
71                         ret = pin_config_get_for_pin(pctldev, pin, &config);
72                 /* These are legal errors */
73                 if (ret == -EINVAL || ret == -ENOTSUPP)
74                         continue;
75                 if (ret) {
76                         seq_printf(s, "ERROR READING CONFIG SETTING %d ", i);
77                         continue;
78                 }
79                 /* comma between multiple configs */
80                 if (*print_sep)
81                         seq_puts(s, ", ");
82                 *print_sep = 1;
83                 seq_puts(s, items[i].display);
84                 /* Print unit if available */
85                 if (items[i].has_arg) {
86                         seq_printf(s, " (%u",
87                                    pinconf_to_config_argument(config));
88                         if (items[i].format)
89                                 seq_printf(s, " %s)", items[i].format);
90                         else
91                                 seq_puts(s, ")");
92                 }
93         }
94 }
95
96 /**
97  * pinconf_generic_dump_pins - Print information about pin or group of pins
98  * @pctldev:    Pincontrol device
99  * @s:          File to print to
100  * @gname:      Group name specifying pins
101  * @pin:        Pin number specyfying pin
102  *
103  * Print the pinconf configuration for the requested pin(s) to @s. Pins can be
104  * specified either by pin using @pin or by group using @gname. Only one needs
105  * to be specified the other can be NULL/0.
106  */
107 void pinconf_generic_dump_pins(struct pinctrl_dev *pctldev, struct seq_file *s,
108                                const char *gname, unsigned pin)
109 {
110         const struct pinconf_ops *ops = pctldev->desc->confops;
111         int print_sep = 0;
112
113         if (!ops->is_generic)
114                 return;
115
116         /* generic parameters */
117         pinconf_generic_dump_one(pctldev, s, gname, pin, conf_items,
118                                  ARRAY_SIZE(conf_items), &print_sep);
119         /* driver-specific parameters */
120         if (pctldev->desc->num_custom_params &&
121             pctldev->desc->custom_conf_items)
122                 pinconf_generic_dump_one(pctldev, s, gname, pin,
123                                          pctldev->desc->custom_conf_items,
124                                          pctldev->desc->num_custom_params,
125                                          &print_sep);
126 }
127
128 void pinconf_generic_dump_config(struct pinctrl_dev *pctldev,
129                                  struct seq_file *s, unsigned long config)
130 {
131         int i;
132
133         for (i = 0; i < ARRAY_SIZE(conf_items); i++) {
134                 if (pinconf_to_config_param(config) != conf_items[i].param)
135                         continue;
136                 seq_printf(s, "%s: 0x%x", conf_items[i].display,
137                            pinconf_to_config_argument(config));
138         }
139
140         if (!pctldev->desc->num_custom_params ||
141             !pctldev->desc->custom_conf_items)
142                 return;
143
144         for (i = 0; i < pctldev->desc->num_custom_params; i++) {
145                 if (pinconf_to_config_param(config) !=
146                     pctldev->desc->custom_conf_items[i].param)
147                         continue;
148                 seq_printf(s, "%s: 0x%x",
149                                 pctldev->desc->custom_conf_items[i].display,
150                                 pinconf_to_config_argument(config));
151         }
152 }
153 EXPORT_SYMBOL_GPL(pinconf_generic_dump_config);
154 #endif
155
156 #ifdef CONFIG_OF
157 static const struct pinconf_generic_params dt_params[] = {
158         { "bias-bus-hold", PIN_CONFIG_BIAS_BUS_HOLD, 0 },
159         { "bias-disable", PIN_CONFIG_BIAS_DISABLE, 0 },
160         { "bias-high-impedance", PIN_CONFIG_BIAS_HIGH_IMPEDANCE, 0 },
161         { "bias-pull-up", PIN_CONFIG_BIAS_PULL_UP, 1 },
162         { "bias-pull-pin-default", PIN_CONFIG_BIAS_PULL_PIN_DEFAULT, 1 },
163         { "bias-pull-down", PIN_CONFIG_BIAS_PULL_DOWN, 1 },
164         { "bi-directional", PIN_CONFIG_BIDIRECTIONAL, 1 },
165         { "drive-open-drain", PIN_CONFIG_DRIVE_OPEN_DRAIN, 0 },
166         { "drive-open-source", PIN_CONFIG_DRIVE_OPEN_SOURCE, 0 },
167         { "drive-push-pull", PIN_CONFIG_DRIVE_PUSH_PULL, 0 },
168         { "drive-strength", PIN_CONFIG_DRIVE_STRENGTH, 0 },
169         { "input-debounce", PIN_CONFIG_INPUT_DEBOUNCE, 0 },
170         { "input-disable", PIN_CONFIG_INPUT_ENABLE, 0 },
171         { "input-enable", PIN_CONFIG_INPUT_ENABLE, 1 },
172         { "input-schmitt", PIN_CONFIG_INPUT_SCHMITT, 0 },
173         { "input-schmitt-disable", PIN_CONFIG_INPUT_SCHMITT_ENABLE, 0 },
174         { "input-schmitt-enable", PIN_CONFIG_INPUT_SCHMITT_ENABLE, 1 },
175         { "low-power-disable", PIN_CONFIG_LOW_POWER_MODE, 0 },
176         { "low-power-enable", PIN_CONFIG_LOW_POWER_MODE, 1 },
177         { "output-enable", PIN_CONFIG_OUTPUT, 1, },
178         { "output-high", PIN_CONFIG_OUTPUT, 1, },
179         { "output-low", PIN_CONFIG_OUTPUT, 0, },
180         { "power-source", PIN_CONFIG_POWER_SOURCE, 0 },
181         { "slew-rate", PIN_CONFIG_SLEW_RATE, 0 },
182 };
183
184 /**
185  * parse_dt_cfg() - Parse DT pinconf parameters
186  * @np: DT node
187  * @params:     Array of describing generic parameters
188  * @count:      Number of entries in @params
189  * @cfg:        Array of parsed config options
190  * @ncfg:       Number of entries in @cfg
191  *
192  * Parse the config options described in @params from @np and puts the result
193  * in @cfg. @cfg does not need to be empty, entries are added beginning at
194  * @ncfg. @ncfg is updated to reflect the number of entries after parsing. @cfg
195  * needs to have enough memory allocated to hold all possible entries.
196  */
197 static void parse_dt_cfg(struct device_node *np,
198                          const struct pinconf_generic_params *params,
199                          unsigned int count, unsigned long *cfg,
200                          unsigned int *ncfg)
201 {
202         int i;
203
204         for (i = 0; i < count; i++) {
205                 u32 val;
206                 int ret;
207                 const struct pinconf_generic_params *par = &params[i];
208
209                 ret = of_property_read_u32(np, par->property, &val);
210
211                 /* property not found */
212                 if (ret == -EINVAL)
213                         continue;
214
215                 /* use default value, when no value is specified */
216                 if (ret)
217                         val = par->default_value;
218
219                 pr_debug("found %s with value %u\n", par->property, val);
220                 cfg[*ncfg] = pinconf_to_config_packed(par->param, val);
221                 (*ncfg)++;
222         }
223 }
224
225 /**
226  * pinconf_generic_parse_dt_config()
227  * parse the config properties into generic pinconfig values.
228  * @np: node containing the pinconfig properties
229  * @configs: array with nconfigs entries containing the generic pinconf values
230  *           must be freed when no longer necessary.
231  * @nconfigs: umber of configurations
232  */
233 int pinconf_generic_parse_dt_config(struct device_node *np,
234                                     struct pinctrl_dev *pctldev,
235                                     unsigned long **configs,
236                                     unsigned int *nconfigs)
237 {
238         unsigned long *cfg;
239         unsigned int max_cfg, ncfg = 0;
240         int ret;
241
242         if (!np)
243                 return -EINVAL;
244
245         /* allocate a temporary array big enough to hold one of each option */
246         max_cfg = ARRAY_SIZE(dt_params);
247         if (pctldev)
248                 max_cfg += pctldev->desc->num_custom_params;
249         cfg = kcalloc(max_cfg, sizeof(*cfg), GFP_KERNEL);
250         if (!cfg)
251                 return -ENOMEM;
252
253         parse_dt_cfg(np, dt_params, ARRAY_SIZE(dt_params), cfg, &ncfg);
254         if (pctldev && pctldev->desc->num_custom_params &&
255                 pctldev->desc->custom_params)
256                 parse_dt_cfg(np, pctldev->desc->custom_params,
257                              pctldev->desc->num_custom_params, cfg, &ncfg);
258
259         ret = 0;
260
261         /* no configs found at all */
262         if (ncfg == 0) {
263                 *configs = NULL;
264                 *nconfigs = 0;
265                 goto out;
266         }
267
268         /*
269          * Now limit the number of configs to the real number of
270          * found properties.
271          */
272         *configs = kmemdup(cfg, ncfg * sizeof(unsigned long), GFP_KERNEL);
273         if (!*configs) {
274                 ret = -ENOMEM;
275                 goto out;
276         }
277
278         *nconfigs = ncfg;
279
280 out:
281         kfree(cfg);
282         return ret;
283 }
284
285 int pinconf_generic_dt_subnode_to_map(struct pinctrl_dev *pctldev,
286                 struct device_node *np, struct pinctrl_map **map,
287                 unsigned *reserved_maps, unsigned *num_maps,
288                 enum pinctrl_map_type type)
289 {
290         int ret;
291         const char *function;
292         struct device *dev = pctldev->dev;
293         unsigned long *configs = NULL;
294         unsigned num_configs = 0;
295         unsigned reserve, strings_count;
296         struct property *prop;
297         const char *group;
298         const char *subnode_target_type = "pins";
299
300         ret = of_property_count_strings(np, "pins");
301         if (ret < 0) {
302                 ret = of_property_count_strings(np, "groups");
303                 if (ret < 0)
304                         /* skip this node; may contain config child nodes */
305                         return 0;
306                 if (type == PIN_MAP_TYPE_INVALID)
307                         type = PIN_MAP_TYPE_CONFIGS_GROUP;
308                 subnode_target_type = "groups";
309         } else {
310                 if (type == PIN_MAP_TYPE_INVALID)
311                         type = PIN_MAP_TYPE_CONFIGS_PIN;
312         }
313         strings_count = ret;
314
315         ret = of_property_read_string(np, "function", &function);
316         if (ret < 0) {
317                 /* EINVAL=missing, which is fine since it's optional */
318                 if (ret != -EINVAL)
319                         dev_err(dev, "%s: could not parse property function\n",
320                                 of_node_full_name(np));
321                 function = NULL;
322         }
323
324         ret = pinconf_generic_parse_dt_config(np, pctldev, &configs,
325                                               &num_configs);
326         if (ret < 0) {
327                 dev_err(dev, "%s: could not parse node property\n",
328                         of_node_full_name(np));
329                 return ret;
330         }
331
332         reserve = 0;
333         if (function != NULL)
334                 reserve++;
335         if (num_configs)
336                 reserve++;
337
338         reserve *= strings_count;
339
340         ret = pinctrl_utils_reserve_map(pctldev, map, reserved_maps,
341                         num_maps, reserve);
342         if (ret < 0)
343                 goto exit;
344
345         of_property_for_each_string(np, subnode_target_type, prop, group) {
346                 if (function) {
347                         ret = pinctrl_utils_add_map_mux(pctldev, map,
348                                         reserved_maps, num_maps, group,
349                                         function);
350                         if (ret < 0)
351                                 goto exit;
352                 }
353
354                 if (num_configs) {
355                         ret = pinctrl_utils_add_map_configs(pctldev, map,
356                                         reserved_maps, num_maps, group, configs,
357                                         num_configs, type);
358                         if (ret < 0)
359                                 goto exit;
360                 }
361         }
362         ret = 0;
363
364 exit:
365         kfree(configs);
366         return ret;
367 }
368 EXPORT_SYMBOL_GPL(pinconf_generic_dt_subnode_to_map);
369
370 int pinconf_generic_dt_node_to_map(struct pinctrl_dev *pctldev,
371                 struct device_node *np_config, struct pinctrl_map **map,
372                 unsigned *num_maps, enum pinctrl_map_type type)
373 {
374         unsigned reserved_maps;
375         struct device_node *np;
376         int ret;
377
378         reserved_maps = 0;
379         *map = NULL;
380         *num_maps = 0;
381
382         ret = pinconf_generic_dt_subnode_to_map(pctldev, np_config, map,
383                                                 &reserved_maps, num_maps, type);
384         if (ret < 0)
385                 goto exit;
386
387         for_each_available_child_of_node(np_config, np) {
388                 ret = pinconf_generic_dt_subnode_to_map(pctldev, np, map,
389                                         &reserved_maps, num_maps, type);
390                 if (ret < 0)
391                         goto exit;
392         }
393         return 0;
394
395 exit:
396         pinctrl_utils_free_map(pctldev, *map, *num_maps);
397         return ret;
398 }
399 EXPORT_SYMBOL_GPL(pinconf_generic_dt_node_to_map);
400
401 void pinconf_generic_dt_free_map(struct pinctrl_dev *pctldev,
402                                  struct pinctrl_map *map,
403                                  unsigned num_maps)
404 {
405         pinctrl_utils_free_map(pctldev, map, num_maps);
406 }
407 EXPORT_SYMBOL_GPL(pinconf_generic_dt_free_map);
408
409 #endif