1 /* 2 * Copyright (C) 2016 IBM Corp. 3 * 4 * This program is free software; you can redistribute it and/or modify 5 * it under the terms of the GNU General Public License as published by 6 * the Free Software Foundation; either version 2 of the License, or 7 * (at your option) any later version. 8 */ 9 10 #include <linux/mfd/syscon.h> 11 #include <linux/platform_device.h> 12 #include <linux/slab.h> 13 #include <linux/string.h> 14 #include "../core.h" 15 #include "pinctrl-aspeed.h" 16 17 int aspeed_pinctrl_get_groups_count(struct pinctrl_dev *pctldev) 18 { 19 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 20 21 return pdata->ngroups; 22 } 23 24 const char *aspeed_pinctrl_get_group_name(struct pinctrl_dev *pctldev, 25 unsigned int group) 26 { 27 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 28 29 return pdata->groups[group].name; 30 } 31 32 int aspeed_pinctrl_get_group_pins(struct pinctrl_dev *pctldev, 33 unsigned int group, const unsigned int **pins, 34 unsigned int *npins) 35 { 36 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 37 38 *pins = &pdata->groups[group].pins[0]; 39 *npins = pdata->groups[group].npins; 40 41 return 0; 42 } 43 44 void aspeed_pinctrl_pin_dbg_show(struct pinctrl_dev *pctldev, 45 struct seq_file *s, unsigned int offset) 46 { 47 seq_printf(s, " %s", dev_name(pctldev->dev)); 48 } 49 50 int aspeed_pinmux_get_fn_count(struct pinctrl_dev *pctldev) 51 { 52 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 53 54 return pdata->nfunctions; 55 } 56 57 const char *aspeed_pinmux_get_fn_name(struct pinctrl_dev *pctldev, 58 unsigned int function) 59 { 60 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 61 62 return pdata->functions[function].name; 63 } 64 65 int aspeed_pinmux_get_fn_groups(struct pinctrl_dev *pctldev, 66 unsigned int function, 67 const char * const **groups, 68 unsigned int * const num_groups) 69 { 70 struct aspeed_pinctrl_data *pdata = pinctrl_dev_get_drvdata(pctldev); 71 72 *groups = pdata->functions[function].groups; 73 *num_groups = pdata->functions[function].ngroups; 74 75 return 0; 76 } 77 78 static inline void aspeed_sig_desc_print_val( 79 const struct aspeed_sig_desc *desc, bool enable, u32 rv) 80 { 81 pr_debug("SCU%x[0x%08x]=0x%x, got 0x%x from 0x%08x\n", desc->reg, 82 desc->mask, enable ? desc->enable : desc->disable, 83 (rv & desc->mask) >> __ffs(desc->mask), rv); 84 } 85 86 /** 87 * Query the enabled or disabled state of a signal descriptor 88 * 89 * @desc: The signal descriptor of interest 90 * @enabled: True to query the enabled state, false to query disabled state 91 * @regmap: The SCU regmap instance 92 * 93 * @return True if the descriptor's bitfield is configured to the state 94 * selected by @enabled, false otherwise 95 * 96 * Evaluation of descriptor state is non-trivial in that it is not a binary 97 * outcome: The bitfields can be greater than one bit in size and thus can take 98 * a value that is neither the enabled nor disabled state recorded in the 99 * descriptor (typically this means a different function to the one of interest 100 * is enabled). Thus we must explicitly test for either condition as required. 101 */ 102 static bool aspeed_sig_desc_eval(const struct aspeed_sig_desc *desc, 103 bool enabled, struct regmap *map) 104 { 105 unsigned int raw; 106 u32 want; 107 108 if (regmap_read(map, desc->reg, &raw) < 0) 109 return false; 110 111 aspeed_sig_desc_print_val(desc, enabled, raw); 112 want = enabled ? desc->enable : desc->disable; 113 114 return ((raw & desc->mask) >> __ffs(desc->mask)) == want; 115 } 116 117 /** 118 * Query the enabled or disabled state for a mux function's signal on a pin 119 * 120 * @expr: An expression controlling the signal for a mux function on a pin 121 * @enabled: True to query the enabled state, false to query disabled state 122 * @regmap: The SCU regmap instance 123 * 124 * @return True if the expression composed by @enabled evaluates true, false 125 * otherwise 126 * 127 * A mux function is enabled or disabled if the function's signal expression 128 * for each pin in the function's pin group evaluates true for the desired 129 * state. An signal expression evaluates true if all of its associated signal 130 * descriptors evaluate true for the desired state. 131 * 132 * If an expression's state is described by more than one bit, either through 133 * multi-bit bitfields in a single signal descriptor or through multiple signal 134 * descriptors of a single bit then it is possible for the expression to be in 135 * neither the enabled nor disabled state. Thus we must explicitly test for 136 * either condition as required. 137 */ 138 static bool aspeed_sig_expr_eval(const struct aspeed_sig_expr *expr, 139 bool enabled, struct regmap *map) 140 { 141 int i; 142 143 for (i = 0; i < expr->ndescs; i++) { 144 const struct aspeed_sig_desc *desc = &expr->descs[i]; 145 146 if (!aspeed_sig_desc_eval(desc, enabled, map)) 147 return false; 148 } 149 150 return true; 151 } 152 153 /** 154 * Configure a pin's signal by applying an expression's descriptor state for 155 * all descriptors in the expression. 156 * 157 * @expr: The expression associated with the function whose signal is to be 158 * configured 159 * @enable: true to enable an function's signal through a pin's signal 160 * expression, false to disable the function's signal 161 * @map: The SCU's regmap instance for pinmux register access. 162 * 163 * @return true if the expression is configured as requested, false otherwise 164 */ 165 static bool aspeed_sig_expr_set(const struct aspeed_sig_expr *expr, 166 bool enable, struct regmap *map) 167 { 168 int i; 169 170 for (i = 0; i < expr->ndescs; i++) { 171 bool ret; 172 const struct aspeed_sig_desc *desc = &expr->descs[i]; 173 u32 pattern = enable ? desc->enable : desc->disable; 174 175 /* 176 * Strap registers are configured in hardware or by early-boot 177 * firmware. Treat them as read-only despite that we can write 178 * them. This may mean that certain functions cannot be 179 * deconfigured and is the reason we re-evaluate after writing 180 * all descriptor bits. 181 */ 182 if (desc->reg == HW_STRAP1 || desc->reg == HW_STRAP2) 183 continue; 184 185 ret = regmap_update_bits(map, desc->reg, desc->mask, 186 pattern << __ffs(desc->mask)) == 0; 187 188 if (!ret) 189 return ret; 190 } 191 192 return aspeed_sig_expr_eval(expr, enable, map); 193 } 194 195 static bool aspeed_sig_expr_enable(const struct aspeed_sig_expr *expr, 196 struct regmap *map) 197 { 198 if (aspeed_sig_expr_eval(expr, true, map)) 199 return true; 200 201 return aspeed_sig_expr_set(expr, true, map); 202 } 203 204 static bool aspeed_sig_expr_disable(const struct aspeed_sig_expr *expr, 205 struct regmap *map) 206 { 207 if (!aspeed_sig_expr_eval(expr, true, map)) 208 return true; 209 210 return aspeed_sig_expr_set(expr, false, map); 211 } 212 213 /** 214 * Disable a signal on a pin by disabling all provided signal expressions. 215 * 216 * @exprs: The list of signal expressions (from a priority level on a pin) 217 * @map: The SCU's regmap instance for pinmux register access. 218 * 219 * @return true if all expressions in the list are successfully disabled, false 220 * otherwise 221 */ 222 static bool aspeed_disable_sig(const struct aspeed_sig_expr **exprs, 223 struct regmap *map) 224 { 225 bool disabled = true; 226 227 if (!exprs) 228 return true; 229 230 while (*exprs) { 231 bool ret; 232 233 ret = aspeed_sig_expr_disable(*exprs, map); 234 disabled = disabled && ret; 235 236 exprs++; 237 } 238 239 return disabled; 240 } 241 242 /** 243 * Search for the signal expression needed to enable the pin's signal for the 244 * requested function. 245 * 246 * @exprs: List of signal expressions (haystack) 247 * @name: The name of the requested function (needle) 248 * 249 * @return A pointer to the signal expression whose function tag matches the 250 * provided name, otherwise NULL. 251 * 252 */ 253 static const struct aspeed_sig_expr *aspeed_find_expr_by_name( 254 const struct aspeed_sig_expr **exprs, const char *name) 255 { 256 while (*exprs) { 257 if (strcmp((*exprs)->function, name) == 0) 258 return *exprs; 259 exprs++; 260 } 261 262 return NULL; 263 } 264 265 static char *get_defined_attribute(const struct aspeed_pin_desc *pdesc, 266 const char *(*get)( 267 const struct aspeed_sig_expr *)) 268 { 269 char *found = NULL; 270 size_t len = 0; 271 const struct aspeed_sig_expr ***prios, **funcs, *expr; 272 273 prios = pdesc->prios; 274 275 while ((funcs = *prios)) { 276 while ((expr = *funcs)) { 277 const char *str = get(expr); 278 size_t delta = strlen(str) + 2; 279 char *expanded; 280 281 expanded = krealloc(found, len + delta + 1, GFP_KERNEL); 282 if (!expanded) { 283 kfree(found); 284 return expanded; 285 } 286 287 found = expanded; 288 found[len] = '\0'; 289 len += delta; 290 291 strcat(found, str); 292 strcat(found, ", "); 293 294 funcs++; 295 } 296 prios++; 297 } 298 299 if (len < 2) { 300 kfree(found); 301 return NULL; 302 } 303 304 found[len - 2] = '\0'; 305 306 return found; 307 } 308 309 static const char *aspeed_sig_expr_function(const struct aspeed_sig_expr *expr) 310 { 311 return expr->function; 312 } 313 314 static char *get_defined_functions(const struct aspeed_pin_desc *pdesc) 315 { 316 return get_defined_attribute(pdesc, aspeed_sig_expr_function); 317 } 318 319 static const char *aspeed_sig_expr_signal(const struct aspeed_sig_expr *expr) 320 { 321 return expr->signal; 322 } 323 324 static char *get_defined_signals(const struct aspeed_pin_desc *pdesc) 325 { 326 return get_defined_attribute(pdesc, aspeed_sig_expr_signal); 327 } 328 329 int aspeed_pinmux_set_mux(struct pinctrl_dev *pctldev, unsigned int function, 330 unsigned int group) 331 { 332 int i; 333 const struct aspeed_pinctrl_data *pdata = 334 pinctrl_dev_get_drvdata(pctldev); 335 const struct aspeed_pin_group *pgroup = &pdata->groups[group]; 336 const struct aspeed_pin_function *pfunc = 337 &pdata->functions[function]; 338 339 for (i = 0; i < pgroup->npins; i++) { 340 int pin = pgroup->pins[i]; 341 const struct aspeed_pin_desc *pdesc = pdata->pins[pin].drv_data; 342 const struct aspeed_sig_expr *expr = NULL; 343 const struct aspeed_sig_expr **funcs; 344 const struct aspeed_sig_expr ***prios; 345 346 if (!pdesc) 347 return -EINVAL; 348 349 prios = pdesc->prios; 350 351 if (!prios) 352 continue; 353 354 /* Disable functions at a higher priority than that requested */ 355 while ((funcs = *prios)) { 356 expr = aspeed_find_expr_by_name(funcs, pfunc->name); 357 358 if (expr) 359 break; 360 361 if (!aspeed_disable_sig(funcs, pdata->map)) 362 return -EPERM; 363 364 prios++; 365 } 366 367 if (!expr) { 368 char *functions = get_defined_functions(pdesc); 369 char *signals = get_defined_signals(pdesc); 370 371 pr_warn("No function %s found on pin %s (%d). Found signal(s) %s for function(s) %s\n", 372 pfunc->name, pdesc->name, pin, signals, 373 functions); 374 kfree(signals); 375 kfree(functions); 376 377 return -ENXIO; 378 } 379 380 if (!aspeed_sig_expr_enable(expr, pdata->map)) 381 return -EPERM; 382 } 383 384 return 0; 385 } 386 387 static bool aspeed_expr_is_gpio(const struct aspeed_sig_expr *expr) 388 { 389 /* 390 * The signal type is GPIO if the signal name has "GPIO" as a prefix. 391 * strncmp (rather than strcmp) is used to implement the prefix 392 * requirement. 393 * 394 * expr->signal might look like "GPIOT3" in the GPIO case. 395 */ 396 return strncmp(expr->signal, "GPIO", 4) == 0; 397 } 398 399 static bool aspeed_gpio_in_exprs(const struct aspeed_sig_expr **exprs) 400 { 401 if (!exprs) 402 return false; 403 404 while (*exprs) { 405 if (aspeed_expr_is_gpio(*exprs)) 406 return true; 407 exprs++; 408 } 409 410 return false; 411 } 412 413 int aspeed_gpio_request_enable(struct pinctrl_dev *pctldev, 414 struct pinctrl_gpio_range *range, 415 unsigned int offset) 416 { 417 const struct aspeed_pinctrl_data *pdata = 418 pinctrl_dev_get_drvdata(pctldev); 419 const struct aspeed_pin_desc *pdesc = pdata->pins[offset].drv_data; 420 const struct aspeed_sig_expr ***prios, **funcs, *expr; 421 422 if (!pdesc) 423 return -EINVAL; 424 425 prios = pdesc->prios; 426 427 if (!prios) 428 return -ENXIO; 429 430 /* Disable any functions of higher priority than GPIO */ 431 while ((funcs = *prios)) { 432 if (aspeed_gpio_in_exprs(funcs)) 433 break; 434 435 if (!aspeed_disable_sig(funcs, pdata->map)) 436 return -EPERM; 437 438 prios++; 439 } 440 441 if (!funcs) { 442 char *signals = get_defined_signals(pdesc); 443 444 pr_warn("No GPIO signal type found on pin %s (%d). Found: %s\n", 445 pdesc->name, offset, signals); 446 kfree(signals); 447 448 return -ENXIO; 449 } 450 451 expr = *funcs; 452 453 /* 454 * Disabling all higher-priority expressions is enough to enable the 455 * lowest-priority signal type. As such it has no associated 456 * expression. 457 */ 458 if (!expr) 459 return 0; 460 461 /* 462 * If GPIO is not the lowest priority signal type, assume there is only 463 * one expression defined to enable the GPIO function 464 */ 465 if (!aspeed_sig_expr_enable(expr, pdata->map)) 466 return -EPERM; 467 468 return 0; 469 } 470 471 int aspeed_pinctrl_probe(struct platform_device *pdev, 472 struct pinctrl_desc *pdesc, 473 struct aspeed_pinctrl_data *pdata) 474 { 475 struct device *parent; 476 struct pinctrl_dev *pctl; 477 478 parent = pdev->dev.parent; 479 if (!parent) { 480 dev_err(&pdev->dev, "No parent for syscon pincontroller\n"); 481 return -ENODEV; 482 } 483 484 pdata->map = syscon_node_to_regmap(parent->of_node); 485 if (IS_ERR(pdata->map)) { 486 dev_err(&pdev->dev, "No regmap for syscon pincontroller parent\n"); 487 return PTR_ERR(pdata->map); 488 } 489 490 pctl = pinctrl_register(pdesc, &pdev->dev, pdata); 491 492 if (IS_ERR(pctl)) { 493 dev_err(&pdev->dev, "Failed to register pinctrl\n"); 494 return PTR_ERR(pctl); 495 } 496 497 platform_set_drvdata(pdev, pdata); 498 499 return 0; 500 } 501