1 /* 2 * drivers/net/phy/micrel.c 3 * 4 * Driver for Micrel PHYs 5 * 6 * Author: David J. Choi 7 * 8 * Copyright (c) 2010-2013 Micrel, Inc. 9 * Copyright (c) 2014 Johan Hovold <johan@kernel.org> 10 * 11 * This program is free software; you can redistribute it and/or modify it 12 * under the terms of the GNU General Public License as published by the 13 * Free Software Foundation; either version 2 of the License, or (at your 14 * option) any later version. 15 * 16 * Support : Micrel Phys: 17 * Giga phys: ksz9021, ksz9031 18 * 100/10 Phys : ksz8001, ksz8721, ksz8737, ksz8041 19 * ksz8021, ksz8031, ksz8051, 20 * ksz8081, ksz8091, 21 * ksz8061, 22 * Switch : ksz8873, ksz886x 23 */ 24 25 #include <linux/kernel.h> 26 #include <linux/module.h> 27 #include <linux/phy.h> 28 #include <linux/micrel_phy.h> 29 #include <linux/of.h> 30 #include <linux/clk.h> 31 32 /* Operation Mode Strap Override */ 33 #define MII_KSZPHY_OMSO 0x16 34 #define KSZPHY_OMSO_B_CAST_OFF BIT(9) 35 #define KSZPHY_OMSO_NAND_TREE_ON BIT(5) 36 #define KSZPHY_OMSO_RMII_OVERRIDE BIT(1) 37 #define KSZPHY_OMSO_MII_OVERRIDE BIT(0) 38 39 /* general Interrupt control/status reg in vendor specific block. */ 40 #define MII_KSZPHY_INTCS 0x1B 41 #define KSZPHY_INTCS_JABBER BIT(15) 42 #define KSZPHY_INTCS_RECEIVE_ERR BIT(14) 43 #define KSZPHY_INTCS_PAGE_RECEIVE BIT(13) 44 #define KSZPHY_INTCS_PARELLEL BIT(12) 45 #define KSZPHY_INTCS_LINK_PARTNER_ACK BIT(11) 46 #define KSZPHY_INTCS_LINK_DOWN BIT(10) 47 #define KSZPHY_INTCS_REMOTE_FAULT BIT(9) 48 #define KSZPHY_INTCS_LINK_UP BIT(8) 49 #define KSZPHY_INTCS_ALL (KSZPHY_INTCS_LINK_UP |\ 50 KSZPHY_INTCS_LINK_DOWN) 51 52 /* PHY Control 1 */ 53 #define MII_KSZPHY_CTRL_1 0x1e 54 55 /* PHY Control 2 / PHY Control (if no PHY Control 1) */ 56 #define MII_KSZPHY_CTRL_2 0x1f 57 #define MII_KSZPHY_CTRL MII_KSZPHY_CTRL_2 58 /* bitmap of PHY register to set interrupt mode */ 59 #define KSZPHY_CTRL_INT_ACTIVE_HIGH BIT(9) 60 #define KSZPHY_RMII_REF_CLK_SEL BIT(7) 61 62 /* Write/read to/from extended registers */ 63 #define MII_KSZPHY_EXTREG 0x0b 64 #define KSZPHY_EXTREG_WRITE 0x8000 65 66 #define MII_KSZPHY_EXTREG_WRITE 0x0c 67 #define MII_KSZPHY_EXTREG_READ 0x0d 68 69 /* Extended registers */ 70 #define MII_KSZPHY_CLK_CONTROL_PAD_SKEW 0x104 71 #define MII_KSZPHY_RX_DATA_PAD_SKEW 0x105 72 #define MII_KSZPHY_TX_DATA_PAD_SKEW 0x106 73 74 #define PS_TO_REG 200 75 76 struct kszphy_hw_stat { 77 const char *string; 78 u8 reg; 79 u8 bits; 80 }; 81 82 static struct kszphy_hw_stat kszphy_hw_stats[] = { 83 { "phy_receive_errors", 21, 16}, 84 { "phy_idle_errors", 10, 8 }, 85 }; 86 87 struct kszphy_type { 88 u32 led_mode_reg; 89 u16 interrupt_level_mask; 90 bool has_broadcast_disable; 91 bool has_nand_tree_disable; 92 bool has_rmii_ref_clk_sel; 93 }; 94 95 struct kszphy_priv { 96 const struct kszphy_type *type; 97 int led_mode; 98 bool rmii_ref_clk_sel; 99 bool rmii_ref_clk_sel_val; 100 u64 stats[ARRAY_SIZE(kszphy_hw_stats)]; 101 }; 102 103 static const struct kszphy_type ksz8021_type = { 104 .led_mode_reg = MII_KSZPHY_CTRL_2, 105 .has_broadcast_disable = true, 106 .has_nand_tree_disable = true, 107 .has_rmii_ref_clk_sel = true, 108 }; 109 110 static const struct kszphy_type ksz8041_type = { 111 .led_mode_reg = MII_KSZPHY_CTRL_1, 112 }; 113 114 static const struct kszphy_type ksz8051_type = { 115 .led_mode_reg = MII_KSZPHY_CTRL_2, 116 .has_nand_tree_disable = true, 117 }; 118 119 static const struct kszphy_type ksz8081_type = { 120 .led_mode_reg = MII_KSZPHY_CTRL_2, 121 .has_broadcast_disable = true, 122 .has_nand_tree_disable = true, 123 .has_rmii_ref_clk_sel = true, 124 }; 125 126 static const struct kszphy_type ks8737_type = { 127 .interrupt_level_mask = BIT(14), 128 }; 129 130 static const struct kszphy_type ksz9021_type = { 131 .interrupt_level_mask = BIT(14), 132 }; 133 134 static int kszphy_extended_write(struct phy_device *phydev, 135 u32 regnum, u16 val) 136 { 137 phy_write(phydev, MII_KSZPHY_EXTREG, KSZPHY_EXTREG_WRITE | regnum); 138 return phy_write(phydev, MII_KSZPHY_EXTREG_WRITE, val); 139 } 140 141 static int kszphy_extended_read(struct phy_device *phydev, 142 u32 regnum) 143 { 144 phy_write(phydev, MII_KSZPHY_EXTREG, regnum); 145 return phy_read(phydev, MII_KSZPHY_EXTREG_READ); 146 } 147 148 static int kszphy_ack_interrupt(struct phy_device *phydev) 149 { 150 /* bit[7..0] int status, which is a read and clear register. */ 151 int rc; 152 153 rc = phy_read(phydev, MII_KSZPHY_INTCS); 154 155 return (rc < 0) ? rc : 0; 156 } 157 158 static int kszphy_config_intr(struct phy_device *phydev) 159 { 160 const struct kszphy_type *type = phydev->drv->driver_data; 161 int temp; 162 u16 mask; 163 164 if (type && type->interrupt_level_mask) 165 mask = type->interrupt_level_mask; 166 else 167 mask = KSZPHY_CTRL_INT_ACTIVE_HIGH; 168 169 /* set the interrupt pin active low */ 170 temp = phy_read(phydev, MII_KSZPHY_CTRL); 171 if (temp < 0) 172 return temp; 173 temp &= ~mask; 174 phy_write(phydev, MII_KSZPHY_CTRL, temp); 175 176 /* enable / disable interrupts */ 177 if (phydev->interrupts == PHY_INTERRUPT_ENABLED) 178 temp = KSZPHY_INTCS_ALL; 179 else 180 temp = 0; 181 182 return phy_write(phydev, MII_KSZPHY_INTCS, temp); 183 } 184 185 static int kszphy_rmii_clk_sel(struct phy_device *phydev, bool val) 186 { 187 int ctrl; 188 189 ctrl = phy_read(phydev, MII_KSZPHY_CTRL); 190 if (ctrl < 0) 191 return ctrl; 192 193 if (val) 194 ctrl |= KSZPHY_RMII_REF_CLK_SEL; 195 else 196 ctrl &= ~KSZPHY_RMII_REF_CLK_SEL; 197 198 return phy_write(phydev, MII_KSZPHY_CTRL, ctrl); 199 } 200 201 static int kszphy_setup_led(struct phy_device *phydev, u32 reg, int val) 202 { 203 int rc, temp, shift; 204 205 switch (reg) { 206 case MII_KSZPHY_CTRL_1: 207 shift = 14; 208 break; 209 case MII_KSZPHY_CTRL_2: 210 shift = 4; 211 break; 212 default: 213 return -EINVAL; 214 } 215 216 temp = phy_read(phydev, reg); 217 if (temp < 0) { 218 rc = temp; 219 goto out; 220 } 221 222 temp &= ~(3 << shift); 223 temp |= val << shift; 224 rc = phy_write(phydev, reg, temp); 225 out: 226 if (rc < 0) 227 phydev_err(phydev, "failed to set led mode\n"); 228 229 return rc; 230 } 231 232 /* Disable PHY address 0 as the broadcast address, so that it can be used as a 233 * unique (non-broadcast) address on a shared bus. 234 */ 235 static int kszphy_broadcast_disable(struct phy_device *phydev) 236 { 237 int ret; 238 239 ret = phy_read(phydev, MII_KSZPHY_OMSO); 240 if (ret < 0) 241 goto out; 242 243 ret = phy_write(phydev, MII_KSZPHY_OMSO, ret | KSZPHY_OMSO_B_CAST_OFF); 244 out: 245 if (ret) 246 phydev_err(phydev, "failed to disable broadcast address\n"); 247 248 return ret; 249 } 250 251 static int kszphy_nand_tree_disable(struct phy_device *phydev) 252 { 253 int ret; 254 255 ret = phy_read(phydev, MII_KSZPHY_OMSO); 256 if (ret < 0) 257 goto out; 258 259 if (!(ret & KSZPHY_OMSO_NAND_TREE_ON)) 260 return 0; 261 262 ret = phy_write(phydev, MII_KSZPHY_OMSO, 263 ret & ~KSZPHY_OMSO_NAND_TREE_ON); 264 out: 265 if (ret) 266 phydev_err(phydev, "failed to disable NAND tree mode\n"); 267 268 return ret; 269 } 270 271 static int kszphy_config_init(struct phy_device *phydev) 272 { 273 struct kszphy_priv *priv = phydev->priv; 274 const struct kszphy_type *type; 275 int ret; 276 277 if (!priv) 278 return 0; 279 280 type = priv->type; 281 282 if (type->has_broadcast_disable) 283 kszphy_broadcast_disable(phydev); 284 285 if (type->has_nand_tree_disable) 286 kszphy_nand_tree_disable(phydev); 287 288 if (priv->rmii_ref_clk_sel) { 289 ret = kszphy_rmii_clk_sel(phydev, priv->rmii_ref_clk_sel_val); 290 if (ret) { 291 phydev_err(phydev, 292 "failed to set rmii reference clock\n"); 293 return ret; 294 } 295 } 296 297 if (priv->led_mode >= 0) 298 kszphy_setup_led(phydev, type->led_mode_reg, priv->led_mode); 299 300 if (phy_interrupt_is_valid(phydev)) { 301 int ctl = phy_read(phydev, MII_BMCR); 302 303 if (ctl < 0) 304 return ctl; 305 306 ret = phy_write(phydev, MII_BMCR, ctl & ~BMCR_ANENABLE); 307 if (ret < 0) 308 return ret; 309 } 310 311 return 0; 312 } 313 314 static int ksz8041_config_init(struct phy_device *phydev) 315 { 316 struct device_node *of_node = phydev->mdio.dev.of_node; 317 318 /* Limit supported and advertised modes in fiber mode */ 319 if (of_property_read_bool(of_node, "micrel,fiber-mode")) { 320 phydev->dev_flags |= MICREL_PHY_FXEN; 321 phydev->supported &= SUPPORTED_100baseT_Full | 322 SUPPORTED_100baseT_Half; 323 phydev->supported |= SUPPORTED_FIBRE; 324 phydev->advertising &= ADVERTISED_100baseT_Full | 325 ADVERTISED_100baseT_Half; 326 phydev->advertising |= ADVERTISED_FIBRE; 327 phydev->autoneg = AUTONEG_DISABLE; 328 } 329 330 return kszphy_config_init(phydev); 331 } 332 333 static int ksz8041_config_aneg(struct phy_device *phydev) 334 { 335 /* Skip auto-negotiation in fiber mode */ 336 if (phydev->dev_flags & MICREL_PHY_FXEN) { 337 phydev->speed = SPEED_100; 338 return 0; 339 } 340 341 return genphy_config_aneg(phydev); 342 } 343 344 static int ksz9021_load_values_from_of(struct phy_device *phydev, 345 const struct device_node *of_node, 346 u16 reg, 347 const char *field1, const char *field2, 348 const char *field3, const char *field4) 349 { 350 int val1 = -1; 351 int val2 = -2; 352 int val3 = -3; 353 int val4 = -4; 354 int newval; 355 int matches = 0; 356 357 if (!of_property_read_u32(of_node, field1, &val1)) 358 matches++; 359 360 if (!of_property_read_u32(of_node, field2, &val2)) 361 matches++; 362 363 if (!of_property_read_u32(of_node, field3, &val3)) 364 matches++; 365 366 if (!of_property_read_u32(of_node, field4, &val4)) 367 matches++; 368 369 if (!matches) 370 return 0; 371 372 if (matches < 4) 373 newval = kszphy_extended_read(phydev, reg); 374 else 375 newval = 0; 376 377 if (val1 != -1) 378 newval = ((newval & 0xfff0) | ((val1 / PS_TO_REG) & 0xf) << 0); 379 380 if (val2 != -2) 381 newval = ((newval & 0xff0f) | ((val2 / PS_TO_REG) & 0xf) << 4); 382 383 if (val3 != -3) 384 newval = ((newval & 0xf0ff) | ((val3 / PS_TO_REG) & 0xf) << 8); 385 386 if (val4 != -4) 387 newval = ((newval & 0x0fff) | ((val4 / PS_TO_REG) & 0xf) << 12); 388 389 return kszphy_extended_write(phydev, reg, newval); 390 } 391 392 static int ksz9021_config_init(struct phy_device *phydev) 393 { 394 const struct device *dev = &phydev->mdio.dev; 395 const struct device_node *of_node = dev->of_node; 396 const struct device *dev_walker; 397 398 /* The Micrel driver has a deprecated option to place phy OF 399 * properties in the MAC node. Walk up the tree of devices to 400 * find a device with an OF node. 401 */ 402 dev_walker = &phydev->mdio.dev; 403 do { 404 of_node = dev_walker->of_node; 405 dev_walker = dev_walker->parent; 406 407 } while (!of_node && dev_walker); 408 409 if (of_node) { 410 ksz9021_load_values_from_of(phydev, of_node, 411 MII_KSZPHY_CLK_CONTROL_PAD_SKEW, 412 "txen-skew-ps", "txc-skew-ps", 413 "rxdv-skew-ps", "rxc-skew-ps"); 414 ksz9021_load_values_from_of(phydev, of_node, 415 MII_KSZPHY_RX_DATA_PAD_SKEW, 416 "rxd0-skew-ps", "rxd1-skew-ps", 417 "rxd2-skew-ps", "rxd3-skew-ps"); 418 ksz9021_load_values_from_of(phydev, of_node, 419 MII_KSZPHY_TX_DATA_PAD_SKEW, 420 "txd0-skew-ps", "txd1-skew-ps", 421 "txd2-skew-ps", "txd3-skew-ps"); 422 } 423 return 0; 424 } 425 426 #define MII_KSZ9031RN_MMD_CTRL_REG 0x0d 427 #define MII_KSZ9031RN_MMD_REGDATA_REG 0x0e 428 #define OP_DATA 1 429 #define KSZ9031_PS_TO_REG 60 430 431 /* Extended registers */ 432 /* MMD Address 0x0 */ 433 #define MII_KSZ9031RN_FLP_BURST_TX_LO 3 434 #define MII_KSZ9031RN_FLP_BURST_TX_HI 4 435 436 /* MMD Address 0x2 */ 437 #define MII_KSZ9031RN_CONTROL_PAD_SKEW 4 438 #define MII_KSZ9031RN_RX_DATA_PAD_SKEW 5 439 #define MII_KSZ9031RN_TX_DATA_PAD_SKEW 6 440 #define MII_KSZ9031RN_CLK_PAD_SKEW 8 441 442 /* MMD Address 0x1C */ 443 #define MII_KSZ9031RN_EDPD 0x23 444 #define MII_KSZ9031RN_EDPD_ENABLE BIT(0) 445 446 static int ksz9031_extended_write(struct phy_device *phydev, 447 u8 mode, u32 dev_addr, u32 regnum, u16 val) 448 { 449 phy_write(phydev, MII_KSZ9031RN_MMD_CTRL_REG, dev_addr); 450 phy_write(phydev, MII_KSZ9031RN_MMD_REGDATA_REG, regnum); 451 phy_write(phydev, MII_KSZ9031RN_MMD_CTRL_REG, (mode << 14) | dev_addr); 452 return phy_write(phydev, MII_KSZ9031RN_MMD_REGDATA_REG, val); 453 } 454 455 static int ksz9031_extended_read(struct phy_device *phydev, 456 u8 mode, u32 dev_addr, u32 regnum) 457 { 458 phy_write(phydev, MII_KSZ9031RN_MMD_CTRL_REG, dev_addr); 459 phy_write(phydev, MII_KSZ9031RN_MMD_REGDATA_REG, regnum); 460 phy_write(phydev, MII_KSZ9031RN_MMD_CTRL_REG, (mode << 14) | dev_addr); 461 return phy_read(phydev, MII_KSZ9031RN_MMD_REGDATA_REG); 462 } 463 464 static int ksz9031_of_load_skew_values(struct phy_device *phydev, 465 const struct device_node *of_node, 466 u16 reg, size_t field_sz, 467 const char *field[], u8 numfields) 468 { 469 int val[4] = {-1, -2, -3, -4}; 470 int matches = 0; 471 u16 mask; 472 u16 maxval; 473 u16 newval; 474 int i; 475 476 for (i = 0; i < numfields; i++) 477 if (!of_property_read_u32(of_node, field[i], val + i)) 478 matches++; 479 480 if (!matches) 481 return 0; 482 483 if (matches < numfields) 484 newval = ksz9031_extended_read(phydev, OP_DATA, 2, reg); 485 else 486 newval = 0; 487 488 maxval = (field_sz == 4) ? 0xf : 0x1f; 489 for (i = 0; i < numfields; i++) 490 if (val[i] != -(i + 1)) { 491 mask = 0xffff; 492 mask ^= maxval << (field_sz * i); 493 newval = (newval & mask) | 494 (((val[i] / KSZ9031_PS_TO_REG) & maxval) 495 << (field_sz * i)); 496 } 497 498 return ksz9031_extended_write(phydev, OP_DATA, 2, reg, newval); 499 } 500 501 static int ksz9031_center_flp_timing(struct phy_device *phydev) 502 { 503 int result; 504 505 /* Center KSZ9031RNX FLP timing at 16ms. */ 506 result = ksz9031_extended_write(phydev, OP_DATA, 0, 507 MII_KSZ9031RN_FLP_BURST_TX_HI, 0x0006); 508 result = ksz9031_extended_write(phydev, OP_DATA, 0, 509 MII_KSZ9031RN_FLP_BURST_TX_LO, 0x1A80); 510 511 if (result) 512 return result; 513 514 return genphy_restart_aneg(phydev); 515 } 516 517 /* Enable energy-detect power-down mode */ 518 static int ksz9031_enable_edpd(struct phy_device *phydev) 519 { 520 int reg; 521 522 reg = ksz9031_extended_read(phydev, OP_DATA, 0x1C, MII_KSZ9031RN_EDPD); 523 if (reg < 0) 524 return reg; 525 return ksz9031_extended_write(phydev, OP_DATA, 0x1C, MII_KSZ9031RN_EDPD, 526 reg | MII_KSZ9031RN_EDPD_ENABLE); 527 } 528 529 static int ksz9031_config_init(struct phy_device *phydev) 530 { 531 const struct device *dev = &phydev->mdio.dev; 532 const struct device_node *of_node = dev->of_node; 533 static const char *clk_skews[2] = {"rxc-skew-ps", "txc-skew-ps"}; 534 static const char *rx_data_skews[4] = { 535 "rxd0-skew-ps", "rxd1-skew-ps", 536 "rxd2-skew-ps", "rxd3-skew-ps" 537 }; 538 static const char *tx_data_skews[4] = { 539 "txd0-skew-ps", "txd1-skew-ps", 540 "txd2-skew-ps", "txd3-skew-ps" 541 }; 542 static const char *control_skews[2] = {"txen-skew-ps", "rxdv-skew-ps"}; 543 const struct device *dev_walker; 544 int result; 545 546 result = ksz9031_enable_edpd(phydev); 547 if (result < 0) 548 return result; 549 550 /* The Micrel driver has a deprecated option to place phy OF 551 * properties in the MAC node. Walk up the tree of devices to 552 * find a device with an OF node. 553 */ 554 dev_walker = &phydev->mdio.dev; 555 do { 556 of_node = dev_walker->of_node; 557 dev_walker = dev_walker->parent; 558 } while (!of_node && dev_walker); 559 560 if (of_node) { 561 ksz9031_of_load_skew_values(phydev, of_node, 562 MII_KSZ9031RN_CLK_PAD_SKEW, 5, 563 clk_skews, 2); 564 565 ksz9031_of_load_skew_values(phydev, of_node, 566 MII_KSZ9031RN_CONTROL_PAD_SKEW, 4, 567 control_skews, 2); 568 569 ksz9031_of_load_skew_values(phydev, of_node, 570 MII_KSZ9031RN_RX_DATA_PAD_SKEW, 4, 571 rx_data_skews, 4); 572 573 ksz9031_of_load_skew_values(phydev, of_node, 574 MII_KSZ9031RN_TX_DATA_PAD_SKEW, 4, 575 tx_data_skews, 4); 576 } 577 578 return ksz9031_center_flp_timing(phydev); 579 } 580 581 #define KSZ8873MLL_GLOBAL_CONTROL_4 0x06 582 #define KSZ8873MLL_GLOBAL_CONTROL_4_DUPLEX BIT(6) 583 #define KSZ8873MLL_GLOBAL_CONTROL_4_SPEED BIT(4) 584 static int ksz8873mll_read_status(struct phy_device *phydev) 585 { 586 int regval; 587 588 /* dummy read */ 589 regval = phy_read(phydev, KSZ8873MLL_GLOBAL_CONTROL_4); 590 591 regval = phy_read(phydev, KSZ8873MLL_GLOBAL_CONTROL_4); 592 593 if (regval & KSZ8873MLL_GLOBAL_CONTROL_4_DUPLEX) 594 phydev->duplex = DUPLEX_HALF; 595 else 596 phydev->duplex = DUPLEX_FULL; 597 598 if (regval & KSZ8873MLL_GLOBAL_CONTROL_4_SPEED) 599 phydev->speed = SPEED_10; 600 else 601 phydev->speed = SPEED_100; 602 603 phydev->link = 1; 604 phydev->pause = phydev->asym_pause = 0; 605 606 return 0; 607 } 608 609 static int ksz9031_read_status(struct phy_device *phydev) 610 { 611 int err; 612 int regval; 613 614 err = genphy_read_status(phydev); 615 if (err) 616 return err; 617 618 /* Make sure the PHY is not broken. Read idle error count, 619 * and reset the PHY if it is maxed out. 620 */ 621 regval = phy_read(phydev, MII_STAT1000); 622 if ((regval & 0xFF) == 0xFF) { 623 phy_init_hw(phydev); 624 phydev->link = 0; 625 } 626 627 return 0; 628 } 629 630 static int ksz8873mll_config_aneg(struct phy_device *phydev) 631 { 632 return 0; 633 } 634 635 /* This routine returns -1 as an indication to the caller that the 636 * Micrel ksz9021 10/100/1000 PHY does not support standard IEEE 637 * MMD extended PHY registers. 638 */ 639 static int 640 ksz9021_rd_mmd_phyreg(struct phy_device *phydev, int devad, u16 regnum) 641 { 642 return -1; 643 } 644 645 /* This routine does nothing since the Micrel ksz9021 does not support 646 * standard IEEE MMD extended PHY registers. 647 */ 648 static int 649 ksz9021_wr_mmd_phyreg(struct phy_device *phydev, int devad, u16 regnum, u16 val) 650 { 651 return -1; 652 } 653 654 static int kszphy_get_sset_count(struct phy_device *phydev) 655 { 656 return ARRAY_SIZE(kszphy_hw_stats); 657 } 658 659 static void kszphy_get_strings(struct phy_device *phydev, u8 *data) 660 { 661 int i; 662 663 for (i = 0; i < ARRAY_SIZE(kszphy_hw_stats); i++) { 664 memcpy(data + i * ETH_GSTRING_LEN, 665 kszphy_hw_stats[i].string, ETH_GSTRING_LEN); 666 } 667 } 668 669 #ifndef UINT64_MAX 670 #define UINT64_MAX (u64)(~((u64)0)) 671 #endif 672 static u64 kszphy_get_stat(struct phy_device *phydev, int i) 673 { 674 struct kszphy_hw_stat stat = kszphy_hw_stats[i]; 675 struct kszphy_priv *priv = phydev->priv; 676 int val; 677 u64 ret; 678 679 val = phy_read(phydev, stat.reg); 680 if (val < 0) { 681 ret = UINT64_MAX; 682 } else { 683 val = val & ((1 << stat.bits) - 1); 684 priv->stats[i] += val; 685 ret = priv->stats[i]; 686 } 687 688 return ret; 689 } 690 691 static void kszphy_get_stats(struct phy_device *phydev, 692 struct ethtool_stats *stats, u64 *data) 693 { 694 int i; 695 696 for (i = 0; i < ARRAY_SIZE(kszphy_hw_stats); i++) 697 data[i] = kszphy_get_stat(phydev, i); 698 } 699 700 static int kszphy_suspend(struct phy_device *phydev) 701 { 702 /* Disable PHY Interrupts */ 703 if (phy_interrupt_is_valid(phydev)) { 704 phydev->interrupts = PHY_INTERRUPT_DISABLED; 705 if (phydev->drv->config_intr) 706 phydev->drv->config_intr(phydev); 707 } 708 709 return genphy_suspend(phydev); 710 } 711 712 static int kszphy_resume(struct phy_device *phydev) 713 { 714 genphy_resume(phydev); 715 716 /* Enable PHY Interrupts */ 717 if (phy_interrupt_is_valid(phydev)) { 718 phydev->interrupts = PHY_INTERRUPT_ENABLED; 719 if (phydev->drv->config_intr) 720 phydev->drv->config_intr(phydev); 721 } 722 723 return 0; 724 } 725 726 static int kszphy_probe(struct phy_device *phydev) 727 { 728 const struct kszphy_type *type = phydev->drv->driver_data; 729 const struct device_node *np = phydev->mdio.dev.of_node; 730 struct kszphy_priv *priv; 731 struct clk *clk; 732 int ret; 733 734 priv = devm_kzalloc(&phydev->mdio.dev, sizeof(*priv), GFP_KERNEL); 735 if (!priv) 736 return -ENOMEM; 737 738 phydev->priv = priv; 739 740 priv->type = type; 741 742 if (type->led_mode_reg) { 743 ret = of_property_read_u32(np, "micrel,led-mode", 744 &priv->led_mode); 745 if (ret) 746 priv->led_mode = -1; 747 748 if (priv->led_mode > 3) { 749 phydev_err(phydev, "invalid led mode: 0x%02x\n", 750 priv->led_mode); 751 priv->led_mode = -1; 752 } 753 } else { 754 priv->led_mode = -1; 755 } 756 757 clk = devm_clk_get(&phydev->mdio.dev, "rmii-ref"); 758 /* NOTE: clk may be NULL if building without CONFIG_HAVE_CLK */ 759 if (!IS_ERR_OR_NULL(clk)) { 760 unsigned long rate = clk_get_rate(clk); 761 bool rmii_ref_clk_sel_25_mhz; 762 763 priv->rmii_ref_clk_sel = type->has_rmii_ref_clk_sel; 764 rmii_ref_clk_sel_25_mhz = of_property_read_bool(np, 765 "micrel,rmii-reference-clock-select-25-mhz"); 766 767 if (rate > 24500000 && rate < 25500000) { 768 priv->rmii_ref_clk_sel_val = rmii_ref_clk_sel_25_mhz; 769 } else if (rate > 49500000 && rate < 50500000) { 770 priv->rmii_ref_clk_sel_val = !rmii_ref_clk_sel_25_mhz; 771 } else { 772 phydev_err(phydev, "Clock rate out of range: %ld\n", 773 rate); 774 return -EINVAL; 775 } 776 } 777 778 /* Support legacy board-file configuration */ 779 if (phydev->dev_flags & MICREL_PHY_50MHZ_CLK) { 780 priv->rmii_ref_clk_sel = true; 781 priv->rmii_ref_clk_sel_val = true; 782 } 783 784 return 0; 785 } 786 787 static struct phy_driver ksphy_driver[] = { 788 { 789 .phy_id = PHY_ID_KS8737, 790 .phy_id_mask = MICREL_PHY_ID_MASK, 791 .name = "Micrel KS8737", 792 .features = PHY_BASIC_FEATURES, 793 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 794 .driver_data = &ks8737_type, 795 .config_init = kszphy_config_init, 796 .config_aneg = genphy_config_aneg, 797 .read_status = genphy_read_status, 798 .ack_interrupt = kszphy_ack_interrupt, 799 .config_intr = kszphy_config_intr, 800 .get_sset_count = kszphy_get_sset_count, 801 .get_strings = kszphy_get_strings, 802 .get_stats = kszphy_get_stats, 803 .suspend = genphy_suspend, 804 .resume = genphy_resume, 805 }, { 806 .phy_id = PHY_ID_KSZ8021, 807 .phy_id_mask = 0x00ffffff, 808 .name = "Micrel KSZ8021 or KSZ8031", 809 .features = PHY_BASIC_FEATURES, 810 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 811 .driver_data = &ksz8021_type, 812 .probe = kszphy_probe, 813 .config_init = kszphy_config_init, 814 .config_aneg = genphy_config_aneg, 815 .read_status = genphy_read_status, 816 .ack_interrupt = kszphy_ack_interrupt, 817 .config_intr = kszphy_config_intr, 818 .get_sset_count = kszphy_get_sset_count, 819 .get_strings = kszphy_get_strings, 820 .get_stats = kszphy_get_stats, 821 .suspend = genphy_suspend, 822 .resume = genphy_resume, 823 }, { 824 .phy_id = PHY_ID_KSZ8031, 825 .phy_id_mask = 0x00ffffff, 826 .name = "Micrel KSZ8031", 827 .features = PHY_BASIC_FEATURES, 828 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 829 .driver_data = &ksz8021_type, 830 .probe = kszphy_probe, 831 .config_init = kszphy_config_init, 832 .config_aneg = genphy_config_aneg, 833 .read_status = genphy_read_status, 834 .ack_interrupt = kszphy_ack_interrupt, 835 .config_intr = kszphy_config_intr, 836 .get_sset_count = kszphy_get_sset_count, 837 .get_strings = kszphy_get_strings, 838 .get_stats = kszphy_get_stats, 839 .suspend = genphy_suspend, 840 .resume = genphy_resume, 841 }, { 842 .phy_id = PHY_ID_KSZ8041, 843 .phy_id_mask = MICREL_PHY_ID_MASK, 844 .name = "Micrel KSZ8041", 845 .features = PHY_BASIC_FEATURES, 846 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 847 .driver_data = &ksz8041_type, 848 .probe = kszphy_probe, 849 .config_init = ksz8041_config_init, 850 .config_aneg = ksz8041_config_aneg, 851 .read_status = genphy_read_status, 852 .ack_interrupt = kszphy_ack_interrupt, 853 .config_intr = kszphy_config_intr, 854 .get_sset_count = kszphy_get_sset_count, 855 .get_strings = kszphy_get_strings, 856 .get_stats = kszphy_get_stats, 857 .suspend = genphy_suspend, 858 .resume = genphy_resume, 859 }, { 860 .phy_id = PHY_ID_KSZ8041RNLI, 861 .phy_id_mask = MICREL_PHY_ID_MASK, 862 .name = "Micrel KSZ8041RNLI", 863 .features = PHY_BASIC_FEATURES, 864 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 865 .driver_data = &ksz8041_type, 866 .probe = kszphy_probe, 867 .config_init = kszphy_config_init, 868 .config_aneg = genphy_config_aneg, 869 .read_status = genphy_read_status, 870 .ack_interrupt = kszphy_ack_interrupt, 871 .config_intr = kszphy_config_intr, 872 .get_sset_count = kszphy_get_sset_count, 873 .get_strings = kszphy_get_strings, 874 .get_stats = kszphy_get_stats, 875 .suspend = genphy_suspend, 876 .resume = genphy_resume, 877 }, { 878 .phy_id = PHY_ID_KSZ8051, 879 .phy_id_mask = MICREL_PHY_ID_MASK, 880 .name = "Micrel KSZ8051", 881 .features = PHY_BASIC_FEATURES, 882 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 883 .driver_data = &ksz8051_type, 884 .probe = kszphy_probe, 885 .config_init = kszphy_config_init, 886 .config_aneg = genphy_config_aneg, 887 .read_status = genphy_read_status, 888 .ack_interrupt = kszphy_ack_interrupt, 889 .config_intr = kszphy_config_intr, 890 .get_sset_count = kszphy_get_sset_count, 891 .get_strings = kszphy_get_strings, 892 .get_stats = kszphy_get_stats, 893 .suspend = genphy_suspend, 894 .resume = genphy_resume, 895 }, { 896 .phy_id = PHY_ID_KSZ8001, 897 .name = "Micrel KSZ8001 or KS8721", 898 .phy_id_mask = 0x00fffffc, 899 .features = PHY_BASIC_FEATURES, 900 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 901 .driver_data = &ksz8041_type, 902 .probe = kszphy_probe, 903 .config_init = kszphy_config_init, 904 .config_aneg = genphy_config_aneg, 905 .read_status = genphy_read_status, 906 .ack_interrupt = kszphy_ack_interrupt, 907 .config_intr = kszphy_config_intr, 908 .get_sset_count = kszphy_get_sset_count, 909 .get_strings = kszphy_get_strings, 910 .get_stats = kszphy_get_stats, 911 .suspend = genphy_suspend, 912 .resume = genphy_resume, 913 }, { 914 .phy_id = PHY_ID_KSZ8081, 915 .name = "Micrel KSZ8081 or KSZ8091", 916 .phy_id_mask = MICREL_PHY_ID_MASK, 917 .features = PHY_BASIC_FEATURES, 918 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 919 .driver_data = &ksz8081_type, 920 .probe = kszphy_probe, 921 .config_init = kszphy_config_init, 922 .config_aneg = genphy_config_aneg, 923 .read_status = genphy_read_status, 924 .ack_interrupt = kszphy_ack_interrupt, 925 .config_intr = kszphy_config_intr, 926 .get_sset_count = kszphy_get_sset_count, 927 .get_strings = kszphy_get_strings, 928 .get_stats = kszphy_get_stats, 929 .suspend = kszphy_suspend, 930 .resume = kszphy_resume, 931 }, { 932 .phy_id = PHY_ID_KSZ8061, 933 .name = "Micrel KSZ8061", 934 .phy_id_mask = MICREL_PHY_ID_MASK, 935 .features = PHY_BASIC_FEATURES, 936 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 937 .config_init = kszphy_config_init, 938 .config_aneg = genphy_config_aneg, 939 .read_status = genphy_read_status, 940 .ack_interrupt = kszphy_ack_interrupt, 941 .config_intr = kszphy_config_intr, 942 .get_sset_count = kszphy_get_sset_count, 943 .get_strings = kszphy_get_strings, 944 .get_stats = kszphy_get_stats, 945 .suspend = genphy_suspend, 946 .resume = genphy_resume, 947 }, { 948 .phy_id = PHY_ID_KSZ9021, 949 .phy_id_mask = 0x000ffffe, 950 .name = "Micrel KSZ9021 Gigabit PHY", 951 .features = PHY_GBIT_FEATURES, 952 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 953 .driver_data = &ksz9021_type, 954 .config_init = ksz9021_config_init, 955 .config_aneg = genphy_config_aneg, 956 .read_status = genphy_read_status, 957 .ack_interrupt = kszphy_ack_interrupt, 958 .config_intr = kszphy_config_intr, 959 .get_sset_count = kszphy_get_sset_count, 960 .get_strings = kszphy_get_strings, 961 .get_stats = kszphy_get_stats, 962 .suspend = genphy_suspend, 963 .resume = genphy_resume, 964 .read_mmd = ksz9021_rd_mmd_phyreg, 965 .write_mmd = ksz9021_wr_mmd_phyreg, 966 }, { 967 .phy_id = PHY_ID_KSZ9031, 968 .phy_id_mask = MICREL_PHY_ID_MASK, 969 .name = "Micrel KSZ9031 Gigabit PHY", 970 .features = PHY_GBIT_FEATURES, 971 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 972 .driver_data = &ksz9021_type, 973 .config_init = ksz9031_config_init, 974 .config_aneg = genphy_config_aneg, 975 .read_status = ksz9031_read_status, 976 .ack_interrupt = kszphy_ack_interrupt, 977 .config_intr = kszphy_config_intr, 978 .get_sset_count = kszphy_get_sset_count, 979 .get_strings = kszphy_get_strings, 980 .get_stats = kszphy_get_stats, 981 .suspend = genphy_suspend, 982 .resume = kszphy_resume, 983 }, { 984 .phy_id = PHY_ID_KSZ8873MLL, 985 .phy_id_mask = MICREL_PHY_ID_MASK, 986 .name = "Micrel KSZ8873MLL Switch", 987 .flags = PHY_HAS_MAGICANEG, 988 .config_init = kszphy_config_init, 989 .config_aneg = ksz8873mll_config_aneg, 990 .read_status = ksz8873mll_read_status, 991 .get_sset_count = kszphy_get_sset_count, 992 .get_strings = kszphy_get_strings, 993 .get_stats = kszphy_get_stats, 994 .suspend = genphy_suspend, 995 .resume = genphy_resume, 996 }, { 997 .phy_id = PHY_ID_KSZ886X, 998 .phy_id_mask = MICREL_PHY_ID_MASK, 999 .name = "Micrel KSZ886X Switch", 1000 .features = PHY_BASIC_FEATURES, 1001 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 1002 .config_init = kszphy_config_init, 1003 .config_aneg = genphy_config_aneg, 1004 .read_status = genphy_read_status, 1005 .get_sset_count = kszphy_get_sset_count, 1006 .get_strings = kszphy_get_strings, 1007 .get_stats = kszphy_get_stats, 1008 .suspend = genphy_suspend, 1009 .resume = genphy_resume, 1010 }, { 1011 .phy_id = PHY_ID_KSZ8795, 1012 .phy_id_mask = MICREL_PHY_ID_MASK, 1013 .name = "Micrel KSZ8795", 1014 .features = PHY_BASIC_FEATURES, 1015 .flags = PHY_HAS_MAGICANEG | PHY_HAS_INTERRUPT, 1016 .config_init = kszphy_config_init, 1017 .config_aneg = ksz8873mll_config_aneg, 1018 .read_status = ksz8873mll_read_status, 1019 .get_sset_count = kszphy_get_sset_count, 1020 .get_strings = kszphy_get_strings, 1021 .get_stats = kszphy_get_stats, 1022 .suspend = genphy_suspend, 1023 .resume = genphy_resume, 1024 } }; 1025 1026 module_phy_driver(ksphy_driver); 1027 1028 MODULE_DESCRIPTION("Micrel PHY driver"); 1029 MODULE_AUTHOR("David J. Choi"); 1030 MODULE_LICENSE("GPL"); 1031 1032 static struct mdio_device_id __maybe_unused micrel_tbl[] = { 1033 { PHY_ID_KSZ9021, 0x000ffffe }, 1034 { PHY_ID_KSZ9031, MICREL_PHY_ID_MASK }, 1035 { PHY_ID_KSZ8001, 0x00fffffc }, 1036 { PHY_ID_KS8737, MICREL_PHY_ID_MASK }, 1037 { PHY_ID_KSZ8021, 0x00ffffff }, 1038 { PHY_ID_KSZ8031, 0x00ffffff }, 1039 { PHY_ID_KSZ8041, MICREL_PHY_ID_MASK }, 1040 { PHY_ID_KSZ8051, MICREL_PHY_ID_MASK }, 1041 { PHY_ID_KSZ8061, MICREL_PHY_ID_MASK }, 1042 { PHY_ID_KSZ8081, MICREL_PHY_ID_MASK }, 1043 { PHY_ID_KSZ8873MLL, MICREL_PHY_ID_MASK }, 1044 { PHY_ID_KSZ886X, MICREL_PHY_ID_MASK }, 1045 { } 1046 }; 1047 1048 MODULE_DEVICE_TABLE(mdio, micrel_tbl); 1049