1 /* 2 * MUSB OTG driver core code 3 * 4 * Copyright 2005 Mentor Graphics Corporation 5 * Copyright (C) 2005-2006 by Texas Instruments 6 * Copyright (C) 2006-2007 Nokia Corporation 7 * 8 * This program is free software; you can redistribute it and/or 9 * modify it under the terms of the GNU General Public License 10 * version 2 as published by the Free Software Foundation. 11 * 12 * This program is distributed in the hope that it will be useful, but 13 * WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15 * General Public License for more details. 16 * 17 * You should have received a copy of the GNU General Public License 18 * along with this program; if not, write to the Free Software 19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 20 * 02110-1301 USA 21 * 22 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED 23 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF 24 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN 25 * NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT, 26 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 27 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF 28 * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON 29 * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 31 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 * 33 */ 34 35 /* 36 * Inventra (Multipoint) Dual-Role Controller Driver for Linux. 37 * 38 * This consists of a Host Controller Driver (HCD) and a peripheral 39 * controller driver implementing the "Gadget" API; OTG support is 40 * in the works. These are normal Linux-USB controller drivers which 41 * use IRQs and have no dedicated thread. 42 * 43 * This version of the driver has only been used with products from 44 * Texas Instruments. Those products integrate the Inventra logic 45 * with other DMA, IRQ, and bus modules, as well as other logic that 46 * needs to be reflected in this driver. 47 * 48 * 49 * NOTE: the original Mentor code here was pretty much a collection 50 * of mechanisms that don't seem to have been fully integrated/working 51 * for *any* Linux kernel version. This version aims at Linux 2.6.now, 52 * Key open issues include: 53 * 54 * - Lack of host-side transaction scheduling, for all transfer types. 55 * The hardware doesn't do it; instead, software must. 56 * 57 * This is not an issue for OTG devices that don't support external 58 * hubs, but for more "normal" USB hosts it's a user issue that the 59 * "multipoint" support doesn't scale in the expected ways. That 60 * includes DaVinci EVM in a common non-OTG mode. 61 * 62 * * Control and bulk use dedicated endpoints, and there's as 63 * yet no mechanism to either (a) reclaim the hardware when 64 * peripherals are NAKing, which gets complicated with bulk 65 * endpoints, or (b) use more than a single bulk endpoint in 66 * each direction. 67 * 68 * RESULT: one device may be perceived as blocking another one. 69 * 70 * * Interrupt and isochronous will dynamically allocate endpoint 71 * hardware, but (a) there's no record keeping for bandwidth; 72 * (b) in the common case that few endpoints are available, there 73 * is no mechanism to reuse endpoints to talk to multiple devices. 74 * 75 * RESULT: At one extreme, bandwidth can be overcommitted in 76 * some hardware configurations, no faults will be reported. 77 * At the other extreme, the bandwidth capabilities which do 78 * exist tend to be severely undercommitted. You can't yet hook 79 * up both a keyboard and a mouse to an external USB hub. 80 */ 81 82 /* 83 * This gets many kinds of configuration information: 84 * - Kconfig for everything user-configurable 85 * - platform_device for addressing, irq, and platform_data 86 * - platform_data is mostly for board-specific informarion 87 * (plus recentrly, SOC or family details) 88 * 89 * Most of the conditional compilation will (someday) vanish. 90 */ 91 92 #include <linux/module.h> 93 #include <linux/kernel.h> 94 #include <linux/sched.h> 95 #include <linux/slab.h> 96 #include <linux/init.h> 97 #include <linux/list.h> 98 #include <linux/kobject.h> 99 #include <linux/prefetch.h> 100 #include <linux/platform_device.h> 101 #include <linux/io.h> 102 103 #include "musb_core.h" 104 105 #define TA_WAIT_BCON(m) max_t(int, (m)->a_wait_bcon, OTG_TIME_A_WAIT_BCON) 106 107 108 #define DRIVER_AUTHOR "Mentor Graphics, Texas Instruments, Nokia" 109 #define DRIVER_DESC "Inventra Dual-Role USB Controller Driver" 110 111 #define MUSB_VERSION "6.0" 112 113 #define DRIVER_INFO DRIVER_DESC ", v" MUSB_VERSION 114 115 #define MUSB_DRIVER_NAME "musb-hdrc" 116 const char musb_driver_name[] = MUSB_DRIVER_NAME; 117 118 MODULE_DESCRIPTION(DRIVER_INFO); 119 MODULE_AUTHOR(DRIVER_AUTHOR); 120 MODULE_LICENSE("GPL"); 121 MODULE_ALIAS("platform:" MUSB_DRIVER_NAME); 122 123 124 /*-------------------------------------------------------------------------*/ 125 126 static inline struct musb *dev_to_musb(struct device *dev) 127 { 128 return dev_get_drvdata(dev); 129 } 130 131 /*-------------------------------------------------------------------------*/ 132 133 #ifndef CONFIG_BLACKFIN 134 static int musb_ulpi_read(struct otg_transceiver *otg, u32 offset) 135 { 136 void __iomem *addr = otg->io_priv; 137 int i = 0; 138 u8 r; 139 u8 power; 140 141 /* Make sure the transceiver is not in low power mode */ 142 power = musb_readb(addr, MUSB_POWER); 143 power &= ~MUSB_POWER_SUSPENDM; 144 musb_writeb(addr, MUSB_POWER, power); 145 146 /* REVISIT: musbhdrc_ulpi_an.pdf recommends setting the 147 * ULPICarKitControlDisableUTMI after clearing POWER_SUSPENDM. 148 */ 149 150 musb_writeb(addr, MUSB_ULPI_REG_ADDR, (u8)offset); 151 musb_writeb(addr, MUSB_ULPI_REG_CONTROL, 152 MUSB_ULPI_REG_REQ | MUSB_ULPI_RDN_WR); 153 154 while (!(musb_readb(addr, MUSB_ULPI_REG_CONTROL) 155 & MUSB_ULPI_REG_CMPLT)) { 156 i++; 157 if (i == 10000) 158 return -ETIMEDOUT; 159 160 } 161 r = musb_readb(addr, MUSB_ULPI_REG_CONTROL); 162 r &= ~MUSB_ULPI_REG_CMPLT; 163 musb_writeb(addr, MUSB_ULPI_REG_CONTROL, r); 164 165 return musb_readb(addr, MUSB_ULPI_REG_DATA); 166 } 167 168 static int musb_ulpi_write(struct otg_transceiver *otg, 169 u32 offset, u32 data) 170 { 171 void __iomem *addr = otg->io_priv; 172 int i = 0; 173 u8 r = 0; 174 u8 power; 175 176 /* Make sure the transceiver is not in low power mode */ 177 power = musb_readb(addr, MUSB_POWER); 178 power &= ~MUSB_POWER_SUSPENDM; 179 musb_writeb(addr, MUSB_POWER, power); 180 181 musb_writeb(addr, MUSB_ULPI_REG_ADDR, (u8)offset); 182 musb_writeb(addr, MUSB_ULPI_REG_DATA, (u8)data); 183 musb_writeb(addr, MUSB_ULPI_REG_CONTROL, MUSB_ULPI_REG_REQ); 184 185 while (!(musb_readb(addr, MUSB_ULPI_REG_CONTROL) 186 & MUSB_ULPI_REG_CMPLT)) { 187 i++; 188 if (i == 10000) 189 return -ETIMEDOUT; 190 } 191 192 r = musb_readb(addr, MUSB_ULPI_REG_CONTROL); 193 r &= ~MUSB_ULPI_REG_CMPLT; 194 musb_writeb(addr, MUSB_ULPI_REG_CONTROL, r); 195 196 return 0; 197 } 198 #else 199 #define musb_ulpi_read NULL 200 #define musb_ulpi_write NULL 201 #endif 202 203 static struct otg_io_access_ops musb_ulpi_access = { 204 .read = musb_ulpi_read, 205 .write = musb_ulpi_write, 206 }; 207 208 /*-------------------------------------------------------------------------*/ 209 210 #if !defined(CONFIG_USB_MUSB_TUSB6010) && !defined(CONFIG_USB_MUSB_BLACKFIN) 211 212 /* 213 * Load an endpoint's FIFO 214 */ 215 void musb_write_fifo(struct musb_hw_ep *hw_ep, u16 len, const u8 *src) 216 { 217 struct musb *musb = hw_ep->musb; 218 void __iomem *fifo = hw_ep->fifo; 219 220 prefetch((u8 *)src); 221 222 dev_dbg(musb->controller, "%cX ep%d fifo %p count %d buf %p\n", 223 'T', hw_ep->epnum, fifo, len, src); 224 225 /* we can't assume unaligned reads work */ 226 if (likely((0x01 & (unsigned long) src) == 0)) { 227 u16 index = 0; 228 229 /* best case is 32bit-aligned source address */ 230 if ((0x02 & (unsigned long) src) == 0) { 231 if (len >= 4) { 232 writesl(fifo, src + index, len >> 2); 233 index += len & ~0x03; 234 } 235 if (len & 0x02) { 236 musb_writew(fifo, 0, *(u16 *)&src[index]); 237 index += 2; 238 } 239 } else { 240 if (len >= 2) { 241 writesw(fifo, src + index, len >> 1); 242 index += len & ~0x01; 243 } 244 } 245 if (len & 0x01) 246 musb_writeb(fifo, 0, src[index]); 247 } else { 248 /* byte aligned */ 249 writesb(fifo, src, len); 250 } 251 } 252 253 #if !defined(CONFIG_USB_MUSB_AM35X) 254 /* 255 * Unload an endpoint's FIFO 256 */ 257 void musb_read_fifo(struct musb_hw_ep *hw_ep, u16 len, u8 *dst) 258 { 259 struct musb *musb = hw_ep->musb; 260 void __iomem *fifo = hw_ep->fifo; 261 262 dev_dbg(musb->controller, "%cX ep%d fifo %p count %d buf %p\n", 263 'R', hw_ep->epnum, fifo, len, dst); 264 265 /* we can't assume unaligned writes work */ 266 if (likely((0x01 & (unsigned long) dst) == 0)) { 267 u16 index = 0; 268 269 /* best case is 32bit-aligned destination address */ 270 if ((0x02 & (unsigned long) dst) == 0) { 271 if (len >= 4) { 272 readsl(fifo, dst, len >> 2); 273 index = len & ~0x03; 274 } 275 if (len & 0x02) { 276 *(u16 *)&dst[index] = musb_readw(fifo, 0); 277 index += 2; 278 } 279 } else { 280 if (len >= 2) { 281 readsw(fifo, dst, len >> 1); 282 index = len & ~0x01; 283 } 284 } 285 if (len & 0x01) 286 dst[index] = musb_readb(fifo, 0); 287 } else { 288 /* byte aligned */ 289 readsb(fifo, dst, len); 290 } 291 } 292 #endif 293 294 #endif /* normal PIO */ 295 296 297 /*-------------------------------------------------------------------------*/ 298 299 /* for high speed test mode; see USB 2.0 spec 7.1.20 */ 300 static const u8 musb_test_packet[53] = { 301 /* implicit SYNC then DATA0 to start */ 302 303 /* JKJKJKJK x9 */ 304 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 305 /* JJKKJJKK x8 */ 306 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 0xaa, 307 /* JJJJKKKK x8 */ 308 0xee, 0xee, 0xee, 0xee, 0xee, 0xee, 0xee, 0xee, 309 /* JJJJJJJKKKKKKK x8 */ 310 0xfe, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 311 /* JJJJJJJK x8 */ 312 0x7f, 0xbf, 0xdf, 0xef, 0xf7, 0xfb, 0xfd, 313 /* JKKKKKKK x10, JK */ 314 0xfc, 0x7e, 0xbf, 0xdf, 0xef, 0xf7, 0xfb, 0xfd, 0x7e 315 316 /* implicit CRC16 then EOP to end */ 317 }; 318 319 void musb_load_testpacket(struct musb *musb) 320 { 321 void __iomem *regs = musb->endpoints[0].regs; 322 323 musb_ep_select(musb->mregs, 0); 324 musb_write_fifo(musb->control_ep, 325 sizeof(musb_test_packet), musb_test_packet); 326 musb_writew(regs, MUSB_CSR0, MUSB_CSR0_TXPKTRDY); 327 } 328 329 /*-------------------------------------------------------------------------*/ 330 331 /* 332 * Handles OTG hnp timeouts, such as b_ase0_brst 333 */ 334 void musb_otg_timer_func(unsigned long data) 335 { 336 struct musb *musb = (struct musb *)data; 337 unsigned long flags; 338 339 spin_lock_irqsave(&musb->lock, flags); 340 switch (musb->xceiv->state) { 341 case OTG_STATE_B_WAIT_ACON: 342 dev_dbg(musb->controller, "HNP: b_wait_acon timeout; back to b_peripheral\n"); 343 musb_g_disconnect(musb); 344 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 345 musb->is_active = 0; 346 break; 347 case OTG_STATE_A_SUSPEND: 348 case OTG_STATE_A_WAIT_BCON: 349 dev_dbg(musb->controller, "HNP: %s timeout\n", 350 otg_state_string(musb->xceiv->state)); 351 musb_platform_set_vbus(musb, 0); 352 musb->xceiv->state = OTG_STATE_A_WAIT_VFALL; 353 break; 354 default: 355 dev_dbg(musb->controller, "HNP: Unhandled mode %s\n", 356 otg_state_string(musb->xceiv->state)); 357 } 358 musb->ignore_disconnect = 0; 359 spin_unlock_irqrestore(&musb->lock, flags); 360 } 361 362 /* 363 * Stops the HNP transition. Caller must take care of locking. 364 */ 365 void musb_hnp_stop(struct musb *musb) 366 { 367 struct usb_hcd *hcd = musb_to_hcd(musb); 368 void __iomem *mbase = musb->mregs; 369 u8 reg; 370 371 dev_dbg(musb->controller, "HNP: stop from %s\n", otg_state_string(musb->xceiv->state)); 372 373 switch (musb->xceiv->state) { 374 case OTG_STATE_A_PERIPHERAL: 375 musb_g_disconnect(musb); 376 dev_dbg(musb->controller, "HNP: back to %s\n", 377 otg_state_string(musb->xceiv->state)); 378 break; 379 case OTG_STATE_B_HOST: 380 dev_dbg(musb->controller, "HNP: Disabling HR\n"); 381 hcd->self.is_b_host = 0; 382 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 383 MUSB_DEV_MODE(musb); 384 reg = musb_readb(mbase, MUSB_POWER); 385 reg |= MUSB_POWER_SUSPENDM; 386 musb_writeb(mbase, MUSB_POWER, reg); 387 /* REVISIT: Start SESSION_REQUEST here? */ 388 break; 389 default: 390 dev_dbg(musb->controller, "HNP: Stopping in unknown state %s\n", 391 otg_state_string(musb->xceiv->state)); 392 } 393 394 /* 395 * When returning to A state after HNP, avoid hub_port_rebounce(), 396 * which cause occasional OPT A "Did not receive reset after connect" 397 * errors. 398 */ 399 musb->port1_status &= ~(USB_PORT_STAT_C_CONNECTION << 16); 400 } 401 402 /* 403 * Interrupt Service Routine to record USB "global" interrupts. 404 * Since these do not happen often and signify things of 405 * paramount importance, it seems OK to check them individually; 406 * the order of the tests is specified in the manual 407 * 408 * @param musb instance pointer 409 * @param int_usb register contents 410 * @param devctl 411 * @param power 412 */ 413 414 static irqreturn_t musb_stage0_irq(struct musb *musb, u8 int_usb, 415 u8 devctl, u8 power) 416 { 417 irqreturn_t handled = IRQ_NONE; 418 419 dev_dbg(musb->controller, "<== Power=%02x, DevCtl=%02x, int_usb=0x%x\n", power, devctl, 420 int_usb); 421 422 /* in host mode, the peripheral may issue remote wakeup. 423 * in peripheral mode, the host may resume the link. 424 * spurious RESUME irqs happen too, paired with SUSPEND. 425 */ 426 if (int_usb & MUSB_INTR_RESUME) { 427 handled = IRQ_HANDLED; 428 dev_dbg(musb->controller, "RESUME (%s)\n", otg_state_string(musb->xceiv->state)); 429 430 if (devctl & MUSB_DEVCTL_HM) { 431 void __iomem *mbase = musb->mregs; 432 433 switch (musb->xceiv->state) { 434 case OTG_STATE_A_SUSPEND: 435 /* remote wakeup? later, GetPortStatus 436 * will stop RESUME signaling 437 */ 438 439 if (power & MUSB_POWER_SUSPENDM) { 440 /* spurious */ 441 musb->int_usb &= ~MUSB_INTR_SUSPEND; 442 dev_dbg(musb->controller, "Spurious SUSPENDM\n"); 443 break; 444 } 445 446 power &= ~MUSB_POWER_SUSPENDM; 447 musb_writeb(mbase, MUSB_POWER, 448 power | MUSB_POWER_RESUME); 449 450 musb->port1_status |= 451 (USB_PORT_STAT_C_SUSPEND << 16) 452 | MUSB_PORT_STAT_RESUME; 453 musb->rh_timer = jiffies 454 + msecs_to_jiffies(20); 455 456 musb->xceiv->state = OTG_STATE_A_HOST; 457 musb->is_active = 1; 458 usb_hcd_resume_root_hub(musb_to_hcd(musb)); 459 break; 460 case OTG_STATE_B_WAIT_ACON: 461 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 462 musb->is_active = 1; 463 MUSB_DEV_MODE(musb); 464 break; 465 default: 466 WARNING("bogus %s RESUME (%s)\n", 467 "host", 468 otg_state_string(musb->xceiv->state)); 469 } 470 } else { 471 switch (musb->xceiv->state) { 472 case OTG_STATE_A_SUSPEND: 473 /* possibly DISCONNECT is upcoming */ 474 musb->xceiv->state = OTG_STATE_A_HOST; 475 usb_hcd_resume_root_hub(musb_to_hcd(musb)); 476 break; 477 case OTG_STATE_B_WAIT_ACON: 478 case OTG_STATE_B_PERIPHERAL: 479 /* disconnect while suspended? we may 480 * not get a disconnect irq... 481 */ 482 if ((devctl & MUSB_DEVCTL_VBUS) 483 != (3 << MUSB_DEVCTL_VBUS_SHIFT) 484 ) { 485 musb->int_usb |= MUSB_INTR_DISCONNECT; 486 musb->int_usb &= ~MUSB_INTR_SUSPEND; 487 break; 488 } 489 musb_g_resume(musb); 490 break; 491 case OTG_STATE_B_IDLE: 492 musb->int_usb &= ~MUSB_INTR_SUSPEND; 493 break; 494 default: 495 WARNING("bogus %s RESUME (%s)\n", 496 "peripheral", 497 otg_state_string(musb->xceiv->state)); 498 } 499 } 500 } 501 502 /* see manual for the order of the tests */ 503 if (int_usb & MUSB_INTR_SESSREQ) { 504 void __iomem *mbase = musb->mregs; 505 506 if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS 507 && (devctl & MUSB_DEVCTL_BDEVICE)) { 508 dev_dbg(musb->controller, "SessReq while on B state\n"); 509 return IRQ_HANDLED; 510 } 511 512 dev_dbg(musb->controller, "SESSION_REQUEST (%s)\n", 513 otg_state_string(musb->xceiv->state)); 514 515 /* IRQ arrives from ID pin sense or (later, if VBUS power 516 * is removed) SRP. responses are time critical: 517 * - turn on VBUS (with silicon-specific mechanism) 518 * - go through A_WAIT_VRISE 519 * - ... to A_WAIT_BCON. 520 * a_wait_vrise_tmout triggers VBUS_ERROR transitions 521 */ 522 musb_writeb(mbase, MUSB_DEVCTL, MUSB_DEVCTL_SESSION); 523 musb->ep0_stage = MUSB_EP0_START; 524 musb->xceiv->state = OTG_STATE_A_IDLE; 525 MUSB_HST_MODE(musb); 526 musb_platform_set_vbus(musb, 1); 527 528 handled = IRQ_HANDLED; 529 } 530 531 if (int_usb & MUSB_INTR_VBUSERROR) { 532 int ignore = 0; 533 534 /* During connection as an A-Device, we may see a short 535 * current spikes causing voltage drop, because of cable 536 * and peripheral capacitance combined with vbus draw. 537 * (So: less common with truly self-powered devices, where 538 * vbus doesn't act like a power supply.) 539 * 540 * Such spikes are short; usually less than ~500 usec, max 541 * of ~2 msec. That is, they're not sustained overcurrent 542 * errors, though they're reported using VBUSERROR irqs. 543 * 544 * Workarounds: (a) hardware: use self powered devices. 545 * (b) software: ignore non-repeated VBUS errors. 546 * 547 * REVISIT: do delays from lots of DEBUG_KERNEL checks 548 * make trouble here, keeping VBUS < 4.4V ? 549 */ 550 switch (musb->xceiv->state) { 551 case OTG_STATE_A_HOST: 552 /* recovery is dicey once we've gotten past the 553 * initial stages of enumeration, but if VBUS 554 * stayed ok at the other end of the link, and 555 * another reset is due (at least for high speed, 556 * to redo the chirp etc), it might work OK... 557 */ 558 case OTG_STATE_A_WAIT_BCON: 559 case OTG_STATE_A_WAIT_VRISE: 560 if (musb->vbuserr_retry) { 561 void __iomem *mbase = musb->mregs; 562 563 musb->vbuserr_retry--; 564 ignore = 1; 565 devctl |= MUSB_DEVCTL_SESSION; 566 musb_writeb(mbase, MUSB_DEVCTL, devctl); 567 } else { 568 musb->port1_status |= 569 USB_PORT_STAT_OVERCURRENT 570 | (USB_PORT_STAT_C_OVERCURRENT << 16); 571 } 572 break; 573 default: 574 break; 575 } 576 577 dev_dbg(musb->controller, "VBUS_ERROR in %s (%02x, %s), retry #%d, port1 %08x\n", 578 otg_state_string(musb->xceiv->state), 579 devctl, 580 ({ char *s; 581 switch (devctl & MUSB_DEVCTL_VBUS) { 582 case 0 << MUSB_DEVCTL_VBUS_SHIFT: 583 s = "<SessEnd"; break; 584 case 1 << MUSB_DEVCTL_VBUS_SHIFT: 585 s = "<AValid"; break; 586 case 2 << MUSB_DEVCTL_VBUS_SHIFT: 587 s = "<VBusValid"; break; 588 /* case 3 << MUSB_DEVCTL_VBUS_SHIFT: */ 589 default: 590 s = "VALID"; break; 591 }; s; }), 592 VBUSERR_RETRY_COUNT - musb->vbuserr_retry, 593 musb->port1_status); 594 595 /* go through A_WAIT_VFALL then start a new session */ 596 if (!ignore) 597 musb_platform_set_vbus(musb, 0); 598 handled = IRQ_HANDLED; 599 } 600 601 if (int_usb & MUSB_INTR_SUSPEND) { 602 dev_dbg(musb->controller, "SUSPEND (%s) devctl %02x power %02x\n", 603 otg_state_string(musb->xceiv->state), devctl, power); 604 handled = IRQ_HANDLED; 605 606 switch (musb->xceiv->state) { 607 case OTG_STATE_A_PERIPHERAL: 608 /* We also come here if the cable is removed, since 609 * this silicon doesn't report ID-no-longer-grounded. 610 * 611 * We depend on T(a_wait_bcon) to shut us down, and 612 * hope users don't do anything dicey during this 613 * undesired detour through A_WAIT_BCON. 614 */ 615 musb_hnp_stop(musb); 616 usb_hcd_resume_root_hub(musb_to_hcd(musb)); 617 musb_root_disconnect(musb); 618 musb_platform_try_idle(musb, jiffies 619 + msecs_to_jiffies(musb->a_wait_bcon 620 ? : OTG_TIME_A_WAIT_BCON)); 621 622 break; 623 case OTG_STATE_B_IDLE: 624 if (!musb->is_active) 625 break; 626 case OTG_STATE_B_PERIPHERAL: 627 musb_g_suspend(musb); 628 musb->is_active = is_otg_enabled(musb) 629 && musb->xceiv->gadget->b_hnp_enable; 630 if (musb->is_active) { 631 musb->xceiv->state = OTG_STATE_B_WAIT_ACON; 632 dev_dbg(musb->controller, "HNP: Setting timer for b_ase0_brst\n"); 633 mod_timer(&musb->otg_timer, jiffies 634 + msecs_to_jiffies( 635 OTG_TIME_B_ASE0_BRST)); 636 } 637 break; 638 case OTG_STATE_A_WAIT_BCON: 639 if (musb->a_wait_bcon != 0) 640 musb_platform_try_idle(musb, jiffies 641 + msecs_to_jiffies(musb->a_wait_bcon)); 642 break; 643 case OTG_STATE_A_HOST: 644 musb->xceiv->state = OTG_STATE_A_SUSPEND; 645 musb->is_active = is_otg_enabled(musb) 646 && musb->xceiv->host->b_hnp_enable; 647 break; 648 case OTG_STATE_B_HOST: 649 /* Transition to B_PERIPHERAL, see 6.8.2.6 p 44 */ 650 dev_dbg(musb->controller, "REVISIT: SUSPEND as B_HOST\n"); 651 break; 652 default: 653 /* "should not happen" */ 654 musb->is_active = 0; 655 break; 656 } 657 } 658 659 if (int_usb & MUSB_INTR_CONNECT) { 660 struct usb_hcd *hcd = musb_to_hcd(musb); 661 662 handled = IRQ_HANDLED; 663 musb->is_active = 1; 664 665 musb->ep0_stage = MUSB_EP0_START; 666 667 /* flush endpoints when transitioning from Device Mode */ 668 if (is_peripheral_active(musb)) { 669 /* REVISIT HNP; just force disconnect */ 670 } 671 musb_writew(musb->mregs, MUSB_INTRTXE, musb->epmask); 672 musb_writew(musb->mregs, MUSB_INTRRXE, musb->epmask & 0xfffe); 673 musb_writeb(musb->mregs, MUSB_INTRUSBE, 0xf7); 674 musb->port1_status &= ~(USB_PORT_STAT_LOW_SPEED 675 |USB_PORT_STAT_HIGH_SPEED 676 |USB_PORT_STAT_ENABLE 677 ); 678 musb->port1_status |= USB_PORT_STAT_CONNECTION 679 |(USB_PORT_STAT_C_CONNECTION << 16); 680 681 /* high vs full speed is just a guess until after reset */ 682 if (devctl & MUSB_DEVCTL_LSDEV) 683 musb->port1_status |= USB_PORT_STAT_LOW_SPEED; 684 685 /* indicate new connection to OTG machine */ 686 switch (musb->xceiv->state) { 687 case OTG_STATE_B_PERIPHERAL: 688 if (int_usb & MUSB_INTR_SUSPEND) { 689 dev_dbg(musb->controller, "HNP: SUSPEND+CONNECT, now b_host\n"); 690 int_usb &= ~MUSB_INTR_SUSPEND; 691 goto b_host; 692 } else 693 dev_dbg(musb->controller, "CONNECT as b_peripheral???\n"); 694 break; 695 case OTG_STATE_B_WAIT_ACON: 696 dev_dbg(musb->controller, "HNP: CONNECT, now b_host\n"); 697 b_host: 698 musb->xceiv->state = OTG_STATE_B_HOST; 699 hcd->self.is_b_host = 1; 700 musb->ignore_disconnect = 0; 701 del_timer(&musb->otg_timer); 702 break; 703 default: 704 if ((devctl & MUSB_DEVCTL_VBUS) 705 == (3 << MUSB_DEVCTL_VBUS_SHIFT)) { 706 musb->xceiv->state = OTG_STATE_A_HOST; 707 hcd->self.is_b_host = 0; 708 } 709 break; 710 } 711 712 /* poke the root hub */ 713 MUSB_HST_MODE(musb); 714 if (hcd->status_urb) 715 usb_hcd_poll_rh_status(hcd); 716 else 717 usb_hcd_resume_root_hub(hcd); 718 719 dev_dbg(musb->controller, "CONNECT (%s) devctl %02x\n", 720 otg_state_string(musb->xceiv->state), devctl); 721 } 722 723 if ((int_usb & MUSB_INTR_DISCONNECT) && !musb->ignore_disconnect) { 724 dev_dbg(musb->controller, "DISCONNECT (%s) as %s, devctl %02x\n", 725 otg_state_string(musb->xceiv->state), 726 MUSB_MODE(musb), devctl); 727 handled = IRQ_HANDLED; 728 729 switch (musb->xceiv->state) { 730 case OTG_STATE_A_HOST: 731 case OTG_STATE_A_SUSPEND: 732 usb_hcd_resume_root_hub(musb_to_hcd(musb)); 733 musb_root_disconnect(musb); 734 if (musb->a_wait_bcon != 0 && is_otg_enabled(musb)) 735 musb_platform_try_idle(musb, jiffies 736 + msecs_to_jiffies(musb->a_wait_bcon)); 737 break; 738 case OTG_STATE_B_HOST: 739 /* REVISIT this behaves for "real disconnect" 740 * cases; make sure the other transitions from 741 * from B_HOST act right too. The B_HOST code 742 * in hnp_stop() is currently not used... 743 */ 744 musb_root_disconnect(musb); 745 musb_to_hcd(musb)->self.is_b_host = 0; 746 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 747 MUSB_DEV_MODE(musb); 748 musb_g_disconnect(musb); 749 break; 750 case OTG_STATE_A_PERIPHERAL: 751 musb_hnp_stop(musb); 752 musb_root_disconnect(musb); 753 /* FALLTHROUGH */ 754 case OTG_STATE_B_WAIT_ACON: 755 /* FALLTHROUGH */ 756 case OTG_STATE_B_PERIPHERAL: 757 case OTG_STATE_B_IDLE: 758 musb_g_disconnect(musb); 759 break; 760 default: 761 WARNING("unhandled DISCONNECT transition (%s)\n", 762 otg_state_string(musb->xceiv->state)); 763 break; 764 } 765 } 766 767 /* mentor saves a bit: bus reset and babble share the same irq. 768 * only host sees babble; only peripheral sees bus reset. 769 */ 770 if (int_usb & MUSB_INTR_RESET) { 771 handled = IRQ_HANDLED; 772 if (is_host_capable() && (devctl & MUSB_DEVCTL_HM) != 0) { 773 /* 774 * Looks like non-HS BABBLE can be ignored, but 775 * HS BABBLE is an error condition. For HS the solution 776 * is to avoid babble in the first place and fix what 777 * caused BABBLE. When HS BABBLE happens we can only 778 * stop the session. 779 */ 780 if (devctl & (MUSB_DEVCTL_FSDEV | MUSB_DEVCTL_LSDEV)) 781 dev_dbg(musb->controller, "BABBLE devctl: %02x\n", devctl); 782 else { 783 ERR("Stopping host session -- babble\n"); 784 musb_writeb(musb->mregs, MUSB_DEVCTL, 0); 785 } 786 } else if (is_peripheral_capable()) { 787 dev_dbg(musb->controller, "BUS RESET as %s\n", 788 otg_state_string(musb->xceiv->state)); 789 switch (musb->xceiv->state) { 790 case OTG_STATE_A_SUSPEND: 791 /* We need to ignore disconnect on suspend 792 * otherwise tusb 2.0 won't reconnect after a 793 * power cycle, which breaks otg compliance. 794 */ 795 musb->ignore_disconnect = 1; 796 musb_g_reset(musb); 797 /* FALLTHROUGH */ 798 case OTG_STATE_A_WAIT_BCON: /* OPT TD.4.7-900ms */ 799 /* never use invalid T(a_wait_bcon) */ 800 dev_dbg(musb->controller, "HNP: in %s, %d msec timeout\n", 801 otg_state_string(musb->xceiv->state), 802 TA_WAIT_BCON(musb)); 803 mod_timer(&musb->otg_timer, jiffies 804 + msecs_to_jiffies(TA_WAIT_BCON(musb))); 805 break; 806 case OTG_STATE_A_PERIPHERAL: 807 musb->ignore_disconnect = 0; 808 del_timer(&musb->otg_timer); 809 musb_g_reset(musb); 810 break; 811 case OTG_STATE_B_WAIT_ACON: 812 dev_dbg(musb->controller, "HNP: RESET (%s), to b_peripheral\n", 813 otg_state_string(musb->xceiv->state)); 814 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 815 musb_g_reset(musb); 816 break; 817 case OTG_STATE_B_IDLE: 818 musb->xceiv->state = OTG_STATE_B_PERIPHERAL; 819 /* FALLTHROUGH */ 820 case OTG_STATE_B_PERIPHERAL: 821 musb_g_reset(musb); 822 break; 823 default: 824 dev_dbg(musb->controller, "Unhandled BUS RESET as %s\n", 825 otg_state_string(musb->xceiv->state)); 826 } 827 } 828 } 829 830 #if 0 831 /* REVISIT ... this would be for multiplexing periodic endpoints, or 832 * supporting transfer phasing to prevent exceeding ISO bandwidth 833 * limits of a given frame or microframe. 834 * 835 * It's not needed for peripheral side, which dedicates endpoints; 836 * though it _might_ use SOF irqs for other purposes. 837 * 838 * And it's not currently needed for host side, which also dedicates 839 * endpoints, relies on TX/RX interval registers, and isn't claimed 840 * to support ISO transfers yet. 841 */ 842 if (int_usb & MUSB_INTR_SOF) { 843 void __iomem *mbase = musb->mregs; 844 struct musb_hw_ep *ep; 845 u8 epnum; 846 u16 frame; 847 848 dev_dbg(musb->controller, "START_OF_FRAME\n"); 849 handled = IRQ_HANDLED; 850 851 /* start any periodic Tx transfers waiting for current frame */ 852 frame = musb_readw(mbase, MUSB_FRAME); 853 ep = musb->endpoints; 854 for (epnum = 1; (epnum < musb->nr_endpoints) 855 && (musb->epmask >= (1 << epnum)); 856 epnum++, ep++) { 857 /* 858 * FIXME handle framecounter wraps (12 bits) 859 * eliminate duplicated StartUrb logic 860 */ 861 if (ep->dwWaitFrame >= frame) { 862 ep->dwWaitFrame = 0; 863 pr_debug("SOF --> periodic TX%s on %d\n", 864 ep->tx_channel ? " DMA" : "", 865 epnum); 866 if (!ep->tx_channel) 867 musb_h_tx_start(musb, epnum); 868 else 869 cppi_hostdma_start(musb, epnum); 870 } 871 } /* end of for loop */ 872 } 873 #endif 874 875 schedule_work(&musb->irq_work); 876 877 return handled; 878 } 879 880 /*-------------------------------------------------------------------------*/ 881 882 /* 883 * Program the HDRC to start (enable interrupts, dma, etc.). 884 */ 885 void musb_start(struct musb *musb) 886 { 887 void __iomem *regs = musb->mregs; 888 u8 devctl = musb_readb(regs, MUSB_DEVCTL); 889 890 dev_dbg(musb->controller, "<== devctl %02x\n", devctl); 891 892 /* Set INT enable registers, enable interrupts */ 893 musb_writew(regs, MUSB_INTRTXE, musb->epmask); 894 musb_writew(regs, MUSB_INTRRXE, musb->epmask & 0xfffe); 895 musb_writeb(regs, MUSB_INTRUSBE, 0xf7); 896 897 musb_writeb(regs, MUSB_TESTMODE, 0); 898 899 /* put into basic highspeed mode and start session */ 900 musb_writeb(regs, MUSB_POWER, MUSB_POWER_ISOUPDATE 901 | MUSB_POWER_HSENAB 902 /* ENSUSPEND wedges tusb */ 903 /* | MUSB_POWER_ENSUSPEND */ 904 ); 905 906 musb->is_active = 0; 907 devctl = musb_readb(regs, MUSB_DEVCTL); 908 devctl &= ~MUSB_DEVCTL_SESSION; 909 910 if (is_otg_enabled(musb)) { 911 /* session started after: 912 * (a) ID-grounded irq, host mode; 913 * (b) vbus present/connect IRQ, peripheral mode; 914 * (c) peripheral initiates, using SRP 915 */ 916 if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS) 917 musb->is_active = 1; 918 else 919 devctl |= MUSB_DEVCTL_SESSION; 920 921 } else if (is_host_enabled(musb)) { 922 /* assume ID pin is hard-wired to ground */ 923 devctl |= MUSB_DEVCTL_SESSION; 924 925 } else /* peripheral is enabled */ { 926 if ((devctl & MUSB_DEVCTL_VBUS) == MUSB_DEVCTL_VBUS) 927 musb->is_active = 1; 928 } 929 musb_platform_enable(musb); 930 musb_writeb(regs, MUSB_DEVCTL, devctl); 931 } 932 933 934 static void musb_generic_disable(struct musb *musb) 935 { 936 void __iomem *mbase = musb->mregs; 937 u16 temp; 938 939 /* disable interrupts */ 940 musb_writeb(mbase, MUSB_INTRUSBE, 0); 941 musb_writew(mbase, MUSB_INTRTXE, 0); 942 musb_writew(mbase, MUSB_INTRRXE, 0); 943 944 /* off */ 945 musb_writeb(mbase, MUSB_DEVCTL, 0); 946 947 /* flush pending interrupts */ 948 temp = musb_readb(mbase, MUSB_INTRUSB); 949 temp = musb_readw(mbase, MUSB_INTRTX); 950 temp = musb_readw(mbase, MUSB_INTRRX); 951 952 } 953 954 /* 955 * Make the HDRC stop (disable interrupts, etc.); 956 * reversible by musb_start 957 * called on gadget driver unregister 958 * with controller locked, irqs blocked 959 * acts as a NOP unless some role activated the hardware 960 */ 961 void musb_stop(struct musb *musb) 962 { 963 /* stop IRQs, timers, ... */ 964 musb_platform_disable(musb); 965 musb_generic_disable(musb); 966 dev_dbg(musb->controller, "HDRC disabled\n"); 967 968 /* FIXME 969 * - mark host and/or peripheral drivers unusable/inactive 970 * - disable DMA (and enable it in HdrcStart) 971 * - make sure we can musb_start() after musb_stop(); with 972 * OTG mode, gadget driver module rmmod/modprobe cycles that 973 * - ... 974 */ 975 musb_platform_try_idle(musb, 0); 976 } 977 978 static void musb_shutdown(struct platform_device *pdev) 979 { 980 struct musb *musb = dev_to_musb(&pdev->dev); 981 unsigned long flags; 982 983 pm_runtime_get_sync(musb->controller); 984 spin_lock_irqsave(&musb->lock, flags); 985 musb_platform_disable(musb); 986 musb_generic_disable(musb); 987 spin_unlock_irqrestore(&musb->lock, flags); 988 989 if (!is_otg_enabled(musb) && is_host_enabled(musb)) 990 usb_remove_hcd(musb_to_hcd(musb)); 991 musb_writeb(musb->mregs, MUSB_DEVCTL, 0); 992 musb_platform_exit(musb); 993 994 pm_runtime_put(musb->controller); 995 /* FIXME power down */ 996 } 997 998 999 /*-------------------------------------------------------------------------*/ 1000 1001 /* 1002 * The silicon either has hard-wired endpoint configurations, or else 1003 * "dynamic fifo" sizing. The driver has support for both, though at this 1004 * writing only the dynamic sizing is very well tested. Since we switched 1005 * away from compile-time hardware parameters, we can no longer rely on 1006 * dead code elimination to leave only the relevant one in the object file. 1007 * 1008 * We don't currently use dynamic fifo setup capability to do anything 1009 * more than selecting one of a bunch of predefined configurations. 1010 */ 1011 #if defined(CONFIG_USB_MUSB_TUSB6010) \ 1012 || defined(CONFIG_USB_MUSB_TUSB6010_MODULE) \ 1013 || defined(CONFIG_USB_MUSB_OMAP2PLUS) \ 1014 || defined(CONFIG_USB_MUSB_OMAP2PLUS_MODULE) \ 1015 || defined(CONFIG_USB_MUSB_AM35X) \ 1016 || defined(CONFIG_USB_MUSB_AM35X_MODULE) 1017 static ushort __initdata fifo_mode = 4; 1018 #elif defined(CONFIG_USB_MUSB_UX500) \ 1019 || defined(CONFIG_USB_MUSB_UX500_MODULE) 1020 static ushort __initdata fifo_mode = 5; 1021 #else 1022 static ushort __initdata fifo_mode = 2; 1023 #endif 1024 1025 /* "modprobe ... fifo_mode=1" etc */ 1026 module_param(fifo_mode, ushort, 0); 1027 MODULE_PARM_DESC(fifo_mode, "initial endpoint configuration"); 1028 1029 /* 1030 * tables defining fifo_mode values. define more if you like. 1031 * for host side, make sure both halves of ep1 are set up. 1032 */ 1033 1034 /* mode 0 - fits in 2KB */ 1035 static struct musb_fifo_cfg __initdata mode_0_cfg[] = { 1036 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, }, 1037 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, }, 1038 { .hw_ep_num = 2, .style = FIFO_RXTX, .maxpacket = 512, }, 1039 { .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, }, 1040 { .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, }, 1041 }; 1042 1043 /* mode 1 - fits in 4KB */ 1044 static struct musb_fifo_cfg __initdata mode_1_cfg[] = { 1045 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, .mode = BUF_DOUBLE, }, 1046 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, .mode = BUF_DOUBLE, }, 1047 { .hw_ep_num = 2, .style = FIFO_RXTX, .maxpacket = 512, .mode = BUF_DOUBLE, }, 1048 { .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, }, 1049 { .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, }, 1050 }; 1051 1052 /* mode 2 - fits in 4KB */ 1053 static struct musb_fifo_cfg __initdata mode_2_cfg[] = { 1054 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, }, 1055 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, }, 1056 { .hw_ep_num = 2, .style = FIFO_TX, .maxpacket = 512, }, 1057 { .hw_ep_num = 2, .style = FIFO_RX, .maxpacket = 512, }, 1058 { .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, }, 1059 { .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, }, 1060 }; 1061 1062 /* mode 3 - fits in 4KB */ 1063 static struct musb_fifo_cfg __initdata mode_3_cfg[] = { 1064 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, .mode = BUF_DOUBLE, }, 1065 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, .mode = BUF_DOUBLE, }, 1066 { .hw_ep_num = 2, .style = FIFO_TX, .maxpacket = 512, }, 1067 { .hw_ep_num = 2, .style = FIFO_RX, .maxpacket = 512, }, 1068 { .hw_ep_num = 3, .style = FIFO_RXTX, .maxpacket = 256, }, 1069 { .hw_ep_num = 4, .style = FIFO_RXTX, .maxpacket = 256, }, 1070 }; 1071 1072 /* mode 4 - fits in 16KB */ 1073 static struct musb_fifo_cfg __initdata mode_4_cfg[] = { 1074 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, }, 1075 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, }, 1076 { .hw_ep_num = 2, .style = FIFO_TX, .maxpacket = 512, }, 1077 { .hw_ep_num = 2, .style = FIFO_RX, .maxpacket = 512, }, 1078 { .hw_ep_num = 3, .style = FIFO_TX, .maxpacket = 512, }, 1079 { .hw_ep_num = 3, .style = FIFO_RX, .maxpacket = 512, }, 1080 { .hw_ep_num = 4, .style = FIFO_TX, .maxpacket = 512, }, 1081 { .hw_ep_num = 4, .style = FIFO_RX, .maxpacket = 512, }, 1082 { .hw_ep_num = 5, .style = FIFO_TX, .maxpacket = 512, }, 1083 { .hw_ep_num = 5, .style = FIFO_RX, .maxpacket = 512, }, 1084 { .hw_ep_num = 6, .style = FIFO_TX, .maxpacket = 512, }, 1085 { .hw_ep_num = 6, .style = FIFO_RX, .maxpacket = 512, }, 1086 { .hw_ep_num = 7, .style = FIFO_TX, .maxpacket = 512, }, 1087 { .hw_ep_num = 7, .style = FIFO_RX, .maxpacket = 512, }, 1088 { .hw_ep_num = 8, .style = FIFO_TX, .maxpacket = 512, }, 1089 { .hw_ep_num = 8, .style = FIFO_RX, .maxpacket = 512, }, 1090 { .hw_ep_num = 9, .style = FIFO_TX, .maxpacket = 512, }, 1091 { .hw_ep_num = 9, .style = FIFO_RX, .maxpacket = 512, }, 1092 { .hw_ep_num = 10, .style = FIFO_TX, .maxpacket = 256, }, 1093 { .hw_ep_num = 10, .style = FIFO_RX, .maxpacket = 64, }, 1094 { .hw_ep_num = 11, .style = FIFO_TX, .maxpacket = 256, }, 1095 { .hw_ep_num = 11, .style = FIFO_RX, .maxpacket = 64, }, 1096 { .hw_ep_num = 12, .style = FIFO_TX, .maxpacket = 256, }, 1097 { .hw_ep_num = 12, .style = FIFO_RX, .maxpacket = 64, }, 1098 { .hw_ep_num = 13, .style = FIFO_RXTX, .maxpacket = 4096, }, 1099 { .hw_ep_num = 14, .style = FIFO_RXTX, .maxpacket = 1024, }, 1100 { .hw_ep_num = 15, .style = FIFO_RXTX, .maxpacket = 1024, }, 1101 }; 1102 1103 /* mode 5 - fits in 8KB */ 1104 static struct musb_fifo_cfg __initdata mode_5_cfg[] = { 1105 { .hw_ep_num = 1, .style = FIFO_TX, .maxpacket = 512, }, 1106 { .hw_ep_num = 1, .style = FIFO_RX, .maxpacket = 512, }, 1107 { .hw_ep_num = 2, .style = FIFO_TX, .maxpacket = 512, }, 1108 { .hw_ep_num = 2, .style = FIFO_RX, .maxpacket = 512, }, 1109 { .hw_ep_num = 3, .style = FIFO_TX, .maxpacket = 512, }, 1110 { .hw_ep_num = 3, .style = FIFO_RX, .maxpacket = 512, }, 1111 { .hw_ep_num = 4, .style = FIFO_TX, .maxpacket = 512, }, 1112 { .hw_ep_num = 4, .style = FIFO_RX, .maxpacket = 512, }, 1113 { .hw_ep_num = 5, .style = FIFO_TX, .maxpacket = 512, }, 1114 { .hw_ep_num = 5, .style = FIFO_RX, .maxpacket = 512, }, 1115 { .hw_ep_num = 6, .style = FIFO_TX, .maxpacket = 32, }, 1116 { .hw_ep_num = 6, .style = FIFO_RX, .maxpacket = 32, }, 1117 { .hw_ep_num = 7, .style = FIFO_TX, .maxpacket = 32, }, 1118 { .hw_ep_num = 7, .style = FIFO_RX, .maxpacket = 32, }, 1119 { .hw_ep_num = 8, .style = FIFO_TX, .maxpacket = 32, }, 1120 { .hw_ep_num = 8, .style = FIFO_RX, .maxpacket = 32, }, 1121 { .hw_ep_num = 9, .style = FIFO_TX, .maxpacket = 32, }, 1122 { .hw_ep_num = 9, .style = FIFO_RX, .maxpacket = 32, }, 1123 { .hw_ep_num = 10, .style = FIFO_TX, .maxpacket = 32, }, 1124 { .hw_ep_num = 10, .style = FIFO_RX, .maxpacket = 32, }, 1125 { .hw_ep_num = 11, .style = FIFO_TX, .maxpacket = 32, }, 1126 { .hw_ep_num = 11, .style = FIFO_RX, .maxpacket = 32, }, 1127 { .hw_ep_num = 12, .style = FIFO_TX, .maxpacket = 32, }, 1128 { .hw_ep_num = 12, .style = FIFO_RX, .maxpacket = 32, }, 1129 { .hw_ep_num = 13, .style = FIFO_RXTX, .maxpacket = 512, }, 1130 { .hw_ep_num = 14, .style = FIFO_RXTX, .maxpacket = 1024, }, 1131 { .hw_ep_num = 15, .style = FIFO_RXTX, .maxpacket = 1024, }, 1132 }; 1133 1134 /* 1135 * configure a fifo; for non-shared endpoints, this may be called 1136 * once for a tx fifo and once for an rx fifo. 1137 * 1138 * returns negative errno or offset for next fifo. 1139 */ 1140 static int __init 1141 fifo_setup(struct musb *musb, struct musb_hw_ep *hw_ep, 1142 const struct musb_fifo_cfg *cfg, u16 offset) 1143 { 1144 void __iomem *mbase = musb->mregs; 1145 int size = 0; 1146 u16 maxpacket = cfg->maxpacket; 1147 u16 c_off = offset >> 3; 1148 u8 c_size; 1149 1150 /* expect hw_ep has already been zero-initialized */ 1151 1152 size = ffs(max(maxpacket, (u16) 8)) - 1; 1153 maxpacket = 1 << size; 1154 1155 c_size = size - 3; 1156 if (cfg->mode == BUF_DOUBLE) { 1157 if ((offset + (maxpacket << 1)) > 1158 (1 << (musb->config->ram_bits + 2))) 1159 return -EMSGSIZE; 1160 c_size |= MUSB_FIFOSZ_DPB; 1161 } else { 1162 if ((offset + maxpacket) > (1 << (musb->config->ram_bits + 2))) 1163 return -EMSGSIZE; 1164 } 1165 1166 /* configure the FIFO */ 1167 musb_writeb(mbase, MUSB_INDEX, hw_ep->epnum); 1168 1169 /* EP0 reserved endpoint for control, bidirectional; 1170 * EP1 reserved for bulk, two unidirection halves. 1171 */ 1172 if (hw_ep->epnum == 1) 1173 musb->bulk_ep = hw_ep; 1174 /* REVISIT error check: be sure ep0 can both rx and tx ... */ 1175 switch (cfg->style) { 1176 case FIFO_TX: 1177 musb_write_txfifosz(mbase, c_size); 1178 musb_write_txfifoadd(mbase, c_off); 1179 hw_ep->tx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB); 1180 hw_ep->max_packet_sz_tx = maxpacket; 1181 break; 1182 case FIFO_RX: 1183 musb_write_rxfifosz(mbase, c_size); 1184 musb_write_rxfifoadd(mbase, c_off); 1185 hw_ep->rx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB); 1186 hw_ep->max_packet_sz_rx = maxpacket; 1187 break; 1188 case FIFO_RXTX: 1189 musb_write_txfifosz(mbase, c_size); 1190 musb_write_txfifoadd(mbase, c_off); 1191 hw_ep->rx_double_buffered = !!(c_size & MUSB_FIFOSZ_DPB); 1192 hw_ep->max_packet_sz_rx = maxpacket; 1193 1194 musb_write_rxfifosz(mbase, c_size); 1195 musb_write_rxfifoadd(mbase, c_off); 1196 hw_ep->tx_double_buffered = hw_ep->rx_double_buffered; 1197 hw_ep->max_packet_sz_tx = maxpacket; 1198 1199 hw_ep->is_shared_fifo = true; 1200 break; 1201 } 1202 1203 /* NOTE rx and tx endpoint irqs aren't managed separately, 1204 * which happens to be ok 1205 */ 1206 musb->epmask |= (1 << hw_ep->epnum); 1207 1208 return offset + (maxpacket << ((c_size & MUSB_FIFOSZ_DPB) ? 1 : 0)); 1209 } 1210 1211 static struct musb_fifo_cfg __initdata ep0_cfg = { 1212 .style = FIFO_RXTX, .maxpacket = 64, 1213 }; 1214 1215 static int __init ep_config_from_table(struct musb *musb) 1216 { 1217 const struct musb_fifo_cfg *cfg; 1218 unsigned i, n; 1219 int offset; 1220 struct musb_hw_ep *hw_ep = musb->endpoints; 1221 1222 if (musb->config->fifo_cfg) { 1223 cfg = musb->config->fifo_cfg; 1224 n = musb->config->fifo_cfg_size; 1225 goto done; 1226 } 1227 1228 switch (fifo_mode) { 1229 default: 1230 fifo_mode = 0; 1231 /* FALLTHROUGH */ 1232 case 0: 1233 cfg = mode_0_cfg; 1234 n = ARRAY_SIZE(mode_0_cfg); 1235 break; 1236 case 1: 1237 cfg = mode_1_cfg; 1238 n = ARRAY_SIZE(mode_1_cfg); 1239 break; 1240 case 2: 1241 cfg = mode_2_cfg; 1242 n = ARRAY_SIZE(mode_2_cfg); 1243 break; 1244 case 3: 1245 cfg = mode_3_cfg; 1246 n = ARRAY_SIZE(mode_3_cfg); 1247 break; 1248 case 4: 1249 cfg = mode_4_cfg; 1250 n = ARRAY_SIZE(mode_4_cfg); 1251 break; 1252 case 5: 1253 cfg = mode_5_cfg; 1254 n = ARRAY_SIZE(mode_5_cfg); 1255 break; 1256 } 1257 1258 printk(KERN_DEBUG "%s: setup fifo_mode %d\n", 1259 musb_driver_name, fifo_mode); 1260 1261 1262 done: 1263 offset = fifo_setup(musb, hw_ep, &ep0_cfg, 0); 1264 /* assert(offset > 0) */ 1265 1266 /* NOTE: for RTL versions >= 1.400 EPINFO and RAMINFO would 1267 * be better than static musb->config->num_eps and DYN_FIFO_SIZE... 1268 */ 1269 1270 for (i = 0; i < n; i++) { 1271 u8 epn = cfg->hw_ep_num; 1272 1273 if (epn >= musb->config->num_eps) { 1274 pr_debug("%s: invalid ep %d\n", 1275 musb_driver_name, epn); 1276 return -EINVAL; 1277 } 1278 offset = fifo_setup(musb, hw_ep + epn, cfg++, offset); 1279 if (offset < 0) { 1280 pr_debug("%s: mem overrun, ep %d\n", 1281 musb_driver_name, epn); 1282 return -EINVAL; 1283 } 1284 epn++; 1285 musb->nr_endpoints = max(epn, musb->nr_endpoints); 1286 } 1287 1288 printk(KERN_DEBUG "%s: %d/%d max ep, %d/%d memory\n", 1289 musb_driver_name, 1290 n + 1, musb->config->num_eps * 2 - 1, 1291 offset, (1 << (musb->config->ram_bits + 2))); 1292 1293 if (!musb->bulk_ep) { 1294 pr_debug("%s: missing bulk\n", musb_driver_name); 1295 return -EINVAL; 1296 } 1297 1298 return 0; 1299 } 1300 1301 1302 /* 1303 * ep_config_from_hw - when MUSB_C_DYNFIFO_DEF is false 1304 * @param musb the controller 1305 */ 1306 static int __init ep_config_from_hw(struct musb *musb) 1307 { 1308 u8 epnum = 0; 1309 struct musb_hw_ep *hw_ep; 1310 void *mbase = musb->mregs; 1311 int ret = 0; 1312 1313 dev_dbg(musb->controller, "<== static silicon ep config\n"); 1314 1315 /* FIXME pick up ep0 maxpacket size */ 1316 1317 for (epnum = 1; epnum < musb->config->num_eps; epnum++) { 1318 musb_ep_select(mbase, epnum); 1319 hw_ep = musb->endpoints + epnum; 1320 1321 ret = musb_read_fifosize(musb, hw_ep, epnum); 1322 if (ret < 0) 1323 break; 1324 1325 /* FIXME set up hw_ep->{rx,tx}_double_buffered */ 1326 1327 /* pick an RX/TX endpoint for bulk */ 1328 if (hw_ep->max_packet_sz_tx < 512 1329 || hw_ep->max_packet_sz_rx < 512) 1330 continue; 1331 1332 /* REVISIT: this algorithm is lazy, we should at least 1333 * try to pick a double buffered endpoint. 1334 */ 1335 if (musb->bulk_ep) 1336 continue; 1337 musb->bulk_ep = hw_ep; 1338 } 1339 1340 if (!musb->bulk_ep) { 1341 pr_debug("%s: missing bulk\n", musb_driver_name); 1342 return -EINVAL; 1343 } 1344 1345 return 0; 1346 } 1347 1348 enum { MUSB_CONTROLLER_MHDRC, MUSB_CONTROLLER_HDRC, }; 1349 1350 /* Initialize MUSB (M)HDRC part of the USB hardware subsystem; 1351 * configure endpoints, or take their config from silicon 1352 */ 1353 static int __init musb_core_init(u16 musb_type, struct musb *musb) 1354 { 1355 u8 reg; 1356 char *type; 1357 char aInfo[90], aRevision[32], aDate[12]; 1358 void __iomem *mbase = musb->mregs; 1359 int status = 0; 1360 int i; 1361 1362 /* log core options (read using indexed model) */ 1363 reg = musb_read_configdata(mbase); 1364 1365 strcpy(aInfo, (reg & MUSB_CONFIGDATA_UTMIDW) ? "UTMI-16" : "UTMI-8"); 1366 if (reg & MUSB_CONFIGDATA_DYNFIFO) { 1367 strcat(aInfo, ", dyn FIFOs"); 1368 musb->dyn_fifo = true; 1369 } 1370 if (reg & MUSB_CONFIGDATA_MPRXE) { 1371 strcat(aInfo, ", bulk combine"); 1372 musb->bulk_combine = true; 1373 } 1374 if (reg & MUSB_CONFIGDATA_MPTXE) { 1375 strcat(aInfo, ", bulk split"); 1376 musb->bulk_split = true; 1377 } 1378 if (reg & MUSB_CONFIGDATA_HBRXE) { 1379 strcat(aInfo, ", HB-ISO Rx"); 1380 musb->hb_iso_rx = true; 1381 } 1382 if (reg & MUSB_CONFIGDATA_HBTXE) { 1383 strcat(aInfo, ", HB-ISO Tx"); 1384 musb->hb_iso_tx = true; 1385 } 1386 if (reg & MUSB_CONFIGDATA_SOFTCONE) 1387 strcat(aInfo, ", SoftConn"); 1388 1389 printk(KERN_DEBUG "%s: ConfigData=0x%02x (%s)\n", 1390 musb_driver_name, reg, aInfo); 1391 1392 aDate[0] = 0; 1393 if (MUSB_CONTROLLER_MHDRC == musb_type) { 1394 musb->is_multipoint = 1; 1395 type = "M"; 1396 } else { 1397 musb->is_multipoint = 0; 1398 type = ""; 1399 #ifndef CONFIG_USB_OTG_BLACKLIST_HUB 1400 printk(KERN_ERR 1401 "%s: kernel must blacklist external hubs\n", 1402 musb_driver_name); 1403 #endif 1404 } 1405 1406 /* log release info */ 1407 musb->hwvers = musb_read_hwvers(mbase); 1408 snprintf(aRevision, 32, "%d.%d%s", MUSB_HWVERS_MAJOR(musb->hwvers), 1409 MUSB_HWVERS_MINOR(musb->hwvers), 1410 (musb->hwvers & MUSB_HWVERS_RC) ? "RC" : ""); 1411 printk(KERN_DEBUG "%s: %sHDRC RTL version %s %s\n", 1412 musb_driver_name, type, aRevision, aDate); 1413 1414 /* configure ep0 */ 1415 musb_configure_ep0(musb); 1416 1417 /* discover endpoint configuration */ 1418 musb->nr_endpoints = 1; 1419 musb->epmask = 1; 1420 1421 if (musb->dyn_fifo) 1422 status = ep_config_from_table(musb); 1423 else 1424 status = ep_config_from_hw(musb); 1425 1426 if (status < 0) 1427 return status; 1428 1429 /* finish init, and print endpoint config */ 1430 for (i = 0; i < musb->nr_endpoints; i++) { 1431 struct musb_hw_ep *hw_ep = musb->endpoints + i; 1432 1433 hw_ep->fifo = MUSB_FIFO_OFFSET(i) + mbase; 1434 #if defined(CONFIG_USB_MUSB_TUSB6010) || defined (CONFIG_USB_MUSB_TUSB6010_MODULE) 1435 hw_ep->fifo_async = musb->async + 0x400 + MUSB_FIFO_OFFSET(i); 1436 hw_ep->fifo_sync = musb->sync + 0x400 + MUSB_FIFO_OFFSET(i); 1437 hw_ep->fifo_sync_va = 1438 musb->sync_va + 0x400 + MUSB_FIFO_OFFSET(i); 1439 1440 if (i == 0) 1441 hw_ep->conf = mbase - 0x400 + TUSB_EP0_CONF; 1442 else 1443 hw_ep->conf = mbase + 0x400 + (((i - 1) & 0xf) << 2); 1444 #endif 1445 1446 hw_ep->regs = MUSB_EP_OFFSET(i, 0) + mbase; 1447 hw_ep->target_regs = musb_read_target_reg_base(i, mbase); 1448 hw_ep->rx_reinit = 1; 1449 hw_ep->tx_reinit = 1; 1450 1451 if (hw_ep->max_packet_sz_tx) { 1452 dev_dbg(musb->controller, 1453 "%s: hw_ep %d%s, %smax %d\n", 1454 musb_driver_name, i, 1455 hw_ep->is_shared_fifo ? "shared" : "tx", 1456 hw_ep->tx_double_buffered 1457 ? "doublebuffer, " : "", 1458 hw_ep->max_packet_sz_tx); 1459 } 1460 if (hw_ep->max_packet_sz_rx && !hw_ep->is_shared_fifo) { 1461 dev_dbg(musb->controller, 1462 "%s: hw_ep %d%s, %smax %d\n", 1463 musb_driver_name, i, 1464 "rx", 1465 hw_ep->rx_double_buffered 1466 ? "doublebuffer, " : "", 1467 hw_ep->max_packet_sz_rx); 1468 } 1469 if (!(hw_ep->max_packet_sz_tx || hw_ep->max_packet_sz_rx)) 1470 dev_dbg(musb->controller, "hw_ep %d not configured\n", i); 1471 } 1472 1473 return 0; 1474 } 1475 1476 /*-------------------------------------------------------------------------*/ 1477 1478 #if defined(CONFIG_SOC_OMAP2430) || defined(CONFIG_SOC_OMAP3430) || \ 1479 defined(CONFIG_ARCH_OMAP4) || defined(CONFIG_ARCH_U8500) 1480 1481 static irqreturn_t generic_interrupt(int irq, void *__hci) 1482 { 1483 unsigned long flags; 1484 irqreturn_t retval = IRQ_NONE; 1485 struct musb *musb = __hci; 1486 1487 spin_lock_irqsave(&musb->lock, flags); 1488 1489 musb->int_usb = musb_readb(musb->mregs, MUSB_INTRUSB); 1490 musb->int_tx = musb_readw(musb->mregs, MUSB_INTRTX); 1491 musb->int_rx = musb_readw(musb->mregs, MUSB_INTRRX); 1492 1493 if (musb->int_usb || musb->int_tx || musb->int_rx) 1494 retval = musb_interrupt(musb); 1495 1496 spin_unlock_irqrestore(&musb->lock, flags); 1497 1498 return retval; 1499 } 1500 1501 #else 1502 #define generic_interrupt NULL 1503 #endif 1504 1505 /* 1506 * handle all the irqs defined by the HDRC core. for now we expect: other 1507 * irq sources (phy, dma, etc) will be handled first, musb->int_* values 1508 * will be assigned, and the irq will already have been acked. 1509 * 1510 * called in irq context with spinlock held, irqs blocked 1511 */ 1512 irqreturn_t musb_interrupt(struct musb *musb) 1513 { 1514 irqreturn_t retval = IRQ_NONE; 1515 u8 devctl, power; 1516 int ep_num; 1517 u32 reg; 1518 1519 devctl = musb_readb(musb->mregs, MUSB_DEVCTL); 1520 power = musb_readb(musb->mregs, MUSB_POWER); 1521 1522 dev_dbg(musb->controller, "** IRQ %s usb%04x tx%04x rx%04x\n", 1523 (devctl & MUSB_DEVCTL_HM) ? "host" : "peripheral", 1524 musb->int_usb, musb->int_tx, musb->int_rx); 1525 1526 /* the core can interrupt us for multiple reasons; docs have 1527 * a generic interrupt flowchart to follow 1528 */ 1529 if (musb->int_usb) 1530 retval |= musb_stage0_irq(musb, musb->int_usb, 1531 devctl, power); 1532 1533 /* "stage 1" is handling endpoint irqs */ 1534 1535 /* handle endpoint 0 first */ 1536 if (musb->int_tx & 1) { 1537 if (devctl & MUSB_DEVCTL_HM) 1538 retval |= musb_h_ep0_irq(musb); 1539 else 1540 retval |= musb_g_ep0_irq(musb); 1541 } 1542 1543 /* RX on endpoints 1-15 */ 1544 reg = musb->int_rx >> 1; 1545 ep_num = 1; 1546 while (reg) { 1547 if (reg & 1) { 1548 /* musb_ep_select(musb->mregs, ep_num); */ 1549 /* REVISIT just retval = ep->rx_irq(...) */ 1550 retval = IRQ_HANDLED; 1551 if (devctl & MUSB_DEVCTL_HM) { 1552 if (is_host_capable()) 1553 musb_host_rx(musb, ep_num); 1554 } else { 1555 if (is_peripheral_capable()) 1556 musb_g_rx(musb, ep_num); 1557 } 1558 } 1559 1560 reg >>= 1; 1561 ep_num++; 1562 } 1563 1564 /* TX on endpoints 1-15 */ 1565 reg = musb->int_tx >> 1; 1566 ep_num = 1; 1567 while (reg) { 1568 if (reg & 1) { 1569 /* musb_ep_select(musb->mregs, ep_num); */ 1570 /* REVISIT just retval |= ep->tx_irq(...) */ 1571 retval = IRQ_HANDLED; 1572 if (devctl & MUSB_DEVCTL_HM) { 1573 if (is_host_capable()) 1574 musb_host_tx(musb, ep_num); 1575 } else { 1576 if (is_peripheral_capable()) 1577 musb_g_tx(musb, ep_num); 1578 } 1579 } 1580 reg >>= 1; 1581 ep_num++; 1582 } 1583 1584 return retval; 1585 } 1586 EXPORT_SYMBOL_GPL(musb_interrupt); 1587 1588 #ifndef CONFIG_MUSB_PIO_ONLY 1589 static bool __initdata use_dma = 1; 1590 1591 /* "modprobe ... use_dma=0" etc */ 1592 module_param(use_dma, bool, 0); 1593 MODULE_PARM_DESC(use_dma, "enable/disable use of DMA"); 1594 1595 void musb_dma_completion(struct musb *musb, u8 epnum, u8 transmit) 1596 { 1597 u8 devctl = musb_readb(musb->mregs, MUSB_DEVCTL); 1598 1599 /* called with controller lock already held */ 1600 1601 if (!epnum) { 1602 #ifndef CONFIG_USB_TUSB_OMAP_DMA 1603 if (!is_cppi_enabled()) { 1604 /* endpoint 0 */ 1605 if (devctl & MUSB_DEVCTL_HM) 1606 musb_h_ep0_irq(musb); 1607 else 1608 musb_g_ep0_irq(musb); 1609 } 1610 #endif 1611 } else { 1612 /* endpoints 1..15 */ 1613 if (transmit) { 1614 if (devctl & MUSB_DEVCTL_HM) { 1615 if (is_host_capable()) 1616 musb_host_tx(musb, epnum); 1617 } else { 1618 if (is_peripheral_capable()) 1619 musb_g_tx(musb, epnum); 1620 } 1621 } else { 1622 /* receive */ 1623 if (devctl & MUSB_DEVCTL_HM) { 1624 if (is_host_capable()) 1625 musb_host_rx(musb, epnum); 1626 } else { 1627 if (is_peripheral_capable()) 1628 musb_g_rx(musb, epnum); 1629 } 1630 } 1631 } 1632 } 1633 EXPORT_SYMBOL_GPL(musb_dma_completion); 1634 1635 #else 1636 #define use_dma 0 1637 #endif 1638 1639 /*-------------------------------------------------------------------------*/ 1640 1641 #ifdef CONFIG_SYSFS 1642 1643 static ssize_t 1644 musb_mode_show(struct device *dev, struct device_attribute *attr, char *buf) 1645 { 1646 struct musb *musb = dev_to_musb(dev); 1647 unsigned long flags; 1648 int ret = -EINVAL; 1649 1650 spin_lock_irqsave(&musb->lock, flags); 1651 ret = sprintf(buf, "%s\n", otg_state_string(musb->xceiv->state)); 1652 spin_unlock_irqrestore(&musb->lock, flags); 1653 1654 return ret; 1655 } 1656 1657 static ssize_t 1658 musb_mode_store(struct device *dev, struct device_attribute *attr, 1659 const char *buf, size_t n) 1660 { 1661 struct musb *musb = dev_to_musb(dev); 1662 unsigned long flags; 1663 int status; 1664 1665 spin_lock_irqsave(&musb->lock, flags); 1666 if (sysfs_streq(buf, "host")) 1667 status = musb_platform_set_mode(musb, MUSB_HOST); 1668 else if (sysfs_streq(buf, "peripheral")) 1669 status = musb_platform_set_mode(musb, MUSB_PERIPHERAL); 1670 else if (sysfs_streq(buf, "otg")) 1671 status = musb_platform_set_mode(musb, MUSB_OTG); 1672 else 1673 status = -EINVAL; 1674 spin_unlock_irqrestore(&musb->lock, flags); 1675 1676 return (status == 0) ? n : status; 1677 } 1678 static DEVICE_ATTR(mode, 0644, musb_mode_show, musb_mode_store); 1679 1680 static ssize_t 1681 musb_vbus_store(struct device *dev, struct device_attribute *attr, 1682 const char *buf, size_t n) 1683 { 1684 struct musb *musb = dev_to_musb(dev); 1685 unsigned long flags; 1686 unsigned long val; 1687 1688 if (sscanf(buf, "%lu", &val) < 1) { 1689 dev_err(dev, "Invalid VBUS timeout ms value\n"); 1690 return -EINVAL; 1691 } 1692 1693 spin_lock_irqsave(&musb->lock, flags); 1694 /* force T(a_wait_bcon) to be zero/unlimited *OR* valid */ 1695 musb->a_wait_bcon = val ? max_t(int, val, OTG_TIME_A_WAIT_BCON) : 0 ; 1696 if (musb->xceiv->state == OTG_STATE_A_WAIT_BCON) 1697 musb->is_active = 0; 1698 musb_platform_try_idle(musb, jiffies + msecs_to_jiffies(val)); 1699 spin_unlock_irqrestore(&musb->lock, flags); 1700 1701 return n; 1702 } 1703 1704 static ssize_t 1705 musb_vbus_show(struct device *dev, struct device_attribute *attr, char *buf) 1706 { 1707 struct musb *musb = dev_to_musb(dev); 1708 unsigned long flags; 1709 unsigned long val; 1710 int vbus; 1711 1712 spin_lock_irqsave(&musb->lock, flags); 1713 val = musb->a_wait_bcon; 1714 /* FIXME get_vbus_status() is normally #defined as false... 1715 * and is effectively TUSB-specific. 1716 */ 1717 vbus = musb_platform_get_vbus_status(musb); 1718 spin_unlock_irqrestore(&musb->lock, flags); 1719 1720 return sprintf(buf, "Vbus %s, timeout %lu msec\n", 1721 vbus ? "on" : "off", val); 1722 } 1723 static DEVICE_ATTR(vbus, 0644, musb_vbus_show, musb_vbus_store); 1724 1725 /* Gadget drivers can't know that a host is connected so they might want 1726 * to start SRP, but users can. This allows userspace to trigger SRP. 1727 */ 1728 static ssize_t 1729 musb_srp_store(struct device *dev, struct device_attribute *attr, 1730 const char *buf, size_t n) 1731 { 1732 struct musb *musb = dev_to_musb(dev); 1733 unsigned short srp; 1734 1735 if (sscanf(buf, "%hu", &srp) != 1 1736 || (srp != 1)) { 1737 dev_err(dev, "SRP: Value must be 1\n"); 1738 return -EINVAL; 1739 } 1740 1741 if (srp == 1) 1742 musb_g_wakeup(musb); 1743 1744 return n; 1745 } 1746 static DEVICE_ATTR(srp, 0644, NULL, musb_srp_store); 1747 1748 static struct attribute *musb_attributes[] = { 1749 &dev_attr_mode.attr, 1750 &dev_attr_vbus.attr, 1751 &dev_attr_srp.attr, 1752 NULL 1753 }; 1754 1755 static const struct attribute_group musb_attr_group = { 1756 .attrs = musb_attributes, 1757 }; 1758 1759 #endif /* sysfs */ 1760 1761 /* Only used to provide driver mode change events */ 1762 static void musb_irq_work(struct work_struct *data) 1763 { 1764 struct musb *musb = container_of(data, struct musb, irq_work); 1765 static int old_state; 1766 1767 if (musb->xceiv->state != old_state) { 1768 old_state = musb->xceiv->state; 1769 sysfs_notify(&musb->controller->kobj, NULL, "mode"); 1770 } 1771 } 1772 1773 /* -------------------------------------------------------------------------- 1774 * Init support 1775 */ 1776 1777 static struct musb *__init 1778 allocate_instance(struct device *dev, 1779 struct musb_hdrc_config *config, void __iomem *mbase) 1780 { 1781 struct musb *musb; 1782 struct musb_hw_ep *ep; 1783 int epnum; 1784 struct usb_hcd *hcd; 1785 1786 hcd = usb_create_hcd(&musb_hc_driver, dev, dev_name(dev)); 1787 if (!hcd) 1788 return NULL; 1789 /* usbcore sets dev->driver_data to hcd, and sometimes uses that... */ 1790 1791 musb = hcd_to_musb(hcd); 1792 INIT_LIST_HEAD(&musb->control); 1793 INIT_LIST_HEAD(&musb->in_bulk); 1794 INIT_LIST_HEAD(&musb->out_bulk); 1795 1796 hcd->uses_new_polling = 1; 1797 hcd->has_tt = 1; 1798 1799 musb->vbuserr_retry = VBUSERR_RETRY_COUNT; 1800 musb->a_wait_bcon = OTG_TIME_A_WAIT_BCON; 1801 dev_set_drvdata(dev, musb); 1802 musb->mregs = mbase; 1803 musb->ctrl_base = mbase; 1804 musb->nIrq = -ENODEV; 1805 musb->config = config; 1806 BUG_ON(musb->config->num_eps > MUSB_C_NUM_EPS); 1807 for (epnum = 0, ep = musb->endpoints; 1808 epnum < musb->config->num_eps; 1809 epnum++, ep++) { 1810 ep->musb = musb; 1811 ep->epnum = epnum; 1812 } 1813 1814 musb->controller = dev; 1815 1816 return musb; 1817 } 1818 1819 static void musb_free(struct musb *musb) 1820 { 1821 /* this has multiple entry modes. it handles fault cleanup after 1822 * probe(), where things may be partially set up, as well as rmmod 1823 * cleanup after everything's been de-activated. 1824 */ 1825 1826 #ifdef CONFIG_SYSFS 1827 sysfs_remove_group(&musb->controller->kobj, &musb_attr_group); 1828 #endif 1829 1830 musb_gadget_cleanup(musb); 1831 1832 if (musb->nIrq >= 0) { 1833 if (musb->irq_wake) 1834 disable_irq_wake(musb->nIrq); 1835 free_irq(musb->nIrq, musb); 1836 } 1837 if (is_dma_capable() && musb->dma_controller) { 1838 struct dma_controller *c = musb->dma_controller; 1839 1840 (void) c->stop(c); 1841 dma_controller_destroy(c); 1842 } 1843 1844 kfree(musb); 1845 } 1846 1847 /* 1848 * Perform generic per-controller initialization. 1849 * 1850 * @pDevice: the controller (already clocked, etc) 1851 * @nIrq: irq 1852 * @mregs: virtual address of controller registers, 1853 * not yet corrected for platform-specific offsets 1854 */ 1855 static int __init 1856 musb_init_controller(struct device *dev, int nIrq, void __iomem *ctrl) 1857 { 1858 int status; 1859 struct musb *musb; 1860 struct musb_hdrc_platform_data *plat = dev->platform_data; 1861 1862 /* The driver might handle more features than the board; OK. 1863 * Fail when the board needs a feature that's not enabled. 1864 */ 1865 if (!plat) { 1866 dev_dbg(dev, "no platform_data?\n"); 1867 status = -ENODEV; 1868 goto fail0; 1869 } 1870 1871 /* allocate */ 1872 musb = allocate_instance(dev, plat->config, ctrl); 1873 if (!musb) { 1874 status = -ENOMEM; 1875 goto fail0; 1876 } 1877 1878 pm_runtime_use_autosuspend(musb->controller); 1879 pm_runtime_set_autosuspend_delay(musb->controller, 200); 1880 pm_runtime_enable(musb->controller); 1881 1882 spin_lock_init(&musb->lock); 1883 musb->board_mode = plat->mode; 1884 musb->board_set_power = plat->set_power; 1885 musb->min_power = plat->min_power; 1886 musb->ops = plat->platform_ops; 1887 1888 /* The musb_platform_init() call: 1889 * - adjusts musb->mregs and musb->isr if needed, 1890 * - may initialize an integrated tranceiver 1891 * - initializes musb->xceiv, usually by otg_get_transceiver() 1892 * - stops powering VBUS 1893 * 1894 * There are various transceiver configurations. Blackfin, 1895 * DaVinci, TUSB60x0, and others integrate them. OMAP3 uses 1896 * external/discrete ones in various flavors (twl4030 family, 1897 * isp1504, non-OTG, etc) mostly hooking up through ULPI. 1898 */ 1899 musb->isr = generic_interrupt; 1900 status = musb_platform_init(musb); 1901 if (status < 0) 1902 goto fail1; 1903 1904 if (!musb->isr) { 1905 status = -ENODEV; 1906 goto fail3; 1907 } 1908 1909 if (!musb->xceiv->io_ops) { 1910 musb->xceiv->io_priv = musb->mregs; 1911 musb->xceiv->io_ops = &musb_ulpi_access; 1912 } 1913 1914 #ifndef CONFIG_MUSB_PIO_ONLY 1915 if (use_dma && dev->dma_mask) { 1916 struct dma_controller *c; 1917 1918 c = dma_controller_create(musb, musb->mregs); 1919 musb->dma_controller = c; 1920 if (c) 1921 (void) c->start(c); 1922 } 1923 #endif 1924 /* ideally this would be abstracted in platform setup */ 1925 if (!is_dma_capable() || !musb->dma_controller) 1926 dev->dma_mask = NULL; 1927 1928 /* be sure interrupts are disabled before connecting ISR */ 1929 musb_platform_disable(musb); 1930 musb_generic_disable(musb); 1931 1932 /* setup musb parts of the core (especially endpoints) */ 1933 status = musb_core_init(plat->config->multipoint 1934 ? MUSB_CONTROLLER_MHDRC 1935 : MUSB_CONTROLLER_HDRC, musb); 1936 if (status < 0) 1937 goto fail3; 1938 1939 setup_timer(&musb->otg_timer, musb_otg_timer_func, (unsigned long) musb); 1940 1941 /* Init IRQ workqueue before request_irq */ 1942 INIT_WORK(&musb->irq_work, musb_irq_work); 1943 1944 /* attach to the IRQ */ 1945 if (request_irq(nIrq, musb->isr, 0, dev_name(dev), musb)) { 1946 dev_err(dev, "request_irq %d failed!\n", nIrq); 1947 status = -ENODEV; 1948 goto fail3; 1949 } 1950 musb->nIrq = nIrq; 1951 /* FIXME this handles wakeup irqs wrong */ 1952 if (enable_irq_wake(nIrq) == 0) { 1953 musb->irq_wake = 1; 1954 device_init_wakeup(dev, 1); 1955 } else { 1956 musb->irq_wake = 0; 1957 } 1958 1959 /* host side needs more setup */ 1960 if (is_host_enabled(musb)) { 1961 struct usb_hcd *hcd = musb_to_hcd(musb); 1962 1963 otg_set_host(musb->xceiv, &hcd->self); 1964 1965 if (is_otg_enabled(musb)) 1966 hcd->self.otg_port = 1; 1967 musb->xceiv->host = &hcd->self; 1968 hcd->power_budget = 2 * (plat->power ? : 250); 1969 1970 /* program PHY to use external vBus if required */ 1971 if (plat->extvbus) { 1972 u8 busctl = musb_read_ulpi_buscontrol(musb->mregs); 1973 busctl |= MUSB_ULPI_USE_EXTVBUS; 1974 musb_write_ulpi_buscontrol(musb->mregs, busctl); 1975 } 1976 } 1977 1978 /* For the host-only role, we can activate right away. 1979 * (We expect the ID pin to be forcibly grounded!!) 1980 * Otherwise, wait till the gadget driver hooks up. 1981 */ 1982 if (!is_otg_enabled(musb) && is_host_enabled(musb)) { 1983 struct usb_hcd *hcd = musb_to_hcd(musb); 1984 1985 MUSB_HST_MODE(musb); 1986 musb->xceiv->default_a = 1; 1987 musb->xceiv->state = OTG_STATE_A_IDLE; 1988 1989 status = usb_add_hcd(musb_to_hcd(musb), -1, 0); 1990 1991 hcd->self.uses_pio_for_control = 1; 1992 dev_dbg(musb->controller, "%s mode, status %d, devctl %02x %c\n", 1993 "HOST", status, 1994 musb_readb(musb->mregs, MUSB_DEVCTL), 1995 (musb_readb(musb->mregs, MUSB_DEVCTL) 1996 & MUSB_DEVCTL_BDEVICE 1997 ? 'B' : 'A')); 1998 1999 } else /* peripheral is enabled */ { 2000 MUSB_DEV_MODE(musb); 2001 musb->xceiv->default_a = 0; 2002 musb->xceiv->state = OTG_STATE_B_IDLE; 2003 2004 status = musb_gadget_setup(musb); 2005 2006 dev_dbg(musb->controller, "%s mode, status %d, dev%02x\n", 2007 is_otg_enabled(musb) ? "OTG" : "PERIPHERAL", 2008 status, 2009 musb_readb(musb->mregs, MUSB_DEVCTL)); 2010 2011 } 2012 if (status < 0) 2013 goto fail3; 2014 2015 status = musb_init_debugfs(musb); 2016 if (status < 0) 2017 goto fail4; 2018 2019 #ifdef CONFIG_SYSFS 2020 status = sysfs_create_group(&musb->controller->kobj, &musb_attr_group); 2021 if (status) 2022 goto fail5; 2023 #endif 2024 2025 dev_info(dev, "USB %s mode controller at %p using %s, IRQ %d\n", 2026 ({char *s; 2027 switch (musb->board_mode) { 2028 case MUSB_HOST: s = "Host"; break; 2029 case MUSB_PERIPHERAL: s = "Peripheral"; break; 2030 default: s = "OTG"; break; 2031 }; s; }), 2032 ctrl, 2033 (is_dma_capable() && musb->dma_controller) 2034 ? "DMA" : "PIO", 2035 musb->nIrq); 2036 2037 return 0; 2038 2039 fail5: 2040 musb_exit_debugfs(musb); 2041 2042 fail4: 2043 if (!is_otg_enabled(musb) && is_host_enabled(musb)) 2044 usb_remove_hcd(musb_to_hcd(musb)); 2045 else 2046 musb_gadget_cleanup(musb); 2047 2048 fail3: 2049 if (musb->irq_wake) 2050 device_init_wakeup(dev, 0); 2051 musb_platform_exit(musb); 2052 2053 fail1: 2054 dev_err(musb->controller, 2055 "musb_init_controller failed with status %d\n", status); 2056 2057 musb_free(musb); 2058 2059 fail0: 2060 2061 return status; 2062 2063 } 2064 2065 /*-------------------------------------------------------------------------*/ 2066 2067 /* all implementations (PCI bridge to FPGA, VLYNQ, etc) should just 2068 * bridge to a platform device; this driver then suffices. 2069 */ 2070 2071 #ifndef CONFIG_MUSB_PIO_ONLY 2072 static u64 *orig_dma_mask; 2073 #endif 2074 2075 static int __init musb_probe(struct platform_device *pdev) 2076 { 2077 struct device *dev = &pdev->dev; 2078 int irq = platform_get_irq_byname(pdev, "mc"); 2079 int status; 2080 struct resource *iomem; 2081 void __iomem *base; 2082 2083 iomem = platform_get_resource(pdev, IORESOURCE_MEM, 0); 2084 if (!iomem || irq <= 0) 2085 return -ENODEV; 2086 2087 base = ioremap(iomem->start, resource_size(iomem)); 2088 if (!base) { 2089 dev_err(dev, "ioremap failed\n"); 2090 return -ENOMEM; 2091 } 2092 2093 #ifndef CONFIG_MUSB_PIO_ONLY 2094 /* clobbered by use_dma=n */ 2095 orig_dma_mask = dev->dma_mask; 2096 #endif 2097 status = musb_init_controller(dev, irq, base); 2098 if (status < 0) 2099 iounmap(base); 2100 2101 return status; 2102 } 2103 2104 static int __exit musb_remove(struct platform_device *pdev) 2105 { 2106 struct musb *musb = dev_to_musb(&pdev->dev); 2107 void __iomem *ctrl_base = musb->ctrl_base; 2108 2109 /* this gets called on rmmod. 2110 * - Host mode: host may still be active 2111 * - Peripheral mode: peripheral is deactivated (or never-activated) 2112 * - OTG mode: both roles are deactivated (or never-activated) 2113 */ 2114 pm_runtime_get_sync(musb->controller); 2115 musb_exit_debugfs(musb); 2116 musb_shutdown(pdev); 2117 2118 pm_runtime_put(musb->controller); 2119 musb_free(musb); 2120 iounmap(ctrl_base); 2121 device_init_wakeup(&pdev->dev, 0); 2122 #ifndef CONFIG_MUSB_PIO_ONLY 2123 pdev->dev.dma_mask = orig_dma_mask; 2124 #endif 2125 return 0; 2126 } 2127 2128 #ifdef CONFIG_PM 2129 2130 static void musb_save_context(struct musb *musb) 2131 { 2132 int i; 2133 void __iomem *musb_base = musb->mregs; 2134 void __iomem *epio; 2135 2136 if (is_host_enabled(musb)) { 2137 musb->context.frame = musb_readw(musb_base, MUSB_FRAME); 2138 musb->context.testmode = musb_readb(musb_base, MUSB_TESTMODE); 2139 musb->context.busctl = musb_read_ulpi_buscontrol(musb->mregs); 2140 } 2141 musb->context.power = musb_readb(musb_base, MUSB_POWER); 2142 musb->context.intrtxe = musb_readw(musb_base, MUSB_INTRTXE); 2143 musb->context.intrrxe = musb_readw(musb_base, MUSB_INTRRXE); 2144 musb->context.intrusbe = musb_readb(musb_base, MUSB_INTRUSBE); 2145 musb->context.index = musb_readb(musb_base, MUSB_INDEX); 2146 musb->context.devctl = musb_readb(musb_base, MUSB_DEVCTL); 2147 2148 for (i = 0; i < musb->config->num_eps; ++i) { 2149 struct musb_hw_ep *hw_ep; 2150 2151 hw_ep = &musb->endpoints[i]; 2152 if (!hw_ep) 2153 continue; 2154 2155 epio = hw_ep->regs; 2156 if (!epio) 2157 continue; 2158 2159 musb_writeb(musb_base, MUSB_INDEX, i); 2160 musb->context.index_regs[i].txmaxp = 2161 musb_readw(epio, MUSB_TXMAXP); 2162 musb->context.index_regs[i].txcsr = 2163 musb_readw(epio, MUSB_TXCSR); 2164 musb->context.index_regs[i].rxmaxp = 2165 musb_readw(epio, MUSB_RXMAXP); 2166 musb->context.index_regs[i].rxcsr = 2167 musb_readw(epio, MUSB_RXCSR); 2168 2169 if (musb->dyn_fifo) { 2170 musb->context.index_regs[i].txfifoadd = 2171 musb_read_txfifoadd(musb_base); 2172 musb->context.index_regs[i].rxfifoadd = 2173 musb_read_rxfifoadd(musb_base); 2174 musb->context.index_regs[i].txfifosz = 2175 musb_read_txfifosz(musb_base); 2176 musb->context.index_regs[i].rxfifosz = 2177 musb_read_rxfifosz(musb_base); 2178 } 2179 if (is_host_enabled(musb)) { 2180 musb->context.index_regs[i].txtype = 2181 musb_readb(epio, MUSB_TXTYPE); 2182 musb->context.index_regs[i].txinterval = 2183 musb_readb(epio, MUSB_TXINTERVAL); 2184 musb->context.index_regs[i].rxtype = 2185 musb_readb(epio, MUSB_RXTYPE); 2186 musb->context.index_regs[i].rxinterval = 2187 musb_readb(epio, MUSB_RXINTERVAL); 2188 2189 musb->context.index_regs[i].txfunaddr = 2190 musb_read_txfunaddr(musb_base, i); 2191 musb->context.index_regs[i].txhubaddr = 2192 musb_read_txhubaddr(musb_base, i); 2193 musb->context.index_regs[i].txhubport = 2194 musb_read_txhubport(musb_base, i); 2195 2196 musb->context.index_regs[i].rxfunaddr = 2197 musb_read_rxfunaddr(musb_base, i); 2198 musb->context.index_regs[i].rxhubaddr = 2199 musb_read_rxhubaddr(musb_base, i); 2200 musb->context.index_regs[i].rxhubport = 2201 musb_read_rxhubport(musb_base, i); 2202 } 2203 } 2204 } 2205 2206 static void musb_restore_context(struct musb *musb) 2207 { 2208 int i; 2209 void __iomem *musb_base = musb->mregs; 2210 void __iomem *ep_target_regs; 2211 void __iomem *epio; 2212 2213 if (is_host_enabled(musb)) { 2214 musb_writew(musb_base, MUSB_FRAME, musb->context.frame); 2215 musb_writeb(musb_base, MUSB_TESTMODE, musb->context.testmode); 2216 musb_write_ulpi_buscontrol(musb->mregs, musb->context.busctl); 2217 } 2218 musb_writeb(musb_base, MUSB_POWER, musb->context.power); 2219 musb_writew(musb_base, MUSB_INTRTXE, musb->context.intrtxe); 2220 musb_writew(musb_base, MUSB_INTRRXE, musb->context.intrrxe); 2221 musb_writeb(musb_base, MUSB_INTRUSBE, musb->context.intrusbe); 2222 musb_writeb(musb_base, MUSB_DEVCTL, musb->context.devctl); 2223 2224 for (i = 0; i < musb->config->num_eps; ++i) { 2225 struct musb_hw_ep *hw_ep; 2226 2227 hw_ep = &musb->endpoints[i]; 2228 if (!hw_ep) 2229 continue; 2230 2231 epio = hw_ep->regs; 2232 if (!epio) 2233 continue; 2234 2235 musb_writeb(musb_base, MUSB_INDEX, i); 2236 musb_writew(epio, MUSB_TXMAXP, 2237 musb->context.index_regs[i].txmaxp); 2238 musb_writew(epio, MUSB_TXCSR, 2239 musb->context.index_regs[i].txcsr); 2240 musb_writew(epio, MUSB_RXMAXP, 2241 musb->context.index_regs[i].rxmaxp); 2242 musb_writew(epio, MUSB_RXCSR, 2243 musb->context.index_regs[i].rxcsr); 2244 2245 if (musb->dyn_fifo) { 2246 musb_write_txfifosz(musb_base, 2247 musb->context.index_regs[i].txfifosz); 2248 musb_write_rxfifosz(musb_base, 2249 musb->context.index_regs[i].rxfifosz); 2250 musb_write_txfifoadd(musb_base, 2251 musb->context.index_regs[i].txfifoadd); 2252 musb_write_rxfifoadd(musb_base, 2253 musb->context.index_regs[i].rxfifoadd); 2254 } 2255 2256 if (is_host_enabled(musb)) { 2257 musb_writeb(epio, MUSB_TXTYPE, 2258 musb->context.index_regs[i].txtype); 2259 musb_writeb(epio, MUSB_TXINTERVAL, 2260 musb->context.index_regs[i].txinterval); 2261 musb_writeb(epio, MUSB_RXTYPE, 2262 musb->context.index_regs[i].rxtype); 2263 musb_writeb(epio, MUSB_RXINTERVAL, 2264 2265 musb->context.index_regs[i].rxinterval); 2266 musb_write_txfunaddr(musb_base, i, 2267 musb->context.index_regs[i].txfunaddr); 2268 musb_write_txhubaddr(musb_base, i, 2269 musb->context.index_regs[i].txhubaddr); 2270 musb_write_txhubport(musb_base, i, 2271 musb->context.index_regs[i].txhubport); 2272 2273 ep_target_regs = 2274 musb_read_target_reg_base(i, musb_base); 2275 2276 musb_write_rxfunaddr(ep_target_regs, 2277 musb->context.index_regs[i].rxfunaddr); 2278 musb_write_rxhubaddr(ep_target_regs, 2279 musb->context.index_regs[i].rxhubaddr); 2280 musb_write_rxhubport(ep_target_regs, 2281 musb->context.index_regs[i].rxhubport); 2282 } 2283 } 2284 musb_writeb(musb_base, MUSB_INDEX, musb->context.index); 2285 } 2286 2287 static int musb_suspend(struct device *dev) 2288 { 2289 struct musb *musb = dev_to_musb(dev); 2290 unsigned long flags; 2291 2292 spin_lock_irqsave(&musb->lock, flags); 2293 2294 if (is_peripheral_active(musb)) { 2295 /* FIXME force disconnect unless we know USB will wake 2296 * the system up quickly enough to respond ... 2297 */ 2298 } else if (is_host_active(musb)) { 2299 /* we know all the children are suspended; sometimes 2300 * they will even be wakeup-enabled. 2301 */ 2302 } 2303 2304 spin_unlock_irqrestore(&musb->lock, flags); 2305 return 0; 2306 } 2307 2308 static int musb_resume_noirq(struct device *dev) 2309 { 2310 /* for static cmos like DaVinci, register values were preserved 2311 * unless for some reason the whole soc powered down or the USB 2312 * module got reset through the PSC (vs just being disabled). 2313 */ 2314 return 0; 2315 } 2316 2317 static int musb_runtime_suspend(struct device *dev) 2318 { 2319 struct musb *musb = dev_to_musb(dev); 2320 2321 musb_save_context(musb); 2322 2323 return 0; 2324 } 2325 2326 static int musb_runtime_resume(struct device *dev) 2327 { 2328 struct musb *musb = dev_to_musb(dev); 2329 static int first = 1; 2330 2331 /* 2332 * When pm_runtime_get_sync called for the first time in driver 2333 * init, some of the structure is still not initialized which is 2334 * used in restore function. But clock needs to be 2335 * enabled before any register access, so 2336 * pm_runtime_get_sync has to be called. 2337 * Also context restore without save does not make 2338 * any sense 2339 */ 2340 if (!first) 2341 musb_restore_context(musb); 2342 first = 0; 2343 2344 return 0; 2345 } 2346 2347 static const struct dev_pm_ops musb_dev_pm_ops = { 2348 .suspend = musb_suspend, 2349 .resume_noirq = musb_resume_noirq, 2350 .runtime_suspend = musb_runtime_suspend, 2351 .runtime_resume = musb_runtime_resume, 2352 }; 2353 2354 #define MUSB_DEV_PM_OPS (&musb_dev_pm_ops) 2355 #else 2356 #define MUSB_DEV_PM_OPS NULL 2357 #endif 2358 2359 static struct platform_driver musb_driver = { 2360 .driver = { 2361 .name = (char *)musb_driver_name, 2362 .bus = &platform_bus_type, 2363 .owner = THIS_MODULE, 2364 .pm = MUSB_DEV_PM_OPS, 2365 }, 2366 .remove = __exit_p(musb_remove), 2367 .shutdown = musb_shutdown, 2368 }; 2369 2370 /*-------------------------------------------------------------------------*/ 2371 2372 static int __init musb_init(void) 2373 { 2374 if (usb_disabled()) 2375 return 0; 2376 2377 pr_info("%s: version " MUSB_VERSION ", " 2378 "?dma?" 2379 ", " 2380 "otg (peripheral+host)", 2381 musb_driver_name); 2382 return platform_driver_probe(&musb_driver, musb_probe); 2383 } 2384 2385 /* make us init after usbcore and i2c (transceivers, regulators, etc) 2386 * and before usb gadget and host-side drivers start to register 2387 */ 2388 fs_initcall(musb_init); 2389 2390 static void __exit musb_cleanup(void) 2391 { 2392 platform_driver_unregister(&musb_driver); 2393 } 2394 module_exit(musb_cleanup); 2395