102ac6454SAndrew Thompson /* $FreeBSD$ */ 202ac6454SAndrew Thompson /*- 302ac6454SAndrew Thompson * Copyright (c) 2008 Hans Petter Selasky. All rights reserved. 402ac6454SAndrew Thompson * 502ac6454SAndrew Thompson * Redistribution and use in source and binary forms, with or without 602ac6454SAndrew Thompson * modification, are permitted provided that the following conditions 702ac6454SAndrew Thompson * are met: 802ac6454SAndrew Thompson * 1. Redistributions of source code must retain the above copyright 902ac6454SAndrew Thompson * notice, this list of conditions and the following disclaimer. 1002ac6454SAndrew Thompson * 2. Redistributions in binary form must reproduce the above copyright 1102ac6454SAndrew Thompson * notice, this list of conditions and the following disclaimer in the 1202ac6454SAndrew Thompson * documentation and/or other materials provided with the distribution. 1302ac6454SAndrew Thompson * 1402ac6454SAndrew Thompson * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 1502ac6454SAndrew Thompson * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 1602ac6454SAndrew Thompson * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 1702ac6454SAndrew Thompson * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 1802ac6454SAndrew Thompson * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 1902ac6454SAndrew Thompson * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 2002ac6454SAndrew Thompson * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 2102ac6454SAndrew Thompson * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2202ac6454SAndrew Thompson * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2302ac6454SAndrew Thompson * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 2402ac6454SAndrew Thompson * SUCH DAMAGE. 2502ac6454SAndrew Thompson */ 2602ac6454SAndrew Thompson 2702ac6454SAndrew Thompson #include <dev/usb/usb_mfunc.h> 2802ac6454SAndrew Thompson #include <dev/usb/usb_error.h> 2902ac6454SAndrew Thompson #include <dev/usb/usb.h> 3002ac6454SAndrew Thompson #include <dev/usb/usb_ioctl.h> 3102ac6454SAndrew Thompson #include "usbdevs.h" 3202ac6454SAndrew Thompson 3302ac6454SAndrew Thompson #define USB_DEBUG_VAR usb2_debug 3402ac6454SAndrew Thompson 3502ac6454SAndrew Thompson #include <dev/usb/usb_core.h> 3602ac6454SAndrew Thompson #include <dev/usb/usb_debug.h> 3702ac6454SAndrew Thompson #include <dev/usb/usb_process.h> 3802ac6454SAndrew Thompson #include <dev/usb/usb_device.h> 3902ac6454SAndrew Thompson #include <dev/usb/usb_busdma.h> 4002ac6454SAndrew Thompson #include <dev/usb/usb_transfer.h> 4102ac6454SAndrew Thompson #include <dev/usb/usb_parse.h> 4202ac6454SAndrew Thompson #include <dev/usb/usb_request.h> 4302ac6454SAndrew Thompson #include <dev/usb/usb_dynamic.h> 4402ac6454SAndrew Thompson #include <dev/usb/usb_hub.h> 4502ac6454SAndrew Thompson #include <dev/usb/usb_util.h> 4602ac6454SAndrew Thompson #include <dev/usb/usb_mbuf.h> 4702ac6454SAndrew Thompson #include <dev/usb/usb_msctest.h> 48bdc081c6SAndrew Thompson #if USB_HAVE_UGEN 49bdc081c6SAndrew Thompson #include <dev/usb/usb_dev.h> 5002ac6454SAndrew Thompson #include <dev/usb/usb_generic.h> 51bdc081c6SAndrew Thompson #endif 5202ac6454SAndrew Thompson 5302ac6454SAndrew Thompson #include <dev/usb/quirk/usb_quirk.h> 5402ac6454SAndrew Thompson 5502ac6454SAndrew Thompson #include <dev/usb/usb_controller.h> 5602ac6454SAndrew Thompson #include <dev/usb/usb_bus.h> 5702ac6454SAndrew Thompson 5802ac6454SAndrew Thompson /* function prototypes */ 5902ac6454SAndrew Thompson 60760bc48eSAndrew Thompson static void usb2_init_pipe(struct usb_device *, uint8_t, 61760bc48eSAndrew Thompson struct usb_endpoint_descriptor *, struct usb_pipe *); 62760bc48eSAndrew Thompson static void usb2_unconfigure(struct usb_device *, uint8_t); 63760bc48eSAndrew Thompson static void usb2_detach_device(struct usb_device *, uint8_t, uint8_t); 64760bc48eSAndrew Thompson static void usb2_detach_device_sub(struct usb_device *, device_t *, 6502ac6454SAndrew Thompson uint8_t); 66760bc48eSAndrew Thompson static uint8_t usb2_probe_and_attach_sub(struct usb_device *, 67760bc48eSAndrew Thompson struct usb_attach_arg *); 68760bc48eSAndrew Thompson static void usb2_init_attach_arg(struct usb_device *, 69760bc48eSAndrew Thompson struct usb_attach_arg *); 70760bc48eSAndrew Thompson static void usb2_suspend_resume_sub(struct usb_device *, device_t, 7102ac6454SAndrew Thompson uint8_t); 72760bc48eSAndrew Thompson static void usb2_clear_stall_proc(struct usb_proc_msg *_pm); 73e0a69b51SAndrew Thompson usb_error_t usb2_config_parse(struct usb_device *, uint8_t, uint8_t); 74760bc48eSAndrew Thompson static void usb2_set_device_strings(struct usb_device *); 750f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 76760bc48eSAndrew Thompson static void usb2_notify_addq(const char *type, struct usb_device *); 77760bc48eSAndrew Thompson static void usb2_fifo_free_wrap(struct usb_device *, uint8_t, uint8_t); 78760bc48eSAndrew Thompson static struct cdev *usb2_make_dev(struct usb_device *, int, int); 79760bc48eSAndrew Thompson static void usb2_cdev_create(struct usb_device *); 80760bc48eSAndrew Thompson static void usb2_cdev_free(struct usb_device *); 81ee3e3ff5SAndrew Thompson static void usb2_cdev_cleanup(void *); 820f6e8f93SAndrew Thompson #endif 8302ac6454SAndrew Thompson 8402ac6454SAndrew Thompson /* This variable is global to allow easy access to it: */ 8502ac6454SAndrew Thompson 8602ac6454SAndrew Thompson int usb2_template = 0; 8702ac6454SAndrew Thompson 889360ae40SAndrew Thompson SYSCTL_INT(_hw_usb, OID_AUTO, template, CTLFLAG_RW, 8902ac6454SAndrew Thompson &usb2_template, 0, "Selected USB device side template"); 9002ac6454SAndrew Thompson 914d4fa6edSAndrew Thompson static const char* statestr[USB_STATE_MAX] = { 924d4fa6edSAndrew Thompson [USB_STATE_DETACHED] = "DETACHED", 934d4fa6edSAndrew Thompson [USB_STATE_ATTACHED] = "ATTACHED", 944d4fa6edSAndrew Thompson [USB_STATE_POWERED] = "POWERED", 954d4fa6edSAndrew Thompson [USB_STATE_ADDRESSED] = "ADDRESSED", 964d4fa6edSAndrew Thompson [USB_STATE_CONFIGURED] = "CONFIGURED", 974d4fa6edSAndrew Thompson }; 984d4fa6edSAndrew Thompson 994d4fa6edSAndrew Thompson const char * 1008d2dd5ddSAndrew Thompson usb2_statestr(enum usb_dev_state state) 1014d4fa6edSAndrew Thompson { 102ec8f3127SAndrew Thompson return ((state < USB_STATE_MAX) ? statestr[state] : "UNKNOWN"); 1034d4fa6edSAndrew Thompson } 10402ac6454SAndrew Thompson 10502ac6454SAndrew Thompson /*------------------------------------------------------------------------* 10602ac6454SAndrew Thompson * usb2_get_pipe_by_addr 10702ac6454SAndrew Thompson * 10802ac6454SAndrew Thompson * This function searches for an USB pipe by endpoint address and 10902ac6454SAndrew Thompson * direction. 11002ac6454SAndrew Thompson * 11102ac6454SAndrew Thompson * Returns: 11202ac6454SAndrew Thompson * NULL: Failure 11302ac6454SAndrew Thompson * Else: Success 11402ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 115760bc48eSAndrew Thompson struct usb_pipe * 116760bc48eSAndrew Thompson usb2_get_pipe_by_addr(struct usb_device *udev, uint8_t ea_val) 11702ac6454SAndrew Thompson { 118760bc48eSAndrew Thompson struct usb_pipe *pipe = udev->pipes; 119760bc48eSAndrew Thompson struct usb_pipe *pipe_end = udev->pipes + udev->pipes_max; 12002ac6454SAndrew Thompson enum { 12102ac6454SAndrew Thompson EA_MASK = (UE_DIR_IN | UE_DIR_OUT | UE_ADDR), 12202ac6454SAndrew Thompson }; 12302ac6454SAndrew Thompson 12402ac6454SAndrew Thompson /* 12502ac6454SAndrew Thompson * According to the USB specification not all bits are used 12602ac6454SAndrew Thompson * for the endpoint address. Keep defined bits only: 12702ac6454SAndrew Thompson */ 12802ac6454SAndrew Thompson ea_val &= EA_MASK; 12902ac6454SAndrew Thompson 13002ac6454SAndrew Thompson /* 13102ac6454SAndrew Thompson * Iterate accross all the USB pipes searching for a match 13202ac6454SAndrew Thompson * based on the endpoint address: 13302ac6454SAndrew Thompson */ 13402ac6454SAndrew Thompson for (; pipe != pipe_end; pipe++) { 13502ac6454SAndrew Thompson 13602ac6454SAndrew Thompson if (pipe->edesc == NULL) { 13702ac6454SAndrew Thompson continue; 13802ac6454SAndrew Thompson } 13902ac6454SAndrew Thompson /* do the mask and check the value */ 14002ac6454SAndrew Thompson if ((pipe->edesc->bEndpointAddress & EA_MASK) == ea_val) { 14102ac6454SAndrew Thompson goto found; 14202ac6454SAndrew Thompson } 14302ac6454SAndrew Thompson } 14402ac6454SAndrew Thompson 14502ac6454SAndrew Thompson /* 14602ac6454SAndrew Thompson * The default pipe is always present and is checked separately: 14702ac6454SAndrew Thompson */ 14802ac6454SAndrew Thompson if ((udev->default_pipe.edesc) && 14902ac6454SAndrew Thompson ((udev->default_pipe.edesc->bEndpointAddress & EA_MASK) == ea_val)) { 15002ac6454SAndrew Thompson pipe = &udev->default_pipe; 15102ac6454SAndrew Thompson goto found; 15202ac6454SAndrew Thompson } 15302ac6454SAndrew Thompson return (NULL); 15402ac6454SAndrew Thompson 15502ac6454SAndrew Thompson found: 15602ac6454SAndrew Thompson return (pipe); 15702ac6454SAndrew Thompson } 15802ac6454SAndrew Thompson 15902ac6454SAndrew Thompson /*------------------------------------------------------------------------* 16002ac6454SAndrew Thompson * usb2_get_pipe 16102ac6454SAndrew Thompson * 16202ac6454SAndrew Thompson * This function searches for an USB pipe based on the information 163760bc48eSAndrew Thompson * given by the passed "struct usb_config" pointer. 16402ac6454SAndrew Thompson * 16502ac6454SAndrew Thompson * Return values: 16602ac6454SAndrew Thompson * NULL: No match. 167760bc48eSAndrew Thompson * Else: Pointer to "struct usb_pipe". 16802ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 169760bc48eSAndrew Thompson struct usb_pipe * 170760bc48eSAndrew Thompson usb2_get_pipe(struct usb_device *udev, uint8_t iface_index, 171760bc48eSAndrew Thompson const struct usb_config *setup) 17202ac6454SAndrew Thompson { 173760bc48eSAndrew Thompson struct usb_pipe *pipe = udev->pipes; 174760bc48eSAndrew Thompson struct usb_pipe *pipe_end = udev->pipes + udev->pipes_max; 17502ac6454SAndrew Thompson uint8_t index = setup->ep_index; 17602ac6454SAndrew Thompson uint8_t ea_mask; 17702ac6454SAndrew Thompson uint8_t ea_val; 17802ac6454SAndrew Thompson uint8_t type_mask; 17902ac6454SAndrew Thompson uint8_t type_val; 18002ac6454SAndrew Thompson 18102ac6454SAndrew Thompson DPRINTFN(10, "udev=%p iface_index=%d address=0x%x " 18202ac6454SAndrew Thompson "type=0x%x dir=0x%x index=%d\n", 18302ac6454SAndrew Thompson udev, iface_index, setup->endpoint, 18402ac6454SAndrew Thompson setup->type, setup->direction, setup->ep_index); 18502ac6454SAndrew Thompson 1864eae601eSAndrew Thompson /* check USB mode */ 1874eae601eSAndrew Thompson 188f29a0724SAndrew Thompson if (setup->usb_mode != USB_MODE_DUAL && 189f29a0724SAndrew Thompson udev->flags.usb_mode != setup->usb_mode) { 1904eae601eSAndrew Thompson /* wrong mode - no pipe */ 1914eae601eSAndrew Thompson return (NULL); 1924eae601eSAndrew Thompson } 1934eae601eSAndrew Thompson 19402ac6454SAndrew Thompson /* setup expected endpoint direction mask and value */ 19502ac6454SAndrew Thompson 19651ec1603SAndrew Thompson if (setup->direction == UE_DIR_RX) { 19751ec1603SAndrew Thompson ea_mask = (UE_DIR_IN | UE_DIR_OUT); 198f29a0724SAndrew Thompson ea_val = (udev->flags.usb_mode == USB_MODE_DEVICE) ? 19951ec1603SAndrew Thompson UE_DIR_OUT : UE_DIR_IN; 20051ec1603SAndrew Thompson } else if (setup->direction == UE_DIR_TX) { 20151ec1603SAndrew Thompson ea_mask = (UE_DIR_IN | UE_DIR_OUT); 202f29a0724SAndrew Thompson ea_val = (udev->flags.usb_mode == USB_MODE_DEVICE) ? 20351ec1603SAndrew Thompson UE_DIR_IN : UE_DIR_OUT; 20451ec1603SAndrew Thompson } else if (setup->direction == UE_DIR_ANY) { 20502ac6454SAndrew Thompson /* match any endpoint direction */ 20602ac6454SAndrew Thompson ea_mask = 0; 20702ac6454SAndrew Thompson ea_val = 0; 20802ac6454SAndrew Thompson } else { 20902ac6454SAndrew Thompson /* match the given endpoint direction */ 21002ac6454SAndrew Thompson ea_mask = (UE_DIR_IN | UE_DIR_OUT); 21102ac6454SAndrew Thompson ea_val = (setup->direction & (UE_DIR_IN | UE_DIR_OUT)); 21202ac6454SAndrew Thompson } 21302ac6454SAndrew Thompson 21402ac6454SAndrew Thompson /* setup expected endpoint address */ 21502ac6454SAndrew Thompson 21602ac6454SAndrew Thompson if (setup->endpoint == UE_ADDR_ANY) { 21702ac6454SAndrew Thompson /* match any endpoint address */ 21802ac6454SAndrew Thompson } else { 21902ac6454SAndrew Thompson /* match the given endpoint address */ 22002ac6454SAndrew Thompson ea_mask |= UE_ADDR; 22102ac6454SAndrew Thompson ea_val |= (setup->endpoint & UE_ADDR); 22202ac6454SAndrew Thompson } 22302ac6454SAndrew Thompson 22402ac6454SAndrew Thompson /* setup expected endpoint type */ 22502ac6454SAndrew Thompson 22602ac6454SAndrew Thompson if (setup->type == UE_BULK_INTR) { 22702ac6454SAndrew Thompson /* this will match BULK and INTERRUPT endpoints */ 22802ac6454SAndrew Thompson type_mask = 2; 22902ac6454SAndrew Thompson type_val = 2; 23002ac6454SAndrew Thompson } else if (setup->type == UE_TYPE_ANY) { 23102ac6454SAndrew Thompson /* match any endpoint type */ 23202ac6454SAndrew Thompson type_mask = 0; 23302ac6454SAndrew Thompson type_val = 0; 23402ac6454SAndrew Thompson } else { 23502ac6454SAndrew Thompson /* match the given endpoint type */ 23602ac6454SAndrew Thompson type_mask = UE_XFERTYPE; 23702ac6454SAndrew Thompson type_val = (setup->type & UE_XFERTYPE); 23802ac6454SAndrew Thompson } 23902ac6454SAndrew Thompson 24002ac6454SAndrew Thompson /* 24102ac6454SAndrew Thompson * Iterate accross all the USB pipes searching for a match 24202ac6454SAndrew Thompson * based on the endpoint address. Note that we are searching 24302ac6454SAndrew Thompson * the pipes from the beginning of the "udev->pipes" array. 24402ac6454SAndrew Thompson */ 24502ac6454SAndrew Thompson for (; pipe != pipe_end; pipe++) { 24602ac6454SAndrew Thompson 24702ac6454SAndrew Thompson if ((pipe->edesc == NULL) || 24802ac6454SAndrew Thompson (pipe->iface_index != iface_index)) { 24902ac6454SAndrew Thompson continue; 25002ac6454SAndrew Thompson } 25102ac6454SAndrew Thompson /* do the masks and check the values */ 25202ac6454SAndrew Thompson 25302ac6454SAndrew Thompson if (((pipe->edesc->bEndpointAddress & ea_mask) == ea_val) && 25402ac6454SAndrew Thompson ((pipe->edesc->bmAttributes & type_mask) == type_val)) { 25502ac6454SAndrew Thompson if (!index--) { 25602ac6454SAndrew Thompson goto found; 25702ac6454SAndrew Thompson } 25802ac6454SAndrew Thompson } 25902ac6454SAndrew Thompson } 26002ac6454SAndrew Thompson 26102ac6454SAndrew Thompson /* 26202ac6454SAndrew Thompson * Match against default pipe last, so that "any pipe", "any 26302ac6454SAndrew Thompson * address" and "any direction" returns the first pipe of the 26402ac6454SAndrew Thompson * interface. "iface_index" and "direction" is ignored: 26502ac6454SAndrew Thompson */ 26602ac6454SAndrew Thompson if ((udev->default_pipe.edesc) && 26702ac6454SAndrew Thompson ((udev->default_pipe.edesc->bEndpointAddress & ea_mask) == ea_val) && 26802ac6454SAndrew Thompson ((udev->default_pipe.edesc->bmAttributes & type_mask) == type_val) && 26902ac6454SAndrew Thompson (!index)) { 27002ac6454SAndrew Thompson pipe = &udev->default_pipe; 27102ac6454SAndrew Thompson goto found; 27202ac6454SAndrew Thompson } 27302ac6454SAndrew Thompson return (NULL); 27402ac6454SAndrew Thompson 27502ac6454SAndrew Thompson found: 27602ac6454SAndrew Thompson return (pipe); 27702ac6454SAndrew Thompson } 27802ac6454SAndrew Thompson 27902ac6454SAndrew Thompson /*------------------------------------------------------------------------* 28002ac6454SAndrew Thompson * usb2_interface_count 28102ac6454SAndrew Thompson * 28202ac6454SAndrew Thompson * This function stores the number of USB interfaces excluding 28302ac6454SAndrew Thompson * alternate settings, which the USB config descriptor reports into 28402ac6454SAndrew Thompson * the unsigned 8-bit integer pointed to by "count". 28502ac6454SAndrew Thompson * 28602ac6454SAndrew Thompson * Returns: 28702ac6454SAndrew Thompson * 0: Success 28802ac6454SAndrew Thompson * Else: Failure 28902ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 290e0a69b51SAndrew Thompson usb_error_t 291760bc48eSAndrew Thompson usb2_interface_count(struct usb_device *udev, uint8_t *count) 29202ac6454SAndrew Thompson { 29302ac6454SAndrew Thompson if (udev->cdesc == NULL) { 29402ac6454SAndrew Thompson *count = 0; 29502ac6454SAndrew Thompson return (USB_ERR_NOT_CONFIGURED); 29602ac6454SAndrew Thompson } 297bdd41206SAndrew Thompson *count = udev->ifaces_max; 29802ac6454SAndrew Thompson return (USB_ERR_NORMAL_COMPLETION); 29902ac6454SAndrew Thompson } 30002ac6454SAndrew Thompson 30102ac6454SAndrew Thompson 30202ac6454SAndrew Thompson /*------------------------------------------------------------------------* 303bdd41206SAndrew Thompson * usb2_init_pipe 30402ac6454SAndrew Thompson * 30502ac6454SAndrew Thompson * This function will initialise the USB pipe structure pointed to by 306bdd41206SAndrew Thompson * the "pipe" argument. The structure pointed to by "pipe" must be 307bdd41206SAndrew Thompson * zeroed before calling this function. 30802ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 30902ac6454SAndrew Thompson static void 310760bc48eSAndrew Thompson usb2_init_pipe(struct usb_device *udev, uint8_t iface_index, 311760bc48eSAndrew Thompson struct usb_endpoint_descriptor *edesc, struct usb_pipe *pipe) 31202ac6454SAndrew Thompson { 313760bc48eSAndrew Thompson struct usb_bus_methods *methods; 314ee3e3ff5SAndrew Thompson 315bdd41206SAndrew Thompson methods = udev->bus->methods; 31602ac6454SAndrew Thompson 317bdd41206SAndrew Thompson (methods->pipe_init) (udev, edesc, pipe); 31802ac6454SAndrew Thompson 31902ac6454SAndrew Thompson /* initialise USB pipe structure */ 32002ac6454SAndrew Thompson pipe->edesc = edesc; 32102ac6454SAndrew Thompson pipe->iface_index = iface_index; 32202ac6454SAndrew Thompson TAILQ_INIT(&pipe->pipe_q.head); 32302ac6454SAndrew Thompson pipe->pipe_q.command = &usb2_pipe_start; 32402ac6454SAndrew Thompson 32539307315SAndrew Thompson /* the pipe is not supported by the hardware */ 32639307315SAndrew Thompson if (pipe->methods == NULL) 32739307315SAndrew Thompson return; 32839307315SAndrew Thompson 32902ac6454SAndrew Thompson /* clear stall, if any */ 330bdd41206SAndrew Thompson if (methods->clear_stall != NULL) { 33102ac6454SAndrew Thompson USB_BUS_LOCK(udev->bus); 332bdd41206SAndrew Thompson (methods->clear_stall) (udev, pipe); 33302ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 33402ac6454SAndrew Thompson } 33502ac6454SAndrew Thompson } 33602ac6454SAndrew Thompson 337bdd41206SAndrew Thompson /*-----------------------------------------------------------------------* 33816589beaSAndrew Thompson * usb2_pipe_foreach 33916589beaSAndrew Thompson * 34016589beaSAndrew Thompson * This function will iterate all the USB endpoints except the control 34116589beaSAndrew Thompson * endpoint. This function is NULL safe. 34216589beaSAndrew Thompson * 34316589beaSAndrew Thompson * Return values: 34416589beaSAndrew Thompson * NULL: End of USB pipes 34516589beaSAndrew Thompson * Else: Pointer to next USB pipe 34616589beaSAndrew Thompson *------------------------------------------------------------------------*/ 347760bc48eSAndrew Thompson struct usb_pipe * 348760bc48eSAndrew Thompson usb2_pipe_foreach(struct usb_device *udev, struct usb_pipe *pipe) 34916589beaSAndrew Thompson { 350760bc48eSAndrew Thompson struct usb_pipe *pipe_end = udev->pipes + udev->pipes_max; 35116589beaSAndrew Thompson 35216589beaSAndrew Thompson /* be NULL safe */ 35316589beaSAndrew Thompson if (udev == NULL) 35416589beaSAndrew Thompson return (NULL); 35516589beaSAndrew Thompson 35616589beaSAndrew Thompson /* get next pipe */ 35716589beaSAndrew Thompson if (pipe == NULL) 35816589beaSAndrew Thompson pipe = udev->pipes; 35916589beaSAndrew Thompson else 36016589beaSAndrew Thompson pipe++; 36116589beaSAndrew Thompson 36216589beaSAndrew Thompson /* find next allocated pipe */ 36316589beaSAndrew Thompson while (pipe != pipe_end) { 36416589beaSAndrew Thompson if (pipe->edesc != NULL) 36516589beaSAndrew Thompson return (pipe); 36616589beaSAndrew Thompson pipe++; 36716589beaSAndrew Thompson } 36816589beaSAndrew Thompson return (NULL); 36916589beaSAndrew Thompson } 37016589beaSAndrew Thompson 37116589beaSAndrew Thompson /*------------------------------------------------------------------------* 372bdd41206SAndrew Thompson * usb2_unconfigure 37302ac6454SAndrew Thompson * 37402ac6454SAndrew Thompson * This function will free all USB interfaces and USB pipes belonging 37502ac6454SAndrew Thompson * to an USB device. 376bdd41206SAndrew Thompson * 377bdd41206SAndrew Thompson * Flag values, see "USB_UNCFG_FLAG_XXX". 37802ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 37902ac6454SAndrew Thompson static void 380760bc48eSAndrew Thompson usb2_unconfigure(struct usb_device *udev, uint8_t flag) 38102ac6454SAndrew Thompson { 382bdd41206SAndrew Thompson uint8_t do_unlock; 38302ac6454SAndrew Thompson 384bdd41206SAndrew Thompson /* automatic locking */ 385bdd41206SAndrew Thompson if (sx_xlocked(udev->default_sx + 1)) { 386bdd41206SAndrew Thompson do_unlock = 0; 387bdd41206SAndrew Thompson } else { 388bdd41206SAndrew Thompson do_unlock = 1; 389bdd41206SAndrew Thompson sx_xlock(udev->default_sx + 1); 390bdd41206SAndrew Thompson } 391bdd41206SAndrew Thompson 392bdd41206SAndrew Thompson /* detach all interface drivers */ 393bdd41206SAndrew Thompson usb2_detach_device(udev, USB_IFACE_INDEX_ANY, flag); 394bdd41206SAndrew Thompson 395bdd41206SAndrew Thompson #if USB_HAVE_UGEN 396bdd41206SAndrew Thompson /* free all FIFOs except control endpoint FIFOs */ 397bdd41206SAndrew Thompson usb2_fifo_free_wrap(udev, USB_IFACE_INDEX_ANY, flag); 398bdd41206SAndrew Thompson 399bdd41206SAndrew Thompson /* 400bdd41206SAndrew Thompson * Free all cdev's, if any. 401bdd41206SAndrew Thompson */ 402bdd41206SAndrew Thompson usb2_cdev_free(udev); 403bdd41206SAndrew Thompson #endif 40402ac6454SAndrew Thompson 405bdc081c6SAndrew Thompson #if USB_HAVE_COMPAT_LINUX 40602ac6454SAndrew Thompson /* free Linux compat device, if any */ 407760bc48eSAndrew Thompson if (udev->linux_endpoint_start) { 408760bc48eSAndrew Thompson usb_linux_free_device(udev); 409760bc48eSAndrew Thompson udev->linux_endpoint_start = NULL; 41002ac6454SAndrew Thompson } 411bdc081c6SAndrew Thompson #endif 41202ac6454SAndrew Thompson 413bdd41206SAndrew Thompson usb2_config_parse(udev, USB_IFACE_INDEX_ANY, USB_CFG_FREE); 41402ac6454SAndrew Thompson 415bdd41206SAndrew Thompson /* free "cdesc" after "ifaces" and "pipes", if any */ 4167efaaa9aSAndrew Thompson if (udev->cdesc != NULL) { 417f29a0724SAndrew Thompson if (udev->flags.usb_mode != USB_MODE_DEVICE) 41802ac6454SAndrew Thompson free(udev->cdesc, M_USB); 41902ac6454SAndrew Thompson udev->cdesc = NULL; 42002ac6454SAndrew Thompson } 42102ac6454SAndrew Thompson /* set unconfigured state */ 42202ac6454SAndrew Thompson udev->curr_config_no = USB_UNCONFIG_NO; 42302ac6454SAndrew Thompson udev->curr_config_index = USB_UNCONFIG_INDEX; 424bdd41206SAndrew Thompson 425bdd41206SAndrew Thompson if (do_unlock) { 426bdd41206SAndrew Thompson sx_unlock(udev->default_sx + 1); 427bdd41206SAndrew Thompson } 42802ac6454SAndrew Thompson } 42902ac6454SAndrew Thompson 43002ac6454SAndrew Thompson /*------------------------------------------------------------------------* 43102ac6454SAndrew Thompson * usb2_set_config_index 43202ac6454SAndrew Thompson * 43302ac6454SAndrew Thompson * This function selects configuration by index, independent of the 43402ac6454SAndrew Thompson * actual configuration number. This function should not be used by 43502ac6454SAndrew Thompson * USB drivers. 43602ac6454SAndrew Thompson * 43702ac6454SAndrew Thompson * Returns: 43802ac6454SAndrew Thompson * 0: Success 43902ac6454SAndrew Thompson * Else: Failure 44002ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 441e0a69b51SAndrew Thompson usb_error_t 442760bc48eSAndrew Thompson usb2_set_config_index(struct usb_device *udev, uint8_t index) 44302ac6454SAndrew Thompson { 444760bc48eSAndrew Thompson struct usb_status ds; 445760bc48eSAndrew Thompson struct usb_config_descriptor *cdp; 44602ac6454SAndrew Thompson uint16_t power; 44702ac6454SAndrew Thompson uint16_t max_power; 44802ac6454SAndrew Thompson uint8_t selfpowered; 44902ac6454SAndrew Thompson uint8_t do_unlock; 450e0a69b51SAndrew Thompson usb_error_t err; 45102ac6454SAndrew Thompson 45202ac6454SAndrew Thompson DPRINTFN(6, "udev=%p index=%d\n", udev, index); 45302ac6454SAndrew Thompson 45402ac6454SAndrew Thompson /* automatic locking */ 45502ac6454SAndrew Thompson if (sx_xlocked(udev->default_sx + 1)) { 45602ac6454SAndrew Thompson do_unlock = 0; 45702ac6454SAndrew Thompson } else { 45802ac6454SAndrew Thompson do_unlock = 1; 45902ac6454SAndrew Thompson sx_xlock(udev->default_sx + 1); 46002ac6454SAndrew Thompson } 46102ac6454SAndrew Thompson 462bdd41206SAndrew Thompson usb2_unconfigure(udev, USB_UNCFG_FLAG_FREE_SUBDEV); 46302ac6454SAndrew Thompson 46402ac6454SAndrew Thompson if (index == USB_UNCONFIG_INDEX) { 46502ac6454SAndrew Thompson /* 46602ac6454SAndrew Thompson * Leave unallocated when unconfiguring the 467bdd41206SAndrew Thompson * device. "usb2_unconfigure()" will also reset 46802ac6454SAndrew Thompson * the current config number and index. 46902ac6454SAndrew Thompson */ 470e2805033SAndrew Thompson err = usb2_req_set_config(udev, NULL, USB_UNCONFIG_NO); 471bd216778SAndrew Thompson if (udev->state == USB_STATE_CONFIGURED) 472bd216778SAndrew Thompson usb2_set_device_state(udev, USB_STATE_ADDRESSED); 47302ac6454SAndrew Thompson goto done; 47402ac6454SAndrew Thompson } 47502ac6454SAndrew Thompson /* get the full config descriptor */ 476f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_DEVICE) { 4777efaaa9aSAndrew Thompson /* save some memory */ 478459d369eSAndrew Thompson err = usb2_req_get_descriptor_ptr(udev, &cdp, 479459d369eSAndrew Thompson (UDESC_CONFIG << 8) | index); 4807efaaa9aSAndrew Thompson } else { 4817efaaa9aSAndrew Thompson /* normal request */ 48202ac6454SAndrew Thompson err = usb2_req_get_config_desc_full(udev, 483e2805033SAndrew Thompson NULL, &cdp, M_USB, index); 4847efaaa9aSAndrew Thompson } 48502ac6454SAndrew Thompson if (err) { 48602ac6454SAndrew Thompson goto done; 48702ac6454SAndrew Thompson } 48802ac6454SAndrew Thompson /* set the new config descriptor */ 48902ac6454SAndrew Thompson 49002ac6454SAndrew Thompson udev->cdesc = cdp; 49102ac6454SAndrew Thompson 49202ac6454SAndrew Thompson /* Figure out if the device is self or bus powered. */ 49302ac6454SAndrew Thompson selfpowered = 0; 49402ac6454SAndrew Thompson if ((!udev->flags.uq_bus_powered) && 49502ac6454SAndrew Thompson (cdp->bmAttributes & UC_SELF_POWERED) && 496f29a0724SAndrew Thompson (udev->flags.usb_mode == USB_MODE_HOST)) { 49702ac6454SAndrew Thompson /* May be self powered. */ 49802ac6454SAndrew Thompson if (cdp->bmAttributes & UC_BUS_POWERED) { 49902ac6454SAndrew Thompson /* Must ask device. */ 5009f2b42e5SAndrew Thompson err = usb2_req_get_device_status(udev, NULL, &ds); 50102ac6454SAndrew Thompson if (err) { 50202ac6454SAndrew Thompson DPRINTFN(0, "could not read " 50302ac6454SAndrew Thompson "device status: %s\n", 50402ac6454SAndrew Thompson usb2_errstr(err)); 50502ac6454SAndrew Thompson } else if (UGETW(ds.wStatus) & UDS_SELF_POWERED) { 50602ac6454SAndrew Thompson selfpowered = 1; 50702ac6454SAndrew Thompson } 50802ac6454SAndrew Thompson DPRINTF("status=0x%04x \n", 50902ac6454SAndrew Thompson UGETW(ds.wStatus)); 51002ac6454SAndrew Thompson } else 51102ac6454SAndrew Thompson selfpowered = 1; 51202ac6454SAndrew Thompson } 51302ac6454SAndrew Thompson DPRINTF("udev=%p cdesc=%p (addr %d) cno=%d attr=0x%02x, " 51402ac6454SAndrew Thompson "selfpowered=%d, power=%d\n", 51502ac6454SAndrew Thompson udev, cdp, 51691f72cedSAndrew Thompson udev->address, cdp->bConfigurationValue, cdp->bmAttributes, 51702ac6454SAndrew Thompson selfpowered, cdp->bMaxPower * 2); 51802ac6454SAndrew Thompson 51902ac6454SAndrew Thompson /* Check if we have enough power. */ 52002ac6454SAndrew Thompson power = cdp->bMaxPower * 2; 52102ac6454SAndrew Thompson 52202ac6454SAndrew Thompson if (udev->parent_hub) { 52302ac6454SAndrew Thompson max_power = udev->parent_hub->hub->portpower; 52402ac6454SAndrew Thompson } else { 52502ac6454SAndrew Thompson max_power = USB_MAX_POWER; 52602ac6454SAndrew Thompson } 52702ac6454SAndrew Thompson 52802ac6454SAndrew Thompson if (power > max_power) { 52902ac6454SAndrew Thompson DPRINTFN(0, "power exceeded %d > %d\n", power, max_power); 53002ac6454SAndrew Thompson err = USB_ERR_NO_POWER; 53102ac6454SAndrew Thompson goto done; 53202ac6454SAndrew Thompson } 53302ac6454SAndrew Thompson /* Only update "self_powered" in USB Host Mode */ 534f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_HOST) { 53502ac6454SAndrew Thompson udev->flags.self_powered = selfpowered; 53602ac6454SAndrew Thompson } 53702ac6454SAndrew Thompson udev->power = power; 53802ac6454SAndrew Thompson udev->curr_config_no = cdp->bConfigurationValue; 53902ac6454SAndrew Thompson udev->curr_config_index = index; 540bd216778SAndrew Thompson usb2_set_device_state(udev, USB_STATE_CONFIGURED); 54102ac6454SAndrew Thompson 54202ac6454SAndrew Thompson /* Set the actual configuration value. */ 543e2805033SAndrew Thompson err = usb2_req_set_config(udev, NULL, cdp->bConfigurationValue); 54402ac6454SAndrew Thompson if (err) { 54502ac6454SAndrew Thompson goto done; 54602ac6454SAndrew Thompson } 547bdd41206SAndrew Thompson 548bdd41206SAndrew Thompson err = usb2_config_parse(udev, USB_IFACE_INDEX_ANY, USB_CFG_ALLOC); 54902ac6454SAndrew Thompson if (err) { 55002ac6454SAndrew Thompson goto done; 55102ac6454SAndrew Thompson } 552bdd41206SAndrew Thompson 553bdd41206SAndrew Thompson err = usb2_config_parse(udev, USB_IFACE_INDEX_ANY, USB_CFG_INIT); 554bdd41206SAndrew Thompson if (err) { 555bdd41206SAndrew Thompson goto done; 55602ac6454SAndrew Thompson } 557bdd41206SAndrew Thompson 5580f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 559ee3e3ff5SAndrew Thompson /* create device nodes for each endpoint */ 560ee3e3ff5SAndrew Thompson usb2_cdev_create(udev); 5610f6e8f93SAndrew Thompson #endif 56202ac6454SAndrew Thompson 56302ac6454SAndrew Thompson done: 56402ac6454SAndrew Thompson DPRINTF("error=%s\n", usb2_errstr(err)); 56502ac6454SAndrew Thompson if (err) { 566bdd41206SAndrew Thompson usb2_unconfigure(udev, USB_UNCFG_FLAG_FREE_SUBDEV); 56702ac6454SAndrew Thompson } 56802ac6454SAndrew Thompson if (do_unlock) { 56902ac6454SAndrew Thompson sx_unlock(udev->default_sx + 1); 57002ac6454SAndrew Thompson } 57102ac6454SAndrew Thompson return (err); 57202ac6454SAndrew Thompson } 57302ac6454SAndrew Thompson 57402ac6454SAndrew Thompson /*------------------------------------------------------------------------* 575bdd41206SAndrew Thompson * usb2_config_parse 576bdd41206SAndrew Thompson * 577bdd41206SAndrew Thompson * This function will allocate and free USB interfaces and USB pipes, 578bdd41206SAndrew Thompson * parse the USB configuration structure and initialise the USB pipes 579bdd41206SAndrew Thompson * and interfaces. If "iface_index" is not equal to 580bdd41206SAndrew Thompson * "USB_IFACE_INDEX_ANY" then the "cmd" parameter is the 581bdd41206SAndrew Thompson * alternate_setting to be selected for the given interface. Else the 582bdd41206SAndrew Thompson * "cmd" parameter is defined by "USB_CFG_XXX". "iface_index" can be 583bdd41206SAndrew Thompson * "USB_IFACE_INDEX_ANY" or a valid USB interface index. This function 584bdd41206SAndrew Thompson * is typically called when setting the configuration or when setting 585bdd41206SAndrew Thompson * an alternate interface. 586bdd41206SAndrew Thompson * 587bdd41206SAndrew Thompson * Returns: 588bdd41206SAndrew Thompson * 0: Success 589bdd41206SAndrew Thompson * Else: Failure 590bdd41206SAndrew Thompson *------------------------------------------------------------------------*/ 591e0a69b51SAndrew Thompson usb_error_t 592760bc48eSAndrew Thompson usb2_config_parse(struct usb_device *udev, uint8_t iface_index, uint8_t cmd) 593bdd41206SAndrew Thompson { 594760bc48eSAndrew Thompson struct usb_idesc_parse_state ips; 595760bc48eSAndrew Thompson struct usb_interface_descriptor *id; 596760bc48eSAndrew Thompson struct usb_endpoint_descriptor *ed; 597760bc48eSAndrew Thompson struct usb_interface *iface; 598760bc48eSAndrew Thompson struct usb_pipe *pipe; 599e0a69b51SAndrew Thompson usb_error_t err; 600bdd41206SAndrew Thompson uint8_t ep_curr; 601bdd41206SAndrew Thompson uint8_t ep_max; 602bdd41206SAndrew Thompson uint8_t temp; 603bdd41206SAndrew Thompson uint8_t do_init; 604bdd41206SAndrew Thompson uint8_t alt_index; 605bdd41206SAndrew Thompson 606bdd41206SAndrew Thompson if (iface_index != USB_IFACE_INDEX_ANY) { 607bdd41206SAndrew Thompson /* parameter overload */ 608bdd41206SAndrew Thompson alt_index = cmd; 609bdd41206SAndrew Thompson cmd = USB_CFG_INIT; 610bdd41206SAndrew Thompson } else { 611bdd41206SAndrew Thompson /* not used */ 612bdd41206SAndrew Thompson alt_index = 0; 613bdd41206SAndrew Thompson } 614bdd41206SAndrew Thompson 615bdd41206SAndrew Thompson err = 0; 616bdd41206SAndrew Thompson 617bdd41206SAndrew Thompson DPRINTFN(5, "iface_index=%d cmd=%d\n", 618bdd41206SAndrew Thompson iface_index, cmd); 619bdd41206SAndrew Thompson 620bdd41206SAndrew Thompson if (cmd == USB_CFG_FREE) 621bdd41206SAndrew Thompson goto cleanup; 622bdd41206SAndrew Thompson 623bdd41206SAndrew Thompson if (cmd == USB_CFG_INIT) { 624bdd41206SAndrew Thompson sx_assert(udev->default_sx + 1, SA_LOCKED); 625bdd41206SAndrew Thompson 626bdd41206SAndrew Thompson /* check for in-use pipes */ 627bdd41206SAndrew Thompson 628bdd41206SAndrew Thompson pipe = udev->pipes; 629bdd41206SAndrew Thompson ep_max = udev->pipes_max; 630bdd41206SAndrew Thompson while (ep_max--) { 631bdd41206SAndrew Thompson /* look for matching pipes */ 632bdd41206SAndrew Thompson if ((iface_index == USB_IFACE_INDEX_ANY) || 633bdd41206SAndrew Thompson (iface_index == pipe->iface_index)) { 634bdd41206SAndrew Thompson if (pipe->refcount != 0) { 635bdd41206SAndrew Thompson /* 636bdd41206SAndrew Thompson * This typically indicates a 637bdd41206SAndrew Thompson * more serious error. 638bdd41206SAndrew Thompson */ 639bdd41206SAndrew Thompson err = USB_ERR_IN_USE; 640bdd41206SAndrew Thompson } else { 641bdd41206SAndrew Thompson /* reset pipe */ 642bdd41206SAndrew Thompson memset(pipe, 0, sizeof(*pipe)); 643bdd41206SAndrew Thompson /* make sure we don't zero the pipe again */ 644bdd41206SAndrew Thompson pipe->iface_index = USB_IFACE_INDEX_ANY; 645bdd41206SAndrew Thompson } 646bdd41206SAndrew Thompson } 647bdd41206SAndrew Thompson pipe++; 648bdd41206SAndrew Thompson } 649bdd41206SAndrew Thompson 650bdd41206SAndrew Thompson if (err) 651bdd41206SAndrew Thompson return (err); 652bdd41206SAndrew Thompson } 653bdd41206SAndrew Thompson 654bdd41206SAndrew Thompson memset(&ips, 0, sizeof(ips)); 655bdd41206SAndrew Thompson 656bdd41206SAndrew Thompson ep_curr = 0; 657bdd41206SAndrew Thompson ep_max = 0; 658bdd41206SAndrew Thompson 659bdd41206SAndrew Thompson while ((id = usb2_idesc_foreach(udev->cdesc, &ips))) { 660bdd41206SAndrew Thompson 661bdd41206SAndrew Thompson /* check for interface overflow */ 662bdd41206SAndrew Thompson if (ips.iface_index == USB_IFACE_MAX) 663bdd41206SAndrew Thompson break; /* crazy */ 664bdd41206SAndrew Thompson 665bdd41206SAndrew Thompson iface = udev->ifaces + ips.iface_index; 666bdd41206SAndrew Thompson 667bdd41206SAndrew Thompson /* check for specific interface match */ 668bdd41206SAndrew Thompson 669bdd41206SAndrew Thompson if (cmd == USB_CFG_INIT) { 670bdd41206SAndrew Thompson if ((iface_index != USB_IFACE_INDEX_ANY) && 671bdd41206SAndrew Thompson (iface_index != ips.iface_index)) { 672bdd41206SAndrew Thompson /* wrong interface */ 673bdd41206SAndrew Thompson do_init = 0; 674bdd41206SAndrew Thompson } else if (alt_index != ips.iface_index_alt) { 675bdd41206SAndrew Thompson /* wrong alternate setting */ 676bdd41206SAndrew Thompson do_init = 0; 677bdd41206SAndrew Thompson } else { 678bdd41206SAndrew Thompson /* initialise interface */ 679bdd41206SAndrew Thompson do_init = 1; 680bdd41206SAndrew Thompson } 681bdd41206SAndrew Thompson } else 682bdd41206SAndrew Thompson do_init = 0; 683bdd41206SAndrew Thompson 684bdd41206SAndrew Thompson /* check for new interface */ 685bdd41206SAndrew Thompson if (ips.iface_index_alt == 0) { 686bdd41206SAndrew Thompson /* update current number of endpoints */ 687bdd41206SAndrew Thompson ep_curr = ep_max; 688bdd41206SAndrew Thompson } 689bdd41206SAndrew Thompson /* check for init */ 690bdd41206SAndrew Thompson if (do_init) { 691bdd41206SAndrew Thompson /* setup the USB interface structure */ 692bdd41206SAndrew Thompson iface->idesc = id; 693bdd41206SAndrew Thompson /* default setting */ 694bdd41206SAndrew Thompson iface->parent_iface_index = USB_IFACE_INDEX_ANY; 695bdd41206SAndrew Thompson /* set alternate index */ 696bdd41206SAndrew Thompson iface->alt_index = alt_index; 697bdd41206SAndrew Thompson } 698bdd41206SAndrew Thompson 699bdd41206SAndrew Thompson DPRINTFN(5, "found idesc nendpt=%d\n", id->bNumEndpoints); 700bdd41206SAndrew Thompson 701760bc48eSAndrew Thompson ed = (struct usb_endpoint_descriptor *)id; 702bdd41206SAndrew Thompson 703bdd41206SAndrew Thompson temp = ep_curr; 704bdd41206SAndrew Thompson 705bdd41206SAndrew Thompson /* iterate all the endpoint descriptors */ 706bdd41206SAndrew Thompson while ((ed = usb2_edesc_foreach(udev->cdesc, ed))) { 707bdd41206SAndrew Thompson 708bdd41206SAndrew Thompson if (temp == USB_EP_MAX) 709bdd41206SAndrew Thompson break; /* crazy */ 710bdd41206SAndrew Thompson 711bdd41206SAndrew Thompson pipe = udev->pipes + temp; 712bdd41206SAndrew Thompson 713bdd41206SAndrew Thompson if (do_init) { 714bdd41206SAndrew Thompson usb2_init_pipe(udev, 715bdd41206SAndrew Thompson ips.iface_index, ed, pipe); 716bdd41206SAndrew Thompson } 717bdd41206SAndrew Thompson 718bdd41206SAndrew Thompson temp ++; 719bdd41206SAndrew Thompson 720bdd41206SAndrew Thompson /* find maximum number of endpoints */ 721bdd41206SAndrew Thompson if (ep_max < temp) 722bdd41206SAndrew Thompson ep_max = temp; 723bdd41206SAndrew Thompson 724bdd41206SAndrew Thompson /* optimalisation */ 725760bc48eSAndrew Thompson id = (struct usb_interface_descriptor *)ed; 726bdd41206SAndrew Thompson } 727bdd41206SAndrew Thompson } 728bdd41206SAndrew Thompson 729bdd41206SAndrew Thompson /* NOTE: It is valid to have no interfaces and no endpoints! */ 730bdd41206SAndrew Thompson 731bdd41206SAndrew Thompson if (cmd == USB_CFG_ALLOC) { 732bdd41206SAndrew Thompson udev->ifaces_max = ips.iface_index; 733bdd41206SAndrew Thompson udev->ifaces = NULL; 734bdd41206SAndrew Thompson if (udev->ifaces_max != 0) { 735bdd41206SAndrew Thompson udev->ifaces = malloc(sizeof(*iface) * udev->ifaces_max, 736bdd41206SAndrew Thompson M_USB, M_WAITOK | M_ZERO); 737bdd41206SAndrew Thompson if (udev->ifaces == NULL) { 738bdd41206SAndrew Thompson err = USB_ERR_NOMEM; 739bdd41206SAndrew Thompson goto done; 740bdd41206SAndrew Thompson } 741bdd41206SAndrew Thompson } 7429469c929SAndrew Thompson if (ep_max != 0) { 7439469c929SAndrew Thompson udev->pipes = malloc(sizeof(*pipe) * ep_max, 744bdd41206SAndrew Thompson M_USB, M_WAITOK | M_ZERO); 745bdd41206SAndrew Thompson if (udev->pipes == NULL) { 746bdd41206SAndrew Thompson err = USB_ERR_NOMEM; 747bdd41206SAndrew Thompson goto done; 748bdd41206SAndrew Thompson } 7499469c929SAndrew Thompson } else { 7509469c929SAndrew Thompson udev->pipes = NULL; 751bdd41206SAndrew Thompson } 7529469c929SAndrew Thompson USB_BUS_LOCK(udev->bus); 7539469c929SAndrew Thompson udev->pipes_max = ep_max; 7549469c929SAndrew Thompson /* reset any ongoing clear-stall */ 7559469c929SAndrew Thompson udev->pipe_curr = NULL; 7569469c929SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 757bdd41206SAndrew Thompson } 758bdd41206SAndrew Thompson 759bdd41206SAndrew Thompson done: 760bdd41206SAndrew Thompson if (err) { 761bdd41206SAndrew Thompson if (cmd == USB_CFG_ALLOC) { 762bdd41206SAndrew Thompson cleanup: 7639469c929SAndrew Thompson USB_BUS_LOCK(udev->bus); 7649469c929SAndrew Thompson udev->pipes_max = 0; 7659469c929SAndrew Thompson /* reset any ongoing clear-stall */ 7669469c929SAndrew Thompson udev->pipe_curr = NULL; 7679469c929SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 7689469c929SAndrew Thompson 769bdd41206SAndrew Thompson /* cleanup */ 770bdd41206SAndrew Thompson if (udev->ifaces != NULL) 771bdd41206SAndrew Thompson free(udev->ifaces, M_USB); 772bdd41206SAndrew Thompson if (udev->pipes != NULL) 773bdd41206SAndrew Thompson free(udev->pipes, M_USB); 774bdd41206SAndrew Thompson 775bdd41206SAndrew Thompson udev->ifaces = NULL; 776bdd41206SAndrew Thompson udev->pipes = NULL; 777bdd41206SAndrew Thompson udev->ifaces_max = 0; 778bdd41206SAndrew Thompson } 779bdd41206SAndrew Thompson } 780bdd41206SAndrew Thompson return (err); 781bdd41206SAndrew Thompson } 782bdd41206SAndrew Thompson 783bdd41206SAndrew Thompson /*------------------------------------------------------------------------* 78402ac6454SAndrew Thompson * usb2_set_alt_interface_index 78502ac6454SAndrew Thompson * 78602ac6454SAndrew Thompson * This function will select an alternate interface index for the 78702ac6454SAndrew Thompson * given interface index. The interface should not be in use when this 788e2805033SAndrew Thompson * function is called. That means there should not be any open USB 789e2805033SAndrew Thompson * transfers. Else an error is returned. If the alternate setting is 790e2805033SAndrew Thompson * already set this function will simply return success. This function 791e2805033SAndrew Thompson * is called in Host mode and Device mode! 79202ac6454SAndrew Thompson * 79302ac6454SAndrew Thompson * Returns: 79402ac6454SAndrew Thompson * 0: Success 79502ac6454SAndrew Thompson * Else: Failure 79602ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 797e0a69b51SAndrew Thompson usb_error_t 798760bc48eSAndrew Thompson usb2_set_alt_interface_index(struct usb_device *udev, 79902ac6454SAndrew Thompson uint8_t iface_index, uint8_t alt_index) 80002ac6454SAndrew Thompson { 801760bc48eSAndrew Thompson struct usb_interface *iface = usb2_get_iface(udev, iface_index); 802e0a69b51SAndrew Thompson usb_error_t err; 80302ac6454SAndrew Thompson uint8_t do_unlock; 80402ac6454SAndrew Thompson 80502ac6454SAndrew Thompson /* automatic locking */ 80602ac6454SAndrew Thompson if (sx_xlocked(udev->default_sx + 1)) { 80702ac6454SAndrew Thompson do_unlock = 0; 80802ac6454SAndrew Thompson } else { 80902ac6454SAndrew Thompson do_unlock = 1; 81002ac6454SAndrew Thompson sx_xlock(udev->default_sx + 1); 81102ac6454SAndrew Thompson } 81202ac6454SAndrew Thompson if (iface == NULL) { 81302ac6454SAndrew Thompson err = USB_ERR_INVAL; 81402ac6454SAndrew Thompson goto done; 81502ac6454SAndrew Thompson } 816f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_DEVICE) { 817bdd41206SAndrew Thompson usb2_detach_device(udev, iface_index, 818bdd41206SAndrew Thompson USB_UNCFG_FLAG_FREE_SUBDEV); 819e2805033SAndrew Thompson } else { 820e2805033SAndrew Thompson if (iface->alt_index == alt_index) { 821e2805033SAndrew Thompson /* 822e2805033SAndrew Thompson * Optimise away duplicate setting of 823e2805033SAndrew Thompson * alternate setting in USB Host Mode! 824e2805033SAndrew Thompson */ 825e2805033SAndrew Thompson err = 0; 826e2805033SAndrew Thompson goto done; 827e2805033SAndrew Thompson } 82802ac6454SAndrew Thompson } 8290f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 83002ac6454SAndrew Thompson /* 83102ac6454SAndrew Thompson * Free all generic FIFOs for this interface, except control 83202ac6454SAndrew Thompson * endpoint FIFOs: 83302ac6454SAndrew Thompson */ 83402ac6454SAndrew Thompson usb2_fifo_free_wrap(udev, iface_index, 0); 8350f6e8f93SAndrew Thompson #endif 836bdd41206SAndrew Thompson 837bdd41206SAndrew Thompson err = usb2_config_parse(udev, iface_index, alt_index); 83802ac6454SAndrew Thompson if (err) { 83902ac6454SAndrew Thompson goto done; 84002ac6454SAndrew Thompson } 841e2805033SAndrew Thompson err = usb2_req_set_alt_interface_no(udev, NULL, iface_index, 84202ac6454SAndrew Thompson iface->idesc->bAlternateSetting); 84302ac6454SAndrew Thompson 84402ac6454SAndrew Thompson done: 84502ac6454SAndrew Thompson if (do_unlock) { 84602ac6454SAndrew Thompson sx_unlock(udev->default_sx + 1); 84702ac6454SAndrew Thompson } 84802ac6454SAndrew Thompson return (err); 84902ac6454SAndrew Thompson } 85002ac6454SAndrew Thompson 85102ac6454SAndrew Thompson /*------------------------------------------------------------------------* 85202ac6454SAndrew Thompson * usb2_set_endpoint_stall 85302ac6454SAndrew Thompson * 85402ac6454SAndrew Thompson * This function is used to make a BULK or INTERRUPT endpoint 85502ac6454SAndrew Thompson * send STALL tokens. 85602ac6454SAndrew Thompson * 85702ac6454SAndrew Thompson * Returns: 85802ac6454SAndrew Thompson * 0: Success 85902ac6454SAndrew Thompson * Else: Failure 86002ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 861e0a69b51SAndrew Thompson usb_error_t 862760bc48eSAndrew Thompson usb2_set_endpoint_stall(struct usb_device *udev, struct usb_pipe *pipe, 86302ac6454SAndrew Thompson uint8_t do_stall) 86402ac6454SAndrew Thompson { 865760bc48eSAndrew Thompson struct usb_xfer *xfer; 86602ac6454SAndrew Thompson uint8_t et; 86702ac6454SAndrew Thompson uint8_t was_stalled; 86802ac6454SAndrew Thompson 86902ac6454SAndrew Thompson if (pipe == NULL) { 87002ac6454SAndrew Thompson /* nothing to do */ 87102ac6454SAndrew Thompson DPRINTF("Cannot find endpoint\n"); 87202ac6454SAndrew Thompson /* 87302ac6454SAndrew Thompson * Pretend that the clear or set stall request is 87402ac6454SAndrew Thompson * successful else some USB host stacks can do 87502ac6454SAndrew Thompson * strange things, especially when a control endpoint 87602ac6454SAndrew Thompson * stalls. 87702ac6454SAndrew Thompson */ 87802ac6454SAndrew Thompson return (0); 87902ac6454SAndrew Thompson } 88002ac6454SAndrew Thompson et = (pipe->edesc->bmAttributes & UE_XFERTYPE); 88102ac6454SAndrew Thompson 88202ac6454SAndrew Thompson if ((et != UE_BULK) && 88302ac6454SAndrew Thompson (et != UE_INTERRUPT)) { 88402ac6454SAndrew Thompson /* 88502ac6454SAndrew Thompson * Should not stall control 88602ac6454SAndrew Thompson * nor isochronous endpoints. 88702ac6454SAndrew Thompson */ 88802ac6454SAndrew Thompson DPRINTF("Invalid endpoint\n"); 88902ac6454SAndrew Thompson return (0); 89002ac6454SAndrew Thompson } 89102ac6454SAndrew Thompson USB_BUS_LOCK(udev->bus); 89202ac6454SAndrew Thompson 89302ac6454SAndrew Thompson /* store current stall state */ 89402ac6454SAndrew Thompson was_stalled = pipe->is_stalled; 89502ac6454SAndrew Thompson 89602ac6454SAndrew Thompson /* check for no change */ 89702ac6454SAndrew Thompson if (was_stalled && do_stall) { 89802ac6454SAndrew Thompson /* if the pipe is already stalled do nothing */ 89902ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 90002ac6454SAndrew Thompson DPRINTF("No change\n"); 90102ac6454SAndrew Thompson return (0); 90202ac6454SAndrew Thompson } 90302ac6454SAndrew Thompson /* set stalled state */ 90402ac6454SAndrew Thompson pipe->is_stalled = 1; 90502ac6454SAndrew Thompson 90602ac6454SAndrew Thompson if (do_stall || (!was_stalled)) { 90702ac6454SAndrew Thompson if (!was_stalled) { 90802ac6454SAndrew Thompson /* lookup the current USB transfer, if any */ 90902ac6454SAndrew Thompson xfer = pipe->pipe_q.curr; 91002ac6454SAndrew Thompson } else { 91102ac6454SAndrew Thompson xfer = NULL; 91202ac6454SAndrew Thompson } 91302ac6454SAndrew Thompson 91402ac6454SAndrew Thompson /* 91502ac6454SAndrew Thompson * If "xfer" is non-NULL the "set_stall" method will 91602ac6454SAndrew Thompson * complete the USB transfer like in case of a timeout 91702ac6454SAndrew Thompson * setting the error code "USB_ERR_STALLED". 91802ac6454SAndrew Thompson */ 91902ac6454SAndrew Thompson (udev->bus->methods->set_stall) (udev, xfer, pipe); 92002ac6454SAndrew Thompson } 92102ac6454SAndrew Thompson if (!do_stall) { 92202ac6454SAndrew Thompson pipe->toggle_next = 0; /* reset data toggle */ 92302ac6454SAndrew Thompson pipe->is_stalled = 0; /* clear stalled state */ 92402ac6454SAndrew Thompson 92502ac6454SAndrew Thompson (udev->bus->methods->clear_stall) (udev, pipe); 92602ac6454SAndrew Thompson 92702ac6454SAndrew Thompson /* start up the current or next transfer, if any */ 92802ac6454SAndrew Thompson usb2_command_wrapper(&pipe->pipe_q, pipe->pipe_q.curr); 92902ac6454SAndrew Thompson } 93002ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 93102ac6454SAndrew Thompson return (0); 93202ac6454SAndrew Thompson } 93302ac6454SAndrew Thompson 93402ac6454SAndrew Thompson /*------------------------------------------------------------------------* 93502ac6454SAndrew Thompson * usb2_reset_iface_endpoints - used in USB device side mode 93602ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 937e0a69b51SAndrew Thompson usb_error_t 938760bc48eSAndrew Thompson usb2_reset_iface_endpoints(struct usb_device *udev, uint8_t iface_index) 93902ac6454SAndrew Thompson { 940760bc48eSAndrew Thompson struct usb_pipe *pipe; 941760bc48eSAndrew Thompson struct usb_pipe *pipe_end; 942e0a69b51SAndrew Thompson usb_error_t err; 94302ac6454SAndrew Thompson 94402ac6454SAndrew Thompson pipe = udev->pipes; 94563521bbcSAndrew Thompson pipe_end = udev->pipes + udev->pipes_max; 94602ac6454SAndrew Thompson 94702ac6454SAndrew Thompson for (; pipe != pipe_end; pipe++) { 94802ac6454SAndrew Thompson 94902ac6454SAndrew Thompson if ((pipe->edesc == NULL) || 95002ac6454SAndrew Thompson (pipe->iface_index != iface_index)) { 95102ac6454SAndrew Thompson continue; 95202ac6454SAndrew Thompson } 95302ac6454SAndrew Thompson /* simulate a clear stall from the peer */ 95402ac6454SAndrew Thompson err = usb2_set_endpoint_stall(udev, pipe, 0); 95502ac6454SAndrew Thompson if (err) { 95602ac6454SAndrew Thompson /* just ignore */ 95702ac6454SAndrew Thompson } 95802ac6454SAndrew Thompson } 95902ac6454SAndrew Thompson return (0); 96002ac6454SAndrew Thompson } 96102ac6454SAndrew Thompson 96202ac6454SAndrew Thompson /*------------------------------------------------------------------------* 96302ac6454SAndrew Thompson * usb2_detach_device_sub 96402ac6454SAndrew Thompson * 96502ac6454SAndrew Thompson * This function will try to detach an USB device. If it fails a panic 96602ac6454SAndrew Thompson * will result. 967bdd41206SAndrew Thompson * 968bdd41206SAndrew Thompson * Flag values, see "USB_UNCFG_FLAG_XXX". 96902ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 97002ac6454SAndrew Thompson static void 971760bc48eSAndrew Thompson usb2_detach_device_sub(struct usb_device *udev, device_t *ppdev, 972bdd41206SAndrew Thompson uint8_t flag) 97302ac6454SAndrew Thompson { 97402ac6454SAndrew Thompson device_t dev; 97502ac6454SAndrew Thompson int err; 97602ac6454SAndrew Thompson 977bdd41206SAndrew Thompson if (!(flag & USB_UNCFG_FLAG_FREE_SUBDEV)) { 97802ac6454SAndrew Thompson 97902ac6454SAndrew Thompson *ppdev = NULL; 98002ac6454SAndrew Thompson 98102ac6454SAndrew Thompson } else if (*ppdev) { 98202ac6454SAndrew Thompson 98302ac6454SAndrew Thompson /* 98402ac6454SAndrew Thompson * NOTE: It is important to clear "*ppdev" before deleting 98502ac6454SAndrew Thompson * the child due to some device methods being called late 98602ac6454SAndrew Thompson * during the delete process ! 98702ac6454SAndrew Thompson */ 98802ac6454SAndrew Thompson dev = *ppdev; 98902ac6454SAndrew Thompson *ppdev = NULL; 99002ac6454SAndrew Thompson 99102ac6454SAndrew Thompson device_printf(dev, "at %s, port %d, addr %d " 99202ac6454SAndrew Thompson "(disconnected)\n", 99302ac6454SAndrew Thompson device_get_nameunit(udev->parent_dev), 99402ac6454SAndrew Thompson udev->port_no, udev->address); 99502ac6454SAndrew Thompson 99602ac6454SAndrew Thompson if (device_is_attached(dev)) { 997ec8f3127SAndrew Thompson if (udev->flags.peer_suspended) { 99802ac6454SAndrew Thompson err = DEVICE_RESUME(dev); 99902ac6454SAndrew Thompson if (err) { 100002ac6454SAndrew Thompson device_printf(dev, "Resume failed!\n"); 100102ac6454SAndrew Thompson } 100202ac6454SAndrew Thompson } 100302ac6454SAndrew Thompson if (device_detach(dev)) { 100402ac6454SAndrew Thompson goto error; 100502ac6454SAndrew Thompson } 100602ac6454SAndrew Thompson } 100702ac6454SAndrew Thompson if (device_delete_child(udev->parent_dev, dev)) { 100802ac6454SAndrew Thompson goto error; 100902ac6454SAndrew Thompson } 101002ac6454SAndrew Thompson } 101102ac6454SAndrew Thompson return; 101202ac6454SAndrew Thompson 101302ac6454SAndrew Thompson error: 101402ac6454SAndrew Thompson /* Detach is not allowed to fail in the USB world */ 101502ac6454SAndrew Thompson panic("An USB driver would not detach!\n"); 101602ac6454SAndrew Thompson } 101702ac6454SAndrew Thompson 101802ac6454SAndrew Thompson /*------------------------------------------------------------------------* 101902ac6454SAndrew Thompson * usb2_detach_device 102002ac6454SAndrew Thompson * 102102ac6454SAndrew Thompson * The following function will detach the matching interfaces. 102202ac6454SAndrew Thompson * This function is NULL safe. 1023bdd41206SAndrew Thompson * 1024bdd41206SAndrew Thompson * Flag values, see "USB_UNCFG_FLAG_XXX". 102502ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 102602ac6454SAndrew Thompson void 1027760bc48eSAndrew Thompson usb2_detach_device(struct usb_device *udev, uint8_t iface_index, 1028bdd41206SAndrew Thompson uint8_t flag) 102902ac6454SAndrew Thompson { 1030760bc48eSAndrew Thompson struct usb_interface *iface; 103102ac6454SAndrew Thompson uint8_t i; 103202ac6454SAndrew Thompson 103302ac6454SAndrew Thompson if (udev == NULL) { 103402ac6454SAndrew Thompson /* nothing to do */ 103502ac6454SAndrew Thompson return; 103602ac6454SAndrew Thompson } 103702ac6454SAndrew Thompson DPRINTFN(4, "udev=%p\n", udev); 103802ac6454SAndrew Thompson 1039bdd41206SAndrew Thompson sx_assert(udev->default_sx + 1, SA_LOCKED); 104002ac6454SAndrew Thompson 104102ac6454SAndrew Thompson /* 104202ac6454SAndrew Thompson * First detach the child to give the child's detach routine a 104302ac6454SAndrew Thompson * chance to detach the sub-devices in the correct order. 104402ac6454SAndrew Thompson * Then delete the child using "device_delete_child()" which 104502ac6454SAndrew Thompson * will detach all sub-devices from the bottom and upwards! 104602ac6454SAndrew Thompson */ 104702ac6454SAndrew Thompson if (iface_index != USB_IFACE_INDEX_ANY) { 104802ac6454SAndrew Thompson i = iface_index; 104902ac6454SAndrew Thompson iface_index = i + 1; 105002ac6454SAndrew Thompson } else { 105102ac6454SAndrew Thompson i = 0; 105202ac6454SAndrew Thompson iface_index = USB_IFACE_MAX; 105302ac6454SAndrew Thompson } 105402ac6454SAndrew Thompson 105502ac6454SAndrew Thompson /* do the detach */ 105602ac6454SAndrew Thompson 105702ac6454SAndrew Thompson for (; i != iface_index; i++) { 105802ac6454SAndrew Thompson 105902ac6454SAndrew Thompson iface = usb2_get_iface(udev, i); 106002ac6454SAndrew Thompson if (iface == NULL) { 106102ac6454SAndrew Thompson /* looks like the end of the USB interfaces */ 106202ac6454SAndrew Thompson break; 106302ac6454SAndrew Thompson } 1064bdd41206SAndrew Thompson usb2_detach_device_sub(udev, &iface->subdev, flag); 106502ac6454SAndrew Thompson } 106602ac6454SAndrew Thompson } 106702ac6454SAndrew Thompson 106802ac6454SAndrew Thompson /*------------------------------------------------------------------------* 106902ac6454SAndrew Thompson * usb2_probe_and_attach_sub 107002ac6454SAndrew Thompson * 107102ac6454SAndrew Thompson * Returns: 107202ac6454SAndrew Thompson * 0: Success 107302ac6454SAndrew Thompson * Else: Failure 107402ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 107502ac6454SAndrew Thompson static uint8_t 1076760bc48eSAndrew Thompson usb2_probe_and_attach_sub(struct usb_device *udev, 1077760bc48eSAndrew Thompson struct usb_attach_arg *uaa) 107802ac6454SAndrew Thompson { 1079760bc48eSAndrew Thompson struct usb_interface *iface; 108002ac6454SAndrew Thompson device_t dev; 108102ac6454SAndrew Thompson int err; 108202ac6454SAndrew Thompson 108302ac6454SAndrew Thompson iface = uaa->iface; 108402ac6454SAndrew Thompson if (iface->parent_iface_index != USB_IFACE_INDEX_ANY) { 108502ac6454SAndrew Thompson /* leave interface alone */ 108602ac6454SAndrew Thompson return (0); 108702ac6454SAndrew Thompson } 108802ac6454SAndrew Thompson dev = iface->subdev; 108902ac6454SAndrew Thompson if (dev) { 109002ac6454SAndrew Thompson 109102ac6454SAndrew Thompson /* clean up after module unload */ 109202ac6454SAndrew Thompson 109302ac6454SAndrew Thompson if (device_is_attached(dev)) { 109402ac6454SAndrew Thompson /* already a device there */ 109502ac6454SAndrew Thompson return (0); 109602ac6454SAndrew Thompson } 109702ac6454SAndrew Thompson /* clear "iface->subdev" as early as possible */ 109802ac6454SAndrew Thompson 109902ac6454SAndrew Thompson iface->subdev = NULL; 110002ac6454SAndrew Thompson 110102ac6454SAndrew Thompson if (device_delete_child(udev->parent_dev, dev)) { 110202ac6454SAndrew Thompson 110302ac6454SAndrew Thompson /* 110402ac6454SAndrew Thompson * Panic here, else one can get a double call 110502ac6454SAndrew Thompson * to device_detach(). USB devices should 110602ac6454SAndrew Thompson * never fail on detach! 110702ac6454SAndrew Thompson */ 110802ac6454SAndrew Thompson panic("device_delete_child() failed!\n"); 110902ac6454SAndrew Thompson } 111002ac6454SAndrew Thompson } 111102ac6454SAndrew Thompson if (uaa->temp_dev == NULL) { 111202ac6454SAndrew Thompson 111302ac6454SAndrew Thompson /* create a new child */ 111402ac6454SAndrew Thompson uaa->temp_dev = device_add_child(udev->parent_dev, NULL, -1); 111502ac6454SAndrew Thompson if (uaa->temp_dev == NULL) { 111602ac6454SAndrew Thompson device_printf(udev->parent_dev, 111702ac6454SAndrew Thompson "Device creation failed!\n"); 111802ac6454SAndrew Thompson return (1); /* failure */ 111902ac6454SAndrew Thompson } 112002ac6454SAndrew Thompson device_set_ivars(uaa->temp_dev, uaa); 112102ac6454SAndrew Thompson device_quiet(uaa->temp_dev); 112202ac6454SAndrew Thompson } 112302ac6454SAndrew Thompson /* 112402ac6454SAndrew Thompson * Set "subdev" before probe and attach so that "devd" gets 112502ac6454SAndrew Thompson * the information it needs. 112602ac6454SAndrew Thompson */ 112702ac6454SAndrew Thompson iface->subdev = uaa->temp_dev; 112802ac6454SAndrew Thompson 112902ac6454SAndrew Thompson if (device_probe_and_attach(iface->subdev) == 0) { 113002ac6454SAndrew Thompson /* 113102ac6454SAndrew Thompson * The USB attach arguments are only available during probe 113202ac6454SAndrew Thompson * and attach ! 113302ac6454SAndrew Thompson */ 113402ac6454SAndrew Thompson uaa->temp_dev = NULL; 113502ac6454SAndrew Thompson device_set_ivars(iface->subdev, NULL); 113602ac6454SAndrew Thompson 1137ec8f3127SAndrew Thompson if (udev->flags.peer_suspended) { 113802ac6454SAndrew Thompson err = DEVICE_SUSPEND(iface->subdev); 113988b4e0abSAndrew Thompson if (err) 114002ac6454SAndrew Thompson device_printf(iface->subdev, "Suspend failed\n"); 114102ac6454SAndrew Thompson } 114202ac6454SAndrew Thompson return (0); /* success */ 114302ac6454SAndrew Thompson } else { 114402ac6454SAndrew Thompson /* No USB driver found */ 114502ac6454SAndrew Thompson iface->subdev = NULL; 114602ac6454SAndrew Thompson } 114702ac6454SAndrew Thompson return (1); /* failure */ 114802ac6454SAndrew Thompson } 114902ac6454SAndrew Thompson 115002ac6454SAndrew Thompson /*------------------------------------------------------------------------* 115102ac6454SAndrew Thompson * usb2_set_parent_iface 115202ac6454SAndrew Thompson * 115302ac6454SAndrew Thompson * Using this function will lock the alternate interface setting on an 115402ac6454SAndrew Thompson * interface. It is typically used for multi interface drivers. In USB 115502ac6454SAndrew Thompson * device side mode it is assumed that the alternate interfaces all 115602ac6454SAndrew Thompson * have the same endpoint descriptors. The default parent index value 115702ac6454SAndrew Thompson * is "USB_IFACE_INDEX_ANY". Then the alternate setting value is not 115802ac6454SAndrew Thompson * locked. 115902ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 116002ac6454SAndrew Thompson void 1161760bc48eSAndrew Thompson usb2_set_parent_iface(struct usb_device *udev, uint8_t iface_index, 116202ac6454SAndrew Thompson uint8_t parent_index) 116302ac6454SAndrew Thompson { 1164760bc48eSAndrew Thompson struct usb_interface *iface; 116502ac6454SAndrew Thompson 116602ac6454SAndrew Thompson iface = usb2_get_iface(udev, iface_index); 116702ac6454SAndrew Thompson if (iface) { 116802ac6454SAndrew Thompson iface->parent_iface_index = parent_index; 116902ac6454SAndrew Thompson } 117002ac6454SAndrew Thompson } 117102ac6454SAndrew Thompson 117202ac6454SAndrew Thompson static void 1173760bc48eSAndrew Thompson usb2_init_attach_arg(struct usb_device *udev, 1174760bc48eSAndrew Thompson struct usb_attach_arg *uaa) 117502ac6454SAndrew Thompson { 117602ac6454SAndrew Thompson bzero(uaa, sizeof(*uaa)); 117702ac6454SAndrew Thompson 117802ac6454SAndrew Thompson uaa->device = udev; 1179f29a0724SAndrew Thompson uaa->usb_mode = udev->flags.usb_mode; 118002ac6454SAndrew Thompson uaa->port = udev->port_no; 118102ac6454SAndrew Thompson 118202ac6454SAndrew Thompson uaa->info.idVendor = UGETW(udev->ddesc.idVendor); 118302ac6454SAndrew Thompson uaa->info.idProduct = UGETW(udev->ddesc.idProduct); 118402ac6454SAndrew Thompson uaa->info.bcdDevice = UGETW(udev->ddesc.bcdDevice); 118502ac6454SAndrew Thompson uaa->info.bDeviceClass = udev->ddesc.bDeviceClass; 118602ac6454SAndrew Thompson uaa->info.bDeviceSubClass = udev->ddesc.bDeviceSubClass; 118702ac6454SAndrew Thompson uaa->info.bDeviceProtocol = udev->ddesc.bDeviceProtocol; 118802ac6454SAndrew Thompson uaa->info.bConfigIndex = udev->curr_config_index; 118902ac6454SAndrew Thompson uaa->info.bConfigNum = udev->curr_config_no; 119002ac6454SAndrew Thompson } 119102ac6454SAndrew Thompson 119202ac6454SAndrew Thompson /*------------------------------------------------------------------------* 119302ac6454SAndrew Thompson * usb2_probe_and_attach 119402ac6454SAndrew Thompson * 119502ac6454SAndrew Thompson * This function is called from "uhub_explore_sub()", 119602ac6454SAndrew Thompson * "usb2_handle_set_config()" and "usb2_handle_request()". 119702ac6454SAndrew Thompson * 119802ac6454SAndrew Thompson * Returns: 119902ac6454SAndrew Thompson * 0: Success 120002ac6454SAndrew Thompson * Else: A control transfer failed 120102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 1202e0a69b51SAndrew Thompson usb_error_t 1203760bc48eSAndrew Thompson usb2_probe_and_attach(struct usb_device *udev, uint8_t iface_index) 120402ac6454SAndrew Thompson { 1205760bc48eSAndrew Thompson struct usb_attach_arg uaa; 1206760bc48eSAndrew Thompson struct usb_interface *iface; 120702ac6454SAndrew Thompson uint8_t i; 120802ac6454SAndrew Thompson uint8_t j; 120902ac6454SAndrew Thompson uint8_t do_unlock; 121002ac6454SAndrew Thompson 121102ac6454SAndrew Thompson if (udev == NULL) { 121202ac6454SAndrew Thompson DPRINTF("udev == NULL\n"); 121302ac6454SAndrew Thompson return (USB_ERR_INVAL); 121402ac6454SAndrew Thompson } 121502ac6454SAndrew Thompson /* automatic locking */ 121602ac6454SAndrew Thompson if (sx_xlocked(udev->default_sx + 1)) { 121702ac6454SAndrew Thompson do_unlock = 0; 121802ac6454SAndrew Thompson } else { 121902ac6454SAndrew Thompson do_unlock = 1; 122002ac6454SAndrew Thompson sx_xlock(udev->default_sx + 1); 122102ac6454SAndrew Thompson } 122202ac6454SAndrew Thompson 122302ac6454SAndrew Thompson if (udev->curr_config_index == USB_UNCONFIG_INDEX) { 122402ac6454SAndrew Thompson /* do nothing - no configuration has been set */ 122502ac6454SAndrew Thompson goto done; 122602ac6454SAndrew Thompson } 122702ac6454SAndrew Thompson /* setup USB attach arguments */ 122802ac6454SAndrew Thompson 122902ac6454SAndrew Thompson usb2_init_attach_arg(udev, &uaa); 123002ac6454SAndrew Thompson 123102ac6454SAndrew Thompson /* Check if only one interface should be probed: */ 123202ac6454SAndrew Thompson if (iface_index != USB_IFACE_INDEX_ANY) { 123302ac6454SAndrew Thompson i = iface_index; 123402ac6454SAndrew Thompson j = i + 1; 123502ac6454SAndrew Thompson } else { 123602ac6454SAndrew Thompson i = 0; 123702ac6454SAndrew Thompson j = USB_IFACE_MAX; 123802ac6454SAndrew Thompson } 123902ac6454SAndrew Thompson 124002ac6454SAndrew Thompson /* Do the probe and attach */ 124102ac6454SAndrew Thompson for (; i != j; i++) { 124202ac6454SAndrew Thompson 124302ac6454SAndrew Thompson iface = usb2_get_iface(udev, i); 124402ac6454SAndrew Thompson if (iface == NULL) { 124502ac6454SAndrew Thompson /* 124602ac6454SAndrew Thompson * Looks like the end of the USB 124702ac6454SAndrew Thompson * interfaces ! 124802ac6454SAndrew Thompson */ 124902ac6454SAndrew Thompson DPRINTFN(2, "end of interfaces " 125002ac6454SAndrew Thompson "at %u\n", i); 125102ac6454SAndrew Thompson break; 125202ac6454SAndrew Thompson } 125302ac6454SAndrew Thompson if (iface->idesc == NULL) { 125402ac6454SAndrew Thompson /* no interface descriptor */ 125502ac6454SAndrew Thompson continue; 125602ac6454SAndrew Thompson } 125702ac6454SAndrew Thompson uaa.iface = iface; 125802ac6454SAndrew Thompson 125902ac6454SAndrew Thompson uaa.info.bInterfaceClass = 126002ac6454SAndrew Thompson iface->idesc->bInterfaceClass; 126102ac6454SAndrew Thompson uaa.info.bInterfaceSubClass = 126202ac6454SAndrew Thompson iface->idesc->bInterfaceSubClass; 126302ac6454SAndrew Thompson uaa.info.bInterfaceProtocol = 126402ac6454SAndrew Thompson iface->idesc->bInterfaceProtocol; 126502ac6454SAndrew Thompson uaa.info.bIfaceIndex = i; 126602ac6454SAndrew Thompson uaa.info.bIfaceNum = 126702ac6454SAndrew Thompson iface->idesc->bInterfaceNumber; 126802ac6454SAndrew Thompson uaa.use_generic = 0; 126902ac6454SAndrew Thompson 127002ac6454SAndrew Thompson DPRINTFN(2, "iclass=%u/%u/%u iindex=%u/%u\n", 127102ac6454SAndrew Thompson uaa.info.bInterfaceClass, 127202ac6454SAndrew Thompson uaa.info.bInterfaceSubClass, 127302ac6454SAndrew Thompson uaa.info.bInterfaceProtocol, 127402ac6454SAndrew Thompson uaa.info.bIfaceIndex, 127502ac6454SAndrew Thompson uaa.info.bIfaceNum); 127602ac6454SAndrew Thompson 127702ac6454SAndrew Thompson /* try specific interface drivers first */ 127802ac6454SAndrew Thompson 127902ac6454SAndrew Thompson if (usb2_probe_and_attach_sub(udev, &uaa)) { 128002ac6454SAndrew Thompson /* ignore */ 128102ac6454SAndrew Thompson } 128202ac6454SAndrew Thompson /* try generic interface drivers last */ 128302ac6454SAndrew Thompson 128402ac6454SAndrew Thompson uaa.use_generic = 1; 128502ac6454SAndrew Thompson 128602ac6454SAndrew Thompson if (usb2_probe_and_attach_sub(udev, &uaa)) { 128702ac6454SAndrew Thompson /* ignore */ 128802ac6454SAndrew Thompson } 128902ac6454SAndrew Thompson } 129002ac6454SAndrew Thompson 129102ac6454SAndrew Thompson if (uaa.temp_dev) { 129202ac6454SAndrew Thompson /* remove the last created child; it is unused */ 129302ac6454SAndrew Thompson 129402ac6454SAndrew Thompson if (device_delete_child(udev->parent_dev, uaa.temp_dev)) { 129502ac6454SAndrew Thompson DPRINTFN(0, "device delete child failed!\n"); 129602ac6454SAndrew Thompson } 129702ac6454SAndrew Thompson } 129802ac6454SAndrew Thompson done: 129902ac6454SAndrew Thompson if (do_unlock) { 130002ac6454SAndrew Thompson sx_unlock(udev->default_sx + 1); 130102ac6454SAndrew Thompson } 130202ac6454SAndrew Thompson return (0); 130302ac6454SAndrew Thompson } 130402ac6454SAndrew Thompson 130502ac6454SAndrew Thompson /*------------------------------------------------------------------------* 130602ac6454SAndrew Thompson * usb2_suspend_resume_sub 130702ac6454SAndrew Thompson * 130802ac6454SAndrew Thompson * This function is called when the suspend or resume methods should 130902ac6454SAndrew Thompson * be executed on an USB device. 131002ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 131102ac6454SAndrew Thompson static void 1312760bc48eSAndrew Thompson usb2_suspend_resume_sub(struct usb_device *udev, device_t dev, uint8_t do_suspend) 131302ac6454SAndrew Thompson { 131402ac6454SAndrew Thompson int err; 131502ac6454SAndrew Thompson 131602ac6454SAndrew Thompson if (dev == NULL) { 131702ac6454SAndrew Thompson return; 131802ac6454SAndrew Thompson } 131902ac6454SAndrew Thompson if (!device_is_attached(dev)) { 132002ac6454SAndrew Thompson return; 132102ac6454SAndrew Thompson } 132202ac6454SAndrew Thompson if (do_suspend) { 132302ac6454SAndrew Thompson err = DEVICE_SUSPEND(dev); 132402ac6454SAndrew Thompson } else { 132502ac6454SAndrew Thompson err = DEVICE_RESUME(dev); 132602ac6454SAndrew Thompson } 132702ac6454SAndrew Thompson if (err) { 132802ac6454SAndrew Thompson device_printf(dev, "%s failed!\n", 132902ac6454SAndrew Thompson do_suspend ? "Suspend" : "Resume"); 133002ac6454SAndrew Thompson } 133102ac6454SAndrew Thompson } 133202ac6454SAndrew Thompson 133302ac6454SAndrew Thompson /*------------------------------------------------------------------------* 133402ac6454SAndrew Thompson * usb2_suspend_resume 133502ac6454SAndrew Thompson * 133602ac6454SAndrew Thompson * The following function will suspend or resume the USB device. 133702ac6454SAndrew Thompson * 133802ac6454SAndrew Thompson * Returns: 133902ac6454SAndrew Thompson * 0: Success 134002ac6454SAndrew Thompson * Else: Failure 134102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 1342e0a69b51SAndrew Thompson usb_error_t 1343760bc48eSAndrew Thompson usb2_suspend_resume(struct usb_device *udev, uint8_t do_suspend) 134402ac6454SAndrew Thompson { 1345760bc48eSAndrew Thompson struct usb_interface *iface; 134602ac6454SAndrew Thompson uint8_t i; 134702ac6454SAndrew Thompson 134802ac6454SAndrew Thompson if (udev == NULL) { 134902ac6454SAndrew Thompson /* nothing to do */ 135002ac6454SAndrew Thompson return (0); 135102ac6454SAndrew Thompson } 135202ac6454SAndrew Thompson DPRINTFN(4, "udev=%p do_suspend=%d\n", udev, do_suspend); 135302ac6454SAndrew Thompson 135402ac6454SAndrew Thompson sx_assert(udev->default_sx + 1, SA_LOCKED); 135502ac6454SAndrew Thompson 135602ac6454SAndrew Thompson USB_BUS_LOCK(udev->bus); 135702ac6454SAndrew Thompson /* filter the suspend events */ 1358ec8f3127SAndrew Thompson if (udev->flags.peer_suspended == do_suspend) { 135902ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 136002ac6454SAndrew Thompson /* nothing to do */ 136102ac6454SAndrew Thompson return (0); 136202ac6454SAndrew Thompson } 1363ec8f3127SAndrew Thompson udev->flags.peer_suspended = do_suspend; 136402ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 136502ac6454SAndrew Thompson 136602ac6454SAndrew Thompson /* do the suspend or resume */ 136702ac6454SAndrew Thompson 136802ac6454SAndrew Thompson for (i = 0; i != USB_IFACE_MAX; i++) { 136902ac6454SAndrew Thompson 137002ac6454SAndrew Thompson iface = usb2_get_iface(udev, i); 137102ac6454SAndrew Thompson if (iface == NULL) { 137202ac6454SAndrew Thompson /* looks like the end of the USB interfaces */ 137302ac6454SAndrew Thompson break; 137402ac6454SAndrew Thompson } 137502ac6454SAndrew Thompson usb2_suspend_resume_sub(udev, iface->subdev, do_suspend); 137602ac6454SAndrew Thompson } 137702ac6454SAndrew Thompson return (0); 137802ac6454SAndrew Thompson } 137902ac6454SAndrew Thompson 138002ac6454SAndrew Thompson /*------------------------------------------------------------------------* 138102ac6454SAndrew Thompson * usb2_clear_stall_proc 138202ac6454SAndrew Thompson * 138302ac6454SAndrew Thompson * This function performs generic USB clear stall operations. 138402ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 138502ac6454SAndrew Thompson static void 1386760bc48eSAndrew Thompson usb2_clear_stall_proc(struct usb_proc_msg *_pm) 138702ac6454SAndrew Thompson { 1388760bc48eSAndrew Thompson struct usb_clear_stall_msg *pm = (void *)_pm; 1389760bc48eSAndrew Thompson struct usb_device *udev = pm->udev; 139002ac6454SAndrew Thompson 139102ac6454SAndrew Thompson /* Change lock */ 139202ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 139302ac6454SAndrew Thompson mtx_lock(udev->default_mtx); 139402ac6454SAndrew Thompson 139502ac6454SAndrew Thompson /* Start clear stall callback */ 139602ac6454SAndrew Thompson usb2_transfer_start(udev->default_xfer[1]); 139702ac6454SAndrew Thompson 139802ac6454SAndrew Thompson /* Change lock */ 139902ac6454SAndrew Thompson mtx_unlock(udev->default_mtx); 140002ac6454SAndrew Thompson USB_BUS_LOCK(udev->bus); 140102ac6454SAndrew Thompson } 140202ac6454SAndrew Thompson 140302ac6454SAndrew Thompson /*------------------------------------------------------------------------* 140402ac6454SAndrew Thompson * usb2_alloc_device 140502ac6454SAndrew Thompson * 140602ac6454SAndrew Thompson * This function allocates a new USB device. This function is called 140702ac6454SAndrew Thompson * when a new device has been put in the powered state, but not yet in 140802ac6454SAndrew Thompson * the addressed state. Get initial descriptor, set the address, get 140902ac6454SAndrew Thompson * full descriptor and get strings. 141002ac6454SAndrew Thompson * 141102ac6454SAndrew Thompson * Return values: 141202ac6454SAndrew Thompson * 0: Failure 141302ac6454SAndrew Thompson * Else: Success 141402ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 1415760bc48eSAndrew Thompson struct usb_device * 1416760bc48eSAndrew Thompson usb2_alloc_device(device_t parent_dev, struct usb_bus *bus, 1417760bc48eSAndrew Thompson struct usb_device *parent_hub, uint8_t depth, uint8_t port_index, 14188d2dd5ddSAndrew Thompson uint8_t port_no, enum usb_dev_speed speed, enum usb_hc_mode mode) 141902ac6454SAndrew Thompson { 1420760bc48eSAndrew Thompson struct usb_attach_arg uaa; 1421760bc48eSAndrew Thompson struct usb_device *udev; 1422760bc48eSAndrew Thompson struct usb_device *adev; 1423760bc48eSAndrew Thompson struct usb_device *hub; 142402ac6454SAndrew Thompson uint8_t *scratch_ptr; 142502ac6454SAndrew Thompson uint32_t scratch_size; 1426e0a69b51SAndrew Thompson usb_error_t err; 142702ac6454SAndrew Thompson uint8_t device_index; 142802ac6454SAndrew Thompson 142902ac6454SAndrew Thompson DPRINTF("parent_dev=%p, bus=%p, parent_hub=%p, depth=%u, " 1430f29a0724SAndrew Thompson "port_index=%u, port_no=%u, speed=%u, usb_mode=%u\n", 143102ac6454SAndrew Thompson parent_dev, bus, parent_hub, depth, port_index, port_no, 1432f29a0724SAndrew Thompson speed, mode); 143302ac6454SAndrew Thompson 143402ac6454SAndrew Thompson /* 143502ac6454SAndrew Thompson * Find an unused device index. In USB Host mode this is the 143602ac6454SAndrew Thompson * same as the device address. 143702ac6454SAndrew Thompson * 143802ac6454SAndrew Thompson * Device index zero is not used and device index 1 should 143902ac6454SAndrew Thompson * always be the root hub. 144002ac6454SAndrew Thompson */ 144102ac6454SAndrew Thompson for (device_index = USB_ROOT_HUB_ADDR; 144202ac6454SAndrew Thompson (device_index != bus->devices_max) && 144302ac6454SAndrew Thompson (bus->devices[device_index] != NULL); 144402ac6454SAndrew Thompson device_index++) /* nop */; 144502ac6454SAndrew Thompson 144602ac6454SAndrew Thompson if (device_index == bus->devices_max) { 144702ac6454SAndrew Thompson device_printf(bus->bdev, 144802ac6454SAndrew Thompson "No free USB device index for new device!\n"); 144902ac6454SAndrew Thompson return (NULL); 145002ac6454SAndrew Thompson } 145102ac6454SAndrew Thompson 145202ac6454SAndrew Thompson if (depth > 0x10) { 145302ac6454SAndrew Thompson device_printf(bus->bdev, 145402ac6454SAndrew Thompson "Invalid device depth!\n"); 145502ac6454SAndrew Thompson return (NULL); 145602ac6454SAndrew Thompson } 145702ac6454SAndrew Thompson udev = malloc(sizeof(*udev), M_USB, M_WAITOK | M_ZERO); 145802ac6454SAndrew Thompson if (udev == NULL) { 145902ac6454SAndrew Thompson return (NULL); 146002ac6454SAndrew Thompson } 146102ac6454SAndrew Thompson /* initialise our SX-lock */ 146202ac6454SAndrew Thompson sx_init(udev->default_sx, "0123456789ABCDEF - USB device SX lock" + depth); 146302ac6454SAndrew Thompson 146402ac6454SAndrew Thompson /* initialise our SX-lock */ 146502ac6454SAndrew Thompson sx_init(udev->default_sx + 1, "0123456789ABCDEF - USB config SX lock" + depth); 146602ac6454SAndrew Thompson 146702ac6454SAndrew Thompson usb2_cv_init(udev->default_cv, "WCTRL"); 146802ac6454SAndrew Thompson usb2_cv_init(udev->default_cv + 1, "UGONE"); 146902ac6454SAndrew Thompson 147002ac6454SAndrew Thompson /* initialise our mutex */ 147102ac6454SAndrew Thompson mtx_init(udev->default_mtx, "USB device mutex", NULL, MTX_DEF); 147202ac6454SAndrew Thompson 147302ac6454SAndrew Thompson /* initialise generic clear stall */ 147402ac6454SAndrew Thompson udev->cs_msg[0].hdr.pm_callback = &usb2_clear_stall_proc; 147502ac6454SAndrew Thompson udev->cs_msg[0].udev = udev; 147602ac6454SAndrew Thompson udev->cs_msg[1].hdr.pm_callback = &usb2_clear_stall_proc; 147702ac6454SAndrew Thompson udev->cs_msg[1].udev = udev; 147802ac6454SAndrew Thompson 147902ac6454SAndrew Thompson /* initialise some USB device fields */ 148002ac6454SAndrew Thompson udev->parent_hub = parent_hub; 148102ac6454SAndrew Thompson udev->parent_dev = parent_dev; 148202ac6454SAndrew Thompson udev->port_index = port_index; 148302ac6454SAndrew Thompson udev->port_no = port_no; 148402ac6454SAndrew Thompson udev->depth = depth; 148502ac6454SAndrew Thompson udev->bus = bus; 148602ac6454SAndrew Thompson udev->address = USB_START_ADDR; /* default value */ 1487e0a69b51SAndrew Thompson udev->plugtime = (usb_ticks_t)ticks; 1488bd216778SAndrew Thompson usb2_set_device_state(udev, USB_STATE_POWERED); 148902ac6454SAndrew Thompson /* 149002ac6454SAndrew Thompson * We need to force the power mode to "on" because there are plenty 149102ac6454SAndrew Thompson * of USB devices out there that do not work very well with 149202ac6454SAndrew Thompson * automatic suspend and resume! 149302ac6454SAndrew Thompson */ 149402ac6454SAndrew Thompson udev->power_mode = USB_POWER_MODE_ON; 149502ac6454SAndrew Thompson udev->pwr_save.last_xfer_time = ticks; 149602ac6454SAndrew Thompson /* we are not ready yet */ 149702ac6454SAndrew Thompson udev->refcount = 1; 149802ac6454SAndrew Thompson 149902ac6454SAndrew Thompson /* set up default endpoint descriptor */ 150002ac6454SAndrew Thompson udev->default_ep_desc.bLength = sizeof(udev->default_ep_desc); 150102ac6454SAndrew Thompson udev->default_ep_desc.bDescriptorType = UDESC_ENDPOINT; 150202ac6454SAndrew Thompson udev->default_ep_desc.bEndpointAddress = USB_CONTROL_ENDPOINT; 150302ac6454SAndrew Thompson udev->default_ep_desc.bmAttributes = UE_CONTROL; 150402ac6454SAndrew Thompson udev->default_ep_desc.wMaxPacketSize[0] = USB_MAX_IPACKET; 150502ac6454SAndrew Thompson udev->default_ep_desc.wMaxPacketSize[1] = 0; 150602ac6454SAndrew Thompson udev->default_ep_desc.bInterval = 0; 150702ac6454SAndrew Thompson udev->ddesc.bMaxPacketSize = USB_MAX_IPACKET; 150802ac6454SAndrew Thompson 150902ac6454SAndrew Thompson udev->speed = speed; 1510f29a0724SAndrew Thompson udev->flags.usb_mode = mode; 151102ac6454SAndrew Thompson 151202ac6454SAndrew Thompson /* search for our High Speed USB HUB, if any */ 151302ac6454SAndrew Thompson 151402ac6454SAndrew Thompson adev = udev; 151502ac6454SAndrew Thompson hub = udev->parent_hub; 151602ac6454SAndrew Thompson 151702ac6454SAndrew Thompson while (hub) { 151802ac6454SAndrew Thompson if (hub->speed == USB_SPEED_HIGH) { 151902ac6454SAndrew Thompson udev->hs_hub_addr = hub->address; 1520495f25ceSAndrew Thompson udev->parent_hs_hub = hub; 152102ac6454SAndrew Thompson udev->hs_port_no = adev->port_no; 152202ac6454SAndrew Thompson break; 152302ac6454SAndrew Thompson } 152402ac6454SAndrew Thompson adev = hub; 152502ac6454SAndrew Thompson hub = hub->parent_hub; 152602ac6454SAndrew Thompson } 152702ac6454SAndrew Thompson 152802ac6454SAndrew Thompson /* init the default pipe */ 1529bdd41206SAndrew Thompson usb2_init_pipe(udev, 0, 153002ac6454SAndrew Thompson &udev->default_ep_desc, 153102ac6454SAndrew Thompson &udev->default_pipe); 153202ac6454SAndrew Thompson 153302ac6454SAndrew Thompson /* set device index */ 153402ac6454SAndrew Thompson udev->device_index = device_index; 153502ac6454SAndrew Thompson 15368755859aSAndrew Thompson #if USB_HAVE_UGEN 15370f6e8f93SAndrew Thompson /* Create ugen name */ 1538ee3e3ff5SAndrew Thompson snprintf(udev->ugen_name, sizeof(udev->ugen_name), 1539ee3e3ff5SAndrew Thompson USB_GENERIC_NAME "%u.%u", device_get_unit(bus->bdev), 1540ee3e3ff5SAndrew Thompson device_index); 15418755859aSAndrew Thompson LIST_INIT(&udev->pd_list); 15428755859aSAndrew Thompson 15430f6e8f93SAndrew Thompson /* Create the control endpoint device */ 15440f6e8f93SAndrew Thompson udev->default_dev = usb2_make_dev(udev, 0, FREAD|FWRITE); 15450f6e8f93SAndrew Thompson 15460f6e8f93SAndrew Thompson /* Create a link from /dev/ugenX.X to the default endpoint */ 1547ee3e3ff5SAndrew Thompson make_dev_alias(udev->default_dev, udev->ugen_name); 15480f6e8f93SAndrew Thompson #endif 1549f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_HOST) { 155002ac6454SAndrew Thompson 1551e2805033SAndrew Thompson err = usb2_req_set_address(udev, NULL, device_index); 155202ac6454SAndrew Thompson 155302ac6454SAndrew Thompson /* This is the new USB device address from now on */ 155402ac6454SAndrew Thompson 155502ac6454SAndrew Thompson udev->address = device_index; 155602ac6454SAndrew Thompson 155702ac6454SAndrew Thompson /* 155802ac6454SAndrew Thompson * We ignore any set-address errors, hence there are 155902ac6454SAndrew Thompson * buggy USB devices out there that actually receive 156002ac6454SAndrew Thompson * the SETUP PID, but manage to set the address before 156102ac6454SAndrew Thompson * the STATUS stage is ACK'ed. If the device responds 156202ac6454SAndrew Thompson * to the subsequent get-descriptor at the new 156302ac6454SAndrew Thompson * address, then we know that the set-address command 156402ac6454SAndrew Thompson * was successful. 156502ac6454SAndrew Thompson */ 156602ac6454SAndrew Thompson if (err) { 156702ac6454SAndrew Thompson DPRINTFN(0, "set address %d failed " 156803797f33SAndrew Thompson "(%s, ignored)\n", udev->address, 156903797f33SAndrew Thompson usb2_errstr(err)); 157002ac6454SAndrew Thompson } 157102ac6454SAndrew Thompson /* allow device time to set new address */ 1572e2805033SAndrew Thompson usb2_pause_mtx(NULL, 157302ac6454SAndrew Thompson USB_MS_TO_TICKS(USB_SET_ADDRESS_SETTLE)); 157402ac6454SAndrew Thompson } else { 157502ac6454SAndrew Thompson /* We are not self powered */ 157602ac6454SAndrew Thompson udev->flags.self_powered = 0; 157702ac6454SAndrew Thompson 157802ac6454SAndrew Thompson /* Set unconfigured state */ 157902ac6454SAndrew Thompson udev->curr_config_no = USB_UNCONFIG_NO; 158002ac6454SAndrew Thompson udev->curr_config_index = USB_UNCONFIG_INDEX; 158102ac6454SAndrew Thompson 158202ac6454SAndrew Thompson /* Setup USB descriptors */ 158302ac6454SAndrew Thompson err = (usb2_temp_setup_by_index_p) (udev, usb2_template); 158402ac6454SAndrew Thompson if (err) { 158502ac6454SAndrew Thompson DPRINTFN(0, "setting up USB template failed maybe the USB " 158602ac6454SAndrew Thompson "template module has not been loaded\n"); 158702ac6454SAndrew Thompson goto done; 158802ac6454SAndrew Thompson } 158902ac6454SAndrew Thompson } 1590bd216778SAndrew Thompson usb2_set_device_state(udev, USB_STATE_ADDRESSED); 159102ac6454SAndrew Thompson 159202ac6454SAndrew Thompson /* 159302ac6454SAndrew Thompson * Get the first 8 bytes of the device descriptor ! 159402ac6454SAndrew Thompson * 159502ac6454SAndrew Thompson * NOTE: "usb2_do_request" will check the device descriptor 159602ac6454SAndrew Thompson * next time we do a request to see if the maximum packet size 159702ac6454SAndrew Thompson * changed! The 8 first bytes of the device descriptor 159802ac6454SAndrew Thompson * contains the maximum packet size to use on control endpoint 159902ac6454SAndrew Thompson * 0. If this value is different from "USB_MAX_IPACKET" a new 160002ac6454SAndrew Thompson * USB control request will be setup! 160102ac6454SAndrew Thompson */ 1602e2805033SAndrew Thompson err = usb2_req_get_desc(udev, NULL, NULL, &udev->ddesc, 160302ac6454SAndrew Thompson USB_MAX_IPACKET, USB_MAX_IPACKET, 0, UDESC_DEVICE, 0, 0); 160402ac6454SAndrew Thompson if (err) { 160502ac6454SAndrew Thompson DPRINTFN(0, "getting device descriptor " 160603797f33SAndrew Thompson "at addr %d failed, %s!\n", udev->address, 160703797f33SAndrew Thompson usb2_errstr(err)); 160802ac6454SAndrew Thompson /* XXX try to re-enumerate the device */ 1609e2805033SAndrew Thompson err = usb2_req_re_enumerate(udev, NULL); 161002ac6454SAndrew Thompson if (err) { 161102ac6454SAndrew Thompson goto done; 161202ac6454SAndrew Thompson } 161302ac6454SAndrew Thompson } 161402ac6454SAndrew Thompson DPRINTF("adding unit addr=%d, rev=%02x, class=%d, " 161502ac6454SAndrew Thompson "subclass=%d, protocol=%d, maxpacket=%d, len=%d, speed=%d\n", 161602ac6454SAndrew Thompson udev->address, UGETW(udev->ddesc.bcdUSB), 161702ac6454SAndrew Thompson udev->ddesc.bDeviceClass, 161802ac6454SAndrew Thompson udev->ddesc.bDeviceSubClass, 161902ac6454SAndrew Thompson udev->ddesc.bDeviceProtocol, 162002ac6454SAndrew Thompson udev->ddesc.bMaxPacketSize, 162102ac6454SAndrew Thompson udev->ddesc.bLength, 162202ac6454SAndrew Thompson udev->speed); 162302ac6454SAndrew Thompson 162402ac6454SAndrew Thompson /* get the full device descriptor */ 1625e2805033SAndrew Thompson err = usb2_req_get_device_desc(udev, NULL, &udev->ddesc); 162602ac6454SAndrew Thompson if (err) { 162702ac6454SAndrew Thompson DPRINTF("addr=%d, getting full desc failed\n", 162802ac6454SAndrew Thompson udev->address); 162902ac6454SAndrew Thompson goto done; 163002ac6454SAndrew Thompson } 163102ac6454SAndrew Thompson /* 163202ac6454SAndrew Thompson * Setup temporary USB attach args so that we can figure out some 163302ac6454SAndrew Thompson * basic quirks for this device. 163402ac6454SAndrew Thompson */ 163502ac6454SAndrew Thompson usb2_init_attach_arg(udev, &uaa); 163602ac6454SAndrew Thompson 163702ac6454SAndrew Thompson if (usb2_test_quirk(&uaa, UQ_BUS_POWERED)) { 163802ac6454SAndrew Thompson udev->flags.uq_bus_powered = 1; 163902ac6454SAndrew Thompson } 164002ac6454SAndrew Thompson if (usb2_test_quirk(&uaa, UQ_NO_STRINGS)) { 164102ac6454SAndrew Thompson udev->flags.no_strings = 1; 164202ac6454SAndrew Thompson } 164302ac6454SAndrew Thompson /* 164402ac6454SAndrew Thompson * Workaround for buggy USB devices. 164502ac6454SAndrew Thompson * 164602ac6454SAndrew Thompson * It appears that some string-less USB chips will crash and 164702ac6454SAndrew Thompson * disappear if any attempts are made to read any string 164802ac6454SAndrew Thompson * descriptors. 164902ac6454SAndrew Thompson * 165002ac6454SAndrew Thompson * Try to detect such chips by checking the strings in the USB 165102ac6454SAndrew Thompson * device descriptor. If no strings are present there we 165202ac6454SAndrew Thompson * simply disable all USB strings. 165302ac6454SAndrew Thompson */ 165402ac6454SAndrew Thompson scratch_ptr = udev->bus->scratch[0].data; 165502ac6454SAndrew Thompson scratch_size = sizeof(udev->bus->scratch[0].data); 165602ac6454SAndrew Thompson 165702ac6454SAndrew Thompson if (udev->ddesc.iManufacturer || 165802ac6454SAndrew Thompson udev->ddesc.iProduct || 165902ac6454SAndrew Thompson udev->ddesc.iSerialNumber) { 166002ac6454SAndrew Thompson /* read out the language ID string */ 1661e2805033SAndrew Thompson err = usb2_req_get_string_desc(udev, NULL, 166202ac6454SAndrew Thompson (char *)scratch_ptr, 4, scratch_size, 166302ac6454SAndrew Thompson USB_LANGUAGE_TABLE); 166402ac6454SAndrew Thompson } else { 166502ac6454SAndrew Thompson err = USB_ERR_INVAL; 166602ac6454SAndrew Thompson } 166702ac6454SAndrew Thompson 166802ac6454SAndrew Thompson if (err || (scratch_ptr[0] < 4)) { 166902ac6454SAndrew Thompson udev->flags.no_strings = 1; 167002ac6454SAndrew Thompson } else { 167102ac6454SAndrew Thompson /* pick the first language as the default */ 167202ac6454SAndrew Thompson udev->langid = UGETW(scratch_ptr + 2); 167302ac6454SAndrew Thompson } 167402ac6454SAndrew Thompson 167502ac6454SAndrew Thompson /* assume 100mA bus powered for now. Changed when configured. */ 167602ac6454SAndrew Thompson udev->power = USB_MIN_POWER; 1677c86aead6SAndrew Thompson /* fetch the vendor and product strings from the device */ 1678c86aead6SAndrew Thompson usb2_set_device_strings(udev); 167902ac6454SAndrew Thompson 1680f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_HOST) { 168102ac6454SAndrew Thompson uint8_t config_index; 168202ac6454SAndrew Thompson uint8_t config_quirk; 168302ac6454SAndrew Thompson uint8_t set_config_failed = 0; 168402ac6454SAndrew Thompson 168502ac6454SAndrew Thompson /* 168602ac6454SAndrew Thompson * Most USB devices should attach to config index 0 by 168702ac6454SAndrew Thompson * default 168802ac6454SAndrew Thompson */ 168902ac6454SAndrew Thompson if (usb2_test_quirk(&uaa, UQ_CFG_INDEX_0)) { 169002ac6454SAndrew Thompson config_index = 0; 169102ac6454SAndrew Thompson config_quirk = 1; 169202ac6454SAndrew Thompson } else if (usb2_test_quirk(&uaa, UQ_CFG_INDEX_1)) { 169302ac6454SAndrew Thompson config_index = 1; 169402ac6454SAndrew Thompson config_quirk = 1; 169502ac6454SAndrew Thompson } else if (usb2_test_quirk(&uaa, UQ_CFG_INDEX_2)) { 169602ac6454SAndrew Thompson config_index = 2; 169702ac6454SAndrew Thompson config_quirk = 1; 169802ac6454SAndrew Thompson } else if (usb2_test_quirk(&uaa, UQ_CFG_INDEX_3)) { 169902ac6454SAndrew Thompson config_index = 3; 170002ac6454SAndrew Thompson config_quirk = 1; 170102ac6454SAndrew Thompson } else if (usb2_test_quirk(&uaa, UQ_CFG_INDEX_4)) { 170202ac6454SAndrew Thompson config_index = 4; 170302ac6454SAndrew Thompson config_quirk = 1; 170402ac6454SAndrew Thompson } else { 170502ac6454SAndrew Thompson config_index = 0; 170602ac6454SAndrew Thompson config_quirk = 0; 170702ac6454SAndrew Thompson } 170802ac6454SAndrew Thompson 170902ac6454SAndrew Thompson repeat_set_config: 171002ac6454SAndrew Thompson 171102ac6454SAndrew Thompson DPRINTF("setting config %u\n", config_index); 171202ac6454SAndrew Thompson 171302ac6454SAndrew Thompson /* get the USB device configured */ 171402ac6454SAndrew Thompson err = usb2_set_config_index(udev, config_index); 171502ac6454SAndrew Thompson if (err) { 171602ac6454SAndrew Thompson if (udev->ddesc.bNumConfigurations != 0) { 171702ac6454SAndrew Thompson if (!set_config_failed) { 171802ac6454SAndrew Thompson set_config_failed = 1; 171902ac6454SAndrew Thompson /* XXX try to re-enumerate the device */ 172002ac6454SAndrew Thompson err = usb2_req_re_enumerate( 1721e2805033SAndrew Thompson udev, NULL); 172202ac6454SAndrew Thompson if (err == 0) 172302ac6454SAndrew Thompson goto repeat_set_config; 172402ac6454SAndrew Thompson } 172502ac6454SAndrew Thompson DPRINTFN(0, "Failure selecting " 172602ac6454SAndrew Thompson "configuration index %u: %s, port %u, " 172702ac6454SAndrew Thompson "addr %u (ignored)\n", 172802ac6454SAndrew Thompson config_index, usb2_errstr(err), udev->port_no, 172902ac6454SAndrew Thompson udev->address); 173002ac6454SAndrew Thompson } 173102ac6454SAndrew Thompson /* 173202ac6454SAndrew Thompson * Some USB devices do not have any 173302ac6454SAndrew Thompson * configurations. Ignore any set config 173402ac6454SAndrew Thompson * failures! 173502ac6454SAndrew Thompson */ 173602ac6454SAndrew Thompson err = 0; 173702ac6454SAndrew Thompson } else if (config_quirk) { 173802ac6454SAndrew Thompson /* user quirk selects configuration index */ 173902ac6454SAndrew Thompson } else if ((config_index + 1) < udev->ddesc.bNumConfigurations) { 174002ac6454SAndrew Thompson 174102ac6454SAndrew Thompson if ((udev->cdesc->bNumInterface < 2) && 1742bdd41206SAndrew Thompson (usb2_get_no_descriptors(udev->cdesc, 1743bdd41206SAndrew Thompson UDESC_ENDPOINT) == 0)) { 174402ac6454SAndrew Thompson DPRINTFN(0, "Found no endpoints " 174502ac6454SAndrew Thompson "(trying next config)!\n"); 174602ac6454SAndrew Thompson config_index++; 174702ac6454SAndrew Thompson goto repeat_set_config; 174802ac6454SAndrew Thompson } 174902ac6454SAndrew Thompson if (config_index == 0) { 175002ac6454SAndrew Thompson /* 175102ac6454SAndrew Thompson * Try to figure out if we have an 175202ac6454SAndrew Thompson * auto-install disk there: 175302ac6454SAndrew Thompson */ 175402ac6454SAndrew Thompson if (usb2_test_autoinstall(udev, 0, 0) == 0) { 175502ac6454SAndrew Thompson DPRINTFN(0, "Found possible auto-install " 175602ac6454SAndrew Thompson "disk (trying next config)\n"); 175702ac6454SAndrew Thompson config_index++; 175802ac6454SAndrew Thompson goto repeat_set_config; 175902ac6454SAndrew Thompson } 176002ac6454SAndrew Thompson } 176102ac6454SAndrew Thompson } else if (usb2_test_huawei_autoinst_p(udev, &uaa) == 0) { 176202ac6454SAndrew Thompson DPRINTFN(0, "Found Huawei auto-install disk!\n"); 176302ac6454SAndrew Thompson err = USB_ERR_STALLED; /* fake an error */ 176402ac6454SAndrew Thompson } 176502ac6454SAndrew Thompson } else { 176602ac6454SAndrew Thompson err = 0; /* set success */ 176702ac6454SAndrew Thompson } 176802ac6454SAndrew Thompson 176902ac6454SAndrew Thompson DPRINTF("new dev (addr %d), udev=%p, parent_hub=%p\n", 177002ac6454SAndrew Thompson udev->address, udev, udev->parent_hub); 177102ac6454SAndrew Thompson 177202ac6454SAndrew Thompson /* register our device - we are ready */ 177302ac6454SAndrew Thompson usb2_bus_port_set_device(bus, parent_hub ? 177402ac6454SAndrew Thompson parent_hub->hub->ports + port_index : NULL, udev, device_index); 177502ac6454SAndrew Thompson 17760f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 17778755859aSAndrew Thompson /* Symlink the ugen device name */ 1778ee3e3ff5SAndrew Thompson udev->ugen_symlink = usb2_alloc_symlink(udev->ugen_name); 17798755859aSAndrew Thompson 17808755859aSAndrew Thompson /* Announce device */ 1781ee3e3ff5SAndrew Thompson printf("%s: <%s> at %s\n", udev->ugen_name, udev->manufacturer, 178202ac6454SAndrew Thompson device_get_nameunit(udev->bus->bdev)); 17837efaaa9aSAndrew Thompson 178402ac6454SAndrew Thompson usb2_notify_addq("+", udev); 17858755859aSAndrew Thompson #endif 178602ac6454SAndrew Thompson done: 178702ac6454SAndrew Thompson if (err) { 178802ac6454SAndrew Thompson /* free device */ 1789bdd41206SAndrew Thompson usb2_free_device(udev, 1790bdd41206SAndrew Thompson USB_UNCFG_FLAG_FREE_SUBDEV | 1791bdd41206SAndrew Thompson USB_UNCFG_FLAG_FREE_EP0); 179202ac6454SAndrew Thompson udev = NULL; 179302ac6454SAndrew Thompson } 179402ac6454SAndrew Thompson return (udev); 179502ac6454SAndrew Thompson } 179602ac6454SAndrew Thompson 17970f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 1798ee3e3ff5SAndrew Thompson static struct cdev * 1799760bc48eSAndrew Thompson usb2_make_dev(struct usb_device *udev, int ep, int mode) 1800ee3e3ff5SAndrew Thompson { 1801760bc48eSAndrew Thompson struct usb_fs_privdata* pd; 1802ee3e3ff5SAndrew Thompson char devname[20]; 1803ee3e3ff5SAndrew Thompson 1804ee3e3ff5SAndrew Thompson /* Store information to locate ourselves again later */ 1805760bc48eSAndrew Thompson pd = malloc(sizeof(struct usb_fs_privdata), M_USBDEV, 1806ee3e3ff5SAndrew Thompson M_WAITOK | M_ZERO); 1807ee3e3ff5SAndrew Thompson pd->bus_index = device_get_unit(udev->bus->bdev); 1808ee3e3ff5SAndrew Thompson pd->dev_index = udev->device_index; 1809ee3e3ff5SAndrew Thompson pd->ep_addr = ep; 1810ee3e3ff5SAndrew Thompson pd->mode = mode; 1811ee3e3ff5SAndrew Thompson 1812ee3e3ff5SAndrew Thompson /* Now, create the device itself */ 1813f5f145baSAndrew Thompson snprintf(devname, sizeof(devname), "%u.%u.%u", 1814f35aaff0SAndrew Thompson pd->bus_index, pd->dev_index, pd->ep_addr); 1815ee3e3ff5SAndrew Thompson pd->cdev = make_dev(&usb2_devsw, 0, UID_ROOT, 1816ee3e3ff5SAndrew Thompson GID_OPERATOR, 0600, USB_DEVICE_DIR "/%s", devname); 1817ee3e3ff5SAndrew Thompson pd->cdev->si_drv1 = pd; 1818ee3e3ff5SAndrew Thompson 1819ee3e3ff5SAndrew Thompson return (pd->cdev); 1820ee3e3ff5SAndrew Thompson } 1821ee3e3ff5SAndrew Thompson 1822ee3e3ff5SAndrew Thompson static void 1823760bc48eSAndrew Thompson usb2_cdev_create(struct usb_device *udev) 1824ee3e3ff5SAndrew Thompson { 1825760bc48eSAndrew Thompson struct usb_config_descriptor *cd; 1826760bc48eSAndrew Thompson struct usb_endpoint_descriptor *ed; 1827760bc48eSAndrew Thompson struct usb_descriptor *desc; 1828760bc48eSAndrew Thompson struct usb_fs_privdata* pd; 1829ee3e3ff5SAndrew Thompson struct cdev *dev; 1830f5f145baSAndrew Thompson int inmode, outmode, inmask, outmask, mode; 1831f5f145baSAndrew Thompson uint8_t ep; 1832ee3e3ff5SAndrew Thompson 1833ee3e3ff5SAndrew Thompson KASSERT(LIST_FIRST(&udev->pd_list) == NULL, ("stale cdev entries")); 1834ee3e3ff5SAndrew Thompson 1835ee3e3ff5SAndrew Thompson DPRINTFN(2, "Creating device nodes\n"); 1836ee3e3ff5SAndrew Thompson 1837ee3e3ff5SAndrew Thompson if (usb2_get_mode(udev) == USB_MODE_DEVICE) { 1838ee3e3ff5SAndrew Thompson inmode = FWRITE; 1839ee3e3ff5SAndrew Thompson outmode = FREAD; 1840ee3e3ff5SAndrew Thompson } else { /* USB_MODE_HOST */ 1841ee3e3ff5SAndrew Thompson inmode = FREAD; 1842ee3e3ff5SAndrew Thompson outmode = FWRITE; 1843ee3e3ff5SAndrew Thompson } 1844ee3e3ff5SAndrew Thompson 1845f5f145baSAndrew Thompson inmask = 0; 1846f5f145baSAndrew Thompson outmask = 0; 1847f5f145baSAndrew Thompson desc = NULL; 1848f5f145baSAndrew Thompson 1849f5f145baSAndrew Thompson /* 1850f5f145baSAndrew Thompson * Collect all used endpoint numbers instead of just 1851f5f145baSAndrew Thompson * generating 16 static endpoints. 1852f5f145baSAndrew Thompson */ 1853f35aaff0SAndrew Thompson cd = usb2_get_config_descriptor(udev); 1854f5f145baSAndrew Thompson while ((desc = usb2_desc_foreach(cd, desc))) { 1855f5f145baSAndrew Thompson /* filter out all endpoint descriptors */ 1856f5f145baSAndrew Thompson if ((desc->bDescriptorType == UDESC_ENDPOINT) && 1857f5f145baSAndrew Thompson (desc->bLength >= sizeof(*ed))) { 1858760bc48eSAndrew Thompson ed = (struct usb_endpoint_descriptor *)desc; 1859f5f145baSAndrew Thompson 1860f5f145baSAndrew Thompson /* update masks */ 1861f5f145baSAndrew Thompson ep = ed->bEndpointAddress; 1862f5f145baSAndrew Thompson if (UE_GET_DIR(ep) == UE_DIR_OUT) 1863f5f145baSAndrew Thompson outmask |= 1 << UE_GET_ADDR(ep); 1864f5f145baSAndrew Thompson else 1865f5f145baSAndrew Thompson inmask |= 1 << UE_GET_ADDR(ep); 1866f5f145baSAndrew Thompson } 1867f5f145baSAndrew Thompson } 1868ee3e3ff5SAndrew Thompson 1869ee3e3ff5SAndrew Thompson /* Create all available endpoints except EP0 */ 1870ee3e3ff5SAndrew Thompson for (ep = 1; ep < 16; ep++) { 1871f5f145baSAndrew Thompson mode = inmask & (1 << ep) ? inmode : 0; 1872f5f145baSAndrew Thompson mode |= outmask & (1 << ep) ? outmode : 0; 1873ee3e3ff5SAndrew Thompson if (mode == 0) 1874ee3e3ff5SAndrew Thompson continue; /* no IN or OUT endpoint */ 1875ee3e3ff5SAndrew Thompson 1876f5f145baSAndrew Thompson dev = usb2_make_dev(udev, ep, mode); 1877ee3e3ff5SAndrew Thompson pd = dev->si_drv1; 1878ee3e3ff5SAndrew Thompson LIST_INSERT_HEAD(&udev->pd_list, pd, pd_next); 1879ee3e3ff5SAndrew Thompson } 1880ee3e3ff5SAndrew Thompson } 1881ee3e3ff5SAndrew Thompson 1882ee3e3ff5SAndrew Thompson static void 1883760bc48eSAndrew Thompson usb2_cdev_free(struct usb_device *udev) 1884ee3e3ff5SAndrew Thompson { 1885760bc48eSAndrew Thompson struct usb_fs_privdata* pd; 1886ee3e3ff5SAndrew Thompson 1887ee3e3ff5SAndrew Thompson DPRINTFN(2, "Freeing device nodes\n"); 1888ee3e3ff5SAndrew Thompson 1889ee3e3ff5SAndrew Thompson while ((pd = LIST_FIRST(&udev->pd_list)) != NULL) { 1890ee3e3ff5SAndrew Thompson KASSERT(pd->cdev->si_drv1 == pd, ("privdata corrupt")); 1891ee3e3ff5SAndrew Thompson 1892ee3e3ff5SAndrew Thompson destroy_dev_sched_cb(pd->cdev, usb2_cdev_cleanup, pd); 1893ee3e3ff5SAndrew Thompson pd->cdev = NULL; 1894ee3e3ff5SAndrew Thompson LIST_REMOVE(pd, pd_next); 1895ee3e3ff5SAndrew Thompson } 1896ee3e3ff5SAndrew Thompson } 1897ee3e3ff5SAndrew Thompson 1898ee3e3ff5SAndrew Thompson static void 1899ee3e3ff5SAndrew Thompson usb2_cdev_cleanup(void* arg) 1900ee3e3ff5SAndrew Thompson { 1901ee3e3ff5SAndrew Thompson free(arg, M_USBDEV); 1902ee3e3ff5SAndrew Thompson } 19030f6e8f93SAndrew Thompson #endif 1904ee3e3ff5SAndrew Thompson 190502ac6454SAndrew Thompson /*------------------------------------------------------------------------* 190602ac6454SAndrew Thompson * usb2_free_device 190702ac6454SAndrew Thompson * 190802ac6454SAndrew Thompson * This function is NULL safe and will free an USB device. 1909bdd41206SAndrew Thompson * 1910bdd41206SAndrew Thompson * Flag values, see "USB_UNCFG_FLAG_XXX". 191102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 191202ac6454SAndrew Thompson void 1913760bc48eSAndrew Thompson usb2_free_device(struct usb_device *udev, uint8_t flag) 191402ac6454SAndrew Thompson { 1915760bc48eSAndrew Thompson struct usb_bus *bus; 1916bdd41206SAndrew Thompson 1917bdd41206SAndrew Thompson if (udev == NULL) 1918bdd41206SAndrew Thompson return; /* already freed */ 191902ac6454SAndrew Thompson 192002ac6454SAndrew Thompson DPRINTFN(4, "udev=%p port=%d\n", udev, udev->port_no); 192102ac6454SAndrew Thompson 1922bd216778SAndrew Thompson bus = udev->bus; 1923bd216778SAndrew Thompson usb2_set_device_state(udev, USB_STATE_DETACHED); 1924bdd41206SAndrew Thompson 19258755859aSAndrew Thompson #if USB_HAVE_UGEN 192602ac6454SAndrew Thompson usb2_notify_addq("-", udev); 192702ac6454SAndrew Thompson 1928ee3e3ff5SAndrew Thompson printf("%s: <%s> at %s (disconnected)\n", udev->ugen_name, 1929ee3e3ff5SAndrew Thompson udev->manufacturer, device_get_nameunit(bus->bdev)); 193002ac6454SAndrew Thompson 1931ee3e3ff5SAndrew Thompson /* Destroy UGEN symlink, if any */ 193202ac6454SAndrew Thompson if (udev->ugen_symlink) { 193302ac6454SAndrew Thompson usb2_free_symlink(udev->ugen_symlink); 193402ac6454SAndrew Thompson udev->ugen_symlink = NULL; 193502ac6454SAndrew Thompson } 19368755859aSAndrew Thompson #endif 193702ac6454SAndrew Thompson /* 193802ac6454SAndrew Thompson * Unregister our device first which will prevent any further 193902ac6454SAndrew Thompson * references: 194002ac6454SAndrew Thompson */ 194102ac6454SAndrew Thompson usb2_bus_port_set_device(bus, udev->parent_hub ? 194202ac6454SAndrew Thompson udev->parent_hub->hub->ports + udev->port_index : NULL, 194302ac6454SAndrew Thompson NULL, USB_ROOT_HUB_ADDR); 194402ac6454SAndrew Thompson 19450f6e8f93SAndrew Thompson #if USB_HAVE_UGEN 194602ac6454SAndrew Thompson /* wait for all pending references to go away: */ 194702ac6454SAndrew Thompson mtx_lock(&usb2_ref_lock); 194802ac6454SAndrew Thompson udev->refcount--; 194902ac6454SAndrew Thompson while (udev->refcount != 0) { 195002ac6454SAndrew Thompson usb2_cv_wait(udev->default_cv + 1, &usb2_ref_lock); 195102ac6454SAndrew Thompson } 195202ac6454SAndrew Thompson mtx_unlock(&usb2_ref_lock); 1953bdd41206SAndrew Thompson 1954bdd41206SAndrew Thompson destroy_dev_sched_cb(udev->default_dev, usb2_cdev_cleanup, 1955bdd41206SAndrew Thompson udev->default_dev->si_drv1); 19560f6e8f93SAndrew Thompson #endif 195702ac6454SAndrew Thompson 1958f29a0724SAndrew Thompson if (udev->flags.usb_mode == USB_MODE_DEVICE) { 195902ac6454SAndrew Thompson /* stop receiving any control transfers (Device Side Mode) */ 196002ac6454SAndrew Thompson usb2_transfer_unsetup(udev->default_xfer, USB_DEFAULT_XFER_MAX); 196102ac6454SAndrew Thompson } 196202ac6454SAndrew Thompson 1963bdd41206SAndrew Thompson /* the following will get the device unconfigured in software */ 1964bdd41206SAndrew Thompson usb2_unconfigure(udev, flag); 196502ac6454SAndrew Thompson 196602ac6454SAndrew Thompson /* unsetup any leftover default USB transfers */ 196702ac6454SAndrew Thompson usb2_transfer_unsetup(udev->default_xfer, USB_DEFAULT_XFER_MAX); 196802ac6454SAndrew Thompson 196902ac6454SAndrew Thompson /* template unsetup, if any */ 197002ac6454SAndrew Thompson (usb2_temp_unsetup_p) (udev); 197102ac6454SAndrew Thompson 197202ac6454SAndrew Thompson /* 197302ac6454SAndrew Thompson * Make sure that our clear-stall messages are not queued 197402ac6454SAndrew Thompson * anywhere: 197502ac6454SAndrew Thompson */ 197602ac6454SAndrew Thompson USB_BUS_LOCK(udev->bus); 197702ac6454SAndrew Thompson usb2_proc_mwait(&udev->bus->non_giant_callback_proc, 197802ac6454SAndrew Thompson &udev->cs_msg[0], &udev->cs_msg[1]); 197902ac6454SAndrew Thompson USB_BUS_UNLOCK(udev->bus); 198002ac6454SAndrew Thompson 198102ac6454SAndrew Thompson sx_destroy(udev->default_sx); 198202ac6454SAndrew Thompson sx_destroy(udev->default_sx + 1); 198302ac6454SAndrew Thompson 198402ac6454SAndrew Thompson usb2_cv_destroy(udev->default_cv); 198502ac6454SAndrew Thompson usb2_cv_destroy(udev->default_cv + 1); 198602ac6454SAndrew Thompson 198702ac6454SAndrew Thompson mtx_destroy(udev->default_mtx); 19888755859aSAndrew Thompson #if USB_HAVE_UGEN 1989ee3e3ff5SAndrew Thompson KASSERT(LIST_FIRST(&udev->pd_list) == NULL, ("leaked cdev entries")); 19908755859aSAndrew Thompson #endif 199102ac6454SAndrew Thompson 199202ac6454SAndrew Thompson /* free device */ 199328212de2SAndrew Thompson free(udev->serial, M_USB); 199428212de2SAndrew Thompson free(udev->manufacturer, M_USB); 199528212de2SAndrew Thompson free(udev->product, M_USB); 199602ac6454SAndrew Thompson free(udev, M_USB); 199702ac6454SAndrew Thompson } 199802ac6454SAndrew Thompson 199902ac6454SAndrew Thompson /*------------------------------------------------------------------------* 200002ac6454SAndrew Thompson * usb2_get_iface 200102ac6454SAndrew Thompson * 200202ac6454SAndrew Thompson * This function is the safe way to get the USB interface structure 200302ac6454SAndrew Thompson * pointer by interface index. 200402ac6454SAndrew Thompson * 200502ac6454SAndrew Thompson * Return values: 200602ac6454SAndrew Thompson * NULL: Interface not present. 200702ac6454SAndrew Thompson * Else: Pointer to USB interface structure. 200802ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 2009760bc48eSAndrew Thompson struct usb_interface * 2010760bc48eSAndrew Thompson usb2_get_iface(struct usb_device *udev, uint8_t iface_index) 201102ac6454SAndrew Thompson { 2012760bc48eSAndrew Thompson struct usb_interface *iface = udev->ifaces + iface_index; 201302ac6454SAndrew Thompson 2014bdd41206SAndrew Thompson if (iface_index >= udev->ifaces_max) 201502ac6454SAndrew Thompson return (NULL); 201602ac6454SAndrew Thompson return (iface); 201702ac6454SAndrew Thompson } 201802ac6454SAndrew Thompson 201902ac6454SAndrew Thompson /*------------------------------------------------------------------------* 202002ac6454SAndrew Thompson * usb2_find_descriptor 202102ac6454SAndrew Thompson * 202202ac6454SAndrew Thompson * This function will lookup the first descriptor that matches the 202302ac6454SAndrew Thompson * criteria given by the arguments "type" and "subtype". Descriptors 202402ac6454SAndrew Thompson * will only be searched within the interface having the index 202502ac6454SAndrew Thompson * "iface_index". If the "id" argument points to an USB descriptor, 202602ac6454SAndrew Thompson * it will be skipped before the search is started. This allows 202702ac6454SAndrew Thompson * searching for multiple descriptors using the same criteria. Else 202802ac6454SAndrew Thompson * the search is started after the interface descriptor. 202902ac6454SAndrew Thompson * 203002ac6454SAndrew Thompson * Return values: 203102ac6454SAndrew Thompson * NULL: End of descriptors 203202ac6454SAndrew Thompson * Else: A descriptor matching the criteria 203302ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 203402ac6454SAndrew Thompson void * 2035760bc48eSAndrew Thompson usb2_find_descriptor(struct usb_device *udev, void *id, uint8_t iface_index, 203602ac6454SAndrew Thompson uint8_t type, uint8_t type_mask, 203702ac6454SAndrew Thompson uint8_t subtype, uint8_t subtype_mask) 203802ac6454SAndrew Thompson { 2039760bc48eSAndrew Thompson struct usb_descriptor *desc; 2040760bc48eSAndrew Thompson struct usb_config_descriptor *cd; 2041760bc48eSAndrew Thompson struct usb_interface *iface; 204202ac6454SAndrew Thompson 204302ac6454SAndrew Thompson cd = usb2_get_config_descriptor(udev); 204402ac6454SAndrew Thompson if (cd == NULL) { 204502ac6454SAndrew Thompson return (NULL); 204602ac6454SAndrew Thompson } 204702ac6454SAndrew Thompson if (id == NULL) { 204802ac6454SAndrew Thompson iface = usb2_get_iface(udev, iface_index); 204902ac6454SAndrew Thompson if (iface == NULL) { 205002ac6454SAndrew Thompson return (NULL); 205102ac6454SAndrew Thompson } 205202ac6454SAndrew Thompson id = usb2_get_interface_descriptor(iface); 205302ac6454SAndrew Thompson if (id == NULL) { 205402ac6454SAndrew Thompson return (NULL); 205502ac6454SAndrew Thompson } 205602ac6454SAndrew Thompson } 205702ac6454SAndrew Thompson desc = (void *)id; 205802ac6454SAndrew Thompson 205902ac6454SAndrew Thompson while ((desc = usb2_desc_foreach(cd, desc))) { 206002ac6454SAndrew Thompson 206102ac6454SAndrew Thompson if (desc->bDescriptorType == UDESC_INTERFACE) { 206202ac6454SAndrew Thompson break; 206302ac6454SAndrew Thompson } 206402ac6454SAndrew Thompson if (((desc->bDescriptorType & type_mask) == type) && 206502ac6454SAndrew Thompson ((desc->bDescriptorSubtype & subtype_mask) == subtype)) { 206602ac6454SAndrew Thompson return (desc); 206702ac6454SAndrew Thompson } 206802ac6454SAndrew Thompson } 206902ac6454SAndrew Thompson return (NULL); 207002ac6454SAndrew Thompson } 207102ac6454SAndrew Thompson 207202ac6454SAndrew Thompson /*------------------------------------------------------------------------* 207302ac6454SAndrew Thompson * usb2_devinfo 207402ac6454SAndrew Thompson * 207502ac6454SAndrew Thompson * This function will dump information from the device descriptor 207602ac6454SAndrew Thompson * belonging to the USB device pointed to by "udev", to the string 207702ac6454SAndrew Thompson * pointed to by "dst_ptr" having a maximum length of "dst_len" bytes 207802ac6454SAndrew Thompson * including the terminating zero. 207902ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 208002ac6454SAndrew Thompson void 2081760bc48eSAndrew Thompson usb2_devinfo(struct usb_device *udev, char *dst_ptr, uint16_t dst_len) 208202ac6454SAndrew Thompson { 2083760bc48eSAndrew Thompson struct usb_device_descriptor *udd = &udev->ddesc; 208402ac6454SAndrew Thompson uint16_t bcdDevice; 208502ac6454SAndrew Thompson uint16_t bcdUSB; 208602ac6454SAndrew Thompson 208702ac6454SAndrew Thompson bcdUSB = UGETW(udd->bcdUSB); 208802ac6454SAndrew Thompson bcdDevice = UGETW(udd->bcdDevice); 208902ac6454SAndrew Thompson 209002ac6454SAndrew Thompson if (udd->bDeviceClass != 0xFF) { 209102ac6454SAndrew Thompson snprintf(dst_ptr, dst_len, "%s %s, class %d/%d, rev %x.%02x/" 20928755859aSAndrew Thompson "%x.%02x, addr %d", 20938755859aSAndrew Thompson udev->manufacturer, udev->product, 209402ac6454SAndrew Thompson udd->bDeviceClass, udd->bDeviceSubClass, 209502ac6454SAndrew Thompson (bcdUSB >> 8), bcdUSB & 0xFF, 209602ac6454SAndrew Thompson (bcdDevice >> 8), bcdDevice & 0xFF, 209702ac6454SAndrew Thompson udev->address); 209802ac6454SAndrew Thompson } else { 209902ac6454SAndrew Thompson snprintf(dst_ptr, dst_len, "%s %s, rev %x.%02x/" 21008755859aSAndrew Thompson "%x.%02x, addr %d", 21018755859aSAndrew Thompson udev->manufacturer, udev->product, 210202ac6454SAndrew Thompson (bcdUSB >> 8), bcdUSB & 0xFF, 210302ac6454SAndrew Thompson (bcdDevice >> 8), bcdDevice & 0xFF, 210402ac6454SAndrew Thompson udev->address); 210502ac6454SAndrew Thompson } 210602ac6454SAndrew Thompson } 210702ac6454SAndrew Thompson 210802ac6454SAndrew Thompson #if USB_VERBOSE 210902ac6454SAndrew Thompson /* 211002ac6454SAndrew Thompson * Descriptions of of known vendors and devices ("products"). 211102ac6454SAndrew Thompson */ 211202ac6454SAndrew Thompson struct usb_knowndev { 211302ac6454SAndrew Thompson uint16_t vendor; 211402ac6454SAndrew Thompson uint16_t product; 211502ac6454SAndrew Thompson uint32_t flags; 211602ac6454SAndrew Thompson const char *vendorname; 211702ac6454SAndrew Thompson const char *productname; 211802ac6454SAndrew Thompson }; 211902ac6454SAndrew Thompson 212002ac6454SAndrew Thompson #define USB_KNOWNDEV_NOPROD 0x01 /* match on vendor only */ 212102ac6454SAndrew Thompson 212202ac6454SAndrew Thompson #include "usbdevs.h" 212302ac6454SAndrew Thompson #include "usbdevs_data.h" 212402ac6454SAndrew Thompson #endif /* USB_VERBOSE */ 212502ac6454SAndrew Thompson 212602ac6454SAndrew Thompson static void 2127760bc48eSAndrew Thompson usb2_set_device_strings(struct usb_device *udev) 212802ac6454SAndrew Thompson { 2129760bc48eSAndrew Thompson struct usb_device_descriptor *udd = &udev->ddesc; 213002ac6454SAndrew Thompson #if USB_VERBOSE 213102ac6454SAndrew Thompson const struct usb_knowndev *kdp; 213202ac6454SAndrew Thompson #endif 2133c86aead6SAndrew Thompson char temp[64]; 213402ac6454SAndrew Thompson uint16_t vendor_id; 213502ac6454SAndrew Thompson uint16_t product_id; 213602ac6454SAndrew Thompson 213702ac6454SAndrew Thompson vendor_id = UGETW(udd->idVendor); 213802ac6454SAndrew Thompson product_id = UGETW(udd->idProduct); 213902ac6454SAndrew Thompson 2140c86aead6SAndrew Thompson /* get serial number string */ 2141c86aead6SAndrew Thompson bzero(temp, sizeof(temp)); 2142c86aead6SAndrew Thompson usb2_req_get_string_any(udev, NULL, temp, sizeof(temp), 2143c86aead6SAndrew Thompson udev->ddesc.iSerialNumber); 2144c86aead6SAndrew Thompson udev->serial = strdup(temp, M_USB); 214502ac6454SAndrew Thompson 2146c86aead6SAndrew Thompson /* get manufacturer string */ 2147c86aead6SAndrew Thompson bzero(temp, sizeof(temp)); 2148c86aead6SAndrew Thompson usb2_req_get_string_any(udev, NULL, temp, sizeof(temp), 2149c86aead6SAndrew Thompson udev->ddesc.iManufacturer); 2150c86aead6SAndrew Thompson usb2_trim_spaces(temp); 2151c86aead6SAndrew Thompson if (temp[0] != '\0') 2152c86aead6SAndrew Thompson udev->manufacturer = strdup(temp, M_USB); 2153c86aead6SAndrew Thompson 2154c86aead6SAndrew Thompson /* get product string */ 2155c86aead6SAndrew Thompson bzero(temp, sizeof(temp)); 2156c86aead6SAndrew Thompson usb2_req_get_string_any(udev, NULL, temp, sizeof(temp), 2157c86aead6SAndrew Thompson udev->ddesc.iProduct); 2158c86aead6SAndrew Thompson usb2_trim_spaces(temp); 2159c86aead6SAndrew Thompson if (temp[0] != '\0') 2160c86aead6SAndrew Thompson udev->product = strdup(temp, M_USB); 2161c86aead6SAndrew Thompson 2162c86aead6SAndrew Thompson #if USB_VERBOSE 2163c86aead6SAndrew Thompson if (udev->manufacturer == NULL || udev->product == NULL) { 2164c86aead6SAndrew Thompson for (kdp = usb_knowndevs; kdp->vendorname != NULL; kdp++) { 216502ac6454SAndrew Thompson if (kdp->vendor == vendor_id && 216602ac6454SAndrew Thompson (kdp->product == product_id || 216702ac6454SAndrew Thompson (kdp->flags & USB_KNOWNDEV_NOPROD) != 0)) 216802ac6454SAndrew Thompson break; 216902ac6454SAndrew Thompson } 217002ac6454SAndrew Thompson if (kdp->vendorname != NULL) { 2171c86aead6SAndrew Thompson /* XXX should use pointer to knowndevs string */ 2172c86aead6SAndrew Thompson if (udev->manufacturer == NULL) { 2173c86aead6SAndrew Thompson udev->manufacturer = strdup(kdp->vendorname, 2174c86aead6SAndrew Thompson M_USB); 2175c86aead6SAndrew Thompson } 2176c86aead6SAndrew Thompson if (udev->product == NULL && 2177c86aead6SAndrew Thompson (kdp->flags & USB_KNOWNDEV_NOPROD) == 0) { 2178c86aead6SAndrew Thompson udev->product = strdup(kdp->productname, 2179c86aead6SAndrew Thompson M_USB); 2180c86aead6SAndrew Thompson } 218102ac6454SAndrew Thompson } 218202ac6454SAndrew Thompson } 218302ac6454SAndrew Thompson #endif 2184c86aead6SAndrew Thompson /* Provide default strings if none were found */ 2185c86aead6SAndrew Thompson if (udev->manufacturer == NULL) { 2186c86aead6SAndrew Thompson snprintf(temp, sizeof(temp), "vendor 0x%04x", vendor_id); 2187c86aead6SAndrew Thompson udev->manufacturer = strdup(temp, M_USB); 218802ac6454SAndrew Thompson } 2189c86aead6SAndrew Thompson if (udev->product == NULL) { 2190c86aead6SAndrew Thompson snprintf(temp, sizeof(temp), "product 0x%04x", product_id); 2191c86aead6SAndrew Thompson udev->product = strdup(temp, M_USB); 219202ac6454SAndrew Thompson } 219302ac6454SAndrew Thompson } 219402ac6454SAndrew Thompson 219502ac6454SAndrew Thompson /* 219602ac6454SAndrew Thompson * Returns: 219702ac6454SAndrew Thompson * See: USB_MODE_XXX 219802ac6454SAndrew Thompson */ 2199f29a0724SAndrew Thompson enum usb_hc_mode 2200760bc48eSAndrew Thompson usb2_get_mode(struct usb_device *udev) 220102ac6454SAndrew Thompson { 2202f29a0724SAndrew Thompson return (udev->flags.usb_mode); 220302ac6454SAndrew Thompson } 220402ac6454SAndrew Thompson 220502ac6454SAndrew Thompson /* 220602ac6454SAndrew Thompson * Returns: 220702ac6454SAndrew Thompson * See: USB_SPEED_XXX 220802ac6454SAndrew Thompson */ 22098d2dd5ddSAndrew Thompson enum usb_dev_speed 2210760bc48eSAndrew Thompson usb2_get_speed(struct usb_device *udev) 221102ac6454SAndrew Thompson { 221202ac6454SAndrew Thompson return (udev->speed); 221302ac6454SAndrew Thompson } 221402ac6454SAndrew Thompson 221502ac6454SAndrew Thompson uint32_t 2216760bc48eSAndrew Thompson usb2_get_isoc_fps(struct usb_device *udev) 221702ac6454SAndrew Thompson { 221802ac6454SAndrew Thompson ; /* indent fix */ 221902ac6454SAndrew Thompson switch (udev->speed) { 222002ac6454SAndrew Thompson case USB_SPEED_LOW: 222102ac6454SAndrew Thompson case USB_SPEED_FULL: 222202ac6454SAndrew Thompson return (1000); 222302ac6454SAndrew Thompson default: 222402ac6454SAndrew Thompson return (8000); 222502ac6454SAndrew Thompson } 222602ac6454SAndrew Thompson } 222702ac6454SAndrew Thompson 2228760bc48eSAndrew Thompson struct usb_device_descriptor * 2229760bc48eSAndrew Thompson usb2_get_device_descriptor(struct usb_device *udev) 223002ac6454SAndrew Thompson { 223102ac6454SAndrew Thompson if (udev == NULL) 223202ac6454SAndrew Thompson return (NULL); /* be NULL safe */ 223302ac6454SAndrew Thompson return (&udev->ddesc); 223402ac6454SAndrew Thompson } 223502ac6454SAndrew Thompson 2236760bc48eSAndrew Thompson struct usb_config_descriptor * 2237760bc48eSAndrew Thompson usb2_get_config_descriptor(struct usb_device *udev) 223802ac6454SAndrew Thompson { 223902ac6454SAndrew Thompson if (udev == NULL) 224002ac6454SAndrew Thompson return (NULL); /* be NULL safe */ 224102ac6454SAndrew Thompson return (udev->cdesc); 224202ac6454SAndrew Thompson } 224302ac6454SAndrew Thompson 224402ac6454SAndrew Thompson /*------------------------------------------------------------------------* 224502ac6454SAndrew Thompson * usb2_test_quirk - test a device for a given quirk 224602ac6454SAndrew Thompson * 224702ac6454SAndrew Thompson * Return values: 224802ac6454SAndrew Thompson * 0: The USB device does not have the given quirk. 224902ac6454SAndrew Thompson * Else: The USB device has the given quirk. 225002ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 225102ac6454SAndrew Thompson uint8_t 2252760bc48eSAndrew Thompson usb2_test_quirk(const struct usb_attach_arg *uaa, uint16_t quirk) 225302ac6454SAndrew Thompson { 225402ac6454SAndrew Thompson uint8_t found; 225502ac6454SAndrew Thompson 225602ac6454SAndrew Thompson found = (usb2_test_quirk_p) (&uaa->info, quirk); 225702ac6454SAndrew Thompson return (found); 225802ac6454SAndrew Thompson } 225902ac6454SAndrew Thompson 2260760bc48eSAndrew Thompson struct usb_interface_descriptor * 2261760bc48eSAndrew Thompson usb2_get_interface_descriptor(struct usb_interface *iface) 226202ac6454SAndrew Thompson { 226302ac6454SAndrew Thompson if (iface == NULL) 226402ac6454SAndrew Thompson return (NULL); /* be NULL safe */ 226502ac6454SAndrew Thompson return (iface->idesc); 226602ac6454SAndrew Thompson } 226702ac6454SAndrew Thompson 226802ac6454SAndrew Thompson uint8_t 2269760bc48eSAndrew Thompson usb2_get_interface_altindex(struct usb_interface *iface) 227002ac6454SAndrew Thompson { 227102ac6454SAndrew Thompson return (iface->alt_index); 227202ac6454SAndrew Thompson } 227302ac6454SAndrew Thompson 227402ac6454SAndrew Thompson uint8_t 2275760bc48eSAndrew Thompson usb2_get_bus_index(struct usb_device *udev) 227602ac6454SAndrew Thompson { 227702ac6454SAndrew Thompson return ((uint8_t)device_get_unit(udev->bus->bdev)); 227802ac6454SAndrew Thompson } 227902ac6454SAndrew Thompson 228002ac6454SAndrew Thompson uint8_t 2281760bc48eSAndrew Thompson usb2_get_device_index(struct usb_device *udev) 228202ac6454SAndrew Thompson { 228302ac6454SAndrew Thompson return (udev->device_index); 228402ac6454SAndrew Thompson } 228502ac6454SAndrew Thompson 22868755859aSAndrew Thompson #if USB_HAVE_UGEN 228702ac6454SAndrew Thompson /*------------------------------------------------------------------------* 228802ac6454SAndrew Thompson * usb2_notify_addq 228902ac6454SAndrew Thompson * 229002ac6454SAndrew Thompson * This function will generate events for dev. 229102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 229202ac6454SAndrew Thompson static void 2293760bc48eSAndrew Thompson usb2_notify_addq(const char *type, struct usb_device *udev) 229402ac6454SAndrew Thompson { 229502ac6454SAndrew Thompson char *data = NULL; 229602ac6454SAndrew Thompson struct malloc_type *mt; 229702ac6454SAndrew Thompson 229802ac6454SAndrew Thompson mtx_lock(&malloc_mtx); 229902ac6454SAndrew Thompson mt = malloc_desc2type("bus"); /* XXX M_BUS */ 230002ac6454SAndrew Thompson mtx_unlock(&malloc_mtx); 230102ac6454SAndrew Thompson if (mt == NULL) 230202ac6454SAndrew Thompson return; 230302ac6454SAndrew Thompson 230402ac6454SAndrew Thompson data = malloc(512, mt, M_NOWAIT); 230502ac6454SAndrew Thompson if (data == NULL) 230602ac6454SAndrew Thompson return; 230702ac6454SAndrew Thompson 230802ac6454SAndrew Thompson /* String it all together. */ 230902ac6454SAndrew Thompson snprintf(data, 1024, 231002ac6454SAndrew Thompson "%s" 2311ee3e3ff5SAndrew Thompson "%s " 231202ac6454SAndrew Thompson "vendor=0x%04x " 231302ac6454SAndrew Thompson "product=0x%04x " 231402ac6454SAndrew Thompson "devclass=0x%02x " 231502ac6454SAndrew Thompson "devsubclass=0x%02x " 231602ac6454SAndrew Thompson "sernum=\"%s\" " 231702ac6454SAndrew Thompson "at " 231802ac6454SAndrew Thompson "port=%u " 231902ac6454SAndrew Thompson "on " 2320ee3e3ff5SAndrew Thompson "%s\n", 232102ac6454SAndrew Thompson type, 2322ee3e3ff5SAndrew Thompson udev->ugen_name, 232302ac6454SAndrew Thompson UGETW(udev->ddesc.idVendor), 232402ac6454SAndrew Thompson UGETW(udev->ddesc.idProduct), 232502ac6454SAndrew Thompson udev->ddesc.bDeviceClass, 232602ac6454SAndrew Thompson udev->ddesc.bDeviceSubClass, 232702ac6454SAndrew Thompson udev->serial, 232802ac6454SAndrew Thompson udev->port_no, 23298755859aSAndrew Thompson udev->parent_hub != NULL ? 23308755859aSAndrew Thompson udev->parent_hub->ugen_name : 233102ac6454SAndrew Thompson device_get_nameunit(device_get_parent(udev->bus->bdev))); 233262a5f394SAlexander Kabaev 233302ac6454SAndrew Thompson devctl_queue_data(data); 233402ac6454SAndrew Thompson } 233502ac6454SAndrew Thompson 233602ac6454SAndrew Thompson /*------------------------------------------------------------------------* 233702ac6454SAndrew Thompson * usb2_fifo_free_wrap 233802ac6454SAndrew Thompson * 233902ac6454SAndrew Thompson * This function will free the FIFOs. 234002ac6454SAndrew Thompson * 2341bdd41206SAndrew Thompson * Description of "flag" argument: If the USB_UNCFG_FLAG_FREE_EP0 flag 2342bdd41206SAndrew Thompson * is set and "iface_index" is set to "USB_IFACE_INDEX_ANY", we free 2343bdd41206SAndrew Thompson * all FIFOs. If the USB_UNCFG_FLAG_FREE_EP0 flag is not set and 2344bdd41206SAndrew Thompson * "iface_index" is set to "USB_IFACE_INDEX_ANY", we free all non 2345bdd41206SAndrew Thompson * control endpoint FIFOs. If "iface_index" is not set to 2346bdd41206SAndrew Thompson * "USB_IFACE_INDEX_ANY" the flag has no effect. 234702ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 234802ac6454SAndrew Thompson static void 2349760bc48eSAndrew Thompson usb2_fifo_free_wrap(struct usb_device *udev, 235002ac6454SAndrew Thompson uint8_t iface_index, uint8_t flag) 235102ac6454SAndrew Thompson { 2352760bc48eSAndrew Thompson struct usb_fifo *f; 235302ac6454SAndrew Thompson uint16_t i; 235402ac6454SAndrew Thompson 235502ac6454SAndrew Thompson /* 235602ac6454SAndrew Thompson * Free any USB FIFOs on the given interface: 235702ac6454SAndrew Thompson */ 235802ac6454SAndrew Thompson for (i = 0; i != USB_FIFO_MAX; i++) { 235902ac6454SAndrew Thompson f = udev->fifo[i]; 236002ac6454SAndrew Thompson if (f == NULL) { 236102ac6454SAndrew Thompson continue; 236202ac6454SAndrew Thompson } 236302ac6454SAndrew Thompson /* Check if the interface index matches */ 236402ac6454SAndrew Thompson if (iface_index == f->iface_index) { 236502ac6454SAndrew Thompson if (f->methods != &usb2_ugen_methods) { 236602ac6454SAndrew Thompson /* 236702ac6454SAndrew Thompson * Don't free any non-generic FIFOs in 236802ac6454SAndrew Thompson * this case. 236902ac6454SAndrew Thompson */ 237002ac6454SAndrew Thompson continue; 237102ac6454SAndrew Thompson } 237202ac6454SAndrew Thompson if ((f->dev_ep_index == 0) && 237302ac6454SAndrew Thompson (f->fs_xfer == NULL)) { 237402ac6454SAndrew Thompson /* no need to free this FIFO */ 237502ac6454SAndrew Thompson continue; 237602ac6454SAndrew Thompson } 237702ac6454SAndrew Thompson } else if (iface_index == USB_IFACE_INDEX_ANY) { 237802ac6454SAndrew Thompson if ((f->methods == &usb2_ugen_methods) && 2379bdd41206SAndrew Thompson (f->dev_ep_index == 0) && 2380bdd41206SAndrew Thompson (!(flag & USB_UNCFG_FLAG_FREE_EP0)) && 238102ac6454SAndrew Thompson (f->fs_xfer == NULL)) { 238202ac6454SAndrew Thompson /* no need to free this FIFO */ 238302ac6454SAndrew Thompson continue; 238402ac6454SAndrew Thompson } 238502ac6454SAndrew Thompson } else { 238602ac6454SAndrew Thompson /* no need to free this FIFO */ 238702ac6454SAndrew Thompson continue; 238802ac6454SAndrew Thompson } 238902ac6454SAndrew Thompson /* free this FIFO */ 239002ac6454SAndrew Thompson usb2_fifo_free(f); 239102ac6454SAndrew Thompson } 239202ac6454SAndrew Thompson } 23930f6e8f93SAndrew Thompson #endif 239402ac6454SAndrew Thompson 239502ac6454SAndrew Thompson /*------------------------------------------------------------------------* 239602ac6454SAndrew Thompson * usb2_peer_can_wakeup 239702ac6454SAndrew Thompson * 239802ac6454SAndrew Thompson * Return values: 239902ac6454SAndrew Thompson * 0: Peer cannot do resume signalling. 240002ac6454SAndrew Thompson * Else: Peer can do resume signalling. 240102ac6454SAndrew Thompson *------------------------------------------------------------------------*/ 240202ac6454SAndrew Thompson uint8_t 2403760bc48eSAndrew Thompson usb2_peer_can_wakeup(struct usb_device *udev) 240402ac6454SAndrew Thompson { 2405760bc48eSAndrew Thompson const struct usb_config_descriptor *cdp; 240602ac6454SAndrew Thompson 240702ac6454SAndrew Thompson cdp = udev->cdesc; 2408f29a0724SAndrew Thompson if ((cdp != NULL) && (udev->flags.usb_mode == USB_MODE_HOST)) { 240902ac6454SAndrew Thompson return (cdp->bmAttributes & UC_REMOTE_WAKEUP); 241002ac6454SAndrew Thompson } 241102ac6454SAndrew Thompson return (0); /* not supported */ 241202ac6454SAndrew Thompson } 2413bd216778SAndrew Thompson 2414bd216778SAndrew Thompson void 2415760bc48eSAndrew Thompson usb2_set_device_state(struct usb_device *udev, enum usb_dev_state state) 2416bd216778SAndrew Thompson { 2417bd216778SAndrew Thompson 2418bd216778SAndrew Thompson KASSERT(state < USB_STATE_MAX, ("invalid udev state")); 2419bd216778SAndrew Thompson 2420bd216778SAndrew Thompson DPRINTF("udev %p state %s -> %s\n", udev, 24214d4fa6edSAndrew Thompson usb2_statestr(udev->state), usb2_statestr(state)); 2422bd216778SAndrew Thompson udev->state = state; 2423bd216778SAndrew Thompson } 2424bd216778SAndrew Thompson 2425ec8f3127SAndrew Thompson uint8_t 2426760bc48eSAndrew Thompson usb2_device_attached(struct usb_device *udev) 2427bd216778SAndrew Thompson { 2428bd216778SAndrew Thompson return (udev->state > USB_STATE_DETACHED); 2429bd216778SAndrew Thompson } 2430