1# 2# USB Gadget support on a system involves 3# (a) a peripheral controller, and 4# (b) the gadget driver using it. 5# 6# NOTE: Gadget support ** DOES NOT ** depend on host-side CONFIG_USB !! 7# 8# - Host systems (like PCs) need CONFIG_USB (with "A" jacks). 9# - Peripherals (like PDAs) need CONFIG_USB_GADGET (with "B" jacks). 10# - Some systems have both kinds of controllers. 11# 12# With help from a special transceiver and a "Mini-AB" jack, systems with 13# both kinds of controller can also support "USB On-the-Go" (CONFIG_USB_OTG). 14# 15 16menuconfig USB_GADGET 17 tristate "USB Gadget Support" 18 select NLS 19 help 20 USB is a master/slave protocol, organized with one master 21 host (such as a PC) controlling up to 127 peripheral devices. 22 The USB hardware is asymmetric, which makes it easier to set up: 23 you can't connect a "to-the-host" connector to a peripheral. 24 25 Linux can run in the host, or in the peripheral. In both cases 26 you need a low level bus controller driver, and some software 27 talking to it. Peripheral controllers are often discrete silicon, 28 or are integrated with the CPU in a microcontroller. The more 29 familiar host side controllers have names like "EHCI", "OHCI", 30 or "UHCI", and are usually integrated into southbridges on PC 31 motherboards. 32 33 Enable this configuration option if you want to run Linux inside 34 a USB peripheral device. Configure one hardware driver for your 35 peripheral/device side bus controller, and a "gadget driver" for 36 your peripheral protocol. (If you use modular gadget drivers, 37 you may configure more than one.) 38 39 If in doubt, say "N" and don't enable these drivers; most people 40 don't have this kind of hardware (except maybe inside Linux PDAs). 41 42 For more information, see <http://www.linux-usb.org/gadget> and 43 the kernel DocBook documentation for this API. 44 45if USB_GADGET 46 47config USB_GADGET_DEBUG 48 boolean "Debugging messages (DEVELOPMENT)" 49 depends on DEBUG_KERNEL 50 help 51 Many controller and gadget drivers will print some debugging 52 messages if you use this option to ask for those messages. 53 54 Avoid enabling these messages, even if you're actively 55 debugging such a driver. Many drivers will emit so many 56 messages that the driver timings are affected, which will 57 either create new failure modes or remove the one you're 58 trying to track down. Never enable these messages for a 59 production build. 60 61config USB_GADGET_DEBUG_FILES 62 boolean "Debugging information files (DEVELOPMENT)" 63 depends on PROC_FS 64 help 65 Some of the drivers in the "gadget" framework can expose 66 debugging information in files such as /proc/driver/udc 67 (for a peripheral controller). The information in these 68 files may help when you're troubleshooting or bringing up a 69 driver on a new board. Enable these files by choosing "Y" 70 here. If in doubt, or to conserve kernel memory, say "N". 71 72config USB_GADGET_DEBUG_FS 73 boolean "Debugging information files in debugfs (DEVELOPMENT)" 74 depends on DEBUG_FS 75 help 76 Some of the drivers in the "gadget" framework can expose 77 debugging information in files under /sys/kernel/debug/. 78 The information in these files may help when you're 79 troubleshooting or bringing up a driver on a new board. 80 Enable these files by choosing "Y" here. If in doubt, or 81 to conserve kernel memory, say "N". 82 83config USB_GADGET_VBUS_DRAW 84 int "Maximum VBUS Power usage (2-500 mA)" 85 range 2 500 86 default 2 87 help 88 Some devices need to draw power from USB when they are 89 configured, perhaps to operate circuitry or to recharge 90 batteries. This is in addition to any local power supply, 91 such as an AC adapter or batteries. 92 93 Enter the maximum power your device draws through USB, in 94 milliAmperes. The permitted range of values is 2 - 500 mA; 95 0 mA would be legal, but can make some hosts misbehave. 96 97 This value will be used except for system-specific gadget 98 drivers that have more specific information. 99 100config USB_GADGET_STORAGE_NUM_BUFFERS 101 int "Number of storage pipeline buffers" 102 range 2 4 103 default 2 104 help 105 Usually 2 buffers are enough to establish a good buffering 106 pipeline. The number may be increased in order to compensate 107 for a bursty VFS behaviour. For instance there may be CPU wake up 108 latencies that makes the VFS to appear bursty in a system with 109 an CPU on-demand governor. Especially if DMA is doing IO to 110 offload the CPU. In this case the CPU will go into power 111 save often and spin up occasionally to move data within VFS. 112 If selecting USB_GADGET_DEBUG_FILES this value may be set by 113 a module parameter as well. 114 If unsure, say 2. 115 116# 117# USB Peripheral Controller Support 118# 119# The order here is alphabetical, except that integrated controllers go 120# before discrete ones so they will be the initial/default value: 121# - integrated/SOC controllers first 122# - licensed IP used in both SOC and discrete versions 123# - discrete ones (including all PCI-only controllers) 124# - debug/dummy gadget+hcd is last. 125# 126menu "USB Peripheral Controller" 127 128# 129# Integrated controllers 130# 131 132config USB_AT91 133 tristate "Atmel AT91 USB Device Port" 134 depends on ARCH_AT91 135 help 136 Many Atmel AT91 processors (such as the AT91RM2000) have a 137 full speed USB Device Port with support for five configurable 138 endpoints (plus endpoint zero). 139 140 Say "y" to link the driver statically, or "m" to build a 141 dynamically linked module called "at91_udc" and force all 142 gadget drivers to also be dynamically linked. 143 144config USB_LPC32XX 145 tristate "LPC32XX USB Peripheral Controller" 146 depends on ARCH_LPC32XX 147 depends on USB_PHY 148 select USB_ISP1301 149 help 150 This option selects the USB device controller in the LPC32xx SoC. 151 152 Say "y" to link the driver statically, or "m" to build a 153 dynamically linked module called "lpc32xx_udc" and force all 154 gadget drivers to also be dynamically linked. 155 156config USB_ATMEL_USBA 157 tristate "Atmel USBA" 158 depends on AVR32 || ARCH_AT91SAM9RL || ARCH_AT91SAM9G45 159 help 160 USBA is the integrated high-speed USB Device controller on 161 the AT32AP700x, some AT91SAM9 and AT91CAP9 processors from Atmel. 162 163config USB_BCM63XX_UDC 164 tristate "Broadcom BCM63xx Peripheral Controller" 165 depends on BCM63XX 166 help 167 Many Broadcom BCM63xx chipsets (such as the BCM6328) have a 168 high speed USB Device Port with support for four fixed endpoints 169 (plus endpoint zero). 170 171 Say "y" to link the driver statically, or "m" to build a 172 dynamically linked module called "bcm63xx_udc". 173 174config USB_FSL_USB2 175 tristate "Freescale Highspeed USB DR Peripheral Controller" 176 depends on FSL_SOC || ARCH_MXC 177 select USB_FSL_MPH_DR_OF if OF 178 help 179 Some of Freescale PowerPC and i.MX processors have a High Speed 180 Dual-Role(DR) USB controller, which supports device mode. 181 182 The number of programmable endpoints is different through 183 SOC revisions. 184 185 Say "y" to link the driver statically, or "m" to build a 186 dynamically linked module called "fsl_usb2_udc" and force 187 all gadget drivers to also be dynamically linked. 188 189config USB_FUSB300 190 tristate "Faraday FUSB300 USB Peripheral Controller" 191 depends on !PHYS_ADDR_T_64BIT 192 help 193 Faraday usb device controller FUSB300 driver 194 195config USB_OMAP 196 tristate "OMAP USB Device Controller" 197 depends on ARCH_OMAP1 198 depends on USB_PHY 199 select ISP1301_OMAP if MACH_OMAP_H2 || MACH_OMAP_H3 || MACH_OMAP_H4_OTG 200 help 201 Many Texas Instruments OMAP processors have flexible full 202 speed USB device controllers, with support for up to 30 203 endpoints (plus endpoint zero). This driver supports the 204 controller in the OMAP 1611, and should work with controllers 205 in other OMAP processors too, given minor tweaks. 206 207 Say "y" to link the driver statically, or "m" to build a 208 dynamically linked module called "omap_udc" and force all 209 gadget drivers to also be dynamically linked. 210 211config USB_PXA25X 212 tristate "PXA 25x or IXP 4xx" 213 depends on (ARCH_PXA && PXA25x) || ARCH_IXP4XX 214 help 215 Intel's PXA 25x series XScale ARM-5TE processors include 216 an integrated full speed USB 1.1 device controller. The 217 controller in the IXP 4xx series is register-compatible. 218 219 It has fifteen fixed-function endpoints, as well as endpoint 220 zero (for control transfers). 221 222 Say "y" to link the driver statically, or "m" to build a 223 dynamically linked module called "pxa25x_udc" and force all 224 gadget drivers to also be dynamically linked. 225 226# if there's only one gadget driver, using only two bulk endpoints, 227# don't waste memory for the other endpoints 228config USB_PXA25X_SMALL 229 depends on USB_PXA25X 230 bool 231 default n if USB_ETH_RNDIS 232 default y if USB_ZERO 233 default y if USB_ETH 234 default y if USB_G_SERIAL 235 236config USB_R8A66597 237 tristate "Renesas R8A66597 USB Peripheral Controller" 238 help 239 R8A66597 is a discrete USB host and peripheral controller chip that 240 supports both full and high speed USB 2.0 data transfers. 241 It has nine configurable endpoints, and endpoint zero. 242 243 Say "y" to link the driver statically, or "m" to build a 244 dynamically linked module called "r8a66597_udc" and force all 245 gadget drivers to also be dynamically linked. 246 247config USB_RENESAS_USBHS_UDC 248 tristate 'Renesas USBHS controller' 249 depends on USB_RENESAS_USBHS 250 help 251 Renesas USBHS is a discrete USB host and peripheral controller chip 252 that supports both full and high speed USB 2.0 data transfers. 253 It has nine or more configurable endpoints, and endpoint zero. 254 255 Say "y" to link the driver statically, or "m" to build a 256 dynamically linked module called "renesas_usbhs" and force all 257 gadget drivers to also be dynamically linked. 258 259config USB_PXA27X 260 tristate "PXA 27x" 261 help 262 Intel's PXA 27x series XScale ARM v5TE processors include 263 an integrated full speed USB 1.1 device controller. 264 265 It has up to 23 endpoints, as well as endpoint zero (for 266 control transfers). 267 268 Say "y" to link the driver statically, or "m" to build a 269 dynamically linked module called "pxa27x_udc" and force all 270 gadget drivers to also be dynamically linked. 271 272config USB_S3C_HSOTG 273 tristate "S3C HS/OtG USB Device controller" 274 depends on S3C_DEV_USB_HSOTG 275 help 276 The Samsung S3C64XX USB2.0 high-speed gadget controller 277 integrated into the S3C64XX series SoC. 278 279config USB_IMX 280 tristate "Freescale i.MX1 USB Peripheral Controller" 281 depends on ARCH_MXC 282 depends on BROKEN 283 help 284 Freescale's i.MX1 includes an integrated full speed 285 USB 1.1 device controller. 286 287 It has Six fixed-function endpoints, as well as endpoint 288 zero (for control transfers). 289 290 Say "y" to link the driver statically, or "m" to build a 291 dynamically linked module called "imx_udc" and force all 292 gadget drivers to also be dynamically linked. 293 294config USB_S3C2410 295 tristate "S3C2410 USB Device Controller" 296 depends on ARCH_S3C24XX 297 help 298 Samsung's S3C2410 is an ARM-4 processor with an integrated 299 full speed USB 1.1 device controller. It has 4 configurable 300 endpoints, as well as endpoint zero (for control transfers). 301 302 This driver has been tested on the S3C2410, S3C2412, and 303 S3C2440 processors. 304 305config USB_S3C2410_DEBUG 306 boolean "S3C2410 udc debug messages" 307 depends on USB_S3C2410 308 309config USB_S3C_HSUDC 310 tristate "S3C2416, S3C2443 and S3C2450 USB Device Controller" 311 depends on ARCH_S3C24XX 312 help 313 Samsung's S3C2416, S3C2443 and S3C2450 is an ARM9 based SoC 314 integrated with dual speed USB 2.0 device controller. It has 315 8 endpoints, as well as endpoint zero. 316 317 This driver has been tested on S3C2416 and S3C2450 processors. 318 319config USB_MV_UDC 320 tristate "Marvell USB2.0 Device Controller" 321 depends on GENERIC_HARDIRQS 322 help 323 Marvell Socs (including PXA and MMP series) include a high speed 324 USB2.0 OTG controller, which can be configured as high speed or 325 full speed USB peripheral. 326 327config USB_MV_U3D 328 tristate "MARVELL PXA2128 USB 3.0 controller" 329 help 330 MARVELL PXA2128 Processor series include a super speed USB3.0 device 331 controller, which support super speed USB peripheral. 332 333# 334# Controllers available in both integrated and discrete versions 335# 336 337config USB_M66592 338 tristate "Renesas M66592 USB Peripheral Controller" 339 help 340 M66592 is a discrete USB peripheral controller chip that 341 supports both full and high speed USB 2.0 data transfers. 342 It has seven configurable endpoints, and endpoint zero. 343 344 Say "y" to link the driver statically, or "m" to build a 345 dynamically linked module called "m66592_udc" and force all 346 gadget drivers to also be dynamically linked. 347 348# 349# Controllers available only in discrete form (and all PCI controllers) 350# 351 352config USB_AMD5536UDC 353 tristate "AMD5536 UDC" 354 depends on PCI 355 help 356 The AMD5536 UDC is part of the AMD Geode CS5536, an x86 southbridge. 357 It is a USB Highspeed DMA capable USB device controller. Beside ep0 358 it provides 4 IN and 4 OUT endpoints (bulk or interrupt type). 359 The UDC port supports OTG operation, and may be used as a host port 360 if it's not being used to implement peripheral or OTG roles. 361 362 Say "y" to link the driver statically, or "m" to build a 363 dynamically linked module called "amd5536udc" and force all 364 gadget drivers to also be dynamically linked. 365 366config USB_FSL_QE 367 tristate "Freescale QE/CPM USB Device Controller" 368 depends on FSL_SOC && (QUICC_ENGINE || CPM) 369 help 370 Some of Freescale PowerPC processors have a Full Speed 371 QE/CPM2 USB controller, which support device mode with 4 372 programmable endpoints. This driver supports the 373 controller in the MPC8360 and MPC8272, and should work with 374 controllers having QE or CPM2, given minor tweaks. 375 376 Set CONFIG_USB_GADGET to "m" to build this driver as a 377 dynamically linked module called "fsl_qe_udc". 378 379config USB_NET2272 380 tristate "PLX NET2272" 381 help 382 PLX NET2272 is a USB peripheral controller which supports 383 both full and high speed USB 2.0 data transfers. 384 385 It has three configurable endpoints, as well as endpoint zero 386 (for control transfer). 387 Say "y" to link the driver statically, or "m" to build a 388 dynamically linked module called "net2272" and force all 389 gadget drivers to also be dynamically linked. 390 391config USB_NET2272_DMA 392 boolean "Support external DMA controller" 393 depends on USB_NET2272 394 help 395 The NET2272 part can optionally support an external DMA 396 controller, but your board has to have support in the 397 driver itself. 398 399 If unsure, say "N" here. The driver works fine in PIO mode. 400 401config USB_NET2280 402 tristate "NetChip 228x" 403 depends on PCI 404 help 405 NetChip 2280 / 2282 is a PCI based USB peripheral controller which 406 supports both full and high speed USB 2.0 data transfers. 407 408 It has six configurable endpoints, as well as endpoint zero 409 (for control transfers) and several endpoints with dedicated 410 functions. 411 412 Say "y" to link the driver statically, or "m" to build a 413 dynamically linked module called "net2280" and force all 414 gadget drivers to also be dynamically linked. 415 416config USB_GOKU 417 tristate "Toshiba TC86C001 'Goku-S'" 418 depends on PCI 419 help 420 The Toshiba TC86C001 is a PCI device which includes controllers 421 for full speed USB devices, IDE, I2C, SIO, plus a USB host (OHCI). 422 423 The device controller has three configurable (bulk or interrupt) 424 endpoints, plus endpoint zero (for control transfers). 425 426 Say "y" to link the driver statically, or "m" to build a 427 dynamically linked module called "goku_udc" and to force all 428 gadget drivers to also be dynamically linked. 429 430config USB_EG20T 431 tristate "Intel EG20T PCH/LAPIS Semiconductor IOH(ML7213/ML7831) UDC" 432 depends on PCI && GENERIC_HARDIRQS 433 help 434 This is a USB device driver for EG20T PCH. 435 EG20T PCH is the platform controller hub that is used in Intel's 436 general embedded platform. EG20T PCH has USB device interface. 437 Using this interface, it is able to access system devices connected 438 to USB device. 439 This driver enables USB device function. 440 USB device is a USB peripheral controller which 441 supports both full and high speed USB 2.0 data transfers. 442 This driver supports both control transfer and bulk transfer modes. 443 This driver dose not support interrupt transfer or isochronous 444 transfer modes. 445 446 This driver also can be used for LAPIS Semiconductor's ML7213 which is 447 for IVI(In-Vehicle Infotainment) use. 448 ML7831 is for general purpose use. 449 ML7213/ML7831 is companion chip for Intel Atom E6xx series. 450 ML7213/ML7831 is completely compatible for Intel EG20T PCH. 451 452# 453# LAST -- dummy/emulated controller 454# 455 456config USB_DUMMY_HCD 457 tristate "Dummy HCD (DEVELOPMENT)" 458 depends on USB=y || (USB=m && USB_GADGET=m) 459 help 460 This host controller driver emulates USB, looping all data transfer 461 requests back to a USB "gadget driver" in the same host. The host 462 side is the master; the gadget side is the slave. Gadget drivers 463 can be high, full, or low speed; and they have access to endpoints 464 like those from NET2280, PXA2xx, or SA1100 hardware. 465 466 This may help in some stages of creating a driver to embed in a 467 Linux device, since it lets you debug several parts of the gadget 468 driver without its hardware or drivers being involved. 469 470 Since such a gadget side driver needs to interoperate with a host 471 side Linux-USB device driver, this may help to debug both sides 472 of a USB protocol stack. 473 474 Say "y" to link the driver statically, or "m" to build a 475 dynamically linked module called "dummy_hcd" and force all 476 gadget drivers to also be dynamically linked. 477 478# NOTE: Please keep dummy_hcd LAST so that "real hardware" appears 479# first and will be selected by default. 480 481endmenu 482 483# 484# USB Gadget Drivers 485# 486 487# composite based drivers 488config USB_LIBCOMPOSITE 489 tristate 490 select CONFIGFS_FS 491 depends on USB_GADGET 492 493config USB_F_ACM 494 tristate 495 496config USB_F_SS_LB 497 tristate 498 499config USB_U_SERIAL 500 tristate 501 502config USB_U_ETHER 503 tristate 504 505config USB_U_RNDIS 506 tristate 507 508config USB_F_SERIAL 509 tristate 510 511config USB_F_OBEX 512 tristate 513 514config USB_F_NCM 515 tristate 516 517config USB_F_ECM 518 tristate 519 520config USB_F_PHONET 521 tristate 522 523choice 524 tristate "USB Gadget Drivers" 525 default USB_ETH 526 help 527 A Linux "Gadget Driver" talks to the USB Peripheral Controller 528 driver through the abstract "gadget" API. Some other operating 529 systems call these "client" drivers, of which "class drivers" 530 are a subset (implementing a USB device class specification). 531 A gadget driver implements one or more USB functions using 532 the peripheral hardware. 533 534 Gadget drivers are hardware-neutral, or "platform independent", 535 except that they sometimes must understand quirks or limitations 536 of the particular controllers they work with. For example, when 537 a controller doesn't support alternate configurations or provide 538 enough of the right types of endpoints, the gadget driver might 539 not be able work with that controller, or might need to implement 540 a less common variant of a device class protocol. 541 542# this first set of drivers all depend on bulk-capable hardware. 543 544config USB_CONFIGFS_PHONET 545 boolean "Phonet protocol" 546 depends on USB_CONFIGFS 547 depends on NET 548 depends on PHONET 549 select USB_U_ETHER 550 select USB_F_PHONET 551 help 552 The Phonet protocol implementation for USB device. 553 554config USB_ZERO 555 tristate "Gadget Zero (DEVELOPMENT)" 556 select USB_LIBCOMPOSITE 557 select USB_F_SS_LB 558 help 559 Gadget Zero is a two-configuration device. It either sinks and 560 sources bulk data; or it loops back a configurable number of 561 transfers. It also implements control requests, for "chapter 9" 562 conformance. The driver needs only two bulk-capable endpoints, so 563 it can work on top of most device-side usb controllers. It's 564 useful for testing, and is also a working example showing how 565 USB "gadget drivers" can be written. 566 567 Make this be the first driver you try using on top of any new 568 USB peripheral controller driver. Then you can use host-side 569 test software, like the "usbtest" driver, to put your hardware 570 and its driver through a basic set of functional tests. 571 572 Gadget Zero also works with the host-side "usb-skeleton" driver, 573 and with many kinds of host-side test software. You may need 574 to tweak product and vendor IDs before host software knows about 575 this device, and arrange to select an appropriate configuration. 576 577 Say "y" to link the driver statically, or "m" to build a 578 dynamically linked module called "g_zero". 579 580config USB_ZERO_HNPTEST 581 boolean "HNP Test Device" 582 depends on USB_ZERO && USB_OTG 583 help 584 You can configure this device to enumerate using the device 585 identifiers of the USB-OTG test device. That means that when 586 this gadget connects to another OTG device, with this one using 587 the "B-Peripheral" role, that device will use HNP to let this 588 one serve as the USB host instead (in the "B-Host" role). 589 590config USB_AUDIO 591 tristate "Audio Gadget" 592 depends on SND 593 select USB_LIBCOMPOSITE 594 select SND_PCM 595 help 596 This Gadget Audio driver is compatible with USB Audio Class 597 specification 2.0. It implements 1 AudioControl interface, 598 1 AudioStreaming Interface each for USB-OUT and USB-IN. 599 Number of channels, sample rate and sample size can be 600 specified as module parameters. 601 This driver doesn't expect any real Audio codec to be present 602 on the device - the audio streams are simply sinked to and 603 sourced from a virtual ALSA sound card created. The user-space 604 application may choose to do whatever it wants with the data 605 received from the USB Host and choose to provide whatever it 606 wants as audio data to the USB Host. 607 608 Say "y" to link the driver statically, or "m" to build a 609 dynamically linked module called "g_audio". 610 611config GADGET_UAC1 612 bool "UAC 1.0 (Legacy)" 613 depends on USB_AUDIO 614 help 615 If you instead want older UAC Spec-1.0 driver that also has audio 616 paths hardwired to the Audio codec chip on-board and doesn't work 617 without one. 618 619config USB_ETH 620 tristate "Ethernet Gadget (with CDC Ethernet support)" 621 depends on NET 622 select USB_LIBCOMPOSITE 623 select USB_U_ETHER 624 select USB_U_RNDIS 625 select CRC32 626 help 627 This driver implements Ethernet style communication, in one of 628 several ways: 629 630 - The "Communication Device Class" (CDC) Ethernet Control Model. 631 That protocol is often avoided with pure Ethernet adapters, in 632 favor of simpler vendor-specific hardware, but is widely 633 supported by firmware for smart network devices. 634 635 - On hardware can't implement that protocol, a simple CDC subset 636 is used, placing fewer demands on USB. 637 638 - CDC Ethernet Emulation Model (EEM) is a newer standard that has 639 a simpler interface that can be used by more USB hardware. 640 641 RNDIS support is an additional option, more demanding than than 642 subset. 643 644 Within the USB device, this gadget driver exposes a network device 645 "usbX", where X depends on what other networking devices you have. 646 Treat it like a two-node Ethernet link: host, and gadget. 647 648 The Linux-USB host-side "usbnet" driver interoperates with this 649 driver, so that deep I/O queues can be supported. On 2.4 kernels, 650 use "CDCEther" instead, if you're using the CDC option. That CDC 651 mode should also interoperate with standard CDC Ethernet class 652 drivers on other host operating systems. 653 654 Say "y" to link the driver statically, or "m" to build a 655 dynamically linked module called "g_ether". 656 657config USB_ETH_RNDIS 658 bool "RNDIS support" 659 depends on USB_ETH 660 select USB_LIBCOMPOSITE 661 default y 662 help 663 Microsoft Windows XP bundles the "Remote NDIS" (RNDIS) protocol, 664 and Microsoft provides redistributable binary RNDIS drivers for 665 older versions of Windows. 666 667 If you say "y" here, the Ethernet gadget driver will try to provide 668 a second device configuration, supporting RNDIS to talk to such 669 Microsoft USB hosts. 670 671 To make MS-Windows work with this, use Documentation/usb/linux.inf 672 as the "driver info file". For versions of MS-Windows older than 673 XP, you'll need to download drivers from Microsoft's website; a URL 674 is given in comments found in that info file. 675 676config USB_ETH_EEM 677 bool "Ethernet Emulation Model (EEM) support" 678 depends on USB_ETH 679 select USB_LIBCOMPOSITE 680 default n 681 help 682 CDC EEM is a newer USB standard that is somewhat simpler than CDC ECM 683 and therefore can be supported by more hardware. Technically ECM and 684 EEM are designed for different applications. The ECM model extends 685 the network interface to the target (e.g. a USB cable modem), and the 686 EEM model is for mobile devices to communicate with hosts using 687 ethernet over USB. For Linux gadgets, however, the interface with 688 the host is the same (a usbX device), so the differences are minimal. 689 690 If you say "y" here, the Ethernet gadget driver will use the EEM 691 protocol rather than ECM. If unsure, say "n". 692 693config USB_G_NCM 694 tristate "Network Control Model (NCM) support" 695 depends on NET 696 select USB_LIBCOMPOSITE 697 select USB_U_ETHER 698 select USB_F_NCM 699 select CRC32 700 help 701 This driver implements USB CDC NCM subclass standard. NCM is 702 an advanced protocol for Ethernet encapsulation, allows grouping 703 of several ethernet frames into one USB transfer and different 704 alignment possibilities. 705 706 Say "y" to link the driver statically, or "m" to build a 707 dynamically linked module called "g_ncm". 708 709config USB_GADGETFS 710 tristate "Gadget Filesystem" 711 help 712 This driver provides a filesystem based API that lets user mode 713 programs implement a single-configuration USB device, including 714 endpoint I/O and control requests that don't relate to enumeration. 715 All endpoints, transfer speeds, and transfer types supported by 716 the hardware are available, through read() and write() calls. 717 718 Say "y" to link the driver statically, or "m" to build a 719 dynamically linked module called "gadgetfs". 720 721config USB_FUNCTIONFS 722 tristate "Function Filesystem" 723 select USB_LIBCOMPOSITE 724 select USB_FUNCTIONFS_GENERIC if !(USB_FUNCTIONFS_ETH || USB_FUNCTIONFS_RNDIS) 725 help 726 The Function Filesystem (FunctionFS) lets one create USB 727 composite functions in user space in the same way GadgetFS 728 lets one create USB gadgets in user space. This allows creation 729 of composite gadgets such that some of the functions are 730 implemented in kernel space (for instance Ethernet, serial or 731 mass storage) and other are implemented in user space. 732 733 If you say "y" or "m" here you will be able what kind of 734 configurations the gadget will provide. 735 736 Say "y" to link the driver statically, or "m" to build 737 a dynamically linked module called "g_ffs". 738 739config USB_FUNCTIONFS_ETH 740 bool "Include configuration with CDC ECM (Ethernet)" 741 depends on USB_FUNCTIONFS && NET 742 select USB_U_ETHER 743 help 744 Include a configuration with CDC ECM function (Ethernet) and the 745 Function Filesystem. 746 747config USB_FUNCTIONFS_RNDIS 748 bool "Include configuration with RNDIS (Ethernet)" 749 depends on USB_FUNCTIONFS && NET 750 select USB_U_ETHER 751 select USB_U_RNDIS 752 help 753 Include a configuration with RNDIS function (Ethernet) and the Filesystem. 754 755config USB_FUNCTIONFS_GENERIC 756 bool "Include 'pure' configuration" 757 depends on USB_FUNCTIONFS 758 help 759 Include a configuration with the Function Filesystem alone with 760 no Ethernet interface. 761 762config USB_MASS_STORAGE 763 tristate "Mass Storage Gadget" 764 depends on BLOCK 765 select USB_LIBCOMPOSITE 766 help 767 The Mass Storage Gadget acts as a USB Mass Storage disk drive. 768 As its storage repository it can use a regular file or a block 769 device (in much the same way as the "loop" device driver), 770 specified as a module parameter or sysfs option. 771 772 This driver is a replacement for now removed File-backed 773 Storage Gadget (g_file_storage). 774 775 Say "y" to link the driver statically, or "m" to build 776 a dynamically linked module called "g_mass_storage". 777 778config USB_GADGET_TARGET 779 tristate "USB Gadget Target Fabric Module" 780 depends on TARGET_CORE 781 select USB_LIBCOMPOSITE 782 help 783 This fabric is an USB gadget. Two USB protocols are supported that is 784 BBB or BOT (Bulk Only Transport) and UAS (USB Attached SCSI). BOT is 785 advertised on alternative interface 0 (primary) and UAS is on 786 alternative interface 1. Both protocols can work on USB2.0 and USB3.0. 787 UAS utilizes the USB 3.0 feature called streams support. 788 789config USB_G_SERIAL 790 tristate "Serial Gadget (with CDC ACM and CDC OBEX support)" 791 depends on TTY 792 select USB_U_SERIAL 793 select USB_F_ACM 794 select USB_F_SERIAL 795 select USB_F_OBEX 796 select USB_LIBCOMPOSITE 797 help 798 The Serial Gadget talks to the Linux-USB generic serial driver. 799 This driver supports a CDC-ACM module option, which can be used 800 to interoperate with MS-Windows hosts or with the Linux-USB 801 "cdc-acm" driver. 802 803 This driver also supports a CDC-OBEX option. You will need a 804 user space OBEX server talking to /dev/ttyGS*, since the kernel 805 itself doesn't implement the OBEX protocol. 806 807 Say "y" to link the driver statically, or "m" to build a 808 dynamically linked module called "g_serial". 809 810 For more information, see Documentation/usb/gadget_serial.txt 811 which includes instructions and a "driver info file" needed to 812 make MS-Windows work with CDC ACM. 813 814config USB_MIDI_GADGET 815 tristate "MIDI Gadget" 816 depends on SND 817 select USB_LIBCOMPOSITE 818 select SND_RAWMIDI 819 help 820 The MIDI Gadget acts as a USB Audio device, with one MIDI 821 input and one MIDI output. These MIDI jacks appear as 822 a sound "card" in the ALSA sound system. Other MIDI 823 connections can then be made on the gadget system, using 824 ALSA's aconnect utility etc. 825 826 Say "y" to link the driver statically, or "m" to build a 827 dynamically linked module called "g_midi". 828 829config USB_G_PRINTER 830 tristate "Printer Gadget" 831 select USB_LIBCOMPOSITE 832 help 833 The Printer Gadget channels data between the USB host and a 834 userspace program driving the print engine. The user space 835 program reads and writes the device file /dev/g_printer to 836 receive or send printer data. It can use ioctl calls to 837 the device file to get or set printer status. 838 839 Say "y" to link the driver statically, or "m" to build a 840 dynamically linked module called "g_printer". 841 842 For more information, see Documentation/usb/gadget_printer.txt 843 which includes sample code for accessing the device file. 844 845if TTY 846 847config USB_CDC_COMPOSITE 848 tristate "CDC Composite Device (Ethernet and ACM)" 849 depends on NET 850 select USB_LIBCOMPOSITE 851 select USB_U_SERIAL 852 select USB_U_ETHER 853 select USB_F_ACM 854 select USB_F_ECM 855 help 856 This driver provides two functions in one configuration: 857 a CDC Ethernet (ECM) link, and a CDC ACM (serial port) link. 858 859 This driver requires four bulk and two interrupt endpoints, 860 plus the ability to handle altsettings. Not all peripheral 861 controllers are that capable. 862 863 Say "y" to link the driver statically, or "m" to build a 864 dynamically linked module. 865 866config USB_G_NOKIA 867 tristate "Nokia composite gadget" 868 depends on PHONET 869 select USB_LIBCOMPOSITE 870 select USB_U_SERIAL 871 select USB_U_ETHER 872 select USB_F_ACM 873 select USB_F_OBEX 874 select USB_F_PHONET 875 select USB_F_ECM 876 help 877 The Nokia composite gadget provides support for acm, obex 878 and phonet in only one composite gadget driver. 879 880 It's only really useful for N900 hardware. If you're building 881 a kernel for N900, say Y or M here. If unsure, say N. 882 883config USB_G_ACM_MS 884 tristate "CDC Composite Device (ACM and mass storage)" 885 depends on BLOCK 886 select USB_LIBCOMPOSITE 887 select USB_U_SERIAL 888 select USB_F_ACM 889 help 890 This driver provides two functions in one configuration: 891 a mass storage, and a CDC ACM (serial port) link. 892 893 Say "y" to link the driver statically, or "m" to build a 894 dynamically linked module called "g_acm_ms". 895 896config USB_G_MULTI 897 tristate "Multifunction Composite Gadget" 898 depends on BLOCK && NET 899 select USB_G_MULTI_CDC if !USB_G_MULTI_RNDIS 900 select USB_LIBCOMPOSITE 901 select USB_U_SERIAL 902 select USB_U_ETHER 903 select USB_U_RNDIS 904 select USB_F_ACM 905 help 906 The Multifunction Composite Gadget provides Ethernet (RNDIS 907 and/or CDC Ethernet), mass storage and ACM serial link 908 interfaces. 909 910 You will be asked to choose which of the two configurations is 911 to be available in the gadget. At least one configuration must 912 be chosen to make the gadget usable. Selecting more than one 913 configuration will prevent Windows from automatically detecting 914 the gadget as a composite gadget, so an INF file will be needed to 915 use the gadget. 916 917 Say "y" to link the driver statically, or "m" to build a 918 dynamically linked module called "g_multi". 919 920config USB_G_MULTI_RNDIS 921 bool "RNDIS + CDC Serial + Storage configuration" 922 depends on USB_G_MULTI 923 default y 924 help 925 This option enables a configuration with RNDIS, CDC Serial and 926 Mass Storage functions available in the Multifunction Composite 927 Gadget. This is the configuration dedicated for Windows since RNDIS 928 is Microsoft's protocol. 929 930 If unsure, say "y". 931 932config USB_G_MULTI_CDC 933 bool "CDC Ethernet + CDC Serial + Storage configuration" 934 depends on USB_G_MULTI 935 default n 936 help 937 This option enables a configuration with CDC Ethernet (ECM), CDC 938 Serial and Mass Storage functions available in the Multifunction 939 Composite Gadget. 940 941 If unsure, say "y". 942 943endif # TTY 944 945config USB_G_HID 946 tristate "HID Gadget" 947 select USB_LIBCOMPOSITE 948 help 949 The HID gadget driver provides generic emulation of USB 950 Human Interface Devices (HID). 951 952 For more information, see Documentation/usb/gadget_hid.txt which 953 includes sample code for accessing the device files. 954 955 Say "y" to link the driver statically, or "m" to build a 956 dynamically linked module called "g_hid". 957 958# Standalone / single function gadgets 959config USB_G_DBGP 960 tristate "EHCI Debug Device Gadget" 961 depends on TTY 962 select USB_LIBCOMPOSITE 963 help 964 This gadget emulates an EHCI Debug device. This is useful when you want 965 to interact with an EHCI Debug Port. 966 967 Say "y" to link the driver statically, or "m" to build a 968 dynamically linked module called "g_dbgp". 969 970if USB_G_DBGP 971choice 972 prompt "EHCI Debug Device mode" 973 default USB_G_DBGP_SERIAL 974 975config USB_G_DBGP_PRINTK 976 depends on USB_G_DBGP 977 bool "printk" 978 help 979 Directly printk() received data. No interaction. 980 981config USB_G_DBGP_SERIAL 982 depends on USB_G_DBGP 983 select USB_U_SERIAL 984 bool "serial" 985 help 986 Userland can interact using /dev/ttyGSxxx. 987endchoice 988endif 989 990# put drivers that need isochronous transfer support (for audio 991# or video class gadget drivers), or specific hardware, here. 992config USB_G_WEBCAM 993 tristate "USB Webcam Gadget" 994 depends on VIDEO_DEV 995 select USB_LIBCOMPOSITE 996 select VIDEOBUF2_VMALLOC 997 help 998 The Webcam Gadget acts as a composite USB Audio and Video Class 999 device. It provides a userspace API to process UVC control requests 1000 and stream video data to the host. 1001 1002 Say "y" to link the driver statically, or "m" to build a 1003 dynamically linked module called "g_webcam". 1004 1005endchoice 1006 1007endif # USB_GADGET 1008