usbconfig.h 16 KB

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  1. /* Name: usbconfig.h
  2. * Project: V-USB, virtual USB port for Atmel's(r) AVR(r) microcontrollers
  3. * Author: Christian Starkjohann
  4. * Creation Date: 2005-04-01
  5. * Tabsize: 4
  6. * Copyright: (c) 2005 by OBJECTIVE DEVELOPMENT Software GmbH
  7. * License: GNU GPL v2 or v3 (see License.txt)
  8. */
  9. /* Modified by me@frank-zhao.com for project GemmaBoot
  10. *
  11. * GemmaBoot is a bootloader that emulates a USBtinyISP (from Adafruit Industries)
  12. *
  13. * Gemma will use GemmaBoot
  14. *
  15. * This code is heavily derived from USBaspLoader, but also from USBtiny, with USBtinyISP's settings
  16. Copyright (c) 2013 Adafruit Industries
  17. All rights reserved.
  18. GemmaBoot is free software: you can redistribute it and/or modify
  19. it under the terms of the GNU Lesser General Public License as
  20. published by the Free Software Foundation, either version 3 of
  21. the License, or (at your option) any later version.
  22. GemmaBoot is distributed in the hope that it will be useful,
  23. but WITHOUT ANY WARRANTY; without even the implied warranty of
  24. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  25. GNU Lesser General Public License for more details.
  26. You should have received a copy of the GNU Lesser General Public
  27. License along with GemmaBoot. If not, see
  28. <http://www.gnu.org/licenses/>.
  29. */
  30. #ifndef __usbconfig_h_included__
  31. #define __usbconfig_h_included__
  32. /* YOU SHOULD NOT NEED TO MODIFY THIS FILE! All configurations are supposed
  33. * to go into bootloaderconfig.h!
  34. */
  35. /* ---------------------------- Hardware Config ---------------------------- */
  36. /* All the port and pin assignments, as well as the clock speed and CRC
  37. setting are now in bootloaderconfig.h: */
  38. #include "bootloaderconfig.h"
  39. /* --------------------------- Functional Range ---------------------------- */
  40. #define USB_CFG_HAVE_INTRIN_ENDPOINT 0
  41. /* Define this to 1 if you want to compile a version with two endpoints: The
  42. * default control endpoint 0 and an interrupt-in endpoint (any other endpoint
  43. * number).
  44. */
  45. #define USB_CFG_HAVE_INTRIN_ENDPOINT3 0
  46. /* Define this to 1 if you want to compile a version with three endpoints: The
  47. * default control endpoint 0, an interrupt-in endpoint 3 (or the number
  48. * configured below) and a catch-all default interrupt-in endpoint as above.
  49. * You must also define USB_CFG_HAVE_INTRIN_ENDPOINT to 1 for this feature.
  50. */
  51. #define USB_CFG_EP3_NUMBER 3
  52. /* If the so-called endpoint 3 is used, it can now be configured to any other
  53. * endpoint number (except 0) with this macro. Default if undefined is 3.
  54. */
  55. /* #define USB_INITIAL_DATATOKEN USBPID_DATA1 */
  56. /* The above macro defines the startup condition for data toggling on the
  57. * interrupt/bulk endpoints 1 and 3. Defaults to USBPID_DATA1.
  58. * Since the token is toggled BEFORE sending any data, the first packet is
  59. * sent with the oposite value of this configuration!
  60. */
  61. #define USB_CFG_IMPLEMENT_HALT 0
  62. /* Define this to 1 if you also want to implement the ENDPOINT_HALT feature
  63. * for endpoint 1 (interrupt endpoint). Although you may not need this feature,
  64. * it is required by the standard. We have made it a config option because it
  65. * bloats the code considerably.
  66. */
  67. #define USB_CFG_SUPPRESS_INTR_CODE 0
  68. /* Define this to 1 if you want to declare interrupt-in endpoints, but don't
  69. * want to send any data over them. If this macro is defined to 1, functions
  70. * usbSetInterrupt() and usbSetInterrupt3() are omitted. This is useful if
  71. * you need the interrupt-in endpoints in order to comply to an interface
  72. * (e.g. HID), but never want to send any data. This option saves a couple
  73. * of bytes in flash memory and the transmit buffers in RAM.
  74. */
  75. #define USB_CFG_INTR_POLL_INTERVAL 10
  76. /* If you compile a version with endpoint 1 (interrupt-in), this is the poll
  77. * interval. The value is in milliseconds and must not be less than 10 ms for
  78. * low speed devices.
  79. */
  80. #ifndef USB_CFG_IS_SELF_POWERED // allow bootloaderconfig.h to override
  81. #define USB_CFG_IS_SELF_POWERED 0
  82. #endif
  83. /* Define this to 1 if the device has its own power supply. Set it to 0 if the
  84. * device is powered from the USB bus.
  85. */
  86. #ifndef USB_CFG_MAX_BUS_POWER // allow bootloaderconfig.h to override
  87. #define USB_CFG_MAX_BUS_POWER 100
  88. #endif
  89. /* Set this variable to the maximum USB bus power consumption of your device.
  90. * The value is in milliamperes. [It will be divided by two since USB
  91. * communicates power requirements in units of 2 mA.]
  92. */
  93. #define USB_CFG_IMPLEMENT_FN_WRITE 1
  94. /* Set this to 1 if you want usbFunctionWrite() to be called for control-out
  95. * transfers. Set it to 0 if you don't need it and want to save a couple of
  96. * bytes.
  97. */
  98. #define USB_CFG_IMPLEMENT_FN_READ 1
  99. /* Set this to 1 if you need to send control replies which are generated
  100. * "on the fly" when usbFunctionRead() is called. If you only want to send
  101. * data from a static buffer, set it to 0 and return the data from
  102. * usbFunctionSetup(). This saves a couple of bytes.
  103. */
  104. #define USB_CFG_IMPLEMENT_FN_WRITEOUT 0
  105. /* Define this to 1 if you want to use interrupt-out (or bulk out) endpoints.
  106. * You must implement the function usbFunctionWriteOut() which receives all
  107. * interrupt/bulk data sent to any endpoint other than 0. The endpoint number
  108. * can be found in 'usbRxToken'.
  109. */
  110. #define USB_CFG_HAVE_FLOWCONTROL 0
  111. /* Define this to 1 if you want flowcontrol over USB data. See the definition
  112. * of the macros usbDisableAllRequests() and usbEnableAllRequests() in
  113. * usbdrv.h.
  114. */
  115. #define USB_CFG_DRIVER_FLASH_PAGE 0
  116. /* If the device has more than 64 kBytes of flash, define this to the 64 k page
  117. * where the driver's constants (descriptors) are located. Or in other words:
  118. * Define this to 1 for boot loaders on the ATMega128.
  119. */
  120. #define USB_CFG_LONG_TRANSFERS 0
  121. /* Define this to 1 if you want to send/receive blocks of more than 254 bytes
  122. * in a single control-in or control-out transfer. Note that the capability
  123. * for long transfers increases the driver size.
  124. */
  125. #ifndef __ASSEMBLER__
  126. extern volatile char usbHasRxed;
  127. #endif
  128. #define USB_RX_USER_HOOK(data, len) do { usbHasRxed = 1; } while (0);
  129. /* This macro is a hook if you want to do unconventional things. If it is
  130. * defined, it's inserted at the beginning of received message processing.
  131. * If you eat the received message and don't want default processing to
  132. * proceed, do a return after doing your things. One possible application
  133. * (besides debugging) is to flash a status LED on each packet.
  134. */
  135. /* #define USB_RESET_HOOK(resetStarts) if(!resetStarts){hadUsbReset();} */
  136. /* This macro is a hook if you need to know when an USB RESET occurs. It has
  137. * one parameter which distinguishes between the start of RESET state and its
  138. * end.
  139. */
  140. /* #define USB_SET_ADDRESS_HOOK() hadAddressAssigned(); */
  141. /* This macro (if defined) is executed when a USB SET_ADDRESS request was
  142. * received.
  143. */
  144. #define USB_COUNT_SOF 0
  145. /* define this macro to 1 if you need the global variable "usbSofCount" which
  146. * counts SOF packets. This feature requires that the hardware interrupt is
  147. * connected to D- instead of D+.
  148. */
  149. /* #ifdef __ASSEMBLER__
  150. * macro myAssemblerMacro
  151. * in YL, TCNT0
  152. * sts timer0Snapshot, YL
  153. * endm
  154. * #endif
  155. * #define USB_SOF_HOOK myAssemblerMacro
  156. * This macro (if defined) is executed in the assembler module when a
  157. * Start Of Frame condition is detected. It is recommended to define it to
  158. * the name of an assembler macro which is defined here as well so that more
  159. * than one assembler instruction can be used. The macro may use the register
  160. * YL and modify SREG. If it lasts longer than a couple of cycles, USB messages
  161. * immediately after an SOF pulse may be lost and must be retried by the host.
  162. * What can you do with this hook? Since the SOF signal occurs exactly every
  163. * 1 ms (unless the host is in sleep mode), you can use it to tune OSCCAL in
  164. * designs running on the internal RC oscillator.
  165. * Please note that Start Of Frame detection works only if D- is wired to the
  166. * interrupt, not D+. THIS IS DIFFERENT THAN MOST EXAMPLES!
  167. */
  168. #define USB_CFG_CHECK_DATA_TOGGLING 0
  169. /* define this macro to 1 if you want to filter out duplicate data packets
  170. * sent by the host. Duplicates occur only as a consequence of communication
  171. * errors, when the host does not receive an ACK. Please note that you need to
  172. * implement the filtering yourself in usbFunctionWriteOut() and
  173. * usbFunctionWrite(). Use the global usbCurrentDataToken and a static variable
  174. * for each control- and out-endpoint to check for duplicate packets.
  175. */
  176. #define USB_CFG_HAVE_MEASURE_FRAME_LENGTH 1
  177. /* define this macro to 1 if you want the function usbMeasureFrameLength()
  178. * compiled in. This function can be used to calibrate the AVR's RC oscillator.
  179. */
  180. #define USB_USE_FAST_CRC 0
  181. /* The assembler module has two implementations for the CRC algorithm. One is
  182. * faster, the other is smaller. This CRC routine is only used for transmitted
  183. * messages where timing is not critical. The faster routine needs 31 cycles
  184. * per byte while the smaller one needs 61 to 69 cycles. The faster routine
  185. * may be worth the 32 bytes bigger code size if you transmit lots of data and
  186. * run the AVR close to its limit.
  187. */
  188. /* -------------------------- Device Description --------------------------- */
  189. #define USB_CFG_VENDOR_ID 0x41, 0x23 /* = 0x16c0 = 5824 = voti.nl */
  190. /* USB vendor ID for the device, low byte first. If you have registered your
  191. * own Vendor ID, define it here. Otherwise you may use one of obdev's free
  192. * shared VID/PID pairs. Be sure to read USB-IDs-for-free.txt for rules!
  193. */
  194. #define USB_CFG_DEVICE_ID 0x9F, 0x0c /* = 0x05dc = 1500 */
  195. /* This is the ID of the product, low byte first. It is interpreted in the
  196. * scope of the vendor ID. If you have registered your own VID with usb.org
  197. * or if you have licensed a PID from somebody else, define it here. Otherwise
  198. * you may use one of obdev's free shared VID/PID pairs. See the file
  199. * USB-IDs-for-free.txt for details!
  200. */
  201. #define USB_CFG_DEVICE_VERSION 0x00, 0x01
  202. /* Version number of the device: Minor number first, then major number.
  203. */
  204. #define USB_CFG_VENDOR_NAME 'A','r','d','u','i','n','o','.','c','c'
  205. #define USB_CFG_VENDOR_NAME_LEN 10
  206. /* These two values define the vendor name returned by the USB device. The name
  207. * must be given as a list of characters under single quotes. The characters
  208. * are interpreted as Unicode (UTF-16) entities.
  209. * If you don't want a vendor name string, undefine these macros.
  210. * ALWAYS define a vendor name containing your Internet domain name if you use
  211. * obdev's free shared VID/PID pair. See the file USB-IDs-for-free.txt for
  212. * details.
  213. */
  214. #define USB_CFG_DEVICE_NAME 'G','e','m','m','a'
  215. #define USB_CFG_DEVICE_NAME_LEN 5
  216. /* Same as above for the device name. If you don't want a device name, undefine
  217. * the macros. See the file USB-IDs-for-free.txt before you assign a name if
  218. * you use a shared VID/PID.
  219. */
  220. /*#define USB_CFG_SERIAL_NUMBER 'N', 'o', 'n', 'e' */
  221. /*#define USB_CFG_SERIAL_NUMBER_LEN 0 */
  222. /* Same as above for the serial number. If you don't want a serial number,
  223. * undefine the macros.
  224. * It may be useful to provide the serial number through other means than at
  225. * compile time. See the section about descriptor properties below for how
  226. * to fine tune control over USB descriptors such as the string descriptor
  227. * for the serial number.
  228. */
  229. #define USB_CFG_DEVICE_CLASS 0xFF /* set to 0 if deferred to interface */
  230. #define USB_CFG_DEVICE_SUBCLASS 0
  231. /* See USB specification if you want to conform to an existing device class.
  232. * Class 0xff is "vendor specific".
  233. */
  234. #define USB_CFG_INTERFACE_CLASS 0 /* define class here if not at device level */
  235. #define USB_CFG_INTERFACE_SUBCLASS 0
  236. #define USB_CFG_INTERFACE_PROTOCOL 0
  237. /* See USB specification if you want to conform to an existing device class or
  238. * protocol. The following classes must be set at interface level:
  239. * HID class is 3, no subclass and protocol required (but may be useful!)
  240. * CDC class is 2, use subclass 2 and protocol 1 for ACM
  241. */
  242. /* #define USB_CFG_HID_REPORT_DESCRIPTOR_LENGTH 42 */
  243. /* Define this to the length of the HID report descriptor, if you implement
  244. * an HID device. Otherwise don't define it or define it to 0.
  245. * If you use this define, you must add a PROGMEM character array named
  246. * "usbHidReportDescriptor" to your code which contains the report descriptor.
  247. * Don't forget to keep the array and this define in sync!
  248. */
  249. #define USB_PUBLIC static
  250. /* Use the define above if you #include usbdrv.c instead of linking against it.
  251. * This technique saves a couple of bytes in flash memory.
  252. */
  253. /* ------------------- Fine Control over USB Descriptors ------------------- */
  254. /* If you don't want to use the driver's default USB descriptors, you can
  255. * provide our own. These can be provided as (1) fixed length static data in
  256. * flash memory, (2) fixed length static data in RAM or (3) dynamically at
  257. * runtime in the function usbFunctionDescriptor(). See usbdrv.h for more
  258. * information about this function.
  259. * Descriptor handling is configured through the descriptor's properties. If
  260. * no properties are defined or if they are 0, the default descriptor is used.
  261. * Possible properties are:
  262. * + USB_PROP_IS_DYNAMIC: The data for the descriptor should be fetched
  263. * at runtime via usbFunctionDescriptor(). If the usbMsgPtr mechanism is
  264. * used, the data is in FLASH by default. Add property USB_PROP_IS_RAM if
  265. * you want RAM pointers.
  266. * + USB_PROP_IS_RAM: The data returned by usbFunctionDescriptor() or found
  267. * in static memory is in RAM, not in flash memory.
  268. * + USB_PROP_LENGTH(len): If the data is in static memory (RAM or flash),
  269. * the driver must know the descriptor's length. The descriptor itself is
  270. * found at the address of a well known identifier (see below).
  271. * List of static descriptor names (must be declared PROGMEM if in flash):
  272. * char usbDescriptorDevice[];
  273. * char usbDescriptorConfiguration[];
  274. * char usbDescriptorHidReport[];
  275. * char usbDescriptorString0[];
  276. * int usbDescriptorStringVendor[];
  277. * int usbDescriptorStringDevice[];
  278. * int usbDescriptorStringSerialNumber[];
  279. * Other descriptors can't be provided statically, they must be provided
  280. * dynamically at runtime.
  281. *
  282. * Descriptor properties are or-ed or added together, e.g.:
  283. * #define USB_CFG_DESCR_PROPS_DEVICE (USB_PROP_IS_RAM | USB_PROP_LENGTH(18))
  284. *
  285. * The following descriptors are defined:
  286. * USB_CFG_DESCR_PROPS_DEVICE
  287. * USB_CFG_DESCR_PROPS_CONFIGURATION
  288. * USB_CFG_DESCR_PROPS_STRINGS
  289. * USB_CFG_DESCR_PROPS_STRING_0
  290. * USB_CFG_DESCR_PROPS_STRING_VENDOR
  291. * USB_CFG_DESCR_PROPS_STRING_PRODUCT
  292. * USB_CFG_DESCR_PROPS_STRING_SERIAL_NUMBER
  293. * USB_CFG_DESCR_PROPS_HID
  294. * USB_CFG_DESCR_PROPS_HID_REPORT
  295. * USB_CFG_DESCR_PROPS_UNKNOWN (for all descriptors not handled by the driver)
  296. *
  297. * Note about string descriptors: String descriptors are not just strings, they
  298. * are Unicode strings prefixed with a 2 byte header. Example:
  299. * int serialNumberDescriptor[] = {
  300. * USB_STRING_DESCRIPTOR_HEADER(6),
  301. * 'S', 'e', 'r', 'i', 'a', 'l'
  302. * };
  303. */
  304. #define USB_CFG_DESCR_PROPS_DEVICE 0
  305. #define USB_CFG_DESCR_PROPS_CONFIGURATION 0
  306. #define USB_CFG_DESCR_PROPS_STRINGS 0
  307. #define USB_CFG_DESCR_PROPS_STRING_0 0
  308. #define USB_CFG_DESCR_PROPS_STRING_VENDOR 0
  309. #define USB_CFG_DESCR_PROPS_STRING_PRODUCT 0
  310. #define USB_CFG_DESCR_PROPS_STRING_SERIAL_NUMBER 0
  311. #define USB_CFG_DESCR_PROPS_HID 0
  312. #define USB_CFG_DESCR_PROPS_HID_REPORT 0
  313. #define USB_CFG_DESCR_PROPS_UNKNOWN 0
  314. #define usbMsgPtr_t unsigned short // scalar type yields shortest code
  315. /* ----------------------- Optional MCU Description ------------------------ */
  316. /* The following configurations have working defaults in usbdrv.h. You
  317. * usually don't need to set them explicitly. Only if you want to run
  318. * the driver on a device which is not yet supported or with a compiler
  319. * which is not fully supported (such as IAR C) or if you use a differnt
  320. * interrupt than INT0, you may have to define some of these.
  321. */
  322. #define USB_INTR_CFG PCMSK
  323. #define USB_INTR_CFG_SET (1 << USB_CFG_DPLUS_BIT)
  324. #define USB_INTR_CFG_CLR 0
  325. #define USB_INTR_ENABLE GIMSK
  326. #define USB_INTR_ENABLE_BIT PCIE
  327. #define USB_INTR_PENDING GIFR
  328. #define USB_INTR_PENDING_BIT PCIF
  329. #define USB_INTR_VECTOR PCINT0_vect
  330. #endif /* __usbconfig_h_included__ */