225 lines
9.9 KiB
C
225 lines
9.9 KiB
C
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/**
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* \file firmware/usbconfig.h
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* \brief Configuration options for the USB-driver.
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*
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* This file is almost identical to the original usbconfig.h by Christian
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* Starkjohann, in structure and content.
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*
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* It contains parts of the USB driver which can be configured and can or must
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* be adapted to your hardware.
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* \author Ronald Schaten <ronald@schatenseite.de>
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* \version $Id: usbconfig.h,v 1.1 2008/07/09 20:47:12 rschaten Exp $
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*
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* License: GNU GPL v2 (see License.txt)
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*/
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#ifndef __usbconfig_h_included__
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#define __usbconfig_h_included__
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/* ---------------------------- Hardware Config ---------------------------- */
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/** This is the port where the USB bus is connected. When you configure it to
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* "B", the registers PORTB, PINB and DDRB will be used.
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*/
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#define USB_CFG_IOPORTNAME D
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/** This is the bit number in USB_CFG_IOPORT where the USB D- line is connected.
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* This may be any bit in the port.
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*/
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#define USB_CFG_DMINUS_BIT 0
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/** This is the bit number in USB_CFG_IOPORT where the USB D+ line is connected.
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* This may be any bit in the port. Please note that D+ must also be connected
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* to interrupt pin INT0!
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*/
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#define USB_CFG_DPLUS_BIT 2
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/* ----------------------- Optional Hardware Config ------------------------ */
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/* If you connect the 1.5k pullup resistor from D- to a port pin instead of
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* V+, you can connect and disconnect the device from firmware by calling
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* the macros usbDeviceConnect() and usbDeviceDisconnect() (see usbdrv.h).
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* This constant defines the port on which the pullup resistor is connected.
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*/
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/* #define USB_CFG_PULLUP_IOPORTNAME D */
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/* This constant defines the bit number in USB_CFG_PULLUP_IOPORT (defined
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* above) where the 1.5k pullup resistor is connected. See description
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* above for details.
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*/
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/* #define USB_CFG_PULLUP_BIT 4 */
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/* --------------------------- Functional Range ---------------------------- */
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/** Define this to 1 if you want to compile a version with two endpoints: The
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* default control endpoint 0 and an interrupt-in endpoint 1.
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*/
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#define USB_CFG_HAVE_INTRIN_ENDPOINT 1
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/** Define this to 1 if you want to compile a version with three endpoints: The
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* default control endpoint 0, an interrupt-in endpoint 1 and an interrupt-in
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* endpoint 3. You must also enable endpoint 1 above.
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*/
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#define USB_CFG_HAVE_INTRIN_ENDPOINT3 0
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/** Define this to 1 if you also want to implement the ENDPOINT_HALT feature
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* for endpoint 1 (interrupt endpoint). Although you may not need this feature,
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* it is required by the standard. We have made it a config option because it
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* bloats the code considerably.
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*/
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#define USB_CFG_IMPLEMENT_HALT 0
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/** If you compile a version with endpoint 1 (interrupt-in), this is the poll
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* interval. The value is in milliseconds and must not be less than 10 ms for
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* low speed devices.
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*/
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#define USB_CFG_INTR_POLL_INTERVAL 10
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/** Define this to 1 if the device has its own power supply. Set it to 0 if the
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* device is powered from the USB bus.
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*/
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#define USB_CFG_IS_SELF_POWERED 0
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/** Set this variable to the maximum USB bus power consumption of your device.
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* The value is in milliamperes. [It will be divided by two since USB
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* communicates power requirements in units of 2 mA.]
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*/
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#define USB_CFG_MAX_BUS_POWER 100
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/** Set this to 1 if you want usbFunctionWrite() to be called for control-out
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* transfers. Set it to 0 if you don't need it and want to save a couple of
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* bytes.
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*/
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#define USB_CFG_IMPLEMENT_FN_WRITE 1
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/** Set this to 1 if you need to send control replies which are generated
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* "on the fly" when usbFunctionRead() is called. If you only want to send
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* data from a static buffer, set it to 0 and return the data from
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* usbFunctionSetup(). This saves a couple of bytes.
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*/
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#define USB_CFG_IMPLEMENT_FN_READ 0
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/** Define this to 1 if you want to use interrupt-out (or bulk out) endpoint 1.
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* You must implement the function usbFunctionWriteOut() which receives all
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* interrupt/bulk data sent to endpoint 1.
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*/
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#define USB_CFG_IMPLEMENT_FN_WRITEOUT 0
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/** Define this to 1 if you want flowcontrol over USB data. See the definition
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* of the macros usbDisableAllRequests() and usbEnableAllRequests() in
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* usbdrv.h.
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*/
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#define USB_CFG_HAVE_FLOWCONTROL 0
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/* -------------------------- Device Description --------------------------- */
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/** We cannot use Obdev's free shared VID/PID pair because this is a HID.
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* We use John Hyde's VID (author of the book "USB Design By Example") for
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* this example instead. John has offered this VID for use by students for
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* non-commercial devices. Well... This example is for demonstration and
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* education only... DO NOT LET DEVICES WITH THIS VID ESCAPE YOUR LAB!
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* The Product-ID is a random number.
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*
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* USB vendor ID for the device, low byte first. If you have registered your
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* own Vendor ID, define it here. Otherwise you use obdev's free shared
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* VID/PID pair. Be sure to read USBID-License.txt for rules!
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*/
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#define USB_CFG_VENDOR_ID 0x42, 0x42
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/** This is the ID of the product, low byte first. It is interpreted in the
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* scope of the vendor ID. If you have registered your own VID with usb.org
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* or if you have licensed a PID from somebody else, define it here. Otherwise
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* you use obdev's free shared VID/PID pair. Be sure to read the rules in
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* USBID-License.txt!
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*/
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#define USB_CFG_DEVICE_ID 0x31, 0xe1
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/** Version number of the device: Minor number first, then major number.
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*/
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#define USB_CFG_DEVICE_VERSION 0x00, 0x01
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/** These two values define the vendor name returned by the USB device. The name
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* must be given as a list of characters under single quotes. The characters
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* are interpreted as Unicode (UTF-16) entities.
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* If you don't want a vendor name string, undefine these macros.
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* ALWAYS define a vendor name containing your Internet domain name if you use
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* obdev's free shared VID/PID pair. See the file USBID-License.txt for
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* details.
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*/
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#define USB_CFG_VENDOR_NAME 'w', 'w', 'w', '.', 's', 'c', 'h', 'a', 't', 'e', 'n', 's', 'e', 'i', 't', 'e', '.', 'd', 'e'
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/** Length of USB_CFG_DEVICE_VERSION
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*/
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#define USB_CFG_VENDOR_NAME_LEN 19
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/** Same as above for the device name. If you don't want a device name, undefine
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* the macros. See the file USBID-License.txt before you assign a name.
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*/
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#define USB_CFG_DEVICE_NAME 'D', 'u', 'l', 'c', 'i', 'm', 'e', 'r'
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/** Length of USB_CFG_DEVICE_NAME
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*/
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#define USB_CFG_DEVICE_NAME_LEN 8
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/** See USB specification if you want to conform to an existing device class.
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* This setting means to specify the class at the interface level.
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*/
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#define USB_CFG_DEVICE_CLASS 0
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/** See USB specification if you want to conform to an existing device subclass.
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*/
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#define USB_CFG_DEVICE_SUBCLASS 0
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/** See USB specification if you want to conform to an existing device class or
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* protocol. This is HID class.
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*/
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#define USB_CFG_INTERFACE_CLASS 0x03
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/** See USB specification if you want to conform to an existing device class or
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* protocol. This is a boot device.
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*/
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#define USB_CFG_INTERFACE_SUBCLASS 0x01
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/** See USB specification if you want to conform to an existing device class or
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* protocol. This is keyboard protocol.
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*/
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#define USB_CFG_INTERFACE_PROTOCOL 0x01
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/** Define this to the length of the HID report descriptor, if you implement
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* an HID device. Otherwise don't define it or define it to 0.
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*/
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#define USB_CFG_HID_REPORT_DESCRIPTOR_LENGTH 63
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/* ------------------- Fine Control over USB Descriptors ------------------- */
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/* If you don't want to use the driver's default USB descriptors, you can
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* provide our own. These can be provided as (1) fixed length static data in
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* flash memory, (2) fixed length static data in RAM or (3) dynamically at
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* runtime in the function usbFunctionDescriptor(). See usbdrv.h for more
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* information about this function.
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* Descriptor handling is configured through the descriptor's properties. If
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* no properties are defined or if they are 0, the default descriptor is used.
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* Possible properties are:
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* + USB_PROP_IS_DYNAMIC: The data for the descriptor should be fetched
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* at runtime via usbFunctionDescriptor().
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* + USB_PROP_IS_RAM: The data returned by usbFunctionDescriptor() or found
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* in static memory is in RAM, not in flash memory.
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* + USB_PROP_LENGTH(len): If the data is in static memory (RAM or flash),
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* the driver must know the descriptor's length. The descriptor itself is
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* found at the address of a well known identifier (see below).
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* List of static descriptor names (must be declared PROGMEM if in flash):
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* char usbDescriptorDevice[];
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* char usbDescriptorConfiguration[];
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* char usbDescriptorHidReport[];
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* char usbDescriptorString0[];
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* int usbDescriptorStringVendor[];
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* int usbDescriptorStringDevice[];
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* int usbDescriptorStringSerialNumber[];
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* Other descriptors can't be provided statically, they must be provided
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* dynamically at runtime.
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*
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* Descriptor properties are or-ed or added together, e.g.:
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* #define USB_CFG_DESCR_PROPS_DEVICE (USB_PROP_IS_RAM | USB_PROP_LENGTH(18))
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*
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* The following descriptors are defined:
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* USB_CFG_DESCR_PROPS_DEVICE
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* USB_CFG_DESCR_PROPS_CONFIGURATION
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* USB_CFG_DESCR_PROPS_STRINGS
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* USB_CFG_DESCR_PROPS_STRING_0
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* USB_CFG_DESCR_PROPS_STRING_VENDOR
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* USB_CFG_DESCR_PROPS_STRING_PRODUCT
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* USB_CFG_DESCR_PROPS_STRING_SERIAL_NUMBER
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* USB_CFG_DESCR_PROPS_HID
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* USB_CFG_DESCR_PROPS_HID_REPORT
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* USB_CFG_DESCR_PROPS_UNKNOWN (for all descriptors not handled by the driver)
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*
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*/
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#define USB_CFG_DESCR_PROPS_DEVICE 0
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#define USB_CFG_DESCR_PROPS_CONFIGURATION 0
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#define USB_CFG_DESCR_PROPS_STRINGS 0
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#define USB_CFG_DESCR_PROPS_STRING_0 0
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#define USB_CFG_DESCR_PROPS_STRING_VENDOR 0
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#define USB_CFG_DESCR_PROPS_STRING_PRODUCT 0
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#define USB_CFG_DESCR_PROPS_STRING_SERIAL_NUMBER 0
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#define USB_CFG_DESCR_PROPS_HID 0
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#define USB_CFG_DESCR_PROPS_HID_REPORT 0
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#define USB_CFG_DESCR_PROPS_UNKNOWN 0
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#endif /* __usbconfig_h_included__ */
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