2 * at91sam7s USB CDC device implementation
4 * Copyright (c) 2012, Roel Verdult
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * 3. Neither the name of the copyright holders nor the
15 * names of its contributors may be used to endorse or promote products
16 * derived from this software without specific prior written permission.
18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS ''AS IS'' AND ANY
19 * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
20 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
21 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY
22 * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
23 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
24 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
25 * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
27 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 * based on the "Basic USB Example" from ATMEL (doc6123.pdf)
42 #include "at91sam7s512.h"
43 #include "config_gpio.h"
45 #define AT91C_EP_CONTROL 0
46 #define AT91C_EP_OUT 1
48 #define AT91C_EP_NOTIFY 3
49 #define AT91C_EP_OUT_SIZE 0x40
50 #define AT91C_EP_IN_SIZE 0x40
52 // Language must always be 0.
53 #define STR_LANGUAGE_CODES 0x00
54 #define STR_MANUFACTURER 0x01
55 #define STR_PRODUCT 0x02
58 static const char devDescriptor
[] = {
59 /* Device descriptor */
61 0x01, // bDescriptorType
62 0x00,0x02, // Complies with USB Spec. Release (0200h = release 2.0)
63 0x02, // bDeviceClass: (Communication Device Class)
64 0x00, // bDeviceSubclass: (unused at this time)
65 0x00, // bDeviceProtocol: (unused at this time)
66 0x08, // bMaxPacketSize0
67 0xc4,0x9a, // Vendor ID (0x9ac4 = J. Westhues)
68 0x8f,0x4b, // Product ID (0x4b8f = Proxmark-3 RFID Instrument)
69 0x01,0x00, // Device release number (0001)
70 STR_MANUFACTURER
, // iManufacturer
71 STR_PRODUCT
, // iProduct
72 0x00, // iSerialNumber
77 static const char cfgDescriptor
[] = {
78 /* ============== CONFIGURATION 1 =========== */
79 /* Configuration 1 descriptor */
81 0x02, // CbDescriptorType
82 0x43, // CwTotalLength 2 EP + Control
84 0x02, // CbNumInterfaces
85 0x01, // CbConfigurationValue
86 0x00, // CiConfiguration
87 0x80, // CbmAttributes (Bus Powered)
88 0x4B, // CMaxPower (150mA max current drawn from bus)
90 /* Interface 0 Descriptor: Communication Class Interface */
92 0x04, // bDescriptorType
93 0x00, // bInterfaceNumber
94 0x00, // bAlternateSetting
95 0x01, // bNumEndpoints
96 0x02, // bInterfaceClass: Communication Interface Class
97 0x02, // bInterfaceSubclass: Abstract Control Model
98 0x01, // bInterfaceProtocol: Common AT Commands, V.25ter
101 /* Header Functional Descriptor */
102 0x05, // bFunction Length
103 0x24, // bDescriptor type: CS_INTERFACE
104 0x00, // bDescriptor subtype: Header Functional Descriptor
108 /* ACM Functional Descriptor */
109 0x04, // bFunctionLength
110 0x24, // bDescriptor Type: CS_INTERFACE
111 0x02, // bDescriptor Subtype: Abstract Control Management Functional Descriptor
112 0x02, // bmCapabilities: D1: Device supports the request combination of Set_Line_Coding, Set_Control_Line_State, Get_Line_Coding, and the notification Serial_State
114 /* Union Functional Descriptor */
115 0x05, // bFunctionLength
116 0x24, // bDescriptorType: CS_INTERFACE
117 0x06, // bDescriptor Subtype: Union Functional Descriptor
118 0x00, // bMasterInterface: Communication Class Interface
119 0x01, // bSlaveInterface0: Data Class Interface
121 /* Call Management Functional Descriptor */
122 0x05, // bFunctionLength
123 0x24, // bDescriptor Type: CS_INTERFACE
124 0x01, // bDescriptor Subtype: Call Management Functional Descriptor
125 0x00, // bmCapabilities: Device sends/receives call management information only over the Communication Class interface. Device does not handle call management itself
126 0x01, // bDataInterface: Data Class Interface 1
128 /* Endpoint 1 descriptor */
130 0x05, // bDescriptorType
131 0x83, // bEndpointAddress: Endpoint 03 - IN
132 0x03, // bmAttributes: INT
133 0x08, // wMaxPacketSize: 8
137 /* Interface 1 Descriptor: Data Class Interface */
139 0x04, // bDescriptorType
140 0x01, // bInterfaceNumber
141 0x00, // bAlternateSetting
142 0x02, // bNumEndpoints
143 0x0A, // bInterfaceClass: Data Interface Class
144 0x00, // bInterfaceSubclass: not used
145 0x00, // bInterfaceProtocol: No class specific protocol required)
148 /* Endpoint 1 descriptor */
150 0x05, // bDescriptorType
151 0x01, // bEndpointAddress: Endpoint 01 - OUT
152 0x02, // bmAttributes: BULK
153 AT91C_EP_OUT_SIZE
, // wMaxPacketSize
157 /* Endpoint 2 descriptor */
159 0x05, // bDescriptorType
160 0x82, // bEndpointAddress: Endpoint 02 - IN
161 0x02, // bmAttributes: BULK
162 AT91C_EP_IN_SIZE
, // wMaxPacketSize
168 static const char StrDescLanguageCodes
[] = {
170 0x03, // Type is string
171 0x09, 0x04 // supported language Code 0 = 0x0409 (English)
175 // Note: ModemManager (Linux) ignores Proxmark3 devices by matching the
176 // manufacturer string "proxmark.org". Don't change this.
177 static const char StrDescManufacturer
[] = {
179 0x03, // Type is string
195 static const char StrDescProduct
[] = {
197 0x03, // Type is string
210 const char* getStringDescriptor(uint8_t idx
) {
212 case STR_LANGUAGE_CODES
:
213 return StrDescLanguageCodes
;
214 case STR_MANUFACTURER
:
215 return StrDescManufacturer
;
217 return StrDescProduct
;
224 // Bitmap for all status bits in CSR which must be written as 1 to cause no effect
225 #define REG_NO_EFFECT_1_ALL AT91C_UDP_RX_DATA_BK0 | AT91C_UDP_RX_DATA_BK1 \
226 |AT91C_UDP_STALLSENT | AT91C_UDP_RXSETUP \
230 // Clear flags in the UDP_CSR register
231 #define UDP_CLEAR_EP_FLAGS(endpoint, flags) { \
232 volatile unsigned int reg; \
233 reg = pUdp->UDP_CSR[(endpoint)]; \
234 reg |= REG_NO_EFFECT_1_ALL; \
236 pUdp->UDP_CSR[(endpoint)] = reg; \
240 // Set flags in the UDP_CSR register
241 #define UDP_SET_EP_FLAGS(endpoint, flags) { \
242 volatile unsigned int reg; \
243 reg = pUdp->UDP_CSR[(endpoint)]; \
244 reg |= REG_NO_EFFECT_1_ALL; \
246 pUdp->UDP_CSR[(endpoint)] = reg; \
250 /* USB standard request codes */
251 #define STD_GET_STATUS_ZERO 0x0080
252 #define STD_GET_STATUS_INTERFACE 0x0081
253 #define STD_GET_STATUS_ENDPOINT 0x0082
255 #define STD_CLEAR_FEATURE_ZERO 0x0100
256 #define STD_CLEAR_FEATURE_INTERFACE 0x0101
257 #define STD_CLEAR_FEATURE_ENDPOINT 0x0102
259 #define STD_SET_FEATURE_ZERO 0x0300
260 #define STD_SET_FEATURE_INTERFACE 0x0301
261 #define STD_SET_FEATURE_ENDPOINT 0x0302
263 #define STD_SET_ADDRESS 0x0500
264 #define STD_GET_DESCRIPTOR 0x0680
265 #define STD_SET_DESCRIPTOR 0x0700
266 #define STD_GET_CONFIGURATION 0x0880
267 #define STD_SET_CONFIGURATION 0x0900
268 #define STD_GET_INTERFACE 0x0A81
269 #define STD_SET_INTERFACE 0x0B01
270 #define STD_SYNCH_FRAME 0x0C82
272 /* CDC Class Specific Request Code */
273 #define GET_LINE_CODING 0x21A1
274 #define SET_LINE_CODING 0x2021
275 #define SET_CONTROL_LINE_STATE 0x2221
279 unsigned int dwDTERRate
;
283 } AT91S_CDC_LINE_CODING
, *AT91PS_CDC_LINE_CODING
;
286 AT91S_CDC_LINE_CODING line
= {
293 void AT91F_CDC_Enumerate();
295 AT91PS_UDP pUdp
= AT91C_BASE_UDP
;
296 uint8_t btConfiguration
= 0;
297 uint8_t btConnection
= 0;
298 uint8_t btReceiveBank
= AT91C_UDP_RX_DATA_BK0
;
301 //*----------------------------------------------------------------------------
303 //* \brief This function deactivates the USB device
304 //*----------------------------------------------------------------------------
306 // Disconnect the USB device
307 AT91C_BASE_PIOA
->PIO_ODR
= GPIO_USB_PU
;
309 // Clear all lingering interrupts
310 if (pUdp
->UDP_ISR
& AT91C_UDP_ENDBUSRES
) {
311 pUdp
->UDP_ICR
= AT91C_UDP_ENDBUSRES
;
316 //*----------------------------------------------------------------------------
318 //* \brief This function Activates the USB device
319 //*----------------------------------------------------------------------------
321 // Set the PLL USB Divider
322 AT91C_BASE_CKGR
->CKGR_PLLR
|= AT91C_CKGR_USBDIV_1
;
324 // Specific Chip USB Initialisation
325 // Enables the 48MHz USB clock UDPCK and System Peripheral USB Clock
326 AT91C_BASE_PMC
->PMC_SCER
= AT91C_PMC_UDP
;
327 AT91C_BASE_PMC
->PMC_PCER
= (1 << AT91C_ID_UDP
);
329 // Enable UDP PullUp (USB_DP_PUP) : enable & Clear of the corresponding PIO
330 // Set in PIO mode and Configure in Output
331 AT91C_BASE_PIOA
->PIO_PER
= GPIO_USB_PU
; // Set in PIO mode
332 AT91C_BASE_PIOA
->PIO_OER
= GPIO_USB_PU
; // Configure as Output
334 // Clear for set the Pullup resistor
335 AT91C_BASE_PIOA
->PIO_CODR
= GPIO_USB_PU
;
337 // Disconnect and reconnect USB controller for 100ms
340 // Wait for a short while
341 for (volatile size_t i
= 0; i
< 0x100000; i
++);
343 // Reconnect USB reconnect
344 AT91C_BASE_PIOA
->PIO_SODR
= GPIO_USB_PU
;
345 AT91C_BASE_PIOA
->PIO_OER
= GPIO_USB_PU
;
349 //*----------------------------------------------------------------------------
351 //* \brief Test if the device is configured and handle enumeration
352 //*----------------------------------------------------------------------------
354 AT91_REG isr
= pUdp
->UDP_ISR
;
356 if (isr
& AT91C_UDP_ENDBUSRES
) {
357 pUdp
->UDP_ICR
= AT91C_UDP_ENDBUSRES
;
358 // reset all endpoints
359 pUdp
->UDP_RSTEP
= (unsigned int)-1;
361 // Enable the function
362 pUdp
->UDP_FADDR
= AT91C_UDP_FEN
;
363 // Configure endpoint 0
364 pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] = (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_CTRL
);
365 } else if (isr
& AT91C_UDP_EPINT0
) {
366 pUdp
->UDP_ICR
= AT91C_UDP_EPINT0
;
367 AT91F_CDC_Enumerate();
369 return (btConfiguration
) ? true : false;
374 if (!usb_check()) return false;
375 return (pUdp
->UDP_CSR
[AT91C_EP_OUT
] & btReceiveBank
);
380 In github PR #129, some users appears to get a false positive from
381 usb_poll, which returns true, but the usb_read operation
383 This check is basically the same as above, but also checks
384 that the length available to read is non-zero, thus hopefully fixes the
387 bool usb_poll_validate_length() {
388 if (!usb_check()) return false;
389 if (!(pUdp
->UDP_CSR
[AT91C_EP_OUT
] & btReceiveBank
)) return false;
390 return (pUdp
->UDP_CSR
[AT91C_EP_OUT
] >> 16) > 0;
394 //*----------------------------------------------------------------------------
396 //* \brief Read available data from Endpoint OUT
397 //*----------------------------------------------------------------------------
398 uint32_t usb_read(uint8_t* data
, size_t len
) {
399 uint8_t bank
= btReceiveBank
;
400 uint32_t packetSize
, nbBytesRcv
= 0;
401 uint32_t time_out
= 0;
404 if (!usb_check()) break;
406 if ( pUdp
->UDP_CSR
[AT91C_EP_OUT
] & bank
) {
407 packetSize
= MIN(pUdp
->UDP_CSR
[AT91C_EP_OUT
] >> 16, len
);
410 data
[nbBytesRcv
++] = pUdp
->UDP_FDR
[AT91C_EP_OUT
];
411 UDP_CLEAR_EP_FLAGS(AT91C_EP_OUT
, bank
);
412 if (bank
== AT91C_UDP_RX_DATA_BK0
) {
413 bank
= AT91C_UDP_RX_DATA_BK1
;
415 bank
= AT91C_UDP_RX_DATA_BK0
;
418 if (time_out
++ == 0x1fff) break;
421 btReceiveBank
= bank
;
426 //*----------------------------------------------------------------------------
428 //* \brief Send through endpoint 2
429 //*----------------------------------------------------------------------------
430 uint32_t usb_write(const uint8_t* data
, const size_t len
) {
434 if (!length
) return 0;
435 if (!usb_check()) return 0;
437 // Send the first packet
438 cpt
= MIN(length
, AT91C_EP_IN_SIZE
);
441 pUdp
->UDP_FDR
[AT91C_EP_IN
] = *data
++;
443 UDP_SET_EP_FLAGS(AT91C_EP_IN
, AT91C_UDP_TXPKTRDY
);
446 // Fill the next bank
447 cpt
= MIN(length
, AT91C_EP_IN_SIZE
);
450 pUdp
->UDP_FDR
[AT91C_EP_IN
] = *data
++;
452 // Wait for the previous bank to be sent
453 while (!(pUdp
->UDP_CSR
[AT91C_EP_IN
] & AT91C_UDP_TXCOMP
)) {
454 if (!usb_check()) return length
;
456 UDP_CLEAR_EP_FLAGS(AT91C_EP_IN
, AT91C_UDP_TXCOMP
);
457 while (pUdp
->UDP_CSR
[AT91C_EP_IN
] & AT91C_UDP_TXCOMP
)
459 UDP_SET_EP_FLAGS(AT91C_EP_IN
, AT91C_UDP_TXPKTRDY
);
462 // Wait for the end of transfer
463 while (!(pUdp
->UDP_CSR
[AT91C_EP_IN
] & AT91C_UDP_TXCOMP
)) {
464 if (!usb_check()) return length
;
467 UDP_CLEAR_EP_FLAGS(AT91C_EP_IN
, AT91C_UDP_TXCOMP
);
468 while (pUdp
->UDP_CSR
[AT91C_EP_IN
] & AT91C_UDP_TXCOMP
)
475 //*----------------------------------------------------------------------------
476 //* \fn AT91F_USB_SendData
477 //* \brief Send Data through the control endpoint
478 //*----------------------------------------------------------------------------
479 unsigned int csrTab
[100] = {0x00};
480 unsigned char csrIdx
= 0;
482 static void AT91F_USB_SendData(AT91PS_UDP pUdp
, const char *pData
, uint32_t length
) {
487 cpt
= MIN(length
, 8);
491 pUdp
->UDP_FDR
[0] = *pData
++;
493 if (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
) {
494 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_TXCOMP
);
495 while (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
)
499 UDP_SET_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_TXPKTRDY
);
501 csr
= pUdp
->UDP_CSR
[AT91C_EP_CONTROL
];
503 // Data IN stage has been stopped by a status OUT
504 if (csr
& AT91C_UDP_RX_DATA_BK0
) {
505 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_RX_DATA_BK0
);
508 } while (!(csr
& AT91C_UDP_TXCOMP
));
512 if (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
) {
513 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_TXCOMP
);
514 while (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
)
520 //*----------------------------------------------------------------------------
521 //* \fn AT91F_USB_SendZlp
522 //* \brief Send zero length packet through the control endpoint
523 //*----------------------------------------------------------------------------
524 void AT91F_USB_SendZlp(AT91PS_UDP pUdp
) {
525 UDP_SET_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_TXPKTRDY
);
526 while (!(pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
))
528 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_TXCOMP
);
529 while (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_TXCOMP
)
534 //*----------------------------------------------------------------------------
535 //* \fn AT91F_USB_SendStall
536 //* \brief Stall the control endpoint
537 //*----------------------------------------------------------------------------
538 void AT91F_USB_SendStall(AT91PS_UDP pUdp
) {
539 UDP_SET_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_FORCESTALL
);
540 while (!(pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_ISOERROR
))
542 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_FORCESTALL
| AT91C_UDP_ISOERROR
);
543 while (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & (AT91C_UDP_FORCESTALL
| AT91C_UDP_ISOERROR
))
548 //*----------------------------------------------------------------------------
549 //* \fn AT91F_CDC_Enumerate
550 //* \brief This function is a callback invoked when a SETUP packet is received
551 //*----------------------------------------------------------------------------
552 void AT91F_CDC_Enumerate() {
553 uint8_t bmRequestType
, bRequest
;
554 uint16_t wValue
, wIndex
, wLength
, wStatus
;
556 if (!(pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_RXSETUP
))
559 bmRequestType
= pUdp
->UDP_FDR
[AT91C_EP_CONTROL
];
560 bRequest
= pUdp
->UDP_FDR
[AT91C_EP_CONTROL
];
561 wValue
= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] & 0xFF);
562 wValue
|= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] << 8);
563 wIndex
= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] & 0xFF);
564 wIndex
|= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] << 8);
565 wLength
= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] & 0xFF);
566 wLength
|= (pUdp
->UDP_FDR
[AT91C_EP_CONTROL
] << 8);
568 if (bmRequestType
& 0x80) { // Data Phase Transfer Direction Device to Host
569 UDP_SET_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_DIR
);
570 while (!(pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_DIR
))
573 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_RXSETUP
);
574 while (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_RXSETUP
)
577 // Handle supported standard device request Cf Table 9-3 in USB specification Rev 1.1
578 switch ((bRequest
<< 8) | bmRequestType
) {
579 case STD_GET_DESCRIPTOR
:
580 if (wValue
== 0x100) // Return Device Descriptor
581 AT91F_USB_SendData(pUdp
, devDescriptor
, MIN(sizeof(devDescriptor
), wLength
));
582 else if (wValue
== 0x200) // Return Configuration Descriptor
583 AT91F_USB_SendData(pUdp
, cfgDescriptor
, MIN(sizeof(cfgDescriptor
), wLength
));
584 else if ((wValue
& 0xF00) == 0x300) { // Return String Descriptor
585 const char *strDescriptor
= getStringDescriptor(wValue
& 0xff);
586 if (strDescriptor
!= NULL
) {
587 AT91F_USB_SendData(pUdp
, strDescriptor
, MIN(strDescriptor
[0], wLength
));
589 AT91F_USB_SendStall(pUdp
);
593 AT91F_USB_SendStall(pUdp
);
595 case STD_SET_ADDRESS
:
596 AT91F_USB_SendZlp(pUdp
);
597 pUdp
->UDP_FADDR
= (AT91C_UDP_FEN
| wValue
);
598 pUdp
->UDP_GLBSTATE
= (wValue
) ? AT91C_UDP_FADDEN
: 0;
600 case STD_SET_CONFIGURATION
:
601 btConfiguration
= wValue
;
602 AT91F_USB_SendZlp(pUdp
);
603 pUdp
->UDP_GLBSTATE
= (wValue
) ? AT91C_UDP_CONFG
: AT91C_UDP_FADDEN
;
604 pUdp
->UDP_CSR
[AT91C_EP_OUT
] = (wValue
) ? (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_BULK_OUT
) : 0;
605 pUdp
->UDP_CSR
[AT91C_EP_IN
] = (wValue
) ? (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_BULK_IN
) : 0;
606 pUdp
->UDP_CSR
[AT91C_EP_NOTIFY
] = (wValue
) ? (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_INT_IN
) : 0;
608 case STD_GET_CONFIGURATION
:
609 AT91F_USB_SendData(pUdp
, (char *) &(btConfiguration
), sizeof(btConfiguration
));
611 case STD_GET_STATUS_ZERO
:
612 wStatus
= 0; // Device is Bus powered, remote wakeup disabled
613 AT91F_USB_SendData(pUdp
, (char *) &wStatus
, sizeof(wStatus
));
615 case STD_GET_STATUS_INTERFACE
:
616 wStatus
= 0; // reserved for future use
617 AT91F_USB_SendData(pUdp
, (char *) &wStatus
, sizeof(wStatus
));
619 case STD_GET_STATUS_ENDPOINT
:
622 if ((pUdp
->UDP_GLBSTATE
& AT91C_UDP_CONFG
) && (wIndex
<= AT91C_EP_NOTIFY
)) {
623 wStatus
= (pUdp
->UDP_CSR
[wIndex
] & AT91C_UDP_EPEDS
) ? 0 : 1;
624 AT91F_USB_SendData(pUdp
, (char *) &wStatus
, sizeof(wStatus
));
625 } else if ((pUdp
->UDP_GLBSTATE
& AT91C_UDP_FADDEN
) && (wIndex
== AT91C_EP_CONTROL
)) {
626 wStatus
= (pUdp
->UDP_CSR
[wIndex
] & AT91C_UDP_EPEDS
) ? 0 : 1;
627 AT91F_USB_SendData(pUdp
, (char *) &wStatus
, sizeof(wStatus
));
629 AT91F_USB_SendStall(pUdp
);
631 case STD_SET_FEATURE_ZERO
:
632 AT91F_USB_SendStall(pUdp
);
634 case STD_SET_FEATURE_INTERFACE
:
635 AT91F_USB_SendZlp(pUdp
);
637 case STD_SET_FEATURE_ENDPOINT
:
639 if ((wValue
== 0) && (wIndex
>= AT91C_EP_OUT
) && (wIndex
<= AT91C_EP_NOTIFY
)) {
640 pUdp
->UDP_CSR
[wIndex
] = 0;
641 AT91F_USB_SendZlp(pUdp
);
643 AT91F_USB_SendStall(pUdp
);
645 case STD_CLEAR_FEATURE_ZERO
:
646 AT91F_USB_SendStall(pUdp
);
648 case STD_CLEAR_FEATURE_INTERFACE
:
649 AT91F_USB_SendZlp(pUdp
);
651 case STD_CLEAR_FEATURE_ENDPOINT
:
653 if ((wValue
== 0) && (wIndex
>= AT91C_EP_OUT
) && (wIndex
<= AT91C_EP_NOTIFY
)) {
654 if (wIndex
== AT91C_EP_OUT
)
655 pUdp
->UDP_CSR
[AT91C_EP_OUT
] = (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_BULK_OUT
);
656 else if (wIndex
== AT91C_EP_IN
)
657 pUdp
->UDP_CSR
[AT91C_EP_IN
] = (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_BULK_IN
);
658 else if (wIndex
== AT91C_EP_NOTIFY
)
659 pUdp
->UDP_CSR
[AT91C_EP_NOTIFY
] = (AT91C_UDP_EPEDS
| AT91C_UDP_EPTYPE_INT_IN
);
660 AT91F_USB_SendZlp(pUdp
);
663 AT91F_USB_SendStall(pUdp
);
666 // handle CDC class requests
667 case SET_LINE_CODING
:
668 while ( (pUdp
->UDP_CSR
[AT91C_EP_CONTROL
] & AT91C_UDP_RX_DATA_BK0
))
670 UDP_CLEAR_EP_FLAGS(AT91C_EP_CONTROL
, AT91C_UDP_RX_DATA_BK0
);
671 AT91F_USB_SendZlp(pUdp
);
673 case GET_LINE_CODING
:
674 AT91F_USB_SendData(pUdp
, (char *) &line
, MIN(sizeof(line
), wLength
));
676 case SET_CONTROL_LINE_STATE
:
677 btConnection
= wValue
;
678 AT91F_USB_SendZlp(pUdp
);
681 AT91F_USB_SendStall(pUdp
);