USB device stack, with KL25Z fixes for USB 3.0 hosts and sleep/resume interrupt handling

Dependents:   frdm_Slider_Keyboard idd_hw2_figlax_PanType idd_hw2_appachu_finger_chording idd_hw3_AngieWangAntonioDeLimaFernandesDanielLim_BladeSymphony ... more

Fork of USBDevice by mbed official

This is an overhauled version of the standard mbed USB device-side driver library, with bug fixes for KL25Z devices. It greatly improves reliability and stability of USB on the KL25Z, especially with devices using multiple endpoints concurrently.

I've had some nagging problems with the base mbed implementation for a long time, manifesting as occasional random disconnects that required rebooting the device. Recently (late 2015), I started implementing a USB device on the KL25Z that used multiple endpoints, and suddenly the nagging, occasional problems turned into frequent and predictable crashes. This forced me to delve into the USB stack and figure out what was really going on. Happily, the frequent crashes made it possible to track down and fix the problems. This new version is working very reliably in my testing - the random disconnects seem completely eradicated, even under very stressful conditions for the device.

Summary

  • Overall stability improvements
  • USB 3.0 host support
  • Stalled endpoint fixes
  • Sleep/resume notifications
  • Smaller memory footprint
  • General code cleanup

Update - 2/15/2016

My recent fixes introduced a new problem that made the initial connection fail most of the time on certain hosts. It's not clear if the common thread was a particular type of motherboard or USB chip set, or a specific version of Windows, or what, but several people ran into it. We tracked the problem down to the "stall" fixes in the earlier updates, which we now know weren't quite the right fixes after all. The latest update (2/15/2016) fixes this. It has new and improved "unstall" handling that so far works well with diverse hosts.

Race conditions and overall stability

The base mbed KL25Z implementation has a lot of problems with "race conditions" - timing problems that can happen when hardware interrupts occur at inopportune moments. The library shares a bunch of static variable data between interrupt handler context and regular application context. This isn't automatically a bad thing, but it does require careful coordination to make sure that the interrupt handler doesn't corrupt data that the other code was in the middle of updating when an interrupt occurs. The base mbed code, though, doesn't do any of the necessary coordination. This makes it kind of amazing that the base code worked at all for anyone, but I guess the interrupt rate is low enough in most applications that the glitch rate was below anyone's threshold to seriously investigate.

This overhaul adds the necessary coordination for the interrupt handlers to protect against these data corruptions. I think it's very solid now, and hopefully entirely free of the numerous race conditions in the old code. It's always hard to be certain that you've fixed every possible bug like this because they strike (effectively) at random, but I'm pretty confident: my test application was reliably able to trigger glitches in the base code in a matter of minutes, but the same application (with the overhauled library) now runs for days on end without dropping the connection.

Stalled endpoint fixes

USB has a standard way of handling communications errors called a "stall", which basically puts the connection into an error mode to let both sides know that they need to reset their internal states and sync up again. The original mbed version of the USB device library doesn't seem to have the necessary code to recover from this condition properly. The KL25Z hardware does some of the work, but it also seems to require the software to take some steps to "un-stall" the connection. (I keep saying "seems to" because the hardware reference material is very sketchy about all of this. Most of what I've figured out is from observing the device in action with a Windows host.) This new version adds code to do the necessary re-syncing and get the connection going again, automatically, and transparently to the user.

USB 3.0 Hosts

The original mbed code sometimes didn't work when connecting to hosts with USB 3.0 ports. This didn't affect every host, but it affected many of them. The common element seemed to be the Intel Haswell chip set on the host, but there may be other chip sets affected as well. In any case, the problem affected many PCs from the Windows 7 and 8 generation, as well as many Macs. It was possible to work around the problem by avoiding USB 3.0 ports - you could use a USB 2 port on the host, or plug a USB 2 hub between the host and device. But I wanted to just fix the problem and eliminate the need for such workarounds. This modified version of the library has such a fix, which so far has worked for everyone who's tried.

Sleep/resume notifications

This modified version also contains an innocuous change to the KL25Z USB HAL code to handle sleep and resume interrupts with calls to suspendStateChanged(). The original KL25Z code omitted these calls (and in fact didn't even enable the interrupts), but I think this was an unintentional oversight - the notifier function is part of the generic API, and other supported boards all implement it. I use this feature in my own application so that I can distinguish sleep mode from actual disconnects and handle the two conditions correctly.

Smaller memory footprint

The base mbed version of the code allocates twice as much memory for USB buffers as it really needed to. It looks like the original developers intended to implement the KL25Z USB hardware's built-in double-buffering mechanism, but they ultimately abandoned that effort. But they left in the double memory allocation. This version removes that and allocates only what's actually needed. The USB buffers aren't that big (128 bytes per endpoint), so this doesn't save a ton of memory, but even a little memory is pretty precious on this machine given that it only has 16K.

(I did look into adding the double-buffering support that the original developers abandoned, but after some experimentation I decided they were right to skip it. It just doesn't seem to mesh well with the design of the rest of the mbed USB code. I think it would take a major rewrite to make it work, and it doesn't seem worth the effort given that most applications don't need it - it would only benefit applications that are moving so much data through USB that they're pushing the limits of the CPU. And even for those, I think it would be a lot simpler to build a purely software-based buffer rotation mechanism.)

General code cleanup

The KL25Z HAL code in this version has greatly expanded commentary and a lot of general cleanup. Some of the hardware constants were given the wrong symbolic names (e.g., EVEN and ODD were reversed), and many were just missing (written as hard-coded numbers without explanation). I fixed the misnomers and added symbolic names for formerly anonymous numbers. Hopefully the next person who has to overhaul this code will at least have an easier time understanding what I thought I was doing!

Committer:
samux
Date:
Tue Jul 17 14:30:29 2012 +0000
Revision:
1:80ab0d068708
Child:
10:1e3d126a322b
Update USBDevice lib

Who changed what in which revision?

UserRevisionLine numberNew contents of line
samux 1:80ab0d068708 1 /* Copyright (c) 2010-2011 mbed.org, MIT License
samux 1:80ab0d068708 2 *
samux 1:80ab0d068708 3 * Permission is hereby granted, free of charge, to any person obtaining a copy of this software
samux 1:80ab0d068708 4 * and associated documentation files (the "Software"), to deal in the Software without
samux 1:80ab0d068708 5 * restriction, including without limitation the rights to use, copy, modify, merge, publish,
samux 1:80ab0d068708 6 * distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the
samux 1:80ab0d068708 7 * Software is furnished to do so, subject to the following conditions:
samux 1:80ab0d068708 8 *
samux 1:80ab0d068708 9 * The above copyright notice and this permission notice shall be included in all copies or
samux 1:80ab0d068708 10 * substantial portions of the Software.
samux 1:80ab0d068708 11 *
samux 1:80ab0d068708 12 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING
samux 1:80ab0d068708 13 * BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
samux 1:80ab0d068708 14 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
samux 1:80ab0d068708 15 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
samux 1:80ab0d068708 16 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
samux 1:80ab0d068708 17 */
samux 1:80ab0d068708 18
samux 1:80ab0d068708 19 #include "stdint.h"
samux 1:80ab0d068708 20 #include "USBHAL.h"
samux 1:80ab0d068708 21 #include "USBHID.h"
samux 1:80ab0d068708 22
samux 1:80ab0d068708 23
samux 1:80ab0d068708 24 USBHID::USBHID(uint8_t output_report_length, uint8_t input_report_length, uint16_t vendor_id, uint16_t product_id, uint16_t product_release, bool connect): USBDevice(vendor_id, product_id, product_release)
samux 1:80ab0d068708 25 {
samux 1:80ab0d068708 26 output_length = output_report_length;
samux 1:80ab0d068708 27 input_length = input_report_length;
samux 1:80ab0d068708 28 if(connect) {
samux 1:80ab0d068708 29 USBDevice::connect();
samux 1:80ab0d068708 30 }
samux 1:80ab0d068708 31 }
samux 1:80ab0d068708 32
samux 1:80ab0d068708 33
samux 1:80ab0d068708 34 bool USBHID::send(HID_REPORT *report)
samux 1:80ab0d068708 35 {
samux 1:80ab0d068708 36 return write(EPINT_IN, report->data, report->length, MAX_HID_REPORT_SIZE);
samux 1:80ab0d068708 37 }
samux 1:80ab0d068708 38
samux 1:80ab0d068708 39 bool USBHID::sendNB(HID_REPORT *report)
samux 1:80ab0d068708 40 {
samux 1:80ab0d068708 41 return writeNB(EPINT_IN, report->data, report->length, MAX_HID_REPORT_SIZE);
samux 1:80ab0d068708 42 }
samux 1:80ab0d068708 43
samux 1:80ab0d068708 44
samux 1:80ab0d068708 45 bool USBHID::read(HID_REPORT *report)
samux 1:80ab0d068708 46 {
samux 1:80ab0d068708 47 uint32_t bytesRead = 0;
samux 1:80ab0d068708 48 bool result;
samux 1:80ab0d068708 49 result = USBDevice::readEP(EPINT_OUT, report->data, &bytesRead, MAX_HID_REPORT_SIZE);
samux 1:80ab0d068708 50 if(!readStart(EPINT_OUT, MAX_HID_REPORT_SIZE))
samux 1:80ab0d068708 51 return false;
samux 1:80ab0d068708 52 report->length = bytesRead;
samux 1:80ab0d068708 53 return result;
samux 1:80ab0d068708 54 }
samux 1:80ab0d068708 55
samux 1:80ab0d068708 56
samux 1:80ab0d068708 57 bool USBHID::readNB(HID_REPORT *report)
samux 1:80ab0d068708 58 {
samux 1:80ab0d068708 59 uint32_t bytesRead = 0;
samux 1:80ab0d068708 60 bool result;
samux 1:80ab0d068708 61 result = USBDevice::readEP_NB(EPINT_OUT, report->data, &bytesRead, MAX_HID_REPORT_SIZE);
samux 1:80ab0d068708 62 report->length = bytesRead;
samux 1:80ab0d068708 63 if(!readStart(EPINT_OUT, MAX_HID_REPORT_SIZE))
samux 1:80ab0d068708 64 return false;
samux 1:80ab0d068708 65 return result;
samux 1:80ab0d068708 66 }
samux 1:80ab0d068708 67
samux 1:80ab0d068708 68
samux 1:80ab0d068708 69 uint16_t USBHID::reportDescLength() {
samux 1:80ab0d068708 70 reportDesc();
samux 1:80ab0d068708 71 return reportLength;
samux 1:80ab0d068708 72 }
samux 1:80ab0d068708 73
samux 1:80ab0d068708 74
samux 1:80ab0d068708 75
samux 1:80ab0d068708 76 //
samux 1:80ab0d068708 77 // Route callbacks from lower layers to class(es)
samux 1:80ab0d068708 78 //
samux 1:80ab0d068708 79
samux 1:80ab0d068708 80
samux 1:80ab0d068708 81 // Called in ISR context
samux 1:80ab0d068708 82 // Called by USBDevice on Endpoint0 request
samux 1:80ab0d068708 83 // This is used to handle extensions to standard requests
samux 1:80ab0d068708 84 // and class specific requests
samux 1:80ab0d068708 85 // Return true if class handles this request
samux 1:80ab0d068708 86 bool USBHID::USBCallback_request() {
samux 1:80ab0d068708 87 bool success = false;
samux 1:80ab0d068708 88 CONTROL_TRANSFER * transfer = getTransferPtr();
samux 1:80ab0d068708 89 uint8_t *hidDescriptor;
samux 1:80ab0d068708 90
samux 1:80ab0d068708 91 // Process additional standard requests
samux 1:80ab0d068708 92
samux 1:80ab0d068708 93 if ((transfer->setup.bmRequestType.Type == STANDARD_TYPE))
samux 1:80ab0d068708 94 {
samux 1:80ab0d068708 95 switch (transfer->setup.bRequest)
samux 1:80ab0d068708 96 {
samux 1:80ab0d068708 97 case GET_DESCRIPTOR:
samux 1:80ab0d068708 98 switch (DESCRIPTOR_TYPE(transfer->setup.wValue))
samux 1:80ab0d068708 99 {
samux 1:80ab0d068708 100 case REPORT_DESCRIPTOR:
samux 1:80ab0d068708 101 if ((reportDesc() != NULL) \
samux 1:80ab0d068708 102 && (reportDescLength() != 0))
samux 1:80ab0d068708 103 {
samux 1:80ab0d068708 104 transfer->remaining = reportDescLength();
samux 1:80ab0d068708 105 transfer->ptr = reportDesc();
samux 1:80ab0d068708 106 transfer->direction = DEVICE_TO_HOST;
samux 1:80ab0d068708 107 success = true;
samux 1:80ab0d068708 108 }
samux 1:80ab0d068708 109 break;
samux 1:80ab0d068708 110 case HID_DESCRIPTOR:
samux 1:80ab0d068708 111 // Find the HID descriptor, after the configuration descriptor
samux 1:80ab0d068708 112 hidDescriptor = findDescriptor(HID_DESCRIPTOR);
samux 1:80ab0d068708 113 if (hidDescriptor != NULL)
samux 1:80ab0d068708 114 {
samux 1:80ab0d068708 115 transfer->remaining = HID_DESCRIPTOR_LENGTH;
samux 1:80ab0d068708 116 transfer->ptr = hidDescriptor;
samux 1:80ab0d068708 117 transfer->direction = DEVICE_TO_HOST;
samux 1:80ab0d068708 118 success = true;
samux 1:80ab0d068708 119 }
samux 1:80ab0d068708 120 break;
samux 1:80ab0d068708 121
samux 1:80ab0d068708 122 default:
samux 1:80ab0d068708 123 break;
samux 1:80ab0d068708 124 }
samux 1:80ab0d068708 125 break;
samux 1:80ab0d068708 126 default:
samux 1:80ab0d068708 127 break;
samux 1:80ab0d068708 128 }
samux 1:80ab0d068708 129 }
samux 1:80ab0d068708 130
samux 1:80ab0d068708 131 // Process class-specific requests
samux 1:80ab0d068708 132
samux 1:80ab0d068708 133 if (transfer->setup.bmRequestType.Type == CLASS_TYPE)
samux 1:80ab0d068708 134 {
samux 1:80ab0d068708 135 switch (transfer->setup.bRequest)
samux 1:80ab0d068708 136 {
samux 1:80ab0d068708 137 case SET_REPORT:
samux 1:80ab0d068708 138 // First byte will be used for report ID
samux 1:80ab0d068708 139 outputReport.data[0] = transfer->setup.wValue & 0xff;
samux 1:80ab0d068708 140 outputReport.length = transfer->setup.wLength + 1;
samux 1:80ab0d068708 141
samux 1:80ab0d068708 142 transfer->remaining = sizeof(outputReport.data) - 1;
samux 1:80ab0d068708 143 transfer->ptr = &outputReport.data[1];
samux 1:80ab0d068708 144 transfer->direction = HOST_TO_DEVICE;
samux 1:80ab0d068708 145 transfer->notify = true;
samux 1:80ab0d068708 146 success = true;
samux 1:80ab0d068708 147 default:
samux 1:80ab0d068708 148 break;
samux 1:80ab0d068708 149 }
samux 1:80ab0d068708 150 }
samux 1:80ab0d068708 151
samux 1:80ab0d068708 152 return success;
samux 1:80ab0d068708 153 }
samux 1:80ab0d068708 154
samux 1:80ab0d068708 155
samux 1:80ab0d068708 156 #define DEFAULT_CONFIGURATION (1)
samux 1:80ab0d068708 157
samux 1:80ab0d068708 158
samux 1:80ab0d068708 159 // Called in ISR context
samux 1:80ab0d068708 160 // Set configuration. Return false if the
samux 1:80ab0d068708 161 // configuration is not supported
samux 1:80ab0d068708 162 bool USBHID::USBCallback_setConfiguration(uint8_t configuration) {
samux 1:80ab0d068708 163 if (configuration != DEFAULT_CONFIGURATION) {
samux 1:80ab0d068708 164 return false;
samux 1:80ab0d068708 165 }
samux 1:80ab0d068708 166
samux 1:80ab0d068708 167 // Configure endpoints > 0
samux 1:80ab0d068708 168 addEndpoint(EPINT_IN, MAX_PACKET_SIZE_EPINT);
samux 1:80ab0d068708 169 addEndpoint(EPINT_OUT, MAX_PACKET_SIZE_EPINT);
samux 1:80ab0d068708 170
samux 1:80ab0d068708 171 // We activate the endpoint to be able to recceive data
samux 1:80ab0d068708 172 readStart(EPINT_OUT, MAX_PACKET_SIZE_EPINT);
samux 1:80ab0d068708 173 return true;
samux 1:80ab0d068708 174 }
samux 1:80ab0d068708 175
samux 1:80ab0d068708 176
samux 1:80ab0d068708 177 uint8_t * USBHID::stringIinterfaceDesc() {
samux 1:80ab0d068708 178 static uint8_t stringIinterfaceDescriptor[] = {
samux 1:80ab0d068708 179 0x08, //bLength
samux 1:80ab0d068708 180 STRING_DESCRIPTOR, //bDescriptorType 0x03
samux 1:80ab0d068708 181 'H',0,'I',0,'D',0, //bString iInterface - HID
samux 1:80ab0d068708 182 };
samux 1:80ab0d068708 183 return stringIinterfaceDescriptor;
samux 1:80ab0d068708 184 }
samux 1:80ab0d068708 185
samux 1:80ab0d068708 186 uint8_t * USBHID::stringIproductDesc() {
samux 1:80ab0d068708 187 static uint8_t stringIproductDescriptor[] = {
samux 1:80ab0d068708 188 0x16, //bLength
samux 1:80ab0d068708 189 STRING_DESCRIPTOR, //bDescriptorType 0x03
samux 1:80ab0d068708 190 'H',0,'I',0,'D',0,' ',0,'D',0,'E',0,'V',0,'I',0,'C',0,'E',0 //bString iProduct - HID device
samux 1:80ab0d068708 191 };
samux 1:80ab0d068708 192 return stringIproductDescriptor;
samux 1:80ab0d068708 193 }
samux 1:80ab0d068708 194
samux 1:80ab0d068708 195
samux 1:80ab0d068708 196
samux 1:80ab0d068708 197 uint8_t * USBHID::reportDesc() {
samux 1:80ab0d068708 198 static uint8_t reportDescriptor[] = {
samux 1:80ab0d068708 199 0x06, LSB(0xFFAB), MSB(0xFFAB),
samux 1:80ab0d068708 200 0x0A, LSB(0x0200), MSB(0x0200),
samux 1:80ab0d068708 201 0xA1, 0x01, // Collection 0x01
samux 1:80ab0d068708 202 0x75, 0x08, // report size = 8 bits
samux 1:80ab0d068708 203 0x15, 0x00, // logical minimum = 0
samux 1:80ab0d068708 204 0x26, 0xFF, 0x00, // logical maximum = 255
samux 1:80ab0d068708 205 0x95, input_length, // report count
samux 1:80ab0d068708 206 0x09, 0x01, // usage
samux 1:80ab0d068708 207 0x81, 0x02, // Input (array)
samux 1:80ab0d068708 208 0x95, output_length, // report count
samux 1:80ab0d068708 209 0x09, 0x02, // usage
samux 1:80ab0d068708 210 0x91, 0x02, // Output (array)
samux 1:80ab0d068708 211 0xC0 // end collection
samux 1:80ab0d068708 212
samux 1:80ab0d068708 213 };
samux 1:80ab0d068708 214 reportLength = sizeof(reportDescriptor);
samux 1:80ab0d068708 215 return reportDescriptor;
samux 1:80ab0d068708 216 }
samux 1:80ab0d068708 217
samux 1:80ab0d068708 218 #define DEFAULT_CONFIGURATION (1)
samux 1:80ab0d068708 219 #define TOTAL_DESCRIPTOR_LENGTH ((1 * CONFIGURATION_DESCRIPTOR_LENGTH) \
samux 1:80ab0d068708 220 + (1 * INTERFACE_DESCRIPTOR_LENGTH) \
samux 1:80ab0d068708 221 + (1 * HID_DESCRIPTOR_LENGTH) \
samux 1:80ab0d068708 222 + (2 * ENDPOINT_DESCRIPTOR_LENGTH))
samux 1:80ab0d068708 223
samux 1:80ab0d068708 224 uint8_t * USBHID::configurationDesc() {
samux 1:80ab0d068708 225 static uint8_t configurationDescriptor[] = {
samux 1:80ab0d068708 226 CONFIGURATION_DESCRIPTOR_LENGTH,// bLength
samux 1:80ab0d068708 227 CONFIGURATION_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 228 LSB(TOTAL_DESCRIPTOR_LENGTH), // wTotalLength (LSB)
samux 1:80ab0d068708 229 MSB(TOTAL_DESCRIPTOR_LENGTH), // wTotalLength (MSB)
samux 1:80ab0d068708 230 0x01, // bNumInterfaces
samux 1:80ab0d068708 231 DEFAULT_CONFIGURATION, // bConfigurationValue
samux 1:80ab0d068708 232 0x00, // iConfiguration
samux 1:80ab0d068708 233 C_RESERVED | C_SELF_POWERED, // bmAttributes
samux 1:80ab0d068708 234 C_POWER(0), // bMaxPower
samux 1:80ab0d068708 235
samux 1:80ab0d068708 236 INTERFACE_DESCRIPTOR_LENGTH, // bLength
samux 1:80ab0d068708 237 INTERFACE_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 238 0x00, // bInterfaceNumber
samux 1:80ab0d068708 239 0x00, // bAlternateSetting
samux 1:80ab0d068708 240 0x02, // bNumEndpoints
samux 1:80ab0d068708 241 HID_CLASS, // bInterfaceClass
samux 1:80ab0d068708 242 HID_SUBCLASS_NONE, // bInterfaceSubClass
samux 1:80ab0d068708 243 HID_PROTOCOL_NONE, // bInterfaceProtocol
samux 1:80ab0d068708 244 0x00, // iInterface
samux 1:80ab0d068708 245
samux 1:80ab0d068708 246 HID_DESCRIPTOR_LENGTH, // bLength
samux 1:80ab0d068708 247 HID_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 248 LSB(HID_VERSION_1_11), // bcdHID (LSB)
samux 1:80ab0d068708 249 MSB(HID_VERSION_1_11), // bcdHID (MSB)
samux 1:80ab0d068708 250 0x00, // bCountryCode
samux 1:80ab0d068708 251 0x01, // bNumDescriptors
samux 1:80ab0d068708 252 REPORT_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 253 LSB(this->reportDescLength()), // wDescriptorLength (LSB)
samux 1:80ab0d068708 254 MSB(this->reportDescLength()), // wDescriptorLength (MSB)
samux 1:80ab0d068708 255
samux 1:80ab0d068708 256 ENDPOINT_DESCRIPTOR_LENGTH, // bLength
samux 1:80ab0d068708 257 ENDPOINT_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 258 PHY_TO_DESC(EPINT_IN), // bEndpointAddress
samux 1:80ab0d068708 259 E_INTERRUPT, // bmAttributes
samux 1:80ab0d068708 260 LSB(MAX_PACKET_SIZE_EPINT), // wMaxPacketSize (LSB)
samux 1:80ab0d068708 261 MSB(MAX_PACKET_SIZE_EPINT), // wMaxPacketSize (MSB)
samux 1:80ab0d068708 262 1, // bInterval (milliseconds)
samux 1:80ab0d068708 263
samux 1:80ab0d068708 264 ENDPOINT_DESCRIPTOR_LENGTH, // bLength
samux 1:80ab0d068708 265 ENDPOINT_DESCRIPTOR, // bDescriptorType
samux 1:80ab0d068708 266 PHY_TO_DESC(EPINT_OUT), // bEndpointAddress
samux 1:80ab0d068708 267 E_INTERRUPT, // bmAttributes
samux 1:80ab0d068708 268 LSB(MAX_PACKET_SIZE_EPINT), // wMaxPacketSize (LSB)
samux 1:80ab0d068708 269 MSB(MAX_PACKET_SIZE_EPINT), // wMaxPacketSize (MSB)
samux 1:80ab0d068708 270 1, // bInterval (milliseconds)
samux 1:80ab0d068708 271 };
samux 1:80ab0d068708 272 return configurationDescriptor;
samux 1:80ab0d068708 273 }