235 lines
5.9 KiB
C++
235 lines
5.9 KiB
C++
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#define _USING_HID
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// HID 'Driver'
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// ------------
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#define HID_GET_REPORT 0x01
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#define HID_GET_IDLE 0x02
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#define HID_GET_PROTOCOL 0x03
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#define HID_SET_REPORT 0x09
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#define HID_SET_IDLE 0x0A
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#define HID_SET_PROTOCOL 0x0B
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#define HID_HID_DESCRIPTOR_TYPE 0x21
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#define HID_REPORT_DESCRIPTOR_TYPE 0x22
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#define HID_PHYSICAL_DESCRIPTOR_TYPE 0x23
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// HID subclass HID1.11 Page 8 4.2 Subclass
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#define HID_SUBCLASS_NONE 0
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#define HID_SUBCLASS_BOOT_INTERFACE 1
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// HID Keyboard/Mouse bios compatible protocols HID1.11 Page 9 4.3 Protocols
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#define HID_PROTOCOL_NONE 0
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#define HID_PROTOCOL_KEYBOARD 1
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#define HID_PROTOCOL_MOUSE 2
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// Normal or bios protocol (Keyboard/Mouse) HID1.11 Page 54 7.2.5 Get_Protocol Request
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// "protocol" variable is used for this purpose.
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#define HID_BOOT_PROTOCOL 0
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#define HID_REPORT_PROTOCOL 1
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// HID Request Type HID1.11 Page 51 7.2.1 Get_Report Request
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#define HID_REPORT_TYPE_INPUT 1
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#define HID_REPORT_TYPE_OUTPUT 2
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#define HID_REPORT_TYPE_FEATURE 3
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typedef struct
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{
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uint8_t len; // 9
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uint8_t dtype; // 0x21
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uint8_t addr;
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uint8_t versionL; // 0x101
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uint8_t versionH; // 0x101
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uint8_t country;
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uint8_t desctype; // 0x22 report
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uint8_t descLenL;
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uint8_t descLenH;
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} HIDDescDescriptor;
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typedef struct
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{
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InterfaceDescriptor hid;
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HIDDescDescriptor desc;
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EndpointDescriptor in;
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} HIDDescriptor;
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class HIDSubDescriptor {
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public:
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HIDSubDescriptor *next = NULL;
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HIDSubDescriptor(const void *d, const uint16_t l) : data(d), length(l) { }
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const void* data;
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const uint16_t length;
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};
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class HID_ : public PluggableUSBModule
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{
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public:
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HID_(void);
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int begin(void);
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int SendReport(uint8_t id, const void* data, int len);
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void AppendDescriptor(HIDSubDescriptor* node);
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protected:
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// Implementation of the PluggableUSBModule
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int getInterface(uint8_t* interfaceCount);
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int getDescriptor(USBSetup& setup);
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bool setup(USBSetup& setup);
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uint8_t getShortName(char* name);
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private:
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uint8_t epType[1];
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HIDSubDescriptor* rootNode;
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uint16_t descriptorSize;
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uint8_t protocol;
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uint8_t idle;
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};
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// Replacement for global singleton.
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// This function prevents static-initialization-order-fiasco
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// https://isocpp.org/wiki/faq/ctors#static-init-order-on-first-use
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HID_& HID();
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#define D_HIDREPORT(length) { 9, 0x21, 0x01, 0x01, 0, 1, 0x22, lowByte(length), highByte(length) }
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HID_& HID()
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{
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static HID_ obj;
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return obj;
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}
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int HID_::getInterface(uint8_t* interfaceCount)
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{
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*interfaceCount += 1; // uses 1
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HIDDescriptor hidInterface = {
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D_INTERFACE(pluggedInterface, 1, USB_DEVICE_CLASS_HUMAN_INTERFACE, HID_SUBCLASS_NONE, HID_PROTOCOL_NONE),
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D_HIDREPORT(descriptorSize),
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D_ENDPOINT(USB_ENDPOINT_IN(pluggedEndpoint), USB_ENDPOINT_TYPE_INTERRUPT, USB_EP_SIZE, 0x01)
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};
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return USB_SendControl(0, &hidInterface, sizeof(hidInterface));
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}
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int HID_::getDescriptor(USBSetup& setup)
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{
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// Check if this is a HID Class Descriptor request
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if (setup.bmRequestType != REQUEST_DEVICETOHOST_STANDARD_INTERFACE) { return 0; }
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if (setup.wValueH != HID_REPORT_DESCRIPTOR_TYPE) { return 0; }
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// In a HID Class Descriptor wIndex contains the interface number
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if (setup.wIndex != pluggedInterface) { return 0; }
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int total = 0;
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HIDSubDescriptor* node;
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for (node = rootNode; node; node = node->next) {
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int res = USB_SendControl(TRANSFER_PGM, node->data, node->length);
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if (res == -1)
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return -1;
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total += res;
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}
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// Reset the protocol on reenumeration. Normally the host should not assume the state of the protocol
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// due to the USB specs, but Windows and Linux just assumes its in report mode.
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protocol = HID_REPORT_PROTOCOL;
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return total;
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}
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uint8_t HID_::getShortName(char *name)
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{
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name[0] = 'H';
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name[1] = 'I';
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name[2] = 'D';
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name[3] = 'A' + (descriptorSize & 0x0F);
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name[4] = 'A' + ((descriptorSize >> 4) & 0x0F);
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return 5;
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}
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void HID_::AppendDescriptor(HIDSubDescriptor *node)
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{
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if (!rootNode) {
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rootNode = node;
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} else {
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HIDSubDescriptor *current = rootNode;
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while (current->next) {
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current = current->next;
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}
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current->next = node;
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}
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descriptorSize += node->length;
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}
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int HID_::SendReport(uint8_t id, const void* data, int len)
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{
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// auto ret = USB_Send(pluggedEndpoint, &id, 1);
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// if (ret < 0) return ret;
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auto ret2 = USB_Send(pluggedEndpoint | TRANSFER_RELEASE, data, len);
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if (ret2 < 0) return ret2;
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return ret2;
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}
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bool HID_::setup(USBSetup& setup)
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{
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if (pluggedInterface != setup.wIndex) {
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return false;
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}
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uint8_t request = setup.bRequest;
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uint8_t requestType = setup.bmRequestType;
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if (requestType == REQUEST_DEVICETOHOST_CLASS_INTERFACE)
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{
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if (request == HID_GET_REPORT) {
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// TODO: HID_GetReport();
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return true;
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}
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if (request == HID_GET_PROTOCOL) {
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// TODO: Send8(protocol);
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return true;
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}
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if (request == HID_GET_IDLE) {
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// TODO: Send8(idle);
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}
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}
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if (requestType == REQUEST_HOSTTODEVICE_CLASS_INTERFACE)
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{
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if (request == HID_SET_PROTOCOL) {
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// The USB Host tells us if we are in boot or report mode.
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// This only works with a real boot compatible device.
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protocol = setup.wValueL;
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return true;
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}
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if (request == HID_SET_IDLE) {
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idle = setup.wValueL;
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return true;
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}
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if (request == HID_SET_REPORT)
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{
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//uint8_t reportID = setup.wValueL;
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//uint16_t length = setup.wLength;
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//uint8_t data[length];
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// Make sure to not read more data than USB_EP_SIZE.
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// You can read multiple times through a loop.
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// The first byte (may!) contain the reportID on a multreport.
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//USB_RecvControl(data, length);
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}
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}
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return false;
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}
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HID_::HID_(void) : PluggableUSBModule(1, 1, epType),
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rootNode(NULL), descriptorSize(0),
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protocol(HID_REPORT_PROTOCOL), idle(1)
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{
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epType[0] = EP_TYPE_INTERRUPT_IN;
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PluggableUSB().plug(this);
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}
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int HID_::begin(void)
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{
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return 0;
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}
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