mirror of
https://github.com/felis/USB_Host_Shield_2.0.git
synced 2024-03-22 11:31:26 +01:00
494 lines
No EOL
13 KiB
C++
494 lines
No EOL
13 KiB
C++
/* Copyright (C) 2011 Circuits At Home, LTD. All rights reserved.
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This software may be distributed and modified under the terms of the GNU
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General Public License version 2 (GPL2) as published by the Free Software
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Foundation and appearing in the file GPL2.TXT included in the packaging of
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this file. Please note that GPL2 Section 2[b] requires that all works based
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on this software must also be made publicly available under the terms of
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the GPL2 ("Copyleft").
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Contact information
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-------------------
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Circuits At Home, LTD
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Web : http://www.circuitsathome.com
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e-mail : support@circuitsathome.com
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*/
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#if !defined(__HIDBOOT_H__)
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#define __HIDBOOT_H__
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#include <inttypes.h>
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#include <avr/pgmspace.h>
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#include "avrpins.h"
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#include "max3421e.h"
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#include "usbhost.h"
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#include "usb_ch9.h"
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#include "Usb.h"
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#include "hid.h"
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#if defined(ARDUINO) && ARDUINO >=100
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#include "Arduino.h"
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#else
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#include <WProgram.h>
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#endif
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#include "printhex.h"
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#include "hexdump.h"
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#include "message.h"
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#include "confdescparser.h"
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#define KEY_SPACE 0x2c
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#define KEY_ZERO 0x27
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#define KEY_ZERO2 0x62
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#define KEY_ENTER 0x28
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#define KEY_PERIOD 0x63
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struct MOUSEINFO {
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struct {
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uint8_t bmLeftButton : 1;
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uint8_t bmRightButton : 1;
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uint8_t bmMiddleButton : 1;
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uint8_t bmDummy : 1;
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};
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int8_t dX;
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int8_t dY;
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};
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class MouseReportParser : public HIDReportParser {
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union {
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MOUSEINFO mouseInfo;
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uint8_t bInfo[sizeof(MOUSEINFO)];
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} prevState;
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public:
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virtual void Parse(HID *hid, bool is_rpt_id, uint8_t len, uint8_t *buf);
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protected:
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virtual void OnMouseMove(MOUSEINFO *mi) {
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};
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virtual void OnLeftButtonUp(MOUSEINFO *mi) {
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};
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virtual void OnLeftButtonDown(MOUSEINFO *mi) {
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};
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virtual void OnRightButtonUp(MOUSEINFO *mi) {
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};
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virtual void OnRightButtonDown(MOUSEINFO *mi) {
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};
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virtual void OnMiddleButtonUp(MOUSEINFO *mi) {
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};
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virtual void OnMiddleButtonDown(MOUSEINFO *mi) {
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};
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};
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struct MODIFIERKEYS {
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uint8_t bmLeftCtrl : 1;
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uint8_t bmLeftShift : 1;
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uint8_t bmLeftAlt : 1;
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uint8_t bmLeftGUI : 1;
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uint8_t bmRightCtrl : 1;
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uint8_t bmRightShift : 1;
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uint8_t bmRightAlt : 1;
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uint8_t bmRightGUI : 1;
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};
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struct KBDINFO {
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struct {
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uint8_t bmLeftCtrl : 1;
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uint8_t bmLeftShift : 1;
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uint8_t bmLeftAlt : 1;
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uint8_t bmLeftGUI : 1;
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uint8_t bmRightCtrl : 1;
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uint8_t bmRightShift : 1;
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uint8_t bmRightAlt : 1;
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uint8_t bmRightGUI : 1;
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};
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uint8_t bReserved;
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uint8_t Keys[6];
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};
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struct KBDLEDS {
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uint8_t bmNumLock : 1;
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uint8_t bmCapsLock : 1;
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uint8_t bmScrollLock : 1;
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uint8_t bmCompose : 1;
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uint8_t bmKana : 1;
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uint8_t bmReserved : 3;
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};
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#define KEY_NUM_LOCK 0x53
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#define KEY_CAPS_LOCK 0x39
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#define KEY_SCROLL_LOCK 0x47
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class KeyboardReportParser : public HIDReportParser {
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static const uint8_t numKeys[];
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static const uint8_t symKeysUp[];
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static const uint8_t symKeysLo[];
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static const uint8_t padKeys[];
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protected:
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union {
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KBDINFO kbdInfo;
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uint8_t bInfo[sizeof(KBDINFO)];
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} prevState;
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union {
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KBDLEDS kbdLeds;
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uint8_t bLeds;
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} kbdLockingKeys;
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uint8_t OemToAscii(uint8_t mod, uint8_t key);
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public:
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KeyboardReportParser() {
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kbdLockingKeys.bLeds = 0;
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};
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virtual void Parse(HID *hid, bool is_rpt_id, uint8_t len, uint8_t *buf);
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protected:
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uint8_t HandleLockingKeys(HID* hid, uint8_t key);
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virtual void OnKeyDown(uint8_t mod, uint8_t key) {
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};
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virtual void OnKeyUp(uint8_t mod, uint8_t key) {
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};
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};
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#define totalEndpoints 2
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#define HID_MAX_HID_CLASS_DESCRIPTORS 5
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template <const uint8_t BOOT_PROTOCOL>
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class HIDBoot : public HID //public USBDeviceConfig, public UsbConfigXtracter
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{
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EpInfo epInfo[totalEndpoints];
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HIDReportParser *pRptParser;
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uint8_t bConfNum; // configuration number
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uint8_t bIfaceNum; // Interface Number
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uint8_t bNumIface; // number of interfaces in the configuration
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uint8_t bNumEP; // total number of EP in the configuration
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uint32_t qNextPollTime; // next poll time
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bool bPollEnable; // poll enable flag
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void Initialize();
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virtual HIDReportParser* GetReportParser(uint8_t id) {
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return pRptParser;
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};
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public:
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HIDBoot(USB *p);
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virtual bool SetReportParser(uint8_t id, HIDReportParser *prs) {
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pRptParser = prs;
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return true;
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};
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// USBDeviceConfig implementation
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virtual uint8_t Init(uint8_t parent, uint8_t port, bool lowspeed);
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virtual uint8_t Release();
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virtual uint8_t Poll();
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virtual uint8_t GetAddress() {
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return bAddress;
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};
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// UsbConfigXtracter implementation
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virtual void EndpointXtract(uint8_t conf, uint8_t iface, uint8_t alt, uint8_t proto, const USB_ENDPOINT_DESCRIPTOR *ep);
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};
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template <const uint8_t BOOT_PROTOCOL>
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HIDBoot<BOOT_PROTOCOL>::HIDBoot(USB *p) :
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HID(p),
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qNextPollTime(0),
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bPollEnable(false),
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pRptParser(NULL) {
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Initialize();
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if(pUsb)
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pUsb->RegisterDeviceClass(this);
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}
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template <const uint8_t BOOT_PROTOCOL>
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void HIDBoot<BOOT_PROTOCOL>::Initialize() {
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for(uint8_t i = 0; i < totalEndpoints; i++) {
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epInfo[i].epAddr = 0;
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epInfo[i].maxPktSize = (i) ? 0 : 8;
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epInfo[i].epAttribs = 0;
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epInfo[i].bmNakPower = (i) ? USB_NAK_NOWAIT : USB_NAK_MAX_POWER;
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}
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bNumEP = 1;
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bNumIface = 0;
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bConfNum = 0;
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}
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template <const uint8_t BOOT_PROTOCOL>
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uint8_t HIDBoot<BOOT_PROTOCOL>::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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const uint8_t constBufSize = sizeof(USB_DEVICE_DESCRIPTOR);
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uint8_t buf[constBufSize];
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uint8_t rcode;
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UsbDevice *p = NULL;
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EpInfo *oldep_ptr = NULL;
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uint8_t len = 0;
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uint16_t cd_len = 0;
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uint8_t num_of_conf; // number of configurations
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uint8_t num_of_intf; // number of interfaces
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AddressPool &addrPool = pUsb->GetAddressPool();
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USBTRACE("BM Init\r\n");
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if(bAddress)
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return USB_ERROR_CLASS_INSTANCE_ALREADY_IN_USE;
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// Get pointer to pseudo device with address 0 assigned
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p = addrPool.GetUsbDevicePtr(0);
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if(!p)
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return USB_ERROR_ADDRESS_NOT_FOUND_IN_POOL;
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if(!p->epinfo) {
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USBTRACE("epinfo\r\n");
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return USB_ERROR_EPINFO_IS_NULL;
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}
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// Save old pointer to EP_RECORD of address 0
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oldep_ptr = p->epinfo;
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// Temporary assign new pointer to epInfo to p->epinfo in order to avoid toggle inconsistence
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p->epinfo = epInfo;
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p->lowspeed = lowspeed;
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// Get device descriptor
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rcode = pUsb->getDevDescr(0, 0, 8, (uint8_t*) buf);
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if(!rcode)
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len = (buf[0] > constBufSize) ? constBufSize : buf[0];
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if(rcode) {
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// Restore p->epinfo
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p->epinfo = oldep_ptr;
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goto FailGetDevDescr;
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}
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// Restore p->epinfo
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p->epinfo = oldep_ptr;
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// Allocate new address according to device class
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bAddress = addrPool.AllocAddress(parent, false, port);
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if(!bAddress)
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return USB_ERROR_OUT_OF_ADDRESS_SPACE_IN_POOL;
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// Extract Max Packet Size from the device descriptor
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epInfo[0].maxPktSize = (uint8_t) ((USB_DEVICE_DESCRIPTOR*) buf)->bMaxPacketSize0;
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// Assign new address to the device
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rcode = pUsb->setAddr(0, 0, bAddress);
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if(rcode) {
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p->lowspeed = false;
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addrPool.FreeAddress(bAddress);
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bAddress = 0;
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USBTRACE2("setAddr:", rcode);
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return rcode;
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}
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USBTRACE2("Addr:", bAddress);
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p->lowspeed = false;
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p = addrPool.GetUsbDevicePtr(bAddress);
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if(!p)
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return USB_ERROR_ADDRESS_NOT_FOUND_IN_POOL;
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p->lowspeed = lowspeed;
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if(len)
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rcode = pUsb->getDevDescr(bAddress, 0, len, (uint8_t*) buf);
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if(rcode)
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goto FailGetDevDescr;
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num_of_conf = ((USB_DEVICE_DESCRIPTOR*) buf)->bNumConfigurations;
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// Assign epInfo to epinfo pointer
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rcode = pUsb->setEpInfoEntry(bAddress, 1, epInfo);
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if(rcode)
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goto FailSetDevTblEntry;
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//USBTRACE2("NC:", num_of_conf);
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for(uint8_t i = 0; i < num_of_conf; i++) {
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ConfigDescParser<
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USB_CLASS_HID,
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HID_BOOT_INTF_SUBCLASS,
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BOOT_PROTOCOL,
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CP_MASK_COMPARE_ALL> confDescrParser(this);
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rcode = pUsb->getConfDescr(bAddress, 0, i, &confDescrParser);
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if(bNumEP > 1)
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break;
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} // for
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if(bNumEP < 2)
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return USB_DEV_CONFIG_ERROR_DEVICE_NOT_SUPPORTED;
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//USBTRACE2("\r\nbAddr:", bAddress);
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//USBTRACE2("\r\nbNumEP:", bNumEP);
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// Assign epInfo to epinfo pointer
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rcode = pUsb->setEpInfoEntry(bAddress, bNumEP, epInfo);
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//USBTRACE2("\r\nCnf:", bConfNum);
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// Set Configuration Value
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rcode = pUsb->setConf(bAddress, 0, bConfNum);
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if(rcode)
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goto FailSetConfDescr;
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//USBTRACE2("\r\nIf:", bIfaceNum);
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rcode = SetProtocol(bIfaceNum, HID_BOOT_PROTOCOL);
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if(rcode)
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goto FailSetProtocol;
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if(BOOT_PROTOCOL == 1) {
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rcode = SetIdle(bIfaceNum, 0, 0);
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if(rcode)
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goto FailSetIdle;
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}
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USBTRACE("BM configured\r\n");
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bPollEnable = true;
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return 0;
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FailGetDevDescr:
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USBTRACE("getDevDescr:");
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goto Fail;
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FailSetDevTblEntry:
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USBTRACE("setDevTblEn:");
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goto Fail;
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FailGetConfDescr:
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USBTRACE("getConf:");
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goto Fail;
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FailSetProtocol:
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USBTRACE("SetProto:");
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goto Fail;
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FailSetIdle:
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USBTRACE("SetIdle:");
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goto Fail;
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FailSetConfDescr:
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USBTRACE("setConf:");
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goto Fail;
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Fail:
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PrintHex<uint8_t > (rcode, 0x80);
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Notify(PSTR("\n"), 0x80);
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// Serial.println(rcode, HEX);
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Release();
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return rcode;
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}
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template <const uint8_t BOOT_PROTOCOL>
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void HIDBoot<BOOT_PROTOCOL>::EndpointXtract(uint8_t conf, uint8_t iface, uint8_t alt, uint8_t proto, const USB_ENDPOINT_DESCRIPTOR *pep) {
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// If the first configuration satisfies, the others are not concidered.
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if(bNumEP > 1 && conf != bConfNum)
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return;
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bConfNum = conf;
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bIfaceNum = iface;
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uint8_t index;
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if((pep->bmAttributes & 0x03) == 3 && (pep->bEndpointAddress & 0x80) == 0x80) {
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index = epInterruptInIndex;
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// Fill in the endpoint info structure
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epInfo[index].epAddr = (pep->bEndpointAddress & 0x0F);
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epInfo[index].maxPktSize = (uint8_t) pep->wMaxPacketSize;
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epInfo[index].epAttribs = 0;
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bNumEP++;
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}
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}
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template <const uint8_t BOOT_PROTOCOL>
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uint8_t HIDBoot<BOOT_PROTOCOL>::Release() {
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pUsb->GetAddressPool().FreeAddress(bAddress);
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bConfNum = 0;
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bIfaceNum = 0;
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bNumEP = 1;
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bAddress = 0;
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qNextPollTime = 0;
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bPollEnable = false;
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return 0;
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}
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template <const uint8_t BOOT_PROTOCOL>
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uint8_t HIDBoot<BOOT_PROTOCOL>::Poll() {
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uint8_t rcode = 0;
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if(!bPollEnable)
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return 0;
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if(qNextPollTime <= millis()) {
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qNextPollTime = millis() + 10;
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const uint8_t const_buff_len = 16;
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uint8_t buf[const_buff_len];
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uint16_t read = (uint16_t) epInfo[epInterruptInIndex].maxPktSize;
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uint8_t rcode = pUsb->inTransfer(bAddress, epInfo[epInterruptInIndex].epAddr, &read, buf);
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if(rcode) {
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if(rcode != hrNAK)
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USBTRACE2("Poll:", rcode);
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return rcode;
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}
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//for (uint8_t i=0; i<read; i++)
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// PrintHex<uint8_t>(buf[i]);
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//if (read)
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// Serial.println("");
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if(pRptParser)
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pRptParser->Parse((HID*)this, 0, (uint8_t) read, buf);
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}
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return rcode;
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}
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#endif // __HIDBOOTMOUSE_H__
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