mirror of
https://github.com/pascallanger/DIY-Multiprotocol-TX-Module.git
synced 2025-02-05 12:48:13 +00:00
276 lines
9.4 KiB
C
276 lines
9.4 KiB
C
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//////////////////////////////////////////////////////////////////////////////
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// //
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// _ _ ____ ____ _ _ _ //
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// | | | |/ ___| | __ ) / \ _ __ (_) | |__ //
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// | | | |\___ \ | _ \ / _ \ | '_ \ | | | '_ \ //
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// | |_| | ___) || |_) |/ ___ \ | |_) || | _ | | | | //
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// \___/ |____/ |____//_/ \_\| .__/ |_|(_)|_| |_| //
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// |_| //
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// //
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//////////////////////////////////////////////////////////////////////////////
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#ifndef __USBAPI__
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#define __USBAPI__
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#if defined(USBCON)
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#include "USBCore.h" /* make sure since I use its definitions here */
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#ifdef DEBUG_CODE
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#ifdef __cplusplus
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extern "C"
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{
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#endif // __cplusplus
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extern void error_print(const char *p1); // TEMPORARY
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extern void error_print_(const char *p1); // TEMPORARY
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extern void error_printH(unsigned long); // TEMPORARY
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extern void error_printH_(unsigned long); // TEMPORARY
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extern void error_printL(unsigned long); // TEMPORARY
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extern void error_printL_(unsigned long); // TEMPORARY
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extern void error_printP(const void * /*PROGMEM*/ p1); // TEMPORARY
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extern void error_printP_(const void * /*PROGMEM*/ p1); // TEMPORARY
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extern void DumpHex(void *pBuf, uint8_t nBytes);
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#ifdef __cplusplus
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}
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#endif // __cplusplus
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#else // DEBUG_CODE
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#define error_print(p1)
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#define error_print_(p1)
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#define error_printH(X)
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#define error_printH_(X)
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#define error_printL(X)
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#define error_printL_(X)
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#define error_printP(p1)
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#define error_printP_(p1)
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#define DumpHex(X,Y)
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#endif // DEBUG_CODE
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//================================================================================
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//================================================================================
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// USB
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class USBDevice_
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{
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public:
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USBDevice_();
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bool configured();
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void attach();
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void detach(); // Serial port goes down too...
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void poll();
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protected:
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static XMegaEPDataStruct *GetEPData(); // necessary
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};
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extern USBDevice_ USBDevice;
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//================================================================================
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//================================================================================
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// Serial over CDC (Serial1 is the physical port)
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class Serial_ : public Stream
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{
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protected:
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int peek_buffer;
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public:
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Serial_() { peek_buffer = -1; };
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void begin(unsigned long);
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void begin(unsigned long, uint8_t);
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void end(void);
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virtual int available(void);
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virtual int peek(void);
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virtual int read(void);
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virtual void flush(void);
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virtual size_t write(uint8_t);
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virtual size_t write(const uint8_t*, size_t);
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using Print::write; // pull in write(str) etc. from Print
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operator bool();
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};
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extern Serial_ Serial; // NOTE: HardwareSerial.h defines the 1st port as 'Serial1' whenever USBCON defined
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//================================================================================
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//================================================================================
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// Mouse
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#define MOUSE_LEFT 1
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#define MOUSE_RIGHT 2
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#define MOUSE_MIDDLE 4
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#define MOUSE_ALL (MOUSE_LEFT | MOUSE_RIGHT | MOUSE_MIDDLE)
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class Mouse_
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{
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protected:
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uint8_t _buttons;
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void buttons(uint8_t b);
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public:
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Mouse_(void);
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void begin(void);
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void end(void);
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void click(uint8_t b = MOUSE_LEFT);
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void move(signed char x, signed char y, signed char wheel = 0);
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void press(uint8_t b = MOUSE_LEFT); // press LEFT by default
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void release(uint8_t b = MOUSE_LEFT); // release LEFT by default
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bool isPressed(uint8_t b = MOUSE_LEFT); // check LEFT by default
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};
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extern Mouse_ Mouse;
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//================================================================================
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//================================================================================
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// Keyboard
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#define KEY_LEFT_CTRL 0x80
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#define KEY_LEFT_SHIFT 0x81
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#define KEY_LEFT_ALT 0x82
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#define KEY_LEFT_GUI 0x83
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#define KEY_RIGHT_CTRL 0x84
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#define KEY_RIGHT_SHIFT 0x85
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#define KEY_RIGHT_ALT 0x86
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#define KEY_RIGHT_GUI 0x87
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#define KEY_UP_ARROW 0xDA
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#define KEY_DOWN_ARROW 0xD9
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#define KEY_LEFT_ARROW 0xD8
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#define KEY_RIGHT_ARROW 0xD7
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#define KEY_BACKSPACE 0xB2
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#define KEY_TAB 0xB3
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#define KEY_RETURN 0xB0
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#define KEY_ESC 0xB1
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#define KEY_INSERT 0xD1
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#define KEY_DELETE 0xD4
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#define KEY_PAGE_UP 0xD3
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#define KEY_PAGE_DOWN 0xD6
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#define KEY_HOME 0xD2
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#define KEY_END 0xD5
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#define KEY_CAPS_LOCK 0xC1
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#define KEY_F1 0xC2
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#define KEY_F2 0xC3
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#define KEY_F3 0xC4
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#define KEY_F4 0xC5
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#define KEY_F5 0xC6
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#define KEY_F6 0xC7
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#define KEY_F7 0xC8
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#define KEY_F8 0xC9
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#define KEY_F9 0xCA
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#define KEY_F10 0xCB
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#define KEY_F11 0xCC
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#define KEY_F12 0xCD
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// Low level key report: up to 6 keys and shift, ctrl etc at once
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typedef struct
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{
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uint8_t modifiers;
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uint8_t reserved;
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uint8_t keys[6];
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} KeyReport;
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class Keyboard_ : public Print
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{
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protected:
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KeyReport _keyReport;
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void sendReport(KeyReport* keys);
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public:
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Keyboard_(void);
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void begin(void);
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void end(void);
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virtual size_t write(uint8_t k);
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virtual size_t press(uint8_t k);
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virtual size_t release(uint8_t k);
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virtual void releaseAll(void);
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};
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extern Keyboard_ Keyboard;
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//================================================================================
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//================================================================================
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// Low level API
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typedef struct
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{
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uint8_t bmRequestType;
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uint8_t bRequest;
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uint8_t wValueL;
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uint8_t wValueH;
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uint16_t wIndex;
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uint16_t wLength;
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} Setup;
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//================================================================================
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//================================================================================
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// HID 'Driver'
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int HID_GetNumInterfaces(void);
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int HID_GetInterfaceDataLength(void);
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int HID_SendInterfaceData(void);
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bool HID_SendDeviceDescriptor(void);
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int HID_GetDescriptor(int i); // handles the 'GET DESCRIPTOR' control packet
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bool HID_Setup(Setup& setup); // handles a 'SETUP' control packet
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void HID_SendReport(uint8_t id, const void* data, int len);
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void HID_Reset(void); // called whenever I get a bus reset
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//================================================================================
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//================================================================================
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// CDC 'Driver'
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bool CDC_SendIAD(void);
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int CDC_GetNumInterfaces(void);
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int CDC_GetInterfaceDataLength(void);
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int CDC_SendInterfaceData(void);
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bool CDC_SendDeviceDescriptor(void);
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int CDC_GetDescriptor(int i); // handles the 'GET DESCRIPTOR' control packet
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bool CDC_Setup(Setup& setup); // handles a 'SETUP' control packet
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void CDC_FrameReceived(void); // call when frame is received and EP is configured
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void CDC_SendACM(void); // call when you need to send a packet on the interrupt EP
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void CDC_Reset(void); // called whenever I get a bus reset
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//================================================================================
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//================================================================================
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#define TRANSFER_PGM 0x80
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#define TRANSFER_RELEASE 0x40
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#define TRANSFER_TOGGLE_ON 0x20 /* assign this to pre-set the 'toggle' bit on - only works when send queue is empty */
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#define TRANSFER_TOGGLE_OFF 0x10 /* assign this to pre-set the 'toggle' bit off - only works when send queue is empty */
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// NOTE: USB_SendControl returns # of bytes sent, or 0x8000 if a ZLP is sent
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// it will return 0 on error, such as the inability to allocate a buffer
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// control packets send 64 bytes at a time, so the total size is limited
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// by the number of available buffers.
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int USB_SendControl(uint8_t flags, const void* d, int len);
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#ifdef PROGMEM
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int USB_SendControlP(uint8_t flags, const void * PROGMEM d, int len);
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// called internally if you use TRANSFER_PGM flag; you can also call this directly
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#endif // PROGMEM
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uint16_t USB_Available(uint8_t ep); // returns # of bytes in the buffer on an OUT or CONTROL endpoint
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uint16_t USB_SendQLength(uint8_t ep); // returns # of buffers in the send queue for an IN or CONTROL endpoint
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bool USB_IsSendQFull(uint8_t ep); // this returns TRUE if there are too many outgoing buffers already (IN, CONTROL)
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bool USB_IsStalled(uint8_t ep); // this tells me I'm 'stalled' (BULK IN, INTERRUPT, CONTROL)
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int USB_Send(uint8_t ep, const void* data, // send endpoint data. bSendNow marks it "to send"
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int len, uint8_t bSendNow);
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int USB_Recv(uint8_t ep, void* data, // 'receive' data from endpoint receive queue. returns < 0 on error, or # of bytes
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int len);
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int USB_Recv(uint8_t ep); // 'receive' one byte of data from endpoint receive queue
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void USB_Flush(uint8_t ep); // 'sends' all pending data by marking the buffers "to send"
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uint16_t GetFrameNumber(void); // a debug API to obtain the latest USB frame number
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uint8_t USB_GetEPType(uint8_t nEP); // another debug API to return endpoint type by index
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#endif
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#endif /* if defined(USBCON) */
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