/* Copyright (c) 2010, Peter Barrett ** ** Permission to use, copy, modify, and/or distribute this software for ** any purpose with or without fee is hereby granted, provided that the ** above copyright notice and this permission notice appear in all copies. ** ** THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL ** WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED ** WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR ** BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES ** OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, ** WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ** ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS ** SOFTWARE. */ #include "Platform.h" #define CDC_TX CDC_ENDPOINT_IN #define CDC_RX CDC_ENDPOINT_OUT #define EP_TYPE_CONTROL 0x00 #define EP_TYPE_BULK_IN 0x81 #define EP_TYPE_BULK_OUT 0x80 #define EP_TYPE_INTERRUPT_IN 0xC1 #define EP_TYPE_INTERRUPT_OUT 0xC0 #define EP_TYPE_ISOCHRONOUS_IN 0x41 #define EP_TYPE_ISOCHRONOUS_OUT 0x40 /** Pulse generation counters to keep track of the number of milliseconds remaining for each pulse type */ #define TX_RX_LED_PULSE_MS 100 uint8_t TxLEDPulse; /**< Milliseconds remaining for data Tx LED pulse */ uint8_t RxLEDPulse; /**< Milliseconds remaining for data Rx LED pulse */ void Reset(); //================================================================== //================================================================== typedef struct { uint32_t dwDTERate; uint8_t bCharFormat; uint8_t bParityType; uint8_t bDataBits; uint8_t lineState; } LineInfo; static volatile LineInfo _usbLineInfo = { 57600, 0x00, 0x00, 0x00, 0x00 }; //================================================================== //================================================================== // 4 bytes of RAM volatile uint8_t _usbConfiguration; volatile uint8_t _ejected; volatile uint16_t _timeout; static inline void WaitIN(void) { while (!(UEINTX & (1<> 8) #define RAWHID_USAGE_PAGE 0xFFC0 #define RAWHID_USAGE 0x0C00 #define RAWHID_TX_SIZE 64 #define RAWHID_RX_SIZE 64 const uint8_t _rawHID[] = { // RAW HID 0x06, LSB(RAWHID_USAGE_PAGE), MSB(RAWHID_USAGE_PAGE), // 30 0x0A, LSB(RAWHID_USAGE), MSB(RAWHID_USAGE), 0xA1, 0x01, // Collection 0x01 0x85, 0x03, // REPORT_ID (3) 0x75, 0x08, // report size = 8 bits 0x15, 0x00, // logical minimum = 0 0x26, 0xFF, 0x00, // logical maximum = 255 0x95, 64, // report count TX 0x09, 0x01, // usage 0x81, 0x02, // Input (array) 0x95, 64, // report count RX 0x09, 0x02, // usage 0x91, 0x02, // Output (array) 0xC0 // end collection }; uint8_t _cdcComposite = 0; bool SendDescriptor() { Setup& setup = _setup; uint16_t desc_length = 0; const uint8_t* desc_addr = 0; uint8_t t = setup.wValueH; if (0x22 == t) { #ifdef HID_ENABLED desc_addr = _rawHID; desc_length = sizeof(desc_length); #endif } else if (USB_DEVICE_DESCRIPTOR_TYPE == t) { if (setup.wLength == 8) _cdcComposite = 1; desc_addr = _cdcComposite ? (const uint8_t*)&USB_DeviceDescriptorA : (const uint8_t*)&USB_DeviceDescriptor; } else if (USB_CONFIGURATION_DESCRIPTOR_TYPE == t) { desc_addr = (const uint8_t*)&USB_ConfigDescriptor; desc_length = sizeof(USB_ConfigDescriptor); } else if (USB_STRING_DESCRIPTOR_TYPE == t) { if (setup.wValueL == 0) desc_addr = (const uint8_t*)&STRING_LANGUAGE; else if (setup.wValueL == IPRODUCT) desc_addr = (const uint8_t*)&STRING_IPRODUCT; else if (setup.wValueL == ISERIAL) desc_addr = (const uint8_t*)&STRING_SERIAL; else if (setup.wValueL == IMANUFACTURER) desc_addr = (const uint8_t*)&STRING_IMANUFACTURER; else return false; } else return false; if (desc_length == 0) desc_length = pgm_read_byte(desc_addr); if (setup.wLength < desc_length) desc_length = setup.wLength; // Send descriptor // EP0 is 64 bytes long // RWAL and FIFOCON don't work on EP0 uint16_t n = 0; do { if (!WaitForINOrOUT()) return false; Send8(pgm_read_byte(&desc_addr[n++])); uint8_t clr = n & 0x3F; if (!clr) ClearIN(); // Fifo is full, release this packet } while (n < desc_length); return true; } void USBSetupInterrupt() { SetEP(0); if (!ReceivedSetupInt()) return; Setup& setup = _setup; // global saves ~30 bytes Recv((uint8_t*)&setup,8); ClearSetupInt(); if (setup.bmRequestType & DEVICETOHOST) WaitIN(); else ClearIN(); bool ok = true; uint8_t r = setup.bRequest; if (SET_ADDRESS == r) { WaitIN(); UDADDR = setup.wValueL | (1<