//***************************************************************************** // // usb_serial_structs.c - Data structures defining this CDC USB device. // // Copyright (c) 2009-2014 Texas Instruments Incorporated. All rights reserved. // Software License Agreement // // Texas Instruments (TI) is supplying this software for use solely and // exclusively on TI's microcontroller products. The software is owned by // TI and/or its suppliers, and is protected under applicable copyright // laws. You may not combine this software with "viral" open-source // software in order to form a larger program. // // THIS SOFTWARE IS PROVIDED "AS IS" AND WITH ALL FAULTS. // NO WARRANTIES, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING, BUT // NOT LIMITED TO, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR // A PARTICULAR PURPOSE APPLY TO THIS SOFTWARE. TI SHALL NOT, UNDER ANY // CIRCUMSTANCES, BE LIABLE FOR SPECIAL, INCIDENTAL, OR CONSEQUENTIAL // DAMAGES, FOR ANY REASON WHATSOEVER. // // This is part of revision 2.1.0.12573 of the EK-TM4C1294XL Firmware Package. // //***************************************************************************** #include #include #include "inc/hw_types.h" #include "driverlib/usb.h" #include "usblib/usblib.h" #include "usblib/usbcdc.h" #include "usblib/usb-ids.h" #include "usblib/device/usbdevice.h" #include "usblib/device/usbdcdc.h" #include "usblib/device/usbdcomp.h" #include "usb_structs.h" //***************************************************************************** // // The languages supported by this device. // //***************************************************************************** const uint8_t g_pui8LangDescriptor[] = { 4, USB_DTYPE_STRING, USBShort(USB_LANG_EN_US) }; //***************************************************************************** // // The manufacturer string. // //***************************************************************************** const uint8_t g_pui8ManufacturerString[] = { (17 + 1) * 2, USB_DTYPE_STRING, 'T', 0, 'e', 0, 'x', 0, 'a', 0, 's', 0, ' ', 0, 'I', 0, 'n', 0, 's', 0, 't', 0, 'r', 0, 'u', 0, 'm', 0, 'e', 0, 'n', 0, 't', 0, 's', 0, }; //***************************************************************************** // // The product string. // //***************************************************************************** const uint8_t g_pui8ProductString[] = { 2 + (16 * 2), USB_DTYPE_STRING, 'V', 0, 'i', 0, 'r', 0, 't', 0, 'u', 0, 'a', 0, 'l', 0, ' ', 0, 'C', 0, 'O', 0, 'M', 0, ' ', 0, 'P', 0, 'o', 0, 'r', 0, 't', 0 }; //***************************************************************************** // // The serial number string. // //***************************************************************************** const uint8_t g_pui8SerialNumberString[] = { 2 + (8 * 2), USB_DTYPE_STRING, '1', 0, '2', 0, '3', 0, '4', 0, '5', 0, '6', 0, '7', 0, '8', 0 }; //***************************************************************************** // // The control interface description string. // //***************************************************************************** const uint8_t g_pui8ControlInterfaceString[] = { 2 + (21 * 2), USB_DTYPE_STRING, 'A', 0, 'C', 0, 'M', 0, ' ', 0, 'C', 0, 'o', 0, 'n', 0, 't', 0, 'r', 0, 'o', 0, 'l', 0, ' ', 0, 'I', 0, 'n', 0, 't', 0, 'e', 0, 'r', 0, 'f', 0, 'a', 0, 'c', 0, 'e', 0 }; //***************************************************************************** // // The configuration description string. // //***************************************************************************** const uint8_t g_pui8ConfigString[] = { 2 + (26 * 2), USB_DTYPE_STRING, 'S', 0, 'e', 0, 'l', 0, 'f', 0, ' ', 0, 'P', 0, 'o', 0, 'w', 0, 'e', 0, 'r', 0, 'e', 0, 'd', 0, ' ', 0, 'C', 0, 'o', 0, 'n', 0, 'f', 0, 'i', 0, 'g', 0, 'u', 0, 'r', 0, 'a', 0, 't', 0, 'i', 0, 'o', 0, 'n', 0 }; //***************************************************************************** // // The descriptor string table. // //***************************************************************************** const uint8_t * const g_pui8StringDescriptors[] = { g_pui8LangDescriptor, g_pui8ManufacturerString, g_pui8ProductString, g_pui8SerialNumberString, g_pui8ControlInterfaceString, g_pui8ConfigString }; #define NUM_STRING_DESCRIPTORS (sizeof(g_pui8StringDescriptors) / \ sizeof(uint8_t *)) //***************************************************************************** // // The CDC device initialization and customization structures. In this case, // we are using USBBuffers between the CDC device class driver and the // application code. The function pointers and callback data values are set // to insert a buffer in each of the data channels, transmit and receive. // // With the buffer in place, the CDC channel callback is set to the relevant // channel function and the callback data is set to point to the channel // instance data. The buffer, in turn, has its callback set to the application // function and the callback data set to our CDC instance structure. // //***************************************************************************** tUSBDCDCDevice g_psCDCDevice[NUM_SERIAL_DEVICES] = { { USB_VID_TI_1CBE, USB_PID_SERIAL, 0, USB_CONF_ATTR_SELF_PWR, ControlHandler, (void *)&g_psCDCDevice[0], USBBufferEventCallback, (void *)&g_psRxBuffer[0], USBBufferEventCallback, (void *)&g_psTxBuffer[0], g_pui8StringDescriptors, NUM_STRING_DESCRIPTORS }, { USB_VID_TI_1CBE, USB_PID_SERIAL, 0, USB_CONF_ATTR_SELF_PWR, ControlHandler, (void *)&g_psCDCDevice[1], USBBufferEventCallback, (void *)&g_psRxBuffer[1], USBBufferEventCallback, (void *)&g_psTxBuffer[1], g_pui8StringDescriptors, NUM_STRING_DESCRIPTORS } }; //***************************************************************************** // // Receive buffer (from the USB perspective). // //***************************************************************************** uint8_t g_ppui8USBRxBuffer[NUM_SERIAL_DEVICES][UART_BUFFER_SIZE]; uint8_t g_ppui8RxBufferWorkspace[NUM_SERIAL_DEVICES][USB_BUFFER_WORKSPACE_SIZE]; const tUSBBuffer g_psRxBuffer[NUM_SERIAL_DEVICES] = { { false, // This is a receive buffer. RxHandlerEcho, // pfnCallback (void *)&g_psCDCDevice[0], // Callback data is our device pointer. USBDCDCPacketRead, // pfnTransfer USBDCDCRxPacketAvailable, // pfnAvailable (void *)&g_psCDCDevice[0], // pvHandle g_ppui8USBRxBuffer[0], // pcBuffer UART_BUFFER_SIZE, // ulBufferSize g_ppui8RxBufferWorkspace[0] // pvWorkspace }, { false, // This is a receive buffer. RxHandlerCmd, // pfnCallback (void *)&g_psCDCDevice[1], // Callback data is our device pointer. USBDCDCPacketRead, // pfnTransfer USBDCDCRxPacketAvailable, // pfnAvailable (void *)&g_psCDCDevice[1], // pvHandle g_ppui8USBRxBuffer[1], // pcBuffer UART_BUFFER_SIZE, // ulBufferSize g_ppui8RxBufferWorkspace[1] // pvWorkspace } }; //***************************************************************************** // // Transmit buffer (from the USB perspective). // //***************************************************************************** uint8_t g_ppcUSBTxBuffer[NUM_SERIAL_DEVICES][UART_BUFFER_SIZE]; uint8_t g_ppucTxBufferWorkspace[NUM_SERIAL_DEVICES][USB_BUFFER_WORKSPACE_SIZE]; const tUSBBuffer g_psTxBuffer[NUM_SERIAL_DEVICES] = { { true, // This is a transmit buffer. TxHandlerEcho, // pfnCallback (void *)&g_psCDCDevice[0], // Callback data is our device pointer. USBDCDCPacketWrite, // pfnTransfer USBDCDCTxPacketAvailable, // pfnAvailable (void *)&g_psCDCDevice[0], // pvHandle g_ppcUSBTxBuffer[0], // pcBuffer UART_BUFFER_SIZE, // ulBufferSize g_ppucTxBufferWorkspace[0] // pvWorkspace }, { true, // This is a transmit buffer. TxHandlerCmd, // pfnCallback (void *)&g_psCDCDevice[1], // Callback data is our device pointer. USBDCDCPacketWrite, // pfnTransfer USBDCDCTxPacketAvailable, // pfnAvailable (void *)&g_psCDCDevice[1], // pvHandle g_ppcUSBTxBuffer[1], // pcBuffer UART_BUFFER_SIZE, // ulBufferSize g_ppucTxBufferWorkspace[1] // pvWorkspace } }; //**************************************************************************** // // The memory allocated to hold the composite descriptor that is created by // the call to USBDCompositeInit(). // //**************************************************************************** uint8_t g_pui8DescriptorData[DESCRIPTOR_DATA_SIZE]; tCompositeEntry g_psCompEntries[NUM_SERIAL_DEVICES]; //**************************************************************************** // // Allocate the Device Data for the top level composite device class. // //**************************************************************************** tUSBDCompositeDevice g_sCompDevice = { // // Stellaris VID. // USB_VID_TI_1CBE, // // Stellaris PID for composite serial device. // USB_PID_COMP_SERIAL, // // This is in 2mA increments so 500mA. // 250, // // Bus powered device. // USB_CONF_ATTR_BUS_PWR, // // There is no need for a default composite event handler. // 0, // // The string table. // g_pui8StringDescriptors, NUM_STRING_DESCRIPTORS, // // The Composite device array. // 2, g_psCompEntries };