Make reading and writing the hardware and user configuration possible via USB. Remove readEeprom() and writeEeprom(). Use enums instead of macros.
This commit is contained in:
@@ -68,51 +68,11 @@ void setTestLed(void)
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UhkModuleStates[0].isTestLedOn = ledState;
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}
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void writeEeprom(void)
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{
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uint8_t i2cPayloadSize = GenericHidInBuffer[1];
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if (i2cPayloadSize > USB_GENERIC_HID_OUT_BUFFER_LENGTH-2) {
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setError(WRITE_EEPROM_RESPONSE_INVALID_PAYLOAD_SIZE);
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return;
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}
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// I2cWrite(I2C_EEPROM_BUS_BASEADDR, I2C_ADDRESS_EEPROM, GenericHidInBuffer+2, i2cPayloadSize);
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}
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void readEeprom(void)
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{
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uint8_t i2cPayloadSize = GenericHidInBuffer[1];
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if (i2cPayloadSize > USB_GENERIC_HID_OUT_BUFFER_LENGTH-1) {
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setError(WRITE_EEPROM_RESPONSE_INVALID_PAYLOAD_SIZE);
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return;
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}
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// I2cWrite(I2C_EEPROM_BUS_BASEADDR, I2C_ADDRESS_EEPROM, GenericHidInBuffer+2, 2);
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// I2cRead(I2C_EEPROM_BUS_BASEADDR, I2C_ADDRESS_EEPROM, GenericHidOutBuffer+1, i2cPayloadSize);
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GenericHidOutBuffer[0] = UsbResponse_Success;
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}
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void readMergeSensor(void)
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{
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SetResponseByte(MERGE_SENSOR_IS_MERGED);
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}
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void uploadConfig(void)
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{
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uint8_t byteCount = GenericHidInBuffer[1];
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uint16_t memoryOffset = *((uint16_t*)(GenericHidInBuffer+2));
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if (byteCount > USB_GENERIC_HID_OUT_BUFFER_LENGTH-4) {
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setError(UPLOAD_CONFIG_INVALID_PAYLOAD_SIZE);
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return;
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}
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memcpy(UserConfigBuffer.buffer+memoryOffset, GenericHidInBuffer+4, byteCount);
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}
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void applyConfig(void)
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{
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UserConfigBuffer.offset = 0;
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@@ -143,6 +103,48 @@ void launchEepromTransfer(void)
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EEPROM_LaunchTransfer(transferType);
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}
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void readConfiguration(bool isHardware)
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{
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uint8_t length = GenericHidInBuffer[1];
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uint16_t offset = *((uint16_t*)GenericHidInBuffer+2);
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if (length > USB_GENERIC_HID_OUT_BUFFER_LENGTH-1) {
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setError(ConfigTransferResponse_LengthTooLarge);
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return;
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}
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uint8_t *buffer = isHardware ? HardwareConfigBuffer.buffer : UserConfigBuffer.buffer;
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uint16_t bufferLength = isHardware ? HARDWARE_CONFIG_SIZE : USER_CONFIG_SIZE;
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if (offset + length > bufferLength) {
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setError(ConfigTransferResponse_BufferOutOfBounds);
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return;
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}
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memcpy(GenericHidOutBuffer+1, buffer+offset, length);
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}
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void writeConfiguration(bool isHardware)
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{
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uint8_t length = GenericHidInBuffer[1];
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uint16_t offset = *((uint16_t*)(GenericHidInBuffer+1+1));
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if (length > USB_GENERIC_HID_OUT_BUFFER_LENGTH-1-1-2) {
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setError(ConfigTransferResponse_LengthTooLarge);
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return;
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}
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uint8_t *buffer = isHardware ? HardwareConfigBuffer.buffer : UserConfigBuffer.buffer;
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uint16_t bufferLength = isHardware ? HARDWARE_CONFIG_SIZE : USER_CONFIG_SIZE;
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if (offset + length > bufferLength) {
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setError(ConfigTransferResponse_BufferOutOfBounds);
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return;
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}
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memcpy(buffer+offset, GenericHidInBuffer+1+1+2, length);
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}
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// The main protocol handler function
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void usbProtocolHandler(void)
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@@ -161,17 +163,12 @@ void usbProtocolHandler(void)
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break;
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case UsbCommand_WriteLedDriver:
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break;
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case UsbCommand_WriteEeprom:
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writeEeprom();
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break;
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case UsbCommand_ReadEeprom:
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readEeprom();
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break;
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case UsbCommand_ReadMergeSensor:
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readMergeSensor();
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break;
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case UsbCommand_UploadConfig:
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uploadConfig();
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case UsbCommand_WriteUserConfiguration:
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writeConfiguration(false);
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//uploadConfig();
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break;
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case UsbCommand_ApplyConfig:
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applyConfig();
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@@ -185,6 +182,15 @@ void usbProtocolHandler(void)
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case UsbCommand_LaunchEepromTransfer:
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launchEepromTransfer();
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break;
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case UsbCommand_ReadHardwareConfiguration:
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readConfiguration(true);
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break;
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case UsbCommand_WriteHardwareConfiguration:
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writeConfiguration(true);
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break;
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case UsbCommand_ReadUserConfiguration:
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readConfiguration(false);
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break;
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default:
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break;
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}
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@@ -3,31 +3,24 @@
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// Includes:
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#include "usb_interfaces/usb_interface_generic_hid.h"
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// Macros:
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#define WRITE_LED_DRIVER_RESPONSE_INVALID_ADDRESS 1
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#define WRITE_LED_DRIVER_RESPONSE_INVALID_PAYLOAD_SIZE 2
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#define WRITE_EEPROM_RESPONSE_INVALID_PAYLOAD_SIZE 1
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#define UPLOAD_CONFIG_INVALID_PAYLOAD_SIZE 1
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#include "usb_interfaces/usb_interface_generic_hid.h"
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// Typedefs:
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typedef enum {
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UsbCommand_GetSystemProperty = 0,
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UsbCommand_Reenumerate = 1,
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UsbCommand_SetTestLed = 2,
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UsbCommand_WriteLedDriver = 3,
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UsbCommand_WriteEeprom = 5,
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UsbCommand_ReadEeprom = 6,
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UsbCommand_ReadMergeSensor = 7,
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UsbCommand_UploadConfig = 8,
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UsbCommand_ApplyConfig = 9,
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UsbCommand_SetLedPwm = 10,
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UsbCommand_GetAdcValue = 11,
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UsbCommand_LaunchEepromTransfer = 12,
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UsbCommand_GetSystemProperty = 0,
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UsbCommand_Reenumerate = 1,
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UsbCommand_SetTestLed = 2,
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UsbCommand_WriteLedDriver = 3,
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UsbCommand_ReadMergeSensor = 7,
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UsbCommand_WriteUserConfiguration = 8,
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UsbCommand_ApplyConfig = 9,
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UsbCommand_SetLedPwm = 10,
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UsbCommand_GetAdcValue = 11,
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UsbCommand_LaunchEepromTransfer = 12,
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UsbCommand_ReadHardwareConfiguration = 13,
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UsbCommand_WriteHardwareConfiguration = 14,
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UsbCommand_ReadUserConfiguration = 15,
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} usb_command_t;
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typedef enum {
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@@ -42,6 +35,11 @@
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UsbResponse_GenericError = 1,
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} usb_response_t;
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typedef enum {
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ConfigTransferResponse_LengthTooLarge = 1,
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ConfigTransferResponse_BufferOutOfBounds = 2,
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} config_transfer_response_t;
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// Functions:
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extern void usbProtocolHandler();
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