Clean up excessive whitespace at the end of each line using the wspurify tool made by Laszlo Monda
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a8871c7fba
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760 changed files with 12883 additions and 12164 deletions
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@ -1,7 +1,7 @@
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/*
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LUFA Library
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Copyright (C) Dean Camera, 2010.
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dean [at] fourwalledcubicle [dot] com
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www.fourwalledcubicle.com
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*/
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@ -9,13 +9,13 @@
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/*
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Copyright 2010 Dean Camera (dean [at] fourwalledcubicle [dot] com)
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Permission to use, copy, modify, distribute, and sell this
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Permission to use, copy, modify, distribute, and sell this
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software and its documentation for any purpose is hereby granted
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without fee, provided that the above copyright notice appear in
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without fee, provided that the above copyright notice appear in
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all copies and that both that the copyright notice and this
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permission notice and warranty disclaimer appear in supporting
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documentation, and that the name of the author not be used in
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advertising or publicity pertaining to distribution of the
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permission notice and warranty disclaimer appear in supporting
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documentation, and that the name of the author not be used in
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advertising or publicity pertaining to distribution of the
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software without specific, written prior permission.
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The author disclaim all warranties with regard to this
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@ -124,7 +124,7 @@ void RFCOMM_ProcessPacket(void* Data,
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const RFCOMM_Header_t* FrameHeader = (const RFCOMM_Header_t*)Data;
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const uint8_t* FrameData = (const uint8_t*)Data + sizeof(RFCOMM_Header_t);
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uint16_t FrameDataLen = RFCOMM_GetVariableFieldValue(&FrameData);
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/* Decode the RFCOMM frame type from the header */
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switch (FrameHeader->Control & ~FRAME_POLL_FINAL)
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{
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@ -167,7 +167,7 @@ void RFCOMM_SendChannelSignals(const RFCOMM_Channel_t* const RFCOMMChannel,
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uint8_t Length;
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RFCOMM_MSC_Parameters_t Params;
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} MSCommand;
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MSCommand.CommandHeader = (RFCOMM_Command_t){.Command = RFCOMM_Control_ModemStatus, .EA = true, .CR = true};
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MSCommand.Length = (sizeof(MSCommand.Params) << 1) | 0x01;
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MSCommand.Params.Channel = (RFCOMM_Address_t){.DLCI = RFCOMMChannel->DLCI, .EA = true, .CR = true};
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@ -175,7 +175,7 @@ void RFCOMM_SendChannelSignals(const RFCOMM_Channel_t* const RFCOMMChannel,
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MSCommand.Params.BreakSignal = RFCOMMChannel->Local.BreakSignal;
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/* Send the MSC command to the remote device */
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RFCOMM_SendFrame(RFCOMM_CONTROL_DLCI, true, RFCOMM_Frame_UIH, sizeof(MSCommand), &MSCommand, ACLChannel);
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RFCOMM_SendFrame(RFCOMM_CONTROL_DLCI, true, RFCOMM_Frame_UIH, sizeof(MSCommand), &MSCommand, ACLChannel);
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}
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/** Sends new data through an open logical RFCOMM channel. This should be used to transmit data through a
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@ -193,12 +193,12 @@ void RFCOMM_SendData(const uint16_t DataLen,
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{
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if (RFCOMMChannel->State != RFCOMM_Channel_Open)
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return;
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BT_RFCOMM_DEBUG(1, ">> UIH Frame");
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BT_RFCOMM_DEBUG(2, "-- DLCI 0x%02X", RFCOMMChannel->DLCI);
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/* Send the MSC command to the remote device */
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RFCOMM_SendFrame(RFCOMMChannel->DLCI, false, RFCOMM_Frame_UIH, DataLen, Data, ACLChannel);
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RFCOMM_SendFrame(RFCOMMChannel->DLCI, false, RFCOMM_Frame_UIH, DataLen, Data, ACLChannel);
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}
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RFCOMM_Channel_t* RFCOMM_GetFreeChannelEntry(const uint8_t DLCI)
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@ -220,11 +220,11 @@ RFCOMM_Channel_t* RFCOMM_GetFreeChannelEntry(const uint8_t DLCI)
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RFCOMMChannel->Local.Signals = RFCOMM_SIGNAL_RTC | RFCOMM_SIGNAL_RTR | RFCOMM_SIGNAL_DV | (1 << 0);
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RFCOMMChannel->Local.BreakSignal = 0 | (1 << 0);
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RFCOMMChannel->ConfigFlags = 0;
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return RFCOMMChannel;
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}
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}
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return NULL;
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}
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@ -234,7 +234,7 @@ RFCOMM_Channel_t* RFCOMM_GetChannelData(const uint8_t DLCI)
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for (uint8_t i = 0; i < RFCOMM_MAX_OPEN_CHANNELS; i++)
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{
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RFCOMM_Channel_t* CurrRFCOMMChannel = &RFCOMM_Channels[i];
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/* If the current non-closed channel's DLCI matches the search DLCI, return it to the caller */
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if ((CurrRFCOMMChannel->State != RFCOMM_Channel_Closed) && (CurrRFCOMMChannel->DLCI == DLCI))
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return CurrRFCOMMChannel;
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@ -248,10 +248,10 @@ uint16_t RFCOMM_GetVariableFieldValue(const uint8_t** BufferPos)
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{
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uint8_t FirstOctet;
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uint8_t SecondOctet = 0;
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FirstOctet = **BufferPos;
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(*BufferPos)++;
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/* If the field size is more than a single byte, fetch the next byte in the variable length field */
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if (!(FirstOctet & 0x01))
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{
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@ -281,30 +281,30 @@ void RFCOMM_SendFrame(const uint8_t DLCI,
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uint8_t Data[DataLen];
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uint8_t FCS;
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} ResponsePacket;
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/* Set the frame header values to the specified address and frame type */
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ResponsePacket.FrameHeader.Control = Control;
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ResponsePacket.FrameHeader.Address = (RFCOMM_Address_t){.DLCI = DLCI, .EA = true, .CR = CommandResponse};
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/* Set the lower 7 bits of the packet length */
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ResponsePacket.Size[0] = (DataLen << 1);
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/* Terminate the size field if size is 7 bits or lower, otherwise set the upper 8 bits of the length */
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if (DataLen < 128)
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ResponsePacket.Size[0] |= 0x01;
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else
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ResponsePacket.Size[1] = (DataLen >> 7);
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/* Copy over the packet data from the source buffer to the response packet buffer */
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memcpy(ResponsePacket.Data, Data, DataLen);
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/* Determine the length of the frame which is to be used to calculate the CRC value */
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uint8_t CRCLength = sizeof(ResponsePacket.FrameHeader);
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/* UIH frames do not have the CRC calculated on the Size field in the response, all other frames do */
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if ((Control & ~FRAME_POLL_FINAL) != RFCOMM_Frame_UIH)
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CRCLength += sizeof(ResponsePacket.Size);
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/* Calculate the frame checksum from the appropriate fields */
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ResponsePacket.FCS = RFCOMM_GetFCSValue(&ResponsePacket, CRCLength);
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uint8_t Length)
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{
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uint8_t FCS = 0xFF;
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/* Calculate new Frame CRC value via the given data bytes and the CRC table */
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for (uint8_t i = 0; i < Length; i++)
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FCS = pgm_read_byte(&CRC8_Table[FCS ^ ((const uint8_t*)FrameStart)[i]]);
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BT_RFCOMM_DEBUG(2, "-- DLCI 0x%02X", FrameAddress->DLCI);
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RFCOMM_Channel_t* RFCOMMChannel = RFCOMM_GetChannelData(FrameAddress->DLCI);
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/* If the requested channel is currently open, destroy it */
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if (RFCOMMChannel != NULL)
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RFCOMMChannel->State = RFCOMM_Channel_Closed;
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if (FrameAddress->DLCI == RFCOMM_CONTROL_DLCI)
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{
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BT_RFCOMM_DEBUG(1, ">> UA Sent");
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/* Free channel found, or request was to the control channel - accept SABM by sending a UA frame */
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RFCOMM_SendFrame(FrameAddress->DLCI, true, (RFCOMM_Frame_UA | FRAME_POLL_FINAL), 0, NULL, ACLChannel);
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/* Find the existing channel's entry in the channel table */
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RFCOMM_Channel_t* RFCOMMChannel = RFCOMM_GetChannelData(FrameAddress->DLCI);
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/* Existing entry not found, create a new entry for the channel */
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if (RFCOMMChannel == NULL)
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RFCOMMChannel = RFCOMM_GetFreeChannelEntry(FrameAddress->DLCI);
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if (RFCOMMChannel != NULL)
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{
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BT_RFCOMM_DEBUG(1, ">> UA Sent");
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/* Free channel found, or request was to the control channel - accept SABM by sending a UA frame */
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RFCOMM_SendFrame(FrameAddress->DLCI, true, (RFCOMM_Frame_UA | FRAME_POLL_FINAL), 0, NULL, ACLChannel);
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}
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}
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static void RFCOMM_ProcessUIH(const RFCOMM_Address_t* const FrameAddress,
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const uint16_t FrameLength,
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const uint16_t FrameLength,
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const uint8_t* FrameData,
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Bluetooth_Channel_t* const ACLChannel)
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{
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BT_RFCOMM_DEBUG(1, "<< UIH Received");
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BT_RFCOMM_DEBUG(2, "-- DLCI 0x%02X", FrameAddress->DLCI);
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BT_RFCOMM_DEBUG(2, "-- Length 0x%02X", FrameLength);
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RFCOMM_Channel_t* RFCOMMChannel = RFCOMM_GetChannelData(FrameAddress->DLCI);
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if (RFCOMMChannel != NULL)
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RFCOMM_DataReceived(RFCOMMChannel, FrameLength, FrameData);
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}
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