mirror of
https://github.com/ProDOS-8/xHD.git
synced 2025-01-14 16:33:32 +00:00
Just some source code style cleanup.
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parent
b958c660a9
commit
e281c0061b
@ -50,10 +50,10 @@ crc_xmodem(char *ptr, unsigned count)
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int main(int argc, char *argv[])
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{
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// Process the command line arguments
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bool bVerbose = false;
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bool bLog = true;
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char *apFilename[2] = {0, 0};
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for (int iArg = 1; iArg < argc; iArg++)
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{
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if (argv[iArg][0] == '-')
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@ -102,6 +102,7 @@ int main(int argc, char *argv[])
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return EXIT_FAILURE;
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}
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// Memory-map the disk image file(s)
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char *apFileData[2] = {0, 0};
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for (int iDrive = 0; iDrive < 2; iDrive++)
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{
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@ -131,44 +132,41 @@ int main(int argc, char *argv[])
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}
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}
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enum sp_return eResult;
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// Create a configuration for the serial ports
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struct sp_port_config *pSerialConfig=0;
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{
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eResult = sp_new_config(&pSerialConfig);
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assert(eResult == SP_OK);
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eResult = sp_set_config_baudrate(pSerialConfig, 230400);
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assert(eResult == SP_OK);
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eResult = sp_set_config_bits(pSerialConfig, 8);
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assert(eResult == SP_OK);
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eResult = sp_set_config_parity(pSerialConfig, SP_PARITY_NONE );
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assert(eResult == SP_OK);
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eResult = sp_set_config_stopbits(pSerialConfig, 1);
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assert(eResult == SP_OK);
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eResult = sp_set_config_flowcontrol(pSerialConfig, SP_FLOWCONTROL_RTSCTS );
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assert(eResult == SP_OK);
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}
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enum sp_return eResult;
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struct sp_port_config *pSerialConfig = 0;
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eResult = sp_new_config(&pSerialConfig);
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assert(eResult == SP_OK);
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eResult = sp_set_config_baudrate(pSerialConfig, 230400);
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assert(eResult == SP_OK);
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eResult = sp_set_config_bits(pSerialConfig, 8);
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assert(eResult == SP_OK);
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eResult = sp_set_config_parity(pSerialConfig, SP_PARITY_NONE);
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assert(eResult == SP_OK);
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eResult = sp_set_config_stopbits(pSerialConfig, 1);
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assert(eResult == SP_OK);
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eResult = sp_set_config_flowcontrol(pSerialConfig, SP_FLOWCONTROL_RTSCTS);
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assert(eResult == SP_OK);
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// Find and configure valid serial ports
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const int MAX_PORTS = 2;
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int iValidPortCount = 0;
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struct sp_port * apValidPorts[MAX_PORTS];
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struct sp_port *apValidPorts[MAX_PORTS];
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{
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struct sp_port **ports;
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eResult = sp_list_ports(&ports);
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assert(eResult == SP_OK);
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for (int i = 0; ports[i]; i++)
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{
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struct sp_port *pPort = ports[i];
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if (strstr(sp_get_port_name(pPort), PORT_STR) )
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if (strstr(sp_get_port_name(pPort), PORT_STR))
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{
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if (bVerbose)
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{
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printf("Valid port %d: %s\n", iValidPortCount, sp_get_port_name(pPort) );
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printf("Valid port %d: %s\n", iValidPortCount, sp_get_port_name(pPort));
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printf("\tDescr: %s\n", sp_get_port_description(pPort));
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int iUsbBus = -1;
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int iUsbAddress = -1;
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@ -183,9 +181,8 @@ int main(int argc, char *argv[])
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printf("\tManufacturer: %s\n", sp_get_port_usb_manufacturer(pPort));
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printf("\tProduct: %s\n", sp_get_port_usb_product(pPort));
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printf("\tSerial #: %s\n", sp_get_port_usb_serial(pPort));
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}
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// Retain the port and configure it's settings
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if (iValidPortCount < MAX_PORTS)
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{
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@ -193,7 +190,7 @@ int main(int argc, char *argv[])
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eResult = sp_copy_port(pPort, &apValidPorts[iValidPortCount++]);
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assert(eResult == SP_OK);
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// Use the copied port
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// Use the copied port
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pPort = apValidPorts[iValidPortCount-1];
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// See if the port can be opened and configured
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@ -208,9 +205,7 @@ int main(int argc, char *argv[])
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sp_close(pPort);
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sp_free_port(pPort);
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if (bVerbose)
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{
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printf("\n\t--- Could not open this port ---\n\n");
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}
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}
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}
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}
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@ -243,32 +238,30 @@ int main(int argc, char *argv[])
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// Look for a command byte
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iBytesRead = sp_blocking_read(pPort, auReadBuf, 1, 1/*ms timeout*/);
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if (iBytesRead > 0)
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{
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if (bVerbose)
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printf("P%d) Cmd %02X\n", iIndex, auReadBuf[0]);
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// Now read 16-bit block number and byte checksum
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iBytesRead = 1 + sp_blocking_read(pPort, auReadBuf+1, 3, 1/*ms timeout*/);
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if (iBytesRead != 4) continue;
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iBytesRead = 1 + sp_blocking_read(pPort, auReadBuf + 1, 3, 1/*ms timeout*/);
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if (iBytesRead != 4)
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continue;
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if (bVerbose)
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{
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for (int i = 0; i < iBytesRead; i++)
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{
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printf("\t%02X '%c'\n", auReadBuf[i], auReadBuf[i] & 0x7f);
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}
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}
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int iChksum = auReadBuf[0] ^ auReadBuf[1] ^ auReadBuf[2];
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if (iChksum != auReadBuf[3])
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{
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printf ("--- Chksum failed --- read=%02X,%02X,%02X,%02X, calc=%02X\n",
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auReadBuf[0],auReadBuf[1],auReadBuf[2],auReadBuf[3],iChksum);
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auReadBuf[0], auReadBuf[1], auReadBuf[2], auReadBuf[3], iChksum);
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continue;
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}
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if (bVerbose)
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printf("\tChksum ok: %02X\n", auReadBuf[4]);
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// If 4x bytes were read and the checksum passed, process request
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int iBlock = auReadBuf[1] | (auReadBuf[2] << 8);
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int iDrive = (auReadBuf[0] >> 2) & 1;
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@ -290,7 +283,8 @@ int main(int argc, char *argv[])
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{
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// Echo command packet to confirm the request was received
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iTxLen = sp_blocking_write(pPort, auReadBuf, 4, 1/*ms timeout*/);
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if (iTxLen != 4) continue;
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if (iTxLen != 4)
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continue;
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// Send the requsted block
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iTxLen = sp_blocking_write(pPort, pDriveData, 512, 5/*ms timeout*/);
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@ -307,8 +301,9 @@ int main(int argc, char *argv[])
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// Send checksum
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iTxLen = sp_blocking_write(pPort, &iChksum, 1, 30/*ms timeout*/);
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if (iTxLen != 1) continue;
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if (iTxLen != 1)
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continue;
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if (bLog)
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{
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printf("%d\tR %5d\r", iDrive, iBlock);
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@ -317,24 +312,22 @@ int main(int argc, char *argv[])
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}
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else // Write block
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{
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static unsigned char auBlockBuf[513];
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int iReadLen = sp_blocking_read(pPort, auBlockBuf, 512+1, 30/*ms timeout*/);
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assert(iReadLen == 512+1);
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static unsigned char auBlockBuf[512 + 1];
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int iReadLen = sp_blocking_read(pPort, auBlockBuf, 512 + 1, 30/*ms timeout*/);
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assert(iReadLen == 512 + 1);
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iChksum = 0;
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for (int i = 0; i < 512; i++)
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iChksum ^= auBlockBuf[i];
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auReadBuf[3] = iChksum;
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auReadBuf[3] = iChksum;
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iTxLen = sp_blocking_write(pPort, auReadBuf, 4, 1/*ms timeout*/);
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if (0) printf ("Wrt Hdr=%02X,%02X,%02X,%02X, calc=%02X, rcv=%02x\n",
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auReadBuf[0],auReadBuf[1],auReadBuf[2],auReadBuf[3],iChksum, auBlockBuf[512]);
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auReadBuf[0], auReadBuf[1], auReadBuf[2], auReadBuf[3], iChksum, auBlockBuf[512]);
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// Block data checksum matches, write it to disk
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if (iChksum == auBlockBuf[512])
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{
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memcpy(pDriveData, auBlockBuf, 512);
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}
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if (bLog)
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{
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@ -343,7 +336,6 @@ int main(int argc, char *argv[])
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}
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}
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}
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}
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}
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