working on more efficient Linux usb detection
This commit is contained in:
+246
-226
@@ -12,146 +12,180 @@
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*/
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#include "MemoryCardManager.h"
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#include <fstream>
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#include "RageLog.h"
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#include "RageUtil.h"
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#include "ScreenManager.h"
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# include <stdio.h>
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# include <sys/stat.h>
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MemoryCardManager* MEMCARDMAN = NULL; // global and accessable from anywhere in our program
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static const char *MemCardDirs[NUM_PLAYERS] =
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{
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/* @ is important; see RageFileManager LoadedDriver::GetPath */
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"@m2c1/",
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"@m2c2/",
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};
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//
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// TODO: Change this to use arch/driver format
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//
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#ifdef LINUX
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struct UsbStorageDevice
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{
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UsbStorageDevice()
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#include <fstream>
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#include "RageLog.h"
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#include "RageUtil.h"
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#include "ScreenManager.h"
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#include <stdio.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <linux/types.h>
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static const char *PROC_KMSG = "/proc/kmsg";
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static int fds_kmsg = -1;
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struct UsbStorageDevice
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{
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iBus = -1;
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iDeviceOnBus = -1;
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iPortOnHub = -1;
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iUsbStorageIndex = -1;
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};
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int iBus;
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int iDeviceOnBus;
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int iPortOnHub;
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CString sSerial;
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int iUsbStorageIndex;
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CString sOsMountDir; // WITHOUT trailing slash
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bool operator==(const UsbStorageDevice& other)
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{
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return
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iBus==other.iBus &&
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iDeviceOnBus==other.iDeviceOnBus &&
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iPortOnHub==other.iPortOnHub &&
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sSerial==other.sSerial &&
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iUsbStorageIndex==other.iUsbStorageIndex &&
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sOsMountDir==other.sOsMountDir;
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}
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};
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vector<UsbStorageDevice> g_StorageDevices;
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void UpdateAttachedUsbStorageDevices()
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{
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vector<UsbStorageDevice> &vDevicesOut = g_StorageDevices;
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#if defined(LINUX)
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vDevicesOut.clear();
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{
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// Find all attached USB devices. Output looks like:
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// T: Bus=02 Lev=00 Prnt=00 Port=00 Cnt=00 Dev#= 1 Spd=12 MxCh= 2
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// B: Alloc= 0/900 us ( 0%), #Int= 0, #Iso= 0
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// D: Ver= 1.00 Cls=09(hub ) Sub=00 Prot=00 MxPS= 8 #Cfgs= 1
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// P: Vendor=0000 ProdID=0000 Rev= 0.00
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// S: Product=USB UHCI Root Hub
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// S: SerialNumber=ff80
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// C:* #Ifs= 1 Cfg#= 1 Atr=40 MxPwr= 0mA
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// I: If#= 0 Alt= 0 #EPs= 1 Cls=09(hub ) Sub=00 Prot=00 Driver=hub
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// E: Ad=81(I) Atr=03(Int.) MxPS= 8 Ivl=255ms
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// T: Bus=02 Lev=01 Prnt=01 Port=00 Cnt=01 Dev#= 2 Spd=12 MxCh= 0
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// D: Ver= 1.10 Cls=00(>ifc ) Sub=00 Prot=00 MxPS= 8 #Cfgs= 1
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// P: Vendor=04e8 ProdID=0100 Rev= 0.01
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// S: Manufacturer=KINGSTON
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// S: Product=USB DRIVE
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// S: SerialNumber=1125198948886
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// C:* #Ifs= 1 Cfg#= 1 Atr=80 MxPwr= 90mA
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// I: If#= 0 Alt= 0 #EPs= 2 Cls=08(stor.) Sub=06 Prot=50 Driver=usb-storage
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// E: Ad=82(I) Atr=02(Bulk) MxPS= 64 Ivl=0ms
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// E: Ad=03(O) Atr=02(Bulk) MxPS= 64 Ivl=0ms
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ifstream f;
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CString fn = "/proc/bus/usb/devices";
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f.open(fn);
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if( !f.is_open() )
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UsbStorageDevice()
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{
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LOG->Warn( "can't open '%s'", fn.c_str() );
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return;
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iBus = -1;
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iDeviceOnBus = -1;
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iPortOnHub = -1;
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iUsbStorageIndex = -1;
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};
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int iBus;
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int iDeviceOnBus;
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int iPortOnHub;
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CString sSerial;
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int iUsbStorageIndex;
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CString sOsMountDir; // WITHOUT trailing slash
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bool operator==(const UsbStorageDevice& other)
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{
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return
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iBus==other.iBus &&
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iDeviceOnBus==other.iDeviceOnBus &&
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iPortOnHub==other.iPortOnHub &&
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sSerial==other.sSerial &&
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iUsbStorageIndex==other.iUsbStorageIndex &&
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sOsMountDir==other.sOsMountDir;
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}
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};
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vector<UsbStorageDevice> g_StorageDevices;
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void UpdateAttachedUsbStorageDevices()
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{
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vector<UsbStorageDevice> &vDevicesOut = g_StorageDevices;
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vDevicesOut.clear();
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UsbStorageDevice usbd;
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CString sLine;
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while( getline(f, sLine) )
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{
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int iRet, iThrowAway;
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// Find all attached USB devices. Output looks like:
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// T: Bus=02 Lev=00 Prnt=00 Port=00 Cnt=00 Dev#= 1 Spd=12 MxCh= 2
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int iBus, iPort, iDevice;
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iRet = sscanf( sLine.c_str(), "T: Bus=%d Lev=%d Prnt=%d Port=%d Cnt=%d Dev#=%d Spd=%d MxCh=%d", &iBus, &iThrowAway, &iThrowAway, &iPort, &iThrowAway, &iDevice, &iThrowAway, &iThrowAway );
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if( iRet == 8 )
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// B: Alloc= 0/900 us ( 0%), #Int= 0, #Iso= 0
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// D: Ver= 1.00 Cls=09(hub ) Sub=00 Prot=00 MxPS= 8 #Cfgs= 1
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// P: Vendor=0000 ProdID=0000 Rev= 0.00
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// S: Product=USB UHCI Root Hub
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// S: SerialNumber=ff80
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// C:* #Ifs= 1 Cfg#= 1 Atr=40 MxPwr= 0mA
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// I: If#= 0 Alt= 0 #EPs= 1 Cls=09(hub ) Sub=00 Prot=00 Driver=hub
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// E: Ad=81(I) Atr=03(Int.) MxPS= 8 Ivl=255ms
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// T: Bus=02 Lev=01 Prnt=01 Port=00 Cnt=01 Dev#= 2 Spd=12 MxCh= 0
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// D: Ver= 1.10 Cls=00(>ifc ) Sub=00 Prot=00 MxPS= 8 #Cfgs= 1
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// P: Vendor=04e8 ProdID=0100 Rev= 0.01
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// S: Manufacturer=KINGSTON
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// S: Product=USB DRIVE
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// S: SerialNumber=1125198948886
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// C:* #Ifs= 1 Cfg#= 1 Atr=80 MxPwr= 90mA
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// I: If#= 0 Alt= 0 #EPs= 2 Cls=08(stor.) Sub=06 Prot=50 Driver=usb-storage
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// E: Ad=82(I) Atr=02(Bulk) MxPS= 64 Ivl=0ms
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// E: Ad=03(O) Atr=02(Bulk) MxPS= 64 Ivl=0ms
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ifstream f;
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CString fn = "/proc/bus/usb/devices";
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f.open(fn);
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if( !f.is_open() )
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{
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usbd.iBus = iBus;
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usbd.iDeviceOnBus = iDevice;
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usbd.iPortOnHub = iPort;
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continue; // stop processing this line
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LOG->Warn( "can't open '%s'", fn.c_str() );
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return;
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}
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// S: SerialNumber=ff80
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char szSerial[1024];
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iRet = sscanf( sLine.c_str(), "S: SerialNumber=%[^\n]", szSerial );
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if( iRet == 1 )
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UsbStorageDevice usbd;
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CString sLine;
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while( getline(f, sLine) )
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{
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usbd.sSerial = szSerial;
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continue; // stop processing this line
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}
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// I: If#= 0 Alt= 0 #EPs= 2 Cls=08(stor.) Sub=06 Prot=50 Driver=usb-storage
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int iClass;
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iRet = sscanf( sLine.c_str(), "I: If#=%d Alt=%d #EPs=%d Cls=%d", &iThrowAway, &iThrowAway, &iThrowAway, &iClass );
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if( iRet == 4 )
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{
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if( iClass == 8 ) // storage class
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vDevicesOut.push_back( usbd );
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continue; // stop processing this line
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int iRet, iThrowAway;
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// T: Bus=02 Lev=00 Prnt=00 Port=00 Cnt=00 Dev#= 1 Spd=12 MxCh= 2
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int iBus, iPort, iDevice;
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iRet = sscanf( sLine.c_str(), "T: Bus=%d Lev=%d Prnt=%d Port=%d Cnt=%d Dev#=%d Spd=%d MxCh=%d", &iBus, &iThrowAway, &iThrowAway, &iPort, &iThrowAway, &iDevice, &iThrowAway, &iThrowAway );
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if( iRet == 8 )
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{
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usbd.iBus = iBus;
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usbd.iDeviceOnBus = iDevice;
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usbd.iPortOnHub = iPort;
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continue; // stop processing this line
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}
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// S: SerialNumber=ff80
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char szSerial[1024];
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iRet = sscanf( sLine.c_str(), "S: SerialNumber=%[^\n]", szSerial );
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if( iRet == 1 )
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{
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usbd.sSerial = szSerial;
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continue; // stop processing this line
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}
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// I: If#= 0 Alt= 0 #EPs= 2 Cls=08(stor.) Sub=06 Prot=50 Driver=usb-storage
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int iClass;
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iRet = sscanf( sLine.c_str(), "I: If#=%d Alt=%d #EPs=%d Cls=%d", &iThrowAway, &iThrowAway, &iThrowAway, &iClass );
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if( iRet == 4 )
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{
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if( iClass == 8 ) // storage class
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vDevicesOut.push_back( usbd );
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continue; // stop processing this line
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}
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}
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}
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}
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{
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// Find the usb-storage device index for all storage class devices.
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for( unsigned i=0; i<vDevicesOut.size(); i++ )
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{
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UsbStorageDevice& usbd = vDevicesOut[i];
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// Output looks like:
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// Find the usb-storage device index for all storage class devices.
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for( unsigned i=0; i<vDevicesOut.size(); i++ )
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{
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UsbStorageDevice& usbd = vDevicesOut[i];
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// Output looks like:
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// Host scsi0: usb-storage
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// Vendor: KINGSTON
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// Product: USB DRIVE
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// Serial Number: 1125198948886
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// Protocol: Transparent SCSI
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// Transport: Bulk
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// GUID: 04e801000001125198948886
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// Attached: Yes
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CString fn = ssprintf( "/proc/scsi/usb-storage-%d/%d", i );
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// Host scsi0: usb-storage
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// Vendor: KINGSTON
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// Product: USB DRIVE
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// Serial Number: 1125198948886
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// Protocol: Transparent SCSI
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// Transport: Bulk
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// GUID: 04e801000001125198948886
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// Attached: Yes
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CString fn = ssprintf( "/proc/scsi/usb-storage-%d/%d", i );
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ifstream f;
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f.open(fn);
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if( !f.is_open() )
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{
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LOG->Warn( "can't open '%s'", fn.c_str() );
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return;
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}
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CString sLine;
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while( getline(f, sLine) )
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{
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// Serial Number: 1125198948886
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char szSerial[1024];
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int iRet = sscanf( sLine.c_str(), "Serial Number: %[^\n]", szSerial );
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if( iRet == 1 ) // we found our line
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{
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usbd.iUsbStorageIndex = i;
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break; // stop looking
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}
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}
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}
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}
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{
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// Find where each device is mounted. Output looks like:
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// /dev/sda1 /mnt/flash1 auto noauto,owner 0 0
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// /dev/sdb1 /mnt/flash2 auto noauto,owner 0 0
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// /dev/sdc1 /mnt/flash3 auto noauto,owner 0 0
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CString fn = "/etc/fstab";
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ifstream f;
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f.open(fn);
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if( !f.is_open() )
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@@ -163,131 +197,117 @@ void UpdateAttachedUsbStorageDevices()
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CString sLine;
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while( getline(f, sLine) )
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{
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// Serial Number: 1125198948886
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char szSerial[1024];
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int iRet = sscanf( sLine.c_str(), "Serial Number: %[^\n]", szSerial );
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if( iRet == 1 ) // we found our line
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// /dev/sda1 /mnt/flash1 auto noauto,owner 0 0
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char cScsiDev;
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char szMountPoint[1024];
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int iRet = sscanf( sLine.c_str(), "/dev/sd%c1 %s", &cScsiDev, szMountPoint );
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if( iRet != 2 )
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continue; // don't process this line
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int iUsbStorageIndex = cScsiDev - 'a';
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CString sMountPoint = szMountPoint;
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TrimLeft( sMountPoint );
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TrimRight( sMountPoint );
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// search for the usb-storage device corresponding to the SCSI device
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for( unsigned i=0; i<vDevicesOut.size(); i++ )
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{
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usbd.iUsbStorageIndex = i;
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break; // stop looking
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UsbStorageDevice& usbd = vDevicesOut[i];
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if( usbd.iUsbStorageIndex == iUsbStorageIndex ) // found our match
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{
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usbd.sOsMountDir = sMountPoint;
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break; // stop looking for a match
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}
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}
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}
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}
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return;
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}
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MemoryCardManager::MemoryCardManager()
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{
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// Find where each device is mounted. Output looks like:
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fds_kmsg = open(PROC_KMSG, O_RDONLY);
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if( fds_kmsg == -1 )
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LOG->Warn("Open '%s' failed", PROC_KMSG);
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}
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// /dev/sda1 /mnt/flash1 auto noauto,owner 0 0
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// /dev/sdb1 /mnt/flash2 auto noauto,owner 0 0
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// /dev/sdc1 /mnt/flash3 auto noauto,owner 0 0
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MemoryCardManager::~MemoryCardManager()
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{
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if( fds_kmsg != -1 )
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close( fds_kmsg );
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}
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CString fn = "/etc/fstab";
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ifstream f;
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f.open(fn);
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if( !f.is_open() )
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bool UsbChanged()
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{
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// check PROC_KMSG for any "usb" messages
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if( fds_kmsg == -1 )
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return false;
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fd_set fdset;
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FD_ZERO( &fdset );
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FD_SET( fds_kmsg, &fdset );
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int max_fd = fds_kmsg;
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struct timeval zero = {0,0};
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if ( select(max_fd+1, &fdset, NULL, NULL, &zero) <= 0 )
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return;
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if( !FD_ISSET(fds_kmsg, &fdset) )
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continue;
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static char buffer[1024]; // large enough to read all messages in one call
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int ret = read(fds_kmsg, &buffer, sizeof(buffer));
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if( ret == 0 )
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{
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LOG->Warn( "can't open '%s'", fn.c_str() );
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LOG->Warn("Read only %d bytes from '%s'", ret, PROC_KMSG);
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close(fds_kmsg);
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fds_kmsg = -1;
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return;
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}
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CString sLine;
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while( getline(f, sLine) )
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else if( buffer == sizeof(buffer) )
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{
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// /dev/sda1 /mnt/flash1 auto noauto,owner 0 0
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char cScsiDev;
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char szMountPoint[1024];
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int iRet = sscanf( sLine.c_str(), "/dev/sd%c1 %s", &cScsiDev, szMountPoint );
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if( iRet != 2 )
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continue; // don't process this line
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LOG->Warn("We could have more than %d bytes from '%s'", sizeof(buffer), PROC_KMSG);
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buffer[sizeof(buffer)-1] = \0;
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}
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int iUsbStorageIndex = cScsiDev - 'a';
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CString sMountPoint = szMountPoint;
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TrimLeft( sMountPoint );
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TrimRight( sMountPoint );
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bool bLogAboutUsb = strstr(buffer,"usb") || strstr(buffer,"USB");
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return bLogAboutUsb;
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}
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// search for the usb-storage device corresponding to the SCSI device
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for( unsigned i=0; i<vDevicesOut.size(); i++ )
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void MemoryCardManager::Update( float fDelta )
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{
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if( UsbChanged() )
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{
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vector<UsbStorageDevice> vOld = g_StorageDevices; // make a copy
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UpdateAttachedUsbStorageDevices();
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vector<UsbStorageDevice> &vNew = g_StorageDevices;
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unsigned i;
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// check for disconnects
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for( i=0; i<vOld.size(); i++ )
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{
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UsbStorageDevice& usbd = vDevicesOut[i];
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if( usbd.iUsbStorageIndex == iUsbStorageIndex ) // found our match
|
||||
{
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usbd.sOsMountDir = sMountPoint;
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break; // stop looking for a match
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}
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const UsbStorageDevice old = vOld[i];
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if( find(vNew.begin(),vNew.end(),old) == vNew.end() )
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SCREENMAN->SystemMessage( ssprintf("Disconnected bus %d port %d device %d", old.iBus, old.iPortOnHub, old.iDeviceOnBus) );
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}
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// check for connects
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for( i=0; i<vNew.size(); i++ )
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{
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const UsbStorageDevice newd = vNew[i];
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if( find(vOld.begin(),vOld.end(),newd) == vOld.end() )
|
||||
SCREENMAN->SystemMessage( ssprintf("Connected bus %d port %d device %d", newd.iBus, newd.iPortOnHub, newd.iDeviceOnBus) );
|
||||
}
|
||||
}
|
||||
}
|
||||
return;
|
||||
#elif defined(_WINDOWS)
|
||||
|
||||
#else
|
||||
#elif // !LINUX
|
||||
|
||||
MemoryCardManager::MemoryCardManager() {}
|
||||
MemoryCardManager::~MemoryCardManager() {}
|
||||
void MemoryCardManager::Update( float fDelta ) {}
|
||||
|
||||
#endif
|
||||
}
|
||||
|
||||
|
||||
MemoryCardManager::MemoryCardManager()
|
||||
{
|
||||
|
||||
}
|
||||
|
||||
MemoryCardManager::~MemoryCardManager()
|
||||
{
|
||||
|
||||
}
|
||||
|
||||
bool UsbChanged()
|
||||
{
|
||||
#if defined(LINUX)
|
||||
// UGLY: if the system log changed, then a USB device was connected or
|
||||
// disconnected. Use this as a trivial check.
|
||||
static const CString VAR_LOG_MESSAGES = "/var/log/messages";
|
||||
static bool bFirstTime = false;
|
||||
static stat old_stat;
|
||||
if( bFirstTime )
|
||||
{
|
||||
fstat(VAR_LOG_MESSAGES, &old_stat);
|
||||
bFirstTime = false;
|
||||
return true;
|
||||
}
|
||||
else
|
||||
{
|
||||
stat new_stat;
|
||||
fstat(VAR_LOG_MESSAGES, &new_stat);
|
||||
bool bChanged = old_stat != new_stat;
|
||||
old_stat = new_stat;
|
||||
return bChanged;
|
||||
}
|
||||
#else
|
||||
return false;
|
||||
#endif
|
||||
}
|
||||
|
||||
void MemoryCardManager::Update( float fDelta )
|
||||
{
|
||||
if( UsbChanged() )
|
||||
{
|
||||
vector<UsbStorageDevice> vOld = g_StorageDevices; // make a copy
|
||||
UpdateAttachedUsbStorageDevices();
|
||||
vector<UsbStorageDevice> &vNew = g_StorageDevices;
|
||||
|
||||
unsigned i;
|
||||
|
||||
// check for disconnects
|
||||
for( i=0; i<vOld.size(); i++ )
|
||||
{
|
||||
const UsbStorageDevice old = vOld[i];
|
||||
if( find(vNew.begin(),vNew.end(),old) == vNew.end() )
|
||||
SCREENMAN->SystemMessage( ssprintf("Disconnected bus %d port %d device %d", old.iBus, old.iPortOnHub, old.iDeviceOnBus) );
|
||||
}
|
||||
|
||||
// check for connects
|
||||
for( i=0; i<vNew.size(); i++ )
|
||||
{
|
||||
const UsbStorageDevice newd = vNew[i];
|
||||
if( find(vOld.begin(),vOld.end(),newd) == vOld.end() )
|
||||
SCREENMAN->SystemMessage( ssprintf("Connected bus %d port %d device %d", newd.iBus, newd.iPortOnHub, newd.iDeviceOnBus) );
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user