mirror of
https://github.com/felis/USB_Host_Shield_2.0.git
synced 2024-03-22 11:31:26 +01:00
Implement ConfigureDevice() before Init()
Also added clearAllVariables() - see: https://github.com/felis/USB_Host_Shield_2.0/pull/63
This commit is contained in:
parent
47ff8e55c5
commit
b76ddedd59
2 changed files with 108 additions and 61 deletions
160
BTD.cpp
160
BTD.cpp
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@ -34,45 +34,37 @@ qNextPollTime(0), // Reset NextPollTime
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pollInterval(0),
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pollInterval(0),
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bPollEnable(false) // Don't start polling before dongle is connected
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bPollEnable(false) // Don't start polling before dongle is connected
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{
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{
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uint8_t i;
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for (uint8_t i = 0; i < BTD_NUMSERVICES; i++)
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for (i = 0; i < BTD_MAX_ENDPOINTS; i++) {
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epInfo[i].epAddr = 0;
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epInfo[i].maxPktSize = (i) ? 0 : 8;
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epInfo[i].epAttribs = 0;
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epInfo[i].bmNakPower = (i) ? USB_NAK_NOWAIT : USB_NAK_MAX_POWER;
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}
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for (i = 0; i < BTD_NUMSERVICES; i++)
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btService[i] = NULL;
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btService[i] = NULL;
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if (pUsb) // register in USB subsystem
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clearAllVariables(); // Set all variables, endpoint structs etc. to default values
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pUsb->RegisterDeviceClass(this); //set devConfig[] entry
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if (pUsb) // Register in USB subsystem
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pUsb->RegisterDeviceClass(this); // Set devConfig[] entry
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}
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}
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uint8_t BTD::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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uint8_t BTD::ConfigureDevice(uint8_t parent, uint8_t port, bool lowspeed) {
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uint8_t buf[sizeof (USB_DEVICE_DESCRIPTOR)];
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const uint8_t constBufSize = sizeof (USB_DEVICE_DESCRIPTOR);
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uint8_t buf[constBufSize];
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uint8_t rcode;
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uint8_t rcode;
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UsbDevice *p = NULL;
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UsbDevice *p = NULL;
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EpInfo *oldep_ptr = NULL;
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EpInfo *oldep_ptr = NULL;
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uint8_t num_of_conf; // number of configurations
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uint16_t PID;
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uint16_t VID;
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// get memory address of USB device address pool
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clearAllVariables(); // Set all variables, endpoint structs etc. to default values
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AddressPool &addrPool = pUsb->GetAddressPool();
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AddressPool &addrPool = pUsb->GetAddressPool(); // Get memory address of USB device address pool
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#ifdef EXTRADEBUG
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#ifdef EXTRADEBUG
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Notify(PSTR("\r\nBTD Init"), 0x80);
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Notify(PSTR("\r\nBTD ConfigureDevice"), 0x80);
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#endif
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#endif
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// check if address has already been assigned to an instance
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if (bAddress) {
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if (bAddress) { // Check if address has already been assigned to an instance
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#ifdef DEBUG_USB_HOST
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nAddress in use"), 0x80);
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Notify(PSTR("\r\nAddress in use"), 0x80);
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#endif
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#endif
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return USB_ERROR_CLASS_INSTANCE_ALREADY_IN_USE;
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return USB_ERROR_CLASS_INSTANCE_ALREADY_IN_USE;
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}
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}
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// Get pointer to pseudo device with address 0 assigned
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p = addrPool.GetUsbDevicePtr(0); // Get pointer to pseudo device with address 0 assigned
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p = addrPool.GetUsbDevicePtr(0);
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if (!p) {
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if (!p) {
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#ifdef DEBUG_USB_HOST
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nAddress not found"), 0x80);
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Notify(PSTR("\r\nAddress not found"), 0x80);
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@ -87,66 +79,97 @@ uint8_t BTD::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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return USB_ERROR_EPINFO_IS_NULL;
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return USB_ERROR_EPINFO_IS_NULL;
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}
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}
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// Save old pointer to EP_RECORD of address 0
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oldep_ptr = p->epinfo; // Save old pointer to EP_RECORD of address 0
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oldep_ptr = p->epinfo;
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p->epinfo = epInfo; // Temporary assign new pointer to epInfo to p->epinfo in order to avoid toggle inconsistence
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// Temporary assign new pointer to epInfo to p->epinfo in order to avoid toggle inconsistence
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p->epinfo = epInfo;
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p->lowspeed = lowspeed;
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p->lowspeed = lowspeed;
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rcode = pUsb->getDevDescr(0, 0, constBufSize, (uint8_t*)buf); // Get device descriptor - addr, ep, nbytes, data
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// Get device descriptor
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p->epinfo = oldep_ptr; // Restore p->epinfo
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rcode = pUsb->getDevDescr(0, 0, sizeof (USB_DEVICE_DESCRIPTOR), (uint8_t*)buf); // Get device descriptor - addr, ep, nbytes, data
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// Restore p->epinfo
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p->epinfo = oldep_ptr;
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if (rcode)
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if (rcode)
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goto FailGetDevDescr;
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goto FailGetDevDescr;
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// Allocate new address according to device class
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bAddress = addrPool.AllocAddress(parent, false, port); // Allocate new address according to device class
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bAddress = addrPool.AllocAddress(parent, false, port);
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if (!bAddress)
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if (!bAddress) {
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nOut of address space"), 0x80);
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#endif
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return USB_ERROR_OUT_OF_ADDRESS_SPACE_IN_POOL;
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return USB_ERROR_OUT_OF_ADDRESS_SPACE_IN_POOL;
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}
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// Extract Max Packet Size from device descriptor
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epInfo[0].maxPktSize = (uint8_t)((USB_DEVICE_DESCRIPTOR*)buf)->bMaxPacketSize0; // Extract Max Packet Size from device descriptor
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epInfo[0].maxPktSize = (uint8_t)((USB_DEVICE_DESCRIPTOR*)buf)->bMaxPacketSize0;
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epInfo[1].epAddr = ((USB_DEVICE_DESCRIPTOR*)buf)->bNumConfigurations; // Steal and abuse from epInfo structure to save memory
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// Assign new address to the device
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return USB_ERROR_CONFIG_REQUIRES_ADDITIONAL_RESET;
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rcode = pUsb->setAddr(0, 0, bAddress);
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FailGetDevDescr:
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#ifdef DEBUG_USB_HOST
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NotifyFailGetDevDescr(rcode);
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#endif
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rcode = USB_ERROR_FailGetDevDescr;
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Release();
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return rcode;
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};
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uint8_t BTD::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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uint8_t buf[sizeof (USB_DEVICE_DESCRIPTOR)];
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uint8_t rcode;
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uint8_t num_of_conf = epInfo[1].epAddr; // Number of configurations
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epInfo[1].epAddr = 0;
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uint16_t PID;
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uint16_t VID;
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AddressPool &addrPool = pUsb->GetAddressPool();
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#ifdef EXTRADEBUG
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Notify(PSTR("\r\nBTD Init"), 0x80);
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#endif
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UsbDevice *p = addrPool.GetUsbDevicePtr(bAddress); // Get pointer to assigned address record
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if (!p) {
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nAddress not found"), 0x80);
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#endif
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return USB_ERROR_ADDRESS_NOT_FOUND_IN_POOL;
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}
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delay(300); // Assign new address to the device
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rcode = pUsb->setAddr(0, 0, bAddress); // Assign new address to the device
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if (rcode) {
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if (rcode) {
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#ifdef DEBUG_USB_HOST
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nsetAddr: "), 0x80);
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Notify(PSTR("\r\nsetAddr: "), 0x80);
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D_PrintHex<uint8_t > (rcode, 0x80);
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D_PrintHex<uint8_t > (rcode, 0x80);
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#endif
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#endif
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p->lowspeed = false;
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goto Fail;
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goto Fail;
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}
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}
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#ifdef EXTRADEBUG
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#ifdef EXTRADEBUG
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Notify(PSTR("\r\nAddr: "), 0x80);
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Notify(PSTR("\r\nAddr: "), 0x80);
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D_PrintHex<uint8_t > (bAddress, 0x80);
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D_PrintHex<uint8_t > (bAddress, 0x80);
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#endif
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#endif
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delay(300); // Spec says you should wait at least 200ms
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p->lowspeed = false;
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p->lowspeed = false;
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//get pointer to assigned address record
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p = addrPool.GetUsbDevicePtr(bAddress); // Get pointer to assigned address record
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p = addrPool.GetUsbDevicePtr(bAddress);
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if (!p) {
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if (!p)
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#ifdef DEBUG_USB_HOST
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Notify(PSTR("\r\nAddress not found"), 0x80);
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#endif
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return USB_ERROR_ADDRESS_NOT_FOUND_IN_POOL;
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return USB_ERROR_ADDRESS_NOT_FOUND_IN_POOL;
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}
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p->lowspeed = lowspeed;
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p->lowspeed = lowspeed;
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// Assign epInfo to epinfo pointer - only EP0 is known
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rcode = pUsb->setEpInfoEntry(bAddress, 1, epInfo); // Assign epInfo to epinfo pointer - only EP0 is known
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rcode = pUsb->setEpInfoEntry(bAddress, 1, epInfo);
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if (rcode)
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if (rcode)
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goto FailSetDevTblEntry;
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goto FailSetDevTblEntry;
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VID = ((USB_DEVICE_DESCRIPTOR*)buf)->idVendor;
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VID = ((USB_DEVICE_DESCRIPTOR*)buf)->idVendor;
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PID = ((USB_DEVICE_DESCRIPTOR*)buf)->idProduct;
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PID = ((USB_DEVICE_DESCRIPTOR*)buf)->idProduct;
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if (VID == PS3_VID && (PID == PS3_PID || PID == PS3NAVIGATION_PID || PID == PS3MOVE_PID)) {
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if (VID == PS3_VID && (PID == PS3_PID || PID == PS3NAVIGATION_PID || PID == PS3MOVE_PID)) {
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/* We only need the Control endpoint, so we don't have to initialize the other endpoints of device */
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rcode = pUsb->setConf(bAddress, epInfo[ BTD_CONTROL_PIPE ].epAddr, 1); // We only need the Control endpoint, so we don't have to initialize the other endpoints of device
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rcode = pUsb->setConf(bAddress, epInfo[ BTD_CONTROL_PIPE ].epAddr, 1);
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if (rcode)
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if (rcode)
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goto FailSetConfDescr;
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goto FailSetConfDescr;
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@ -184,8 +207,6 @@ uint8_t BTD::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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Release(); // Release device
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Release(); // Release device
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return USB_DEV_CONFIG_ERROR_DEVICE_NOT_SUPPORTED; // Return
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return USB_DEV_CONFIG_ERROR_DEVICE_NOT_SUPPORTED; // Return
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} else {
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} else {
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num_of_conf = ((USB_DEVICE_DESCRIPTOR*)buf)->bNumConfigurations;
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// Check if attached device is a Bluetooth dongle and fill endpoint data structure
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// Check if attached device is a Bluetooth dongle and fill endpoint data structure
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// First interface in the configuration must have Bluetooth assigned Class/Subclass/Protocol
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// First interface in the configuration must have Bluetooth assigned Class/Subclass/Protocol
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// And 3 endpoints - interrupt-IN, bulk-IN, bulk-OUT, not necessarily in this order
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// And 3 endpoints - interrupt-IN, bulk-IN, bulk-OUT, not necessarily in this order
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@ -211,8 +232,6 @@ uint8_t BTD::Init(uint8_t parent, uint8_t port, bool lowspeed) {
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if (rcode)
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if (rcode)
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goto FailSetDevTblEntry;
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goto FailSetDevTblEntry;
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delay(200); // Give time for address change
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// Set Configuration Value
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// Set Configuration Value
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rcode = pUsb->setConf(bAddress, epInfo[ BTD_CONTROL_PIPE ].epAddr, bConfNum);
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rcode = pUsb->setConf(bAddress, epInfo[ BTD_CONTROL_PIPE ].epAddr, bConfNum);
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if (rcode)
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if (rcode)
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@ -270,6 +289,28 @@ Fail:
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return rcode;
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return rcode;
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}
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}
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void BTD::clearAllVariables() {
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uint8_t i;
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for (i = 0; i < BTD_MAX_ENDPOINTS; i++) {
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epInfo[i].epAddr = 0;
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epInfo[i].maxPktSize = (i) ? 0 : 8;
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epInfo[i].epAttribs = 0;
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epInfo[i].bmNakPower = (i) ? USB_NAK_NOWAIT : USB_NAK_MAX_POWER;
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}
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for (i = 0; i < BTD_NUMSERVICES; i++) {
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if (btService[i])
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btService[i]->Reset(); // Reset all Bluetooth services
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}
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connectToWii = false;
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pairWithWii = false;
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bAddress = 0; // Clear device address
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bNumEP = 1; // Must have to be reset to 1
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qNextPollTime = 0; // Reset next poll time
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pollInterval = 0;
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bPollEnable = false; // Don't start polling before dongle is connected
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}
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/* Extracts interrupt-IN, bulk-IN, bulk-OUT endpoint information from config descriptor */
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/* Extracts interrupt-IN, bulk-IN, bulk-OUT endpoint information from config descriptor */
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void BTD::EndpointXtract(uint8_t conf, uint8_t iface, uint8_t alt, uint8_t proto, const USB_ENDPOINT_DESCRIPTOR *pep) {
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void BTD::EndpointXtract(uint8_t conf, uint8_t iface, uint8_t alt, uint8_t proto, const USB_ENDPOINT_DESCRIPTOR *pep) {
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//ErrorMessage<uint8_t>(PSTR("Conf.Val"),conf);
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//ErrorMessage<uint8_t>(PSTR("Conf.Val"),conf);
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@ -323,15 +364,8 @@ void BTD::PrintEndpointDescriptor(const USB_ENDPOINT_DESCRIPTOR* ep_ptr) {
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/* Performs a cleanup after failed Init() attempt */
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/* Performs a cleanup after failed Init() attempt */
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uint8_t BTD::Release() {
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uint8_t BTD::Release() {
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for (uint8_t i = 0; i < BTD_NUMSERVICES; i++) {
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clearAllVariables(); // Set all variables, endpoint structs etc. to default values
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if (btService[i])
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btService[i]->Reset(); // Reset all Bluetooth services
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}
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pUsb->GetAddressPool().FreeAddress(bAddress);
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pUsb->GetAddressPool().FreeAddress(bAddress);
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bAddress = 0;
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bPollEnable = false;
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bNumEP = 1; // must have to be reset to 1
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return 0;
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return 0;
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}
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}
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@ -780,6 +814,10 @@ void BTD::HCI_task() {
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for (uint8_t i = 0; i < BULK_MAXPKTSIZE; i++)
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for (uint8_t i = 0; i < BULK_MAXPKTSIZE; i++)
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l2capinbuf[i] = 0;
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l2capinbuf[i] = 0;
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connectToWii = false;
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incomingWii = false;
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pairWithWii = false;
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hci_state = HCI_SCANNING_STATE;
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hci_state = HCI_SCANNING_STATE;
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}
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}
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break;
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break;
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9
BTD.h
9
BTD.h
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@ -162,6 +162,14 @@ public:
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BTD(USB *p);
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BTD(USB *p);
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/** @name USBDeviceConfig implementation */
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/** @name USBDeviceConfig implementation */
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/**
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* Address assignment and basic initilization is done here.
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* @param parent Hub number.
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* @param port Port number on the hub.
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* @param lowspeed Speed of the device.
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* @return 0 on success.
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*/
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virtual uint8_t ConfigureDevice(uint8_t parent, uint8_t port, bool lowspeed);
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/**
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/**
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* Initialize the Bluetooth dongle.
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* Initialize the Bluetooth dongle.
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* @param parent Hub number.
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* @param parent Hub number.
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@ -455,6 +463,7 @@ protected:
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void PrintEndpointDescriptor(const USB_ENDPOINT_DESCRIPTOR* ep_ptr);
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void PrintEndpointDescriptor(const USB_ENDPOINT_DESCRIPTOR* ep_ptr);
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private:
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private:
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void clearAllVariables(); // Set all variables, endpoint structs etc. to default values
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BluetoothService* btService[BTD_NUMSERVICES];
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BluetoothService* btService[BTD_NUMSERVICES];
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bool bPollEnable;
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bool bPollEnable;
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