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https://github.com/gdsports/USBHost_t36
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Define timer API for device drivers
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parent
430e24ba54
commit
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35
USBHost.h
35
USBHost.h
@ -32,9 +32,11 @@
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class USBHost;
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class USBHost;
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class USBDriver;
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class USBDriver;
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class USBDriverTimer;
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typedef struct Device_struct Device_t;
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typedef struct Device_struct Device_t;
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typedef struct Pipe_struct Pipe_t;
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typedef struct Pipe_struct Pipe_t;
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typedef struct Transfer_struct Transfer_t;
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typedef struct Transfer_struct Transfer_t;
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//typedef struct DriverTimer_struct DriverTimer_t;
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// setup_t holds the 8 byte USB SETUP packet data.
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// setup_t holds the 8 byte USB SETUP packet data.
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// These unions & structs allow convenient access to
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// These unions & structs allow convenient access to
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@ -141,6 +143,7 @@ struct Transfer_struct {
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uint32_t unused;
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uint32_t unused;
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};
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};
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/************************************************/
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/************************************************/
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/* Main USB EHCI Controller */
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/* Main USB EHCI Controller */
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/************************************************/
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/************************************************/
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@ -227,6 +230,11 @@ protected:
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// All USB device drivers inherit from this base class.
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// All USB device drivers inherit from this base class.
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class USBDriver : public USBHost {
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class USBDriver : public USBHost {
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public:
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// TODO: user-level functions
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// check if device is bound/active/online
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// query vid, pid
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// query string: manufacturer, product, serial number
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protected:
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protected:
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USBDriver() : next(NULL), device(NULL) {}
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USBDriver() : next(NULL), device(NULL) {}
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// Check if a driver wishes to claim a device or interface or group
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// Check if a driver wishes to claim a device or interface or group
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@ -248,6 +256,10 @@ protected:
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// transfers and wishes to be notified when they complete.
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// transfers and wishes to be notified when they complete.
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virtual void control(const Transfer_t *transfer) { }
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virtual void control(const Transfer_t *transfer) { }
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// When any of the USBDriverTimer objects a driver creates generates
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// a timer event, this function is called.
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virtual void timer(USBDriverTimer &whichTimer) { }
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// When a device disconnects from the USB, this function is called.
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// When a device disconnects from the USB, this function is called.
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// The driver must free all resources it allocated and update any
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// The driver must free all resources it allocated and update any
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// internal state necessary to deal with the possibility of user
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// internal state necessary to deal with the possibility of user
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@ -268,13 +280,24 @@ protected:
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Device_t *device;
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Device_t *device;
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friend class USBHost;
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friend class USBHost;
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public:
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// TODO: user-level functions
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// check if device is bound/active/online
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// query vid, pid
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// query string: manufacturer, product, serial number
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};
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};
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// Device drivers may create these timer objects to schedule a timer call
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class USBDriverTimer {
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public:
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USBDriverTimer() { }
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USBDriverTimer(USBDriver *d) : driver(d) { }
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void init(USBDriver *d) { driver = d; };
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void start(uint32_t microseconds);
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void *pointer;
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uint32_t integer;
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private:
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USBDriver *driver;
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uint32_t usec;
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USBDriverTimer *next;
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USBDriverTimer *prev;
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friend class USBHost;
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};
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/************************************************/
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/************************************************/
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/* USB Device Drivers */
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/* USB Device Drivers */
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@ -295,6 +318,8 @@ protected:
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void status_change(const Transfer_t *transfer);
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void status_change(const Transfer_t *transfer);
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void new_port_status(uint32_t port, uint32_t status);
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void new_port_status(uint32_t port, uint32_t status);
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void update_status();
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void update_status();
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USBDriverTimer mytimer;
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USBDriverTimer othertimer;
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setup_t setup;
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setup_t setup;
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uint8_t hub_desc[16];
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uint8_t hub_desc[16];
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uint8_t endpoint;
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uint8_t endpoint;
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36
ehci.cpp
36
ehci.cpp
@ -43,6 +43,7 @@ static Transfer_t *async_followup_first=NULL;
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static Transfer_t *async_followup_last=NULL;
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static Transfer_t *async_followup_last=NULL;
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static Transfer_t *periodic_followup_first=NULL;
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static Transfer_t *periodic_followup_first=NULL;
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static Transfer_t *periodic_followup_last=NULL;
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static Transfer_t *periodic_followup_last=NULL;
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static USBDriverTimer *active_timers=NULL;
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static void init_qTD(volatile Transfer_t *t, void *buf, uint32_t len,
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static void init_qTD(volatile Transfer_t *t, void *buf, uint32_t len,
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@ -172,7 +173,7 @@ void USBHost::begin()
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// enable interrupts, after this point interruts to all the work
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// enable interrupts, after this point interruts to all the work
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attachInterruptVector(IRQ_USBHS, isr);
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attachInterruptVector(IRQ_USBHS, isr);
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NVIC_ENABLE_IRQ(IRQ_USBHS);
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NVIC_ENABLE_IRQ(IRQ_USBHS);
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USBHS_USBINTR = USBHS_USBINTR_PCE | USBHS_USBINTR_TIE0;
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USBHS_USBINTR = USBHS_USBINTR_PCE | USBHS_USBINTR_TIE0 | USBHS_USBINTR_TIE1;
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USBHS_USBINTR |= USBHS_USBINTR_UEE | USBHS_USBINTR_SEE;
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USBHS_USBINTR |= USBHS_USBINTR_UEE | USBHS_USBINTR_SEE;
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USBHS_USBINTR |= USBHS_USBINTR_AAE;
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USBHS_USBINTR |= USBHS_USBINTR_AAE;
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USBHS_USBINTR |= USBHS_USBINTR_UPIE | USBHS_USBINTR_UAIE;
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USBHS_USBINTR |= USBHS_USBINTR_UPIE | USBHS_USBINTR_UAIE;
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@ -306,8 +307,8 @@ void USBHost::isr()
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}
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}
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}
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}
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if (stat & USBHS_USBSTS_TI0) { // timer 0
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if (stat & USBHS_USBSTS_TI0) { // timer 0 - used for built-in port events
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println("timer");
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println("timer0");
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if (port_state == PORT_STATE_DEBOUNCE) {
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if (port_state == PORT_STATE_DEBOUNCE) {
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port_state = PORT_STATE_RESET;
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port_state = PORT_STATE_RESET;
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USBHS_PORTSC1 |= USBHS_PORTSC_PR; // begin reset sequence
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USBHS_PORTSC1 |= USBHS_PORTSC_PR; // begin reset sequence
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@ -321,6 +322,34 @@ void USBHost::isr()
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rootdev = new_Device(speed, 0, 0);
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rootdev = new_Device(speed, 0, 0);
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}
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}
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}
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}
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if (stat & USBHS_USBSTS_TI1) { // timer 1 - used for USBDriverTimer
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println("timer1");
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}
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}
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void USBDriverTimer::start(uint32_t microseconds)
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{
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Serial.print("start_timer, usec = ");
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Serial.print(usec);
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Serial.print(", driver = ");
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Serial.print((uint32_t)driver, HEX);
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Serial.print(", this = ");
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Serial.println((uint32_t)this, HEX);
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#if 1
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if (!driver) return;
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if (microseconds < 100) return; // minimum timer duration
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if (active_timers == NULL) {
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usec = microseconds;
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next = NULL;
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prev = NULL;
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active_timers = this;
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USBHS_GPTIMER1LD = microseconds - 1;
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USBHS_GPTIMER1CTL = USBHS_GPTIMERCTL_RST | USBHS_GPTIMERCTL_RUN;
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return;
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}
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#endif
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// TODO, add to active_timers list
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//uint32_t remain = USBHS_GPTIMER1CTL & 0xFFFFFF;
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}
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}
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@ -403,6 +432,7 @@ Pipe_t * USBHost::new_Pipe(Device_t *dev, uint32_t type, uint32_t endpoint,
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// bulk
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// bulk
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} else if (type == 3) {
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} else if (type == 3) {
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// interrupt
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// interrupt
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//pipe->qh.token = 0x80000000; // TODO: OUT starts with DATA0 or DATA1?
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}
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}
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pipe->qh.capabilities[0] = QH_capabilities1(15, c, maxlen, 0,
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pipe->qh.capabilities[0] = QH_capabilities1(15, c, maxlen, 0,
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dtc, dev->speed, endpoint, 0, dev->address);
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dtc, dev->speed, endpoint, 0, dev->address);
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7
hub.cpp
7
hub.cpp
@ -24,7 +24,7 @@
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#include <Arduino.h>
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#include <Arduino.h>
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#include "USBHost.h"
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#include "USBHost.h"
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USBHub::USBHub()
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USBHub::USBHub() : /* mytimer(this), */ othertimer(this)
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{
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{
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// TODO: free Device_t, Pipe_t & Transfer_t we will need
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// TODO: free Device_t, Pipe_t & Transfer_t we will need
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driver_ready_for_device(this);
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driver_ready_for_device(this);
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@ -37,6 +37,11 @@ bool USBHub::claim(Device_t *dev, int type, const uint8_t *descriptors, uint32_t
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println("USBHub claim_device this=", (uint32_t)this, HEX);
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println("USBHub claim_device this=", (uint32_t)this, HEX);
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// timer testing TODO: remove this later
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mytimer.init(this);
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mytimer.start(99129);
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othertimer.start(12345);
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// check for HUB type
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// check for HUB type
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if (dev->bDeviceClass != 9 || dev->bDeviceSubClass != 0) return false;
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if (dev->bDeviceClass != 9 || dev->bDeviceSubClass != 0) return false;
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// protocol must be 0=FS, 1=HS Single-TT, or 2=HS Multi-TT
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// protocol must be 0=FS, 1=HS Single-TT, or 2=HS Multi-TT
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