git-svn-id: svn://svn.code.sf.net/p/chibios/svn/trunk@4265 35acf78f-673a-0410-8e92-d51de3d6d3f4
parent
1d023ea901
commit
c762926b68
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@ -181,8 +181,8 @@
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#define USB_EP_MODE_TYPE_ISOC 0x0001 /**< Isochronous endpoint. */
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#define USB_EP_MODE_TYPE_BULK 0x0002 /**< Bulk endpoint. */
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#define USB_EP_MODE_TYPE_INTR 0x0003 /**< Interrupt endpoint. */
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#define USB_EP_MODE_TRANSACTION 0x0000 /**< Transaction mode. */
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#define USB_EP_MODE_PACKET 0x0010 /**< Packet mode enabled. */
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#define USB_EP_MODE_LINEAR_BUFFER 0x0000 /**< Linear buffer mode. */
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#define USB_EP_MODE_QUEUE_BUFFER 0x0010 /**< Queue buffer mode. */
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/** @} */
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/*===========================================================================*/
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@ -371,43 +371,6 @@ typedef const USBDescriptor * (*usbgetdescriptor_t)(USBDriver *usbp,
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*/
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#define usbGetReceiveStatusI(usbp, ep) ((usbp)->receiving & (1 << (ep)))
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/**
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* @brief Reads from a dedicated packet buffer.
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* @pre In order to use this function the endpoint must have been
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* initialized in packet mode.
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* @note This function can be invoked both in thread and IRQ context.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[out] buf buffer where to copy the packet data
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* @param[in] n maximum number of bytes to copy. This value must
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* not exceed the maximum packet size for this endpoint.
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* @return The received packet size regardless the specified
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* @p n parameter.
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* @retval 0 Zero size packet received.
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*
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* @special
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*/
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#define usbReadPacketBuffer(usbp, ep, buf, n) \
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usb_lld_read_packet_buffer(usbp, ep, buf, n)
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/**
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* @brief Writes to a dedicated packet buffer.
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* @pre In order to use this function the endpoint must have been
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* initialized in packet mode.
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* @note This function can be invoked both in thread and IRQ context.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] buf buffer where to fetch the packet data
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* @param[in] n maximum number of bytes to copy. This value must
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* not exceed the maximum packet size for this endpoint.
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*
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* @special
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*/
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#define usbWritePacketBuffer(usbp, ep, buf, n) \
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usb_lld_write_packet_buffer(usbp, ep, buf, n)
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/**
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* @brief Prepares for a receive transaction on an OUT endpoint.
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* @pre In order to use this function the endpoint must have been
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@ -440,6 +403,42 @@ typedef const USBDescriptor * (*usbgetdescriptor_t)(USBDriver *usbp,
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#define usbPrepareTransmit(usbp, ep, buf, n) \
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usb_lld_prepare_transmit(usbp, ep, buf, n)
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/**
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* @brief Prepares for a receive transaction on an OUT endpoint.
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* @pre In order to use this function the endpoint must have been
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* initialized in transaction mode.
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* @post The endpoint is ready for @p usbStartReceiveI().
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* @note The receive transaction size is equal to the space in the queue
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* rounded to the lower multiple of a packet size. So make sure there
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* is room for at least one packet in the queue before starting
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* the receive operation.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] iq input queue to be filled with incoming data
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*
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* @special
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*/
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#define usbPrepareQueuedReceive(usbp, ep, iq) \
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usb_lld_prepare_queued_receive(usbp, ep, iq)
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/**
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* @brief Prepares for a transmit transaction on an IN endpoint.
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* @pre In order to use this function the endpoint must have been
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* initialized in transaction mode.
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* @post The endpoint is ready for @p usbStartTransmitI().
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* @note The transmit transaction size is equal to the data contained
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* in the queue.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] oq output queue to be fetched for outgoing data
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*
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* @special
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*/
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#define usbPrepareQueuedTransmit(usbp, ep, oq) \
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usb_lld_prepare_queued_transmit(usbp, ep, oq)
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/**
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* @brief Returns the exact size of a receive transaction.
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* @details The received size can be different from the size specified in
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@ -77,7 +77,7 @@ static uint8_t ep0setup_buffer[8];
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* @brief EP0 initialization structure.
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*/
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static const USBEndpointConfig ep0config = {
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USB_EP_MODE_TYPE_CTRL | USB_EP_MODE_TRANSACTION,
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USB_EP_MODE_TYPE_CTRL,
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_usb_ep0setup,
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_usb_ep0in,
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_usb_ep0out,
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@ -715,57 +715,6 @@ void usb_lld_read_setup(USBDriver *usbp, usbep_t ep, uint8_t *buf) {
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memcpy(buf, usbp->epc[ep]->setup_buf, 8);
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}
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/**
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* @brief Reads from a dedicated packet buffer.
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* @pre In order to use this function he endpoint must have been
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* initialized in packet mode.
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* @note This function can be invoked both in thread and IRQ context.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[out] buf buffer where to copy the packet data
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* @param[in] n maximum number of bytes to copy. This value must
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* not exceed the maximum packet size for this endpoint.
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* @return The received packet size regardless the specified
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* @p n parameter.
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* @retval 0 Zero size packet received.
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*
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* @notapi
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*/
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size_t usb_lld_read_packet_buffer(USBDriver *usbp, usbep_t ep,
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uint8_t *buf, size_t n) {
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(void)usbp;
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(void)ep;
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(void)buf;
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(void)n;
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return 0;
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}
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/**
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* @brief Writes to a dedicated packet buffer.
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* @pre In order to use this function he endpoint must have been
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* initialized in packet mode.
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* @note This function can be invoked both in thread and IRQ context.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] buf buffer where to fetch the packet data
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* @param[in] n maximum number of bytes to copy. This value must
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* not exceed the maximum packet size for this endpoint.
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*
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* @notapi
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*/
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void usb_lld_write_packet_buffer(USBDriver *usbp, usbep_t ep,
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const uint8_t *buf, size_t n) {
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(void)usbp;
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(void)ep;
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(void)buf;
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(void)n;
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}
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/**
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* @brief Prepares for a receive operation.
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*
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@ -820,6 +769,46 @@ void usb_lld_prepare_transmit(USBDriver *usbp, usbep_t ep,
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}
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}
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/**
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* @brief Prepares for a receive transaction on an OUT endpoint.
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* @pre In order to use this function the endpoint must have been
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* initialized in transaction mode.
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* @post The endpoint is ready for @p usbStartReceiveI().
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* @note The receive transaction size is equal to the space in the queue
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* rounded to the lower multiple of a packet size. So make sure there
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* is room for at least one packet in the queue before starting
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* the receive operation.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] iq input queue to be filled with incoming data
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*
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* @special
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*/
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void usb_lld_prepare_queued_receive(USBDriver *usbp, usbep_t ep,
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InputQueue *iq) {
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}
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/**
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* @brief Prepares for a transmit transaction on an IN endpoint.
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* @pre In order to use this function the endpoint must have been
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* initialized in transaction mode.
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* @post The endpoint is ready for @p usbStartTransmitI().
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* @note The transmit transaction size is equal to the data contained
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* in the queue.
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*
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* @param[in] usbp pointer to the @p USBDriver object
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* @param[in] ep endpoint number
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* @param[in] oq output queue to be fetched for outgoing data
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*
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* @special
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*/
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void usb_lld_prepare_queued_transmit(USBDriver *usbp, usbep_t ep,
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OutputQueue *oq) {
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}
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/**
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* @brief Starts a receive operation on an OUT endpoint.
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*
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@ -129,10 +129,6 @@ typedef struct {
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* @brief Type of an endpoint state structure.
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*/
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typedef struct {
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/**
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* @brief Number of packets to receive.
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*/
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uint16_t rxpkts;
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/**
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* @brief Pointer to the receive buffer.
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*/
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@ -377,14 +373,14 @@ extern "C" {
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usbepstatus_t usb_lld_get_status_in(USBDriver *usbp, usbep_t ep);
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usbepstatus_t usb_lld_get_status_out(USBDriver *usbp, usbep_t ep);
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void usb_lld_read_setup(USBDriver *usbp, usbep_t ep, uint8_t *buf);
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size_t usb_lld_read_packet_buffer(USBDriver *usbp, usbep_t ep,
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uint8_t *buf, size_t n);
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void usb_lld_write_packet_buffer(USBDriver *usbp, usbep_t ep,
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const uint8_t *buf, size_t n);
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void usb_lld_prepare_receive(USBDriver *usbp, usbep_t ep,
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uint8_t *buf, size_t n);
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void usb_lld_prepare_transmit(USBDriver *usbp, usbep_t ep,
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const uint8_t *buf, size_t n);
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void usb_lld_prepare_queued_receive(USBDriver *usbp, usbep_t ep,
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InputQueue *iq);
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void usb_lld_prepare_queued_transmit(USBDriver *usbp, usbep_t ep,
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OutputQueue *oq);
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void usb_lld_start_out(USBDriver *usbp, usbep_t ep);
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void usb_lld_start_in(USBDriver *usbp, usbep_t ep);
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void usb_lld_stall_out(USBDriver *usbp, usbep_t ep);
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@ -119,6 +119,7 @@ static const struct SerialUSBDriverVMT vmt = {
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static void inotify(GenericQueue *qp) {
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SerialUSBDriver *sdup = (SerialUSBDriver *)qp->q_wrptr;
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#if 0
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/* Writes to the input queue can only happen when the queue has been
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emptied, then a whole packet is loaded in the queue.*/
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if (!usbGetReceiveStatusI(sdup->config->usbp, USB_CDC_DATA_AVAILABLE_EP) &&
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@ -139,6 +140,7 @@ static void inotify(GenericQueue *qp) {
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while (notempty(&sdup->iqueue.q_waiting))
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chSchReadyI(fifo_remove(&sdup->iqueue.q_waiting))->p_u.rdymsg = Q_OK;
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}
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#endif
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}
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/**
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@ -148,6 +150,7 @@ static void onotify(GenericQueue *qp) {
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SerialUSBDriver *sdup = (SerialUSBDriver *)qp->q_rdptr;
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size_t n;
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#if 0
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/* If there is any data in the output queue then it is sent within a
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single packet and the queue is emptied.*/
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n = chOQGetFullI(&sdup->oqueue);
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@ -166,6 +169,7 @@ static void onotify(GenericQueue *qp) {
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while (notempty(&sdup->oqueue.q_waiting))
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chSchReadyI(fifo_remove(&sdup->oqueue.q_waiting))->p_u.rdymsg = Q_OK;
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}
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#endif
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}
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/*===========================================================================*/
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@ -298,6 +302,7 @@ void sduDataTransmitted(USBDriver *usbp, usbep_t ep) {
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SerialUSBDriver *sdup = usbp->param;
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size_t n;
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#if 0
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chSysLockFromIsr();
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/* If there is any data in the output queue then it is sent within a
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single packet and the queue is emptied.*/
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@ -319,6 +324,7 @@ void sduDataTransmitted(USBDriver *usbp, usbep_t ep) {
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chSchReadyI(fifo_remove(&sdup->oqueue.q_waiting))->p_u.rdymsg = Q_OK;
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}
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chSysUnlockFromIsr();
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#endif
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}
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/**
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@ -332,6 +338,7 @@ void sduDataTransmitted(USBDriver *usbp, usbep_t ep) {
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void sduDataReceived(USBDriver *usbp, usbep_t ep) {
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SerialUSBDriver *sdup = usbp->param;
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#if 0
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chSysLockFromIsr();
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/* Writes to the input queue can only happen when the queue has been
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emptied, then a whole packet is loaded in the queue.*/
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@ -355,6 +362,7 @@ void sduDataReceived(USBDriver *usbp, usbep_t ep) {
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chSchReadyI(fifo_remove(&sdup->iqueue.q_waiting))->p_u.rdymsg = Q_OK;
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}
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chSysUnlockFromIsr();
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#endif
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}
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/**
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@ -313,10 +313,10 @@ void usbInitEndpointI(USBDriver *usbp, usbep_t ep,
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"usbEnableEndpointI(), #2", "already initialized");
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/* Logically enabling the endpoint in the USBDriver structure.*/
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if (!(epcp->ep_mode & USB_EP_MODE_PACKET)) {
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// if (!(epcp->ep_mode & USB_EP_MODE_PACKET)) {
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memset(epcp->in_state, 0, sizeof(USBInEndpointState));
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memset(epcp->out_state, 0, sizeof(USBOutEndpointState));
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}
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// }
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usbp->epc[ep] = epcp;
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/* Low level endpoint activation.*/
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@ -229,7 +229,7 @@ static const USBDescriptor *get_descriptor(USBDriver *usbp,
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* @brief EP1 initialization structure (IN only).
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*/
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static const USBEndpointConfig ep1config = {
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USB_EP_MODE_TYPE_BULK | USB_EP_MODE_PACKET,
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USB_EP_MODE_TYPE_BULK,
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NULL,
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sduDataTransmitted,
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NULL,
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@ -244,7 +244,7 @@ static const USBEndpointConfig ep1config = {
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* @brief EP2 initialization structure (IN only).
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*/
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static const USBEndpointConfig ep2config = {
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USB_EP_MODE_TYPE_INTR | USB_EP_MODE_PACKET,
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USB_EP_MODE_TYPE_INTR,
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NULL,
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sduInterruptTransmitted,
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NULL,
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@ -259,7 +259,7 @@ static const USBEndpointConfig ep2config = {
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* @brief EP3 initialization structure (OUT only).
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*/
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static const USBEndpointConfig ep3config = {
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USB_EP_MODE_TYPE_BULK | USB_EP_MODE_PACKET,
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USB_EP_MODE_TYPE_BULK,
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NULL,
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NULL,
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sduDataReceived,
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