staging: octeon-usb: cvmx_usb_transaction_t -> struct cvmx_usb_transaction
Replace cvmx_usb_transaction_t with struct cvmx_usb_transaction. Signed-off-by: Aaro Koskinen <aaro.koskinen@iki.fi> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -115,29 +115,46 @@ enum cvmx_usb_stage {
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};
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/**
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* This structure describes each pending USB transaction
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* regardless of type. These are linked together to form a list
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* of pending requests for a pipe.
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* struct cvmx_usb_transaction - describes each pending USB transaction
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* regardless of type. These are linked together
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* to form a list of pending requests for a pipe.
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*
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* @prev: Transaction before this one in the pipe.
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* @next: Transaction after this one in the pipe.
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* @type: Type of transaction, duplicated of the pipe.
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* @flags: State flags for this transaction.
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* @buffer: User's physical buffer address to read/write.
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* @buffer_length: Size of the user's buffer in bytes.
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* @control_header: For control transactions, physical address of the 8
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* byte standard header.
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* @iso_start_frame: For ISO transactions, the starting frame number.
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* @iso_number_packets: For ISO transactions, the number of packets in the
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* request.
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* @iso_packets: For ISO transactions, the sub packets in the request.
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* @actual_bytes: Actual bytes transfer for this transaction.
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* @stage: For control transactions, the current stage.
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* @callback: User's callback function when complete.
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* @callback_data: User's data.
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*/
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typedef struct cvmx_usb_transaction {
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struct cvmx_usb_transaction *prev; /**< Transaction before this one in the pipe */
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struct cvmx_usb_transaction *next; /**< Transaction after this one in the pipe */
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enum cvmx_usb_transfer type; /**< Type of transaction, duplicated of the pipe */
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enum cvmx_usb_transaction_flags flags; /**< State flags for this transaction */
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uint64_t buffer; /**< User's physical buffer address to read/write */
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int buffer_length; /**< Size of the user's buffer in bytes */
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uint64_t control_header; /**< For control transactions, physical address of the 8 byte standard header */
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int iso_start_frame; /**< For ISO transactions, the starting frame number */
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int iso_number_packets; /**< For ISO transactions, the number of packets in the request */
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struct cvmx_usb_iso_packet *iso_packets;/**< For ISO transactions, the sub packets in the request */
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struct cvmx_usb_transaction {
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struct cvmx_usb_transaction *prev;
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struct cvmx_usb_transaction *next;
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enum cvmx_usb_transfer type;
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enum cvmx_usb_transaction_flags flags;
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uint64_t buffer;
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int buffer_length;
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uint64_t control_header;
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int iso_start_frame;
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int iso_number_packets;
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struct cvmx_usb_iso_packet *iso_packets;
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int xfersize;
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int pktcnt;
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int retries;
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int actual_bytes; /**< Actual bytes transfer for this transaction */
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enum cvmx_usb_stage stage; /**< For control transactions, the current stage */
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cvmx_usb_callback_func_t callback; /**< User's callback function when complete */
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void *callback_data; /**< User's data */
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} cvmx_usb_transaction_t;
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int actual_bytes;
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enum cvmx_usb_stage stage;
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cvmx_usb_callback_func_t callback;
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void *callback_data;
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};
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/**
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* A pipe represents a virtual connection between Octeon and some
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@ -146,8 +163,8 @@ typedef struct cvmx_usb_transaction {
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typedef struct cvmx_usb_pipe {
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struct cvmx_usb_pipe *prev; /**< Pipe before this one in the list */
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struct cvmx_usb_pipe *next; /**< Pipe after this one in the list */
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cvmx_usb_transaction_t *head; /**< The first pending transaction */
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cvmx_usb_transaction_t *tail; /**< The last pending transaction */
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struct cvmx_usb_transaction *head; /**< The first pending transaction */
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struct cvmx_usb_transaction *tail; /**< The last pending transaction */
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uint64_t interval; /**< For periodic pipes, the interval between packets in frames */
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uint64_t next_tx_frame; /**< The next frame this pipe is allowed to transmit on */
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enum cvmx_usb_pipe_flags flags; /**< State flags for this pipe */
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@ -189,10 +206,10 @@ typedef struct {
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int idle_hardware_channels; /**< Bit set for every idle hardware channel */
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cvmx_usbcx_hprt_t usbcx_hprt; /**< Stored port status so we don't need to read a CSR to determine splits */
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cvmx_usb_pipe_t *pipe_for_channel[MAX_CHANNELS]; /**< Map channels to pipes */
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cvmx_usb_transaction_t *free_transaction_head; /**< List of free transactions head */
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cvmx_usb_transaction_t *free_transaction_tail; /**< List of free transactions tail */
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struct cvmx_usb_transaction *free_transaction_head; /**< List of free transactions head */
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struct cvmx_usb_transaction *free_transaction_tail; /**< List of free transactions tail */
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cvmx_usb_pipe_t pipe[MAX_PIPES]; /**< Storage for pipes */
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cvmx_usb_transaction_t transaction[MAX_TRANSACTIONS]; /**< Storage for transactions */
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struct cvmx_usb_transaction transaction[MAX_TRANSACTIONS]; /**< Storage for transactions */
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cvmx_usb_callback_func_t callback[__CVMX_USB_CALLBACK_END]; /**< User global callbacks */
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void *callback_data[__CVMX_USB_CALLBACK_END]; /**< User data for each callback */
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int indent; /**< Used by debug output to indent functions */
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@ -201,7 +218,7 @@ typedef struct {
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cvmx_usb_pipe_list_t idle_pipes; /**< List of open pipes that have no transactions */
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cvmx_usb_pipe_list_t active_pipes[4]; /**< Active pipes indexed by transfer type */
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uint64_t frame_number; /**< Increments every SOF interrupt for time keeping */
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cvmx_usb_transaction_t *active_split; /**< Points to the current active split, or NULL */
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struct cvmx_usb_transaction *active_split; /**< Points to the current active split, or NULL */
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cvmx_usb_tx_fifo_t periodic;
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cvmx_usb_tx_fifo_t nonperiodic;
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} cvmx_usb_internal_state_t;
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@ -391,9 +408,9 @@ int cvmx_usb_get_num_ports(void)
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*
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* Returns: Transaction or NULL
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*/
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static inline cvmx_usb_transaction_t *__cvmx_usb_alloc_transaction(cvmx_usb_internal_state_t *usb)
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static inline struct cvmx_usb_transaction *__cvmx_usb_alloc_transaction(cvmx_usb_internal_state_t *usb)
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{
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cvmx_usb_transaction_t *t;
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struct cvmx_usb_transaction *t;
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t = usb->free_transaction_head;
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if (t) {
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usb->free_transaction_head = t->next;
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@ -417,7 +434,7 @@ static inline cvmx_usb_transaction_t *__cvmx_usb_alloc_transaction(cvmx_usb_inte
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* Transaction to free
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*/
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static inline void __cvmx_usb_free_transaction(cvmx_usb_internal_state_t *usb,
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cvmx_usb_transaction_t *transaction)
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struct cvmx_usb_transaction *transaction)
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{
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transaction->flags = 0;
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transaction->prev = NULL;
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@ -1022,7 +1039,7 @@ void cvmx_usb_set_status(struct cvmx_usb_state *state, struct cvmx_usb_port_stat
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* Returns: Handle
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*/
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static inline int __cvmx_usb_get_submit_handle(cvmx_usb_internal_state_t *usb,
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cvmx_usb_transaction_t *transaction)
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struct cvmx_usb_transaction *transaction)
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{
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return ((unsigned long)transaction - (unsigned long)usb->transaction) /
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sizeof(*transaction);
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@ -1380,7 +1397,7 @@ static void __cvmx_usb_start_channel_control(cvmx_usb_internal_state_t *usb,
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int channel,
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cvmx_usb_pipe_t *pipe)
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{
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cvmx_usb_transaction_t *transaction = pipe->head;
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struct cvmx_usb_transaction *transaction = pipe->head;
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cvmx_usb_control_header_t *header = cvmx_phys_to_ptr(transaction->control_header);
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int bytes_to_transfer = transaction->buffer_length - transaction->actual_bytes;
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int packets_to_transfer;
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@ -1509,7 +1526,7 @@ static void __cvmx_usb_start_channel(cvmx_usb_internal_state_t *usb,
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int channel,
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cvmx_usb_pipe_t *pipe)
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{
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cvmx_usb_transaction_t *transaction = pipe->head;
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struct cvmx_usb_transaction *transaction = pipe->head;
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/* Make sure all writes to the DMA region get flushed */
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CVMX_SYNCW;
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@ -1900,7 +1917,7 @@ done:
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*/
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static void __cvmx_usb_perform_callback(cvmx_usb_internal_state_t *usb,
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cvmx_usb_pipe_t *pipe,
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cvmx_usb_transaction_t *transaction,
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struct cvmx_usb_transaction *transaction,
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enum cvmx_usb_callback reason,
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enum cvmx_usb_complete complete_code)
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{
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@ -1945,7 +1962,7 @@ static void __cvmx_usb_perform_callback(cvmx_usb_internal_state_t *usb,
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*/
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static void __cvmx_usb_perform_complete(cvmx_usb_internal_state_t *usb,
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cvmx_usb_pipe_t *pipe,
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cvmx_usb_transaction_t *transaction,
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struct cvmx_usb_transaction *transaction,
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enum cvmx_usb_complete complete_code)
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{
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/* If this was a split then clear our split in progress marker */
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@ -2037,7 +2054,7 @@ static int __cvmx_usb_submit_transaction(cvmx_usb_internal_state_t *usb,
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void *user_data)
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{
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int submit_handle;
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cvmx_usb_transaction_t *transaction;
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struct cvmx_usb_transaction *transaction;
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cvmx_usb_pipe_t *pipe = usb->pipe + pipe_handle;
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if (unlikely((pipe_handle < 0) || (pipe_handle >= MAX_PIPES)))
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@ -2382,7 +2399,7 @@ int cvmx_usb_submit_isochronous(struct cvmx_usb_state *state, int pipe_handle,
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*/
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int cvmx_usb_cancel(struct cvmx_usb_state *state, int pipe_handle, int submit_handle)
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{
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cvmx_usb_transaction_t *transaction;
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struct cvmx_usb_transaction *transaction;
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cvmx_usb_internal_state_t *usb = (cvmx_usb_internal_state_t *)state;
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cvmx_usb_pipe_t *pipe = usb->pipe + pipe_handle;
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@ -2561,7 +2578,7 @@ static int __cvmx_usb_poll_channel(cvmx_usb_internal_state_t *usb, int channel)
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cvmx_usbcx_hctsizx_t usbc_hctsiz;
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cvmx_usbcx_hccharx_t usbc_hcchar;
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cvmx_usb_pipe_t *pipe;
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cvmx_usb_transaction_t *transaction;
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struct cvmx_usb_transaction *transaction;
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int bytes_this_transfer;
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int bytes_in_last_packet;
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int packets_processed;
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