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Add iscsi_rx_buffered_data() and supporting infrastructure.
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@ -583,6 +583,8 @@ struct iscsi_session {
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enum iscsi_tx_state tx_state;
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/** Byte offset within the current TX state */
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size_t tx_offset;
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/** Length of the current TX state */
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size_t tx_len;
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/** Basic header segment for current RX PDU */
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union iscsi_bhs rx_bhs;
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@ -590,6 +592,10 @@ struct iscsi_session {
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enum iscsi_rx_state rx_state;
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/** Byte offset within the current RX state */
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size_t rx_offset;
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/** Length of the current RX state */
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size_t rx_len;
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/** Buffer for received data (not always used) */
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void *rx_buffer;
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/** State of strings received during login phase */
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struct iscsi_string_state string;
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@ -38,6 +38,46 @@ static void iscsi_start_tx ( struct iscsi_session *iscsi );
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static void iscsi_start_data_out ( struct iscsi_session *iscsi,
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unsigned int datasn );
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/**
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* Receive PDU data into buffer
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*
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* @v iscsi iSCSI session
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* @v data Data to receive
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* @v len Length of data
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* @ret rc Return status code
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*
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* This can be used when the RX PDU type handler wishes to buffer up
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* all received data and process the PDU as a single unit. The caller
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* is repsonsible for calling iscsi_rx_buffered_data_done() after
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* processing the data.
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*/
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static int iscsi_rx_buffered_data ( struct iscsi_session *iscsi,
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const void *data, size_t len ) {
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/* Allocate buffer on first call */
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if ( ! iscsi->rx_buffer ) {
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iscsi->rx_buffer = malloc ( iscsi->rx_len );
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if ( ! iscsi->rx_buffer )
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return -ENOMEM;
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}
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/* Copy data to buffer */
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assert ( ( iscsi->rx_offset + len ) <= iscsi->rx_len );
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memcpy ( ( iscsi->rx_buffer + iscsi->rx_offset ), data, len );
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return 0;
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}
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/**
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* Finish receiving PDU data into buffer
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*
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* @v iscsi iSCSI session
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*/
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static void iscsi_rx_buffered_data_done ( struct iscsi_session *iscsi ) {
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free ( iscsi->rx_buffer );
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iscsi->rx_buffer = NULL;
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}
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/**
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* Mark iSCSI operation as complete
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*
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@ -52,10 +92,14 @@ static void iscsi_start_data_out ( struct iscsi_session *iscsi,
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* should both be idle.
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*/
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static void iscsi_done ( struct iscsi_session *iscsi, int rc ) {
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/* Clear current SCSI command */
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iscsi->command = NULL;
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/* Free any memory that may have been used for CHAP */
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/* Free any dynamically allocated memory */
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chap_finish ( &iscsi->chap );
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iscsi_rx_buffered_data_done ( iscsi );
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/* Mark asynchronous operation as complete */
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async_done ( &iscsi->aop, rc );
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}
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@ -283,7 +327,7 @@ static void iscsi_tx_data_out ( struct iscsi_session *iscsi,
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offset = ( iscsi->transfer_offset + ntohl ( data_out->offset ) +
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iscsi->tx_offset );
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remaining = ( ISCSI_DATA_LEN ( data_out->lengths ) - iscsi->tx_offset);
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remaining = ( iscsi->tx_len - iscsi->tx_offset );
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assert ( iscsi->command != NULL );
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assert ( iscsi->command->data_out );
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assert ( ( offset + remaining ) <= iscsi->command->data_out_len );
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@ -693,6 +737,14 @@ static void iscsi_handle_string_byte ( struct iscsi_session *iscsi,
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}
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}
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static void iscsi_handle_strings ( struct iscsi_session *iscsi,
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const char *strings, size_t len ) {
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for ( ; len-- ; strings++ ) {
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iscsi_handle_string_byte ( iscsi,
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* ( ( uint8_t * ) strings ) );
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}
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}
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/**
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* Receive data segment of an iSCSI login response PDU
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*
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@ -706,6 +758,20 @@ static void iscsi_rx_login_response ( struct iscsi_session *iscsi, void *data,
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size_t len, size_t remaining ) {
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struct iscsi_bhs_login_response *response
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= &iscsi->rx_bhs.login_response;
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int rc;
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/* Buffer up the PDU data */
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if ( ( rc = iscsi_rx_buffered_data ( iscsi, data, len ) ) != 0 ) {
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DBG ( "iSCSI %p could not buffer login response\n", iscsi );
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iscsi_close ( iscsi, rc );
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return;
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}
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if ( remaining )
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return;
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/* Process string data and discard string buffer */
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iscsi_handle_strings ( iscsi, iscsi->rx_buffer, iscsi->rx_len );
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iscsi_rx_buffered_data_done ( iscsi );
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/* Check for fatal errors */
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if ( response->status_class != 0 ) {
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@ -715,13 +781,6 @@ static void iscsi_rx_login_response ( struct iscsi_session *iscsi, void *data,
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return;
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}
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/* Process strings data */
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for ( ; len-- ; data++ ) {
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iscsi_handle_string_byte ( iscsi, * ( ( uint8_t * ) data ) );
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}
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if ( remaining )
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return;
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/* Handle login transitions */
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if ( response->flags & ISCSI_LOGIN_FLAG_TRANSITION ) {
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switch ( response->flags & ISCSI_LOGIN_NSG_MASK ) {
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@ -848,26 +907,25 @@ static void iscsi_tx_done ( struct iscsi_session *iscsi ) {
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static void iscsi_acked ( struct tcp_connection *conn, size_t len ) {
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struct iscsi_session *iscsi = tcp_to_iscsi ( conn );
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struct iscsi_bhs_common *common = &iscsi->tx_bhs.common;
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size_t max_tx_offset;
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enum iscsi_tx_state next_state;
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iscsi->tx_offset += len;
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while ( 1 ) {
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switch ( iscsi->tx_state ) {
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case ISCSI_TX_BHS:
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max_tx_offset = sizeof ( iscsi->tx_bhs );
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iscsi->tx_len = sizeof ( iscsi->tx_bhs );
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next_state = ISCSI_TX_AHS;
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break;
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case ISCSI_TX_AHS:
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max_tx_offset = 4 * ISCSI_AHS_LEN ( common->lengths );
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iscsi->tx_len = 4 * ISCSI_AHS_LEN ( common->lengths );
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next_state = ISCSI_TX_DATA;
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break;
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case ISCSI_TX_DATA:
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max_tx_offset = ISCSI_DATA_LEN ( common->lengths );
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iscsi->tx_len = ISCSI_DATA_LEN ( common->lengths );
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next_state = ISCSI_TX_DATA_PADDING;
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break;
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case ISCSI_TX_DATA_PADDING:
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max_tx_offset = ISCSI_DATA_PAD_LEN ( common->lengths );
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iscsi->tx_len = ISCSI_DATA_PAD_LEN ( common->lengths );
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next_state = ISCSI_TX_IDLE;
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break;
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case ISCSI_TX_IDLE:
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@ -876,12 +934,12 @@ static void iscsi_acked ( struct tcp_connection *conn, size_t len ) {
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assert ( 0 );
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return;
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}
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assert ( iscsi->tx_offset <= max_tx_offset );
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assert ( iscsi->tx_offset <= iscsi->tx_len );
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/* If the whole of the current portion has not yet
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* been acked, stay in this state for now.
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*/
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if ( iscsi->tx_offset != max_tx_offset )
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if ( iscsi->tx_offset != iscsi->tx_len )
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return;
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/* Move to next state. Call iscsi_tx_done() when PDU
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@ -1033,7 +1091,6 @@ static void iscsi_newdata ( struct tcp_connection *conn, void *data,
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struct iscsi_bhs_common *common = &iscsi->rx_bhs.common;
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void ( *process ) ( struct iscsi_session *iscsi, void *data,
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size_t len, size_t remaining );
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size_t max_rx_offset;
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enum iscsi_rx_state next_state;
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size_t frag_len;
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size_t remaining;
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@ -1042,22 +1099,22 @@ static void iscsi_newdata ( struct tcp_connection *conn, void *data,
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switch ( iscsi->rx_state ) {
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case ISCSI_RX_BHS:
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process = iscsi_rx_bhs;
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max_rx_offset = sizeof ( iscsi->rx_bhs );
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iscsi->rx_len = sizeof ( iscsi->rx_bhs );
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next_state = ISCSI_RX_AHS;
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break;
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case ISCSI_RX_AHS:
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process = iscsi_rx_discard;
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max_rx_offset = 4 * ISCSI_AHS_LEN ( common->lengths );
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iscsi->rx_len = 4 * ISCSI_AHS_LEN ( common->lengths );
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next_state = ISCSI_RX_DATA;
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break;
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case ISCSI_RX_DATA:
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process = iscsi_rx_data;
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max_rx_offset = ISCSI_DATA_LEN ( common->lengths );
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iscsi->rx_len = ISCSI_DATA_LEN ( common->lengths );
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next_state = ISCSI_RX_DATA_PADDING;
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break;
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case ISCSI_RX_DATA_PADDING:
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process = iscsi_rx_discard;
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max_rx_offset = ISCSI_DATA_PAD_LEN ( common->lengths );
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iscsi->rx_len = ISCSI_DATA_PAD_LEN ( common->lengths );
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next_state = ISCSI_RX_BHS;
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break;
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default:
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@ -1065,10 +1122,10 @@ static void iscsi_newdata ( struct tcp_connection *conn, void *data,
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return;
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}
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frag_len = max_rx_offset - iscsi->rx_offset;
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frag_len = iscsi->rx_len - iscsi->rx_offset;
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if ( frag_len > len )
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frag_len = len;
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remaining = max_rx_offset - iscsi->rx_offset - frag_len;
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remaining = iscsi->rx_len - iscsi->rx_offset - frag_len;
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process ( iscsi, data, frag_len, remaining );
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iscsi->rx_offset += frag_len;
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@ -1078,7 +1135,7 @@ static void iscsi_newdata ( struct tcp_connection *conn, void *data,
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/* If all the data for this state has not yet been
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* received, stay in this state for now.
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*/
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if ( iscsi->rx_offset != max_rx_offset )
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if ( iscsi->rx_offset != iscsi->rx_len )
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return;
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iscsi->rx_state = next_state;
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