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ADIN1110BCPZ-R7 数据表(PDF) 35 Page - Analog Devices |
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ADIN1110BCPZ-R7 数据表(HTML) 35 Page - Analog Devices |
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35 / 104 page ![]() Data Sheet ADIN1110 MAC SPI analog.com Rev. 0 | 35 of 104 Receive Data Footer Table 28. Receive Data Footer D31 D30 D29 D28 to D24 D23 to D22 D21 D20 D19 to D16 D15 D14 D13 to D8 D7 D6 D5 to D1 D0 EXST HDRB SYNC RCA VS DV SV SWO FD EV EBO RTSA RTSP TXC P See the following definitions: ► EXST: extended status. This bit is set when any bit in the STATUS0 or STATUS1 registers are set and not masked. ► HDRB: received header bad. When this bit is set, the MAC-PHY has received a control or data header with a parity error. ► SYNC: configuration synchronized flag. This field reflects the state of the SYNC bit in the CONFIG0 register. When 0, this bit indicates that the MAC-PHY configuration may not be as expected by the SPI host. Following configuration, the SPI host sets the corresponding bit in the configuration register, which is reflected in this field. ► RCA: receive chunks available. The RCA field indicates the minimum number of additional receive data chunks of frame data that are available for reading beyond the current one. This field is 0 when there is no more receive frame data pending in the buffer of the MAC-PHY to be read. ► VS: when this bit is 1, it indicates the priority of a received frame. ► DV: data valid flag. The SPI host uses this bit to indicate if the current chunk contains valid transmit data (DV = 1) or not. When this bit is 0, the SPI host ignores the chunk payload. ► SV: start valid flag. When this bit is 1, the beginning of an Ethernet frame is present in the current transmit data chunk payload. The SV bit is not to be confused with the SFD byte described in IEEE Standard 802.3. ► SWO: start word offset. When SV is 1, this field contains the 32-bit word offset into the receive data chunk payload that points to the start of the new Ethernet frame. When a receive time stamp is added to the beginning of the received frame (RTSA = 1), SWO points to the most significant byte of the time stamp. If SV is 0, the host must write this field as 0. ► FD: frame drop. When set, this bit indicates that the MAC has detected a condition for which the SPI host must drop the received Ethernet frame. This bit is only valid at the end of a received frame (EV = 1), and must be 0 at all other times. ► EV: end valid flag. When this bit is 1, the end of an Ethernet frame is present in the current receive data chunk payload. ► EBO: end byte offset. When EV is 1, this field contains the byte offset into the receive data chunk payload that points to the last byte of the received Ethernet frame. This field is 0 when EV = 0. ► RTSA: receive time stamp added. This bit is set when a 32-bit or 64-bit time stamp is added to the beginning of the SPI frame. This bit must be 0 when SV = 0. ► TXC: transmit credits. This field contains the minimum number of transmit data chunks of frame data that the SPI host can write in a single transaction without incurring a transmit buffer overflow. ► P: parity. Parity bit calculated over the receive data header. Method is odd parity. OPEN Alliance SPI Cut Through Mode If cut through from or to the host is enabled, the method to transfer frames remains the same as when using store and forward mode. However, the frame receive starts when sufficient frame data to fill a chunk is received, and the frame transmit starts when a configured transmit threshold is reached (see the Transmit Threshold Register section). The cut thorough mode can be enabled via the receive cut through enable bits and transmit cut through enable bits (see the Configura- tion Register 0 section). On receive, the MAC returns data as it becomes available. Unlike in store and forward mode, there may be empty chunks (DV = 0) between a start of frame (SOF) chunk and an end of frame (EOF) chunk. If the host does not read frames fast enough to keep the receive FIFO empty, the frames are then buffered in the receive FIFO as if it is operating in store and forward mode. When all the frames are read, the FIFO returns to operating in cut through mode. On transmit, the host must provide frame data at a rate fast enough (>10 Mbps) to ensure that the frame does not under run on transmit. If the MAC under runs, TXBUE in the STATUS0 register asserts and the MAC stops transmitting the frame in progress and appends a bad CRC to the frame. Cut Through Transmit Latency The time interval between the time the start of an SPI data transac- tion with a transmit header SWO of 0 (frame starts immediately in the chunk), and the time TX_EN rises on the MII with an SPI frequency of 16 MHz and TX_THRESH = 1 is 4 μs. The PHY transmit latency is 3.2 μs. This makes a total transmit latency of 7.2 μs. Cut Through Receive Latency The receive latency varies based on the chunk size and the SPI frequency. Table 29 indicates the latency for an SPI frequency of 16 MHz and all supported chunk sizes. |
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