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GL600USB 数据表(PDF) 22 Page - List of Unclassifed Manufacturers |
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GL600USB 数据表(HTML) 22 Page - List of Unclassifed Manufacturers |
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22 / 38 page ![]() 22 06/19/2000 GL600USB/GL600USB-A/GL600USB-B Revision 1.3 Figure 4-5 Data Signal Rise and Fall Time 4.7.3 Serial Interface Engine (SIE) The SIE manages data movement between the CPU and the transceiver. The SIE handles both transmit and receive operations on the USB. It contains the logic used to manipulate the transceiver and the endpoint registers. The byte count buffer is loaded from TXCNT(TXCTL0<3~0>) during endpoint 0 transmit operations. This same buffer is used for receive transactions to count the number of bytes received at endpoint 0 and, upon the end of transaction, transfer the value t o RXCNT(RXCTL0<3~0>). When transmitting, the SIE handles parallel-to-serial conversion, CRC generation, NRZI encoding, and bit stuffing. When receiving, the SIE handles sync detection, packet identification, end-of-packet detection, bit (un)stuffing, NRZI decoding, CRC validation, and serial-to-parallel conversion. Errors detected by the SIE include bad CRC, timeout while waiting for EOP, and bit stuffing violations. All USB devices are required to have an endpoint 0 that is used to initialize and manipulate the device. Endpoint 0 provides access to the device’s configuration information and allows generic USB status and control accesses. Endpoint 0 can receive and transmit data. Both receive and transmit data share the same 8-byte Endpoint 0 FIFO, FFDAT0. Received data may overwrite the data previously in the FIFO. Endpoint 1 is of transmit only. This endpoint is used to transmit HID report data to host. 4.8 INSTRUCTION SET SUMMARY 4.8.1 Operand Field Descriptions Field Description r Register address A Accumulator i Immediate data b Bit address within a 8-bit register 4.8.2 Instruction Set Mnemonic, Operands Description Cycles Flags Affected Arithmetic Operations ADDAR r, A Add r and A, r <- r + A 1 CA, HC, ZO ADDAR A, r Add A and r, A <- A + r 1 CA, HC, ZO ADDAI i Add A and i, A <- A + i 1 CA, HC, ZO INCR r Increment r, r <- r +1 1 ZO INCR A, r Increment r, A <- r + 1 1 ZO INCRSZ r Increment r, r <- r +1, skip if (r = 0) 1 or 2 INCRSZ A, r Increment r, A <- r +1, skip if (A = 0) 1 or 2 SUBAR r, A Subtract A from r, r <- r - A 1 CA, HC, ZO SUBAR A, r Subtract A from r, A <- r - A 1 CA, HC, ZO SUBIA i Subtract A from i, A <- i - A 1 CA, HC, ZO |
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