29-31
MPC8260 PowerQUICC II UserÕs Manual
MOTOROLA
Part IV. Communications Processor Module
BEDC is calculated. When an FMC is received, the CP adds the BRC Þelds into the cell
payload (TRCC
0
, TRCC
0+1
, BLER) and transfers the cell to the receive raw cell queue. The
user can monitor the BRC cell results and transfer the cell to the transmit raw cell queue.
Before the BRC is transferred to the transmit raw cell queue, the PM function type should
be changed to backward reporting and additional checking should be done regarding the
BLER Þeld. If the sequence numbers (MCSN) of the last two FMCs are not sequential or
the differences between the last two TUCs and the last two TRCCs are not equal, BLER
should be set to all ones (see the ITU I.610 recommendation).
Note that the TRCCs are free-running counters (modulo 65,536) that count user cells
received. The total received cells of a particular block is the difference between TRCC
values of two consecutive BRC cells. TRCC values are taken from a VCÕs performance
monitoring table.
29.6.6.3 PM Block Generation
The transmitter generates the PM block. Each time the transmitted cell count parameter
(TCC) in the performance monitoring table reaches zero, the CP inserts an FMC into the
user cell stream. The CP copies the FMC header, SN-FMC, TUC
0+1
, TUC
0
, BEDC
0+1
-Tx
from the performance monitoring table and inserts them into the FMC payload. The TSTP
value (FMC time stamp Þeld) is taken from the MPC8260 time stamp timer; see
Section 13.3.7, ÒRISC Time-Stamp Control Register (RTSCR).Ó
The TUCs are free-running counters (modulo 65,536) that count transmitted user cells. The
total transmitted cells of a particular block is the difference between TUC values of two
consecutive FMCs. The BEDC (BIP-16, bit interleaved parity) calculation is done on the
payload of all user cells of the current tested block. The performance monitoring block can
range from 1 to 2K cells, as speciÞed in the BLCKSIZE parameter in the performance
monitoring table; see Section 29.10.3, ÒOAM Performance Monitoring Tables.Ó
In Figure 29-18, the performance monitoring block size is 512 cells. For every 512 user
cells sent, the ATM controller automatically inserts an FMC into the regular cell stream as
deÞned in ITU I.610. When an FMC is received, the ATM controller adds the BRC Þelds
to the cell payload and sends the cell to the raw cell queue. The user can monitor the BRC
cell results and transfer the cell to the transmit raw cell queue.
Summary of Contents for MPC8260 PowerQUICC II
Page 1: ...MPC8260UM D 4 1999 Rev 0 MPC8260 PowerQUICC II UserÕs Manual ª ª ...
Page 66: ...lxvi MPC8260 PowerQUICC II UserÕs Manual MOTOROLA ...
Page 88: ...1 18 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part I Overview ...
Page 120: ...2 32 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part I Overview ...
Page 138: ...Part II iv MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part II Configuration and Reset ...
Page 184: ...4 46 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part II ConÞguration and Reset ...
Page 202: ...Part III vi MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 266: ...8 34 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 382: ...10 106 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 392: ...11 10 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Part III The Hardware Interface ...
Page 430: ...Part IV viii MOTOROLA Part IV Communications Processor Module ...
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Page 980: ...A 4 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA Appendixes ...
Page 1002: ...Index 22 MPC8260 PowerQUICC II UserÕs Manual MOTOROLA INDEX ...
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