MPC563XM Reference Manual, Rev. 1
Freescale Semiconductor
775
Preliminary—Subject to Change Without Notice
PP - Preload Parameter
PP indicates which pair of channel parameters are loaded into registers P and DIOB from the SPRAM
prior to the execution of a thread. Preloading occurs during the time-slot transition period (see
Section 23.4.1.2, “Time Slot Transition
1 = microengine register P is preloaded from parameter 2 and DIOB from parameter 3.
0 = microengine register P is preloaded from parameter 0 and DIOB from parameter 1.
The parameter numbers are offsets from the channel parameter base address. For more info, see
Section 23.4.2.3, “Parameter Access
.”
ME - Match Enable
ME specifies whether match event recognitions are enabled or disabled for the thread associated with
the entry point during the thread execution. If they are disabled, a match recognition can only occur
after channel service. For more details refer to
Section 23.4.5.2, “Match Recognition
1 = Matches are enabled during the thread.
0 = Matches are disabled during the thread.
The disabling of Match1/2 recognition by MEF is dependent on IPAC1/2 configuration on the serviced
channel (see
Section 23.4.5.1.2, “Pin Control Registers
”). If IPAC1=1xx, Match1 is not disabled by
ME=0. Likewise, IPAC2=1xx overrides the effect of ME on Match2 to “always on” If IPAC1/2=0xx,
Match1/2 is disabled for one microcycle during TST (see
Section 23.4.1.2, “Time Slot Transition
is re-enabled when Entry Point is loaded, if ME=1. Note that if the comparator is in equal-only mode
and the time base reaches the value of the Match register during the time that recognition is disabled
(beginning of TST, plus whole thread if ME=0), the match recognition is lost. If the comparator is in
greater-equal mode, the match event may be recognized after the disabling period if it satisfies the
“greater-than” condition.
MICROCODE ADDRESS[13:0] - Starting Microcode Address
This field specifies the microcode address on which the thread is to begin execution.
23.4.1.2
Time Slot Transition
The Time Slot Transition period (also called TST for short) is the interval between the servicing of two
channels, during which all Channel-specific context is loaded for the new serviced Channel. The primary
tasks completed during this period include:
•
Set MEF for the first microcycle plus eventual wait-states.
•
Reset the MEF for one microcycle after the first microcycle plus wait-states.
•
Update of the CHAN register with the number of the new channel to be serviced.
•
Parallel update of ERT1 and ERT2 from Capture1 and Capture2 registers of the new serviced
channel.
•
Sampling of the branch conditions of the new channel to be serviced into the branch logic (this
means flags TDL1/2, MRL1/2, LSR, FM[1], FM[0], and PSS). The branch conditions are coherent
with the timebase capture values sampled into ERT1/2 (if MRL1/2, TDL1/2 are set at the same time
Содержание MPC5632M
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