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Enhanced Time Processing Unit (eTPU2)
MPC5644A Microcontroller Reference Manual, Rev. 6
768
Freescale Semiconductor
1
SDMERR—SDM Read Error
This flag indicates that an SDM read error occurred on a microengine read, generating a Global Exception.
Errors from Host reads neither set this flag nor generate Global Exceptions. This bit is cleared by writing
1 to GEC.
1: Global Exception requested by SDM read error is pending.
0: No Global Exception pending because of SDM read error.
2
WDTOA—Watchdog Timeout
Flag WDTOA indicates that a Watchdog Timeout occurred in eTPU engine A, generating a Global
Exception. This bit is cleared by writing 1 to GEC.
1: Global Exception requested by Watchdog timeout
0: No Global Exception pending because of Watchdog timeout.
3
WDTOB—Watchdog Timeout
Flag WDTOB indicates that a Watchdog Timeout occurred in eTPU engine B, generating a Global
Exception. This bit is cleared by writing 1 to GEC.
1: Global Exception requested by Watchdog timeout
0: No Global Exception pending because of Watchdog timeout.
4
MGE1—Microcode Global Exception – Engine A
This bit indicate that a Global Exception was asserted by microcode executed on eTPU engine A. The
determination of the reason why the Global Exception was asserted is application dependent: it can be
coded in an SPRAM status parameter, for instance. This bit is cleared by writing 1 to GEC.
1: Global Exception requested by microcode is pending
0: No microcode-requested Global Exception pending.
5
MGE2—Microcode Global Exception – Engine B
This bit indicate that a Global Exception was asserted by microcode executed on eTPU engine B. The
determination of the reason why the Global Exception was asserted is application dependent: it can be
coded in an SPRAM status parameter, for instance. This bit is cleared by writing 1 to GEC.
1: Global Exception requested by microcode is pending
0: No microcode-requested Global Exception pending.
6
ILF1—Illegal Instruction Flag – eTPU A
The ILF1 bit is set by the microengine to indicate that an illegal instruction was decoded in Engine A. This
bit is cleared by host writing 1 to GEC. See
Section 24.5.9.5, Illegal Instructions
, for more details.
1: Illegal Instruction detected by eTPU A.
0: Illegal Instruction not detected.
7
ILF2—Illegal Instruction Flag – eTPU B
The ILF2 bit is set by the microengine to indicate that an illegal instruction was decoded in Engine B. This
bit is cleared by host writing 1 to GEC. See
Section 24.5.9.5, Illegal Instructions
, for more details.
1: Illegal Instruction detected by eTPU B.
0: Illegal Instruction not detected.
Table 24-5. ETPU_MCR field description
Field
Description
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