Master Error Address Register (Mear); Channels - Freescale Semiconductor MCF5480 Reference Manual

Freescale semiconductor circuit board reference manual
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Bits
Name
7–4
CURR_CHAN Current Channel. These bits are read only. They indicate the channel number that is
3–0

22.6.4.8 Master Error Address Register (MEAR)

This register saves the address of the transaction whose data phase was terminated with a TEA or Master
Parity Error. A Transfer Error Acknowledge (TEA) signal indicates a fatal error has occurred during the
data phase of a bus transaction. Invalid data may have been received and stored prior to the receipt of the
TEA. The channel that was initiating the transaction will be evident from that channel's error interrupt.
Software may chose to reset the channel reporting the TEA, reset the whole SEC, or reset the entire system.
In any case, the host may chose to preserve this TEA information prior to reset to assist in debug.
The MEAR only holds the address of the first error reported, in the event multiple errors are received
before the first is cleared.
31
30
R
W
Reset
0
0
15
14
R
W
Reset
0
0
Reg
Addr
Table 22-10
defines the MEAR fields.
Bits
Name
31–0
ADDRESS Target address of the transaction when TEA was received.
22.7

Channels

A crypto-channel manages data associated with the one or more execution units (EUs). Control and data
information for a given task is stored in the form of data packet descriptors in system memory. The
descriptor describes how the EU should be initialized, where to fetch the data to be ciphered and where to
22-18
Table 22-9. SMCR Field Descriptions (Continued)
currently in use by the controller as a master on the XLB bus. The possible values are:
0000 - No Channel is currently in use.
0001 - Channel 0 is in use.
0010 - Channel 1 is in use.
Reserved
29
28
27
26
0
0
0
0
13
12
11
10
0
0
0
0
Figure 22-15. Master Error Address Register (MEAR)
Table 22-10. MEAR Field Descriptions
MCF548x Reference Manual, Rev. 3
Description
25
24
23
22
Address
0
0
0
0
9
8
7
6
Address
0
0
0
0
MBAR + 0x 21038
Description
21
20
19
18
0
0
0
0
5
4
3
2
0
0
0
0
Freescale Semiconductor
17
16
0
0
1
0
0
0

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