Section 41 User Break Controller (UBC)
Rev. 1.00 Oct. 01, 2007 Page 1787 of 1956
REJ09B0256-0100
41.3.5 Sequential
Break
1. Sequential break conditions can be specified by setting the MFE and MFI bits in the match
condition setting registers (CBR0 and CBR1). (Sequential break involves two cases such that
channel 0 break condition is satisfied then channel 1 break condition is satisfied, and vice
versa.) To use the sequential
break function, clear the MFE bit of the match condition setting
register and the BIE bit of the match operation setting register of the first channel in the
sequence, and set the MFE bit and specify the number of the second channel in the sequence
using the MFI bit in the match condition setting register of the second channel in the sequence.
If the sequential break condition is set, the condition match flag is set every time the match
condition is satisfied for each channel. When the condition has been satisfied for the first
channel in the sequence but not for the second channel in the sequence, clear the condition
match flag for the first channel in the sequence in order to release the first channel in the
sequence from the match state.
2. For channel 1, the execution count break condition can also be included in the sequential break
conditions.
3. If the match conditions for the first and second channels in the sequence are satisfied within a
significantly short time, sequential operation may not be guaranteed in some cases, as shown
below.
•
When the Match Condition is Satisfied at the Instruction Fetch Cycle for Both the First and
Second Channels in the Sequence:
Instruction B is 0 instruction after instruction A
Equivalent to setting the same addresses; do
not use this setting.
Instruction B is one instruction after instruction A Sequential operation is not guaranteed.
Instruction B is two or more instructions after
instruction A
Sequential operation is guaranteed.
•
When the match condition is satisfied at the instruction fetch cycle for the first channel in the
sequence whereas the match condition is satisfied at the operand access cycle for the second
channel in the sequence:
Instruction B is 0 or one instruction after
instruction A
Sequential operation is not guaranteed.
Instruction B is two or more instructions after
instruction A
Sequential operation is guaranteed.
Содержание SH7763
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Страница 686: ...Section 14 Direct Memory Access Controller DMAC Rev 1 00 Oct 01 2007 Page 620 of 1956 REJ09B0256 0100 ...
Страница 710: ...Section 16 Clock Pulse Generator CPG Rev 1 00 Oct 01 2007 Page 644 of 1956 REJ09B0256 0100 ...
Страница 732: ...Section 17 Watchdog Timer and Reset WDT Rev 1 00 Oct 01 2007 Page 666 of 1956 REJ09B0256 0100 ...
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Страница 772: ...Section 19 Timer Unit TMU Rev 1 00 Oct 01 2007 Page 706 of 1956 REJ09B0256 0100 ...
Страница 824: ...Section 21 Compare Match Timer CMT Rev 1 00 Oct 01 2007 Page 758 of 1956 REJ09B0256 0100 ...
Страница 1060: ...Section 23 Gigabit Ethernet Controller GETHER Rev 1 00 Oct 01 2007 Page 994 of 1956 REJ09B0256 0100 ...
Страница 1062: ...Section 24 IP Security Accelerator SECURITY Rev 1 00 Oct 01 2007 Page 996 of 1956 REJ09B0256 0100 ...
Страница 1124: ...Section 26 I 2 C Bus Interface IIC Rev 1 00 Oct 01 2007 Page 1058 of 1956 REJ09B0256 0100 ...
Страница 1184: ...Section 27 Serial Communication Interface with FIFO SCIF Rev 1 00 Oct 01 2007 Page 1118 of 1956 REJ09B0256 0100 ...
Страница 1350: ...Section 30 SIM Card Module SIM Rev 1 00 Oct 01 2007 Page 1284 of 1956 REJ09B0256 0100 ...
Страница 1484: ...Section 33 Audio Codec Interface HAC Rev 1 00 Oct 01 2007 Page 1418 of 1956 REJ09B0256 0100 ...
Страница 1560: ...Section 35 USB Host Controller USBH Rev 1 00 Oct 01 2007 Page 1494 of 1956 REJ09B0256 0100 ...
Страница 1720: ...Section 37 LCD Controller LCDC Rev 1 00 Oct 01 2007 Page 1654 of 1956 REJ09B0256 0100 ...
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