System Development and Debugging
MPC885 PowerQUICC Family Reference Manual, Rev. 2
Freescale Semiconductor
53-17
•
Greater than or equal of the smallest unsigned number (0000...0).
•
Less than or equal of the maximum positive number in signed mode (0111...1).
•
Greater than or equal of the maximum negative number in signed mode (1000...).
These boundary cases do not require special support because they are considered always true. They can be
programmed using the ignore option of the load/store watchpoint programming. See
Section 53.5.1.5,
“Load/Store Support AND-OR Control Register (LCTRL2).”
53.2.5
Load/Store Breakpoint Example
CMPE and CMPF are used for load/store addresses while CMPG and CMPH are used for load/store data.
The procedure is as follows:
1. Write the value in the appropriate comparator register, CMPE, CMPF, CMPG, or CMPH.
2. For load/store data, program the operand size in LCTRL1[CSx] and the byte mask in
LCTRL1[CxBMSK].
3. Write the comparison type in LCTRL1[CTx]. For load/store data, program whether the operand is
signed or unsigned LCTRL1[SUSx].
4. Select a watchpoint enable event:
— Define the load/store watchpoint event in LCTRL2[LWxLA] or LCTRL2[LWxLD]
— Enable the address or data event in LCTRL2[LWxLADC] or LCTRL2[LWxLDDC]
5. Disable instruction events affecting load/store watchpoints—Clear LWxIADC (LWxIA is a don’t
care).
6. Enable the watchpoint in LCTRL2[LWxEN].
7. Enable a trap on every watchpoint or every N watchpoints.
Option: Enable trap on every load/store watchpoint in LCTRL2[SLWxEN] or on every N
watchpoints in COUNTx. (Set CNTV to n and select the load/store watchpoint in CNTC).
8. Select whether breakpoints are maskable or nonmaskable in LCTRL2[BRKNOMSK].
9. Optionally select whether a load/store trap causes the debug mode to be entered in
DER[LBRKE].
53.3
Development System Interface
It is often useful to debug a target system without making changes. However, sometimes it is impossible
to add load to the lines connected to the existing system without disrupting its operation. The development
system interface of the core enables debug of a target system with minimal cost and intrusiveness.
The development system interface of the core uses the development port, which is a dedicated serial port
and, therefore, does not need any of the regular system interfaces.
The development port is a relatively inexpensive interface that allows a development system to operate in
a lower frequency than the core’s frequency and controls system activity when the core is in debug mode.
Содержание PowerQUICC MPC870
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Страница 118: ...MPC885 Overview MPC885 PowerQUICC Family Reference Manual Rev 2 1 20 Freescale Semiconductor ...
Страница 158: ...The MPC8xx Core MPC885 PowerQUICC Family Reference Manual Rev 2 3 18 Freescale Semiconductor ...
Страница 192: ...MPC885 Instruction Set MPC885 PowerQUICC Family Reference Manual Rev 2 5 22 Freescale Semiconductor ...
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Страница 440: ...Clocks and Power Control MPC885 PowerQUICC Family Reference Manual Rev 2 14 24 Freescale Semiconductor ...
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Страница 606: ...SDMA Channels and IDMA Emulation MPC885 PowerQUICC Family Reference Manual Rev 2 19 20 Freescale Semiconductor ...
Страница 738: ...SCC Asynchronous HDLC Mode and IrDA MPC885 PowerQUICC Family Reference Manual Rev 2 25 16 Freescale Semiconductor ...
Страница 780: ...SCC Ethernet Mode MPC885 PowerQUICC Family Reference Manual Rev 2 27 24 Freescale Semiconductor ...
Страница 794: ...SCC Transparent Mode MPC885 PowerQUICC Family Reference Manual Rev 2 28 14 Freescale Semiconductor ...
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Страница 882: ...Universal Serial Bus USB MPC885 PowerQUICC Family Reference Manual Rev 2 31 34 Freescale Semiconductor ...
Страница 944: ...Parallel I O Ports MPC885 PowerQUICC Family Reference Manual Rev 2 34 26 Freescale Semiconductor ...
Страница 956: ...CPM Interrupt Controller MPC885 PowerQUICC Family Reference Manual Rev 2 35 12 Freescale Semiconductor ...
Страница 1004: ...Buffer Descriptors and Connection Tables MPC885 PowerQUICC Family Reference Manual Rev 2 37 30 Freescale Semiconductor ...
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Страница 1068: ...ATM Pace Control MPC885 PowerQUICC Family Reference Manual Rev 2 40 22 Freescale Semiconductor ...
Страница 1090: ...UTOPIA Interface MPC885 PowerQUICC Family Reference Manual Rev 2 43 8 Freescale Semiconductor ...
Страница 1120: ...AAL2 Implementation MPC885 PowerQUICC Family Reference Manual Rev 2 44 30 Freescale Semiconductor ...
Страница 1162: ...Fast Ethernet Controller FEC MPC885 PowerQUICC Family Reference Manual Rev 2 45 40 Freescale Semiconductor ...
Страница 1172: ...SEC Lite Overview MPC885 PowerQUICC Family Reference Manual Rev 2 46 8 Freescale Semiconductor ...
Страница 1176: ...SEC Lite Address Map MPC885 PowerQUICC Family Reference Manual Rev 2 47 4 Freescale Semiconductor ...
Страница 1214: ...SEC Lite Execution Units MPC885 PowerQUICC Family Reference Manual Rev 2 48 38 Freescale Semiconductor ...
Страница 1312: ...Byte Ordering MPC885 PowerQUICC Family Reference Manual Rev 2 A 8 Freescale Semiconductor ...
Страница 1313: ...MPC885 PowerQUICC Family Reference Manual Rev 2 Freescale Semiconductor B 1 Appendix B Serial Communications Performance TBD ...
Страница 1314: ...Serial Communications Performance MPC885 PowerQUICC Family Reference Manual Rev 2 B 2 Freescale Semiconductor ...
Страница 1320: ...Register Quick Reference Guide MPC885 PowerQUICC Family Reference Manual Rev 2 C 6 Freescale Semiconductor ...
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Страница 1384: ...Serial ATM Scrambling Reception and SI Programming MPC885 PowerQUICC Family Reference Manual Rev 2 H 6 Freescale Semiconductor ...
Страница 1386: ...Revision History MPC885 PowerQUICC Family Reference Manual Rev 2 I 2 Freescale Semiconductor ...