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Hardware Dependability - Testing
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Lecture Structure
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- i Farmer 5 3 van 3 (00:11:47)
- In Q me mes m rec ace w fans (00:11:47)
- am res the my me me (00:11:47)
- You are a has Q as pow mire s allure (00:11:47)
- Task 2 4 (00:11:47)
- i Farmer 5 1 van 3 (00:11:48)
- Dependable Systems (00:12:25)
- Dependable System Design (00:14:02)
- Testing Swartz (00:26:36)
- Design Phase (00:26:36)
- Development phase influences test procedure functional vs acceptance (00:26:36)
- Type of fault is the test procedure logical vs (00:26:36)
- Core of diagnosis is testing box approach (00:26:36)
- Hardware Testing (00:28:49)
- Hardware Design for Testability (00:28:50)
- Processor Testing (00:35:36)
- Primitive D cube of failure (00:35:36)
- D 1 the good O in faulty (00:35:36)
- Invented by Roth IBM in 1966 based on D notation (00:35:36)
- 0 D algorithm guarantees to find a test vector if one exists (00:35:36)
- Algorithms for test generation designed to be programmable (00:35:36)
- Sequencing control (00:35:38)
- Functional testing Abraham (00:35:38)
- Dara flow graph model (00:37:26)
- Memory Testing (00:38:27)
- RAM Testing (00:44:57)
- Total of 1 18 combinations (00:44:57)
- 2 13 possible sequential (00:44:57)
- 16 bit RAM (00:44:57)
- N potential address sequences (00:44:57)
- Total number of bit configurations is 2 (00:44:57)
- Categories s and O (00:44:57)
- Checkerboard Volatility Test Pattern (00:44:58)
- Memory Scan (00:44:58)
- Ping (00:48:29)
- Stress Test (00:50:39)
- Fault Injection Insertion (00:50:40)
- Fault Injection Advantages et (00:53:59)
- Fault Injection (00:54:58)
- FARM Assumptions Set of Faults (01:03:17)
- Fault List Reduction (01:07:52)
- FARM Assumptions Set of Measures 4 (01:09:15)
- Failure Fault propagated through the system to the output (01:09:15)
- Determine fault coverage from experiment results (01:09:15)
- Fault Insertion Methods Swartz (01:09:25)
- FARM Assumptions Set of Measures 1 (01:09:27)
- Failure Fault propagated the system to the output (01:09:27)
- Determine fault coverage from experiment results (01:09:27)
- Fault Insertion Methods 81 (01:09:39)
- types are (01:09:39)
- types and control are (01:09:39)
- hardware and software m and software m (01:09:39)
- Faults vs Fault Injection (01:09:40)
- Problem of repeatability and dependability chain analysis (01:09:40)
- Testing with fault (01:09:40)
- The fault model usually covers only parts of me relevant real faults (01:09:40)
- The fault injection typically can only partly emulate the selected fault model (01:09:40)
- The set of faults usually does not cover the set of targeted real faults (01:09:40)
- Based Fault Injection (01:09:47)
- Simulation Based Fault Injection (01:09:49)
- are Implemented Fault Injection (01:09:50)
- Existing (01:09:51)
- Overall property is the need for some non transparent modification of hardware (01:09:51)
- Typical triggers out trap code insertion debug (01:09:51)
- on et Kernel module processor debug registers (01:09:51)
- FIAT DOCTOR Application (01:09:51)
- FERRARI et Trap based triggers (01:09:51)
- are Implemented Fault Injection (01:09:52)
- Existing (01:12:01)
- property is the need for some non transparent modification of hardware (01:12:01)
- triggers Time out trap code insertion debug (01:12:01)
- FIAT DOCTOR Application image manipulation (01:12:01)
- Kernel module memory (01:12:01)
- FERRARI et Trap based (01:12:01)
- Some examples (01:12:01)
- Current Research at (01:13:11)
- Fault r (01:13:11)
- System Mme (01:13:11)
- Advanced fault (01:13:11)
- portability (01:13:11)
- New fault locations pointer trap controller state (01:13:11)
- Software Implemented Fault Injection at Firmware Level a new approach (01:13:11)
- X86 Firmware Technologies (01:16:26)
- Current Research at (01:16:32)
- Fault (01:16:32)
- Management Mme (01:16:32)
- Advanced fault (01:16:32)
- Better portability (01:16:32)
- New fault locations pointer trap controller state (01:16:32)
- X86 Firmware Technologies (01:16:34)
- Fault Location (01:16:46)
- Unique support for injection in mode (01:16:46)
- Status register instruction pointer (01:16:46)
- Non approach (01:16:46)
- Supported fault locations (01:16:46)
- Fault Trigger (01:16:52)
- Status (01:22:34)
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