Execution Path
Discussion
An Execution Path is the actual progression through Sequence Steps during Test Execution.
A Test Sequence defines the permitted progression through its Sequence Steps. An Execution Path identifies the progression that actually occurs during a particular Test Run.
An Execution Path can identify:
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Its initial Sequence Steps
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Each performed Sequence Step
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The order in which Sequence Steps occurred
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Concurrent Sequence Steps
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Repeated Sequence Steps
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Skipped Sequence Steps
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Conditional branches taken
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Conditional branches not taken
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Error-handling branches taken
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The Test Argument Values supplied to each occurrence
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The Starting Conditions applicable to each occurrence
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The Timing Conditions applicable to each occurrence
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The start and completion time of each occurrence
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The event or condition that caused each progression
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The applicable Test Result for each occurrence
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The applicable Verdict for each occurrence
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The point and cause of termination
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Its Provenance
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Its Traceability
An Execution Path can contain:
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Sequential progression
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Parallel progression
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Conditional progression
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Iterative progression
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Event-driven progression
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Error-handling progression
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A combination of progression types
Definition
actual progression through Sequence Steps during Test Execution
Source
Adapted from:
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DIDO Reference Implementation Conceptual Model
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DIDO-TE draft Requirements Register
OMG TestIF defines TestSequence as a directed progression of SequenceSteps and permits progression to depend on the applicable Sequence Step relationships and conditions.
OMG TestIF discusses test paths but does not establish Execution Path as a separate TestIF model element. This definition introduces Execution Path to identify the Test Sequence progression that actually occurred during a particular Test Run.
Note
Use the singular glossary term Execution Path. Link plural usage to the same controlling page:
[[dido:99_annexes:annex-b-terms-and-definitions:e:execution_path|Execution Paths]]
An Execution Path differs from a Test Sequence:
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A Test Sequence defines permitted progression
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An Execution Path identifies the progression that actually occurred
A Test Sequence can permit multiple Execution Paths.
An Execution Path differs from a Sequence Step:
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A Sequence Step identifies one position and occurrence within a Test Sequence
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An Execution Path identifies the actual progression through the performed Sequence Steps
An Execution Path differs from a Test Run:
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An Execution Path identifies the actual progression
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A Test Run records the Execution Path, execution context, Test Results, Evidence, and related information for a particular occurrence of Test Execution
An Execution Path differs from a Test Result:
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An Execution Path identifies what progression occurred
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A Test Result records an outcome associated with a Sequenced Test Object or Sequence Step
A repeated Test Run does not necessarily follow the same Execution Path. Differences can result from:
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Different Test Argument Values
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Different Starting Conditions
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Different Test Results
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Different Verdicts
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Different Timing Conditions
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Timeouts
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Errors
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Concurrent behavior
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External events
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Nondeterministic behavior
The applicable Acceptance Criteria determine whether reproducible Test Execution requires:
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The same Execution Path
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An equivalent Execution Path
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Any permitted Execution Path
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A particular set of required Sequence Steps
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Exclusion of prohibited Execution Paths
Parallel progression does not always establish a single total ordering. An Execution Path can preserve a partial ordering that identifies concurrency and the required temporal relationships among Sequence Steps.
An Execution Path should preserve enough information to reconstruct:
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Which Sequence Steps occurred
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Which Sequence Steps did not occur
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The order or partial order of occurrence
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The Test Argument Values used
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The conditions that controlled progression
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The Test Results produced
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The reason Test Execution completed or terminated
Example
A Test Sequence permits the following progression:
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Sequence Step
SS-01establishes a Node Set -
Sequence Step
SS-02submits a transaction -
Sequence Steps
SS-03A,SS-03B, andSS-03Cobserve three Nodes concurrently -
Sequence Step
SS-04evaluates the Test Results when all three Nodes respond -
Sequence Step
SS-05handles a timeout when one or more Nodes fail to respond
During one Test Run, all three Nodes respond. The Execution Path is:
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SS-01 -
SS-02 -
Concurrent occurrence of
SS-03A,SS-03B, andSS-03C -
SS-04
During a repeated Test Run, Node C fails to respond. The Execution Path is:
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SS-01 -
SS-02 -
Concurrent occurrence of
SS-03A,SS-03B, andSS-03C -
SS-05
The two Test Runs use the same Test Sequence but follow different Execution Paths. The Acceptance Criteria determine whether both Execution Paths satisfy the applicable Reproducibility requirement.
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