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tests/run-coverage
into tests/coverage-map/status-quo
The output of these tests is too complicated to comfortably verify by hand, but we can still use them to observe changes to the underlying mappings produced by codegen/LLVM. If these tests fail due to non-coverage changes (e.g. in HIR-to-MIR lowering or MIR optimizations), it should usually be OK to just `--bless` them, as long as the `run-coverage` test suite still works.
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The tests in `./status-quo` were copied from `tests/run-coverage` in order to | ||
capture the current behavior of the instrumentor on non-trivial programs. | ||
The actual mappings have not been closely inspected. | ||
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## Maintenance note | ||
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These tests can be sensitive to small changes in MIR spans or MIR control flow, | ||
especially in HIR-to-MIR lowering or MIR optimizations. | ||
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If you haven't touched the coverage code directly, and the `run-coverage` test | ||
suite still works, then it should usually be OK to just `--bless` these | ||
coverage mapping tests as necessary, without worrying too much about the exact | ||
changes. |
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Function name: abort::main | ||
Raw bytes (105): 0x[01, 01, 12, 01, 47, 05, 09, 03, 0d, 42, 11, 03, 0d, 11, 3e, 42, 11, 03, 0d, 3b, 15, 11, 3e, 42, 11, 03, 0d, 15, 36, 3b, 15, 11, 3e, 42, 11, 03, 0d, 05, 09, 0d, 01, 0d, 01, 01, 1b, 03, 02, 0b, 00, 18, 42, 01, 0c, 00, 19, 11, 00, 1a, 02, 0a, 3e, 02, 0a, 00, 0b, 3b, 02, 0c, 00, 19, 15, 00, 1a, 00, 31, 36, 00, 31, 00, 32, 33, 04, 0c, 00, 19, 05, 00, 1a, 00, 31, 09, 00, 31, 00, 32, 47, 01, 09, 00, 17, 0d, 02, 05, 01, 02] | ||
Number of files: 1 | ||
- file 0 => global file 1 | ||
Number of expressions: 18 | ||
- expression 0 operands: lhs = Counter(0), rhs = Expression(17, Add) | ||
- expression 1 operands: lhs = Counter(1), rhs = Counter(2) | ||
- expression 2 operands: lhs = Expression(0, Add), rhs = Counter(3) | ||
- expression 3 operands: lhs = Expression(16, Sub), rhs = Counter(4) | ||
- expression 4 operands: lhs = Expression(0, Add), rhs = Counter(3) | ||
- expression 5 operands: lhs = Counter(4), rhs = Expression(15, Sub) | ||
- expression 6 operands: lhs = Expression(16, Sub), rhs = Counter(4) | ||
- expression 7 operands: lhs = Expression(0, Add), rhs = Counter(3) | ||
- expression 8 operands: lhs = Expression(14, Add), rhs = Counter(5) | ||
- expression 9 operands: lhs = Counter(4), rhs = Expression(15, Sub) | ||
- expression 10 operands: lhs = Expression(16, Sub), rhs = Counter(4) | ||
- expression 11 operands: lhs = Expression(0, Add), rhs = Counter(3) | ||
- expression 12 operands: lhs = Counter(5), rhs = Expression(13, Sub) | ||
- expression 13 operands: lhs = Expression(14, Add), rhs = Counter(5) | ||
- expression 14 operands: lhs = Counter(4), rhs = Expression(15, Sub) | ||
- expression 15 operands: lhs = Expression(16, Sub), rhs = Counter(4) | ||
- expression 16 operands: lhs = Expression(0, Add), rhs = Counter(3) | ||
- expression 17 operands: lhs = Counter(1), rhs = Counter(2) | ||
Number of file 0 mappings: 13 | ||
- Code(Counter(0)) at (prev + 13, 1) to (start + 1, 27) | ||
- Code(Expression(0, Add)) at (prev + 2, 11) to (start + 0, 24) | ||
= (c0 + (c1 + c2)) | ||
- Code(Expression(16, Sub)) at (prev + 1, 12) to (start + 0, 25) | ||
= ((c0 + (c1 + c2)) - c3) | ||
- Code(Counter(4)) at (prev + 0, 26) to (start + 2, 10) | ||
- Code(Expression(15, Sub)) at (prev + 2, 10) to (start + 0, 11) | ||
= (((c0 + (c1 + c2)) - c3) - c4) | ||
- Code(Expression(14, Add)) at (prev + 2, 12) to (start + 0, 25) | ||
= (c4 + (((c0 + (c1 + c2)) - c3) - c4)) | ||
- Code(Counter(5)) at (prev + 0, 26) to (start + 0, 49) | ||
- Code(Expression(13, Sub)) at (prev + 0, 49) to (start + 0, 50) | ||
= ((c4 + (((c0 + (c1 + c2)) - c3) - c4)) - c5) | ||
- Code(Expression(12, Add)) at (prev + 4, 12) to (start + 0, 25) | ||
= (c5 + ((c4 + (((c0 + (c1 + c2)) - c3) - c4)) - c5)) | ||
- Code(Counter(1)) at (prev + 0, 26) to (start + 0, 49) | ||
- Code(Counter(2)) at (prev + 0, 49) to (start + 0, 50) | ||
- Code(Expression(17, Add)) at (prev + 1, 9) to (start + 0, 23) | ||
= (c1 + c2) | ||
- Code(Counter(3)) at (prev + 2, 5) to (start + 1, 2) | ||
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Function name: abort::might_abort | ||
Raw bytes (21): 0x[01, 01, 01, 01, 05, 03, 01, 04, 01, 01, 14, 05, 02, 09, 01, 24, 02, 02, 0c, 03, 02] | ||
Number of files: 1 | ||
- file 0 => global file 1 | ||
Number of expressions: 1 | ||
- expression 0 operands: lhs = Counter(0), rhs = Counter(1) | ||
Number of file 0 mappings: 3 | ||
- Code(Counter(0)) at (prev + 4, 1) to (start + 1, 20) | ||
- Code(Counter(1)) at (prev + 2, 9) to (start + 1, 36) | ||
- Code(Expression(0, Sub)) at (prev + 2, 12) to (start + 3, 2) | ||
= (c0 - c1) | ||
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#![feature(c_unwind)] | ||
#![allow(unused_assignments)] | ||
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extern "C" fn might_abort(should_abort: bool) { | ||
if should_abort { | ||
println!("aborting..."); | ||
panic!("panics and aborts"); | ||
} else { | ||
println!("Don't Panic"); | ||
} | ||
} | ||
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fn main() -> Result<(), u8> { | ||
let mut countdown = 10; | ||
while countdown > 0 { | ||
if countdown < 5 { | ||
might_abort(false); | ||
} | ||
// See discussion (below the `Notes` section) on coverage results for the closing brace. | ||
if countdown < 5 { might_abort(false); } // Counts for different regions on one line. | ||
// For the following example, the closing brace is the last character on the line. | ||
// This shows the character after the closing brace is highlighted, even if that next | ||
// character is a newline. | ||
if countdown < 5 { might_abort(false); } | ||
countdown -= 1; | ||
} | ||
Ok(()) | ||
} | ||
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// Notes: | ||
// 1. Compare this program and its coverage results to those of the similar tests | ||
// `panic_unwind.rs` and `try_error_result.rs`. | ||
// 2. This test confirms the coverage generated when a program includes `UnwindAction::Terminate`. | ||
// 3. The test does not invoke the abort. By executing to a successful completion, the coverage | ||
// results show where the program did and did not execute. | ||
// 4. If the program actually aborted, the coverage counters would not be saved (which "works as | ||
// intended"). Coverage results would show no executed coverage regions. | ||
// 6. If `should_abort` is `true` and the program aborts, the program exits with a `132` status | ||
// (on Linux at least). | ||
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/* | ||
Expect the following coverage results: | ||
```text | ||
16| 11| while countdown > 0 { | ||
17| 10| if countdown < 5 { | ||
18| 4| might_abort(false); | ||
19| 6| } | ||
``` | ||
This is actually correct. | ||
The condition `countdown < 5` executed 10 times (10 loop iterations). | ||
It evaluated to `true` 4 times, and executed the `might_abort()` call. | ||
It skipped the body of the `might_abort()` call 6 times. If an `if` does not include an explicit | ||
`else`, the coverage implementation injects a counter, at the character immediately after the `if`s | ||
closing brace, to count the "implicit" `else`. This is the only way to capture the coverage of the | ||
non-true condition. | ||
As another example of why this is important, say the condition was `countdown < 50`, which is always | ||
`true`. In that case, we wouldn't have a test for what happens if `might_abort()` is not called. | ||
The closing brace would have a count of `0`, highlighting the missed coverage. | ||
*/ |
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Function name: assert::main | ||
Raw bytes (65): 0x[01, 01, 08, 01, 1b, 05, 1f, 09, 0d, 03, 11, 16, 05, 03, 11, 05, 1f, 09, 0d, 09, 01, 09, 01, 01, 1b, 03, 02, 0b, 00, 18, 16, 01, 0c, 00, 1a, 05, 00, 1b, 02, 0a, 12, 02, 13, 00, 20, 09, 00, 21, 02, 0a, 0d, 02, 0a, 00, 0b, 1b, 01, 09, 00, 17, 11, 02, 05, 01, 02] | ||
Number of files: 1 | ||
- file 0 => global file 1 | ||
Number of expressions: 8 | ||
- expression 0 operands: lhs = Counter(0), rhs = Expression(6, Add) | ||
- expression 1 operands: lhs = Counter(1), rhs = Expression(7, Add) | ||
- expression 2 operands: lhs = Counter(2), rhs = Counter(3) | ||
- expression 3 operands: lhs = Expression(0, Add), rhs = Counter(4) | ||
- expression 4 operands: lhs = Expression(5, Sub), rhs = Counter(1) | ||
- expression 5 operands: lhs = Expression(0, Add), rhs = Counter(4) | ||
- expression 6 operands: lhs = Counter(1), rhs = Expression(7, Add) | ||
- expression 7 operands: lhs = Counter(2), rhs = Counter(3) | ||
Number of file 0 mappings: 9 | ||
- Code(Counter(0)) at (prev + 9, 1) to (start + 1, 27) | ||
- Code(Expression(0, Add)) at (prev + 2, 11) to (start + 0, 24) | ||
= (c0 + (c1 + (c2 + c3))) | ||
- Code(Expression(5, Sub)) at (prev + 1, 12) to (start + 0, 26) | ||
= ((c0 + (c1 + (c2 + c3))) - c4) | ||
- Code(Counter(1)) at (prev + 0, 27) to (start + 2, 10) | ||
- Code(Expression(4, Sub)) at (prev + 2, 19) to (start + 0, 32) | ||
= (((c0 + (c1 + (c2 + c3))) - c4) - c1) | ||
- Code(Counter(2)) at (prev + 0, 33) to (start + 2, 10) | ||
- Code(Counter(3)) at (prev + 2, 10) to (start + 0, 11) | ||
- Code(Expression(6, Add)) at (prev + 1, 9) to (start + 0, 23) | ||
= (c1 + (c2 + c3)) | ||
- Code(Counter(4)) at (prev + 2, 5) to (start + 1, 2) | ||
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Function name: assert::might_fail_assert | ||
Raw bytes (21): 0x[01, 01, 01, 01, 05, 03, 01, 04, 01, 02, 0f, 02, 02, 25, 00, 3d, 05, 01, 01, 00, 02] | ||
Number of files: 1 | ||
- file 0 => global file 1 | ||
Number of expressions: 1 | ||
- expression 0 operands: lhs = Counter(0), rhs = Counter(1) | ||
Number of file 0 mappings: 3 | ||
- Code(Counter(0)) at (prev + 4, 1) to (start + 2, 15) | ||
- Code(Expression(0, Sub)) at (prev + 2, 37) to (start + 0, 61) | ||
= (c0 - c1) | ||
- Code(Counter(1)) at (prev + 1, 1) to (start + 0, 2) | ||
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#![allow(unused_assignments)] | ||
// failure-status: 101 | ||
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fn might_fail_assert(one_plus_one: u32) { | ||
println!("does 1 + 1 = {}?", one_plus_one); | ||
assert_eq!(1 + 1, one_plus_one, "the argument was wrong"); | ||
} | ||
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fn main() -> Result<(), u8> { | ||
let mut countdown = 10; | ||
while countdown > 0 { | ||
if countdown == 1 { | ||
might_fail_assert(3); | ||
} else if countdown < 5 { | ||
might_fail_assert(2); | ||
} | ||
countdown -= 1; | ||
} | ||
Ok(()) | ||
} | ||
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// Notes: | ||
// 1. Compare this program and its coverage results to those of the very similar test | ||
// `panic_unwind.rs`, and similar tests `abort.rs` and `try_error_result.rs`. | ||
// 2. This test confirms the coverage generated when a program passes or fails an `assert!()` or | ||
// related `assert_*!()` macro. | ||
// 3. Notably, the `assert` macros *do not* generate `TerminatorKind::Assert`. The macros produce | ||
// conditional expressions, `TerminatorKind::SwitchInt` branches, and a possible call to | ||
// `begin_panic_fmt()` (that begins a panic unwind, if the assertion test fails). | ||
// 4. `TerminatoKind::Assert` is, however, also present in the MIR generated for this test | ||
// (and in many other coverage tests). The `Assert` terminator is typically generated by the | ||
// Rust compiler to check for runtime failures, such as numeric overflows. |
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