Fuzz introspector
For issues and ideas: https://github.com/ossf/fuzz-introspector/issues

Project functions overview

The following table shows data about each function in the project. The functions included in this table correspond to all functions that exist in the executables of the fuzzers. As such, there may be functions that are from third-party libraries.

For further technical details on the meaning of columns in the below table, please see the Glossary .

Func name Functions filename Args Function call depth Reached by Fuzzers Runtime reached by Fuzzers Combined reached by Fuzzers Fuzzers runtime hit Func lines hit % I Count BB Count Cyclomatic complexity Functions reached Reached by functions Accumulated cyclomatic complexity Undiscovered complexity

Fuzzer details

Fuzzer: debug_abbrev

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 153 79.6%
gold [1:9] 4 2.08%
yellow [10:29] 2 1.04%
greenyellow [30:49] 0 0.0%
lawngreen 50+ 33 17.1%
All colors 192 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
24 9 DebugAbbrev::abbreviations call site: 00009 ArrayVec::try_push
23 36 Reader::read_u8 call site: 00036 SubRange::read_slice
23 131 Reader::read_sleb128 call site: 00131 Abbreviations::insert
19 89 Reader::read_uleb128_u16 call site: 00089 Abbreviation::parse_has_children
14 74 Reader::read_uleb128 call site: 00074 Reader::read_u8
13 117 AttributeSpecification::new call site: 00117 AttributeSpecification::parse
8 0 EP call site: 00000 DebugAbbrev::abbreviations
7 66 Abbreviations::empty call site: 00066 Abbreviation::parse
7 165 Abbreviations::insert call site: 00165 ArrayVec::try_push
5 110 Reader::read_u8 call site: 00110 Abbreviation::parse_attributes
4 187 Abbreviations::insert call site: 00187 Expression::set_target
2 161 Abbreviations::insert call site: 00161 ArrayVec::try_push

Runtime coverage analysis

Covered functions
36
Functions that are reachable but not covered
3
Reachable functions
8
Percentage of reachable functions covered
62.5%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/debug_abbrev.rs 6
src/write/endian_vec.rs 1
src/write/op.rs 7
src/common.rs 3
src/read/abbrev.rs 18
src/read/util.rs 14
src/write/unit.rs 2
src/leb128.rs 6
src/read/reader.rs 5
src/read/endian_reader.rs 14
src/write/abbrev.rs 1
src/read/loclists.rs 3
src/read/addr.rs 18
src/write/line.rs 3
src/endianity.rs 5
src/read/op.rs 2

Fuzzer: eh_frame_hdr

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 95 67.8%
gold [1:9] 1 0.71%
yellow [10:29] 1 0.71%
greenyellow [30:49] 4 2.85%
lawngreen 50+ 39 27.8%
All colors 140 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
37 69 AddrHeader::parse call site: 00069 read::skip
24 19 Reader::read_u32 call site: 00019 SubRange::read_slice
5 51 Endianity::read_u32 call site: 00051 Reader::read_u64
3 65 Endianity::read_u64 call site: 00065
3 116 Endianity::read_u16 call site: 00116
3 123 Reader::read_u8 call site: 00123
2 4 EhFrameHdr::new call site: 00004
2 108 Reader::read_u8 call site: 00108
2 131 AddrHeader::parse call site: 00131
2 134 AddrHeader::parse call site: 00134 Reader::read_u8
1 0 EP call site: 00000
1 2 EhFrameHdr::new call site: 00002

Runtime coverage analysis

Covered functions
58
Functions that are reachable but not covered
2
Reachable functions
10
Percentage of reachable functions covered
80.0%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/eh_frame_hdr.rs 8
src/write/op.rs 4
src/common.rs 1
src/read/cfi.rs 1
src/read/addr.rs 13
src/read/reader.rs 10
src/endianity.rs 14
src/read/endian_reader.rs 18
src/leb128.rs 3
src/write/abbrev.rs 1
src/write/endian_vec.rs 1
src/read/loclists.rs 3
src/read/util.rs 14
src/write/unit.rs 1

Fuzzer: debug_aranges

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 34 85.0%
gold [1:9] 0 0.0%
yellow [10:29] 0 0.0%
greenyellow [30:49] 0 0.0%
lawngreen 50+ 6 15.0%
All colors 40 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
25 4 DebugAddr::headers call site: 00004 ArrayVec::try_push
4 35 AddrHeaderIter::next call site: 00035 ArrayVec::clone
3 31 DebugAddr::headers call site: 00031
1 0 EP call site: 00000
1 2 DebugAranges::new call site: 00002

Runtime coverage analysis

Covered functions
50
Functions that are reachable but not covered
1
Reachable functions
7
Percentage of reachable functions covered
85.71%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/debug_aranges.rs 6
src/write/op.rs 3
src/read/addr.rs 5
src/read/util.rs 14
src/write/endian_vec.rs 1
src/write/unit.rs 1
src/read/reader.rs 1
src/common.rs 1

Fuzzer: debug_info

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 176 67.9%
gold [1:9] 0 0.0%
yellow [10:29] 0 0.0%
greenyellow [30:49] 0 0.0%
lawngreen 50+ 83 32.0%
All colors 259 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
25 9 DebugInfo::units call site: 00009 ArrayVec::try_push
23 45 Reader::read_u8 call site: 00045 SubRange::read_slice
23 139 Reader::read_sleb128 call site: 00139 Abbreviations::insert
19 97 Reader::read_uleb128_u16 call site: 00097 Abbreviation::parse_has_children
13 83 Reader::read_uleb128 call site: 00083 Reader::read_u8
13 125 AttributeSpecification::new call site: 00125 AttributeSpecification::parse
8 0 EP call site: 00000
7 75 Abbreviations::empty call site: 00075 Abbreviation::parse
7 173 Abbreviations::insert call site: 00173 ArrayVec::try_push
6 195 Abbreviations::insert call site: 00195 EntriesCursor::next_dfs
5 36 DebugInfo::units call site: 00036 DebugAbbrev::abbreviations
5 118 Reader::read_u8 call site: 00118 Abbreviation::parse_attributes

Runtime coverage analysis

Covered functions
132
Functions that are reachable but not covered
1
Reachable functions
12
Percentage of reachable functions covered
91.67%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/debug_info.rs 10
src/write/op.rs 7
src/common.rs 3
src/read/unit.rs 21
src/read/util.rs 14
src/write/endian_vec.rs 1
src/write/unit.rs 4
src/read/reader.rs 6
src/read/addr.rs 28
src/read/abbrev.rs 18
src/leb128.rs 6
src/read/endian_reader.rs 14
src/write/abbrev.rs 1
src/read/loclists.rs 3
src/write/line.rs 3
src/endianity.rs 5
src/read/op.rs 3

Fuzzer: debug_line

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 1013 86.0%
gold [1:9] 1 0.08%
yellow [10:29] 0 0.0%
greenyellow [30:49] 0 0.0%
lawngreen 50+ 163 13.8%
All colors 1177 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
409 370 Reader::read_null_terminated_slice call site: 00370 Writer::write_eh_pointer_data
174 195 Reader::read_sleb128 call site: 00195 Unit::new_with_abbreviations
98 888 Reader::read_address call site: 00888 Expression::write
85 16 Dwarf::new call site: 00016 DebugAbbrev::abbreviations
33 1130 LineRow::apply_line_advance call site: 01130 PubStuffParser::parse_header
25 845 Reader::read_word call site: 00845 tests::test_line_program
23 102 Reader::read_u8 call site: 00102 SubRange::read_slice
20 174 Reader::read_u8 call site: 00174 Abbreviation::parse_attributes
19 153 Reader::read_uleb128_u16 call site: 00153 Abbreviation::parse_has_children
19 802 Reader::read_null_terminated_slice call site: 00802 Reader::read_offset
15 0 EP call site: 00000 tests::test_line_program
14 138 Reader::read_uleb128 call site: 00138 Reader::read_u8

Runtime coverage analysis

Covered functions
90
Functions that are reachable but not covered
2
Reachable functions
8
Percentage of reachable functions covered
75.0%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/debug_line.rs 6
src/write/op.rs 34
src/common.rs 4
src/write/line.rs 47
src/write/unit.rs 4
src/read/util.rs 14
src/write/endian_vec.rs 6
src/read/cfi.rs 1
src/read/abbrev.rs 18
src/leb128.rs 12
src/read/reader.rs 26
src/read/endian_reader.rs 22
src/write/abbrev.rs 1
src/read/loclists.rs 3
src/read/addr.rs 61
src/endianity.rs 27
src/read/op.rs 3
src/read/dwarf.rs 35
src/read/str.rs 15
src/constants.rs 4
src/read/lists.rs 1
src/read/unit.rs 22
src/write/relocate.rs 26
src/write/writer.rs 25
crates/examples/src/bin/simple_write.rs 1
src/write/section.rs 1
src/read/line.rs 21
src/read/lookup.rs 10

Fuzzer: eh_frame

Call tree

The calltree shows the control flow of the fuzzer. This is overlaid with coverage information to display how much of the potential code a fuzzer can reach is in fact covered at runtime. In the following there is a link to a detailed calltree visualisation as well as a bitmap showing a high-level view of the calltree. For further information about these topics please see the glossary for full calltree and calltree overview

Call tree overview bitmap:

The distribution of callsites in terms of coloring is
Color Runtime hitcount Callsite count Percentage
red 0 752 90.7%
gold [1:9] 0 0.0%
yellow [10:29] 0 0.0%
greenyellow [30:49] 0 0.0%
lawngreen 50+ 77 9.28%
All colors 829 100

Fuzz blockers

The following nodes represent call sites where fuzz blockers occur.

Amount of callsites blocked Calltree index Parent function Callsite Largest blocked function
202 448 constants::DwEhPe::format call site: 00448 Writer::write_udata
134 256 ArrayVec::try_push call site: 00256 Writer::write_udata
67 736 Reader::read_u8 call site: 00736 LineRow::execute
56 391 constants::DwEhPe::application call site: 00391 Writer::write_eh_pointer_data
42 146 Reader::read_u8 call site: 00146 LineInstructions::next_instruction
23 62 Reader::read_u32 call site: 00062 SubRange::read_slice
23 805 u64::wrapping_add_sized call site: 00805 PubStuffParser::parse_header
19 192 Reader::read_uleb128 call site: 00192 Reader::read_address
19 232 Reader::read_null_terminated_slice call site: 00232 Writer::write_udata
18 716 Endianity::read_u16 call site: 00716 read::skip
17 694 Reader::read_sleb128 call site: 00694 Reader::read_u8
14 31 ArrayVec::try_push call site: 00031 ArrayVec::try_push

Runtime coverage analysis

Covered functions
165
Functions that are reachable but not covered
3
Reachable functions
17
Percentage of reachable functions covered
82.35%
NB: The sum of covered functions and functions that are reachable but not covered need not be equal to Reachable functions . This is because the reachability analysis is an approximation and thus at runtime some functions may be covered that are not included in the reachability analysis. This is a limitation of our static analysis capabilities.
Warning: The number of covered functions are larger than the number of reachable functions. This means that there are more functions covered at runtime than are extracted using static analysis. This is likely a result of the static analysis component failing to extract the right call graph or the coverage runtime being compiled with sanitizers in code that the static analysis has not analysed. This can happen if lto/gold is not used in all places that coverage instrumentation is used.
Function name source code lines source lines hit percentage hit

Files reached

filename functions hit
fuzz/fuzz_targets/eh_frame.rs 14
src/write/op.rs 15
src/common.rs 3
src/read/op.rs 7
src/read/util.rs 14
src/write/endian_vec.rs 6
src/write/unit.rs 2
src/read/cfi.rs 2
src/read/addr.rs 43
src/read/reader.rs 25
src/endianity.rs 23
src/read/endian_reader.rs 22
src/leb128.rs 12
src/write/abbrev.rs 1
src/read/loclists.rs 3
src/read/line.rs 21
src/read/lookup.rs 10
src/read/unit.rs 2
src/write/line.rs 6
src/write/relocate.rs 24
src/write/writer.rs 25
crates/examples/src/bin/simple_write.rs 1
src/constants.rs 1

Fuzz engine guidance

This sections provides heuristics that can be used as input to a fuzz engine when running a given fuzz target. The current focus is on providing input that is usable by libFuzzer.

fuzz/fuzz_targets/debug_abbrev.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['DebugAbbrev::abbreviations', 'Reader::read_u8', 'Reader::read_sleb128', 'Reader::read_uleb128_u16', 'Reader::read_uleb128', 'AttributeSpecification::new', 'Abbreviations::empty', 'Abbreviations::insert']

fuzz/fuzz_targets/eh_frame_hdr.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['AddrHeader::parse', 'Reader::read_u32', 'Endianity::read_u32', 'Endianity::read_u64', 'Endianity::read_u16', 'Reader::read_u8', 'EhFrameHdr::new']

fuzz/fuzz_targets/debug_aranges.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['DebugAddr::headers', 'AddrHeaderIter::next', 'DebugAranges::new']

fuzz/fuzz_targets/debug_info.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['DebugInfo::units', 'Reader::read_u8', 'Reader::read_sleb128', 'Reader::read_uleb128_u16', 'Reader::read_uleb128', 'AttributeSpecification::new', 'Abbreviations::empty', 'Abbreviations::insert']

fuzz/fuzz_targets/debug_line.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['Reader::read_null_terminated_slice', 'Reader::read_sleb128', 'Reader::read_address', 'Dwarf::new', 'LineRow::apply_line_advance', 'Reader::read_word', 'Reader::read_u8', 'Reader::read_uleb128_u16']

fuzz/fuzz_targets/eh_frame.rs

Dictionary

Use this with the libFuzzer -dict=DICT.file flag


Fuzzer function priority

Use one of these functions as input to libfuzzer with flag: -focus_function name

-focus_function=['constants::DwEhPe::format', 'ArrayVec::try_push', 'Reader::read_u8', 'constants::DwEhPe::application', 'Reader::read_u32', 'u64::wrapping_add_sized', 'Reader::read_uleb128', 'Reader::read_null_terminated_slice', 'Endianity::read_u16']

Files and Directories in report

This section shows which files and directories are considered in this report. The main reason for showing this is fuzz introspector may include more code in the reasoning than is desired. This section helps identify if too many files/directories are included, e.g. third party code, which may be irrelevant for the threat model. In the event too much is included, fuzz introspector supports a configuration file that can exclude data from the report. See the following link for more information on how to create a config file: link

Files in report

Source file Reached by Covered by
/src/gimli/src/write/endian_vec.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/fuzz/fuzz_targets/eh_frame_hdr.rs ['eh_frame_hdr'] []
/src/gimli/src/read/rnglists.rs [] []
/src/gimli/src/write/op.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/dwarf.rs ['debug_line'] ['debug_line']
/src/gimli/src/read/unit.rs ['debug_info', 'debug_line', 'eh_frame'] ['debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/test_util.rs [] []
/src/gimli/src/read/op.rs ['debug_abbrev', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/write/loc.rs [] []
/src/gimli/crates/examples/src/bin/simple.rs [] []
/src/gimli/crates/examples/src/bin/simple_convert.rs [] []
/src/gimli/crates/examples/src/bin/convert.rs [] []
/src/gimli/src/write/cfi.rs [] []
/src/gimli/tests/parse_self.rs [] []
/src/gimli/src/read/abbrev.rs ['debug_abbrev', 'debug_info', 'debug_line'] ['debug_abbrev', 'debug_info', 'debug_line']
/src/gimli/src/endianity.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame'] ['eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/fuzz/fuzz_targets/debug_aranges.rs ['debug_aranges'] []
/src/gimli/src/read/addr.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/macros.rs [] []
/src/gimli/src/read/endian_reader.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/fuzz/fuzz_targets/eh_frame.rs ['eh_frame'] []
/src/gimli/src/write/line.rs ['debug_abbrev', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/arch.rs [] []
/src/gimli/src/write/relocate.rs ['debug_line', 'eh_frame'] ['debug_line', 'eh_frame']
/src/gimli/crates/examples/src/bin/dwarfdump.rs [] []
/src/gimli/src/read/reader.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/benches/bench.rs [] []
/src/gimli/src/read/endian_slice.rs [] []
/src/gimli/src/leb128.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/write/dwarf.rs [] []
/src/gimli/src/write/unit.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/pubtypes.rs [] []
/src/gimli/src/read/lookup.rs ['debug_line', 'eh_frame'] ['debug_line', 'eh_frame']
/src/gimli/src/read/loclists.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/value.rs [] []
/src/gimli/src/constants.rs ['debug_line', 'eh_frame'] ['eh_frame']
/src/gimli/src/write/range.rs [] []
/src/gimli/src/read/pubnames.rs [] []
/src/gimli/src/common.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/aranges.rs [] []
/src/gimli/tests/convert_self.rs [] []
/src/gimli/crates/examples/src/bin/dwarf-validate.rs [] []
/src/gimli/src/read/lists.rs ['debug_line'] ['debug_line']
/src/gimli/fuzz/fuzz_targets/debug_abbrev.rs ['debug_abbrev'] []
/src/gimli/fuzz/fuzz_targets/debug_line.rs ['debug_line'] []
/src/gimli/src/write/section.rs ['debug_line'] ['debug_line']
/src/gimli/src/read/relocate.rs [] []
/src/gimli/src/read/index.rs [] []
/src/gimli/crates/examples/src/bin/simple_write.rs ['debug_line', 'eh_frame'] ['debug_line', 'eh_frame']
/src/gimli/src/write/str.rs [] []
/src/gimli/src/write/mod.rs [] []
/src/gimli/src/read/str.rs ['debug_line'] ['debug_line']
/src/gimli/src/write/abbrev.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_info', 'debug_line', 'eh_frame'] []
/src/gimli/src/read/line.rs ['debug_line', 'eh_frame'] ['debug_line', 'eh_frame']
/src/gimli/src/write/writer.rs ['debug_line', 'eh_frame'] []
/src/gimli/src/read/util.rs ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame'] ['debug_abbrev', 'eh_frame_hdr', 'debug_aranges', 'debug_info', 'debug_line', 'eh_frame']
/src/gimli/src/read/cfi.rs ['eh_frame_hdr', 'debug_line', 'eh_frame'] ['eh_frame_hdr', 'debug_line', 'eh_frame']
/src/gimli/src/read/mod.rs [] []
/src/gimli/fuzz/fuzz_targets/debug_info.rs ['debug_info'] []

Directories in report

Directory
/src/gimli/src/read/
/src/gimli/src/write/
/src/gimli/src/
/src/gimli/benches/
/src/gimli/tests/
/src/gimli/crates/examples/src/bin/
/src/gimli/fuzz/fuzz_targets/