317 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
			
		
		
	
	
			317 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
#!/bin/bash -u
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# Copyright 2018 Google Inc.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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#      http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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################################################################################
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cd $OUT
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if (( $# > 0 )); then
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  FUZZ_TARGETS="$@"
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else
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  FUZZ_TARGETS="$(find . -maxdepth 1 -type f -executable -printf '%P\n' | \
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      grep -v -x -F \
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      -e 'llvm-symbolizer' \
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      -e 'jazzer_agent_deploy.jar' \
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      -e 'jazzer_driver' \
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      -e 'jazzer_driver_with_sanitizer')"
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fi
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COVERAGE_OUTPUT_DIR=${COVERAGE_OUTPUT_DIR:-$OUT}
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DUMPS_DIR="$COVERAGE_OUTPUT_DIR/dumps"
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FUZZER_STATS_DIR="$COVERAGE_OUTPUT_DIR/fuzzer_stats"
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LOGS_DIR="$COVERAGE_OUTPUT_DIR/logs"
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REPORT_ROOT_DIR="$COVERAGE_OUTPUT_DIR/report"
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REPORT_PLATFORM_DIR="$COVERAGE_OUTPUT_DIR/report/linux"
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for directory in $DUMPS_DIR $FUZZER_STATS_DIR $LOGS_DIR $REPORT_ROOT_DIR \
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                 $REPORT_PLATFORM_DIR; do
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  rm -rf $directory
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  mkdir -p $directory
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done
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PROFILE_FILE="$DUMPS_DIR/merged.profdata"
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SUMMARY_FILE="$REPORT_PLATFORM_DIR/summary.json"
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# Use path mapping, as $SRC directory from the builder is copied into $OUT/$SRC.
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PATH_EQUIVALENCE_ARGS="-path-equivalence=/,$OUT"
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# It's important to use $COVERAGE_EXTRA_ARGS as the last argument, because it
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# can contain paths to source files / directories which are positional args.
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LLVM_COV_COMMON_ARGS="$PATH_EQUIVALENCE_ARGS \
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    -ignore-filename-regex=.*src/libfuzzer/.* $COVERAGE_EXTRA_ARGS"
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# Timeout for running a single fuzz target.
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TIMEOUT=1h
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# This will be used by llvm-cov command to generate the actual report.
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objects=""
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# Number of CPUs available, this is needed for running tests in parallel.
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NPROC=$(nproc)
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CORPUS_DIR=${CORPUS_DIR:-"/corpus"}
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function run_fuzz_target {
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  local target=$1
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  # '%1m' will produce separate dump files for every object. For example, if a
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  # fuzz target loads a shared library, we will have dumps for both of them.
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  local profraw_file="$DUMPS_DIR/$target.%1m.profraw"
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  local profraw_file_mask="$DUMPS_DIR/$target.*.profraw"
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  local profdata_file="$DUMPS_DIR/$target.profdata"
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  local corpus_real="$CORPUS_DIR/${target}"
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  # -merge=1 requires an output directory, create a new, empty dir for that.
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  local corpus_dummy="$OUT/dummy_corpus_dir_for_${target}"
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  rm -rf $corpus_dummy && mkdir -p $corpus_dummy
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  # Use -merge=1 instead of -runs=0 because merge is crash resistant and would
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  # let to get coverage using all corpus files even if there are crash inputs.
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  # Merge should not introduce any significant overhead compared to -runs=0,
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  # because (A) corpuses are already minimized; (B) we do not use sancov, and so
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  # libFuzzer always finishes merge with an empty output dir.
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  # Use 100s timeout instead of 25s as code coverage builds can be very slow.
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  local args="-merge=1 -timeout=100 $corpus_dummy $corpus_real"
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  export LLVM_PROFILE_FILE=$profraw_file
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  timeout $TIMEOUT $OUT/$target $args &> $LOGS_DIR/$target.log
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  if (( $? != 0 )); then
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    echo "Error occured while running $target:"
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    cat $LOGS_DIR/$target.log
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  fi
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  rm -rf $corpus_dummy
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  if (( $(du -c $profraw_file_mask | tail -n 1 | cut -f 1) == 0 )); then
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    # Skip fuzz targets that failed to produce profile dumps.
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    return 0
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  fi
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  # If necessary translate to latest profraw version.
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  profraw_update.py $OUT/$target $profraw_file_mask tmp.profraw
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  mv tmp.profraw $profraw_file_mask
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  llvm-profdata merge -j=1 -sparse $profraw_file_mask -o $profdata_file
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  # Delete unnecessary and (potentially) large .profraw files.
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  rm $profraw_file_mask
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  shared_libraries=$(coverage_helper shared_libs -build-dir=$OUT -object=$target)
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  llvm-cov export -summary-only -instr-profile=$profdata_file -object=$target \
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      $shared_libraries $LLVM_COV_COMMON_ARGS > $FUZZER_STATS_DIR/$target.json
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  if [ -n "${FULL_SUMMARY_PER_TARGET-}" ]; then
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    # This is needed for dataflow strategy analysis, can be removed later. See
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    # - https://github.com/google/oss-fuzz/pull/3306
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    # - https://github.com/google/oss-fuzz/issues/1632
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    # Intentionally writing these to the logs dir in order to hide the dumps
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    # from the ClusterFuzz cron job.
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    llvm-cov export -instr-profile=$profdata_file -object=$target \
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      $shared_libraries $LLVM_COV_COMMON_ARGS > $LOGS_DIR/$target.json
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  fi
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}
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function run_go_fuzz_target {
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  local target=$1
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  echo "Running go target $target"
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  export FUZZ_CORPUS_DIR="$CORPUS_DIR/${target}/"
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  export FUZZ_PROFILE_NAME="$DUMPS_DIR/$target.perf"
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  $OUT/$target -test.coverprofile $DUMPS_DIR/$target.profdata &> $LOGS_DIR/$target.log
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  # translate from golangish paths to current absolute paths
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  cat $OUT/$target.gocovpath | while read i; do sed -i $i $DUMPS_DIR/$target.profdata; done
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  # cf PATH_EQUIVALENCE_ARGS
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  sed -i 's=/='$OUT'/=' $DUMPS_DIR/$target.profdata
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  $SYSGOPATH/bin/gocovsum $DUMPS_DIR/$target.profdata > $FUZZER_STATS_DIR/$target.json
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}
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function run_java_fuzz_target {
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  local target=$1
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  local exec_file="$DUMPS_DIR/$target.exec"
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  local class_dump_dir="$DUMPS_DIR/${target}_classes/"
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  mkdir "$class_dump_dir"
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  local corpus_real="$CORPUS_DIR/${target}"
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  # -merge=1 requires an output directory, create a new, empty dir for that.
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  local corpus_dummy="$OUT/dummy_corpus_dir_for_${target}"
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  rm -rf $corpus_dummy && mkdir -p $corpus_dummy
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  # Use 100s timeout instead of 25s as code coverage builds can be very slow.
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  local jacoco_args="destfile=$exec_file,classdumpdir=$class_dump_dir,excludes=com.code_intelligence.jazzer.*"
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  local args="-merge=1 -timeout=100 --nohooks \
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      --additional_jvm_args=-javaagent:/opt/jacoco-agent.jar=$jacoco_args \
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      $corpus_dummy $corpus_real"
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  timeout $TIMEOUT $OUT/$target $args &> $LOGS_DIR/$target.log
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  if (( $? != 0 )); then
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    echo "Error occured while running $target:"
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    cat $LOGS_DIR/$target.log
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  fi
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  if (( $(du -c $exec_file | tail -n 1 | cut -f 1) == 0 )); then
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    # Skip fuzz targets that failed to produce .exec files.
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    return 0
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  fi
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  # Generate XML report only as input to jacoco_report_converter.
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  # Source files are not needed for the summary.
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  local xml_report="$DUMPS_DIR/${target}.xml"
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  local summary_file="$FUZZER_STATS_DIR/$target.json"
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  java -jar /opt/jacoco-cli.jar report $exec_file \
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      --xml $xml_report \
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      --classfiles $class_dump_dir
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  # Write llvm-cov summary file.
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  jacoco_report_converter.py $xml_report $summary_file
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}
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export SYSGOPATH=$GOPATH
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export GOPATH=$OUT/$GOPATH
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# Run each fuzz target, generate raw coverage dumps.
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for fuzz_target in $FUZZ_TARGETS; do
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  # Test if fuzz target is a golang one.
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  if [[ $FUZZING_LANGUAGE == "go" ]]; then
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    # Continue if not a fuzz target.
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    if [[ $FUZZING_ENGINE != "none" ]]; then
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      grep "FUZZ_CORPUS_DIR" $fuzz_target > /dev/null 2>&1 || continue
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    fi
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    run_go_fuzz_target $fuzz_target &
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  elif [[ $FUZZING_LANGUAGE == "jvm" ]]; then
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    # Continue if not a fuzz target.
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    if [[ $FUZZING_ENGINE != "none" ]]; then
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      grep "LLVMFuzzerTestOneInput" $fuzz_target > /dev/null 2>&1 || continue
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    fi
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    echo "Running $fuzz_target"
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    run_java_fuzz_target $fuzz_target &
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  else
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    # Continue if not a fuzz target.
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    if [[ $FUZZING_ENGINE != "none" ]]; then
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      grep "LLVMFuzzerTestOneInput" $fuzz_target > /dev/null 2>&1 || continue
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    fi
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    echo "Running $fuzz_target"
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    run_fuzz_target $fuzz_target &
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    if [[ -z $objects ]]; then
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      # The first object needs to be passed without -object= flag.
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      objects="$fuzz_target"
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    else
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      objects="$objects -object=$fuzz_target"
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    fi
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  fi
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  # Do not spawn more processes than the number of CPUs available.
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  n_child_proc=$(jobs -rp | wc -l)
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  while [ "$n_child_proc" -eq "$NPROC" ]; do
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    sleep 4
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    n_child_proc=$(jobs -rp | wc -l)
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  done
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done
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# Wait for background processes to finish.
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wait
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if [[ $FUZZING_LANGUAGE == "go" ]]; then
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  $SYSGOPATH/bin/gocovmerge $DUMPS_DIR/*.profdata > fuzz.cov
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  go tool cover -html=fuzz.cov -o $REPORT_ROOT_DIR/index.html
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  $SYSGOPATH/bin/gocovsum fuzz.cov > $SUMMARY_FILE
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  cp $REPORT_ROOT_DIR/index.html $REPORT_PLATFORM_DIR/index.html
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  $SYSGOPATH/bin/pprof-merge $DUMPS_DIR/*.perf.cpu.prof
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  mv merged.data $REPORT_ROOT_DIR/cpu.prof
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  $SYSGOPATH/bin/pprof-merge $DUMPS_DIR/*.perf.heap.prof
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  mv merged.data $REPORT_ROOT_DIR/heap.prof
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  #TODO some proxy for go tool pprof -http=127.0.0.1:8001 $DUMPS_DIR/cpu.prof
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  echo "Finished generating code coverage report for Go fuzz targets."
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elif [[ $FUZZING_LANGUAGE == "jvm" ]]; then
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  # From this point on the script does not tolerate any errors.
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  set -e
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  # Merge .exec files from the individual targets.
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  jacoco_merged_exec=$DUMPS_DIR/jacoco.merged.exec
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  java -jar /opt/jacoco-cli.jar merge $DUMPS_DIR/*.exec \
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      --destfile $jacoco_merged_exec
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  # Merge .class files from the individual targets.
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  classes_dir=$DUMPS_DIR/classes
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  mkdir $classes_dir
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  for fuzz_target in $FUZZ_TARGETS; do
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    cp -r $DUMPS_DIR/${fuzz_target}_classes/* $classes_dir/
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  done
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  # Heuristically determine source directories based on Maven structure.
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  # Always include the $SRC root as it likely contains the fuzzer sources.
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  sourcefiles_args=(--sourcefiles $OUT/$SRC)
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  source_dirs=$(find $OUT/$SRC -type d -name 'java')
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  for source_dir in $source_dirs; do
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    sourcefiles_args+=(--sourcefiles "$source_dir")
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  done
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  # Generate HTML and XML reports.
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  xml_report=$REPORT_PLATFORM_DIR/index.xml
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  java -jar /opt/jacoco-cli.jar report $jacoco_merged_exec \
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      --html $REPORT_PLATFORM_DIR \
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      --xml $xml_report \
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      --classfiles $classes_dir \
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      "${sourcefiles_args[@]}"
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  # Write llvm-cov summary file.
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  jacoco_report_converter.py $xml_report $SUMMARY_FILE
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  set +e
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else
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  # From this point on the script does not tolerate any errors.
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  set -e
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  # Merge all dumps from the individual targets.
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  rm -f $PROFILE_FILE
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  llvm-profdata merge -sparse $DUMPS_DIR/*.profdata -o $PROFILE_FILE
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  # TODO(mmoroz): add script from Chromium for rendering directory view reports.
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  # The first path in $objects does not have -object= prefix (llvm-cov format).
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  shared_libraries=$(coverage_helper shared_libs -build-dir=$OUT -object=$objects)
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  objects="$objects $shared_libraries"
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  # It's important to use $LLVM_COV_COMMON_ARGS as the last argument due to
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  # positional arguments (SOURCES) that can be passed via $COVERAGE_EXTRA_ARGS.
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  LLVM_COV_ARGS="-instr-profile=$PROFILE_FILE $objects $LLVM_COV_COMMON_ARGS"
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  # Generate HTML report.
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  llvm-cov show -format=html -output-dir=$REPORT_ROOT_DIR \
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      -Xdemangler rcfilt $LLVM_COV_ARGS
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  # Export coverage summary in JSON format.
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  llvm-cov export -summary-only $LLVM_COV_ARGS > $SUMMARY_FILE
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  # Post process HTML report.
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  coverage_helper -v post_process -src-root-dir=/ -summary-file=$SUMMARY_FILE \
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      -output-dir=$REPORT_ROOT_DIR $PATH_EQUIVALENCE_ARGS
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fi
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# Make sure report is readable.
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chmod -R +r $REPORT_ROOT_DIR
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find $REPORT_ROOT_DIR -type d -exec chmod +x {} +
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if [[ -n $HTTP_PORT ]]; then
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  # Serve the report locally.
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  echo "Serving the report on http://127.0.0.1:$HTTP_PORT/linux/index.html"
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  cd $REPORT_ROOT_DIR
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  python3 -m http.server $HTTP_PORT
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fi
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