452 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
			
		
		
	
	
			452 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Bash
		
	
	
		
			Executable File
		
	
	
| #!/bin/bash -u
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| # Copyright 2017 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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| 
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| # A minimal number of runs to test fuzz target with a non-empty input.
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| MIN_NUMBER_OF_RUNS=4
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| 
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| # The "example" target has 73 with ASan, 65 with UBSan, and 6648 with MSan.
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| # Real world targets have greater values (arduinojson: 407, zlib: 664).
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| # Mercurial's bdiff_fuzzer has 116 PCs when built with ASan.
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| THRESHOLD_FOR_NUMBER_OF_EDGES=100
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| 
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| # A fuzz target is supposed to have at least two functions, such as
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| # LLVMFuzzerTestOneInput and an API that is being called from there.
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| THRESHOLD_FOR_NUMBER_OF_FUNCTIONS=2
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| 
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| # Threshold values for different sanitizers used by instrumentation checks.
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| ASAN_CALLS_THRESHOLD_FOR_ASAN_BUILD=1000
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| ASAN_CALLS_THRESHOLD_FOR_NON_ASAN_BUILD=0
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| 
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| # The value below can definitely be higher (like 500-1000), but avoid being too
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| # agressive here while still evaluating the DFT-based fuzzing approach.
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| DFSAN_CALLS_THRESHOLD_FOR_DFSAN_BUILD=100
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| DFSAN_CALLS_THRESHOLD_FOR_NON_DFSAN_BUILD=0
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| 
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| MSAN_CALLS_THRESHOLD_FOR_MSAN_BUILD=1000
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| # Some engines (e.g. honggfuzz) may make a very small number of calls to msan
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| # for memory poisoning.
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| MSAN_CALLS_THRESHOLD_FOR_NON_MSAN_BUILD=3
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| 
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| # Usually, a non UBSan build (e.g. ASan) has 165 calls to UBSan runtime. The
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| # majority of targets built with UBSan have 200+ UBSan calls, but there are
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| # some very small targets that may have < 200 UBSan calls even in a UBSan build.
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| # Use the threshold value of 169 (slightly > 165) for UBSan build.
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| UBSAN_CALLS_THRESHOLD_FOR_UBSAN_BUILD=169
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| 
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| # It would be risky to use the threshold value close to 165 for non UBSan build,
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| # as UBSan runtime may change any time and thus we could have different number
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| # of calls to UBSan runtime even in ASan build. With that, we use the threshold
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| # value of 200 that would detect unnecessary UBSan instrumentation in the vast
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| # majority of targets, except of a handful very small ones, which would not be
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| # a big concern either way as the overhead for them would not be significant.
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| UBSAN_CALLS_THRESHOLD_FOR_NON_UBSAN_BUILD=200
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| 
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| # ASan builds on i386 generally have about 250 UBSan runtime calls.
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| if [[ $ARCHITECTURE == 'i386' ]]
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| then
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|   UBSAN_CALLS_THRESHOLD_FOR_NON_UBSAN_BUILD=280
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| fi
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| 
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| 
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| # Verify that the given fuzz target is correctly built to run with a particular
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| # engine.
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| function check_engine {
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|   local FUZZER=$1
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|   local FUZZER_NAME=$(basename $FUZZER)
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|   local FUZZER_OUTPUT="/tmp/$FUZZER_NAME.output"
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|   local CHECK_FAILED=0
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| 
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|   if [[ "$FUZZING_ENGINE" == libfuzzer ]]; then
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|     # Store fuzz target's output into a temp file to be used for further checks.
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|     $FUZZER -seed=1337 -runs=$MIN_NUMBER_OF_RUNS &>$FUZZER_OUTPUT
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|     CHECK_FAILED=$(egrep "ERROR: no interesting inputs were found. Is the code instrumented" -c $FUZZER_OUTPUT)
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|     if (( $CHECK_FAILED > 0 )); then
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|       echo "BAD BUILD: $FUZZER does not seem to have coverage instrumentation."
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|       cat $FUZZER_OUTPUT
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|       # Bail out as the further check does not make any sense, there are 0 PCs.
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|       return 1
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|     fi
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| 
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|     local NUMBER_OF_EDGES=$(grep -Po "INFO: Loaded [[:digit:]]+ module.*\(.*(counters|guards)\):[[:space:]]+\K[[:digit:]]+" $FUZZER_OUTPUT)
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| 
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|     # If a fuzz target fails to start, grep won't find anything, so bail out early to let check_startup_crash deal with it.
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|     [[ -z "$NUMBER_OF_EDGES" ]] && return
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| 
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|     if (( $NUMBER_OF_EDGES < $THRESHOLD_FOR_NUMBER_OF_EDGES )); then
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|       echo "BAD BUILD: $FUZZER seems to have only partial coverage instrumentation."
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|     fi
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|   elif [[ "$FUZZING_ENGINE" == afl ]]; then
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|     AFL_FORKSRV_INIT_TMOUT=30000 AFL_NO_UI=1 SKIP_SEED_CORPUS=1 timeout --preserve-status -s INT 35s run_fuzzer $FUZZER_NAME &>$FUZZER_OUTPUT
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|     CHECK_PASSED=$(egrep "All set and ready to roll" -c $FUZZER_OUTPUT)
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|     if (( $CHECK_PASSED == 0 )); then
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|       echo "BAD BUILD: fuzzing $FUZZER with afl-fuzz failed."
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|       cat $FUZZER_OUTPUT
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|       return 1
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|     fi
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|   elif [[ "$FUZZING_ENGINE" == honggfuzz ]]; then
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|     SKIP_SEED_CORPUS=1 timeout --preserve-status -s INT 20s run_fuzzer $FUZZER_NAME &>$FUZZER_OUTPUT
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|     CHECK_PASSED=$(egrep "^Sz:[0-9]+ Tm:[0-9]+" -c $FUZZER_OUTPUT)
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|     if (( $CHECK_PASSED == 0 )); then
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|       echo "BAD BUILD: fuzzing $FUZZER with honggfuzz failed."
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|       cat $FUZZER_OUTPUT
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|       return 1
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|     fi
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|   elif [[ "$FUZZING_ENGINE" == dataflow ]]; then
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|     $FUZZER &> $FUZZER_OUTPUT
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|     local NUMBER_OF_FUNCTIONS=$(grep -Po "INFO:\s+\K[[:digit:]]+(?=\s+instrumented function.*)" $FUZZER_OUTPUT)
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|     [[ -z "$NUMBER_OF_FUNCTIONS" ]] && NUMBER_OF_FUNCTIONS=0
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|     if (( $NUMBER_OF_FUNCTIONS < $THRESHOLD_FOR_NUMBER_OF_FUNCTIONS )); then
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|       echo "BAD BUILD: $FUZZER does not seem to be properly built in 'dataflow' config."
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|       cat $FUZZER_OUTPUT
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|       return 1
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|     fi
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|     return 0
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|   fi
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| 
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|   # TODO: add checks for other fuzzing engines if possible.
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|   return 0
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| }
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| 
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| # Verify that the given fuzz target has been built properly and works.
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| function check_startup_crash {
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|   local FUZZER=$1
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|   local FUZZER_NAME=$(basename $FUZZER)
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|   local FUZZER_OUTPUT="/tmp/$FUZZER_NAME.output"
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|   local CHECK_PASSED=0
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| 
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|   if [[ "$FUZZING_ENGINE" = libfuzzer ]]; then
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|     # Skip seed corpus as there is another explicit check that uses seed corpora.
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|     SKIP_SEED_CORPUS=1 run_fuzzer $FUZZER_NAME -seed=1337 -runs=$MIN_NUMBER_OF_RUNS &>$FUZZER_OUTPUT
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|     CHECK_PASSED=$(egrep "Done $MIN_NUMBER_OF_RUNS runs" -c $FUZZER_OUTPUT)
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|   elif [[ "$FUZZING_ENGINE" = afl ]]; then
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|     AFL_FORKSRV_INIT_TMOUT=30000 AFL_NO_UI=1 SKIP_SEED_CORPUS=1 timeout --preserve-status -s INT 35s run_fuzzer $FUZZER_NAME &>$FUZZER_OUTPUT
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|     if [ $(egrep "target binary (crashed|terminated)" -c $FUZZER_OUTPUT) -eq 0 ]; then
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|       CHECK_PASSED=1
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|     fi
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|   elif [[ "$FUZZING_ENGINE" = dataflow ]]; then
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|     # TODO(https://github.com/google/oss-fuzz/issues/1632): add check for
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|     # binaries compiled with dataflow engine when the interface becomes stable.
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|     CHECK_PASSED=1
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|   else
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|     # TODO: add checks for another fuzzing engines if possible.
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|     CHECK_PASSED=1
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|   fi
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| 
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|   if [ "$CHECK_PASSED" -eq "0" ]; then
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|     echo "BAD BUILD: $FUZZER seems to have either startup crash or exit:"
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|     cat $FUZZER_OUTPUT
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|     return 1
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|   fi
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| 
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|   return 0
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| }
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| 
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| # Mixed sanitizers check for ASan build.
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| function check_asan_build {
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|   local FUZZER=$1
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|   local ASAN_CALLS=$2
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|   local DFSAN_CALLS=$3
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|   local MSAN_CALLS=$4
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|   local UBSAN_CALLS=$5
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| 
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|   # Perform all the checks for more detailed error message.
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|   if (( $ASAN_CALLS < $ASAN_CALLS_THRESHOLD_FOR_ASAN_BUILD )); then
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|     echo "BAD BUILD: $FUZZER does not seem to be compiled with ASan."
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|     return 1
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|   fi
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| 
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|   if (( $DFSAN_CALLS > $DFSAN_CALLS_THRESHOLD_FOR_NON_DFSAN_BUILD )); then
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|     echo "BAD BUILD: ASan build of $FUZZER seems to be compiled with DFSan."
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|     return 1
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|   fi
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| 
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|   if (( $MSAN_CALLS > $MSAN_CALLS_THRESHOLD_FOR_NON_MSAN_BUILD )); then
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|     echo "BAD BUILD: ASan build of $FUZZER seems to be compiled with MSan."
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|     return 1
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|   fi
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| 
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|   if (( $UBSAN_CALLS > $UBSAN_CALLS_THRESHOLD_FOR_NON_UBSAN_BUILD )); then
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|     echo "BAD BUILD: ASan build of $FUZZER seems to be compiled with UBSan."
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|     return 1
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|   fi
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| 
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|   return 0
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| }
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| 
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| # Mixed sanitizers check for DFSan build.
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| function check_dfsan_build {
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|   local FUZZER=$1
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|   local ASAN_CALLS=$2
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|   local DFSAN_CALLS=$3
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|   local MSAN_CALLS=$4
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|   local UBSAN_CALLS=$5
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| 
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|   # Perform all the checks for more detailed error message.
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|   if (( $ASAN_CALLS > $ASAN_CALLS_THRESHOLD_FOR_NON_ASAN_BUILD )); then
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|     echo "BAD BUILD: DFSan build of $FUZZER seems to be compiled with ASan."
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|     return 1
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|   fi
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| 
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|   if (( $DFSAN_CALLS < $DFSAN_CALLS_THRESHOLD_FOR_DFSAN_BUILD )); then
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|     echo "BAD BUILD: $FUZZER does not seem to be compiled with DFSan."
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|     return 1
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|   fi
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| 
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|   if (( $MSAN_CALLS > $MSAN_CALLS_THRESHOLD_FOR_NON_MSAN_BUILD )); then
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|     echo "BAD BUILD: ASan build of $FUZZER seems to be compiled with MSan."
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|     return 1
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|   fi
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| 
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|   if (( $UBSAN_CALLS > $UBSAN_CALLS_THRESHOLD_FOR_NON_UBSAN_BUILD )); then
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|     echo "BAD BUILD: ASan build of $FUZZER seems to be compiled with UBSan."
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|     return 1
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|   fi
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| 
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|   return 0
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| }
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| 
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| 
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| # Mixed sanitizers check for MSan build.
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| function check_msan_build {
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|   local FUZZER=$1
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|   local ASAN_CALLS=$2
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|   local DFSAN_CALLS=$3
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|   local MSAN_CALLS=$4
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|   local UBSAN_CALLS=$5
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| 
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|   # Perform all the checks for more detailed error message.
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|   if (( $ASAN_CALLS > $ASAN_CALLS_THRESHOLD_FOR_NON_ASAN_BUILD )); then
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|     echo "BAD BUILD: MSan build of $FUZZER seems to be compiled with ASan."
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|     return 1
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|   fi
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| 
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|   if (( $DFSAN_CALLS > $DFSAN_CALLS_THRESHOLD_FOR_NON_DFSAN_BUILD )); then
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|     echo "BAD BUILD: MSan build of $FUZZER seems to be compiled with DFSan."
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|     return 1
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|   fi
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| 
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|   if (( $MSAN_CALLS < $MSAN_CALLS_THRESHOLD_FOR_MSAN_BUILD )); then
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|     echo "BAD BUILD: $FUZZER does not seem to be compiled with MSan."
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|     return 1
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|   fi
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| 
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|   if (( $UBSAN_CALLS > $UBSAN_CALLS_THRESHOLD_FOR_NON_UBSAN_BUILD )); then
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|     echo "BAD BUILD: MSan build of $FUZZER seems to be compiled with UBSan."
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|     return 1
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|   fi
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| 
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|   return 0
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| }
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| 
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| # Mixed sanitizers check for UBSan build.
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| function check_ubsan_build {
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|   local FUZZER=$1
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|   local ASAN_CALLS=$2
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|   local DFSAN_CALLS=$3
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|   local MSAN_CALLS=$4
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|   local UBSAN_CALLS=$5
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| 
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|   if [[ "$FUZZING_ENGINE" != libfuzzer ]]; then
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|     # Ignore UBSan checks for fuzzing engines other than libFuzzer because:
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|     # A) we (probably) are not going to use those with UBSan
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|     # B) such builds show indistinguishable number of calls to UBSan
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|     return 0
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|   fi
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| 
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|   # Perform all the checks for more detailed error message.
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|   if (( $ASAN_CALLS > $ASAN_CALLS_THRESHOLD_FOR_NON_ASAN_BUILD )); then
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|     echo "BAD BUILD: UBSan build of $FUZZER seems to be compiled with ASan."
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|     return 1
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|   fi
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| 
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|   if (( $DFSAN_CALLS > $DFSAN_CALLS_THRESHOLD_FOR_NON_DFSAN_BUILD )); then
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|     echo "BAD BUILD: UBSan build of $FUZZER seems to be compiled with DFSan."
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|     return 1
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|   fi
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| 
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|   if (( $MSAN_CALLS > $MSAN_CALLS_THRESHOLD_FOR_NON_MSAN_BUILD )); then
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|     echo "BAD BUILD: UBSan build of $FUZZER seems to be compiled with MSan."
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|     return 1
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|   fi
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| 
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|   if (( $UBSAN_CALLS < $UBSAN_CALLS_THRESHOLD_FOR_UBSAN_BUILD )); then
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|     echo "BAD BUILD: $FUZZER does not seem to be compiled with UBSan."
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|     return 1
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|   fi
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| }
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| 
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| # Verify that the given fuzz target is compiled with correct sanitizer.
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| function check_mixed_sanitizers {
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|   local FUZZER=$1
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|   local result=0
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|   local CALL_INSN=
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| 
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|   if [ "${FUZZING_LANGUAGE:-}" = "jvm" ]; then
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|     # Sanitizer runtime is linked into the Jazzer driver, so this check does not
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|     # apply.
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|     return 0
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|   fi
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| 
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|   if [ "${FUZZING_LANGUAGE:-}" = "python" ]; then
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|     # Sanitizer runtime is loaded via LD_PRELOAD, so this check does not apply.
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|     return 0
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|   fi
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| 
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|   if [[ $ARCHITECTURE == 'i386' ]]
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|   then
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|     CALL_INSN="call\s+[0-9a-f]+\s+<"
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|   else
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|     case $(uname -m) in
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|       x86_64)
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|         CALL_INSN="callq?\s+[0-9a-f]+\s+<"
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|         ;;
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|       aarch64)
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|         CALL_INSN="bl\s+[0-9a-f]+\s+<"
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|         ;;
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|       *)
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|         echo "Error: unsupported machine hardware $(uname -m)"
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|         exit 1
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|         ;;
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|     esac
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|   fi
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|   local ASAN_CALLS=$(objdump -dC $FUZZER | egrep "${CALL_INSN}__asan" -c)
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|   local DFSAN_CALLS=$(objdump -dC $FUZZER | egrep "${CALL_INSN}__dfsan" -c)
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|   local MSAN_CALLS=$(objdump -dC $FUZZER | egrep "${CALL_INSN}__msan" -c)
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|   local UBSAN_CALLS=$(objdump -dC $FUZZER | egrep "${CALL_INSN}__ubsan" -c)
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| 
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| 
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|   if [[ "$SANITIZER" = address ]]; then
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|     check_asan_build $FUZZER $ASAN_CALLS $DFSAN_CALLS $MSAN_CALLS $UBSAN_CALLS
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|     result=$?
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|   elif [[ "$SANITIZER" = dataflow ]]; then
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|     check_dfsan_build $FUZZER $ASAN_CALLS $DFSAN_CALLS $MSAN_CALLS $UBSAN_CALLS
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|     result=$?
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|   elif [[ "$SANITIZER" = memory ]]; then
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|     check_msan_build $FUZZER $ASAN_CALLS $DFSAN_CALLS $MSAN_CALLS $UBSAN_CALLS
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|     result=$?
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|   elif [[ "$SANITIZER" = undefined ]]; then
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|     check_ubsan_build $FUZZER $ASAN_CALLS $DFSAN_CALLS $MSAN_CALLS $UBSAN_CALLS
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|     result=$?
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|   elif [[ "$SANITIZER" = thread ]]; then
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|     # TODO(metzman): Implement this.
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|     result=0
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|   fi
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| 
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|   return $result
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| }
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| 
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| # Verify that the given fuzz target doesn't crash on the seed corpus.
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| function check_seed_corpus {
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|   local FUZZER=$1
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|   local FUZZER_NAME="$(basename $FUZZER)"
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|   local FUZZER_OUTPUT="/tmp/$FUZZER_NAME.output"
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| 
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|   if [[ "$FUZZING_ENGINE" != libfuzzer ]]; then
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|     return 0
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|   fi
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| 
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|   # Set up common fuzzing arguments, otherwise "run_fuzzer" errors out.
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|   if [ -z "$FUZZER_ARGS" ]; then
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|     export FUZZER_ARGS="-rss_limit_mb=2560 -timeout=25"
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|   fi
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| 
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|   bash -c "run_fuzzer $FUZZER_NAME -runs=0" &> $FUZZER_OUTPUT
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| 
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|   # Don't output anything if fuzz target hasn't crashed.
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|   if [ $? -ne 0 ]; then
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|     echo "BAD BUILD: $FUZZER has a crashing input in its seed corpus:"
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|     cat $FUZZER_OUTPUT
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|     return 1
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|   fi
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| 
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|   return 0
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| }
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| 
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| function check_architecture {
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|   local FUZZER=$1
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|   local FUZZER_NAME=$(basename $FUZZER)
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| 
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|   if [ "${FUZZING_LANGUAGE:-}" = "jvm" ]; then
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|     # The native dependencies of a JVM project are not packaged, but loaded
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|     # dynamically at runtime and thus cannot be checked here.
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|     return 0;
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|   fi
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| 
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|   if [ "${FUZZING_LANGUAGE:-}" = "python" ]; then
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|     FUZZER=${FUZZER}.pkg
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|   fi
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| 
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|   FILE_OUTPUT=$(file $FUZZER)
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|   if [[ $ARCHITECTURE == "x86_64" ]]
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|   then
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|     echo $FILE_OUTPUT | grep "x86-64" > /dev/null
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|   elif [[ $ARCHITECTURE == "i386" ]]
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|   then
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|     echo $FILE_OUTPUT | grep "80386" > /dev/null
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|   else
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|     echo "UNSUPPORTED ARCHITECTURE"
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|     return 1
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|   fi
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|   result=$?
 | |
|   if [[ $result != 0 ]]
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|   then
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|     echo "BAD BUILD $FUZZER is not built for architecture: $ARCHITECTURE"
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|     echo "file command output: $FILE_OUTPUT"
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|     echo "check_mixed_sanitizers test will fail."
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|   fi
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|   return $result
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| }
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| 
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| function main {
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|   local FUZZER=$1
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|   local checks_failed=0
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|   local result=0
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| 
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|   export RUN_FUZZER_MODE="batch"
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|   check_engine $FUZZER
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|   result=$?
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|   checks_failed=$(( $checks_failed + $result ))
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| 
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|   check_architecture $FUZZER
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|   result=$?
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|   checks_failed=$(( $checks_failed + $result ))
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| 
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|   check_mixed_sanitizers $FUZZER
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|   result=$?
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|   checks_failed=$(( $checks_failed + $result ))
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| 
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|   check_startup_crash $FUZZER
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|   result=$?
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|   checks_failed=$(( $checks_failed + $result ))
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| 
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|   # TODO: re-enable after introducing bug auto-filing for bad builds.
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|   # check_seed_corpus $FUZZER
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|   return $checks_failed
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| }
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| 
 | |
| 
 | |
| if [ $# -ne 1 ]; then
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|   echo "Usage: $0 <fuzz_target_binary>"
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|   exit 1
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| fi
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| 
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| # Fuzz target path.
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| FUZZER=$1
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| 
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| main $FUZZER
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| exit $?
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