Cosmetic cleanups.
This commit is contained in:
+1
-1
@@ -472,7 +472,7 @@ struct upx_callback_t
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template <class T, T default_value, T min_value, T max_value>
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template <class T, T default_value, T min_value, T max_value>
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struct OptVar
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struct OptVar
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{
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{
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typedef T Type;
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typedef T value_type;
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static const T default_value_c = default_value;
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static const T default_value_c = default_value;
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static const T min_value_c = min_value;
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static const T min_value_c = min_value;
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static const T max_value_c = max_value;
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static const T max_value_c = max_value;
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+2
-2
@@ -170,7 +170,7 @@ void FileBase::write(const void *buf, int len)
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off_t FileBase::seek(upx_int64_t off64, int whence)
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off_t FileBase::seek(upx_int64_t off64, int whence)
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{
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{
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(void) mem_size(1, off64 >= 0 ? off64 : -off64); // sanity check
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mem_size_assert(1, off64 >= 0 ? off64 : -off64); // sanity check
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off_t off = ACC_ICONV(off_t, off64);
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off_t off = ACC_ICONV(off_t, off64);
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if (!isOpen())
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if (!isOpen())
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throwIOException("bad seek 1");
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throwIOException("bad seek 1");
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@@ -406,7 +406,7 @@ void OutputFile::rewrite(const void *buf, int len)
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off_t OutputFile::seek(upx_int64_t off64, int whence)
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off_t OutputFile::seek(upx_int64_t off64, int whence)
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{
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{
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(void) mem_size(1, off64 >= 0 ? off64 : -off64); // sanity check
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mem_size_assert(1, off64 >= 0 ? off64 : -off64); // sanity check
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off_t off = ACC_ICONV(off_t, off64);
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off_t off = ACC_ICONV(off_t, off64);
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assert(!opt->to_stdout);
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assert(!opt->to_stdout);
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switch (whence) {
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switch (whence) {
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+16
-16
@@ -52,7 +52,7 @@ size_t mem_size(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra)
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size_t mem_size_get_n(upx_uint64_t element_size, upx_uint64_t n)
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size_t mem_size_get_n(upx_uint64_t element_size, upx_uint64_t n)
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{
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{
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(void) mem_size(element_size, n); // check
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mem_size_assert(element_size, n);
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return ACC_ICONV(size_t, n); // return n
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return ACC_ICONV(size_t, n); // return n
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}
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}
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@@ -90,29 +90,29 @@ int ptr_diff(const char *p1, const char *p2)
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/*************************************************************************
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/*************************************************************************
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// bool use_mcheck()
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// bool use_simple_mcheck()
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**************************************************************************/
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**************************************************************************/
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#if defined(__SANITIZE_ADDRESS__)
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#if defined(__SANITIZE_ADDRESS__)
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__acc_static_forceinline bool use_mcheck() { return false; }
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__acc_static_forceinline bool use_simple_mcheck() { return false; }
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#elif (WITH_VALGRIND) && defined(RUNNING_ON_VALGRIND)
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#elif (WITH_VALGRIND) && defined(RUNNING_ON_VALGRIND)
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static int use_mcheck_flag = -1;
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static int use_simple_mcheck_flag = -1;
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__acc_static_noinline void use_mcheck_init()
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__acc_static_noinline void use_simple_mcheck_init()
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{
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{
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use_mcheck_flag = 1;
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use_simple_mcheck_flag = 1;
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if (RUNNING_ON_VALGRIND) {
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if (RUNNING_ON_VALGRIND) {
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use_mcheck_flag = 0;
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use_simple_mcheck_flag = 0;
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//fprintf(stderr, "upx: detected RUNNING_ON_VALGRIND\n");
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//fprintf(stderr, "upx: detected RUNNING_ON_VALGRIND\n");
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}
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}
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}
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}
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__acc_static_forceinline bool use_mcheck()
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__acc_static_forceinline bool use_simple_mcheck()
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{
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{
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if __acc_unlikely(use_mcheck_flag < 0)
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if __acc_unlikely(use_simple_mcheck_flag < 0)
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use_mcheck_init();
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use_simple_mcheck_init();
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return (bool) use_mcheck_flag;
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return (bool) use_simple_mcheck_flag;
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}
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}
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#else
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#else
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__acc_static_forceinline bool use_mcheck() { return true; }
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__acc_static_forceinline bool use_simple_mcheck() { return true; }
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#endif
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#endif
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@@ -137,7 +137,7 @@ void MemBuffer::dealloc()
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if (b != NULL)
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if (b != NULL)
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{
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{
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checkState();
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checkState();
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if (use_mcheck())
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if (use_simple_mcheck())
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{
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{
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// remove magic constants
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// remove magic constants
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set_be32(b - 8, 0);
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set_be32(b - 8, 0);
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@@ -217,7 +217,7 @@ void MemBuffer::checkState() const
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{
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{
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if (!b)
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if (!b)
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throwInternalError("block not allocated");
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throwInternalError("block not allocated");
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if (use_mcheck())
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if (use_simple_mcheck())
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{
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{
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if (get_be32(b - 4) != MAGIC1(b))
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if (get_be32(b - 4) != MAGIC1(b))
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throwInternalError("memory clobbered before allocated block 1");
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throwInternalError("memory clobbered before allocated block 1");
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@@ -237,12 +237,12 @@ void MemBuffer::alloc(upx_uint64_t size)
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assert(b_size == 0);
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assert(b_size == 0);
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//
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//
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assert(size > 0);
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assert(size > 0);
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size_t bytes = mem_size(1, size, use_mcheck() ? 32 : 0);
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size_t bytes = mem_size(1, size, use_simple_mcheck() ? 32 : 0);
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unsigned char *p = (unsigned char *) malloc(bytes);
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unsigned char *p = (unsigned char *) malloc(bytes);
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if (!p)
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if (!p)
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throwOutOfMemoryException();
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throwOutOfMemoryException();
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b_size = ACC_ICONV(unsigned, size);
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b_size = ACC_ICONV(unsigned, size);
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if (use_mcheck())
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if (use_simple_mcheck())
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{
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{
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b = p + 16;
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b = p + 16;
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// store magic constants to detect buffer overruns
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// store magic constants to detect buffer overruns
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@@ -63,6 +63,10 @@ int mem_replace(void *b, int blen, const void *what, int wlen, const void *r);
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size_t mem_size(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra = 0);
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size_t mem_size(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra = 0);
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size_t mem_size_get_n(upx_uint64_t element_size, upx_uint64_t n);
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size_t mem_size_get_n(upx_uint64_t element_size, upx_uint64_t n);
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inline void mem_size_assert(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra = 0) {
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(void) mem_size(element_size, n, extra); // sanity check
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}
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bool mem_size_valid(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra = 0);
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bool mem_size_valid(upx_uint64_t element_size, upx_uint64_t n, upx_uint64_t extra = 0);
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bool mem_size_valid_bytes(upx_uint64_t bytes);
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bool mem_size_valid_bytes(upx_uint64_t bytes);
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