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std.compress.xz: Avoid possible integer overflow in a few places
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@ -155,7 +155,7 @@ pub const Lzma2Decoder = struct {
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accum: *LzAccumBuffer,
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reset_dict: bool,
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) !void {
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const unpacked_size = try reader.readIntBig(u16) + 1; // TODO: overflow
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const unpacked_size = @as(u17, try reader.readIntBig(u16)) + 1;
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if (reset_dict) {
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try accum.reset(writer);
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@ -118,7 +118,7 @@ pub fn Decompress(comptime ReaderType: type) type {
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var hasher = std.compress.hashedReader(self.in_reader, Crc32.init());
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const hashed_reader = hasher.reader();
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const backward_size = (try hashed_reader.readIntLittle(u32) + 1) * 4;
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const backward_size = (@as(u64, try hashed_reader.readIntLittle(u32)) + 1) * 4;
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if (backward_size != index_size)
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return error.CorruptInput;
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@ -97,7 +97,7 @@ pub fn Decoder(comptime ReaderType: type) type {
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var header_hasher = std.compress.hashedReader(block_reader, Crc32.init());
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const header_reader = header_hasher.reader();
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const header_size = try header_reader.readByte() * 4;
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const header_size = @as(u64, try header_reader.readByte()) * 4;
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if (header_size == 0)
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return error.EndOfStreamWithNoError;
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@ -78,3 +78,23 @@ test "unsupported" {
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);
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}
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}
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fn testDontPanic(data: []const u8) !void {
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const buf = decompress(data) catch |err| switch (err) {
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error.OutOfMemory => |e| return e,
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else => return,
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};
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defer testing.allocator.free(buf);
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}
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test "size fields: integer overflow avoidance" {
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// These cases were found via fuzz testing and each previously caused
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// an integer overflow when decoding. We just want to ensure they no longer
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// cause a panic
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const header_size_overflow = "\xfd7zXZ\x00\x00\x01i\"\xde6z";
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try testDontPanic(header_size_overflow);
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const lzma2_chunk_size_overflow = "\xfd7zXZ\x00\x00\x01i\"\xde6\x02\x00!\x01\x08\x00\x00\x00\xd8\x0f#\x13\x01\xff\xff";
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try testDontPanic(lzma2_chunk_size_overflow);
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const backward_size_overflow = "\xfd7zXZ\x00\x00\x01i\"\xde6\x00\x00\x00\x00\x1c\xdfD!\x90B\x99\r\x01\x00\x00\xff\xff\x10\x00\x00\x00\x01DD\xff\xff\xff\x01";
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try testDontPanic(backward_size_overflow);
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}
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