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https://github.com/google/sandboxed-api.git
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51799f99ae
Instead of calling `google::InitGoogleLogging()` directly, introduce an indirection via a new utility library. After this change, Sandboxed API should consistently use `sapi::InitLogging()` everywhere. For now, `sapi::InitLogging()` simply calls its glog equivalent. However, this enables us to migrate away from the gflags dependency and use Abseil flags. Once a follow-up change lands, `sapi::InitLogging()` will instead initialize the google logging library with flags defined from Aseil. Later still, once Abseil releases logging, we can then drop the glog dependency entirely. PiperOrigin-RevId: 445363592 Change-Id: Ia23a7dc88b8ffe65a422ea4d5233bba7bdd1303a
195 lines
7.3 KiB
C++
195 lines
7.3 KiB
C++
// Copyright 2020 Google LLC
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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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// https://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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#include <iostream>
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#include <glog/logging.h>
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#include "helpers.h" // NOLINT(build/include)
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#include "sandbox.h" // NOLINT(build/include)
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#include "absl/status/statusor.h"
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void EncodeDecodeOneStep(SapiLodepngSandbox& sandbox, LodepngApi& api) {
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// Generate the values.
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std::vector<uint8_t> image = GenerateValues();
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// Encode the image.
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sapi::v::Array<uint8_t> sapi_image(kImgLen);
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CHECK(std::copy(image.begin(), image.end(), sapi_image.GetData()))
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<< "Could not copy values";
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sapi::v::ConstCStr sapi_filename("/output/out_generated1.png");
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absl::StatusOr<unsigned int> result = api.lodepng_encode32_file(
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sapi_filename.PtrBefore(), sapi_image.PtrBefore(), kWidth, kHeight);
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CHECK(result.ok()) << "encode32_file call failed";
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CHECK(!result.value()) << "Unexpected result from encode32_file call";
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// After the image has been encoded, decode it to check that the
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// pixel values are the same.
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sapi::v::UInt sapi_width, sapi_height;
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sapi::v::IntBase<uint8_t*> sapi_image_ptr(0);
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result = api.lodepng_decode32_file(
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sapi_image_ptr.PtrBoth(), sapi_width.PtrBoth(), sapi_height.PtrBoth(),
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sapi_filename.PtrBefore());
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CHECK(result.ok()) << "decode32_file call failes";
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CHECK(!result.value()) << "Unexpected result from decode32_file call";
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CHECK(sapi_width.GetValue() == kWidth) << "Widths differ";
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CHECK(sapi_height.GetValue() == kHeight) << "Heights differ";
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// The pixels have been allocated inside the sandboxed process
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// memory, so we need to transfer them to this process.
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// Transferring the memory has the following steps:
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// 1) define an array with the required length.
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// 2) set the remote pointer for the array to specify where the memory
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// that will be transferred is located.
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// 3) transfer the memory to this process (this step is why we need
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// the pointer and the length).
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sapi::v::Array<uint8_t> sapi_pixels(kImgLen);
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sapi_pixels.SetRemote(sapi_image_ptr.GetValue());
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CHECK(sandbox.TransferFromSandboxee(&sapi_pixels).ok())
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<< "Error during transfer from sandboxee";
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// Now, we can compare the values.
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CHECK(absl::equal(image.begin(), image.end(), sapi_pixels.GetData(),
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sapi_pixels.GetData() + kImgLen))
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<< "Values differ";
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// Free the memory allocated inside the sandbox.
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CHECK(sandbox.GetRpcChannel()->Free(sapi_image_ptr.GetValue()).ok())
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<< "Could not free memory inside sandboxed process";
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}
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void EncodeDecodeTwoSteps(SapiLodepngSandbox& sandbox, LodepngApi& api) {
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// Generate the values.
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std::vector<uint8_t> image = GenerateValues();
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// Encode the image into memory first.
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sapi::v::Array<uint8_t> sapi_image(kImgLen);
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CHECK(std::copy(image.begin(), image.end(), sapi_image.GetData()))
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<< "Could not copy values";
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sapi::v::ConstCStr sapi_filename("/output/out_generated2.png");
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sapi::v::ULLong sapi_pngsize;
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sapi::v::IntBase<uint8_t*> sapi_png_ptr(0);
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// Encode it into memory.
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absl::StatusOr<unsigned int> result =
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api.lodepng_encode32(sapi_png_ptr.PtrBoth(), sapi_pngsize.PtrBoth(),
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sapi_image.PtrBefore(), kWidth, kHeight);
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CHECK(result.ok()) << "encode32 call failed";
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CHECK(!result.value()) << "Unexpected result from encode32 call";
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// The new array (pointed to by sapi_png_ptr) is allocated
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// inside the sandboxed process so we need to transfer it to this
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// process.
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sapi::v::Array<uint8_t> sapi_png_array(sapi_pngsize.GetValue());
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sapi_png_array.SetRemote(sapi_png_ptr.GetValue());
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CHECK(sandbox.TransferFromSandboxee(&sapi_png_array).ok())
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<< "Error during transfer from sandboxee";
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// Write the image into the file (from memory).
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result =
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api.lodepng_save_file(sapi_png_array.PtrBefore(), sapi_pngsize.GetValue(),
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sapi_filename.PtrBefore());
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CHECK(result.ok()) << "save_file call failed";
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CHECK(!result.value()) << "Unexpected result from save_file call";
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// Now, decode the image using the 2 steps in order to compare the values.
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sapi::v::UInt sapi_width, sapi_height;
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sapi::v::IntBase<uint8_t*> sapi_png_ptr2(0);
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sapi::v::ULLong sapi_pngsize2;
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// Load the file in memory.
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result =
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api.lodepng_load_file(sapi_png_ptr2.PtrBoth(), sapi_pngsize2.PtrBoth(),
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sapi_filename.PtrBefore());
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CHECK(result.ok()) << "load_file call failed";
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CHECK(!result.value()) << "Unexpected result from load_file call";
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CHECK(sapi_pngsize.GetValue() == sapi_pngsize2.GetValue())
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<< "Png sizes differ";
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// Transfer the png array.
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sapi::v::Array<uint8_t> sapi_png_array2(sapi_pngsize2.GetValue());
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sapi_png_array2.SetRemote(sapi_png_ptr2.GetValue());
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CHECK(sandbox.TransferFromSandboxee(&sapi_png_array2).ok())
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<< "Error during transfer from sandboxee";
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// After the file is loaded, decode it so we have access to the values
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// directly.
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sapi::v::IntBase<uint8_t*> sapi_png_ptr3(0);
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result = api.lodepng_decode32(
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sapi_png_ptr3.PtrBoth(), sapi_width.PtrBoth(), sapi_height.PtrBoth(),
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sapi_png_array2.PtrBefore(), sapi_pngsize2.GetValue());
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CHECK(result.ok()) << "decode32 call failed";
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CHECK(!result.value()) << "Unexpected result from decode32 call";
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CHECK(sapi_width.GetValue() == kWidth) << "Widths differ";
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CHECK(sapi_height.GetValue() == kHeight) << "Heights differ";
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// Transfer the pixels so they can be used here.
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sapi::v::Array<uint8_t> sapi_pixels(kImgLen);
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sapi_pixels.SetRemote(sapi_png_ptr3.GetValue());
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CHECK(sandbox.TransferFromSandboxee(&sapi_pixels).ok())
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<< "Error during transfer from sandboxee";
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// Compare the values.
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CHECK(absl::equal(image.begin(), image.end(), sapi_pixels.GetData(),
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sapi_pixels.GetData() + kImgLen))
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<< "Values differ";
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// Free the memory allocated inside the sandbox.
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CHECK(sandbox.GetRpcChannel()->Free(sapi_png_ptr.GetValue()).ok())
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<< "Could not free memory inside sandboxed process";
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CHECK(sandbox.GetRpcChannel()->Free(sapi_png_ptr2.GetValue()).ok())
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<< "Could not free memory inside sandboxed process";
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CHECK(sandbox.GetRpcChannel()->Free(sapi_png_ptr3.GetValue()).ok())
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<< "Could not free memory inside sandboxed process";
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}
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int main(int argc, char* argv[]) {
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sapi::InitLogging(argv[0]);
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const std::string images_path = CreateTempDirAtCWD();
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CHECK(sandbox2::file_util::fileops::Exists(images_path, false))
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<< "Temporary directory does not exist";
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SapiLodepngSandbox sandbox(images_path);
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CHECK(sandbox.Init().ok()) << "Error during sandbox initialization";
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LodepngApi api(&sandbox);
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EncodeDecodeOneStep(sandbox, api);
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EncodeDecodeTwoSteps(sandbox, api);
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if (sandbox2::file_util::fileops::DeleteRecursively(images_path)) {
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LOG(WARNING) << "Temporary folder could not be deleted";
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}
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return EXIT_SUCCESS;
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}
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