a061b7947f
- hosttrace library automatically collects and merges timestamps for HIP API calls and kernels with the host-side instrumentation - mostly eliminates the need for using external rocprof - added thread_instruction_count in perfetto output - increased hosttrace min_loop_address_range to 512 - disabled instrumenting functions with dynamic callsites by default - miscellaneous cmake updates * roctracer support - fully integrated perfetto + roctracer outputs - thread_instruction_count in perfetto - increased min_loop_address_range to 512 - disabled instrumenting functions with dynamic callsites by default - updated timemory submodule * hosttrace_launch_compiler - support for using an alternative compiler as needed via launch compiler - elfio added as submodule (not currently used) - miscellaneous cmake updates * README update + host/device categories + misc - timemory fix for TIMEMORY_ROCTRACER_ENABLED - transpose fix * papi_tuple_t -> papi_tot_ins - minor fix to Findroctracer.cmake
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9.0 KiB
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202 lines
9.0 KiB
Markdown
Executable File
# hosttrace: application tracing with static/dynamic binary instrumentation
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## Dependencies
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- [DynInst](https://github.com/dyninst/dyninst) for dynamic or static instrumentation
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- [Julia](https://julialang.org/) for merging perfetto traces
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## Installing DynInst
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The easiest way to install Dyninst is via spack
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```shell
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git clone https://github.com/spack/spack.git
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source ./spack/share/spack/setup-env.sh
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spack compiler find
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spack external find
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spack install dyninst
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spack load -r dyninst
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```
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## Installing Julia
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Julia is available via Linux package managers or may be available via a module. Debian-based distributions such as Ubuntu can run (as a super-user):
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```shell
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apt-get install julia
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```
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Once Julia is installed, install the necessary packages (this operation only needs to be performed once):
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```shell
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julia -e 'using Pkg; for name in ["JSON", "DataFrames", "Dates", "CSV", "Chain", "PrettyTables"]; Pkg.add(name); end'
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```
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## Installing hosttrace
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```shell
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HOSTTRACE_ROOT=${HOME}/sw/hosttrace
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git clone https://github.com/AARInternal/hosttrace-dyninst.git
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cmake -B build-hosttrace -DHOSTTRACE_USE_MPI=ON -DCMAKE_INSTALL_PREFIX=${HOSTTRACE_ROOT} hosttrace-dyninst
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cmake --build build-hosttrace --target all --parallel 8
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cmake --build build-hosttrace --target install
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export PATH=${HOSTTRACE_ROOT}/bin:${PATH}
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export LD_LIBRARY_PATH=${HOSTTRACE_ROOT}/lib64:${HOSTTRACE_ROOT}/lib:${LD_LIBRARY_PATH}
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```
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## Using Hosttrace Executable
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```shell
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hosttrace --help
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hosttrace <hosttrace-options> -- <exe-or-library> <exe-options>
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```
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## Hosttrace Library Environment Settings
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| Environment Variable | Default Value | Description |
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|-----------------------------|-------------------------------|----------------------------------------------------------------------------------|
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| `HOSTTRACE_DEBUG` | `false` | Enable debugging statements |
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| `HOSTTRACE_USE_PERFETTO` | `true` | Collect profiling data via perfetto |
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| `HOSTTRACE_USE_TIMEMORY` | `false` | Collection profiling data via timemory |
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| `HOSTTRACE_SAMPLE_RATE` | `1` | Invoke perfetto and/or timemory once every N function calls |
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| `HOSTTRACE_USE_MPI` | `true` | Label perfetto output files via rank instead of PID |
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| `HOSTTRACE_OUTPUT_FILE` | `perfetto-trace.%rank%.proto` | Output file for perfetto (may use `%pid`) |
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| `HOSTTRACE_BACKEND` | `"inprocess"` | Configure perfetto to use either "inprocess" data management, "system", or "all" |
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| `HOSTTRACE_COMPONENTS` | `"wall_clock"` | Timemory components to activate when enabled |
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| `HOSTTRACE_SHMEM_SIZE_HINT` | `40960` | Hint for perfetto shared memory buffer |
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| `HOSTTRACE_BUFFER_SIZE_KB` | `1024000` | Maximum amount of memory perfetto will use to collect data in-process |
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| `TIMEMORY_TIME_OUTPUT` | `true` | Create unique output subdirectory with date and launch time |
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### Example Hosttrace Instrumentation
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#### Binary Rewrite
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Rewrite the text section of an executable or library with instrumentation:
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```shell
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hosttrace -o app.inst -- /path/to/app
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```
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In binary rewrite mode, if you also want instrumentation in the linked libraries, you must also rewrite those libraries.
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Example of rewriting the functions starting with `"hip"` with instrumentation in the amdhip64 library:
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```shell
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mkdir -p ./lib
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hosttrace -R '^hip' -o ./lib/libamdhip64.so.4 -- /opt/rocm/lib/libamdhip64.so.4
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export LD_LIBRARY_PATH=${PWD}/lib:${LD_LIBRARY_PATH}
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```
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> NOTE: Verify via `ldd` that your executable will load the instrumented library -- if you built your executable with
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> an RPATH to the original library's directory, then prefixing `LD_LIBRARY_PATH` will have no effect.
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Once you have rewritten your executable and/or libraries with instrumentation, you can just run the (instrumented) executable
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or exectuable which loads the instrumented libraries normally, e.g.:
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```shell
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./app.inst
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```
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If you want to re-define certain settings to new default in a binary rewrite, use the `--env` option. This `hosttrace` option
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will set the environment variable to the given value but will not override it. E.g. the default value of `HOSTTRACE_BUFFER_SIZE_KB`
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is 1024000 KB (1 GiB):
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```shell
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# buffer size defaults to 1024000
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hosttrace -o app.inst -- /path/to/app
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./app.inst
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```
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Passing `--env HOSTTRACE_BUFFER_SIZE_KB=5120000` will change the default value in `app.inst` to 5120000 KiB (5 GiB):
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```shell
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# defaults to 5 GiB buffer size
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hosttrace -o app.inst --env HOSTTRACE_BUFFER_SIZE_KB=5120000 -- /path/to/app
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./app.inst
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```
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```shell
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# override default 5 GiB buffer size to 200 MB
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export HOSTTRACE_BUFFER_SIZE_KB=200000
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./app.inst
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```
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#### Runtime Instrumentation
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Runtime instrumentation will not only instrument the text section of the executable but also the text sections of the
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linked libraries. Thus, it may be useful to exclude those libraries via the `-ME` (module exclude) regex option.
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```shell
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hosttrace -- /path/to/app
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hosttrace -ME '^(libhsa-runtime64|libz\\.so)' -- /path/to/app
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hosttrace -E 'rocr::atomic|rocr::core|rocr::HSA' -- /path/to/app
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```
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## Miscellaneous Features and Caveats
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- You may need to increase the default perfetto buffer size (1 GiB) to capture all the information
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- E.g. `export HOSTTRACE_BUFFER_SIZE_KB=10240000` increases the buffer size to 10 GiB
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- The hosttrace library has various setting which can be configured via environment variables, you can
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configure these settings to custom defaults with the hosttrace command-line tool via the `--env` option
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- E.g. to default to a buffer size of 5 GB, use `--env HOSTTRACE_BUFFER_SIZE_KB=5120000`
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- This is particularly useful in binary rewrite mode
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- Perfetto tooling is enabled by default
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- Timemory tooling is disabled by default
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- Enabling/disabling one of the aformentioned tools but not specifying enabling/disable the other will assume the inverse of the other's enabled state, e.g.
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- `HOSTTRACE_USE_PERFETTO=OFF` yields the same result `HOSTTRACE_USE_TIMEMORY=ON`
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- `HOSTTRACE_USE_PERFETTO=ON` yields the same result as `HOSTTRACE_USE_TIMEMORY=OFF`
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- In order to enable _both_ timemory and perfetto, set both `HOSTTRACE_USE_TIMEMORY=ON` and `HOSTTRACE_USE_PERFETTO=ON`
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- Setting `HOSTTRACE_USE_TIMEMORY=OFF` and `HOSTTRACE_USE_PERFETTO=OFF` will disable all instrumentation
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- Use `timemory-avail -S` to view the various settings for timemory
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- Set `HOSTTRACE_COMPONENTS="<comma-delimited-list-of-component-name>"` to control which components timemory collects
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- The list of components and their descriptions can be viewed via `timemory-avail -Cd`
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- The list of components and their string identifiers can be view via `timemory-avail -Cbs`
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- You can filter any `timemory-avail` results via `-r <regex> -hl`
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## Hosttrace Output
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`hosttrace` will create an output directory named `hosttrace-<EXE_NAME>-output`, e.g. if your executable
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is named `app.inst`, the output directory will be `hosttrace-app.inst-output`. Depending on whether
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`TIMEMORY_TIME_OUTPUT=ON` (the default when perfetto is enabled), there will be a subdirectory with the date and time,
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e.g. `2021-09-02_01.03_PM`. Within this directory, all perfetto files will be named `perfetto-trace.<PID>.proto` or
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when `HOSTTRACE_USE_MPI=ON`, `perfetto-trace.<RANK>.proto` (assuming hosttrace was built with MPI support).
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You can explicitly control the output path and naming scheme of the files via the `HOSTTRACE_OUTPUT_FILE` environment
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variable. The special character sequences `%pid%` and `%rank%` will be replaced with the PID or MPI rank, respectively.
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## Merging the traces from rocprof and hosttrace
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> NOTE: Using `rocprof` externally is deprecated. The current version has built-in support for
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> recording the GPU activity and HIP API calls. If you want to use an external rocprof, either
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> configure CMake with `-DHOSTTRACE_USE_ROCTRACER=OFF` or explicitly set `TIMEMORY_ROCTRACER_ENABLED=OFF` in the
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> environment.
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Use the `hosttrace-merge.jl` Julia script to merge rocprof and perfetto traces.
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```shell
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export TIMEMORY_ROCTRACER_ENABLED=OFF
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rocprof --hip-trace --roctx-trace --stats ./app.inst
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hosttrace-merge.jl results.json hosttrace-app.inst-output/2021-09-02_01.03_PM/*.proto
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```
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## Use Perfetto tracing with System Backend
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In a separate window run:
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```shell
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pkill traced
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traced --background
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perfetto --out ./htrace.out --txt -c ${HOSTTRACE_ROOT}/share/roctrace.cfg
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```
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then in the window running the application, configure the hosttrace instrumentation to use the system backend:
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```shell
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export HOSTTRACE_BACKEND_SYSTEM=1
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```
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for the merge use the `htrace.out`:
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```shell
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hosttrace-merge.jl results.json htrace.out
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```
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