Full Code of chaoszhang/ASTER for AI

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Repository: chaoszhang/ASTER
Branch: master
Commit: 989fb1b443b4
Files: 116
Total size: 15.0 MB

Directory structure:
gitextract_2ee5zeqm/

├── .github/
│   └── workflows/
│       ├── c-cpp-dev.yml
│       ├── c-cpp-temp.yml
│       └── c-cpp.yml
├── .gitignore
├── .gitmodules
├── LICENSE
├── README.md
├── example/
│   ├── caster/
│   │   ├── fasta_alignments/
│   │   │   ├── gene1.fa
│   │   │   ├── gene2.fa
│   │   │   ├── gene3.fa
│   │   │   ├── gene4.fa
│   │   │   └── gene5.fa
│   │   └── phylip_alignments/
│   │       ├── gene1.phy
│   │       ├── gene2.phy
│   │       ├── gene3.phy
│   │       ├── gene4.phy
│   │       └── gene5.phy
│   ├── caster-sliding-window/
│   │   ├── ape.fa
│   │   ├── mapping.tsv
│   │   ├── slidingwindow.tsv
│   │   └── slidingwindow.xlsx
│   ├── example.phylip
│   ├── genetree-contracted.nw
│   ├── genetree.nw
│   ├── genetrees.tre_1.fas
│   ├── genetrees.tre_2.fas
│   ├── genetrees.tre_3.fas
│   ├── list.txt
│   ├── multitree.nw
│   ├── multitree_genename.nw
│   ├── sancheck/
│   │   ├── Scoring/
│   │   │   ├── astral-pro.tsv
│   │   │   ├── concat.treefile
│   │   │   ├── gene.trees
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── ScoringNormal/
│   │   │   ├── astral-bs10-speices.tre
│   │   │   ├── genetrees-bs10.tre
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── TwostepAlgorithm/
│   │   │   ├── estimatedgenetre.nw
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralNonbinaryExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralproExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── casterExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── wasterExample/
│   │   │   ├── sancheck-local.bat
│   │   │   └── sancheck-local.sh
│   │   └── wastralhExample/
│   │       ├── sancheck.bat
│   │       └── sancheck.sh
│   ├── waster/
│   │   ├── filename1.fa
│   │   ├── filename2.fa
│   │   ├── filename3.fq
│   │   ├── filename4.fq
│   │   └── input_list.txt
│   └── waster-walkthrough/
│       ├── Chimpanzee.fa
│       ├── Gorilla.fa
│       ├── Human.fq
│       ├── Orangutan.fa
│       └── input.tsv
├── make.bat
├── makefile
├── misc/
│   ├── caster-linux-walkthrough.md
│   ├── caster-sliding-window-walkthrough.md
│   ├── toolpick.xlsx
│   └── waster-linux-walkthrough.md
├── src/
│   ├── .vscode/
│   │   ├── c_cpp_properties.json
│   │   ├── launch.json
│   │   ├── settings.json
│   │   └── tasks.json
│   ├── algorithms.hpp
│   ├── argparser.hpp
│   ├── aster-gui.py
│   ├── astral-hybrid.cpp
│   ├── astral-pro.cpp
│   ├── astral.cpp
│   ├── biallelic-cuda.cu
│   ├── biallelic-cuda.cuh
│   ├── biallelic-cuda.hpp
│   ├── caster-pair.cpp
│   ├── caster-site.cpp
│   ├── castles.hpp
│   ├── codonSplit.py
│   ├── debug.cpp
│   ├── dstar-branch-merge-diag.cpp
│   ├── dstar-branch.cpp
│   ├── dstar.cpp
│   ├── genetreewithbinaryweight.hpp
│   ├── genetreewithhybridweight.hpp
│   ├── incbeta.c
│   ├── landmark.hpp
│   ├── merge-pairend.cpp
│   ├── monster.cpp
│   ├── multitree.hpp
│   ├── numerical.hpp
│   ├── runIqtreeRate.py
│   ├── sequence-pair.hpp
│   ├── sequence.hpp
│   ├── sequencenontrivialpi.hpp
│   ├── sequtils.hpp
│   ├── sister.cpp
│   ├── speciestree.hpp
│   ├── threadpool.hpp
│   ├── treeutils.hpp
│   ├── tutorial.hpp
│   ├── waster-old.cpp
│   └── waster.cpp
└── tutorial/
    ├── astral-pro3.md
    ├── astral4.md
    ├── caster-site.md
    ├── waster.md
    └── wastral.md

================================================
FILE CONTENTS
================================================

================================================
FILE: .github/workflows/c-cpp-dev.yml
================================================
name: C/C++ CI development branch sancheck

on:
  push:
    branches: [ "development" ]

jobs: 
  precheck-and-update-tutorial:
    runs-on: ubuntu-latest
    steps:
    - uses: actions/checkout@v4
      with:
          token: ${{ secrets.MY_GITHUB_ACTION_TOKEN }}
    - name: make
      run: make tutorial
    - name: commit
      run: |
            git config --local user.email "github-actions[bot]@github.com"
            git config --local user.name "github-actions[bot]"
            git add tutorial/*
            git commit -m "update tutorials"
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.MY_GITHUB_ACTION_TOKEN }}
          branch: temp
          force: true


================================================
FILE: .github/workflows/c-cpp-temp.yml
================================================
name: C/C++ CI development branch sancheck

on:
  push:
    branches: [ "temp" ]

jobs:
  linux-sancheck:

    runs-on: ubuntu-latest

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: sancheck
      run: for c in example/sancheck/*/sancheck.sh; do sh $c; done
      
  macos-sancheck:

    runs-on: macos-latest

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: sancheck
      run: for c in example/sancheck/*/sancheck.sh; do sh $c; done
      
  macosx86-sancheck:

    runs-on: macos-15-intel

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: sancheck
      run: for c in example/sancheck/*/sancheck.sh; do sh $c; done
      
  windows-sancheck:
    runs-on: windows-latest

    steps:
    - uses: actions/checkout@v4
    - name: configure
      run: |
           choco install cygwin --params="/InstallDir:C:\tools\cygwin /NoStartMenu /Package:make,gcc-g++"
           echo "C:\tools\cygwin\bin" >> $GITHUB_PATH
    - name: make
      run: .\make.bat
    - name: sancheck
      run: foreach ($c in Get-ChildItem example\sancheck\*\sancheck.bat) {cmd.exe /c $c}
      
  auto-push:
    runs-on: ubuntu-latest
    steps:
    - uses: actions/checkout@v4
      with:
          token: ${{ secrets.MY_GITHUB_ACTION_TOKEN }}
    - name: Wait for linux-sancheck to succeed
      uses: fountainhead/action-wait-for-check@v1.0.0
      id: wait-for-linux-sancheck
      with:
          token: ${{ secrets.GITHUB_TOKEN }}
          checkName: linux-sancheck
          timeoutSeconds: 1800
          intervalSeconds: 30
    - name: Halt if linux-sancheck failed
      if: steps.wait-for-linux-sancheck.outputs.conclusion != 'success'
      run: exit 1
    - name: Wait for macos-sancheck to succeed
      uses: fountainhead/action-wait-for-check@v1.0.0
      id: wait-for-macos-sancheck
      with:
          token: ${{ secrets.GITHUB_TOKEN }}
          checkName: macos-sancheck
          timeoutSeconds: 1800
          intervalSeconds: 30
    - name: Halt if macos-sancheck failed
      if: steps.wait-for-macos-sancheck.outputs.conclusion != 'success'
      run: exit 1
    - name: Wait for macosx86-sancheck to succeed
      uses: fountainhead/action-wait-for-check@v1.0.0
      id: wait-for-macosx86-sancheck
      with:
          token: ${{ secrets.GITHUB_TOKEN }}
          checkName: macosx86-sancheck
          timeoutSeconds: 1800
          intervalSeconds: 15
    - name: Halt if macosx86-sancheck failed
      if: steps.wait-for-macosx86-sancheck.outputs.conclusion != 'success'
      run: exit 1
    - name: Wait for windows-sancheck to succeed
      uses: fountainhead/action-wait-for-check@v1.0.0
      id: wait-for-windows-sancheck
      with:
          token: ${{ secrets.GITHUB_TOKEN }}
          checkName: windows-sancheck
          timeoutSeconds: 1800
          intervalSeconds: 10
    - name: Halt if windows-sancheck failed
      if: steps.wait-for-windows-sancheck.outputs.conclusion != 'success'
      run: exit 1
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.MY_GITHUB_ACTION_TOKEN }}
          branch: master
          force: true


================================================
FILE: .github/workflows/c-cpp.yml
================================================
name: C/C++ CI

on:
  push:
    branches: [ "master" ]
  pull_request:
    branches: [ "master" ]

jobs:
  linux-build:

    runs-on: ubuntu-latest

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: commit
      run: |
            git config --local user.email "github-actions[bot]@github.com"
            git config --local user.name "github-actions[bot]"
            git add *
            git commit -m "Update to newest version with binaries"
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.GITHUB_TOKEN }}
          branch: Linux
          force: true
  macos-build:

    runs-on: macos-latest

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: commit
      run: |
            git config --local user.email "github-actions[bot]@github.com"
            git config --local user.name "github-actions[bot]"
            git add *
            git commit -m "Update to newest version with binaries"
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.GITHUB_TOKEN }}
          branch: MacOS
          force: true
  macosx86-build:

    runs-on: macos-15-intel

    steps:
    - uses: actions/checkout@v4
    - name: make
      run: make
    - name: commit
      run: |
            git config --local user.email "github-actions[bot]@github.com"
            git config --local user.name "github-actions[bot]"
            git add *
            git commit -m "Update to newest version with binaries"
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.GITHUB_TOKEN }}
          branch: MacOSx86
          force: true
  windows-build:
    runs-on: windows-latest

    steps:
    - uses: actions/checkout@v4
    - name: configure
      run: |
           choco install cygwin --params="/InstallDir:C:\tools\cygwin /NoStartMenu /Package:make,gcc-g++"
           echo "C:\tools\cygwin\bin" >> $GITHUB_PATH
    - name: make
      run: .\make.bat
    - name: commit
      run: |
            git config --local user.email "github-actions[bot]@github.com"
            git config --local user.name "github-actions[bot]"
            git add *
            git commit -m "Update to newest version with binaries"
    - name: push
      uses: chaoszhang/github-push-action@master
      with: 
          github_token: ${{ secrets.GITHUB_TOKEN }}
          branch: Windows
          force: true


================================================
FILE: .gitignore
================================================
# Prerequisites
*.d

# Compiled Object files
*.slo
*.lo
*.o
*.obj

# Precompiled Headers
*.gch
*.pch

# Compiled Dynamic libraries
*.so
*.dylib
*.dll

# Fortran module files
*.mod
*.smod

# Compiled Static libraries
*.lai
*.la
*.a
*.lib

# Executables
*.out
*.app


================================================
FILE: .gitmodules
================================================
[submodule "standalone/TAPER"]
	path = standalone/TAPER
	url = https://github.com/chaoszhang/TAPER


================================================
FILE: LICENSE
================================================
                    GNU AFFERO GENERAL PUBLIC LICENSE
                       Version 3, 19 November 2007

 Copyright (C) 2007 Free Software Foundation, Inc. <https://fsf.org/>
 Everyone is permitted to copy and distribute verbatim copies
 of this license document, but changing it is not allowed.

                            Preamble

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================================================
FILE: README.md
================================================
# Accurate Species Tree EstimatoR (ASTER❋)

[<img src="misc/ASTER.png" width="250"/>](misc/ASTER.png)

A family of optimatization algorithms for species tree inference:
1. [ASTRAL-IV](tutorial/astral4.md) (from unrooted gene tree ***topologies*** with integrated CASTLES-II for branch lengths)
2. [ASTRAL-Pro3](tutorial/astral-pro3.md) (from unrooted gene ***family*** tree topologies with integrated CASTLES-Pro)
3. [Weighted ASTRAL](tutorial/wastral.md) (from unrooted gene trees with branch ***lengths*** and/or ***supports***)
4. [CASTER-site](tutorial/caster-site.md) (from ***whole genome alignments*** or aligned sequences)
5. [CASTER-pair](tutorial/caster-site.md) (from ***whole genome alignments*** or aligned sequences)
6. [WASTER](tutorial/waster.md) (from ***raw reads***)
7. SISTER (from optical-map-like distance data or shape data)
8. D\* statistic (interspecific hybridization detection)

# Announcements

## Available on Bioconda

We thank Dirk-Jan M. van Workum, Joshua Zhuang, and many other contributors who make ASTER available on [Bioconda](https://bioconda.github.io/recipes/aster/README.html).

## Integrated in Phylosuite

Many ASTER tools have been integrated in [PhyloSuite](http://phylosuite.jushengwu.com/), an integrated and scalable desktop platform for streamlined molecular sequence data management and evolutionary phylogenetics studies.

## GUI for Windows users

Please check out our software with GUI for ASTRAL, ASTRAL-Pro, and wASTRAL. Simply download the [zip file](https://github.com/chaoszhang/ASTER/archive/refs/heads/Windows.zip), extract the contents, enter `exe` folder, and click `aster-gui.exe`.
 
## Bug Reports

Contact ``chaozhang@pku.edu.cn``, [``aster-users@googlegroups.com``](https://groups.google.com/forum/#!forum/aster-users), or post on [ASTER issues page](https://github.com/chaoszhang/ASTER/issues).

# Documentations
- The rest of this README file
- Program specific tutorials (see EXECUTION section)
- Forums (feel free to ask questions or ask for help running ASTER):
  - [User group discussions](https://groups.google.com/forum/#!forum/aster-users)
  - [ASTER issues page](https://github.com/chaoszhang/ASTER/issues)
  - QQ group: 130635706

# INSTALLATION
For most users, installing ASTER is ***very*** easy!
Install using one of three approaches:
  - You simply need to download the zip file for [Windows](https://github.com/chaoszhang/ASTER/archive/refs/heads/Windows.zip)/[MacOS ARM](https://github.com/chaoszhang/ASTER/archive/refs/heads/MacOS.zip)/[MacOS X86](https://github.com/chaoszhang/ASTER/archive/refs/heads/MacOSx86.zip)/[Linux](https://github.com/chaoszhang/ASTER/archive/refs/heads/Linux.zip) and extract the contents to a folder of your choice.
  - Alternatively, you can clone the [github repository](https://github.com/chaoszhang/ASTER.git) and checkout the branch named Windows/MacOS/Linux.
  - For MacOS/Linux users, you can also install ASTER using [conda](https://bioconda.github.io/recipes/aster/README.html#package-aster):
    ```
	conda install aster
	```

Binary files should be in the `exe` folder for Windows or `bin` folder otherwise. If you are lucky, these may just work as is and you may not need to build at all.

## For Linux/MacOS/WSL users
1. In terminal, `cd` into the downloaded directory and run `make`.
  - If you see `*** Installation complete! ***` then you are done!
  - If you see `Command 'g++' not found` then before rerunning `make`,
    - Debian (Ubuntu) users try
      ```
      sudo apt update
      sudo apt install g++
      ```
    - CentOS (RedHat) users try
      ```
      sudo yum update
      sudo yum install gcc-c++
      ```
    - Unix (MacOS) users should be prompted for installing `g++` and please click "install". If no prompt, try `g++`. Please ensure that Clang version is at least 14.
2. Binary files should be in the `bin` folder.

## For Windows users
- Executables for x86-64 are available in `exe` folder and it is **very likely** that they already work.
- [Windows Subsystem for Linux (WSL)](https://docs.microsoft.com/en-us/windows/wsl/install) is HIGHLY recommanded if you need to install on your own! Please follow instructions in "For Linux/Unix/WSL users" section.
- To compile windows excutables:
  1. Download [MinGW](https://sourceforge.net/projects/mingw-w64/) and install ***posix*** version for your architecture (eg. x86-64)
  2. Add path to `bin` folder of MinGW to [system environment variable `PATH`](https://www.google.com/search?q=Edit+the+system+environment+variables+windows)
  3. Double click `make.bat` inside the downloaded directory

# EXECUTION
Please click the link below:
1. [ASTRAL-IV](tutorial/astral4.md)
2. [ASTRAL-Pro3](tutorial/astral-pro3.md)
3. [Weighted ASTRAL](tutorial/wastral.md)
4. [CASTER-site](tutorial/caster-site.md)
5. [CASTER-pair](tutorial/caster-site.md)
6. [WASTER](tutorial/waster.md)

# HELP ME CHOOSE A SUITABLE TOOL
## Chao's preference in a nutshell
[<img src="misc/toolpick.png" width="500"/>](misc/toolpick.png)

## FAQ
Q: I want to reconstruct a phylogenetic tree without alignments.

A: I recommend **WASTER**, which can accurately infer family-level species tree with short reads with even 1.5X coverage. This tool can also be used to build an adequate order-level guide tree for CACTUS. (You will be amazed by how accurate this "guide tree" is!)

Q: I have a supermatrix of SNPs in fasta/phylip format and I want a "quick-and-dirty" run to get an adequate phylogenetic tree.

A: I recommend **CASTER-site**, which is usually 1-2 magnitudes faster than concatenation-based maximum likelihood methods yet more accurate in presence of incomplete lineage sorting with enough data.

Q: My dataset has a lot of muti-copy genes (e.g. plants) and I want to make an effort to utilize these precious signals.

A: I highly recommend **ASTRAL-Pro3**, which takes as input non-rooted non-labelled gene family trees. ASTRAL-Pro3 does not need to know the homology relationships of genes, but you still need to reconstruct gene family trees by yourself using RAxML/IQTree/Fasttree.

Q: I have aligned genomes (>10M sites) and the average nucleotide identity is >80% between closely related species (e.g. birds, mammals, or abundant taxon sampling).

A: I recommend **CASTER-site** (faster) and **CASTER-pair** (slower). Those methods are usually 1-2 magnitudes faster than concatenation-based maximum likelihood methods yet more accurate in presence of incomplete lineage sorting. Please run both and select the species tree that makes more sense.

Q: I have gene trees with branch lengths and Bootstrap/Baysian supports and I know that horizontal gene transfers and hybridizations are rare.

A: I recommend **Weighted ASTRAL**. It utilizes branch lengths and supports to improve accuracy.

Q: I have gene trees but they do not satisfy the requirements for wASTRAL.

A: You can still use **ASTRAL-IV**. By the way, ASTRAL-IV is also useful for finding the supertree.

# Publication
Chao Zhang, Rasmus Nielsen, Siavash Mirarab, ASTER: A Package for Large-scale Phylogenomic Reconstructions, Molecular Biology and Evolution, 2025, msaf172, https://doi.org/10.1093/molbev/msaf172

# Contributors
- Chao Zhang
- Siavash Mirarab
- Yasamin Tabatabaee
- Tandy Warnow
- Rasmus Nielsen

(Contributors are listed in chronological order)

# ACKNOWLEGEMENT
ASTER code uses Regularized Incomplete Beta Function by Lewis Van Winkle under zlib License.

================================================
FILE: example/caster/fasta_alignments/gene1.fa
================================================
>Human
CCGTTTTCAGGTAAGACCCGTCGGATTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGACAGAGCGGACGGCCTCCCCGACGAGGCCTATCGAATTGGAGCGATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGAATCGTTAACCACTTACTCTGGCGAGGACCCCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGGACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGTACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACAACGGCACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACCTTTGGATCACTGATAACACATACGTGCCG
>Chimpanzee
CCGTTTTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCGATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGAATCGTTAACCGCTTACTCTGGCGAGGACCTCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGCACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGAACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACTACGGTACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACTTTTGGATCACTGATAACACATACGGGCCG
>Gorilla
CCGTATTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACAGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCGATGATCCTTCTCGATGCCTGGATTTGAACACGTTTCGAATCGTTAACCGCTTACTCTGGCGAGGACCCCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGGACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGTCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGCACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACAACGGCACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACTTTTGGATCGCTGATAACACATACGGGCCG
>Orangutan
CCGTTTTCAGGTAAGACCCGTCGCGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATAGCAGATTATACGGGGAGACTACAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCAATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGTATCGTTTACCGCTTACTCTGGCGATGGCCCCGCTATAAAACCGATACGATCATTTGACGTCACTCATGCGGACACCGTCGCGAGGAAGAAGTTGGGCCGTGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTAGGACGGGCGCTACCGTACTCAGCGCTACTTAACTTGGGCCAAGGAGATGTTATACCGAAGCAGATGAAAAACGGCACAGAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAATTCGCTCCTAGCTATAAGTAACTTTTGGATCGCTGATACCACAGACGGGCCG


================================================
FILE: example/caster/fasta_alignments/gene2.fa
================================================
>Human
GATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGAGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGTGTCAGACCCATCAAAGAATGTACAAAGTGACCCTTACAAGTACTTAGACCAGCCTCTAAACCGAACATTCCGATACTGGCCAAATTGCAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGATACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAACAGCCTACTCCTCAAGCTCTGAGACTACCCCCCTTTATCAGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTATCTGACATCCCGGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCACAATGCCGCGAAT
>Chimpanzee
GATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGTGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGTGTCAGACCCATCAAAGAATGTACAAAGTGACCCTTACAAGTACTTAGACCAGCCTCTAAACCGAACATTCCGATACTGGCCAAATTGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGATACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAACAGCCTACTCCTCAAGCTCTGAGACTACCCCCCTTTATCGGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTATCTGACATCCCGGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCAGAATGCCGCGAAT
>Gorilla
GATTCAACACACCCTAACCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTCATATCACCAACGAGTTCGCTATATTCGTGCCTGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGGGTTAGACCCATCAAAGAATGTACAAAGTGACCCTTACGAGTACTTAGACCAGCCTGTAAACCGAACATTCGAATACTGTCCAAATTGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGTTACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAGCAGCCTACTCCTCAAGCTCTGAGACTACCCCCCCTTATCGGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCCTCGTCTATTTGACATCCCGGACAAGGTTCCCGAGGAGCGAGTCTATCCTCGACACTGAAAAGTGGTGCAGAAAGCCGCGAAT
>Orangutan
GATTCAACACACTCTAAGCCGTGGCACTTAATTCTCGGAAGAAGCAGGCCCTTCAAATCACCAACGAGTTCGCCATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTCGCGTGATCCCCCTAAGTATTTGAGCCGACCTATACCTCTCAGGGTTAGACCCATCAAAGAATGTACAAAGTGACCCTTACGAGTACTTAGACCCGCCTCTAAACCGAACATTCGGATACAGGCCAAATGGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCAAGATACAATGGGTTCTCTAGCATTTGACCATCCTGTAGCAACAGCCTACTACTCAAGCTCTGAGACTATCCCCCTTTATCGGGTTAGGCACCTGCCGAGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTAACTGACATCCCAGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCAGAATGCCGCGAAT


================================================
FILE: example/caster/fasta_alignments/gene3.fa
================================================
>Human
CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACACTAGATTTACGCATGTTCAGAGCTAAGAAAACATGAGCGAGATGGTGGCGTGTAACTCCACCGCGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTTGCAGGCAAAAAACAGAGAAGAAAACTAACAACCTAGAATAGTCCCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGGGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAAAGACACTTCATCCTTGTTCGAATGAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
>Chimpanzee
CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATCTACGGATGTTCAGAGCTAAGAAAATATGAGCGAGATGGTGGCGTGTAACTCCACCGCGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTTGCAGGCAAAAAACAGTGAAGAAAACTAACAACCTAGAATAGTCCCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAGAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGGGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAAGGACCCTTGCTCCTTGTTCGAATGGAACACCATGGAGCCCGCAGGATTAATATCTGTACGCATGCGTTAAATGTTGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
>Gorilla
CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATTGACGGATGTTCAGAGCTAAGAAAATATGAGCGAGATGGTGGCGTGTAACTCCACCACGATCTGTCATATGATATCCGTGTGATTGGTGGTCAGTGGCAGGCAATAAACAGTTAAGAAAACTAACAACCTTGAATAGTCTCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACACCATATTCAGCCCTTACTGGCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGTGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAATGACACTTGCTCCTTGTTCGACTGAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
>Orangutan
CGGACGCAAGGCGGACGTCCACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATTTACGGAGGTTCAGAGCTAGGAAAGTATGAGCGAGATGGTGGCGTGTAACTCCACCACGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTGGCAGGCAATAAACCGTGAAGAAAACTAACAAACTAGAATAGTCCCGTATTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTCGAATATCGTTAACATGAGTCTAGTTCCGCGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTGGCCGCTTAACACCCCAAGAGCGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATACTAAAGACACTTGCTCCTTGTTCGACTAAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGTAGGGTTGTGGGCGCTGTTACAGATACGACAATCAGGTCGCGTAGT


================================================
FILE: example/caster/fasta_alignments/gene4.fa
================================================
>Human
GCGACGCTCTAAGACCTGTTCAGTGTCTAGACCCGAGTGGAGTAGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGAGAAGAAAGCAGAATGGAGATGACGCTGAATGGTTAACCCATAGGATGTGTTACTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCATTTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGAACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTCACCATGTATAAAAACTACTGCCGAGGAGGCGAGTTCCACTAAAGGACAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAAAGGATTAGA
>Chimpanzee
GCCACGCTCTAAGACCTGTTCAGTGTATAGACCCGAGTGGATTGGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGGGAAGAAAGCAAAATGGAGATGACGCTGAATGGTTAACCCAAAGGATGTGTTCCTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCATTTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGAACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGTTACATGGGCGGCCTTTCACCATGTATAAAAACTACTGCCGAGGAGGCGAGTTCCACTAAAGGACAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAAAGGATTAGA
>Gorilla
GCCACGCTCTAAGTCCTGTTCAGTGTCAAGACCCGAGTGGATTGGCTGCTTTGTTTCTCCGGGTAACTCTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGGGAAGAAAGCAAAATGGAGATGACGCTGAATGGTTAACCCAAAGGATGTGTTACTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCAATTTCTCTAGTTAATGGCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGTACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTCACCATGTATAAAAACTACGGCCGAGGAGGCGAGTTCCACTAAAGGACATAGCAGCCGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAATGGATTAGA
>Orangutan
CCCACGCTCTAAGTCCTGTTCAGTGTCAAGACCCGAGTGGATTGGGTGCTTTGTTTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTAATACCAAGGGAAGAAAGCTAAATGGAGATGACGCTGAAGGGTTAACCCAAAGGATGAGTTACTAAGTATAACCCGCCCGTGTTCGATATAGGCGGGGTATCATGTGCGCTTGCTAACGAAGCCTCGTGGGAAATAGCTTCCAATTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGAAATGGATTCTAGGTACACCGGGTCTGTAACGCAATTGTATTGTGGCTCGAGAGTGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTGACCATGTATAAAAACAACGGCCGATGAGGCGACTTCCACTAAAGGAGAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAATGGATTAGA


================================================
FILE: example/caster/fasta_alignments/gene5.fa
================================================
>Human
CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCAAGCACCCTCCGGATCGCGAGCTAGAGCGTCCATCGCTGCCTAAGAATATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGTCGGTCGACCGTCGGTGTCCCATACTCCGTTTCGTCCCTCCCACATAATTTAATGGGGGGAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTCCCAGTGAAGTTGGCATTGGCTCATGCACTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTTCGTTGAGTGTTCCTCGGGGTATATACTTCCAATATGATATTCAGTTAGAGAGT
>Chimpanzee
CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTTTTATAGCCATGTTCGCCGCTTTTGACCTAGTCTACTGCAAGCACCCTCCGGATCGCGAGCTAGTGCGTCCATCGCTGCCTAAGAATATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCACACTCCGTTTCGTCCCTCCCACATAATTTAATGGGGGGAAGACATATGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTCCCAGTGAAGTTGGCATTGCCTCATGCACTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTTCGTTGAGTGTTCCTCGGGGTATATACTTCCAATATGATATTCAGTTAGAGAGT
>Gorilla
CTTTATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCGAGCACCCTCCAGATCGCGAGCTACTGCGTCCATCGCTGCGTAAGAGTATACTTGCACAAATAGCCACTCTATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCATACTCCGTTTCGTCCCGCCCAGATAATTTACTGGGGGGAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCTATAATCATACATTTCCCAGTGAAGTTGGCATTGCCTCATGCAGTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATACTAAAATGGCAACTGCGTTGAGTGTTCCTCGGGGTATAAACTTCCAATATGATATTCAGTTAGAGAGT
>Orangutan
CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTAGCATAGCCATGTTCGTCGCTTTTGCGCTAGACTACTGCAAGCACCCTCCAGATCGCGAGCTACTGCGTCCATCGCTGCCTAAGAGTATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCATACTCCGGTTCGTCCCTCCCAGATAACTTAAAGGGGGCAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCAATACCGAGACAATCCGGCATTGATAACACTCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTGCCAGTGAAGTCGGTATTGCGTCATGCACGACTCGTGGATCGCTCTGGTGCGAAGTATGGAGGCCGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTGCGTTGAGTGTTCCTCGGGGTATATACTTCAAATATGATATTCAGTTAGAGAGT


================================================
FILE: example/caster/phylip_alignments/gene1.phy
================================================
4 500
Human CCGTTTTCAGGTAAGACCCGTCGGATTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGACAGAGCGGACGGCCTCCCCGACGAGGCCTATCGAATTGGAGCGATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGAATCGTTAACCACTTACTCTGGCGAGGACCCCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGGACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGTACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACAACGGCACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACCTTTGGATCACTGATAACACATACGTGCCG
Chimpanzee CCGTTTTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCGATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGAATCGTTAACCGCTTACTCTGGCGAGGACCTCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGCACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGAACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACTACGGTACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACTTTTGGATCACTGATAACACATACGGGCCG
Gorilla CCGTATTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACAGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCGATGATCCTTCTCGATGCCTGGATTTGAACACGTTTCGAATCGTTAACCGCTTACTCTGGCGAGGACCCCGCTATAAAACCGATACGTTCATTTGACGTCACTCAGGCGGACACCGTCGCGAAGAAGAAGTTGGGGCATGGTAGCGGAAATGGTTAGTGTCGTTAGACTCCACCTTAAGGAGTACGACGGGCGCTACCGCACACAGCGCTTCTTAACTTGGGCCAAGGAGATGTGATACCGAAGCAGTTGAACAACGGCACATAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAGTTCGCTCCTAGCTATAAGTAACTTTTGGATCGCTGATAACACATACGGGCCG
Orangutan CCGTTTTCAGGTAAGACCCGTCGCGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATAGCAGATTATACGGGGAGACTACAAATTGCTGCCTTGATAGAGCGGACGGCCTCCCCGACGAGCCCTATCGAATTGGAGCAATGATCCTTCTCGAAGCCTGGATTTGAATATGTTTCGTATCGTTTACCGCTTACTCTGGCGATGGCCCCGCTATAAAACCGATACGATCATTTGACGTCACTCATGCGGACACCGTCGCGAGGAAGAAGTTGGGCCGTGGTAGCGGAAATGGTTAGTGCCGTTAGACTCCACCTTAAGGAGTAGGACGGGCGCTACCGTACTCAGCGCTACTTAACTTGGGCCAAGGAGATGTTATACCGAAGCAGATGAAAAACGGCACAGAGTTTGTCAATGGCATGGGGAATGCGCGTTACAACCTAAATTCGCTCCTAGCTATAAGTAACTTTTGGATCGCTGATACCACAGACGGGCCG


================================================
FILE: example/caster/phylip_alignments/gene2.phy
================================================
4 500
Human GATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGAGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGTGTCAGACCCATCAAAGAATGTACAAAGTGACCCTTACAAGTACTTAGACCAGCCTCTAAACCGAACATTCCGATACTGGCCAAATTGCAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGATACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAACAGCCTACTCCTCAAGCTCTGAGACTACCCCCCTTTATCAGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTATCTGACATCCCGGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCACAATGCCGCGAAT
Chimpanzee GATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGTGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGTGTCAGACCCATCAAAGAATGTACAAAGTGACCCTTACAAGTACTTAGACCAGCCTCTAAACCGAACATTCCGATACTGGCCAAATTGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGATACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAACAGCCTACTCCTCAAGCTCTGAGACTACCCCCCTTTATCGGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTATCTGACATCCCGGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCAGAATGCCGCGAAT
Gorilla GATTCAACACACCCTAACCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTCATATCACCAACGAGTTCGCTATATTCGTGCCTGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTGGCGGGATCCCCCTAAGTATTTGAGCCGACCTATTCCTCTCAGGGTTAGACCCATCAAAGAATGTACAAAGTGACCCTTACGAGTACTTAGACCAGCCTGTAAACCGAACATTCGAATACTGTCCAAATTGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCATGTTACAAGGCGTTCTCTAGCAGTTGACCATCCTGTTGCAGCAGCCTACTCCTCAAGCTCTGAGACTACCCCCCCTTATCGGGTTAGGCACCTGCCGTGGAATATAGTGGATGAAGAATCACGGCCCTCGTCTATTTGACATCCCGGACAAGGTTCCCGAGGAGCGAGTCTATCCTCGACACTGAAAAGTGGTGCAGAAAGCCGCGAAT
Orangutan GATTCAACACACTCTAAGCCGTGGCACTTAATTCTCGGAAGAAGCAGGCCCTTCAAATCACCAACGAGTTCGCCATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGGCGGCGAAGAGTCGCGTGATCCCCCTAAGTATTTGAGCCGACCTATACCTCTCAGGGTTAGACCCATCAAAGAATGTACAAAGTGACCCTTACGAGTACTTAGACCCGCCTCTAAACCGAACATTCGGATACAGGCCAAATGGTAGAACAGATGCGGCAGTGGCTGCGTCTCTCTGTCAAGATACAATGGGTTCTCTAGCATTTGACCATCCTGTAGCAACAGCCTACTACTCAAGCTCTGAGACTATCCCCCTTTATCGGGTTAGGCACCTGCCGAGGAATATAGTGGATGAAGAATCACGGCCTTCGTCTAACTGACATCCCAGATAAGGTTCCCTAGGAGCGAGTCTATCCTCGACACTGAAACGTGGTGCAGAATGCCGCGAAT


================================================
FILE: example/caster/phylip_alignments/gene3.phy
================================================
4 500
Human CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACACTAGATTTACGCATGTTCAGAGCTAAGAAAACATGAGCGAGATGGTGGCGTGTAACTCCACCGCGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTTGCAGGCAAAAAACAGAGAAGAAAACTAACAACCTAGAATAGTCCCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGGGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAAAGACACTTCATCCTTGTTCGAATGAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
Chimpanzee CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATCTACGGATGTTCAGAGCTAAGAAAATATGAGCGAGATGGTGGCGTGTAACTCCACCGCGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTTGCAGGCAAAAAACAGTGAAGAAAACTAACAACCTAGAATAGTCCCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAGAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGGGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAAGGACCCTTGCTCCTTGTTCGAATGGAACACCATGGAGCCCGCAGGATTAATATCTGTACGCATGCGTTAAATGTTGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
Gorilla CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATTGACGGATGTTCAGAGCTAAGAAAATATGAGCGAGATGGTGGCGTGTAACTCCACCACGATCTGTCATATGATATCCGTGTGATTGGTGGTCAGTGGCAGGCAATAAACAGTTAAGAAAACTAACAACCTTGAATAGTCTCGTACTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTTGAATATCGTTAACATGAGTCCAGATCCACACCATATTCAGCCCTTACTGGCCAGAACGCATAGTAGCCGCTTAACGGCCCAAGAGTGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATATTAATGACACTTGCTCCTTGTTCGACTGAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGGAGGGTTGTGGGCGATGTTACAGATACGACAATCAGGTCGCGAAGT
Orangutan CGGACGCAAGGCGGACGTCCACATTTCTCTAAGGCTTCCCACTAAATTAACAATAGATTTACGGAGGTTCAGAGCTAGGAAAGTATGAGCGAGATGGTGGCGTGTAACTCCACCACGATCCGTCATATAATATCCGTGTGATTGGTGGTCAGTGGCAGGCAATAAACCGTGAAGAAAACTAACAAACTAGAATAGTCCCGTATTAGGTAGCAAGTGGTATGAGCTTTCTTAAAAAGTTTTGTGTCGAATATCGTTAACATGAGTCTAGTTCCGCGCCATATTCAGCCCTTACTGTCCAGAACGCATAGTGGCCGCTTAACACCCCAAGAGCGGACCTACCGGGGCCCTTGGGGATACGATCTAATACGCACATACTAAAGACACTTGCTCCTTGTTCGACTAAAACACCATGGAGCCCGCCGGATTAATATCTGTACGCATGCGTTAAATGTGGTAGGGTTGTGGGCGCTGTTACAGATACGACAATCAGGTCGCGTAGT


================================================
FILE: example/caster/phylip_alignments/gene4.phy
================================================
4 500
Human GCGACGCTCTAAGACCTGTTCAGTGTCTAGACCCGAGTGGAGTAGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGAGAAGAAAGCAGAATGGAGATGACGCTGAATGGTTAACCCATAGGATGTGTTACTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCATTTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGAACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTCACCATGTATAAAAACTACTGCCGAGGAGGCGAGTTCCACTAAAGGACAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAAAGGATTAGA
Chimpanzee GCCACGCTCTAAGACCTGTTCAGTGTATAGACCCGAGTGGATTGGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGGGAAGAAAGCAAAATGGAGATGACGCTGAATGGTTAACCCAAAGGATGTGTTCCTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCATTTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGAACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGTTACATGGGCGGCCTTTCACCATGTATAAAAACTACTGCCGAGGAGGCGAGTTCCACTAAAGGACAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAAAGGATTAGA
Gorilla GCCACGCTCTAAGTCCTGTTCAGTGTCAAGACCCGAGTGGATTGGCTGCTTTGTTTCTCCGGGTAACTCTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGGGAAGAAAGCAAAATGGAGATGACGCTGAATGGTTAACCCAAAGGATGTGTTACTAAGTATAACCCGCCTGTGTTCAATATAGGCGGGGTTTCATGTGCGCTTGCTAATGAAGCCTCGTCGGAAATTGCTTTCAATTTCTCTAGTTAATGGCAATACGTATTATATCGAAGGGGAATGGTTTCTAGGTACACCGGGTCTGTAAAGCAATTGTATTGTGGCTCAAGAGCGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTCACCATGTATAAAAACTACGGCCGAGGAGGCGAGTTCCACTAAAGGACATAGCAGCCGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAATGGATTAGA
Orangutan CCCACGCTCTAAGTCCTGTTCAGTGTCAAGACCCGAGTGGATTGGGTGCTTTGTTTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTAATACCAAGGGAAGAAAGCTAAATGGAGATGACGCTGAAGGGTTAACCCAAAGGATGAGTTACTAAGTATAACCCGCCCGTGTTCGATATAGGCGGGGTATCATGTGCGCTTGCTAACGAAGCCTCGTGGGAAATAGCTTCCAATTTCTCTAGTTAATGTCAATACGTATTATATCGAAGGGAAATGGATTCTAGGTACACCGGGTCTGTAACGCAATTGTATTGTGGCTCGAGAGTGGGTCCATAACTCCTCACGTCAGGGTACATGGGCGGCCTTTGACCATGTATAAAAACAACGGCCGATGAGGCGACTTCCACTAAAGGAGAGAGCAGCGGAGGGCTGGCCATACTTAAGGAAAGGTAACAGAACGGAAGGAAAGACAGAGAAATGGATTAGA


================================================
FILE: example/caster/phylip_alignments/gene5.phy
================================================
4 500
Human CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCAAGCACCCTCCGGATCGCGAGCTAGAGCGTCCATCGCTGCCTAAGAATATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGTCGGTCGACCGTCGGTGTCCCATACTCCGTTTCGTCCCTCCCACATAATTTAATGGGGGGAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTCCCAGTGAAGTTGGCATTGGCTCATGCACTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTTCGTTGAGTGTTCCTCGGGGTATATACTTCCAATATGATATTCAGTTAGAGAGT
Chimpanzee CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTTTTATAGCCATGTTCGCCGCTTTTGACCTAGTCTACTGCAAGCACCCTCCGGATCGCGAGCTAGTGCGTCCATCGCTGCCTAAGAATATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCACACTCCGTTTCGTCCCTCCCACATAATTTAATGGGGGGAAGACATATGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTCCCAGTGAAGTTGGCATTGCCTCATGCACTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTTCGTTGAGTGTTCCTCGGGGTATATACTTCCAATATGATATTCAGTTAGAGAGT
Gorilla CTTTATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCGAGCACCCTCCAGATCGCGAGCTACTGCGTCCATCGCTGCGTAAGAGTATACTTGCACAAATAGCCACTCTATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCATACTCCGTTTCGTCCCGCCCAGATAATTTACTGGGGGGAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCACTGCCGAGACAATGCGGCATTGATAACTCGCCTTGAGTACATACGATGTCCTATTCTATAATCATACATTTCCCAGTGAAGTTGGCATTGCCTCATGCAGTACTCGTGAATCGCTCTGGTGCGAAGTGTGGAGGCTGACTAAGTCACTAGATCAACCCCGCCCAATACTAAAATGGCAACTGCGTTGAGTGTTCCTCGGGGTATAAACTTCCAATATGATATTCAGTTAGAGAGT
Orangutan CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTAGCATAGCCATGTTCGTCGCTTTTGCGCTAGACTACTGCAAGCACCCTCCAGATCGCGAGCTACTGCGTCCATCGCTGCCTAAGAGTATACTTGCACAAATAGCCACTCCATTACTCATTCAAAATGCCGCCGGTCGACCGTCGGTGTCCCATACTCCGGTTCGTCCCTCCCAGATAACTTAAAGGGGGCAAGACATTTGACGTGCGTATGACCAGAAGCTTTCCAATACCGAGACAATCCGGCATTGATAACACTCCTTGAGTACATACGATGTCCTATTCAATAATCATACATTTGCCAGTGAAGTCGGTATTGCGTCATGCACGACTCGTGGATCGCTCTGGTGCGAAGTATGGAGGCCGACTAAGTCACTAGATCAACCCCGCCCAATCCTAAAATGGCAACTGCGTTGAGTGTTCCTCGGGGTATATACTTCAAATATGATATTCAGTTAGAGAGT


================================================
FILE: example/caster-sliding-window/ape.fa
================================================
>Human
ATGGTTGGGTACGTCCTTCGAAGGGGATCATGGTCATACAAGTTGGCATGGTTACGCCCGGCAACGTTTTCATGAGATCGCCGATGTATATAACTTGCGGATAACAATCGCATGACGTATAATCCAAGTACGAACTAATGGCCCCACGGCCTCCCATATTCAGACAGTGTGCCTCAGTCCCCTTTTAGGCAATGTATATCAAATTCACGGTCTATATTGTAATGAACCCATGTCTTACCGGATAGTGATACTAAGATATGGGGTGCCATGTTTTGGCTGTAACAGTCATTATCGATATAAAGGCACATTCAGACAAGCAATTCTCAGTGATTGTCGTAGACCAGAGACGTAATTTAATCGATGCTTGTGCAGAGTATATAGCGCAGAAATCAACGGGGCGTATGAAGGAAGCCTTTGACGAATTCTTATATTCCTGGTCTCTGTAGCATCTGAGACAGTTTATACTGGCGTTATGGATCCACTCAGTAAAATCGAGGGAATTAGGATCTGTCACACTGCGCCTAGATACCGACGATCGCAGGTGAAACTAAGGAAACGAGCATTAAACTATTTCTCAAAGTTGTGGAAGATCGAAAAAAACGAAAGAAATATCTTATTAGGCAATCCCCCTAAGATACCAGTAACGAACGGGGAGGCGGCACTTGCGCTCCGTCTGGTGATACATCCATGAAGTCTGCGAAGTTCAGTAATTTCTAAGCACATTCAGTAAAGTAGTGTACTCAATTCTCGCGAGCTTTTTGCCATAAATGTTCCTAGGATCATTACGGTGAAATATGCGTTGACCAACAACCAAAAACAGAAATGGAATCCGACTAAATTGATCGCCTAATAGCCGTTGGGGGTGTATAACCTACTCCATTCAGCCTCAAGGATGAATATTACATACAAAAAGGCAGCATAAATTACTAGATTTTCATTACGGGTGTAAATCTAAAACGTTTATTGGTCATAAAATGTTATTATTAAAGTAATGATACCTCTTTCACTATTTGTCTGTCTAATCACATCACATACAAATGGAGACTATACGCTGCATGCAACTCCTTCCTACAATACTGACGCGTTCGATCGCCCATAGCTTAGAATCAGTTGGTATGAGCATAGGGAGCCCAGGCATAACCATCATTTCGTGCAACCTATTTCTCACTTGTTCATCATGTCTATATACGAGTAGGAAATCAGCGGTGAAGTCATCTGTTAAACTGAGGACTCATAGAACCTTCTGTGCGCCATTTAGGGGATGAAATTCACGTCGCGAAAGTGTACGCGTCCTCCTATGTTCACTGGGTGTGCGAGCTGATCCGCTAATCGAAAGCGGTGCGGGTTAACACACGCACTTAAATGCCGTAACACTCATGTGAATATTGGACGGCGATTGGTGAAGGTCGAAGTTCGACTGAAATATTATGAGTTCTTTACATGGTCTGCACCTGCAAACAGCAGACGATTTCTCGCAGTGCATACGGAAGTCGACCGACGTAGGGAAGTGCAGAATCACCACACTTTAGAAACGACGCGACTGGCGTTACCCGATATACCCTAGAGGCCATTACTCGGCATGTAAGATTATTTAGTTATGATCCGTAGTAGTGCCACCCGATATTGCATCGGTGCTGCGACGGAATTGTGATGTATACGGCTACGGAAACGTTAAAAGACCGACGGATAAAAATCTCCGATTTGTTTTATTATATTATATAAGTCAGTGTATGTGGTTTGATACCACAGCTTCACGAACACGGTCCCGCGGGGTTCGGCAGTATCAAATTAAAGAGTTGACGGAAGGTATCATCGTCAAGTAGTCAAAGAGTTTTCGATCGTTATTTGGGTTCGATATGCAGAATTGGGGCACTTCAAGAGGAGTCCGACTCTGAGTAAGTGACGTGTTGGGCTCACCGCGAACGTTCTAAGATTGTGTTAGAAATAATGTAAGAAAGATGTGTTGCACAACTAAGGAGATAAATGATATTGGTTGAAGGGACGCCACCCGCGATGGATGTTATCCCCAGAGTTACTAACGAACTCTCTGACCGGTTACCGCCCTGCCCAATAGTGCGGGAACCGACCCTTAGTTGAGCCCGTGATGGTTACACTCCATGCCTGGGTATCACTCATCACAGCTCTTCCAGGTCATTCGTCAGTTGACAGTATGGTGTGCGCACGGTTGGTTTCGTAATTGAAGGGTACTAAAATAGATTAAATTACATAAAAAATACTCTCGGTCTGCACAACAACAGCCTGTTTGTAAGCTAGCATGACTATACCCTTGCCCTACCGGAGCCGTACTACATGAACATCTACATTGCAAGTCCTGTAGTACCGGAGAATTGTATGTGCATAAGAAATAATTGGAGGTACCCGACTTTTTCTAGCACAGTCGGTCACGTGCTCGTCTATAAGAGCTTCCGCTTTGGTAGAAATAAATGTCAGTTAGCTACTAATACAAGATTCAAAAGTCCAGACGAAAGACTCGCGCAAGCTGTAGCCAGCATGTTGAGATTAGTGTCCTCCAGATTGCCTGGCAGTACTTGTGGAAGAGATGACGAGCCTAAAAGAGCAGTGCATGGCATGTACCTGGCCTTCCTTAAAACAGTATACACAGTGAGTAATAGGAATGTAGTTAAAGCAACTTGAAACCAGAGAAGCGCGATGTCTAGGGATCGAGTGTATCACTGCAGGGCTGCAGTCGAAGTTTGGAGTGAGAAATGCCAGTCGGGCTTCTGAGTTTCATGCACGGGGTGCTGCGTAATGTAGATGGTCGATATCCATACCAAATAAATTCATATGTGTAGGGATCGCCATTTATCGCTCGCTACCATAGGTAGGTAAGACCTGAGCTTTCGTACATCTCTTGAACGATACAGGACGGTAGGTTAATACCTGACTAAATGTACCCTCTAGTTGCTTAACACGTCGAATTACTATCTAACAGCAATAATTTCGCGGCTTATAGGGAGAGATTGGAACGCATATGACATGGCGGCTGAACTTGAGGCCGAACTTTTAACTTGTAACCTAGGTGACAAACTTTACACCTGATCTGTAGGTGTAGGAACTTAACATAAGATATATCGCGCTTATACTCTTGGGTGCACGGCGATTTGGCCGAGTACGACATTGCCGGAGATACAATGTAACCGGAAGCGTGTCTTAAATGTAGACCCGGTAGGCCATATAATGCACACCGTCATTAACCTCGGGTAAGTAATTCTTTTCAATTGTTTCCATTGCTGAGGATGGCCGTGATGTACACTTGCCACAGATGCCGCTTCGACAACAAAGACTAAGGATAAATCTCTAATTTAAAAAAGTGGACAAAAATAAGAGGTTGACCATACGCCTTCAAGTCGTCAAGCGTCAATGTCATTAGCTTATCCTAATCTATTGACCCTCCCCTTAATATCGGGGGACAAGGTATAAGTAAACCACACCATGGCCACCTTGCTAGGAAGTCCTACATCACCTCGACGTTTTTTGGCTAAGCTCTCCGCCAGTCTGACCTGCTATCCACCCACTTGACGCAATCGTGTATGATATGCATACACTAAACCAAAAAGGCCTCAAGTAGCGGTTCCTTCCCCCTTCCGAGACGAACTATGCACAGACATTGGACCGATCATATTTCGGCTAGCGAAAAAAGGTTTGTTACGACGTGTGCCCTTCAGACGTTACAGAAACCCAGAGTAGTTTCATAGGAGAAAGATAAACCTATCATTGATGTAGTGACAGGATACTCATATACCAACGTGGGGTGATTCATTGGTAGGCCTGTATAGCAGACCTGCCCTTATCGAGTCACCGTGTAGATCTTATGTTATGACCAGCCTGGAAGGACGATGGACCATCTCGTGATAAAGGAGCCTCGGTTCCGGCCGATACAACACCGTACTCGTCGTGCAGCACACTGAAGAACGGAGAACCAGCTTCATTCAACACTGCGGGGGTCTATGAGAATCCAGGGTGAACGAAGCTGACTGTGTCTACAGTGGCCTGACCATAAGCTAAGTAGTAGCGTCACTACGAATAGAAGGAGATGGATGTGTAGGCAGAGTACTTTATCCTACTAGTATTTCGATATAGTGCAACGAGATCTTTGTAACGAGCAACTACTGGCGAGACACTCTTGAGATTTCAATTAATCTAGGGTATAGCAATGCTGTTAGATCCGGTAGAAATTCATGTCATTTAATCTGTCGTGGCATTTACAATTACCCATCACGTTCGATGTTCGGAAGGTGGTTGCCATTGCAGTCGCGTTGGGCCCAATCGATGGGACAAGTACGGGTCGTCAGGTAAAACTTGCATGTTGTCGGCGGTTGAATGACTGGTTCCCGTATCTTTCTGTCGTAAACTTTGGGGTCGACCTTCCCTTAACTATTTAGCCTTATCAAAGCCGACACATTTCATCCGTGAGATACCGACTCAGACAATCTCTACGGTTACTACATAAGTGACTTGTACCAGCTATTACGACTCCATCCCGTATACTTTAGTAAACGGTAGCCAGGGGACTCTCGATGTCTGCTAAGTTGGTTCATCCGTAAAACTCATCTTAAGGAGACCGTGTTGGGAGTTGTAGGTAATAGGCAGTAGGTCATCCATGTTACCGGAGACGATACTAATATTCACACGGGTCGAGCATTGTAACAAGGAACTCATGCTCCATCTTAGAGACCTTTCAATGCCTGACATCTGCTGTCAACTATGCATTAGAGTCTTATGGTCTAGCAATGTACTCTGTCTCAACTATATATGGATGGGGTCTAAATCTTATAGCGTAGTTGTAGGCGCTCGCTTTGCTAGGTCTTGGTTTGTCGATGGATTTCATTGTTCGATAGCATATACGACTGGAAGAAAGTTGGGTATGCCGCAAGCGAGGGATATCGAGTGGGCGCTCTACCTCTGTTGCTTGCAACGGCGGGACACGAACGACTTGATTGGATGGTATCCGTGAGACGCATCATTATAAGCAATACGGGCAAGGTACTGCAATGTGTCTTTAACCTCAATGAGATAAGAATCCGTCAGAGCTAGTGGTTATCGCACGCACGATAACGTGTGTGGAACTAACAACCGACGGGCTAAGTCACGGGTTTGATAAAGAGAGAGCAAAAGTGAATAATAGAATTGGCAAAATAGTACAGGACCGAATGGAGCAAGAATACAACACCTCCGCTCCAGATAAAGGATTACATTACCTGGGGTACATCAACATTATTATACCAATTCAATAAGGATGTCCACTGGGGAAACCCGCACAATAAGAGACAGGAATCTCCTATTCTACACTGAAGGCAGCATCTCTGCCGTGAAACATGTAGGCACGCAAGAAGCCGATATATTGCAGGGAATCAGGATTAACACAAGAACAGTTCAAATGTATCAGCATTAGGTACGGCTCAGAATCGGAGCTTTACTTATTTACACAACATCTGATACAGCTACCTACTGGACTACGGTTCAGAACTCGAGATATACTTTAAGTTCTTCGACTAAAAGCTGTCTCTAATAGACCTTCGCTCTGAGAGAAATGGTCACATCACAGAGACGGGAAAGGTTGCTTCTAGCGGACGCCCGTTACAGGGCTTCTCACACGCTCCCGGTTGATTCAATTGAACTTGTATGGGGAGGTATGAATCGAGCTAACGGCGCGTCTAACTTAAATCGGACACAGAGAGCCTACTAGCCTTTTTAAAATCAATAACCTATGTGGCACCAGTTGCAATTCTATAGCAGGGATATCACTCTACGATCGAGTAAGCGTGGCCGCGCGTTGACGGTTTCACTAAAGTACAACAGAATCGCCGTTCGGCTTATCGTCGAACCACGGGAAAGGGGTTTGATCTCAACAGCATTGTCTAGTCCTTCCTTTAGTGTGGGCACATCCGGGTGAGATCTCTGGTCTCGTACAGAACATTACTTGAGCTCCGGACTTCTTAAATATCGTTGAACCACGAAGCTGGTTATTTGAGATGCGGTGACTAACGCGATGAGTATGGACGTTTACATCCGATTGTAAGCGCCCCGTCAACTGACGGGAGTATCTATGGGTGTATTGGTTAGTGACATTGCACCGAAGATCTTGTCGGGTACCTGATAAACCGAGTAAGAACTACAAGACTCAAATCGACCGGCACACGAAAGTATCTACGAAATTAGCTTATTTTTAACCCCCATTGAACACCAGCATCGACTACCATATTGGTGCAACTGGCGAACTATAAAAGGACAGATCCGTGAACAGATGGCGATGGGTTACGAGGCCCATGCACCTATCTAATGCGGACGTACACTAATACTCAGTTTCCATGTACACTAATGGTGCCCGAGTGCTATTCTATACATCGCTCTGGACCTTGAGCAGAATACCGATAGAGTAGGAAGGAAAGTCTAGACTAGTTGCGATGCTTAACTAAGCCGCATATTTGAATTAAGGACGGGGTTCACAATCTTGTAACTGGATTATCAATCCTTTTGCTCTGAGTTGGTAATGAGCTAAATTCCTTTAAACTGCAACGATTACTGCTAGCCAGATGCGCTTTGATGACCGCAGAAACAAGTCTGTTCGCATGGTTGAAACCCTGGGTCAAGGCTCCATTGAGCCAACAAGGACATAAGATGCCCGGTATCTCAGAGCGGGAATAGAAGAATCGGTCATACCGGCATGTCGCGCTTATCATCATTAGACGCGCGTTCGACAACAGCCACATTGAATGCTGAAAAGTCCATAATCATTCAAAAAAGAAAGAGTAATGTTTATGGTGATGAACGCAAAGTCGCGGTAGTTCAGCTTACTAGTTAGGTAGTTACGATGCACATACGTCAGTTACGCACGAATGAAAACAAAGATAATTACAGCTTCGGGTATTTTGTATTTAATAAGCGGGGCGCTTCGGACCCCATTCGATAAGTCAGAGCTGTCAAAGTAAAAGTGGGGTTTCATTTAGTACTAGTTTGCAATAAGGGTTCGACGTTCTTGGCCTATCACCTAGTAAATTAGGAGTCTTGTTGACTAAGTTCCGGCGGATAACGACCGCGAAAGAACGGCTAGAGAAACATAACCGCTTGTCTTGCTGATAGGAAAGCATCAACAATGACAGATTATCTGCTGTAGACTTTGTGAATATCGTTTCGATACTGGAGCCTGCGCCGGGGCAATAGACAACCTACATGTGACATCCAGTGCGCCAAAGCGGCCATGTAAATCGTCTATCACGCAGAGTGAAATGGACGGAGGGTCTCTTTTGCGCGCGACCAGGTCTGACTGTGGATCTTAGATCTCGAGCCAATCAGGGTAAAGCTTCGATCATTATCGCATCAGAGGTTAAGTGGACAATTACAGGGGAAGATACTTAGTTAGATTTCTAAACCAAAATAGATAAGTCGTCATGATATACGACGTAACCTCGCTATACACATATGAGGTGTATAGCGAGCTTGTGTCCTGCCTTGAGGTGCGTTGCTTAGCAATAAAAATCTTGTCACCGGGGCATAAGTAGATACGACAGAGAGCGGATTGCATACTGAAAGGAAAATCAGTAATTAAACCTGCCCTGTTAGATTCTTGGTTTACGCATGCGCTTTAGTGTGTCTATGCTCCATTCGAACACTTTCTATCCCGTAACTGCCCAATTAATTAAGTGGCGGTTCAAATGAAGTAAAACACCTGTAAGCAAGGTTCGGATAAGAGTTCTTTTCATGATCAAAGAAACAGCTCCAAGTGATCATATAGATTTCTTCTCGCCGTCTAAACAGTAAGCGTTCACCTTCCATGTCCATTAAAGTCATGAAGGGTATATTAGACTTGTTTAACGAGCTGCGATCGGTGATATCTAATACATAAGCATTTGAATTACGGAGAAACTTGCTGGTGGCGGGTTGACCGTGGAGATAACTAGAGGGAGTTACGGGAATTTGATGAAAGAAGGATTCTAGTGTAGGGATCATACATCGCTTGATTTTCTATTACTATGGCAAAATAAAAAGATATCAGCATTAATAAAATAGATTAATCAGTTGATAGCATGTGAGACCACATAACAGTAGCCATTGATCATTGGGGATGTCATCAAACCCAACTAGGGACATTCACGATCCTACGATTCCCTACTACAGTTGGAGCATGCGCCCGCCTTCCACACCCATAAAAGAGACACCTCATGTTAGCACCACAGTGAAACAAATGAGTGAGATTGTTTTCAAGTTATGTGCGAGTTCCTAAGACACGCGGCCACGGATACACGGCCCTCGTTAAAATGGCAAACTGGAGTACCCTGCCCCGCGCGAAAACGTCATTATTAAGCCGTGTGTGAGAACTACGTCCACTCTGTCGGGCCATGTTAGTGAAGGCTGGAACGCAGGGTCGGGAAATTCTCAAGGCTTCTAGGAATAAAATAGAAAGGCGAAATGTCTCACGGCAACAAACCACCAGATAGTTGTATACTGACTATTTTGTTCTTACGGGCTGCTTCTCGTTTGAAAGGAATCTTGACCAACGCCCGCCGGATACAGTTTATCTTCCGATAAATCCTCTGAGCGGGGGTATTTTGATAAGGAAGTAAGCCATCAGGCGTCCAACAGCTTGTGAAGCCCGATCAAGGCCGATGGAATATAGTGTTAATGTATGACCCAATAATAAGATCTTCCCTAGGTCACGAATGTTGACTTGGCCCGGGTTCGGAGGAAAAAGTGGCTACAGAGGGTGCCCATTTTTATCAATCTAACAAAATCATGATATCCCTCAGAGTCATATCAGAAGGCCTACTCGATCAACATTGTAAAAATGAGCCACGTGTGCAGTGTTTATACAGATGAGAAGTTGAATCGATAACGAGTAGATTAGGCAAGTGTACTCCACCGCAGATGGATTCGTTGCTTCGACCTAGCATAAGTCTAGTCGGGGATCCAGAATGGCTCCATAGGATACGCCTACATGTGATGGGCCTTCTTTCTGCAATAGTTGTTGTTAATTTGGTAATTATTATTGATTCCACGCTTACGTATGGCACCTTATCCTTTTAAATGGCACGCCCCACTAAGTGACTTGCACAGGGGTGGGACAGTACATTACGCGAATCACTAAGTTTTTGGTCACAACCATGCACAGTCCCGGTGTCTAAACCGAATTCCCGTTCCTCTGATCTAGCAACAAGTCGGCTTCTTGTGTGAGATTGCGTTGTTGACGCAGATGATAATCGGGCCGCCAAGTATTATCCGCTTCCCAGACTGGTGTTCTTCAGCGCCCCTCAAGATTACCATAAACTTGACGGGTCAATCAACCGTTGTATACCGTTTGGTTGGCGGTATCCCCTATGAGAGTCAGAGTGGAACACGAAAAGTTGCTTCTTTTCAATAGTTAGATTAATGATGGATAGACGAGTTTTGCACGCACAGACTAGTCGGCTAATAAATTTCGAGGATGGTAATTGGGAGCTTCAAACAGAAGATCGCGGACTCGGCTGTCCCGATTGCTTCTACCACCATGCCAGAGTTCTTAAACACGCTGCGAGATAACTATGAATTTCAAAAAATCTGTGTATGGATAAAAGCAATATAAAACGTCATCGTCACACGCGCCGAAGTCGTTGGACTCACTAGGGACCGTAAGATCGGAGGAAGAATGTACACCCATACATATTAAAGGCGTTTGGGCAGAAAATCCATTGAAGCTTGGTGTGAATCAGCAGTGAGTGGAACCAACCTAGTTCTGGAGAAACGTGCATTGGTACTAGGAGGTGAATAGCCAAGGTTAGCCGCATACTTTCTGAAAGCTTAATGTGATGAGTGCAGTAGTCGAAAGGCCAGTGATGAACATGGGCAACTTCTTTGATTCAGTAACTTGAAGCCGGTCTTTCTGAATGCTCGGGTTACGAGACGCGTCGCCAGATTGGACGTGAGTATTGCCATTTACATGCTTTAACACTATGACCACGTAGTGTCCCCGGCCCCTTGACTGACATACTCTTAGGTGCGCGTCCTTAAACCACCATCGAGTGGGCGTTCCAACATACAATACTATCTATGACTAAGTATTTACGATAGACAATCGCCATATTCCGCCATCACCATGGTTGATAATACAATCATCCGTTTCGAATCAGTCTTAAACCATCTTATGTAAATTAATACCAGCTGTTCGAAGCGGTTTGAATCGTTAATTTCGAGAAGGCCTGGGGACCCCGTTGCCAAGCGTCGGTGGAAGGTGACGAACAGTTGGATTGGGAAGCACGCTGACGGAATGGTTAACAATATGTGCAGTTGTCCATTATAGAAGTCTGACTATTCAGATATTAAGTCAAATGCGTAGTCTTATAGGCGGTTAAAGTCATGCATGAAAATTGGGAACACGGTCGTTGGGCAGTTATAGCGACTGTATTAATTCTATGTAGTAAGTTAAGAATAGCGGTATCATCTAGGGCGAGATCCACTAAATACATAACCAACTCATTGGGCATGAGTGATAATGAAATGGTATCGAGCGAGAATAAAACAGAGGATTCACGCGACGTTATGAAAATCAGAGACTGCCAGAGGTCAACATGGAAGGCACTGAGGTAAACCGGGGAGAAGCAAAGGGTACCTCCCTTTGCGTACGAGGGACTACAACAAACTCTGAGGGAGGGTTTTTGTAGGAAGTAGCATAATATGAAAGTACAACGCGACTCTCAAAAAAATGTTTAGCTTAGCCTTCCATTACGATCGTTATATAAAAGTAAAGGAGATCTGCATACGATTAGAGTAACATTCCTGCCCGAGAACTTTAAATTTTAAAATTAATTGATTCCCCACGTGTCAGAACTTCGCGCAATTTCTCGTATAGGATCAGGCCACGTGACTGTGAAGATGACGCATAGAGCATTGTGCCTGATGCCGACTGTCGCCGTTTGTGCAATCGATGTGGCGTCTCTCTGTACGCTCTTATAGTCCTCCATAAGCTTAAAGAAGCAGTTGTCGCAGAAATTTCATGGTAAATAAACTTTAAACCGTGGTCCATAAGCGCTGTTTTGTAATTGTGTGAAAGTAATGAGTCATTCTCAGTGAATAGGGACCGTCCTAGTTCCTCTGGAACGGCCCGCTACGTCAGTGGTGCCCCAGAATCTCAATGCGTGGGTTACTGCCCATTCCATCGGTCTGAGGCTACTCTTGAAGGACATCATTATTCAGGGCTCTTCGATGTTTAGTAATGGGAATTTTCGCAGTCCACTTTAAAACGTTTAATTGCGAATGTCAGCCAGGTCGAGCTACCTCCCATAATTAAATCAGATCAGAATGAGGGCCGGGTGTTCAGAGTCGAGCAAGGAGCACAGTTGATTACGAACGCGACATGTAACATAGTAACATGTCATTGGAGTAGAAGTGCCATACTACGGTGATGCTAAACGGTACACCGTCGGCATTCCTTAGGTGCCCTACTAAAGAAATGCTTTAATGATGTTTGTAGCCACAACGACCTTTACCACCGATACAAGAACGGTGTTAACTAAAAGTCTAAGTGCCTTAATAGTAACCTGCGAAAGTAATGCATCTGGACATGTTAGGCGAAAGCTTAGCGTAGACTAGGTATTGCAGGGAATGCAATCCGTTTATGAAGTGGATTTGACAATGTAATAATTCACGGTCCAATTTTGGTTATATGCGTATGGGAGCTGCTAAGGAAGTAGAAGTATAAGCTCAAGTTAAAAAGCTGGGTTGTTAACGTGTTACTACGATTGGCTGGGAGGATGTAACCCCATGCTCTTTTACATATTTTATCGATTTGAGGTATTTGGAGGAATTAAAAACTAGACGTCTCCTACTAGGCTTACAAGCTCGTGGATACTTCGAAAATACCTGGGTTTCCATAAAGATTGAGTCGATACCCGTCACTCTCGACGTCCGAAGGAATTCGAGGACTTATTGAGAGACTGCACCCGAAGCCTTATGTCGAAATGCGGTGTAACACCACTACCATACACGTTTCAGGTGGTCGAACTCGTAGTCTCGCTCCGCCCCACGAGGTTCCGAGGTGAGTGATGGTATTGATTAGCCGACGGAGAGCGAGTTGGCCAACTAAGGAGTCGATAGAGGAAAACAAACAAGACAATCATACAGTGGACAGTGCCTAGTTCAAACGGGTAGACGAAATTCAAATCCTAGTAAAAGTTGATAGTGACATAGATGAGTTCACGTGCGTAATAAGACGAGATACGAGTACAAATAGTAGGGTATTTTCAGTGGAGATGTCCCTGGATAGGATACCGATCTGGGTTTCAGCCCAACTCTATTGCATCAACAACGTAAACCACCAAATAAACATCCATGGCATTTATTGCGGTCCCCTGCTGTACGTAGAGTCAATGTTCGGGGATATTTGCTTACCAACGCCTTTACAAGTATTTCTCTTCAGGGACTAGCGCTGCTCTGGCCCTTTAAAACAGCCAAGAACCAAATGTATTCCTGACGATAATTTATTATTTAGAGGCAGGGGATGTAATGAGTATAGTACGTTAAGACAGTAACTTCATATGTAAGACTAATAGATCCATGAGCATCTAAGGAAGTTCCATTAACGGAACTTGACGTCAAGGGAGAAGCGTCATAGTACAGTGACGAGAGTCGCAAAATCGACTGGTGGATTAGATAAGGAACCAACACGCGGGCGCTAATCGCATTCTTGCGTTATCAACGTAAGGACTTGTTTAGGGAAGGATACTGAAACACAAAAGTCACAGCAGCTTCCGCCTAGATAATAGACCAGGGATACCAAACACTTCGCTCGGCACGATAAGCAAAACTTCAGTCGACGGTCATACCGATGAGGACCTTGGTAGAATAACTACTGCTGCTCGGGCGAGTCGTCTCATTTTGCCGTTAACTGGGTATTGAGCAGTTTGGGACTCAACAGACGTGGCCATAGACTTGCCATGCCGATAACGCTAAAATTGCTAAGGATAGCGTATTAGATCACAAAGAGTTAGCCCACTACAGGCGTTTGGTGAAGATTAAATATTCAAATCGACTCATTTATTGTCAACGAAATTGTCCATAATTCGTACCCACTTTTCGGGTATACGGGCCCGAATACGCTCCAATAAGGTACACACAATATATTGGAAGTGTTAAGAGAGCCCCCAAGACCAACTTATAGAACGGACTGCTTCATTCTGTGACCTACTGCCCTATCGTGACGGTATCGATAACACAGGGTAGGTTTTGATTGGAAACATCATGAGAACACGGTGATACGAACCTAAGCGTTACGCTATTAAGGAAGAGAAAATTATTCGTATCTCAGCTCCGTGATGTATCTTTACCGTAAGGGACATAAGTAGGTATATATCCCGCCATACGTCTTGAATGTCTGCCCGATAGCATATTCAATAATTTATAAAATACCTGATTACTCTTGAATAAAAACTGTAGCTTACGTCATTCTAAAAATCGCCGGTTGCGCTCAAACCATAAGTATGGTGGCGTGAATTGAGTGTCAGACTCTGTTCGAGAACTGTTGTGTCAGCGAGGGGACACAGGAATGAAGCTGTCTTAGAAAGAATTCTATTCATCGTATAAGTCGCCTTTACTATAAATGGATTTATGAGGGGTCAACTTTCAGTAAGTTCAGTAACAAATCTTACGAAGGGAGACAGGTAAGTGGATGTAAAATGAGACGGGTCCTCTTCTTTGCAATCTTTACTTCTTTACACTAAAACGTAATTATTGTCTGGACGAGGTGCAGGGGCCAAGTGCGTAAAAGGCTCTTTGTGATAGTGCGAGTTCTGGTAGTTCGATTGGTTATGGAAAGTGTATTGACCAAAGTGTAAAAGAATTGCACGAAAGAGAGGCTGTGAACAATAAAACCTCCAAAAAACAACAGCGGTCCATTAGAACTTGCGAGGTGCCCCAGTTGCTCACTGTTATCATGCTTACGCATTAGTGTGCATGATGAACTTGAGTCAGTAGACATCCTACCCGCTCTAGAACGAATCTTAAAACGACGTAGGGAGGTATCCATTGAATTGTAGCATTCTAATCGTAAAATTTCAGCTAGGCTGACATTAGTTTTCTAAGGCGGGGTATAGTACGTCGGTCCTTACTCCGCGGAAAGGATTCAGGGCGTGACCCAATTTGTGGTTAAGCCTGTCTACGAACTTCTAAACCGGGGGAATCCCGGCAATTTCAGTGCTAACATGGGATACGAGAGTAGCTCACACGTCCAAGTACGGCCGAGAAGTTGTCGACCGTCAGTGAGGCTCCGGAGGTTTGTTACTGGACCGCCCAAGCGTAGGTGCAGAAACAGTGAGGCTTCGATCGGAAAGTACTATATGTGTGGGGACCATGTAATGCGTCGCAAATGCGATGTTTTTTGCAGGTCCATTACTTATATCGTAGCCCAAATAAAGCTCTAAAATCTTCTAGTTCCTACAGCTTATAGTTTGATGAAAGAATGTAAATGTGTACAACCCCGTCCCACTAACGCATACTACGTTATGATTGCCTCCCATATAAAAAGCTTGCCTAGACCCAAGGGGATGAAAACGACGAGGTAGATTTCCGGCCCCTTGGTGAGAAAGCGCGCTTCTAACTGCAATATGCCCGCTCGTGGCTGGATCTGCTTTTGGGCAATATCACTGCAAACATATAAAGGTCCGTTTCGCCACATCCTTTTAGACAGTTCTATTCAACGACGTGTAACTGTTATAATGCAGTGTTTGGCCATAATACCCCTGTGACAACACGTTGACTTTTTACCTAGCCCTGAATAGCGGGAAACTGACCATTTAAGATGAAGCCGTCTATCTCGATGACCTTAACGCTGGAGAAGAGACTTTCCGCCTCTTCCTCCTATATCCACCTAACAATGCGCATTTCTGCAGCCAATAAATAGCACCTTATTTCACCCCTGGACTGTAATCGTGAATAAAGACTGTAGTTGTCGGGGGGTGATCGCTCTTGATGTCATGAATAAGAACCCGGTCAGAGCTAATGTATCTAACCAGTAAACTCTACTGAGGGCCAAGTACGGCATGTAGATTTGGAAGCATCCAGAAGATCTGTCAATCTGTATAGGAGATGGATAGTAGCTGTTTATATTCGACGGCGTAAGTGACGAAGGCAATGTAGACCGGTAAAAGAACGGGACCAATTACCAAGCGTACGCTAGCCAGGTTGCCTACCCTTTAAATGTGAAGATGGGAATCTATTACTGGCTTACGGTAGGTACACGGAGACTGGGTCAATATATCCTTGGTGTAGTGTACCAGGGGTGGCGTGACTACAGGACACAGGAGCAGAACACAGAGTACTAACCAAGTTAGGTCATATAGGGGAGGACGCGTACTGTTTTTCATACGTGATTTTTTTGTTATTTGGCCTCTCGTAAAACAGTAGTACAGTGTATATGGAAATTCTCTTTTTACGAGCATTAATGGGGCCCAAACAAGCTACGGCCCAATTCAGACCCATCGCGTTGCATTTTTCTAAATCGCACGACGAGAATATCGTGAGAAGACCACTATAATAAACATCCAACGCTGAACGCATAGAACCATTACGACGTCAGATAGGGGATGTAATCGTCATCCCTAGCACAACTAGATAATGGCCCAATTAAATTCCTAATCCCCGTTAAATGAAAAGGACCTCGAGAGACTGTTGATGAAATCATCATGAAATCCGGAACGGCATATAACCCTAATTGAAAAGCTTCCCACTGTTTAAAAGTACCGAAAACTAAAATCATTTCCGTAATCTCTATAGCCCGACAACGAACTGGCCCCTCTCTATCCATTACATTAAGACGCACCTGATCCTAGATAGTACGGGCGATCCTGGGACAGTATTCGGTTTCGCAAGTGTACCAAACCAATTAGAGGATTGCAAAGCCGCCTGTGGCTCTGGGCCCAGGCTACTTATACCCTTGTAATTATTAAGTAACATGAGCTAAGGATGTTACAAAATAAATGGATTTTAACGCTTCGATATCATAAGAATTTTGGCTGCCGTTCCATAGCTAAAAGCATCGTCAAAACGAGCAAGCCTCTTTGATAATAACAAACCAACATCGCATTTATCAAAATGCGCGGAGTAAAATGAACAATCGTCAGCGCTACTGATACTGCTAAAATCTGTATATATGTCTATATATTCATATGCCCGCAAACAGGCCTCATCGCAGAATGATGCTTGGAAAGTAGTGTTGGTTAGCCAGGACAAGTACCATGAAGGGAAGGTCTACAAGACGAGCCACATGCTACTATGACTGATCGGTCTACTAGAATAGTCGTTGAGCCAGCCGCCTGCCTGAGTGGAGATCGTCTATTGCGACAGATCATGTCGCTCCAGAATGTTTCGTTGACGCATATATAAGAAGCGGATATTAAGAGTTCACTATTTCCATTTACAGTGTACTGGGTCATAACGTAATCCGTCACGACGGAAGGATTAGACCACGCAACATCGTCATGAATCCCACACATGATAGTTTCGTGAGCCTATAAGAACAAGGTTAACTGAATAAAGCTTAGTGTGGACTTATACAATCTTCATTTAGCATTCGGCCAAACGATGGGTATATAAACCATATAAACAGTGCAGAGGGAGCCAATAAATTCAATCAGTATGCTTAGGGCACTCGGGTTGGTTTATCTGGAGTGCCAGTTGCATTGCGTCGGATGTGTCAGCCGGACTCCGGCAATTACACGAACGAATATCAAGTGAAAAGTTACTTAGTTGACCTTTTTAAAGAGTGCATGAAACTCGCAGTTATGAATGATTAGTCTTGAAGTGAGCAAGCTAGGGTCACAATTCATGCACTCAAGGAACTCTACGATAGTGCATTGAAGATTACCTATTGATGTATATACGTTAAAATCAAGAATCCACGCTTCTCTTGTGTCGTGAAACGTGCCGGGCTAAAAAAACGCACACTGCCCATTTAGCCCTTCACTTGCCCCCCATGTAGCTGCATCACTTAAGCTGTCAATATAATTGGTAAACTTGTAGGTATTTGTTACTTACCAAGTCGCGACTTGTAAATAACCCGATGACGAATAATACTCGAACCGACACTTCACTAAAGTATGTTAGTAGGTCATCTCTCTCAGAAAGTGAACACAGGAGTAAACAGCCACAAATGTTCATGTGTCGACGTAATTATAAACGGCTCCAGAACATATCCTGCATGCTGATATTCACAATGTAACAACTAGAGCACCAGTAGATGGATCAGATTAAATGGGCAAGCTGGAAAGCTGCGAACCACAATCCTTCACCAGTTGATTCTAGGAGATTTGCACGTTAGCTAGAGCAGATGAACGGAGAGTTTCGTGGTAAGGGTAATGTTTTGAACCCTTCTATTGGTGGATATAGATCATGTACCCATCCAACTCCTTTCGTTAGCCGTAAGAGCAGTCATTTAATAACGATTAGGTTATTCCAAGCAAAACGCCAATGGCTGCTAAATATGGTACTGCTCCTAGTTAAGTAAATCTCTACGAGAGCGTGCCTATGGACGATTTTAGACTTAGGCGCATGTAACACCTAGCATGGTAACATCGCCGATGATGAAGTTGGAACAAAGTTGGGGCCTACGGCATATGTAACGAGTTCAAAAGACCGATTTTAAATAAAGACAATGCCCCCACTACAATACGATAAAGTACGTGTGTTCGGAGTGATCTCAACCTCGTATGCATGGCTACAGCTCAACCTAAAGTCTGTTTCCACTTTATATATCCTGTCACAGGGGGGGTTGCACAGACAGTGTTACAATTGCTAAACTACGTTAGCGGCCTGTAGTAGCATACTTTGGTATAGAGATCATAAAATAGGATCAGTTACACGACACACCGTCCCTGCTGCGCGAGAAAGCACACGAGGCCCCTAGCATGGATATAAGGATGGTGAATTTGTGGATGGATGTCACCTAGCGACAGAGGCCTGTTCTACGTGTTAGGGTCAAACTAAGGCTAACTCGCAGTATTCAGTAGGTAGATAACACCTCAGAAGGGGGACCATATTAGTTTACGTGATGCCTAAAAAACCTACCGGATGCTGGCCAAATGGACTATTGAAAGTTTGTATATTGGTCCATCGCGAACCTTACCGCATACCAACATTCATACACTGACGACTTTACAAACAGCAATTGATGGCAAGACGGATACTATGCGCTACTTATGAACTGAAGCAGTGATCCAACCGAACATAAAGGAGATGTGCCTAGCGATGGTTATTTAGGAAGTCACGATTTGATTGCCCTGTAGCATGAACGGAGAATTATACATATAGGAAACACTGTGTACTAACTACGACAAAGTGAGCCAGATTTTAGGATACTGAAAGTGTTGTTGAAATATAGCGTGCTACAAAGATCCGCCTGTTTTAGGTAGCCCATAAGATCACCCCTCGTCGTGGTTTATAGTTATCTGCCCGCGAGCGAATATCCGTCGAGGGCACCTTCTTGGTAGGCGTTTGTACTACGGCACACGGGATCATAAGAACCATAGAGTAAGTCACTGGCGTGTTGGCCCTAGGGGTGCATACGTTTGGGAATACAATGTCTGTATCAGATACGAGGGAGCTACATCCTAAAAGTAAAGTTAAAAGAGACCGCGAATGTTTGTACCGGTGAGCCGACGGAGACTGTGAAGAAGTTGTGTCCAGAACATGTAGTTGGATTGAGATCATATGGTGCTATGAGGACGAGGATCCTGAGTCAAATACAAAAGGCGTAAGGGTGAATATATCCACTTTCAACAACTGGCCGTACTTACAGATCATAACGACATATCACACAAATTCACATCCTAATTACTGACAAGGCTATTATAGAGTCCAAATAATAATTCGTAATGCCTATAAAGAACGAGATTAATGCCCGCTCTACATGATTGGGGCGTAGACCCTAATTAAATTAACTAAGGGACAGGTAACAAAACAATCCAGATGGTAAACCGACTAAGATTAAGTAGAAATGATTTCCAAAGCCACAAAGAGGCGAGAAGGTGACATCTTTCCTTGTATGACGACAAATGCAATCTTTTCCCACGTAATATAACTAGGCCATTAATTGTTAGCGGAATAAATAGAGGCGCGGCAATAACAAATCTGGGGCGAGCTATATCGGAAACCTCATGTAGTCGGAAAACCGCCGAACCAAATACTGGCCCAGTAGGAATCACCAATGTGCATGTGTCGAAATTCATCGCACTGTAATATCGCGTCTTAAAGAAGTAACCTTGCACCACCACGCTTATTTCGACGCATTTATACGAGAAAAGAGTGCACGATTATATACATTTAGCCAAACAAACGCGTGCAGTGAGTAAGGACAAAAAACCCATAAGTGTGTTACCATATTCTCTTCCGGAAAATTCGTCCACGGGATGTGCCATTGCCCACCCAACGTAGGTATACCCTAGGCGGATTAAACATGCTTCAGTGCTGAGAATTTCATGAGAACAGCCTGCATTATCGATGTCTTCCTCTGATGCGTGCAGTAATCGGGCATAAGATCCTCATAGTACCTGGTCCGTATTTTGGCCTGTTCTTTTTGTGTTTGATCTGATGGAACGCGACAGTCGGGGAACACCGAATGGCTTTAGTATCACCAATTCATTGTGAGTGGCCTTTGATAAAAAGTGGCACCTACAAACGAATCAGATAAGCTTTGTTAATCTGCACAAATCGTATAATACAAACATCAAGGATTCAGGTCCAGTTTCTGGCTATGACTTAAAAATTTTTGTCGTTAGTATTCACACGGAAATCTAATCACGTTGGAACATCGCTTCAAGGGTACTGAATCGCATACGCTGATGCTGGCGAATTCGCGGTGTCAACGCTCAGTAAGGTCTATGGTGTGACGCATCAGCTATGATACCGCTGATAATGTGGAGAATAACAATAGTGCGAGTACTTGAACCTACTTCAGTTACCAGTGATACATCGGTCTATCGAGTGAACCGTAGACTTGTGTATAGTTGCACAAGAGACGATGGAACCATGCACACAAACCTCTACGGAGACGAGCATCAATTTAGCACTGTTAACGTAACTGTGCTGTCATGGTGTTTGAGTATTTCATTCCCTGAAAATAACCGTCTTGCACTGCATCAGCCTTTGAGCTGATGTTAATATGCGCACAACTATAGTAAGTTTAGCGAAACCTCCTCTTCTTACCGGTGACTTCTAATGGCGTCCATTTCGTGATGACCCAGAGTTACGCTCCCGAACGTATGGAAGGTGAGTGCTTAACATGCGCATACATCAAGCCCCGTGATTGTATCACCGGGGAATATAGGAAATATCCTTACTAGTAGTCGTACTCGTATGCAGACTCGGTGGAAGTAAGCCAGGAAGAGTTCTATCATGCACATCAGTTAGCGGGCAACCAAACATAAAGCTGGATGTCTGGACTTTCCTAGGTCATAAAGTGTGATAATGTGGGAGAGGGAGCAATAAGTAATATTTTAGGCGCATAGTCATAACTTGCCCTTCGTTTCGTCCGGCCAATGTAGAATGCATATGCATGTTTGCACATTATAGGGTACTTGCATGAAATCATGATGCGGGGCAACCAAATGCCGTTTCTTGAGATCTGACCGTGTCAAGAAGGTCAGCCATACCCCTTCGTATTTTGGAGCCTGAACTTATTAAAGGCCCGAAGCATATGAGCTGAATTATCTAAAACGTCGTAATTCGCAAAAAACGCAGAACTCGCTTGAATATATAAGAACACCTCGATCGAGCGCCATGAGTTCTGAATAGGGTTGATGTCGCCCACCATGTTCCGGATGCAGTTGAGCTAAGTAAGTTTAATGGGTGTTAGGGGTATATCGGTAATCGCCATGTTCAAAGATCGTCGAAACTATCCATGTTGTGTCAACCAAATATGTCGTATTCATGGATTATGTTCGTGGAATGCCGTCTTGGTTAAATTTCTCATTATGTTTCTATGATAACACCATATAGTCGGGTAAACTAAGACCAAGCATGCTGGTACACCGGCCAGGGTAAGCCGAACGTACAGCGGCACGAGCTGGCCGAGAACGGCAGGATGGGATTAACTGGAATGGCCATCTAATAGCACTAGAGCCACAGCACGAAAGTTACAAAGCGACGAATGCATATAGGTAACACTCAAAGTGTAGAGTAACATCAAGGTCTAACCAAACGTGTTACAGAGCCACAGGGTCCCAAAATTACATAGGGTTCGTTCTGACGAAACGGGCCTCATAATAGCTGATCTCAATAGAGTGATGGTAGCTCATAAAACACAGGCTATTCTCATAGAATATATTCTTAGATACCGCACATAGGCTGTGGTTAACCTTAGGATATTGTATGTCTGTATGTCCTTGGAGGATTACTTTATCTTTAATGATATACTGCTTTGGAAGTATGGCTCTAAGTGGTCAGAATTCGATTTGGGCTACTACATTGGTGCTCGCTAATTTTTACCTCGAATTTGACTAACGACGAGATTGTTCCTTTGCCCAACGTACCAGACCAAGAGAAGGTTAAGAACTACTCCCCTCGATCGGGACAGATGTCCTTGCGGATACCCGTGAGATAGGGGAACATATCGTTTCTATCGATGAAGTAATCAATTGAAGGAAGATGCGGAAGAACTAACGCAGCATCTCTCTGCTATGGACTGATAAAGAGAATCTCTAGATTGCTGTTGGACATAGATGATTCTCTTTTCAAACGGTATGCCCCGCTAATGACAGGGCACTATATGCGCTAAGATCCTAAGCGTCTTAGGATAGTTGAATGAGGGCAGCGAGGGGGGTGAGCCTCCTAGGCACAGGTATACCACAATCGGACCAGCTTGTAAGGTAAACAATACGAGGAATAGTATCAATTAAGTCACGTACACGTAAAAGGGGGCTACGTAAAAAGTGACGACCTGTTCCAAGTAGATTTGTATTGGTTATCTTGATTCGTCGGTTCGGGTCACGTGCGAAGACTACGGTTCAGCATGTGAATCACGGAACATCAGCGTTTAAGATTTGGAGGCGAAATGCATATTAGCCTTTGGTTGGGCTCGGCTTAATGAAATTAGCTGGTCGGCAGTAGAAATCTGGTTTTCATAGCTTTAAAATTCTAGGAGAAAGCCAATTACGCATATAAGGTACTTTCTCCTCCCTTTGAAGAAAGGATTCCAACAAAGTATGCGCTTTGTAGAATAGATGTATCTACCGACCGAGGTAATGCTGTCTTAGTTTACTATGCTTTTGCAATGGCGTAATGTGCATAGCGAACAGTACTTATGTAGACATCCATCCCAGGGGAGAAGCCCCCGATATCCAATCAGGGCCGGATTTGAGATTTAATGATCACTGTGCTAGCGTCTCGCGAGGTTACAATCTAACAGTAAGTATGACCCAAAACCTCCTAAGGTATGCCGAGGGTCTAGCCATTATCGGCGCAGCGGAACTTTAGGGACGATGATAAAAGGAAGGTTGCCTAGGTAGTGTCATCATTTTGTAGGCGGTAAGATCCAGCTAGCATTATTGAAATACGCGGCACCGTCCGTTAAGGATACATCCTTTTGGATCGTCAAACCGAAGTTACGGTCACCGGTTGCATTTGAGTGGGACACGTGATACAAAGGGGACCTTTTCTATGCCCATAGATCGATAGTACGAAAGAATGCGAGTGCCAAGGTAGGTTACTAAGTCAGCGTAGAAGTCACATGGGCTGTTTAAATCGAAACATATTTCCACCTACATAAGTCTAGACCGTCCAATTCATTGAAATAGGATGTGTCTGCTGTAATAAACCCAAAGATGCGGATAGGAGCCCAACAGAGATATGGTTGTAGAGAGACATATCTTAAGTTATCATTGTTGCATGCGCAGGATACTGAAAAAATTAAGGTCACGACATTATTAGGAGGCTGAAACGATTCGCTAGGAGCGGCTTGGACGAGGGAAAGGGGACCGGATACTTTATACGTCAAACTACAGACTCCACTGAGTACTCCAGGGTATTAGCCCATACGATGACGAATTACGACAAAACTCACTAGTCTCCCTCTGGAGTTCAGTCCTCTTCTGTCGGTTAGCCACAATTTCTCCAACATTAGGAGGGCACACTAAGTTGTTGGGACAATACGGTGATAGGATGGAGATCCTCTTGTCGAACTTGGTGTCAATGTTTGACAATATCTATCAGATGGTGCCGAATATCCCCTATGGGAAATGTAAACGTTCTTAGGCTTGATACGGCAGCGGTCGCGTGCGCAAGATAGATACGCGCATCGGTCGTTGAGGGTACAGGGCGCAAAGTTGCCCGAACCATGCAGGGAGCGGCAAGAACGAAGCGTATAAGCTGTCATACCGGACTTACACACAACGAAGATCAAGCGATCATCATGCAGAGTCAAATTTGTTGATCACGGTCGATTCCATTTTGATTTATTGTAGCAAAACTGGCTAATCTAGTTGTGGTGGGCCAACCTAGTATGTCATATAAGAGACTTTTGACAGCAAGATATATCAGGCGTGACCGTTTATGGCAATCTTCATAACCCCTGTAAAGTATCTCCGTGCGAAAAAGGTATAAACGGGAGCGTGAAACTGCAGTTCTCGAATAAACTCGATCCCTGTTGGGCAGTAGTTCCGGAAAATCTGGCAATTGCGATCTTAACAAAAATTTGCTAAATAGGAAGGATAGGAGATGGGAACTTAAGTAGAATCCGAGGCTAGTTCATAGGATTAAAGAGGGAATCCCAGCCCTCAAGCACTATCAATGACATTATCGGCCCAGCATGTCTTACTAGGAGAATTACACAGAGCTCTGAGGATTTCCGAAATACATAGTAAAAGACACAACCAAACACCGTAAAGTTCAGTTAGGACTATATCTCACAGTTAGTTATCTTACCTGAGGTAAAAACGTTCAGCGACACACTATGGGAGACAATGGACCGTATCTCCGCGGTCATGCCACGGTGCTTGGCTTTATAGTACCTGTTCTGAGAGCTTGAACTAGTTCCCAATACTGGCAACCAACCTGTTTTGTGTATCCTCTACTTTAAGGCACTGTTGTTGAAAAAAGACCAACGAGAAGACAAAGATCAAGCTAACTTAACCTGAACACCCCCACTACGAACCTCGGCTGATTTGATGGCCGGTGGGTAAATTAGTTACACTAGGATACTAAACTGTAGCATGCAGCATTGTGAAAGGAGAATTGCCATGATATCTCACGTCCAAATGGATACTAGAACATCGGATTATACTCTCCGTAATGCTGGTAGATTTCCGGAGTCGCTGGAAACAGAACGATAAGACCTACTTCTTAGGAGACTAGATAAGTGGTCTTAGATGTAGCAGTCTGGAGCCAGGAGTTTAGAGCTATTTAAATAAAAGGTGGCAATTGTTTAAAAGTCGCACAAAGCGTTGTATTATCAGAAACATTGGTACATTTCCAAAGTCCATTAGTAGGCAAAGGAATGCGAAGTCTTTCTACCGTGATAAGCAGCTCATCAAGCGTCCGCACAGGAATGAGTCTGTACTATAGTGGAACCGAGCTTTCTAAAAGTTGCTCAAAGATTACGGAGACCATGGAAGTTCAAAAATACATTCGAAGAAGATATAGCACGGGTTGCAAGATAAAACGGTTTACATCTTAGAATAAGAAGCACTTCCATGAACCAGGCATTTCGTTGACCACTGCTTTTATTAGACGTAAGGTTGTTTTTTCAGAACCCGGCCCAGGTGGGACTATGCCACGATCAATGGAGAGAGACCCACATCAGGAATTGACGCTACGTGAGAGACCGAGTACCGGAGGATTTTCAGGATGGCTGCAAGAGCCGCGAGATATTAGCATAGGTCACTACCTATTCAAGCAATAACAAAGAATACCAGGTATACCAGTTCAACTACATTTCTAAACCACCGACGAGCAAGGAAAATAGAAAGAGTAGGTATCGTTGCCGAAGTGATTATTATTTGCATTACTTAGCGTAGAGGATATAAAGTCAGTACATGGGTAAAACTTTAGTGTGGCGATCGTGACCGGAACCGGCCTTTGTATCCACCCTTCTGTACGAGGAGAGTAATTTCAGCGTAAGTATGAAAACAGCCGTTGCAGCTGTAGATCCGAGAGAACGACAGTTATTGACTCTATTTTCTTCTATCGAAAGTTACACCCTCCATTTCTCCCAGATCGAGTTTAACAGCGTGTGCAACCCCAGTGAGATGAGGTTTAGTGATACAGAGAACGCGATGGGATTTGCCCTATGTTTGGCGCGTCGTTGTTTTTTAACCCAACTAGAGCTCCTGTTGTCGTCACCATAAGAGTAATCTTGTAATGCACGAGGATAAGGGTAGCTAATACAGTTAAAGATCTAATCGGCTCGTTGACCCAGTATACCTGATCATCTCGCAGAACAAGTACAGAGCTTGACTCTATTCTCGGTGGTCGCATTCACCTGTTCTCGGACTCAGAAGGGTACTGCTCCGTAGGAGAGTGTGGTTTGACCACTAATAAACAGCTCGATGAGTCTTCAGTGCTATAGACGAAAGCAGAAAACTGAATCAAAGGAAAGCGCACGTTTAGAATTGGGGTAAGTACTATCCTCTAAATAAGTAATGTAAGTGTTCTCTCTAGCTTGCCAGAAAGTAAAGAGCTTCGGAAAGGACGAAACCACATTAATCAGCTAGGTCTGGAATACCTCTGTGTTGAGTGCTCCGGATCCACATCGATGACGCATCTCAGTGTCATTAGCTGCTGCAGGCAATGATGCGGCCAATAGGGTTCACATTTTGCTCATTCCAAGGAAATTATAATGCATCCCCATCTTAGCTTACTTATAGTTCCGTATTGACGCAGAAGGATCCCCGCATTCTAATTGTGAGCACCGAGGGGTTGAAGCATCGATCCCAAACAATTGGAGAGGGGGAGGGACACCGGGAAAGCATGAACCCGGTCCGACAACTTGTGACTGACATTACGGTATAGTATCCTGGAGTACGTAATCTACTTCCGACAATAAGCCTGCAATCGCAAGTACCCTACATCTCATAAAGCAACGAACCAGATTACGGGGAGGGAGGTAATTGAGTCTAAGCCCTAACCGACAACCAGAAACTTGATCGCTTTTAATCATAGTAGTTGCGATTGTTAAATTCAGCACCGAAACGCCATTAACTTTTGGTTAGTTTCTCTTTGCGGTGATTTAGGTACGCGAAGTTCTCGAACGACTGGACTGCGAATACATGGTCGCTAGAAAACTCGTCGGAAAACTTTATGATGGGCAGAGGATGTATTGTAGATATACACCTTGAGCCTCACATAGTAAAGTGTATCCGGGAGTGTCGCAGACCAGTGACAACGTCTTTTTTTAGTCCAGGCACCATTTCACTCGGCAACTGTATACCTGCGTCGAGTGTTGGACCTAATTTCTGTAACCATTAATTCCAACGCCCTCACTAATAAAGATAAGATTGATTTCACGAGAGCCAATCTCTAAGGACTGAAAAAACCGCTCACCGTAGAGAACGAGAATTACTTCGTGTGCTGAGAAATCTCGGGAGGCCATAGCCACAGATGTACTAATCGTGACAAACCGCCAGATTTAGAGAGCTAGTTTAACCCTCCTGCACATATCATGTTTGAAATTTGCGAACGATATCGCTAAACGTCTAGTCTTGTGACGTATTACCCATAAAAAGCAGTTAGCATCGCCCCTCCAAAAGGCTTCAACCTTGCAAGCATCCAGTCGTCTGGTAGTGCAACCTGGAACTCTACGGCAATTGAAGTGACGAAAAGATCGTGGATTAGCCTAGGCATCACTAAGCTTCGACGAATTCGACGCTCAGCAGCACATAACTTCGCACCCTCTGAGGGTTAATTGTAACTAAGTACGAATGGGTTGGACGGTACTTTTATACACATTCGCGGGGTGTAAGACGAACTCTCCAGATCAATTTGGATCTTCGCAATCTTTCCGTTTATAGGGTGACAGGCGATCTCCCAAAATCAACCATGCTGGAATATGCCTTGCCTTCGCCTGCATGAAGTGCACGAACATAGTCTGCAGACCACACTAACACATCACTACAATAACGTTTCTCTTACAGATGCTTGTGCATAGAGGGGATTACAAGACTGGTAACTACGGGAGTAGGCCCTTCGCGGTAGTGTTACTATTTATCGCGGAACAGCACCACGCTACTGCATCGTGGAATCGTTCTTTAAGTAGAACTATCCCGGGTTCGTATCGAGTATCCCTAGTGCAGATTAAGAGAATTGGACCCGTTGTGAACAGACCGAAGGCTTATAATTGCCCTCGCGCTGTCAGGATCTGGAAACTTACCAGTCATCGAACTTTCACACGGAGTTCGTTTAAGGTACCCTCAATGCTGGCTTTATTCGCTCGAGAGTGCCGAACGTGAACTCCGTTCGGTCAACCGACCGTGTGTGATCATGTGGAGGTGAGCGGAAACGGTGGCAAAAACTTGGAATCATCATCGTTTGGACGTTTGCCTGTCACATGTTTAAATACGTATGTAGCCGCTAGAATATCATCGAAACACCGCTTGAAAAACAGAACCAAGCGAGCCCGAATCTTATAAAATGAGAGTTGTCGAAACTTTGCTCGCCAAAACCTTAAGTACGGTAATAGCGACCATTTCGCACTTCTTCTCCAAATAACGAAGAAAGTTTCAGAAGAATTCATAGTAATGAATACGACCTTTCGAGCGTCCGGTTCGTATGACAAGCGCTAGACTTAGTAGATACGCTAGAACGCACGTCAAGGTATTGAACAGAATTATGTTTCTAAGTCTTAATTATATTCCTCTACGAAGCAGGTTCGAAACCATGGAATCACACCGGACTGCATTTTTGGGATAGATGTAAAGTAATCGTCGGTCTCTTGTACGGAAATCCAGGCGAGGAATGAGTTGCTATTTAGAAATACCATGAGAGACTCCAAACGGGGGTACTGGAGTTGAGCTATTTCAACCGAATCATGCGCCACGGGGACTGTAGGAGTGGGATAGGTAATACTTTACTGGATAGCACCATTTATCCAACCTACCAATGGTTTATTAGTTCGTTATTTGTTAATACAGTGTAACTGGCTGGCATCTTCAAGGGTCCGTCGAGACCAGGTGGTGGCATGCTCGCCACTAACTTCAATTTCGGCACTACTGGTCATTAATAACAACTTACTTGCTTCATTGAAAAAGTGCGGAATAAACCAAGAGTCCAGAGCCTTCCGGCCTTAATGTCTAGGCGAAATAGGGGCTGCTTTTCCGATTGAACCACGAAGCTTGGAGGTGAATTTATTACATGACGATTCACACCGGCAGTTGTCATCAGCCAAAAGTGCGCCCTCTCGTCTTGTAGGAGGACCCTAAAAAGATTAAATGTGGCGTATCCAAGGAAAAACGGCTCAACGTCGGATTCAAAACACGGTTATCGTTAGCAAGAGTAACTCGGAACCTGCGTGATCGCTGCGAACCTTAATAGTTTGATCGGACTTTTATAGTTAAGCTAAATGGCATCAGGTGGAATTTAGCTCACCCGAAGCAGTCCTGACAACTACATTTCAGATTACACCAGAGTCTCCATAGCGCGACTCCAACGGCCCGCATAAACCGGGATGGTTAGCGCTCAAATGAAAGGTTAAATTCGCTCGCCTACATTGCGCAGATTGCATAAGTAAATCTATGACATGCAAAGAACCATTTCCAGGTCTCCCCTCATCTGTCCTGACGGCAACCCACATAGTGAAATGGCATTTTGCTTGGTGCACACATAATTCCAAACGACCGTTCAAATAAAAGACAAATGATTGGGGCTGCGTCATTGAACTAATATTCACCTTCACTTTATATTACGACATCTAGATTCACACATTATGTCGGTCTTATTAACAGATTCCAGCGTGATAGTGCAATAGTTCGGTCGCCACACCATAACGCAAAGCCGATTTAGGCAACACGACTGATGTAGCGGAACCGCTAAATGGAACGCTAACTTAAAACGACTGCACATTGCCTCCCAATGTCGCCGAACGCACCGCAGGCCAGATCATGAGGAAATTGACAACAGTCCCACCACTATTAAAAACCTCTCTACATTAAAGCATAGCTTTCTGCCAAGAACACGTGTCGTCTTGAATCACACAACTAAGTTTGCTGCATCCTCTACTGAATCAATAGCGGACGTCCCTCTGACGGCATGGTGGACGCAGGGCATGCGATACTTTGATACGTTGTCTTTCATTGCTTGCCCCAATCTCACAGGCCTACAACCAAACATCTGCCACGTAATCTCTAATCAAGAGGAGCAGTGACCAGAGACGGATTACGCAAGTGCGTGTAAATCTTATGAAGAAGAACTGAATTTGTCTATACCGGCCACAAATAGAGTACTGGTAAATACTAGTTTCTTAGCCAATGGTGCTTGTCCATTAACTCGACATCAGGGTTAGGTCCTAAATATACTAGATACGATTTCGAGAGGATCAAGCATGACCCGACCGTAGGGTGATATCTTTATCGTAGACCTCCCCAGACAGCATGTCGCAGCGCACCCCGTGCTCAACGGTTAGATGCTTAATTATCGCAATTTGAAGCTTCTATACTATGAGCAACGATAGTGAGGAAACAGTTGGTACTAAATGCAGACCGTATTTGCGTCACCCCTCGCCCCGGAAGCCTGGCACTGGTTCATTCTCATCCGCTGTAACTATTTCCAGTCATCTTTCTGTGTGTCGCGACGCCTGTAATGTAAGGGATATCGGAGGCTTCCTTAGAGTCAGTAGGGGGAACCAGTTAGTTTAAGCGGGGAAGAAGTTTGTGCAAAGTATTCCTATAACCCGTACTACTTCGTATCTCAATGCGAACCACTCATGGGCTTCCTCACGTTGAGGATGGACCCAGGAGCCAACTGAGTAATAGATACAACTTAAAGATATACCTCGACGAAAAACAAGTAGGAATAAAAATAGGTGATTATCCGTCGGTAGGCGCCCAGCCACTAGGTGCCGCAGGGATTTGCAGTGCACAATTAGAAACACTTATATCACTAGACAGTGTTACTGGCAGTCTCAAACGGAACACGTATGGCCGAAAAGGTATGACTCTCTTCCGTACGTAGAACAATAGACGCTAACGCCGGACCTATGGGATCGTGAACAACAAAGCCTCTACTTACCTATTTTAACGTAGAACCCGCTATAGACGGCAAAGAGTGGCTAAGCTACATAACAACAGGCTAGTTGCGTTGGGCACCAGTATGTTCGTTCGTAGTCAGTATTCCGAACACTTTCATTTTTTCATCGATGCTGGAAAACTGTACACAGCATTAAGATGTAACATGTATAGCCCCAAAGTACTTATGATACCTGGGGATGATACCCCAAACAGAAGAACACTATCGTTCTGTCCCGGACGTAGACCCTCCGCGACTAGCAAATCGTACGTAGGCAGGATCTAGATTATAGAGTTAAGCGATGCTTGGGAACATTCGGGTATAGTAGGGTATAGGGTTGGTGGTGAAACGAATATGTAACCATACGCCCTGTATAAAAACTGAGAGGACGTAGGTCTAACAGTAGGGTAGCTGAATCCATAGTGGAAAGTCCAATATAAATGGGCCCATCAAGGCTCTTTACTGCGTCGCTGTTAGATGTCGTGTCGTTTTTCAGAGACGATGTATATTGGCAACTGGCAAGACGTTCGGTTGATTATCGAGCCACAGACACATGAAGTCATAGATCTTATAATGCGTAAGCTGAAGCTATATTTTAATGAATCCATTCTACACAAGGAACTGATATTACCCGCTGTCCCATCGTGACGTTGTGATGCCTGAGTTCAAAGACGGCAAATACCGTTAACTAAAGGTTCGTCTAGCATAACGTTACCGGGGTCCACGACTTGGCGCATCCTCACCCGCGTGGCGGATAACCTACACACTCATACGCAGATAGATCAGAGAGACCGACATAAATCGGCATATCGGACGGGTGATTACATATAGCCTTATAAGGTGTCATTTTCACCGATCATTTGGGGAACCCCCGGACAAATGAAGCAAATCAATAATGCTGTCGGTTCAGTCTAAGAAATAAACGTGATTAACTAGCCTGTGTGCGTCGTGGAAGGGGGACAAAGTATAAAAGTTATGCGCTTAGCCATTGCTCTGAAGACAGAAACACTGGTGGCCTTAGGACGGTTATTAACTAAAGAGAAGGACTCCAGGATAGAAAACAAACAGAAAGCCTTACCAGTAATTAAAGGGTGAGACTAGTCTATTTCTGCAACAAACTGGTTTCGGATATAGGCACCACAGGCTATAAGCGTATCAATAATTTTATCGTTTTAGACATCTTCTACGTGGCCTGGAACGGTTACGGGCACCTCACTAGCAGATCAATAGGACACCAATGTAAGTGTACTACCGAACTGTCTCTAAACTATAGTACGCTATGACGGCGCCATGGTGTAGCCACGCGTAGCGCTGAACGATTCGTGGCTCATAATAAGTTCAAATTCTTAAACACGTGTACAGACGACGTTTAACACTCGAGTAACCATACTGGCAGATAATAAATCAACATCCCGCCTGTGGAAATAGTGCAAGTAGGTACCTGAGGAGTTCATGTTCAACGTGACCCACGCTCGAAACGTAGCAGCTTCTACCTCTGGCATAACTGCGTCAGTAGGGGAGATGAATAACGGGGACCTTACAAGCCTACAAGCATTTGTCATCTTTTATATGGACGTGAAGACCCTACACCCATATCGATGGGAGAAGTTGCAAGGATGGCGGAGGTTCGGTAGGTAAAAAATAGACCTTTGTGGAGCAAAAAACAGTCACTCGCCATTTTGCAGCAGCTTTAATAGAGGCCCCTGGATATAAAGCAACTTTTTCAAAACAAGGAATCAGAATGTCTCAGTGGTGTGTTAGTACTAACGAACATTTCTATTAACACCTGCAGTAACAGACTTAGGAACGGTGTCAATAAAACCCAGAATGTCGACCACTTAATTTCAACTTGCGTCCCGATTAAACCTACCACCCGCACGCGAGAACGATAGGGATATGAAGAAAGGGATATGGGCCCACGATCCAACGATTACAGAGCAGCACGTCCGATTTTGTCTTAATGAGAAGCGCCCTCGTGAATTTAGGGTAAACAAAGGCGTTTCAATCTGTTTGGAACCAACATTATTGGAAACGATACTTTACACGGTAATTATACTAAGTTTATCGGTGGGGATTGACAAAGCTCCCGGATCTCACTAATAATGCACTAAATTGGTTTCTGGCTGTGGAAATGACCAAATCTGTATCATTAATTGGAGCAATACATAGGGATTATATGCGATTGCGTGGGACTAAAGTAATAGCTTTCACGAATACGGAGACCCTATTTTGTCGTTGAAACTTGATTCTAATTTCACAACGCTGGCGAACGTATGGGGAGAACATGATCAGGACTGCGATTCATTGTACTCCTCTGAGTCAAACTATGTTTTGAATTAACGTATGGAAGATAATTTTACGTTACTCAACTAAAAGCTGCCAGAATTCAAACAACTGCTTGGACTGTCGCCGTGGGTCCTGGCGCGGTAATTAAACCTGAACTTTCGGATAGGCCCTCCGTCATACGCCAGGACCGCACGAGCCAAATCATTGAGTGCAAAAGTAACGATAAAAGTTTGTACCAAGTCACATAACGTGTCTCTGCAATCTTTCTTGCGTAAAGAACTGGTGTTATCTATTCGGAAGGTTGTAATCTTAGGAGCTTGAGAAGTCCTGAATACTTCAAACTGTAGACCGTGTCTGAACTCAATACTGACCTTTTCGATGTGGTTGACTAACCTTTAGTAATCTCTATTGTGAGGCTATGGGCACATCAATTGGAATTCAAATGCGACGCGATCCTGACGTCCTGGATGACTCTTTCGAAGTCCATGCAGGTGTCCAATTTGGAACTAAGTACGAAGCCGACATGGAATAGGTGGACTGCCTGGTTTTATACGAATCAAGACAACTTAATACTCATACTATGTGGCCTAATCAAAAAGTACCCACATGACAAAATAACTCTCGTACTCCAGAAGTTCTGCGATGATAAGGCGTTTACCACGGCCGTAAGTTAAATAGTTGCCGTAGACACGATGAAAAAATGATGCCAAGTGAATATATGTCATTCTGGCTGGCTGTGTCAGACATTAAGAGGAACGAGTGTTTTTAATGCGAATACTGCTTGAACGAGGGCTATTCGACCACTGTATGCCCGACAGATAGTAATCGACCGAGAGAAAAGAGAACGTGAGTATCACAGTAAGCACTGGTTGGTGGAGGATTATACTATGGGCGCGTAACAGAACGAGTAATCATATCAATCGATTAGACTGCATCAAAACGGGCATACACCGAAAATATTAGGATGTGTCTTAGTTGACGGACCTATGTACGTGGTCTGGAGTAATATAGGGGCACCCATGTCACCCCTAAAAGCGTTCTAATTGTAGAAATAGCGTTGATGTCACAACCCCTCTGACTTCGTCGATAGCGAAAGGAGTATTCGTGGCGTGAAACCAAAGTCTGCGTGTAATCCTGGCGAAGAGCTCCAAAGCCAAGGAAAGTCTACGCGAAGTATGATTGATATAGAACACACCACGGGAGACTTGTCCAGTGTTGGAAAATATCCAGGTATCTATGAGAATGACTATATGTAAATGGATTAAGATTTGGGATGAAAAGGTGACTTCCGCGTATTGACGGCGACGTATCATTTTATTCGCCGAAAACTTCGGCCGCGGGAACTTTGCCAAACCAAAATGCTTTGAAAAACTTCTAGTTGTGTATAGATACGGCCAGAAACAACAGGTAAAAATCGATTGTAGGACGAATTCAGCTGAAACAAACCCAGATATGGAATTGGAATAAGAGACCAATTGTGATGAATACACGTTCACATTTTTTATTGGTTCAGAGATCCGCAACTGATGAAGGATGGAATCTATTACAGAGCATCCATTTCAATTCTTGAGACATCCTACTGAGTTTCCGTCAACACGAACCGCAGATACGAGGCTTAGTTACACACTAGTTACCAGATTGGCTAGAGAATATGACCTCGCACTGCACATGCAAAACATTAGCAGCCAGGCAAGCATTACTATCTGTTAAATGGAGGAAGGCAAAAGCAAGTTTCTTAACGTAAGTTGTCAGTGACAATTGATAATACCTTCGGGTGCATGTGGTGATCTCTTCTGTCGATTCGCATGCTAGTATAGATTGCTAATGTGTATGTTCTAGCATAGAGCGAATCGTGCCTCGACGAAAATGGAACGATATCACAAGAATGTATTGACATCGTCCCGTTAAACTTAACAAACTTTGCCGTGCGACGTGTTCATAACCGAAACTTGCAAACCTAGTCGGTTTGGTCTAAATGGGCGGAAAGGTCCCAGTGATCTTAATATACATCCGCCCGGGTGATATTTCTATGTCCTTGCCTTCTGGTATACTAGTTTGTAACGTGATTTTCGTGAGAAGGAGATGTTACGTGTCCTCCACAACTTCCAAATTACCATTACTAACGCCTTCCACACAAGTGGCCACTTGATCTGTAAAACAGTCTATCAACAGCCAACATTGTCACGAATGTGTAAAGCCGATTAATCAAGATCAACATATACACTGAACTCGCAAGTTTAAGAAGTTATAAATTATATAGACAACACGATTAAAAGGCTAACATTTCCGAATTTACAATACTGGCGTAGGATGGGTTTATAAAGTGCTGAGCAGAGGTGGGGAGTCTGGACATAAATTGTGTAGATGTACACATGGAATTAGCATATTTCCTGACACGGAAATCAGCAGGATCGCCGACAATGAAAGCACCGATGGTCACAATACATTTGAACCTGTACTCGCAGCGTAGCAACCTCACGAACGTACCACAACGTAGTTACACTTGGGTTATTATTAGCGACGCATGTGGATGTTGCACAATGAAATCCATGTAGCTGGAAGCTGAAATTACAAGTCGAAAGCAGCCACGCACCGACCTTATTCGCAGTTAATGTGGTCTCACTCCGCATTGGGGGGAAAGTTCTACAACTCAAGAGCCGCAGGACACTAAATGTGGTAATTGGATATACTGAGGTCACATACAACAAAAGTATTCATATCTACGAATATAATTAATGTGCCGCCGGTAGTAAGGGGATGCGCGAGTAAAGTCGTAGCCCGATTAACTCACGGATAAGGTAGGGAGCACGTAGATTAGTGGAAATATCATCGCGCGGACGAGCAAAGCCCAGACGAGAGATGATTTTCTTGGTTAGTACCACATAACGACGCCAAGACTCATCTCGGAACTGGCCGTCTGTTGTTCAGTAAGATTTGTAGGACAACATGCCGCATTACTCCGGGGACTCCATGGCTGCACAAAGAAAAGGACGAAAATGATTGAAATAGCAGCTGATGCGTGTTATCGATGATCTGCGTACCTTGCTCCCACTTGAGCAAACCAATACGTCACCCCGTTGACACATATGAGGGTTCGCAGACTGTTGTCGGTGAGATAATGACTCATAATTATAAAAGTCAAAATAATACAGCTCGGCCATGCGGATAACTAGTTAGGTATACGATATCATTTACCTAGCAGGGACCCATAAGCACGTTTACAGATACTGACTACGTACAACGTAGTTCCGACAGAGCTTTAACAGCACGGGAGCAAAAGCTTTCGATGTCGAACGATAATATGAACTTACTCATCAGTTCGTTTGAGTGGGCGACCATATGGAGAAAGCGAAGAAATAAAACGCAAAGCTAGTAAATAACGACAAGCAATAGGGACCAACTGAAGATCGAATCAGAGATACAACACTGAGGCTGTCCGCCTCCGTGGTGTACGGTCTTGTTAGACAATAAGTCGTCTTTGATTCGGACCTCAAGCAAATTAGGCTAAAGAAACAGGTATAACCGAGTAGGACCACAAGATTTTAACGGACCAGCAAGACTCCTAACAAGAGGCAAGCTACACTTCGAGTAGCTCATACTGGATGTTGATTGAGGCATCATCGAAGCCCTTACAATATGTCTGCCTAGCATCGACTCTACAATACTAACGTGGATCATAATAATCGCAAATCACCGCCGGATAAACGAGGGCAGCACCAGCCGAAGACCAGGCCTGATCGCAGTAACTCAAGTCACTTTGAGGCCCGCCAAAACTGAGAAAGCATAAAAATATTTGCTATGATAAGCTAAGAATGTCACCTCACTGGTTTAGTCCCGCTCATACGTACGGTTAACAGCTAAAAAAAAGGGACTTCCAACCGACAGGCAGGACCACCTCAAATTTACAAATGCAGATAAGGCAAATGGGCTGATTATAACGAAACCAATAGCATGCTAACAGGGCTTCTCTACACCAACTAAGGTGAATGCAAGTGCGAAAATGGATTATTCGAAATGTTACTTAAAGCGAGTAATAGTCGCTACTCATCGACTTATTACTATCTAATTTCTCAGTTAAGAAACTTACCGTTCGACGGTGCGTTAACTAGGGTAATCATTAAAGGATCCGTAACAAGTTGTGTACTGCCTTTTTTAGCCACTATTTAGCGATCTTGTTGAAAGTTTCTGTTCTAAGCTAGTATCGAACTCCTAACCACCGGCTTATATTCAATCGCAACAGGTTATACCATGTCCCGTGCCAGCTTAGCGACTACCTTTGAATGACTGCCAAGGCGATAGATTAAAAAGCGCGATACTTGTACCCCTCAAACTAGATGTGGACGATTGGTGGCTGTCTGGGAGAGCGTTACTTGCACATGGATTAACTAATTTGCGCTGAACATTCGTTTAAGGCTGCTGCTCAATTGAAGGAAGTAAAATTTGTCACAGGGCTGAAGAATCCCACCTGACTTCCTTTAATCCTTATAATGACAAGAATCAGTTAACTCCTGAGGTCCTACTTAGGTAATTGCAAAAGAATGTACCACTCAATTGCGTGCAGATTGAGCTTTATCCATATTGTTAAGTATTAACTCGGATGGAAACCGTAATATACGCATAAATGTGAATAGGTAATATAGTGCTTACACCGATAACTCCAATGCTATCGGGGTTGATGAGAGAGTCGGGAACCGGAAATCTAAAGCACACGGGTATGCACTAATGTTTCCCTACTTAAAGAGGCGCGGTAACCCCCATAAGAATACCCGGAATACAAACTTAACGCGATAATCGTACGGTAGACGCAAACGGTTAAGGACTTTGCAGCAAGTACGTAACATAGGGGAATAGTGCTTATTGACCGGATGATGCATTGACACGACGGAGCAGGCCCGCCACTCTAATTGTACTCATTAAAATACTGCTTGAGTACGTGACGAGCGTTTACCAAAGTTAACTCTCGTACAAGTTTCGACCTGTAATTGGATCGGTCCTTAACAAAAAATGATCTAAAGTCTGAAATGCTTTCAGCTGATTGGCCGGTCAGTCTTCTGGATGTAACAGTCTCCCGGTAATGTCAACGGACCACCCCACAGAAATTTCCAAGCATACAACGGTTCGCGGAATCAGATACACCTGCAAAAATCCGGACAATATTATCCTCCATCGGTCAGCTTTCCAAGGGTCAGTCTGGCCCCATGTGTGAATCGCGAAATGTAGCCCCGGGCACCGTGCAGTTAAAGGCCTTAATTTGTATAAAGTTAGCAGGTGCGCAAACGATATGCGCAGTTGTTTGGTATTACATGAATGTGCGGTTGATTGGATGTTAGCTTACCATATCAGTAGAAACAAGCGCGATTCATGTCCGTTTGGTAATTCGTGACGAATTCTGCAAGGTGGAGCTACGGGCGCGGATGAATAAGTGCAAAGACGCTTCGTGGTTAGGCCTAATCTTTTCAGATCTAGTAGCGTTCCTTAAGAAGGTATTGCTACCTGTGTAAATTCTTGAACAAATGAGATAATACCTGCACTTGTCGGGATGACACAAAACAGAGGTTTAATTGGATTCGATGCATAAACTGATTTAGGGATAGCGGCTTCCACAGATAACCAATGCTGCTAGACAACGGGTAAGGAGTAGTAGATTCTGTATGTACGACTGGTCTTGTTCGAATGCGTGTCCAGTTATATCCTTGAAGTCTGAACGGCTGCATCTCATTGGAGGATTTGGGAGGCTGGGATCTCATCCTGCACAATCAGCATACGAAAACGCTTTAGGGCTCTATTAATAAGCCAACACGTAAGTTGCATTAACACGCTCCTATACCACGATGATGTAGTCAACAGGTTCGAACTTGCACCGAAATCATCATTACGTAACTTAGGTCGCATCAAGAAGTAGTATGGGTAATACTCAATGGAGAGGGCTTTAGGACGTCGCACCAGAGAGGTGCTTGTGGACTCCCCTGTCACCAAGATGTAGTGAGTTCTTCTGTATCTAAAGGTGTGCATTAGTGGTAAGAGCCAACGAGGTGAGGGGAGTATAGATTAATTTTTTCTCCATTTTCCACCATCGCAAGGCCTAGCAAGACGAAGATGTTTGAGAAAAAGTGAAAATGGTCACGAGTTCCGTGAGGACTTGTACCTTGCAATGAAGATCTAACTTATAAGCTCCAGATCAGCCAGAATGTAAGACGCAACAGGGCCGCTCCGAACCAACAAATTTGATGACTTTCTGGAGATTGTTTACATATCAGTCACCATAGGATTGACTTATTGTTATGGTAGCAGAATGCCAAGAGATTAATAGAAAACGTGTCTCTGTTGTACAAATGAAACAACCGATCGGTGAAGTACGAGAAAGGCCTGGGATTGCCTAGAAAAGACTTTCTAAGATGTTTGGCTACGAGATGCCCTTTAGCAGGCCTAGTAGGCTTTGCCGCACGTCCTCAGCTTGATTCGGAGGGGGAGGATCTAATATCGTCTATAGCAGAAGCATGCAATAAGGTAGAGGCCCTTGCGAACGTGCAGTACGCTTTTCGGGATGTAGAGTTACGGCAAAATACTAAACCTAGAATACCTATACATGACAATCTTTCCTCATTGAAAATCTGCGTTAGAGTACTGACCAAAAAATAACGATCTAGATGCCGCGTTGGCAGTGTCCCACTTATTCTCCACTGGCAAATGTGGCTCGCATCCTAGGCTCTCACGAATTGAGAAGCGCATCGAGCCAGCATCGCGGTTCTCAATTACACTGTGATTGGGTCAGGAGGAGGGAACCATAGGTTACCAGAAATTGAGGCCAGGGTCACCCCATGGATAGCGCTGTAATATAACTCACCTTTATTTGACAGGTATTATTTATATTCGGATTTGATCAATGATGTGTCGATCCGCGGCTAGCAATATATTATAAGGATATCAGCGGGTAGAAAGATGACAAGACCCTGCGTGAGCTGTCGCTCTGCTCCATGCGAGTACGAAGTGTCCAGCGGCGCCAGGCGGGTACAAGGATCGATAATGCACATTATTATTTCCTGCAATTTCTGTATGTATTGTGCCGGGTTCGTAGTAAGTCAGCGCAGTTTTTGTAAAAGAAATCTTCGACTCTGGCCGAGCTTCCTTCCTTGCTAACAAAAACTAACTTCAACTCAAATCCCTTCATGAGTCCCACGGTATATTTTCGAAAACCTGACAAGCAATACTTGTAGGGACCCAGAGCAATCCGCCATCCGTGACTACCTTCCTCCCGAGCTACGGTTCTATCACTGTTAGGAACGAGCCCTGGGCGTCTAAAACCAAGACTCGGATAACAGGGTCGTATTTCAACGGCGATTTCAGTTATGAAAAGTGGTTGTGCCAGGCCCAGATAAAGGCGGACCCATGATATTCACCTATTGCCAATCAGCGGCACTATACGCCAACGGACTTTGATAATGGTGACCTTAAGACGGTCTGCTTTATTATATCACTGGCGTCCAAAGAGAAATTAGGTAGAGACCGCTATATCACGTGGATAAGTTCAGATAGCGCACCTGAAAGATCACCCGAACCTGACAGTACCAGATGTCCATCAACCTGGTCCTGAATACGTGGGGGAGAGTTAGGAGCACGAACTTATAAGAACCGATGCTTGATCACCAGAATAGTTAACGAATAGGAGCGTAACAATAGAGTCAAATCAATTCACGGATGGTCGAAAGTCTGTCTGTGGTAATTCAGCTACAATAGCCACTATGAGTTCTAAGCGCGGTAAGCCCTCCCATATACCTTCTGGCATGAACACTATACACACTGTATGGGTACAACAAACGCAATCAACTTGATTAGCTTTTGCCCGAACTTTTTCAGTACTAATATTAGCGACTATATCTATTGTACTAAGGAGAGATCAAGCAGACCACAGAGTCCTAAAGGAACCGAGAGGCCAACGAGGCTTTAGAAAGGTACTAGCCATATTACCGGACATGGTTCGCGTTATTCAATGCTGAGCGTACATCTTCGGCTCCGAATTGCATGAGAACCATGACTATGCGCGTTAATTTATATACATGAGCAAAAGCGGTATTGATCGAATTTTTGTCGGTTCTACAGTAACTCCCAAGATTTCGGAATAATCTAAGTCCAACCATGAAGCGAATAAGTCCTGAAAAATCATACTACCAACGAATGAGCGGAACTGTGTAATAAAAAACTCTACATGGGGTCCGGGTACAAGTCCGGGGGTATGGATCAAGTTGAAGATTCCGATCGCAATCTCGGAGACAAGAATTGTACGTTATTAAAAGACATAGACAATACGTGGGTTTATTAATTTGAATGATTCTCACATAGTTCATGTGGAAGCAAGTTCTAATGACGTCTAGACTCCGATTACGCGGCAAAATCGGAATTGTTGTCTTAATGCCTCACAGCGCATAAGTGTAAGTACGACTTAGCAAGTCATCAGAGTAACACTCACGTGTGGTACTATCATATTGAGTGCATATGACACGAGGGATCTATAGTCAATTTCGATAAGACCTCATACAGACGATCCGTTATTCCCGCTGTTGGCGATGTGACGAAACTCACATAAAGCCCACACGAATAAATGACTCAGTAAGGTGCTACCTCTCTGAGGGATAAACTTGTGCAACGAACAGCTTTTACCTCACAACGCCTGGTTCCGAATGAACAACGTCCACATCGCACTATCCCACGGGACTTACTAGCGATGTCGTTAATGAATGGCGCGGACATAGAACCTAACCTGTTGCGGACCGCACTTACGCACTAGTAAGTGAGTCTAGTGCTCGCATATTCCATCAACGCAAACTCGCGGCTTGAGTATTTTCGCTAAAAAACTTATATCTATCCGATAGTAAAAAAGAAATATCCCGGGGCGCTGTGACTACACTTCCAGACAATGAGATGAATTACTGTCATTCTGTGTCTTAGTACCGCTCTGCAGCATGAAGAATTCAACCTCCTATTTCGTGCTCGTGATTTAGTCTGTACAATAAGGCGCCGGTAAATAGCGTCTCAATAAAGTCTATACCAAGGTCATTCCGGCCTAATCTCCGATCAGAATTTGTTTAAAATCCAAAAAACAGAGATAAAGAAGTTTTTTTCGTCTCTACGCCAGCAAACGTGGTACTCGAATCGCGGGGAAAGTGTGTCAGCCCATTCCCATCCCAGAATCTTCAGTGCCTCTGATCACGACGCAAACTCAACCTTCTATATCCAGGTAAGATGTGGAGTGCCGTGCTGACCGCCGGAATTTCCGAGGAAACTGCATAAAGTTGATGTCGGCTGAACCCTTCGTAAGCCTATGGACAGGCATGCTGCGATGGTATACACATGGCTGAAGTTGGCCGCACGCTGAGGGTTGTGCTAGTTCTCCAGCGGTCCGCAGGCGTGGATATGCAGGAATCTATAGTTGTGACAACACCTCTTCGACATATATCATAAGGCTCAAGGGAGGATGTCTTTTATGATATAATATATACGTAGTCCTTAAATAAAGCGTAGCATGGTTCTGGAGGAAGCTCCCTGAGCCCCTAATCCAAGAGACGATCCTGACAACCGGGCCCTCGCTTCTGATACTCGCCGAACTTACATAGGCCACATTTAATAATATCGTGCGACAGCATGGTATTGCTACTTTACACAGGACAACAAAGAAATGTGTCTGACGGGGATCATCTAACATGTGAATGTGTGTTTTATCATTTATTGTTATGCGCTAGAATCATGGTAAGTAGCCCACTGCTCCGCATTCGAAGTACGGAGGGAAGGCTGAAAAGTGGGGCTTGAATTCCGACAAACTCGATGAAAAACACAATCAGTCGACCCGATAAAGACAATTACGATTATGACGTGTGTACTTTACCTGCCCGTAACAGTATGCCATTCTGACTCCGTATTTATGTTAATTTCGTAGTACTTCAATAGAGGCAGAAATCGGATTCCAGTAGACTCGCAACGGTTACTCGTACTCAACGAAACACAGTATATCGGTTTATTACCATGTGATGCCCACCCAATCGAGAGTAATCCCCCTCTGTTTGTAGATATAACTTAAGCAATTAAGAAGGCAGTAATGCTTTCTCGAGGGTCCGTGCAATGCATAAGATTTGGACTAGGCTGATCTGGTTGTACTACACATCTTAATTTAGCAAGAACCCCCAGTGGAGGGGCGAAAATTCACCCTGTTTCAGCACCAGAAATATGGATTTAGTGGGGTTAGTAAGTCTACATTTCGGATTGCACACATGGGGGGTGCTACGGAGGTGGAGTACCATTAGCTATATATGTGACACAATCATGGGCATAAGCAGTTTACTTGGCGTGACCGGTAGCTCGTAAGGCGCGATCGATCGAGCCGTAAGGCGGACCAGGTAGCACATGATAATTTAAGGTTTAGCAGGACCAATATTATGGCCCGTATATCCAAACTACATTGACGACTTTTGTTATTATCGGGAATAAATGGCCTCCAATGATTGTAAACTAAACCTTCTTACTTAGAACTAAACCGGCATATGGATTTTGAAGTTCACCGTCTGTACTATATTTCGTTAAAGTATGCGATTCGAGCTAGGTTCCGATTTCCGAGACATTATGTCGGTTGGATCCAAAATAATTATCCAGTGATCTGGGGGGAGGGTCGGAAAGGTGAGAAGTGTGCTATCTAGACGTTATTATTCACAACACTTGGAGTTTCATAAGGACAGTCAGACTCTATATATATGTGGACGCACCGAAGGAGTCGGCTCACTTAGCCCGCATTATATAACACTGTTTTGCTGACAGTCTGCACGACAACTGTAGCGTGACAACCTATCCTAATCCGAGACCTGATTTGGGACGCGGCCAGGGCAAAATGTGTGCTTCGGTAGCGGATGGATTGCGCGATTAAATGGCAGTACACAAATTGCGGAACACTGCAGCTTCTGTCTATAATTTTAGTATTTATTCTAACATGGGAGCGTAATGTGGGCCGGATCCGGGAGTGGTTTAAATCTCACTTCTCATTCTAATCGACGATAACAAGGCCTAGATAACATTCTCGTCAGAACCGATTCGTCTGGCGGCCAAGTGTTATATTATGGAGTCTAAATGTTCTTTGGGCGCCCCTGGGGGTGACTTGAGTACGAGCGACGTGCGCGTGGAAGCGTCACAAACTGTAACATGCTTCAAGTTGAATGTTTTAACAGACTGAAATACTCGAATATTTAGAATTGAGTCAAATTTACCCTGGTCCATGGCACGCAGCTTTGAGCCCAAGGCTGGATGCGTTTTGTTGGGGCGTCCCATTACTTGCAAAATGACTCCGTACAGCAACATCTTATACTTAAATTCAAACGCACCTTTAAGCCGAAATCTGTTCGATTGCTTTCATAAGAATCATAGTAAGCCTTTGTGTAGAGCGAATGGCGATTGTAAGTACTAGGCGAAGGGTGGTAACACCGAGAACGATCAGAGTTGAAGACAGCGGGATCGAGTATCCGCGTACGTAATAGCTGATTCTAAGGTGTAATTTTGTGAGCATGATATCTAATATGATTCCCTCCAGCAACGGCTCGAATAACTGCAGCGCGGATAACTAATGGATCTATTTTTACTGCGGCGTTAGCCAGCAGACCTAAGGGTGACGAAGCACTTAAGAGCAGAGGATACCGAAGTGAACACCACAGATTAAGTTTAAAAGCCACGATGAGCAAACTCACAGCGCCACAGAGTGTCACGGGGTAAGCGCACAGTAGTTATAATCATCTGAAATATTAGGGTACCAAAGAGTGACACGAAGACCACATACTACTTACGTTCTGAGAGGTGCTCAATGAATCGAGGCGCAGCTGGAAGAACGTAACGAAATGGCGATGATAACTTCAACTGCTACTCTATGACCAGACAGAGAATGAAAACTTCATAGATAAGTTAATGAACCCTCCCTTGTTAATTTTTCTATAAAATAATTAACGATGTAGATACTCCGTGGCAAATACTCATAGATGAGTGGAGTGTAGTGGGCGTGTCTCTTCATGCTATATATGGTACGTCGATATGCTGCCGTTAACAAGGATAGCATAAGATAAGTCGTCCGCATAGCACAAGCCTCAGAGAAGTGATAAAGGCCGCGTACCGCATTCCTTGGTAATGAAGCGAGAACAATGTCCAATTTGGGCCTAGATACGTTATTGATAAGATATACCAGAGCCTCTTGGATTTGCGGCCTGGAGAACCCCGACTGAACAATTACTTCGAAGAGTCCTCCCTTGATTATGACTTATAACAAAACTTTTTCTCTGACTAAGAAAGGGACCGCTGCGAACTGAGCCTTCCCGCCCGCGCGAACGCTAGGCCGGTGTGAAAAAGGTCAGTGGATGTTAAAACGTATTGCTCCACTGAGCCTAGACTATTGTCGATATCGCTGTTCAAATGGTAATTACTTACGTCATGGTTGAAGGTCAACCATACCCGAGCATGGATTATAGTGTAGGGGTGATGGCAAAAAGGATACAAAGGGGTGTGCCCTACACGATGACTATCTGATAATAATAGGGGGGAGCCAGCACCTCCTCTTCCTACCTTTTATCCCCTAGGGTCGATGTCACGTGGTGCTGGTAAATAACCTAATCCTATACGTTGGTTGTAACGTAACTAGGAAGTACCTTATGATGAAATTGGTTCGGTCGCAGGATCTAGGGCCACCAATGCTAGACAGCAATGAGTTGGATCATTACAACGGGTTCCTGCAAAATTGGAAAAACTGGCCTTGTGTGGAACATGTCTAACTGTTGGTTCGTTAGATTAAAAGAACCCTGATCAATTACTACTGAGGTGGTGTGCCGGAATAGTGTGACCGTCGATCAATCACATCATATCACCTGTACACAGCATATAGGGTTATTAGGAAAGACTGCTCCCGCAGATTAAAAACTAACACGTCTCATCTCTTTGGTACGTCTTGCCTATAATAGATTAGTTTAGGCAGCTCCTGGAACTGGCTCATTCAATAAAAGACTTAGAGACACGGATACGGTCCATTAGCGTGTGGCATTTATGCTACACATGAAACACTCTCTAGTTAGCCGGAAATCTTACCATAGTTCCAACGCAATAACAAGAACCGTAGACGGATCGAACTAACATCTTAATATACATGTGTAAAAATATTAGGCGGTTTGGGACATCCAAGCGATCATATGTCCTCCTGAAAACATAGCTGACCGGTTCAGTGCCTCTTGTCGACAGAAGAGGAGGCAAATCGTACTGTAATGCGCTCTAGTCCTATTAGGTTACGGAGGACTTTTAGCCAAGACTCGTCAAGAAACGATGCAACTAAAAGAGATGCACGGAATCCTTAAGGCATTCGATGAGTACCTGGCCATGCGTAATTACTGTAGAGGCCCCACCTAGCTCTCCGTCGCAGCTCAAGCTATATGGCCGTCACTGTCCACCCTTTACGTTTCAAGCTACTCACACTAATAGAGGTACTTAACAACCTAGTGTCTTGATGCCCGTATCTCATAGGCGTCTAGCATAACTACGATGGACACGTTATCTGAGTCCACAAAATTCCTAAAGAAAAGAGACTTATATAGTAGAAAGGCTTTTTCGAGACAGCTAAATGTAAACCTAATCAATATGTTGCGAATTAACTAGTGTCATCCGTACCAAGACGTGTGAAGTGTCTACTGAACTAAAGGCTACTCCATGATAGGTATGTAAGGTGCGTTGGAGTGTGCGCTCAGGTTACCAGCACAGAGAGGGTATTTCTACAAGCTAATACCTAGCGGTCTAGTGCGGCTTAATTGCTTAATCACACCGAAATTATACAGCTGCCATCGGAAGCGGGTCTCACTAGAATTGAATAACAGTGAAACGTTACCTTAATATTTACCCATTTATGTGAAACGTTTTAGGTCACCCCCTATTTTTACCATCACATAAGGCTGGTACGTTGGCCATGGGATACAATGGTCGAGTAGATAGCCATATAAGACACCACTTACGCATAAATCGTAGGCTGACGATAAATTGTGCTAGGAGATGTAGTAATCCCAGGAGTTTTGGCTTACCGGGCATTCTTTTTTTTTTATTGCCCAGAGTTAGAATATATGAGGGTCTTAGGCTAATGTTGACAGGGCTATGGTCAAGTTATTATGTGCTTTAAAAGAATTACTCGGATATTTGGTAAGGTCGATCTTTCAAGAGCATACTGCCCAATTAGCGCTGTTAGACACGTATTTTTCCGGGCATATAAAGTAGGGTTTGATGAATCTTTAATAGAATGCCCGCTCCTTCCTGGCTACCCCGTAGAGTATGAACTCTGATACCCATTCTTGTAGACAGGTTCAATAGGGTGTCCATTTCGAACTCCGTAAAGCGACAATGCCAGACTCAAAGAATTTCGCTATCGCATGAGTAGCCAGATTACGTAGCGGGAAAGGTGATGCGTCGAAGTTAGATCGGAATCCGTATCACCCGCGATGCGAGTGATTGTTTATCAGGAATTAACATGCCTATACTTTGTGGAACTTCCCAATGGTTATAGAGTGTCTATGATCGACTATACACCAGCTGGGTATCTAATTGTATTGTTCACCCAATATTGAGCTAGCACAAGAAACTATGAGCAATTCCATGCGAACAACGTTTCCTCATGATTTGAGAGTATATACATCAACCCCCCAAAATGACACCTGACAAGTTACGCAAGGCTGTCTCTGCGTCGAAAAGACCTGGAGTATTGAGCGAGGAACGTTAAGAAAACCTGAAAAAACATCTGCGCCCATGGTCGGGAATACTGAAAATTCAAATCACTGTGCAAGGCTCCGATGATAAGTACCCATCAGACCCGGCTAGGGACACACGAAGGAAACTACTTTATCGTACCTTATCTCATAGCATGAGGTATTTGACTTAAGACCAGTTGAGTCGGAAAACGCCAATAGATTGGTAAGACCATTAATCTAAATCGCTGGTGTAAGCCGACGCCTGTCCCCTAGAGATCGAAATACATAAGGACATTATTCTTGTTCCCTTATTTGGAAAGTCGCTGGGGGATACGTCTTTCTTGCGATACTTACAGCGTTTCACGGCAGACCTAATTGACTGCGAGGGACCACCTTTATGCTAATTTCCACATTAAATAGAAAATTAATCAACCTTCTCGTTCCATAATGCCTCAATCCTGTCATGTCTAATGATTGCTTCTCGCAGAAGCCGCGACAAAGAATTATAAGCATAGTTAGGCCACAAACGTCACTGATTATTACACTGACTTGAGAGATCCATTCATTAGAACGTACGGGACTCTTCTTAGAGGTTATCAGAGACGTCCATAGCGTTGCTTACTCAAACTAATGACAGGCAGGAGTTAACCCGTACAGGAGTTAGCGTTACACTCACATGTCTCAGAAAAAGTGTTAGTAATGCCCTGAGCATAGCAGGCAATAGATTGCCCCTTCGATAAGCCCTGTATCATACGGAATAAAGATAAAAGACAGACTAAGCATCAATTAGTACTATGAAGTTCCCGCAGTAGTTTCTTATGTTCACGTTAACCCGGGTAGAAGCTAACAGTCGGAAGATTTTTAGCATAAGAACAAATTTCTCTAAGATTGGGGTAGATGTGTCATGCCAGTATTTGGACGAGGTTGGAACTTACTATTCCATGGTAAAAACAGTACCTCTGGAGAATCCTTAGGACTGGTGGACTAGAATGTCTGTCAATATTCTGTGAAGTGCAACTAAGCAGAATCTAATTTGAATGCAGATGACGCCCGGTTTTGGGGCTGTTCGATGCTGGCATTAACAATAGGAGTTATCACAGATGATGCGTAATTTCATTGTGAAACATACAAACCAGAGGCACCTGCTTTGGGCTGTGGAGATCATTTTCACTTCAGAGGCAATCTCCACTCTTCCATCTGAACCTAAAACGACGAGATAGTATGGAATAATGCTGGTCTGTCGCCCGTACGCTACTAAGTAAATATCAATCAAGGAGATTGGCCAAAAACATCTTGTAAATGTAAAGTTTATGAGGTTGCAGTCAAATGGACAGGTGTCAGTTAACCCGCAATAAAAATTATTAAGCCACACATTAGTTGCAAATGTCTACTATGATAAAGCCTGCGAAACGCTAATTGGGCCACTTAAGTATGCCAAGAATTGCGACTTGTCTTACAGTATCTAAACTTATATTATCAAGCCATAGATCTTAAGCATGTCAGGAACGTTGGTCACGTTATCACCGCATTATGTGTATTGGCCATCAACAAGCGCTAGCGATAAATTTGAGTCAATTATCTAAAACAGATACAATTTCAAGTTGTTCAAATACTGGATAGCAGTGTGTATAGCAACTGACGTCGACCATATAAAATTCCTGTGACTAGCGATCTATTGCGTGGTACTCGTTCAAGACTTAACATTCACGGAAGAGGCAAACGGTCAAGACTTATTATAGATAATAAAAGATCTCGGGCTAAAGTGGCTAGTATATTTTAGTTTCTGTAACCCTGAAATCGACTCACATGTCTGGCGGCGTAGAAGACCGAGTCGTTAGATCCCCTAGTGGGTGTAGTCAAAGCTGGTTCTCTCCGGCGCACTCATATTCCGAGATAGACTATCATGGTATGATGTTAAAGAAGTACTTCGACGAATACCGCAACGATGCTAACTCAGGCGGCACATTATGTAATTACGTGTACCACTACAGATACTGACGGCTAGAATTAAGGCAAGTGGGGGATAGACTGCGAATTACGCGCAACGCTCTTGTTAAAATCGCTCCATTGTGGATTCTTGTCCATTAAGTAAGGGTATCAGCGAGTGGTTACAGACTTCTTACAACTGCAAACTCCCGAAACGTGCGATGAAAAGCACTGCAAACAGAGTTAGTTTAGGATTAAGTTGATCGGTAAATTATAGGGCAATTAACTTCCAGTTAAGCGGACATCAGCATAGTTCTCGTGATTAAGGTCAAAGCATTGTAATAGCATCGCAATAGTCTTATAGGGGGTTCCGAAAATAGCATAGCATCCGCGGGTGAGACTGCTGTAACGAGCGCGTCCTATCAGTGGCAATTCTGAGACGGCAAATGACCATACGGATAACAGCATATTAACGGAGCCAACTATAGCAAGCACCCAGCGATCTGGTTACCCTCAAACTGAGATAACAATTAGATAGGACCATTAACGGAGATCGACAACATCAGTTAGTAGGATTGTCTCGGAGCGAGTATCAATATCAAGTTGGAGCACGGTGCGTTGGGTGATAGTTGTACTGGCAAGCAATATAGTCTAGCATAGCGTGAAACTTTTGTACCAGTTAGGAAAAATAAATCATTCTTCCAAGACCAACACTAAGATCGTGGTTAAAGTAAACGACATACCCAATACCCAAGGAGGATTCGAGGCAAGGTGAAAATGTGCAATCATTTTCTACTATACGATAAGGGCGAGACATTATGCGTCTGCAATCTGTCTATTCTGGACCTAAGGCGAGCTGTGGATTTAATCCCTTGAAACTTATCTATTGCACGTTGAAAGGAAGCTCAAACCGGTGACACCTCCACGCACACTATAAGTCATACGAATTTGGTATAATTCCCACCTTCTTGAAGCGTTGGAGAGGGCGAAGTGGTATTTGGAGTACACAATTTTCAATCATCTCTTAATTTAACGCGGGTTTGAAGATCACATCAGTACGAAGTGAACGAAAGAAGCGGGAGAAGTACTACGCTAGGTGATGGAAGCACGGATTACCGTTCAGAACGAGCCCGAACAAGATTTAGCATTTCTACCTTTATAACGCAGCTTTAACGCATACATCTCATATAATTTCCATCACATTGCCAATCATAGATTATAAGCATTGAAAAAAGCGCAGATAGTGACAAAGACGGTAAGCAAACCACTCTGATAATCTTTTCTTTCATCACATCCGCATTGGGCATAATAATTTAACCTTTGTCGCAGAGTGTTGACCGGATGTAGAGCTCGGCGCGCGGTGGATATTTGCATTCAACGTTGGCGCTAACTTCTCAGATGCCTAACCCAGCCTATGGCTCATGTAGCGTTCCTAGCCGAATAAATAGTCTAAACCCGGCTTAATCTGCCCGGATGTTCCACCATCACGCACCCTGTGATCTTGAGCTGCGACCATCAATACCAAAAGAGTGTTTTGTGCCTCGTTCTCTTGGGGTCAACTCCAAGATGATACCATCAAACATCAAGTCTAGTATATCTGTCAAACGGTTCTTTTCATTGATTAAGAGGTTTGATGCTATTTGTATCGGATAATCCTTGTAGATGGCACGATGTGTACAGAGAACTGACTTGTATACTAAATTCAACTTAATCGCATACTCACGTACGTAGATCAGTCACTTGATAAAAAATAACGGGAGATCCCTGATAATTCCGGTGATGTCAGGCCATCGATCTATGTGCCTGGTTAAAAAATTCGAAGTATACTTGGTCCCAGAATTACAATGACACTTCGGCACGAGCTTGCGTGACAGACATCGAGGTGATGATCTAGGTAGTCAAATGAGGGGCATTAAGCTTAGTCAGATATAACGAGTACAAGGATGGCCAATCCACCGGACTCTCGAAATAGCTTCTGTGCACACGGGGAATGAAGTAGCAACACGGGAGGCTACCCTCCCCACTCTTCTCTTTACACAACTTTAAAACCAACCGACATTCCAATTCAGAAGTATAGCCATTTGGGACTCAGGTGTTTGGGATCCGATAACAATAAGAACACACACAGATGGTCGGCTGCCGTGTAAACGGTTTTTATCTTCAAAAGTGCTAACACCCACTAGAAGGGCAAGCCCTCCGGTTGCAACGTCTCGTTGGTTAATGTTTGATAGCGTCGTCAACGTGGCTAATAGGCGTCTCGTCCGGATGCGAGACAGAGATGGAGTTTACCATTGTTCGACTGCATTATCAAATCAGCCCGTCTTCCGCGTGAAATAAATACATGGTGATCTCATTTAAAGTTTGTTGCAGTTCTGTTGAAAAAATGTCGATGTTTAATGCGCCTAGTATACATGAAATATCTGACCCAACAACATAGCTCTCCTTCTGTAATTCTTTTGGATTAGCCTGCCACGTGAGAACAGTATATTGATGAGGAAACTTATCATTCACGGACGTAATCTAATATCACCCTACTAGATACTAATAAGGCGAGCGGACAATAAACATGGCGGTCGCGATTAGGACCCCGAACCGAGTCACTGCGGGTTCACAGAACATGCTACCTGAGTTGCGTGTTGGGCGAATAGCTAGCCAGTTGAGAGTGAGATTCAAAAGCCCATGATATCAGGGTTGCCTACGAAGGGTAGTTTCAATACCATTCATCGAAACCAGTCAACGATGCGAACGTGCTGACTAGTAAGCGCATATAAATCTGGGCGACAAAAAATCTGTGCAGTGTGCCCTACGACCGTCACTCACAGACAGAGGCGGTGAACAAACAGTCCCGCTCAGGCTATAGAACCCAAAAGCATGTTAGGGCTGTTTTACTTATGAATTTACTAGCAACTATACACTCTACAAACCAAGGCTATGTGGACGTGAGTTGTAACATGGCTATTAACATTCTACATTGACTAGGACCAAACTGATGATGTTTGAGTTAGAAATATAACCCAGTGCAACTGATGCCCCTGTTAGGAATGATTAGGTTTCATGAAGGGGACGGCTGCCACACATCATCTTTTGAGCACAATTTTTAAAACCCAACAAACTTCCATTAAAGCACTGCATCCTGTGTCAAATTGCCATTGACCTCAAGTTATGGAATTCAAGTTACCGTCATCATCAATAACTAGGGCAGGTTATGTCAGAGTAACGGCTCTACCATAGCTGCGAGACGGTGTTGGCTTGGCGGTGACCGAGGTTGGATATTGATGGATACTCTCTATTTGTGAACCACACACGACCCACGCCCGACCTCCTCCTTTAGAGCCAAAATTTAATGATTCCGGATCGAGTTAAGTTATTAACCTCAGAAATGCTCACCAGCATAAAGATCTTTTATGGGTGGGATTACCGCACGGATCAGTGGACCAGTCTAAATATCGTTAGCAAAGTCGGAGAAGACCGATTACACCGCCAGACCAATAGGTCGCAGGCGTGTTCTTGTGCAGGAAACTAATCATAGCCAAAAAATCAGCCCTCGTGATGGTAAGTCAATAAGAGGTGAGTGTTGTCTCCCAATTTATTCATTCTGGGACGGGACCGAGTTGCTCTTCCCTTCACATGACATGTTATATCACAAGGCGATTGATTCAGTCAATCTGAACGGGAGTTACAAAACGCTCCTTTGAGATGAGAGAGTATCTTCAAAGTGAAGTAAGCAATAGCTGGAGTCAGTGAGATAAATTATTCTAGGTTCCTTAAAAGGTTAGGAGGGCGTCCTCTTGCGCGGTGGGATTATTCGGCGATTTATTGTGCGAACGCCTGCTATATCTGCAGAGTGAGAGCTACACTCTAGAACATGCCACGTCGCAACCTCGCAACTAAACGATTTCGATACACGAGCACGGTCCGGTTAGTACCATGGGCCTCTGATACATCGAAAGAAGGGTCCCTTATGGGTGATACGATGTCTTGGATGTGTTCTGTATACCCTTGTCATTGTCCTGCATTAGCTACTGGAAACCTAGACATTAGACGACGTTCTGGTCACCACAAAGGATCGTCCCTTGGAACTTACGCGCGTTATTCTCGTGAGGGGAGTACAGAACAAGACGCGAATCCAAGCAGACTAGCGGTTATAGGTACTGCAGTAGACTGGTTAGTTCCCGCATGTTATAATTCGTCCATCTGTCATGAACCACCGAGGAACTAGTCCCCGTGTAGTACCACTGCCCTTTTAATAACTAAGGTGATTCCAGTAGTTCTTGTTAACAAAAAAAGGTTTGACTTCTAGGTGGAGATCATTTGTCGACCAGCGCTCTCGCTTAAACGGAACATAGATTATATAACAGATAGTGCAAAGGTCACCCAGTACGCTCCGGCAGCGCATAAGAGAAAAGAGCCTATGCGGGACTGAAGTAATTGGGTTCATACTGGCCTTTTTTATAATTTCAGATGGTTGCGAGTAAATGTTGGTGAGCTGCACAAGGCTCGTTATTTTATTATTTCAACATTAATTTCCACATCACGCTCGTGCACACGTTCCAAGATAATAGGAGCGGATTGTCTAACGAGGATAAAGAAAAATGTGCAGACGTCCCTGGAGTCTGCCACGCCAAGAGCCGGCCCATCTCTAGCAGCGGCGCTAAAAGCTAGCAGTTCTGCTTTCCTATGTTACTATTGAGTCTGATTGAGGAATTCATTATATTCGTCTGGTCCTGCTGAGACTCTGTGCTTAGTAACCGACTGTGAATACGGGTCGCCTAGTTGTCTGCTACGGAGATGAGGCGCACCCTCAGGTAAGTATTCTGACTCGAACGTTAGCTACTTGGATCCGGAATCACCTTGTGTGGTAACCCTACTAAGGAGTCATCCATATTTATTGGACCCTCACACTGTTACATATACCAACATATAGGTGATATGTTCTCAAACATTGCGTGACTGTTGGAAGTTGCTATGGATCTATGCTCACACACACAACACGACCACTTTTTATAGAAGATCGCTATAACGCTCGAGGTGACCTTGGCTTTCGCCCGGGGACTGTCATCGTCAAGGCATGCGTAGTGAGTCTACTCATATGACCACGTACGAGAGCAAACTGTCCAAAAGTATGCAGTTCCCTACGTGCTAATCATTGGCATTTCGCTAGCTAAGGCTATTACTTACGGTCTTGAGTCGCTCACTACCGACCCAGCTGTTTGACGATGGAAGACACTAGTACGAATGTCACTGATCTCTCCTCGCATCAGTTAAAATGTACATCCAAAGTTCGGCCCTTTCTATTACTTATCTAGTTTCTGCCGGGGTAAAATCAACGTGGAAAGCCACCTACGAGTTGATAACGGACGAGAGCGAAAAGCGCGTATGGTGTACCACCAATACTGAAATAATTTACTGGAGTTCTAATAAATACCGTCTTGAAACTCAAGATTTGAGGGAGTCTCTGGGTGTCCAAGCGTGCCGTGTAGTGTGAGGCAATCTCGACCCGAATTGAAACAAGAAGCGGACAACCGGAGCCTATAGAAACTGAGCATCATCAGCAGTTCACCTCTCCGCAATTAATCTAAAACAGATCGTGAAGAAACGTCTTGCATATCATAAAATTTGAAAGAACACGTCTGGATCCAATGAGTCTATGGTTAGAATGTTGAGGCTTTTGGCGCCGTCCGCACGACAGATGTGTGAGGTAATCATCCAGCAACTTTAGCACGTCCCCGGACACACACTCCTGCGTTGACCAGTTGGTTTGTCCACCTCATTGAGGTAGGGTTATCTGTAGGATGCGAGCATAGTGTTTAGATGATTACCAGTTATGAACTGTAGTTGAAGCTTTGTTAAGAAAGACTGTGACTCCCTCCTTTATCAGGGTTGGGTTCTACTGCGTTTGTGCATCGGCAAATAGTTGGTAACATCGAGCGACGTGCTGGAATCTAGGCCATTGAGGATACGTATCAAGAGCCTCACGATAAGTTAGGAACTGCTAGTAAGCACATCGGTATCCAAATTTAGTTCCCGACGTCACTATAGCATTTCGCACTGTGGAACGTAGTTGCACTGGTTGGGCCCACTCATTAATGTTAATGAAGGTAGGAATCTCAATTCCTTTGAGTAAAGATTCCTTCACCAACTGTTGCATAGAAGACAGGTACCTAGACACATTCATGGTAGTGTCCCCTTATTATGTTAATAATAGAGGATGTGATACCAATACTATAGTGACAATAAAGGTTGGGGACGACACGAATTTCGACAGACGCTCGTGAATTGCACAAAGGCCCATGGGCATCAAGTCTCCCAATTTGGTCGACAGCTGATGCATCAAACAGTGATCTAAAGTATTTGGGGCATGGAACACAGCATCAGACTGACAAGCATCCTGAATTGACACAGTAGGAAACGCATACGCGTGAGGTTGAAGCCTGGTGACAATAAACAGCTCTCGGAGCTGATTAACTGGTTAGTTCACTCAGGACGTAATCCAAAAAAATAATTACATATGATTGAACTTTAGCACTAATACAATTCGGACCAGCTCTCACACGTAGTTATCTATGCAATAACCCTTTTCATTTTGATGTCGCTAACATAGCAAAGAACCAATTCGGCTATACGTCAAAGTATGAACCGGTCCAATCACAACTTAAGCAACCCAAGCAATTTCTCGTTGGTAGGTCGTGGTTGGTCAAAAGTGGATTTAGTTAGCTGTCGGCCGTATTCTCTAAATCAACTAAAAGACTATGATTCTGAGGTGGACCTCCGGATGTATTATTTAGTAATTGGAACAAATGAAAATCTTAATGGTCTCCCATTAAAGTCAGAATGTATAAAGGGAGCGTGACGTTTAGCAGCATTCTAAGCCCCGGCAATATTGTATACCCTTGTACACGTTGTTCGGTCTGGTACAAGAACATTGACAGGGCTACAATACTGAGAATAGACCATAATCCAACGATTCCGAAGATACTCTTGAGAAACGCGTTGCGAAGCGGAGCGTATTATAATCCAAGCTTGTTCATCACGGGGTGCTAAGGTACAGTCGCCTGACCGGCTTTGCCACTAGTTAATGATCTCCTGTATTTAGCATTCCGTAACGTATTATTTTATTCCTTGAATAATCTGAAATCAGCGCTTTCCTTGATCAAGTAATGTATGGGCCGGATACAATTTCGGTGTATACGGCGTCTTGTCTAACTTATGCACGATAAGTAGCGACTAAAATCAAACGCTTGCGTCGTTCTTGCATCGTGTACACTAGCAGGAAGCCGGAGATTCGATACACGCAAAAGGGGCAGCCCCTTACGGCAGTGTATGTGTACGCAAAGGAAGAATCCATCTACGTAAGGAGTTAGTTCACGGCTTCTATTTTAAACAACGTTTGCCCCCACACCCATAACTTCAGATACCAATGTACGTAGCAGGCGGAAGTCATCCAATGAAAGATCGCCCCAAAATCGATGGAGTCTTGAGATACGACGCGGACTATAACGGATCATAACGTTTCTTAGGGACGGAGAGCCTCACAGGTAGTGACTGTAAATTCGCCCATACCTAGCAAATTCGAGGGGGGACCGTTGCGCCTACAATAGCTCGTTAAGAAGAGTAAAGAGACACGGCACCAGCGTTACCCTATGCAACCGAGTGCTTGTATACCTGCACGATCTGTAGGTAGATATTGGCGACTGCGGAGAAGCTTGAATATAACCAAAAATAGGCCGCGGAGGCACTACAAGGAATGCGTTCGAGGCTTATTTTAATCCTTAACGTTACTGCATTAAGCATTTGCAAACTGGCGCCCGCATAACCATCGGTGAACTGATTCGAGGTAGCCAAATCTTTTATAATTCTTTGTTTTCACTTGATCGTTATAACCGATCATATATTCCGCTGTTTTGTTATTTAATTCCTTGTTGGGACCCGTGCTGGGGTTAATCCGTACATAGGCGAATAGTGCTGATCGGTTGGACTGAATTAGCTACTGGATTCTCACGCTCTGATTGTGCAAGGCCTGAGCCGGCACGTCTTGTACGCTATTTATCGAATCCTCTAAACATGTCTACGCACTGTTAATTAACATATCGAAACTTTTCAGTATCGATATGTCTCGCTCTATATTGATAAGCCCAATTAACGAATATAAGATCAAACTTTCCACTATCAGGTACCAGTAGGCCAAAGCACGCGCGTAACCGGGACATTACTTATAGTTCATGTACAATGATAGATTGTGCATCAATTATATAGTGCTACTGACGGCTTAAGGACCAGTCAGCCAACTAGGGGATAATATTCCCAATGAAACATCATAACTTTTCCTTAAAGACTTGGGGTTATCAACACGCGAGATTCAGCGGACCCAATATAGAATCTTGCGTATGTTTATATCGGGTGCATTCAAGGCCAGGCTACCTAGGAACGTAGAAATCTGAGAGGCAATGGGTAACACTGGCAGCCACAACGTTCTGTGATAGAACCGTATACCAATGCTGTAAAGTAGTTTCTGGAACGATCTACATCATGTTGTTCAGGACCCGTGCGAATTGACCGCCACGAGTACTACCTCACAAATTTGGATTACATCGAAGAACCAATGATTCAAGGTACCTTCTGCTGTTCTGTGAGCAAACTACGACATGCCATTATGTAAATAGCAGCCAGACCCTTCCGTGAACACAGCCTCTGAACGCATAGTCCCACCACTGTCTGTTTTATTTGGACATCAATCCGTTTACCTTTATAGGAACCGAGCAGTTGTCCCTTGACTTTTAAAAGGGATTGTGCTTTATATTTAGGTGAAACCTATTTGTTAGGGAAACTATAATGTGTTTGTCCAATAAACGATTCGAATAAGGATTTTTATTTATAACTCTTCACCTCCGCACCGTTCGAAATGTACAAATAGGAGGGCTTTGCACGCGAAGAAGTGTGACTCCTGTACGTGCCGGTTACACTAAATTTTGCGAATCTTACTACTTTTAGCGATTAATTAGGTGACTTCCGGATGATAAGGGTGAGACTTACGGGAGAACCAACTAGATTAACGCCAGCCCTGTAAGGAATATTCCAATTCTGTACGTAGATTTGATGACGCGGAACATGAGCGGTGAGCACAAACAACGATCAATTAGCTATCATAGGTCAGGCTGGATATCCAAGTCGTTTAACGACTGTGCTCCTAGGATGTATTATGAACCGCTATCGACCGAAAGGTACGAGTCTCCATATACGATAGTATATACGAACTAACGGTGCTCTCATTATGATGGTAACAGTAAGTTTTTATCATGTATAACTAGGAGTATGTCTTGAATTATAGGGCGTAATAACATGCAGGAGACTGGAACCCTATTGAAGTTTAGGGCAAACGCTCTTGACATATTAAGAAAAGCGGTTGCAACGTAAATGGTCTCCTCCAGCTGCGTGACAGTCTGTGAGGGGCCGCATTTTGGTTGTAAAGTTAGTGTAGGACACCACAAGTTATTTGATTTCGACGTGAACATGATACCGCGTGAGGGCTTCGCCTGGGATCGTTCCAAACATTGTGTCTCCGTGAAGTAACTTTATTAGTTATTAGACGTGCATTAGATGTTTGTTTACTATCAAAATTATGGCCAGAGGCCATTTTGTCGCTGTGGCAAGAGAGAGTAACCAAAAGGCGTTTCTAACCAGCTCTCGGGCGTAGTAAGCGACTCACCGGTAGAGCTATGTTTATGATCCCCTGACCATTATATGCCAGTAGTTTCGGGTAAACAGCTATAATTTTCCCACAGTTCTTGTCTCAGATTGGGTTACATCTGCATTGAGGATGCATACTCACGACCGTTATCTGCGTGTCGATATTCCGAATCGCGTTCTCGTTATATTCCTGAAATCACACTCGATGGTCAGATGCAGAACTCTCATTCATATGGGGGTGGTTGAGACCAAAATGCTTCCTTGTTTCGCAATAAATATCAAAAAAAATGTTAGGCCTAGCGTGGACGCGGAACGCCGTAAATGCACGCGTTAATATCACATAGTCCCTGAATGCTGAGCGCTGAATCGAGGTCGCGTATCGCATAAACTAACGAATGGTATTGGCGGGCTATAAGATTACCCATTTTATTAGTGATGAGGCTGAGTTAGCGATGGAGTTCGCGCCTCGAGACGGTGCGAACGCTTCTATCGGGTTCAACGATTGCTCCATGTAGGGGATTACCCTACATCATATATTTGGCCAAACTGGAATTGCAACTAGGTACGGTATGGACAAATACCTATAAAATTATCATCAGTAATTTCCACCCGGTATGGGAAGATCCTAGCAAACGATATGTTATGCTCCTGAAAAGCTAGGCATAAACTTTCCAACAGCACGCAGGACGTTACGCGACTTGAAGGATGAACTCTTTAATGTCGCAGAACCGATAGTTCAATACATGACGATGTTAAATGAAAGCTTGCGAGCCTTCGGCTGGAAAACTAGCGTTACGATAGGCTGATGCAGGGTATGCGAAATATGTTAATGGCTTTAGTATCATTTACTCATCCGTCACGCGAAGGCCAAGAACAGAAGCTAGTCTAGGTAAGGTTGCGCACGCAGTCTTGGTACAATTCTCACCACTACACAGGAGCTCTGAGACGAGAGTTGTTAATAAGGGTGACGGAGAAATGTTTACTATGTTAGCGTGCCATAGTGTAGAGCCAGATTTGATACATGCCGAGAAGTACATAAAGTCATAACCGGACGTATAGCAAACGCGCGTTCTGAAATTCACTTGGACACCAAATAATAAGCTCAAGGGGATAGTGACTGATCAACCGCTACAACCAATAGATGAATTGGGCCAGCGTTAGAAATATGGCATATTGGAAACAGCCAGTCTGTCAAGTGGTCCATATCTAGCTAGATGCAGATCTAAGTAACTCGTACCTAGGAGCATCAGATTGGGTGAAAAAATCTGATGTTTTGAACTAATATGTACCATATACTAATATGGGATAGGCATAACATAATTTAGCAGGCTGATCAACAAGTAGATGGTGATGGATAGCTCAAGTTTCGTTTTACTTTAGAATGGTTCATATCACCGAGTTGGCGTCACTTTATGGGAAGGCAAAAGGGTCAGGATAGCTAGGCGGCTCTGTGTACGAGTTTACTGTGTGCGTGATAATTTGCAAATTTCCATACGAGGTCCATAACTAAAGTGAACTCAGTGAAATCTGAGCATTAGAATTATTTCGTAATTAACCGAATCCCGCCTACCAGTAAAAGGGATTCACTCTTTATAATACGAAGATCGTGTTCTTACGTCAATTCTACTCAGTTACATGGCTCGATCTCCGAAATTCTTATATTTACTCGGACCCTCTCCGGAATAAGTGGGGGATTAGCTAAAAACCCTCTAGCCACAATGACTAGATAAAGTACGGAAACCAGCGTAGGACTTGATCTAAAACATATGCGAATGTCCGTAACAGTTGACACCTTGATTCACAGCTCCTGAGTACAGAACTACCGAATCTTCAAGCGATAAGGCGCCTCATAGGACCGAGAAGAGCTCGTTCCTCCCGTAATAGTTGTTTCGAACGTGACACTTTAACTGCGAAATAGTGCCGATGATTGTAAGTGAACGTACAAAAACCTGCATCCAGAGCGTACGCAAAAACGGAGCGGGAATGTCCTGACCTATATGAAGTTGTGGGGCTAGAGTTCAGTGCGATAATGAATAGAACCCACGCTAATTGTGAGGAGAACCTCGCCACATATCCTTATTCGCATTCACAGCCTGATTTAGTATTGTGTCCCTTCATAGACATGGCGGTGTTCCAAAATCTCAGCGTATGAGGTGGCGTGCTCGAATGATTAATTTGGCCATAGAAAGGCTTGCACGAATTTCTTCTAAAGAGTCATCTAATAATGTGCCACATAGCGTCCCTTCAAGTACTCGGGATGTACTGCTAACTGCGATTTATTAATTTCAACAACTCGATGATTCGAAGCCATGCCTAATACCTCTAGAGTGACATTCGCGACGTCATAAGCTATGGATAACCCTTCCTCGTTCGTATCACGGCGTGGCGTTGCAAGGATGTTATATTGCTGGTTGGTACAATACGGTACCACTGCCAGGTGGTGGAGGATTATTCCTACGAGACACGGTAAATTGCGGACCACGCAATACACTACACCGCGAGGGAAAAAGCTTGCGCCCGTCTAACTCAAAAAGTGCCGTTGATGTACAACATATAGCTTGATGCAGCTACGACAGAGGTGCCTATAGTCGTAGTGATAATTCAAAGATAATTTGTGTTCGATGTTCCACTTCACTGACCCAGCGGATGATATTAAGGCTTACAGCAAACTCCCGATGCTACATACAGGCTGTTTATTTCCTACGGGGTGACATTACGGGAAAGGCGAGGAACTCGATGATGGGAACTGTTGGTAGACCGTCTGATGCGGGACGCAATGGTTTAGGGTGAAACACCGATTCTCGGGATGTGACAGACGAAAACATCACTCCCTTGAAGGTCAAGAATGAAGTAGTATTGATAAACGTGACTAAGTGAGACAGATGCGCCCACTAGGTATGTCTAGCCACTACTTCAGCTGGGTAAGCGTTCAGGCATTTGCGTCGAGAGCCGCGATCACCAGTCTGCCCACGTCAGTTGATCAAACCCCTATCGGGTCCATTGAAGCACTACATAGTGATTCTTGACTCTACGGGAACCTATGTGGGCTACTTCATATATACTGGTGTCGGACGAAACTGGATGCAATCATTCGTTACACGTCAGAAGACTGTCAGCATTTAAATCGGAAGTCGTGTAAACTATTGGAGACGTTAATACCAACAAGACTATAGTAAGAATAACTGAAGAATTGAGTATTGTCGACGATATTGGGGTTAGTAAAAGGTTAAGGACTGTGTAAAAGAGTTCGCTCATGACGTCGAGCTGAGGTAGCCCGTACCACTCGAATCCCAGGCAGAGGCGGAAACGGAATGTACCAGATCTTTCAAGGGAGGCTCGATGTTACCACGCCTAACCTTACAATTAAAGACCTCGTACTAGAGTCAGCCTACCCGAACAGCTTATCAACGGCAGTTCCATGAAGTGAAACATGTATTCTTGTACTTTAAAAAGTGCGGTATGTATTATTAATCGATTAAAATTTATATCATCTTTAATTTTAACGGGATACAGGAAACACACAAGCGCGACCAGAAGCCGTCGGGAACTGCAGCAGTGTGAAAGACCCATAAGTTCACTTATTTAATGATTTTAATCGTTTTATCGAAATTGACGAAGTACCGATGCAAGAAATCTCGTCCGCCAGTGATAAGTGCATACCATAAGATCCCATTTTAGTACCCCGCCCGGGCTTGTAGATTATGAATTCGATCTTCGTGAGAGCTCACCCTCTAAGAGTGCCTTCACTTCGAACCTATTGAATAAACTACCTATTGTAAGGCGAACGTCTGTCTGCGAAACGGAGTGTTCTAAGCAAATCCTTTATTATGAGTGTACGCACGTAGTTACCTGTCACACGTTCTATATATAAGTAGATTTCGATCTATGCCCCTGGGTATTACAAATAATTGAGCGATAAGGCATAACCGGGAAGTTCTGGAGATCCGATAACAGCACTGAGTAGAAGTTGAAGTCACGTATAGGGGGAGGAATAAGTCCATCTGTTGTACTTACCGTGTCTAAGCCGTGGACTAATAAGCAGGACTATGTATCTTAGACCCCGCACGGTTTAAAGATAGTCCTCAGCGTATATCGAAGGTCATACAATAGTTGGAGCATTACTTTAATCGATCCAATGAAAAGGTGCCGGCTCAACGAGGTACCATTTCAAGCATATAGGCCCCTAGAATCGAACTGAAGAGCATTGCAGATATAAAGAGTATATATTGAAGGCACGTAGTTACATTATGCGGTCCGTGTCAACAACCAATCTAATTAATCTCTGTAGGTGCGCTACTTACAGCTGTGCGGACTGAACTACGTTAGAGTTGTATGTTTGCTCTGGGTTATAAGCAATGAAAATCTAATCGCAGGCAATACCCTCTGTATTTATAAAAGTGGCTGAATTAGAACTTACATTAAGCACAATGAATAGCTTAGACAACAAAAACGAGAACAAAACACGAAACGGCACAGTGTAACACTAAAGTTCAAAAACATCTCAGATATTGAGTACTATCGGAGAGGTCCCGCCGGTACTTCAAGATCTGCCCACGATGAGTTTAATCAGCAAGCGAACGAAGGGACAGTCCGTTGATAGTAGGTAATAGTACTAAGACGAACAAGGGTTCGAAGATCAATATGTAGTGGTTTCTTAGTGCTAGTGCATAATCAGAATGTGGGAAGCGTCGCACAAACTATTAAGCTAAATGGCGTGGAATCGCAAGCTGTTGGTAGAAGTCGAATCTGCAGCATAGAAGAAAATGGTTTCCGCCGGGTCAACTAACACAATAGCTTGTCTCCTGGCTACCCCGTGTCTGGCCGTTGTGATTGCATCGTGACATCAAAAGGCTACATCACAGGGTAATTGCGTAGACTTCTTCAAAGATTAATACTGAAACATATAAGAAAATTACCTAGTACAACCGCGTTATTATCTGGCTTTCAATATACAAAGAAAACACCGGATCACAAAACACGTATAAAGGAAGACCCAAATTGGGCCCAAGAAAGAAAAGCTCAGATCTATTCAGAGAGATCCAAAGGCGGGAGTTTAGTACATCGATTTTCACTGTTACTGAATGATTTTCAAGTAGTAAGCGTAGTTCTTCGAGTGGCCGGTACAGGCTGAAGCGTTACGGTTGTGAGCAGAGGAAGTGTAAGAGCATTCTCAACGCATTACAACGAGCTCGAAGCTGCATCTATGGGTCAACTCCAGCTTTGTCATCGCGAATTCAGAGCCGTAACGGGACAGCCAAACACAGCTTGAGTTTAAGCCCCCACTTATTATCCACATAGTTAATTTAACCCTGTCTGAGATCTATGCCGCACGCACGGTGTAACGGTGCATATGTGAGTACATTTTTTCCTCAAGTTGTTTCATCTGGGAGTCAAACTGAGATAGAGTTAGTAAAGTACAATATAGGCAGTAAGTCACTTGTAGAACTTAGGATTCTTCATCTTGTGAAAGAGTCTAAGTACACGCCACTTGGTTGACAGCATTTCCTAAGAGTAACTGCACGGTTTCTGAATAGTGTGTCAGCGAAAGCCTACCAACTTTTTGTATCCAACACCGCTTCTAGCAGTAGTTTACGGCGACAGGTGGGTTTCTGGAGATTCCACGAGGTGTACCTATTTTAGTTGTGTTTTTCACTCTTATAATATCCAACATTTTAGGCAGTACGACGGGATGTGGGGAAAAAGTCGGGAATGCCGGCAATGAGTCTAGAGGTAGAGAAATCGTATAAGCGAGATCGCATGTGCCCAATGAGCCCTGGTTTGGGCGTAAGTGTCTCGGATGAAGGATATCCGGATATAGTCGCTAATGATATAGTGGCCGCTGCATCGGCGGATGTCAAGAGTGAATGGACGTCGGTAGTCTACGGGCAATTTGGTAAAAATACGATATTAACGGTTGTCAACAAATTAGAATGGAATAAAACAAGAAATAATAAAGTTCACGGAGATGCAGTTCTGTGGCATCCACCTCCAGGGATATATCTTGAAAGATTAGTACAGCATCGTGGATCTATACTAACATTCTAGATATTACTGCGTGTTTATCATGCCATCCCAATGACTTGGTATCAGATACTTGACGAACGGCGATGTACTGCCTCTCGTGTAACTGAAACTACAACACCCTATAAAAATAGGGCGGCGGTCACGAGCATGGCCTGTGTTTCAATTTGCTGCAACTCTACAGTAGTGATCATCGGACACTCCAGCTTCACAATAATCTCAATACTCAACAGACCTCTGGGATGGACTTACGTATTTATAGTGGCGAAAATGGGCAAATCTCGAGCACTTGCTGCATGTGCAAACTCCGGACGGTCGCTGGAGTCAGAGTAAGTGGAAATGCGTTAAATATAGTTCAAGATCATTTATAAATGTTCACAATATAACCGTTACACTCATTCCTGCAGGTGAAGTGATCTCTCGTCAAGATGTTAAGAAATTAGGTTTCCACGTATTGTAACAGTTCTAAAATGAGATAACGGAGAGAACTGCTAATGAGGCAAACACAGCACAGAGCTAAGTCAAGGCAAGTACTATTAAAGGAATTTCGGTGCTACCCTATATGACTTCTGAGTCAGCACATGTGCGGTCCATAGTAAGTTGTCGCTGGAGATGGTACTCGCAGTTGAGTTGCGATCGAACGTGTTAGCTGACAAAAAAGCCGTGCTCATACCTCAATAGCGGTCTCAATCCTGATGGCCACCGATACCTGGATGATAGCGGAGTGCCTGCACCTAATCCCTGTTATGCTACGATACCGTCTGGCGCGAGCATCAGCTCTGCGGAAACAAGCTCCGAATAAGACCAAACAGATGTAGTTTCCTTAACACTGGAGTGTGACACGCATGAATCTCTGTTCATACCTAAGAGTATCAGTTCATCCCAATAAGAATTCGAAAACAAAATGCATAGAAATCAATATTTCTCCGATTCCAGATCAGGATAAATAATACTTCGGATTAAATGCTTCTTCTAGACTGGAACACCTACCTTCCTAGACTGTAGACGTGACAAGATGTGGCGCCGTGATGCAGTCGCAGACTTTTAAGGTTGTCTCAATCCATGTCAGGATATCGCCTCGATCCTATCCTAAACGTTACTCAATCTAGCACCCTAAGTCTTGATCAGTTGCAAATGCAATTCAGGATTAACGATATCATTCATACTAGCTTTTCTCAAGCTGATGCATTTAAGCGATCGATAAAAATATACACAAATGCTTAACCTCGACAATGTCTAGGACATACTCTCTTTGTTATGATAATGCATCTCTGAACTAAGGTTCCTATGAATCGAGTCCAGGGCTTAAATGATTACCCCAAATAAAAAAAAAGATATTATATTCGAGAGACCTTCAGGTCTCTGATGTGAATTTCTCAACTAGAAATTTTGCGATAGCGATTCGGACTTCTTCTCCGGAGTATGCGCCTGGAAATATGACTATCGTGCTAGACGTTGGACTAGAATCCAAATGTTTGAACGATTCCAGAGATCGCTATAGCGTGCTAAAGTAAGCTAAGAAGCGATAACTAGGAGGTCAGAGGAGTCGCTGAGTTAGGACATAAACACCATGACAGCAATGACCAACCCGCTTACATCGACGACATCGGCAATTAATCAGAGAGGAATATCCTGTAGATGTAAAGTACGTGAAGGAAATATGTAACAAGAAATTCACGAATCACAAATACAATCCCATTTTTAGTGTGATATAAATCACAACATGAATATGGCTGGGCAAAGGATCTAGAAACGATCCGAAGAGACAAGGTGCGAATAAATCTAAGAACTCCTAGGGAATTCGGACCTCTTGGAAAATATAAAACGTTTACCTCAGATTATACAGTCGAGTTTGAAGATCTGATATACTGTGCTCTGAACCAATATCAATTCTTATGAGGTCTCCTGTAAATCAAAGGTTAACAACTTGTTGATGGGATATCATTACTCTGAAGGAAGAGGTCGCATTAATACTCTGGTGAGTACTTCAACTTCCAATACCTGACCACTGAATGCACCTGATGAGTATGATCAACAGCATATGGAAATGTCCTCTCCGTGATAGTCATTGAGATACTCTGGGTACGCACGCCACGTGAGGTGCCGGATGGACTGAAATTACTAGAAGAGCAAATTCCTCTTAGAACTAAGTGAAGCGCCGCAACGAAAAGTGCTTACTTCCAATGAGCTTAATTATTACAAATACGTGTCACGGGCTAGCAGACGTAAAGGACTGGCGGCTGACATTTTATTTACATACTCGCGAACGAGTGACAGCAAAAGATCAGGCGTACGAATCGTTAGGATGCATTGAACTTCGTGTCGACCTCGTTCACAGGTGTGAGCCTTTCCTACCATGTTTGAACCTTGTTAAGCGCTAAATTAATTGTCAGGTAAGAGGTATGTGACTTAGTGGATCGGGAGTTCGAACTATTCTCTTTAAATCCGAGTCCATATGTAGACTCCCTAAGGCAACCGTTATATAGTAATAGCAATGATTTGAAACAATTGAGAAACATTTATTAGGCCTAGAGGCCCTCATACCGACATATCAATGGGCCAAAGCTTCTTCGACTTCACTGCAACTGACCCTTCTGGAGTTATAGAGATAGTAAAAGAGATTTAGCATCTAAACTCCTGACAGTTAGTATGAAGAACGTCCTAAACAGTCCCTCGGACTGGTCGAGGTGCCTATATAAGAACGCCTGCCGGGAGGGCTGTCGGGGTCTAATATGTAGGCTGATAAGGAGACAAGGCGAAGATCGTAATTAAATCTCAAAGAGCTTATGCGATCGAATTTCTACCTCATCTCGTATACCCTTCAAATATTAGGTTACGTATGTACAGGTAATAAAGTAAGAACATATGATCTTGCGGGCTTAAGCAAAGGGACAGACCTAGGCCTCATTGGAGAACTCCTGTGGGTAATACGAACACAGGGTTCAGAGGTTCGACTTAATGGTGTTTCCTGCAAATATTAGGCCGACCTTCCATATTTTACTTTGAACGATGTGTTCTAATAGATTGAAATTAAGCCAGACGCTTGGACTTGAAAGACAGCGCCGAAGCAATTTCGGTAAGAAATTGGTATACCTCGCACAGTTTCCATCCCTGAAGACGGCACAGCTTGAGACTCATGCCGTGCCCTGGATGGTAGAAAGGCTCGGACCCTCGTGGTTATAATAGGTGTGTACCATTATGGATTACTGTCCAAACACACGCCTCGCAGAAGGTCCTGCGGGTTAACTTAAATGCTATCAATACAAATATAATTCTGCAACGCGATTTGTTAACATCTGATTTGACCGAGCTGCAGGCGGAGGTCGGCCTTTATAAATAAACTGAGAATTTAGCATAAAACTCAGCTGAGTGCTTTATATCCATTGGGAAAACGAGATGGAATTTTCCATTCGGCCTTCATTACCTCCAAGACAGGGAAAAATAGGTAAAATGAAAATTGACGTGTAACCCCTCGTCTACCGTTCCAACCTGCATAAGTCAATCACGGTGCAGCACTTACCCCTGATGTCCGTCAGATACTAGAATCATTGAATATGTCGTTACACATATATAGAACACCCATCGAGCTTGTAGATTTACAGCGCCCTCCGGGGGACTTGGTATTATTGACGGAAGTCACAGACCTCTGATGACCGGCAGAATGAATACTAGGTCGTGAACTGGAAAAGCCTGGTTATGCAAGAATACAAAACAATTGCCTGATAAACCCGATAAACCTCCTTGTGGCCTCATGTGCGTTGTCCATTCCATCAGTTATCTGATGTTGTGACCCAATTTACAACTCACCCATATTGACACAAGAGTTGTTGTCTACGATGGGTGCACAATATCGCACTAGTAGATTAAACAGATGTTTCCCGCGAGCAAATGGGCGTTTAATCGCACGTCTCACGAAGTCATAAGGTGAGTGGGTATCTAAACAAGAGCAACCGGTCTTCTCTTGTTCAAAGCTATGTATTAGTTAATACTCGGTTGCTAGGTTTTCTCTCATCGACGGGGGCAATTCTTACGATGGATTCAAATTGATTACGGATGGATAACGAGGAACATGTTCTAAAAAAAGTCCACTGTGCTCGAACTCCTGATGTTATTGTGTTACGTAGAACGCGGTAAAACGGTTTCAGGAACAACTCGAAATTCCGTCGCCAATTTCTATGCTTCCATGTGAGTATGCATGTCATTGCGATACTGATCAACAGGCTAATGAGTCGTATGCGATACGCTCTAGTCACTTGATTTCATCGCGACCTCATGCTCCCTAGATTCGTACAAGTAGAATCCCAAACCAACCACGTTTTTAAATAGAAAGACTAACGGATCTTCCACATGTGAAATGAGTCTCACTTAGAATAAAGATTCAATAAGGATGCCGTTACATGGTACTGGCCTCAAGACAATATAAAGGATAATCAGTTACTGCAGGGGCATGATTAATCTCTACAACCAGACGCCTCGGCATGCATGTTCACTGAGGAAGTGACTGCCAGTAAGCATTACATATCCCGTCAGTAGTCATGGGCATCGGTACGCTTTCGACCCTCCCATAACAACATATTATCAACGTGGCCGCCAACCGCGTAATCTTTGTTTTCGACCGTATAAGAAAGAATAAATTGACTTTTCCCTACTGTGTTCGAACTTCTTGACTGGAGAGAATTGAGTGCTTCGTAGTGTCGCCTACACCACTCACAAAGTGAGTCGACTTACTATAACATTACATGCCTTTCCACAACTGCCGAGACAATAAAAACACCAAAAGACATTTCCCAAACCTTGCTACTCTGCGTCCTTTTAGGTGAGATCGGATGAAGTTGATCGCCCATTGACTAAATCAGGAGAACATTTCCATCAAGGTGGTTATAACGGAGGTAACGCCTTCGGGGATGTTCATTCAGAATAACCACGGGGAAAGAAACGGTCTGCAGGATAAGAGATCACCTTTATACACTGTTCCAGAAAGATTCTCTAAGCATGCTCATTTTGTTGTCTGATCGATCCCGGGTGATTTCTTACAATGAGGCTTTATCTGTAAGTGGGATCATTGACCTCTAGCCCCGAAAGATACCCTCATAAGCATAGTACGCTTAAGATGGTGAAATAATCGCTCTCTAACGATCCAGAGTGCATCTCAACGAATCTTGTGATCAATATTATCTATACAAACGCGTAACATCACCTGTGCCGCTCAGGGGGGCCTACCGGTAGTTTGATTAACCAGCAGATACAGTATCAAAAGGGAAAAGAGTCATTGCACTCAATGGTTAACTATCAGTATGAGACTATACGGGGTCCGCCTCAAAGCTAGATTAATTCCTGCTACAATTGTAGTCTTTCGTATTGACTTATCCATATCCCACGTCTCAAACGAGCGGATTAGAGACACCTCAGACTGTGGAATATTTAATGTGCCAATGGAGTGTTCATGAACAATTCATAAGCCTGAAGCGTTCAGGTCCAGGCCTCAGGGCGAAATGGTAGTCTTTACATCGAATGGTCGAGTGTAAGAACTCGGGAATTTAGTGATAACTAATTAAACATTCCACAGGATGACAATATTGTGCAGGCGTTCTAGGGGGGGCGATAGTTGGTCAATGCTTTGATTATTCTGCCATATGATCCTGTGGATGCATTCAATATGAATCGTGGCTTTCGGTGAACGAGAGTATCGACCGCAGAAACGTTTCCCGTCCTAGCGGCTGGATTTAATCCCAAGATTTGAGTGGACCCCAATCATGCTATTGTGGCATAGGCTCTGCAGACACGTTTGACTAGTGGCTGAATTGCGTTCGTTTCCCTTGCTCCGTATGTTCGGGAGCGACCCAAGAGCGAAGTTGACTAGTGAGCTAGTAGGATTCTGGGTCAAGTAGGAAAGTTTGTGCAGACATCAGACTTTCCCATGATCACAACAAGTGCGAAACCAACGGAATCTGTCGTGTTGTCACCACCGAGCGCTAAATTTTAGGGAAATATGGTCCCCAGAAAATAGTTGGTGATCCTTCGGCGCTGGAGTACAAGTCTGTAATCCCATATAGCTACATAGATACAACCACGAGCCAAACGATAAGACAAATATAGAGCCATTGGACCAAGAGCAATAACCCCAAGGGTGCTTGAAATATCGACCACAATATATATCGACATCCAAGAGGAACTGTAAGGCAAAATGAGAAAAACCAATAAGATCCGAGGTTACTGCCCGCCAGACAAATCGTATGGCTTGGATGAAGTAATGGTATTTGAGGTGAACGGATTCAATGAGCGTATAGGCAGAGCCGACCGTGTAAATTTCGACAAGAGGGCCTGCAGTGTATGCTGTGGCGTGTCGTTAAGGGAAAGCTGTGAGGCCCTCGTGTAGGTGCGATCTGCAACCCGGCAGCAATTGTAAACTGCAAGTGAAATATCGATGCAGCTAAGATCCATAAAAGAGTACGCACTCTTCACATGATGGGCACGTTGTGTTAGCTATTACGATCCATTAAAATACTAAAACACAGAATGGTGTACGATGATCAGATCTGCGTGATTATATTATAAATCATCCACGGGGTGAATAAGCTTATTCAGACATTCATGGAGGCGTCTGTTTTGCGCTAGGTTTAAATCAGTGTAAAAACCGAAAATAGAAAATATTAAACCTGCAGATTTCTATCGGTTACACCCTTTACTAGTTCTTCACACCGGCCTCTAATAGAAGTGATTATGAAGTGATCCAGCATAACTGTAATGTTAACTCTCAATCATTCAGCCGTCTAAAGCAATATTGACCTCGGGTCGATGACGAGGGGGCAACTGCCGGGTTATCCGAGTCGATCGTATTACCTCACCGTCGCGCAGGAGAAAGTGAGAAGCCTTTGATTGTATGTCCTTTTTTGTATCGGGTTGCGGGGCTGGAGGAACACCTGGCGATTATTTACCACGCACCGTTGTTCATAAACATCTAAGGTGCGATATTTTCGCTCAAGGGTGATCCAGATGACTGATGACCCGCAGTATCCGTTCCGGAGCTTGCGGCCTGAAGTCCTCAGGGAGCTTGGCTATCATCTAAGTCTACATCCTAAATGAAATTGAGGTGCCAGTACTTCACCCAACTCGGTGCAACGACTCACCGACTTAGCGTCCACGGAATCGCTGTCTTTATGCAGCCCCTATGACCGGAGATTAACTCATCTAGTTAGGACACCTGGGCACGAGAATAATAGGGTATTTTACATAACCTTAGCTACCATCCGCCCGGGCTAATTTCTCTGACTCGCACCAACTCATATTAAAGAGCAGAGCAAATATGTGATCATGCTTAGTTAGTCTAGAACGACCACCAATTGAGCTTTAGCCAAGACCTGCGCAAAGTAATATGCGGCAGGCTGTAAGCTCCAAGAAGCTTGGTTATTTTGTGTGATGCTAAATTAGAGACCGGAGGCTAAAAGTGAAAACTCCCAAAAAAGCCTACAAGTACAATAGTAGAACGGAGTGGACGCGCAACGCTTAAGCACTGGTTTTACTGGGAGACACGGCGGTTGAGTTCCTGCTATTTCTCGCCTTATTGTCGCCCTTAAATAATGGCCGGTATTTCAAAAGACTTATTTCACCAGGTAGTTACGTAGATGGTTGCCCGGCTACAGGTTTCTCGCGTCATAACCGCTCATTTCATTATTTTAGCTTTTAACTATTAACAGTGCAGTAGGGAATCCTAAATTAGCTATTATAGTTCTAAAACCAGCGGCGTTCGACAAAGACTAAACGCACATTTGACCCAAAGGTGCGGGTAAACAGGTACGTATACCTAACCTAACATAGCTGCTAACCATACGATATTCAAGGTCCTAGGGTTGGGGAAACGTGTGGTAGAACTTTGGAGTTATATCGACACCCAACTTTATCCAGATTTATGCTACTCGCCTAGTTGCTATGGAACTCGTGGCCGACAGACACGTAAGCAGTCATATGACCTTGGCAGTTCTGCCGAGAGACACTGAAGTGTGTTTAGTAATACGTTATGGAAAACACCGGTGGGATCAGTAAATTGATCGGGCGTTGCCAGTGTAGCCAAGTGTGAACCAATACAACGTCCTTCTATACGGGAACGACGCACATAAAGGAAGGTCGTACTTGACTCGACCGTCTGGGTAAGGGGGTTAAGAACCGTACACAGCGTTATAATGTTGTACTCTGACCGGGATTTTGTTTTAAACTAATCTGCCTGTTGGAGACCTAGAGCATATCGACTGGGGCTGAAAGCAGCCGAAAATTAACTAGAGTCAGTTACATCAATTCAGGACAAGCGACTTCAGCTTGGTTTAAAAGGGCAGTATTGCCTCGCGACTTCAATTGATGCTTGAGAGTGCGAAAATTTCGCTGGTCAAATGTGATATGAAACATGTCATTCTCATCAGTACCATAACTAAGCTAGCTCAGTTCTTAATTTGTTCAGCATTGAACGATGTGTAGATTTGGAACAGCTATATGTTAATTGAAACAGGTGGCACCCCCCGTGTTAAAACTGTATAAGGTACTGCGGGACATGTTGCACCCTAACGGAAAGGCTGGCTGTCGCGGGCGCTCTCAGTCTGAGCGCTAGTTCAATCGCGGCCTCACCAAAATCCCGTAACGACCAGATACTAGAGGCTTACATCCTTTCAATAATCAGCCCAACTTGATTCAGAACGTCAGACCCACACACGTTTATATCGACCATAAGCGACGGCCAGAAGGAGCGCTGTCGAGATCATGATGAAATCGGGAGACAGGTCGCTCGAAAAGTTATGAACCATATAAGGATTTCTATGAACATAAGACCAGAAGTTTAGGCCATATGCAGATTAATTAGAGACAAACCTTAATATATCGATTGGGATAAGATCCATTAAGGATGATAGTAACTAGGGAACGCGGACTAAAATTTTACACTGGTCTTTAAGGGACGCGAGACTATCTTTATCAGTGCGGAAATAGAAATGTCGTTGTATAGCAAGCAGCTATTCTGCGGTTTTAGACGACGACTGACCCTTTACCAGTGTGGAAGCCATGTTGTAAGTCTAGACCTGCCAAGGGTCGAGGCTTCATTTGCACGGAGCTAGTGTGTCATATGACCAAAAACCTTTCTAGGATAGCATGTCGAAACGGCGCCCATCTGGTAGCTGCATATTAGGCCGATGGAGAAAATTCAGTTATATATACAATAATAGGGGTAGATAATTTGTCGTTTATTATATACAACCGTTCCGTCAGGCTATCTAGTCCTTAGGTGTCATTCCTTCGTCCTGTTAGTAACTCATTATTAACAAGTCATGTACGTCGTCCTGCCGAGTTGATAATATGTAGGCGGGCTATTTGAATCCATATGATTTATATACATGTTCGCAAAAACTCAGACGCGAAAACTCAGCAGTGTTCAGTGGTTTCCTTTGTTCGGATCCCAACCGAAAAGATGTCTGATTAATCCGATAACAAGTGATGAGTTTTTGCCGGCCCGGATCGTGACACGAACCTAAGAAAACTTTCGTCTAAATTCGAATCACGATACACCTACAAAGCTCGCCAGGTTAATGCGGCTAGTGAGATAATCCTGCGGATGCGTCTGATGTGATTCGGCTGGAGTGAAAGATTATTACCACAATATTACTCGGCGCCATAAGCATTTTCAATATGCGTCGACCATATATCAATGATGTTAGTTCCGTATTCCTGGGTGGTTGGCACTCGATACTCGATATTCGTAAGCATCTTTTTTGCAAGTCCCGGGCTCTCCCTGCGCTATACCTCAAACTCTCCAGACACTTAAAGGTATAAAATCGAGGACGGAACAGAGAAAGTCCAAATCATTACAAGCCTTTGCTCGCCACAGAGTGATATTAAAAACATACCACCAAACCTGGTGACAGTAGCCAGCTTCACGTGCCACTTAATGCTAGGTACTACTGCTAATAAATGGGAGAGAGTTAATCACAAGTAGGCGTGATTTCAATCAATCACGGGTGGGAGAGGTGAGTACAATTCGGGAGTCACACGGCGCATCTCTGGAACCAAAGTCAAGTGTCAAATAACGTGAGGCCGGCACCTCGGGAATATAGCAAGTAAATCCACCCCCCGTGCGGGGTCCCGATGATACAAATAAACTGTGGGGCAAAAGCGGATTCACCTGCCTCCACAGACACTACCTTGTACGAAGGTAGGAAGCAGCAACAAATGTGCTTGTATGCGACGGCACATTTAGTCACAAGTTCTAATGAGACTTAAATTGTTTGCTCTAGTTTGTTGAGTCTAACAATTTTATATCTTATACTGTAAACCGGCCCTTATTATTCCAAAGGAGATCTTACGCTCTGTCGTTCTATACCACCTTGAGATGGAGAAATTGTCTAGCCGATCTCCCTAAGTGAGAAAATGTTTACCTAGTTCCACCCGGCAGAAACCATCAAAGGACGAGGGCAGGGAAAAAGTTCTCGGTGTAAGTTTGCTCCCTCTTCGGCTACCCGGAATTTCTCTTGACTCAATCAGCATCACAAGTTCTTTACGGTTTACACAACCGCCGGTGGATTTTTTTACACCCACCAGTCAAGATGTTGACTTCAGCGCAACGTACACCCTCGAAGCCGACGTTAACAAGACACCTATTAACAGATGATAATTTTAAGATGTGGCTCCCTAGCCTAACGTCTGTTTACCGGTAATTGTTTAAAGTTCATACTGCCCCTCGCCGGTCGGGAGCTTAGTTTCGTTTTACCTACGAAAGCACCTTGGCTAACGACGTTCGGTAGGGTGTTTCTCCGACATGAAACGGTCCACGAACTCATAGTCGCGAATAGGTCTTAACAAGGAGCGTAAATCCTGAGTTGAGGCCCTCTAAGACAACACCTGGTGCTACGGACCCGGACTTTAAGTTTTGGACCAGTATTTCTGTAGCCGCCTAGCTGAGCAAGCTCGCTAATAACGCGAAGGGTGCAGCCATCAAGGATACTAAATCGGATACGCGAAGATTCCATAACAGAGATGGAGGTGGTTGGCTTGTTTCTTAATCGTGACTAAAATCGTCTACTAGCGTCAAAATATTCTTCACTTTATCAGAACATAAAAGGCCATATACGTGAGTCCCAGAACCGAGTCTTCTTTGACGGATCTTAAGTGACTCCTAGCCGAGGTGTGAACAATTCAACACGGACGGGAGTTGTATGCCGGTTAAGGTCTGATTGGGGAACAAATTATCCAACACTTACTCCATCTTTTGCGAGGATATAAACAAGCTAAAAGGAAAATGCTGTATAGGAAGCGTAAGTCTAGGGTTATTATTGCTTTTCGTAGACTCAAATTACACGGTAAGATTGACAAACCCCTGCGCTCACAGCAAATGACAAAAAACTTCAAATGTGGGGTCCTCTAATTGCAATAGATATGCTACCAACCAGCAACGCGCCGGCCATATTTTGATGAATCTGATATCTAGGGCTCTTATGGCATCAGTTGAAACTCTAGTAGTTTAAATCGTTCATACATCCTCACTTGCATGAACTGTCAAGGAATTGTCCCATGCGATGAGCCACAACCTCCCGTACCGGCTGGCGGCAAAGTGCACACTATCTAGCTACGGAAGGCTCATTACACATATCAATCCAAGGATCCCACCTGCCAGCAAAAAATAAAACCACTGTTGTCACAATAATCCAATGACTATTGGGTAGTGAAATTTAGAACATAATTAGCCAATAAGGAATAATCGGGGGGAGAACAGTGTATATCACTTCTACCTGACCGCAATAAAAATCGTCCAATTTGGTTCTATCTACGTCGGGAAAATCCGGTGCCAGCCTGGCCGTTATTTCGTATAATATGCCCATACGACACTTTATAAGCGCGGGAAGGAAAGAAGGCCGAAGTCGCAGAGAGCGAAGATAACGCTTTAGCGCGTGACGTAGTCCGCGCTGGCTAACCTCTGTATATGGTTTGCGGTACGATCCTAAAACAAACTTGTGTTGTGCAGTGGTTAAGCTATTTCTTAGTTGGGCTGCTGTAGGAGTAGCGCTTGCAAGTTGGATTATTCAGGTCCAGTGATACAAAGAGCCGGATTCGTGTGGGCAAAATGTGGCGTTGTTAGTCCGAATCACGAATACATCATCGATAGTTGGACGATGTCCAGGCATTATTTCTAGGAGAGTTGTGGCACAGACGGGGGTGATTCGAGTCATTAGTGGTAGATTTCTGCGTAAACTCATGGACGCACGTACTGATTAACAATCGCATGAAATTAGGACTGCTACATTAGGATTGACGCGATTAAGATCGACCCTGACACGGGACACTATCGCTTGAGATATGTCTGCTTCCTTACGAACATACCGGCTCACATCTAAGACGTCCTTTCGGCTGTAGGTGGAGTGCTTTCCCGCAGTCTCATCGGGGGGTCTACTTACTATATCGCGAAAGCAGATGGGGCGTACCAGTATTTGTGTCCTGGGCTGCATTTTTGGACGCACGGGCAAACATTAGATTGCACACTCCGGTGATAGTATGTATCATCAGTGGTTACATCACATGGGCAGAAACGGATAACAACCGGCAAACCAATAATTAAACCAAGCCCACCGCAATATATTTTTTTGGAACCCTGTCATGGGCAGAGTTTTACAGGTTGACCTTAAGACTAAGGGTGTGGTTAGTGGGACAGGATGCTACTGCACACATAGAGATATCGAAGGTTGATTCCTTCGACTACTTTCGCTGCTATCCGTTTACCGAGATGTACAGTGTGGCGGTAGTACATAATTAAATCGCACATTCGAAAGGTGTCATACTTGACGGAGAGAACGATCTATTAGCGGGATACGCTAAGAACATTTGTGTCGTCCGCAGATTGGAGACCTGTTCCATCAGTAGAAATCAGCAAAAATGCCTTAAAACTCTATTTTTGGCATTAGATGCGTTCTATGGGATCAACCCGGATGCCTTCCATCCATTCGATTTCAGGGCTAATAGAATTGTACCATAAGGGCAGAGTTACTGAGACAGAGCAATCGCGACATGTAGCAGATACCAGACATACAATAATGACGTAATTATTGACCCTAAGCCATTATTGCCAAAGGTACTCAGTGTCCAGTCTACATGAGAGATACGTTCAATTTCAGATCGTACCCTGGCTTCTACGTGAATGGCTTGGTTAAAAGGACTTGCTCAGCTAACACACGCTTACTTCACATCTTCATTACATGAGCAATCAACCATAGTAGAAGATCGATTCACGTACTATCCAGAAAGATCGCTCAGAGAAGAAAACCTTACAAGCCGCCAGACACAGCGCTTGTCAAAGGGTCGGGAGTTCCAAATCGCGTTCTACCGCGAATAATATACAGGTCAAAGGTAGGAGGAAAGACGGATTTTTAGCGAGCGTTGATAGGGGTATTGAGGACCCTTCCGGGTGACCTAGTTCAGGCAGATGCAGGGTGATTGACATTTTAGACAGTTCTTTAAGGAAAAAGTGACTTTGAAACCTGATTGGGGCAAGGGGGTGTGTACCCTTAGAAAGAGGGTACGCATGCAGCATGTGAAAATGTACCCAGTTCCCCGGGGAGCAGGAATGGCTCGCCTATTTCACACGAGGTCCCCCAATTGAGAGGACTGAAATGTTGCCGGTCAAACTTAATAAAGAGGAACACACCGCAGCAATGAATTGTCAGATCTCCGCCGCTCTTTTGTCGTAGAGTCACAGTAAGTGTTTTTGTACAAGCCCCCTATCTCCTTCAAGACTGATTATTGTCGGGTACACGGATGCCTCACAAAACAGAAGACTACCTGAGTCATGCCTCAGTCATTGTCAAATGAAGAAAACATCCGTATTAGCATCTTCGAACTAAGATCCAAGGGAACCGTCCCGTTGTTAGCTCCGATTCGCTAGTCCAAAATTCGGATTCAAACATGATGATGTGGCATGTTCTACATATACCTCATTACCCTACTTTGTCACAAGAGGGACTTCGTATTTTAGGGCCTGGAAACGTATAACTTAGGCGACGAAAAATATTCGCTCACTGTACACGTATAGTGAAAAGCTATGCCGAATTATTCCTACACAACGTCACTATTAAGCAAAGATGCGTCCAGTAAATAAAGAAACCGGAAAAGATCAAAAGGTGATGAGAGTGACGGCGTAAAATGGCCAGTACGGCACAAATTCCACTAAGGTCGAGGGTAGGAAATCAACAATTTCTGCGTTAGATCGCAATACACGGACTTAATGAAACTCACACACACGCAGTGGTATATACAGTTGCTCAGTTCCTAGGAGGCGCTCTGCTGTTAATTTTAGAAAGTATAATCATTCCGGGTAGGAGAGAGTACTTCCCGGGTTACCGCAGACGGACGTATTCAGCTACGTTTGACACAATTTATAGAAGCGAGAAGGAGTCACTATTAAAATACGTATATTAGGACTTAGCTAGATAGTTAACTCTGTACGTACGTACGGAACAGGGCGTGTAACGAAGTTCTTCAAGGTTCCGCACGCGGAACGATGTGCACAATCCAGTCCTGTAGTGGGGTATTACTACCAAGATGACGAGGTCAAAGTGAAGAACAAGCACTGGTCTCCATTGAAATCACTTCATAAAAACTCGAATTTCGGAATGTTCGCACGCAATTCCGTGGGCAGGCTAACACTAATGAGATATCGCTTACCAAGCACGCCTCGATTCGTGTTATAACGTGCACTAAACACTCTCAAAAATTACACATTGCTCACATGAGTGAGGCCTGTACAACTAGGAATATAGGAAAAAAGCGGTCCTTGCGACTAGCACGCTTTCGCTGAGACATGGACCCCTCTCTTGCGGTTGCAGCTTGTGCAACTTAGTCCACGTCTCAATAGCCGTGAACTCAGCCTACGGAAAAGGATGATGGATGCTTTGGCCCGATTAAAAAGCCTCTATAGAAGGATTAGTTTAATAGAACTAGTGCTATATTAGCAATTTCATTCAGCAACAGGCAATAAAGCTCGTAACTCGTATCCTGAGCCTCAGCTTAATCCTCTCCTCTTAGTTACGCTAGCTCAGAAGTCTCATCATATTTATCACGCACTTCAAATCAATGGAAGCTTTAGTATTCCGTCATATGTTTCACCGATATACTCTATGGAACGTCAATAGTACAACTTATACGTTAAGAGTGCATTTTTGACAAGGAAGCAGCAAGGTACTAGTAACTAACACGACTGTAAGTGCCTAGCAGAATTTTGGGCAAAGCATCAGTCAACTTTATTAATGCAGAACTCATCATATCCCAGTCTTCTTTTGTCTAATCATAGCCAAGATCATTTCTTTTGAGCGAGAGCGGAATTCCAAGTTTATAAACTAGCCAAAAGTCGCAGACTTACATACGGCTGTGGTCAAAATTCGGAGGCATCGTACTTTGCCGAAAGTATCAGGATGGCGGGATCATATAAAAGTATGCATGGTCCCCTGGTAGTACTTACGTGACTCAGAGCTACTTACCAACAAATCTAATGCAGTCGATGCATTACTTTGCGTCCCGGACTCAACTTCGACATATCGTCATCAAAGACACTACCTTTTAATGGCATTTTCAACTTGGTTAAAGCATATTCATGGCATCCTTAGAAGCGCAAGACGGAGCGGACGTGTATAACAGGGTTCTAGAAGTGGCTAGCACCTAATCCATATTAGGTCATGAATGGGTCTACCATTTAGCTAACGAATTGCTATTTGATAACAGTCACATGAATAGCTATAACTTTGACAATAAACTCTAATTACGTCTGGATAGTCGATCTCTCAAGACTATTCCTAGGTCGGTATGGTGCCACTATTACGTTATTAGGGAACTACTAATCCACATTCTTAATCCGGGATCTCTATCTACGGGAGGCGGGCAGACGATTTGGACGATAGTTCGACTAAGACATCTGAGCCAGTCAGGTATTGAACGACTACAGTCCTTGTGTTACCTTGTGGGCGTCTCACTGACGTGCATCGGTAGTCGCTGTTTAAGCTTAAAGAATACTTTGACTGATCCTCCCTAGGGTCCGGCAAGTTGGAGCATTGATAACTCTCTGCCTAGATGTAATTAACATTGCTTTAAAGTACCCCCGCACGCACCATCCAACAGCGGTGACCTCGAGTCCCCAGTAGGGATTATCTGGTGGAATGCCGTAGTGATTCGAAATTAACATTAATACATTGAGAGCTATTTATCCCTTAACGCGACTTGGTAAGTCGCGACGTTTAAGACAGCCTTGCTATCGGCATAGTGACAATAAATAAAATCATAGGTAAAGACCATCTCCAACTAATTGATGACAGCCCTTACTCTTCTACCAATCCACAGTTGCATCGGCTAATTCTTACGTTCGGGTTACTGCATCAATTCCGAAAAAATGAAACACCTTCTACAGATGGTTTTACCCGCGTGAACGTTACGTGCAGTCTCCCGTTAATGTCTTCTCTGGGTTAATCTGGACGAAGATGAAGTTGTAAGCATAGAGTGCGACAATGTGGCCTCATTGAGGGCAGAATGTTGCTGTACCCCCTAGGTCATCTCACTTAGTGACAATAGTTTTCAAAAGTTAGTGCCTTAATATATGTAGGCGAGTTCACTGTTACTTAGCGGCTTATATGCTTACGTAGCCCGTAAAGGCGGCAAATACTTGACTTTTGTCTTGGATATCGGAATGAGGAGACTATGCAGTGTGGCCTAGGGAGCTTCTGGCAAAATTAGGTAGACGCGATTCACTGATGTTACAGCCCTACTTGGAGAGCAACATTCATATTATGCAATCAGGTGAACGCCGGGGTGGAGCAGCGTTACAAGTCTCAAGAGACGCGCACTCCATGAGGGAACAATGAATGCGAATTATCTTCTGTCAAAACAGCTAAACGAGTTGAGTCAGAGATTCTATCATGTGAATCCGTCGCACTTGCGAAGGTTGTTGGACATTGAGCATTATACAGTACTCAATACACAAGGTTTGAACGACCAAGCACACCAAATAATTAAACTCGCCACTTATCACTTCCACCAAGCTCTTCCTAAAGCTACAGGCAGACAACATAAATGGGTTGGACAAATGCTAAAACCCATGATTTCTAGGTTTAGATGTAAGCCCTTTGTGGAGCAACCAAAGCAGCGATAGAGTAATCCGAAACCAAATGGCAAGTGAACTTGAATCGGGAAAGGGAGATACGTTCCTTAAAACACCAGATCGATAAGTTCCTAAATCGCCACAGTGGCAAACCAAAGTATGGTTGCGATTCTAAGTTAAGGACTGTTTCCCTCTTTCACTATAAGTACCCGATGTAAAAGGCTATCATTATAGGGCTGAATGTCGAGCCTATTAGGTACGTACCATTATTAGAGTTGGGTGTAGGGATTGGCGCTTCAAGCCTAGTGACGGGTGGTTAAGAGTGATTTGAGGATACGTTTGTGTTTTATAACTAAGATGTCATCTTCAGTACCTTTTCAGAAAGCGCCGGAGAAGCTCTCGTATGTGCAAATCCAGCCATTCGACCAAGAACGTCCAGTCAAGCAACGACTCACATGGCCACGGTCATCTAAGATTGTACAATAGATCAGTAGAACCCAAGCACCCTATGCTGTGCGCTTGGCGGACCAGGTGATGTTAAAAATTGCAAGCCGATGAAATTCTAGTGTCTGCTGTACTATGCCTCCAAAAACTACTTTCCAGCTAGAATGGAAATCACCGCATGAAAGCGTAGCGCAACGTGGTTCGGTGTTCCACAATCGTGCGAACAGATGTGAATCATTAAATTACTTGATATGCCGCTGAATGCTCTCGGGCATGAAGGTTGTTTGACCCTCGAGTAAAATACAGACCTGGGGTTGTTCCCGTACGGCCGCAGCGCCATCTACACACAGTTTAGTGTTTTTCACCACTCAGCTGAATAAGGTGCGGCGTTTACGTGCCAGCCAGGCATAGCGAGCTCTTGCTTGCCTACCACGATTCGTCATGGGGTTTCGTTGTCTGTACGTTAGCTCGCACAGTTTCTTGTGGTGCTTTGAATCCTTGGATGTAGTTAAATTGTAAGGCTCGTTTCTCACTTAGCAAACGAAAGGGAACCCGCCGAACGTTCCTAACGTCCACTATATAACGTGTAGTTAATATCGAACAGTTAGTGGGGCAATACAAAGGGGCGACGTGTGACCGTACACCTAGGAAATGTAGTGGACGATGCCGATCATATGCAATCAAATTTAACTAATGTGTGGAGCGCTCTACGAGGCGAACACGCAACCACCATGGATCATTCCAGAAATCAAATAAGTACTAGTAATCCTATGGAAAACAGTTCTACCCTAGCATGATCGGTCTAATCTCAACTCCAAGAGAGACGCAAGCATAAACCTGTAATCATCTTACGGGACAATCCTCAGGCATATTCGACGAGCCAAAGGCAGCGCTCCCTTTGATGAAATTTAGAACACAGGTTTTGGGCGTGAATGGGTGAGACTTGTCCTCATGTTGGACCGTAAACCTAACTCAAGCTTCAATGCAAATATCGTGTCGCAGCTTTCTGATTACGTGCTATGCACGGAGTGGCGAGTGAATAAGGAATAATACCAACCTTTTACGAGCCAACGAACGCTGATACCAATAATGTTCTACACAACAATATTCGCTCGTGGGCGCCGATCTTAACGTAGGGAATCAACCGAATAAGACGACTCAAATCTAGGCCGAGATAAAGTTTGCAAGCAACCGAATTATATGGATAAGGGATAACCGCCATTCATGAGCTTATATGTAAGAAGCCCTTTAGTTAACTAATAACTAGCGTCTCAAATCGTGCGAAGTAGTTCCCCCCCACATACTATCATTTATCAGAACGCACCGCCAATGAAGGGAACCTGGTGCTTAGAAGAGTTGGGTGTTCACTACACGTTGTTCTAAGGCACGTAGAATGACCTTAAACTCTATCTTCGCGTGGTTAGGAGGACTGTACCACCTCTGAGCACGCTTCATATCTATGGAATATGAGCCAACAGCAACGATATGTCAGAACTTGCCTGTCGGGAATTCACGGCCTAGAATCGATGGCATCGAAACTACCGGCTCCACGCCCAAGCAGGTTTAAGATAGTGCCGTCAGTCGACAAGTTGACTTGTTGCAGACTATATAGGATATGAAATGTATCCCACAACCCGACTGGCATATGTAGAAGATTAATCTCGGCAACTCACAGACTATGACAGCGAGATTTAAGCGGGTCAAATTCCGTTAATAAAGCTTAGTTTGCGAACACACGATCCCGAGACGGAGATATACGAAGAGACAGAAATCGTCGTTTTTGTGGGGCAGGAAAAAGATATACCAAAGTGTCATCGGTCGTGAATGGTATGTGCGATGGGGATGTTGGAGTAAAACACAAGGACTTAGAGAAGGCCGTTTAACTTGTACATATATTCCTGCACCGTTCAAGGTTCCGCATGTATTGCGATATGAGGCGAAGTACTACTTGCAGGCGGTAACATGCCATTGGAATCATATATGCATAACAATTACTGATCGTAGCCCCCCATCACCGCCGGCCTCATCCGGAACGCATAACTGAACACAATTGCCCCAAAAATTTTTGCACGGTCCCGCTAACGGTGCATATTTCCAGAAGGCAGCCGTTAGATGAACACTCATTCAGTATGCTCAACAGTCCCGCTCGGACTATAGAGTGATTGTCGCCGGGTACTTTCGTCGGATTGGTGATCTCCGCTTCAAGCTACCGTGGTGGGGGATATTACCGGACACGGGCAGCAGTCAAAAAACCGCGCTCTTTCACAATCAAGACATATCCACCGCGATACTAGCTATCCAGCCCTGAAAATAAAGTCGCCATAAGTTGAGGAGTGAGCCTTGTAATAGAGTTAACAGAAGGGTATCACGGTGTGGATCACAAACTACGAAAATGAAAGGCGTAGTCACTATTTAGTTTAAGATGTCAGCTTTAAAATTCCCAGGCTCCTCTGCGTAGTGTCAATTATTTAGACGCAGAGGGTTGATAGACGAAAATGGACTGTGAGTTAAAGCGACGCCGACTAAGGGGAGTTATAGTTAACAGCCATTTCCTGGCTTGTAGCGGTTTATCCCAAGGACGTGTTATTGAGAACTTGAGTCCACTGATATTAAAATATAACAGTAACCTTACTTTGCTAACAATAGCCATGGTAGCCGTAACAATACCCCCCAGTAAGTTCACGTCGAGTTGACAACGACCATACAGGGAGTGCTGCGTTACCTACTGTGATTGTATGGATCCTGCGTTAAAGAGTAGACACTTGCCGAGAGAGGGCAACCACCTCTGTGGAAATTCAATTTCCTAATGGCTGAGTACTTCGCGGGTTTGTCTTTCTCCGGTGGAAACCGTAAGGCGATTGGAGCTTACCTCGTCGGGTACATATACTCAAAAACAAGTCCGAGAAATCAGGTTCTACAAAACTGAAGCCCTGGGCTAGACTGCATATCTTCGTAAGGATGCACCAATGAATATTAGGCAAGATGTGAAAGATAGTATGGATATGATCGTTCTGTCAAGGGTGTTTAACCGCTATGTTTTAAGATATAGGGACTGTAGCTGCTGAGCCGACTTATACATGACATCAAAAATTGATTGCCTCTGACTTCTATGCCTGTATAGCCGCGGGGAGTAAGTAAGGAAGCTACTTTATAACTAAGGTTCACGGCACGAAATACATCGTACCAATAAACGGCCTGATAGTGCAGGAGCTATAAACTATTGGCCACTTTTGTACCGGAAGAACATTTGGGCGAGTATAACACACGTTGTAAGCATCGTACCCCGCGAACTTTATTTCGATGAATTACTCACGCACATCTTCACTGTATTAGTGCAAAACTGTTCGCCGTTTCGTACTCCGCCCGGGACGGGAGTTAGGTTTTGGCTGTAATTGGTAACATAGAAATTCGCCCCACGGTTTCGACTAACCCATGATGTGAACACCATGTCCGAGGATGACGAACCATATCTTTCATCTCAGTGGAAGTTGGTAGAAAATACACTGAGTATACTTATTTGAACGATCGCGGGATGGTAATGTGACAATAAGTAGCATATTTCATAAGATTACTGGTGTCATAGCGTGTTTAGGACGGGGTTTGTCGGCGATGGTTTTTCATTCTCATGTGGCATGGATGTAGGATCGTCCTATATAAGTGGTTGTCTGTCCATAACCGGTCAATCACAGCCCTATTTATGAATTCGTACTTATCGAATAGAGGTGCGTGTACCACAGGAAGGATTTCTCCATACCGGATTTTCCATTGGTACTATCACGCGGGTACCGGGTTAAAAGATTTGTGCCGCGTGTTGCCTATAACGTTGTAAATTTTTTTTTATAGGATGTAAAGTGCAACTTGTCACACTTCTCCTGCACGAAGCTAGTTACAAAGTATTTCATTTAAACTGCTTTCCATGGGCAGATCTCATCAGTATAAAGACTTAATCCAAAGATAGTCCGCAGACATAAAGTTCTAGACGTCAGACATATAAACGGGATGGAATCTAGGACATGTGAATCCTGTAGGTAAGTACCGTTTGATAAATTAGATAAACAGCCTACGCGTAGATGTTTTTAACCACCTCGTATACTCTGATTAAAGATAGGGCCAGACTTAATAATCCTACGTATAAATGGCGGTTCCAGTGGCGGCGATCAATAAACGGAGGGTGTAGACAGACAGTCGCACATGTGGCTTCCTGGTAAAGCCCCGATTATGGAAAGCGCTAAGATCACAAATCGATTTTTCTCCAAGAGGATAAAATCCAGGTTGCAGGGCCAAAAAGTGTCATTCAAAAATAATTATGAGCATAGGGTGAGCAATCACGGATGGATGTCAACTCAAGGAGACATTTGAAACTAGAGGGACCCCTGCAAAAACAACGTTGTTTTAAAGACTTATCGGATTAATGAACAACTTTGCTTTCTACGCCTCCGACTGGTATCACATCCTCCAGTGTTCATCCGGTTTCTCAGTAGTCCTCTTGTGACGTGCCAGATACCCCCTGGAGTAGTCAGCGCTCACTGCCAGGCGAAATAACGCCATGGCTGGGGTTTGATGATTGGAGGGATTGTCGTATCAGTAGCAATACCCCCACCGTCATGCGTTTGTTTGAAAAGCAAAGTAGTGAAGAAAAAGATCTGCTCGCAGATAAGTAGCTGAAGTGAGGGCTGATACAGACTCAAAGACGTTAGCTCAAGCATAGCTCAAGTGTCAGTAGACACAGAGTGGGCCGCACACCATCTTTTACGGTAGTGGGCCCCGTATTACAATAACGTAATATATACTGAAGAGCGGGGATCTCGCAATTATGTACTACGTGTGATCGGAGTAATACGTGAAGTTACCCGAGGAAGTCGGCGCCCGGCTAACGGGAAGTGCGTCTATCCGATGCGGCAATGGTCGGTGACGTTTGAAACACCTATCACTACTGCCTCGAAAATATTAAAAACACAAGACTTTGTGTTGGACTGATGTAGCTTAGGACCCACATTGAAACTAGGAAATTTTCAATAGGGTACACTTCTAGCTCCTAGCTCCAGTCTCAGTGGACATGCGGATGGGCTTCCTATAATTGATTAACATCGGAGTAGGAAAATTAAGCGGAATGACAGCGTTTATAGAAGGATCCAGCTGCTCGTGGTAGAGAACAAACAAAACATGTCGCATCCGAGCCAATGGTTCTCAGCTCGACCACCTTGTCCCTGAATCAATCTCCGATTGGACCGCTTGCTATCTAGTACATATGGTGGCCACCTTACCGCCGTTTAAGAAGACCAGAACTAACTGAGCTTTCTCTCGTTTGGTGTGTCAAAATAGTATAGTATGGATAAGGAGTTATAGGAACAGGACACGTATCTTCGCCGCTAAGCCCGAGTCAGACATAAACATACCCTGCTAAATTTAATTTGGGCGTTAGTATCGGTATAAAGATAGGGAAGGTCGGATGCGATAAATGGATTAAGATACACCATCCGCGCGCGATGTGAGTCCAGCCCCTTCTTAGTTCTCTCCGATTACTCCCATCAGAGGGTTCATGTTATAGAACACCGGTCGGACTATTTGATCAATGTAGAAGCTAAAAAATCCCTACAGGGGAAAAAAGACGGTTCTATTATCTGGGTAATAGGGAGTCTCTTAGAGCTAACACCATTAATAGTCCTGCAGTCGCAATGCATCGAATGTCGCGCTGTTCTCCCCCAAGAAACCTTCACCTCACGTAGTTTACACATAAGTAAGAGTGTCCCCAAAATGGCTTGACTTAATCTTTGTAGACCTAATCTAACCTTAGATCGTAATTTTAGTCCACTTGTACCAGGTACAGCTTCTTCACACTAGACGGCGAAGTGAGGTCGAAGGGGTGTAGTAGTTTAAGCAAGCGTCACAGAGTCGCGCTGTATTTAGGTTAGCGTCGGAGCTATGGGCGCTTTTGGTTTAATACTAGCAGATGGTGTGACGTTATATTTGGTTAAACCGATCTAGTCGTAGCTGTTGGCACCCGAGATAATAACACGATAGTAGTACGGACGTTGGCAGCATGACTTAAGATATTGGTACACATACGTAATACCGATAAATGTTACGCTTGTGAAAGTTTACCCTGGAGTGTATAGGTACATGAACCAAAGACGAAAAGTAACTGGTGAGTTGATAGGATAGAAAGAGATAATTTAGCGTCTCGAAAGGCGATCACGCTGTGCTTAGCAGTATGGCGGAAGCTAGCGAAGCCTAAAAGGCACGTGTTGCACGCTTTAAAAATTGGCTTGGCTGACCCGAATCATTAATTGACCAGCACAATTTCTGTCTGCAAAATCAAGTGTTCCGGATTAGACGATCGCGTCGGTATTCGAGCTAATTTTTGACTTTCGTATCAGACTCAGGAGCTAGGTAGACCGTAGACTTAGGCAAATCTAGCGGTATGTTAACAGCGCATTACGTGTAAACCAATATGAGGGGCAACAGATTCTTGTTTGCCTGTTGACTTGCCTATGATAGAGAAGTGATTAAACACGGAGAGACCATTTGAACTTTGTATGCTAGATATATACTTGTTAGCTGATTATAAAAGATACTAAATAGAACAAACAAGTATGCTGGTTTGTTGCGAACTAACTATTGCCAATTGAGAGCGTACACTAACTCCTGTGGTTCCAATCACAACAGCGAAAATACGGTTGGAGTTGGTTTGCTGCCAAGTTATTCAATGTAGGCTTAGAAGTCCACACGGCGCTAGTTTGGTATGAAACGTGAACCTGGGTCTATCAGCATGACTTCATGAACTATCATCCGATGTGATACTAATACGGGTACGCCCGGGAGTGCCTATTCGTCTACCGGCACATCGGATTTAGACAGCCGGCTGCCATTTGATGACCTAAGTCACGTTAAATCGGCCATACCACAAATAGTCTTACCAATAATGCGTATAGCGAAGAGAGCACTTTATCGTCTAAGCCCATAACTCAAGGCCAACTTCCATGACGTGGTCAGGTAGGCTGCGATGTCCCGAACATATCCGAGTCGCACAGAGGTTATCTGAATTGGCATAACAAACAATGGTTTAGGTCCTCCAAAAGCGATCCTCGGATGGCCCTTCCAGGGACGCCTAGCGTTTGTGAACGGGAGCCTGGTATGAGGTTCGATGAGTTTGAATTCCTCGGAAGTGGTAGACAGAAAAAAGGAGCTCACTTCTGGCTTGAGTAGTGTCCGCCATAATAGACTTCTAAGCTCGGTATACTCACGTTGTTAACTGTCAGCGTCTTGAGCGCATGGTTAGATTTAGTGGTTGTAGGCCGCTCTGATCGTTTAGTGATCACAACGCCGTGTCCACCGAGATGAGGTCGTGGCTTTGTAATAGGAACTCCTATGAGCAGTGTTCATGATTCAGATGAGAGTGTGGTTTTATACTAGACAACCTGGGTCGCATAACTTGACTTCCATTCGCCTAGCAACTACCGGCCGTGTGCAGTGATCTTGTCTGCATTATGCGGGGACAGGCTCTTAAGTCCATATAGGTATTCGTTTTCTAGTGTGAGAAATAGACCGACCTCGGCTATCCACTGCCGCCCGGTTACAAAAAGAATGTGAGGTGCTCAAAACCATACCCTCAAACTTAAATTCTACACGAACACTTTGTGATAGAAGGACCGACAAGCGAGATTGAATTGATTTCTTGTCTCGGAATCGCCCGACTGTTAGGTGCTCACTGTCTCCTGGCCGTAAGCCATAACTTCTTTCTAATTGAGTCCCGGTATGACCTTCTCCTACCTAAGATAGAAGACGGGTAGCCGAGAAAGGCAGGGGTTACTCATGGAGCGTAAGCCAAAGTTTGGGCACTGGGGACACATCTCGAAATTAACGAATTTTGATACGACTGTAGGTCTCGGTATAATTCAAAATTTTCTCTGACTACCGCATCCTCTATTATTATAAAGGAAAAGGTATCTTCCGAATTAGCCTACTGTGTAAAGTGCTATTGGAGCAGCCTCCGGTATGACTAAACCTCACCTCTGCAGGGTGACTTGACGCACGAGCTACGAACTGTTTCTTCCTCTGGACACGCTGACTCCCCTACGACTTACTTTACTTGTCACCCCTCAGAGCATCGTTGCGAGCCCAATGAGTCCTAACATGATACGTTTACACTTTAAACGCAACAGTCATTGCTACTACGATTATAAAACGGATGAATCCGGCAATTAGGCATTCGCAAACAAGCCGGCGAATGCAGTGTAAGTTTCGGGCTCAAGAGATCTTAGTTCTGGGAACAATGGTATTAGATGAGAACAATACACCCCGGACCAGAAATGATGAGTAGCCATTAGCCCAATGATGAATCAGAAGATGATAAAAGCAGTGACGACGGGGAAACTCTGAGGGATGATAAATCACTCATTAGAGCTGTTACCGTAGTTTCAGGCATTGTAGGTGTAGTCAATTATACATGACATTTTGTTTCAAATAAAAATATCGCTTATTACCCTATTTGGCTTATTCTGATGAACACGTCGCTACTGATTATCCATTCGTGCAATTATCGTATAGAGGGAACAGTTCATCCCCGTCCACTCTAAACCCGATAGCCCACCAGAACGTTTCCCCTGGGCATCGTTAAAGATGTGTAGCACGTTTCGACAAAATACGCAACTGAGGGCAATTTAATGTACTAATCTACTGAGGCAAATCAATTACAACGTTCGCAACCGTCAATCAGAACAATAAAGATTGGCGTAGAGATCCGCCAATGTGGATAAGTAAATCAATAGGTCAGTATCCTCTCGAATATCTCCTGAATGTCACTCCCAAAAATAACTGCTGACATCAATGTGTTACGGCAGGAATGTAAGGAAAATGAGATGATCGGCCTCCTAACTTACAACGTTGTTTGGGGGTTTTCCTCGGCAACAGGGGGACTGAATTCTTCGTTATTCGCCAGCGACCTAACTCTTCCAATAGTTCTGTTATAGCAGCGCAGTTCAATCACCGTATATCACAGCGAGCTCAAACCATGACGCAGTTAATCGTTCACGGCAGGCGAACAGCGTCCATAGGTCTTGAGTTATAGGACTGCACTAGGATAGCAGGGCAGTCAACAGTCCTAGTTTGTCCGAAGTCTTAGCCTACAGGTATCCTTGAACTTATTTTTAATAAACGCCATAGCAGGCTTGAAGTAACTAAGTCTGTCAGGTCAGAACAAACTTTCAGGAATAGATGACTACGAAAAGTGCCGCTCAGTAAAAGGAGGTGCTGGTGAACAGAGGACTATTCTCCCAAGTTCAGTACACGGCTACCTGCATGTGTAAATCAAGTACGGAATGTGTGACGCTTAGCATAATAACCGTGGTATATAATGTGCGTTTTGTCCGGCGACAGTACGTATATGTGTCTAATATACAGGTAGACATACGATTCCGCTCCTACAGGGTGAGTGAATAGTACGGAAACTGTCGCGTATGGCTAGAAGCGGGTAGTAAGTATGTGCAATGGCCTCAGTTTCATGAACTTAGGGAGGGTGGGGTTAGTTAAAATATGATCATAATATAAAAGATGATATAATGGGCCTTTCCTAGAAGAATGAAAGCAAATGGGATAGGGCATAGGATCATGATCAAGGGTCTCACGGAGGACTTCGTTCGGATGCCTCGCTCGTCGCGAACAAGAAAACAGATTTTAAGTCCCTGTGGCCGGAGGATACCGTTACTGTACAGACAGATTAAAAGGCAATTATGTCAAGCAGGATTATTCGATGATACAGATAATACAAAGGACTTAACAGATTAAGCGCGCCATGATTGAGTCTAATAAGTAATGATATTCGTTCAAAAGGTTGATGCGATGAAGAAACGAGACTGGGCTACATGGATAAGCAATGGGAACAACTGTCTGACTTTGACCCAAACTAATTGTTACCCTGTGAAAATCGTCTTATACAAACTGCATGAAAGGCTTTATTAGATTTTCTTACTCGGGCTGTGAACATTACTGCTTAGCCCCCGATGGCCTTATGGATATCCTAGCGCTGCCGAGTGAAAACAGATCGGTCCACGGAATTAACTAGTTAATAGTGAAGCAGGCAGCGACTACAATCTAGCGCCTAGCATCAATCGTAACTAAGGAAGCCTTTCAATGGGTAGGGGTTGCTGGCGCGTTACTGGCACGCGAAATTCCTTTTCATTTGCCGGTGGTACTAATGTTATGCGTAGGGTATCCGAGGGACAATGGTGATCACAGATGAAATTTGAATGAAACATATCGGATTTTCAACATGCATTACGTGATTTGTATGCTAATTGAACTTACACCAGCTCTCTCAAAACCATATCTAACCTTAGCAATAGTAATAGTGCGATTAGATTGGTAACCATAGGAGGGGGTAGTGTACCCATTCGGCGGGAAGTCTGGTCGGAACAAAACTTTCACGAGGAAATTATGAATGTGTTGCTAACTCCCGGGTTTACAGTTGAAGTGTTAGTTCCAAAATGGAGACAGAAAAACCTGACTCGATTGACAAGGCTTTTTGGGATATAGGTACTATCTACCTTAACCGAGGTTGGGAGAGGCGAAATACAAGGTTACATATGCGCGAAATGCAGAATACAGTCGAACGACCTTGATTATTAATTATGCACTATGAGGCTACCTAGAAACAAGTGATACTAAATTGGAACCTGAGGCTATGATTTAGGCGCGAAGTAAAAGAAAGGGTATACCGAACATTATCGAGGGGCATGGTATTAAGAGTAGGAATCGTTGCAGGGCAGCACCATGCAAAAGACGGTCTTCACAAAGACATCACTCATAATCTCCGATACTATTGAGCAACACAAATATTCTTTGCGAGGAGTGGGTTTATCAGAGAATCAAGTATGGGTTTTTCTCCGCCGGCTGGCTTGATCAGTGAGGCATACACACGAGGAGCACCCACCACACCTCAACTTTAATACAATTCCTATCTTCTTAGTATCTTCTAAAATCTGCCGAAAATACACCAGATGAGTGCTATAGATAACGGATCGGAGAAACACGTAGTTCTTTAAACTCAGCCTGAAGGTTGAAATCGATTCTAGAACTAAGGTCCACATTTACAGATCATGCTCTTTAAGTATAAACTGATAAGTCCAACTGCCAAGTCCCTTGTTGAGCAAAGTCCCTTGAAGAATGTTGCAAAAAGCAGTTTACACTCCCCAAGGGTAACGGTCCGCATTTACAAGTGATGACCTCACCAATACGGAGCAATTAAGTCTGTAATCACTTCCCTGGACATAAATATAGAATTAGCTCCGGGTGGCCAATCCTCGAGTGGACAAGTTCCATGCAAGTATAAGCTACATCTCCACTTAGCATTTATTCGCAAAGTCTTTCACTGAGTTGTGTAGCTTGTGCCCCCCAAGGAGACGCACGGAGAGGCCCTGAAAAGATGCATGGGTGAACTCGTGAGATTGGCCACTGTTCCGGTCGAACGGGTGCTTGAGTTTAAGTTCTGCCCTAATGAGTGGAGGTAGTCTTACAGGTAGTTGGTTAAAACAGCAATTACCAGGGAGATGGCGGCGGAGATCGCCGGATTTGCCTGAGCCTGGTGGAGGGTGGATATATCTGAATGGCAATAGAAGACATTGGTATCCGGGCGGAGCCATGGTATTCTTATTCAATAATAGCATAGCAGAACGTAGCTTTGACCAACACTAATGGGTCCGATCACAATTTGGATGGAATACGTAATGCACTCACCGCCCATTGACGGAGGCATAGTCCTACGAGGTATGCGGCTAAGATTCGAGCCCTATGAACCACGATGCGGAAGGAGTGATAAACTGGAAGTAAGGGCTTCAACGGAGCAAAGGAGTGGTATAGATTTCCCCTTCCCACGCTCCGCTCTCCCAAAGAGACCAATTCAAAGCAGCCTTGACTCTATGGTGTCAATCCATCTACGATACTTCTGGCGCATAAAAGTTTTCGATAAAAGTATTCTACTGCAGCCAACCCTACTACTTTATTGAGCACAACCGATTTACTTTTAGAAACCTGCGATTCGAGGAAGAGGTGGTAAGTATAGGAATTATAGATCACCCATGACTACAAGAGCTATGTAGGGACAAGGAACGAACGCCTATCACTACAGGCGATTTGAACTAAGGTTGAGGGCTTATAGTGGGTTCCAAACCTACTGTACATAAGTCCATATTTTTCAATTCAAAGTATTGCCTCTTGTTGTCCTGCATGGGTTTGGCGCTACGGGCAGGTGCCGTATTTAAGCCTCTACACTGGCTCGTTCACACACGATATGTCGTCAGAACAGAACTACCTAAGACGATGAGACGACTAACACAGTTAACTCTCTGAACGTGTGTGGGCTCTAAAGCTATTCTCACCCTCAAAATGAATATTTAATAGAATCACGGACCGTAGGATTATCCGTACACCATGCATTGTATGTCTCGCAGGGGGAGCGGTTATGGTTACATGTTATTATATTCCATGCATTCAAGGCTCTAGATCTGACGACGTTAGACTTGATGTTGATCCGGTAGGCAATATTACTCGGGTGCATGAATCCCGCAAGTGTGCTAGCAGGCTTAGCAACTGATTTAATGGATTGGCTGCATAGGATATATGTGCATGTACGCTGGGGGGGTTAGCAGCTCCTCGTTTTGATACTGTAGATCCTGCGGCGAAAACTCTCATGCGGGGGAGCCAGGGGAGGAAATTGCACCCATCCTGAATGGGGGTGACAAACGTTATAAGCGGTATCGTGTGGATACGGATTGTCCGTGCCATTTCGAGACACCTAGTACATCTAAGCAACGGTTCTATTCACGAATGGTTCTACTGTCCGTTACCCTAGGTAAGGATCTTTGTTGTGGCAACGATCGAGTAGCTTCGGGGTTCGACTTCGGTGCTGTCCAAAACGTGAAGACGCTATGTTGAACCCTACAGTGATATAAAGTACCCAATCCACCGGGGAAGTTATCCCGTCCACTCACACGTATGGCCTGGTATTCGACTTTCGTGGGTTGCCGATGATAAATTATCACGCCTGAAGTGGTCATGTAACGCCGGAGGTGAAAACTACATAATCCAGATGAAATCAAAGAGAAATTTTTAAGAATTCTATACATTTGTAAACGTGAAGAATAATTGACATGATCTATTCAATTTTGTCTTAAGTAAAATGTTGTTCTTCGAAAGTGTAGCTTCTGCCGGTTTATTGTAAGCACGATGCACCAACGGTCTAGTATACAGCTATATGTAAGCAAATTTAAAATTCATCCGCTGGAGAGACGGAAATCGGGCAGGTCGTGGTCTGCACGTATATCTCGTAGTATGCACCAGTGTGTACACTTCCTCGAGATTCTTGATTAACATACCATATACTAATAATAATGACACAACATCTGCATTAGGAGGGGGTTTCCTGTCTTCTACGGCCGTTGGACACCTGTCTAACGACCAAGTGCGAGTTACGCTAGGCGTGGCCCTTTAATTAAATTGTCAAATTCTATTGGAACAGACCGCTTCTTAAAGTAATGTAGTCGGATTTTATCCGGGATTCCATAGATCGTTTCTAGAATCTGGATTTGTTAACTACCTATACATTTAAAATGGAACGCGTCGCTCAGCGTACCATCTCATATAACTGGTTTGCAGTCAGTTAGTGCATCCATTATATTTTCCTTAACTGAGCCACACCAGCTGTGCGCCTCATTACGAACCCCAGCTGTTGACGTCCCCTGCTAATGTGGTATGAGTGTCCCGTTTATTTCTGAAGCAACTTGTACAATGAAAAGCTTGCGGGGCAACTGTCGGACCCGGGATGCAGAGGGCGGTATCTCGCTACTCGCCTGGATGGCAACATTCTGAGATCTAAAGCTAATGCCCTGGGGCTGTTTGAAGACAGATCGGCTGTAAACAAGTTTCGTCAGCGTGCGAAGCTTATTACTTTGACCTGGGACAAAGGCCGCAGAGAGATACGGTTCATATGATTAGAACGTCACTTGAGGGCTAACACCTCTCTCGTTGGTGTTCCCACTCATTCGCCTGAATGGAATCCAGAGTGAACTCAGGAGTTATAAAAAGGGTATATTGCTGAATGTGGTGATCAAGACTGATTCTGCATCGGAAGATCCTTATTCTGTCGGCCACGCCGCTGTAAAAGTCTAGCTGTTGGTAGGCCAATCGAATTTGTGGTAGGCCAGACCTGAATATATTAGTGAATACTTATCCTCTAATACTGTGCATCGGCTCTAAGTTGTACGTTGTGTAGGTTAAATTTATACGGGCTATTCTATTTGAGGATAGTGGGCATCGATCTATCTGAACCGGTAAATCTCTCGTGTAAATTCGGAGTCACTAACGACGACTATTGTTTCAACGGCCTAGACTTCGACACCGCAGCCTTAGTGTAGCACATACGAGCAAGTTAAGAGCAAAGGAACTCTTAAAGGTGATAGAAAAGTTGAAGATGCATATCAGGCAAAGTAAGCAATAACAATTCAAAGGCTGTCACCAACTCTCGCATACGGAGTAGATGACAGTACAGACGATATACAATAAATTGTGAAGTGTAGTCTCGTTGTAGAAATTGGCCTGACACTCATTTGTCATGTAATTGTTAGGAGACTTACTCGTGATATGAGGACGGGATTGGAGTCCGGAACATATTCCCGGAAGGGTCGGTAGTAACGTTGATAAACACACGTACTCAAAACGAAATGATGGAGAAACTCCTTTGTACTTGTGAAGATCCCTGATGCAGAGATCAACGTAAACGTCTGTATATTGTTATCACGTTATGATTCAAAAGGTTGTGTTATTGATAGAATTATGATTTGGTACGTAGGTTTTTGTAAGTTTTACCACTGGGACTAAATTACAATGATTGCATGTGCCTAATTGGATCAGCTGAGATTGAACGTTTACTGCTCCGTTTGCCACCTGCAATAAGGTAACGCTCTACCTGATCCCGATTTATTCCACTGCTGTTGCAGTCTTCGAACTGAGTACTTATTAGCCACTGGAACGCTTATCAAGACGTCTCATGGCCTCCAATTTCATGCGATAGTACCGGACGGCAAAAAATATAACTGGCAGTATAGACTGAACAACAAGTTGACGTCATTAGACCAACCCTGACTCGACCATGAATTCCAGGAATTGATCCATCTTCGTCGTGGACCCAATAGATGAAGTGTTTTGATTCACTTCGATTATATCGTAAGTGGAATCGTAAATAAATTATAGGTGCATCAAGGAATCATTAACCCAAACGTATTACTGGTTGTGACCACGATGACATCCTCTCAAGTGCATGAGGTCGGGCCACTTCCCCAGAAGAGTGGACGTATACCGTGGGGAGATTAAGGAACATCGGGATCGAAATTTCAAGGACATTGGGCATGTAGTCTGACAGAACTATACCACAACGGGGGGATATTGTTTTACTGCATCGTTCATGGTTTAGTTCCAAGAGGATGGTCGGCTAAGTCCCAACGAGTAGCTACGCATCGGGGGTCAGTAACAGGATTCGCGGATCAGAAGTGACATTTCTCAAACCTAGTTGGATGATCACCTCTCTAAACACAGGGTCAGCCAATGACGCTGTTACTTACCTCCTAAAATTCTAAAACGCAGCATAAAAGTGAAGCCGATTATTCTTATAATGCAAATAAGAGGAAATTGCGATCGGAGGAATGAGCGGAATATCAATACCTAGACCCAATTAGTGCAGAATCATTCGACCCTCATAATGGAACGGTTGTGTGAATCTGACTAGTAAACAGCGAGGCGTTAAAATGGTTGCTCATGCCAAACTAACCGTTAACCAAACACTGCTGATTAAAAGCCTTTAATAGGAGATAGCGGATAGCCCTGACGTGTCCATGCTCGTCTTCCAACTTTAAGTGTTACTCTTTAGGTAACACCAGCCGTTTTATATAAAATAGAAAATGGGGAACTCAACGAGATCAAATAATTATGTTCATCTGTCATTTATGTTAAGTATACTACGCGGACCTGTTAGGCCAACGATACGGTTGCTCAACTCCACTGGACCATAGGGTTTCTAATACTGGTGTTTTTTTATTCGATAACAAAACAAAGAAGTGACGGCCCATTATTTTGCAGTCCCGTAGTTGGGCAAGACATTTACATCAGGTTCAGTATATCGCTCGAAGAACAATCCCTGTCGTACGTCATTTATGACTCCCGATACTTAGTCCGCCCTGTGAACTGAAACAAGTATGCACACCAAGCTAAGGGGATATCAAATTCAAATGTAAATAACCGTCTGTACGGGAGACAAGAGTTTAAAAGGATTTCAATCTTGTATTATATAGAAGAGCAGAGTAGACGAGACGCTCCAAAGGTTGGAACTTGTGTTATGGGGGGACGGCAGGTAGACACTTATCTAGCGTAAAGTACGAAGGCATGGTAATTTACACCCGTTCATGCATCCAAGGAACGCTAAAAGTTACACATGTACATGGGATGCACGTTGTGATCTGTTTACTTTCAAAAGCTCAGGGTAAGTAATACGAGTCTATCTAATAGGTGAACTCGTAGCAAGCTATTGGTTAGAGAACACCTACGAGATCGGTGCGATGTTCACCACCCAGAGTCAAAAAAGTCAGCATCGCCGAGCCGACACCGGAATAAAAAATAATCGACCTACCAATATAGGTCTTGTAGTTTACAAATCAGGAGCGCCGATAGCAGGGACGATGCCAAGCTAATTCTCCCAAAGAGCCTGGTACCACATACTAGCTCTACCGGCGTCTTTTCTATGAAGCGCCATACTGAGCATAACTCGCAGCTGAGCGTGGTGTAGACGAGCAATGGGAGCTGATGGAGGGTTAATTGCTTTACTACGAACCTGAAGAGTCCTGGCGTCCCGGTCCTAAGAAGCTGGGACATGGGGACAACTCCATGAACATCTTGCTAGTTCCGCAAGTCACTCCACAGTCTGATCCGATATGCGGTTTCCAATCTATGAAGGCAGATCGTTTATATATATGTCGCGTTCACGTGGGTGTCCACAAACATACAGTGACACGTGGATGATGAACAAGCAAAGGCTAACAGTATATCCAGGCGAGCTTTTGGGAGAATCAGGAGCTAGGATCTCGCCGGAAGGCACTGCCTTGCTACGCTAGACGATGCTCCGGAGGGGGCAATATAAAAGACTGACCATCTCACGCACATGCACATCTGACTAAACCTCGCCCTAATTGGCTGGGGGGTTGTAGAGCATAGGTCTGGGCTGTAACATAATTATAACAAAGATAAATAGACAATTACTGATACAAAGATGGTTACTAAATGATCAATAACTAAAGTGTCTAATAGTACGCATCCCCCTTACACAGAATAATGGGTTACACCACCAGTAACCCACAATTAACCAATTGGAGTCGGTGCATAGAACTTTAAGGTTTCGAGGATCCTGTTAAATATCTCATTTACCGTCATCGATGAATATAAAGCATTGTGAAAACAACCGGGTTGCCACCTCCGCGTTTGCCATGAACCTAAGATCGGTTTGAGAGGGTGAACCCCTCATTTAGCCTGCAGCCATAGGAAAAAATCTAGCCGGGATGGTAAAGCGATGGATAGGCGTGGCGGACAGTAAAAGTTCCGCAAACTTCAAGTGTGATTATTAACCATTGATGTTACGTACGGGGAAAACAGTGCGAGTTGGATACGGCGTCGAAGCGGGTTCTAGCCTATTCAGTTTTTAGCCCGTTATTAATCGGCCGGTCAATGACTCATAGGTGCCTTATAATGTTGTATGTCAATGAATCATCTCCCTTGCTCTCGCAATATAATTACTAAAGTACCGTGTACAGTTTGATCCACGGTCAGGGGACGTACAGTTAGACCATCATGGCTTCCAAAATGTACATGATTCAGAGTCACGTAATTAGTAAGCGAATGCCAAAAGCACCGTCATGTACTACCTGCATAGTTGGTTGGGTAGTTAAATGGCAATGCCCTGTTATAAGACGCATAGGTGACCCAGGGTACCACCTTTTTTCGATAGAGGCCGTTACCGCAGGCTCATAAGCAAGTAGTTTAACCATTGAGTAGAACTTAGTCAGCACTGCTATGCAACACACCAAATCCTGGTTAAACTACCAGTAGATTTTTATTCCAATGCAGAAATTCCAACACTAAATTGTTAGTGCCTAGTGCCAACGACAATACTCAAAATTATGAAACTCACGCATGAAAACTGAGCAAAAAATTCCTAATGTTGGGATATCCACCACATACTTGTTACCAAGATTTTAGTCTTCATGACTGTTGTGATACGTGTTCGGATCAATATCTTCAAACTGGAAGATCGTTATATACAGGCCGTGTGGTTTAGAGATTGGACATTAGTACAAGACCGCGGTATGGAAACGCACTAATAGCCTGCGAGACGTGGGCAGCTGAAACTAGCATCTATTGCGTGACCACTCGTGTATCTCTGGTTACTCGAAACCATGCGTGGAGCGGCTTGACCGTTTTCTTGAGATATTACTTTTTATATTAGTCTTCAATATTTAATCTTCGTCACCTCAAAAACAGGGCAAGATGTTGCAAACGCCGGGAAAGGCAGCGTGCGTGATAGGAGTTTCGTGTCTTGGCAATTAAAATTTTTGTTCCTCATGCACTGGTTCCGAAGGTATTTTGGTACATAGAGAAAAAATGCATGGCAAAAGATTTATGCTGAATGTTGACCCTGCTAAGAGTGGAGTTTGTAATTAGGCATTGGCACATCCGGTAAAAGCTCGGTAGACCCTTAATATGCATTTGCCGCTCAAGCTAAAACCCAAACATGGCTCACTAAAACAACGAGGGGTAGTGTCAGTTATTAAACTCAAGGCTAGGATCTGTGTTCTGTTTGCCGGTCAGAATTTCGCGACATGCGTCCAAGATACTGTGCATAATGAATATCCACGACGGATGTCAAGTGATACGAGATCCTCGTACCAAAATGAAACTCGGCTGTTTTTTCCCTCACCACGTTAATATACGACCGACACCCAGATGCAACTTCTACGACAATCACGTGGCAATATATTTCCAACGCATGAGCCCATGTACACAAAGAACACCAAGATCGAATTAAAATAGCTACGCGACAAGCACATAGCTTGGCATGAGCTGAGGGGAAAAGTAGTATACCGGTTGGCGTAATTCGGTCCTAATACATTTTCTCCGCGTTCGCCATGCTGTTAATCTGGACCAACCTCACCTCATGTTTTGTCTTGTGTACTTTCTGCCGTTTAACATATGCTACTTAGGGGTGCTTTGGGACCACGTTAGTGAGGGTACGAAACCGCGCTACTTCCAATCAGATTCGCTAGATACATCAGACATACAACAGTAAATATGGGCTGAAAATATGTGGTCACACGTCCAATGGAAGTCTAGAGAACCAAAACCTCCGTGAGATGTAGGGTGCGTAATCTAACACCAGAGCACGCAGGACCTCAAAACGTATGGACCAATTGTTATATCTAAAGGAGGAGCTTGCTCAGTACGCTAGAACAGAATATTTCAGATCACAGTTAGGTTACACGACAGAACTTTGATAAGAACACCTCGACAACGGAATGACTCGATCATTTTTTACAACTATATATCAAATTGCGTCTGTGGACATCTAAGGAAGACCAGTAGGTCCATCAAATTGTCGCGATGAGTAGATCACGCTGAAATCAATATAAGTATCCCGGCTAGGTGATCCGTGTAACAGTATACTTATAGTTATGGCATTTACGCTGACAGAGTTCTTTGAAAAGACGGTTAGGTACATGATGCACAGGGTGGAACACATCAGCTTATACTGATGTGGCCGCAGCACTAACTACCTATTTCATAGATGTGCATGAATTGCATTCTAATTTACGATAGAGGACACGCATGAGTACAATGCAATCTGTCGGGCGGGGCGCTATCTGAAATGGGAGAGGCTCCAGAAACTTGGAAGCCCAACACGATAGGGAGAATACCTTGATAGAAAGAGCAGTGTCAAAAAAAAGGAGATATTAATCGCAGATGCGAAGTAGCCACAAATGGCTACGCGATACTCATGTTAAGCAGGACACGCCTGAATTTGCGAGTACTCATGTACATATTCTTTAAGGCAACAATAGACGCTCTGGTGCCAGGACTGTCCTACGAGAGCGACAAGAATGAGCAAGTGCGGATTCGGAAACCGACACGTCTAGGAATAATACATTCGTAAGACAGGAGACTTATGTAGCAAAGATATAGAGAGTATAGTGAGCCGTAGAGGGAAGTGTATGCATGTCTTTGATCGTGAGACTTCGTAATACGTCTGAATTTTGGGTATAAAGACTGGGGAGATCGACTTCTAAGCCACTAAATCTTGTTGTTGGCTTTTTCATCCTGTGACCACAGTGCCGTGTCTTGTGTTGCTACGGAATACGGTCGTTATTGAAGGCGATACGCAGTGGTCTGCGGGACCGGGGGCAAATAGGGGCAACAACATGCCCATTCTACCCGTCATCCCCAAGATAGCAGTAAACTTTATTCCCTCCCAGAGAGAGAAAATCCAAAAATAGCTTGCTGCGTATGCCGTAAGTGATCGCAGATGTGAGACAAGACCTATCGCCTTTAGATCGCTACATTAACGGTAATTGCACGCGGGAGCTTCGCTGAACAAGTTCATTGAATAGCGAAGTGCATGTCATCGTGTAGCATACGTATTTCCTGATGTACATGCGTTCGTTTATCACTTCAATCAATCAATACAGTTGTCAGTGGAATAACATACTCGGGTTGGCGGAGAGTATACATTTGATTTTGCCAGCGCATCCCTGGGATCTCATCTCCTAATCACCAAACCTACATGATTGATGTGAAATTCGCTTGTACACCTATGTAGCCACTGGGTCAAATATAGAGCTTTGCTGTCAATAAATTAGATACGAGACTCAAGTGCAGACAGATAACGAAGCGTCATTTCCAAAATTTATACTTCGCGGAGTTACTCTTTCGCTGGATATCCCTTCTGGGATTACGCAGGTTTACATGTAAGTTCATGGATACTGGATTTCTACCTGTACGAGTCGTCCGATGGATATTTAATTATCGAGCGGTCTGGTAGTTAGAGCTAATAGAAGGTACAGTTAGCTCGGATATTCAAGCAGATGGCAGTTCAGATGAAATATAGTTGCATCGATATTGTAAGTTGGGGTGGTCTACGACGCCTATCCTGCTATAGTAAGAATTGGCGACATGGAGGAGGTTATGAGATTGACACTAAGAGAAAGTATCCTGCCTACTTGCTAGGTCAACGAGGCTGTTTTACATGTCAGCGTATACAGATGCGATTTGTAGATGGTGGTCAGTTAGCCTAATCACTAGTGAAGTTTATAATCGCCCAGAGAAAAACAAGTGCGAAGGTTTGTCAATCCTGACGGCCTTAAGGGTGCCAGGAGAATGATTCTAATGGTGTCAAGTTACGAGTAATGAAAGTTACGGAGATCGGACAGGACATAGGCGCAATGAGACGAAGTGCAATGTGCCTATTAGTACAAAATTGAGCGGATATTGATCATTCTGTGTTAATAACACTAAATATTGTTTGACTGCCTTTGGCGTCCTGATCCTATCCACGAATGAATTTAAGTGCCCGAGAATACCGTTAAGTTGATGCGTTTGCCCTTGGGAGATATCAATTAGAAATATGATGGACACTAGGTTACTGTAGTTAACGCCTTTGCTATGAGAACCTTAGAAAGTGAGTCCTCCGTGGCTCAGATTTGCTAGAATGACAGTCACACAGGTCAGCGTGTCCTATAAATACATTATCGGGGTGAAGAAATTTACACGGAGGACGAGAGCTAGTCTGTATGAGTAGGGATCAATAATCACGACCAACTAAGCGTAGGCCTTTTGTGGCGATTAAGTTGTAAGATAGTCATCTCAATAACTTGAAAAGAAAGAAAATTGGATCGAAGGACGCTGATGGTATGTGGTTAGTGCTACCGTCTTATTCGGATTACCTTGGAAGGATTCATATATTCACATCGCACAAACGAGAAAATTAAAAGCACACGCTAACGTCTGGTTGTCCGCTTCTTGGGCACGCATGGTGCAGGCGTCGCCCTTAATAACATGATGTACCACATCTTTTCCTGCGCACAATATTCAAGTTGCGAACGTTTATACGTACTAGCTTGAAATCACTACCGGGTGTCTATTTCCATTTCATTATAATGTTAGAGTTAGTGGGGACCGTCCGACAGCACACTTTCTTTTAAAAACCAACAGACTACGTTAATAATACTTCTGCAATTGGTATACCATGGATAACTTGAAATCAAGGACAGGAAACTACTGTCTCTCAGTGCAATAACGGCTACGTATGGCTATATCCAAATCATTCGACAGGCGTAGCCTAGAAGATTAGAATTTTTCATATTACTGCAACTGTGTACCCTGCGCATCATGTTAATGATGCTACTAAGTGAGATACAAATCAGAATCCGACAAACAAAAAGATACCTTGCCATTATTTTTCAATAGAGCGCAATTCTACCAGAGCCCTTTACCTAGCAGTTCACGGATGTCGAAGGACTTGTCATAAAAGGTCCAACAGATATATATGGAAACCACGTTAAGAGGGTGGGACAGTTGGTAAGTTTCACCGACTTATGCTGCGTTTCTGTAGACATGGGGGGGTCTCTAATGATCGACTCAGCCAGATAGGGGGTACTACCTTCCTGTTCATCACGGGTGTAACACTGCTTCGGACGGGGTCCACGCAGGCTACCTAAAAATAAAACCGATCCTAAGAGAACGTAAATAAAGGGTGTATATGAGAAACAAATAACGACAAGAGTCTCGACAGTAAATCAGTTGTATTTTGACGAGAGCGGTACGCAGAACACTAAGTCTGGGTGCTCAGGCGCGAGCTAACCACGAATATCACCGATAGGACGGACTCATCACGCGTTTAAGCACTTCTTTAACTTGTCTCTGTGTTAGATATGATCGTAACAACGCTGATGTACCTCAGGAAGAGGATAATAACCTCATTGATGAGACAAATGATGTTATCCAGAGGAATGCCTATGGTTTATGCCCGGGTTACCTCTCCGGGGCTAGTGGGAAATTACGATATGAGGGTTCCTTGATGGAGGCGACCGGTAGCCAGATGCTATCCGTAATGTAGGCGTATTATGAGGGCATGCAGGAAATTGGAGAGCACAAAGTACGTTCTGCAAAGGCTCGTTCCAGCGATTAATCGGCTTTCCACTACATTTCCTGATGGACCCCTAATCCGTGGAGTTGAATGCAAATCTGTTGGGTGGTCCATAATTTTTATATCCTAGGGTCCGAGTGGGTAGCTGTTAATCTAGAAGGAGTGAGCAAGCCATACGTTACCTAAGATCCTGGGCTCAATATTAGAAAGAGTATTCTGCTCGACAATACCCCTACATTATCTTAAAGTGCGCTTATTCTTTGCCGGACAGTATAATGCGCAGCGCTGCCATCGGGTAGACTCACATTTTAATGATAACCGAGAACGTAGAATTGATAATATACGACGAAGTTATTTATCCACCCGAGCTCCGTTAGGTGTCAAAATAGTACCATACTACAGTCAAGTGGATGTCGCACAATGCAATCACGCCATACCTGGTAGATGGGATCAAAAAACCATACCGCAGGAGAACTGCACAGTATCAGGCAATGCTCAGATCTTCCAGTCAATTCAAGTGGCAGAAAGTAGCTCAAAAACTCTTAATTTTTAGTCGCGCTTTGTGCTGTCAACGAAAACTACCTGTGAGCCGTAACAAACTTACTTCTCTAAACGCTTCACGGTATAGAGACCGTAAAATAGCACAGACACGTCTATCAAAAATACAATAGTTAATTGGCCTGGTGTTGTGTTCTCCGAAGAGTCACGAGGGAAGTTTCTCACACGAATTGTGGCGAGGTTATTTTTGCGTGATGGACGAGGCGGAGATCGACCCCTCAATACAATTGAGCAAATGTAAGTGTGGAGAAGACATATCAGTAGACAATGCAGGGAAAAGGTTGGCCCTGTCCTATAGACCCGTGAAAGCGAGATTGACATAATTATCGCGTGGATGGACTTTTAGGTCCTGGTTTCGACCGCTGTGGAAATGATAGTACGCCAAGATGAAAACTAATCAGCAAACCCCTGTGGCTCGATATTTGTATGGGACATACAACATTTCGTAAGAGGGCGCCCTAAAGATCAGTACGGAGTGAGGATCATGCAACGCAGTAAGGATGTCGTCGGTGGTATACGTACAGCAGTTTCTGGTCAGTCGCTATTGGGTAACTTACTAGTAAACTACGTAGCGATTGAGCTACGGAAACCGCGCCATATAGGTTTTAGTCGCTAAGGATGAACCGAGAAAGCGACACCAGGAAGAACCAATTAAGGTAAGCCATCGCGAGGTCGGCTGTGCGCACCTAGCACATGATTTCCATTGCACGATAGAAAGCCATTCTAAAATATTCACATACCGTAGGGTAGGATACTAGCCGGTTTGCTGTTTCAAACCCAACTACGCGTCCAAGTCGAGGGGAGGTAAGATCAGGTCGATGTTGTGTAATCACGAAGCGATGTCAAGAGTTCTGGGATCAACAGGAAAAAACTGGTCGTGGCTCGCCCTCAATGTTTCGGCGGGGATTGATTTACACTATAAAGAAGAGTAGTCTACCAGAATTGTATCCCCCTATGCAGTTTCAAGAATTGGTCGGAGTGGCGGCGCTGATAAGGAGGGACATTGATAAGTTCGGCCGCAGGCTCTTAGAGATAGACGAGTGGTCGAGTCTGATGAAACATGCGTCTCGGCCTTATTTATTTACCGACATATTCATAAAAATGCTAATCAGTATGCGATGGTAGTTATCCTCTTAGAACTATTCTAAGCCATTCGGAGTGTAATCCGGAGCAGTAGAATCCATACCAAGATATACGCGCAGCACACTCGAAGGAACGTTAAAGCCTTTTTCCAGTTGATCCGAAAGAACGCAATAGGATTTTTGCTCTATCCAAGGTCTCGAGAACTCTTAACAGTATTTGGATTGGAGTATCCTTAACCCCCTGTGAATGAAGTGGGCCTACAAGGCGTACAGTTAAAGATCTGGCTAGAAAAACAGCACCATAACCTTGTTAAGCCCAAAGGAGGTATATCCTTATAGACCCAGTCATTCCTGTACGAGGTGCTAAGATTAAAATCCAGCATTAAGGATAATCATACATCACGTAGTGTCAACATTACAGCAAAAGCCGATCGGCCGTGAACATTATCGATATTATACGGGTTTTTACAATTACTCGAAATGCTCCTAATCCAACAGCCGGTTTTTTGCTCAACAGGACCTACAGAAACGAGCGCGCAGAAGAGGGGAGGATCTGGAAAGGAGCTGCTGGAGCTGGATTCATCACGACAGAGCCATGCAACTTAGCACTCACACAAACTTTAGTAGCCTCAGGGGTCTTTTATGCTACCGGTACGACCAATCTGCTGGTATAAGACCATATAGTCCGGAATGATAACAATCGCCCTCACAAAGTAGTTGCATTCTTACCTCGATTATCAGATCCAGGACCTGTTTAAGTAAGTACAACAGACAACTGGGTGCACAAGATCGAGTGAGGTCTAAATCAAAACGCTGCTCTTTAAATAAATAGGCATTGCGGGCACCATATGGGGCACGTCAAACCACTCACCACCTACTCGCGAAGGTGAGAGTGCTCATTCCAATAGCTGGAATTGATTCTAGCCGCGAAACTCATGCGTAAATCCGGCCGCGGAGATTGAGTGTTCGAGAGGACTAGATTTCATTTACCCATGATCACAGTCAGACATACAGGTCTCTGTTGGGAAACTCCGTGAGGCCCCGCTCTTAAGATGGAGCCTATGGGATACCGTCTGAGCTATTTATTAGTGGATGGCCGGATTATTAGTGTGAGAATGTTAGCGTACTAGGTGAGAGTCCTACGATAAATCGGTTTGACGCGGTCTAATCACTGATTTCAGAGATTTTGAATATACTGAGAGGGGAACTATTCGAAGCGGCACTGAACTCGTGGGTGCACTCTTAGATAAGGCGCGCAAAAATTACGCATACCAAAAGGATCAAGTTCCGACCAGGCTCGCGAAGAGAGATCCGGTGTGATTCTTGATCAAGAATGGATTCTTCGTGCTTCGTGCCTGTGTCCCCCGCGGTGGCGGTATAGTTCCGCAGTTAACACAATCAATTCGGATCGGCCGCTTATATGTCGGTGAATGAGACTCCTATCCACATGGCATGACACGGAACTACGTATTTTTTTACATGGAAAAAAGCAATAATCCACATGTAGACATTAATTTTGTCAAGCCACATTGGCAAGGCGGTGACCCTGTGGAAACTTCATTCAAAACTAGCCCATGTGCCCTAGGCTAACCTTGTAGCGGGGTTTTATCATTTATCCGCTAATGCGAAAGTCATCGATAACAACCATTCGCATGTTTCGATGTGTAGCGACCCTTGTACCAACGTTAAGAGCTTTTATTGAATTCCGCGTTCAAGAGAAACTTCTTCCGATTCAGTATGCAGGGATGTCGCGTCGATCCGTTCAGCGCATTATCAAGGCACACGGGGTTAAAGGTTTGATCTGCGACGTTGTGAAACACCCATGCCGAAGGATGGGATGTTTCTAGTATAGCCTATAACTATATAATTTTCAAAGCGATAAACTTTACATAGACGGGCTCAACGTCTGAGTATCTCGGGGAATATCAGGATGAGGTCAGAACACGGGCGCCTCCATCATGAGCACAAAAGATTATGTATATATTTACATCCGAGTGTTACCTTTCGCATAATTATTATTCGGGGAAACACCAATTATCGTGGATTGACATTTCGATCTGTCTCCTGGACGATGATTCTGATATGGTACCTGTCGAGGATACGAAATGAATCATTTCAGGCGGAGAATAAAATTCCGAATTGGATTCTGTCTCATTGACCCGTATAACTAGCTTTGTAGAGTCCCATGTAATCTTTGATTTAGTTAGGTTACGTCAACTGCCTCTTTACATGGAACACAAATAGTATAATACACTGTACAGCTCCCTTTACGAATATTGGTTGTACTGTGCGGATGGGAGTTAGAGTTTAGAGGGGACACTGCGAAGTTAAAGCGGTCTAGTATTCGGGTTTTTTACGATTGCACGTAACTGCGAAGGTTAACAACCATCTAGAGACGGCCGCTGAAATTTTACTATCTTGTATTAAATGCGGATTATTCAGTGAATCTAGCTTACCGTGGCTACATTTAGGGTCGCAATATAGGCAGGCAACTATCACTTCGAAACACTAAACAGCCATCCTTGTAATGAGGAGAGTGAACCAGTCCTGGAAACACCTCGTACTAACCTAGTTAACATATTATAAATTAAATGTTCATGTAAAGGAAGAACTATAGGTTGCGGTCTATTCAAAAAATACGGAGTAGCTTCTGGACTGTCTTAGAACATCGTAACAACTGTAAAATGTTATCGTCTCCAAGCATTCTCTCAAGATATCTATTACCTGAGCGCGGCGAAAGGCTTTTGGAGCGGTATATTCCAACGGTTGTTCTTGCATCGTGTAATGGTCAGCCTGACGCATTAGGAGGTAGCTCATATGAATTCAAGCAGCACTCCGACACTGGTTCAAGTCTACGAAGGCGTATACCAAAAGAATGGCCGTAATCTTACCAAAGGCGACAATAGTAACGTCATCCAATTTAGCAGTTGGATAGTCCGCCTGTACCGTCTCTGTTAACCAAGCTGATGTAGTAATAGGTTGAACTCCGTATATCAGATTTATGTCATCAATAGCATCTATTGTCAACAAGCATCATTAGGGGGTCTTTATCGAGCAATCTCTCCGAACGGCAGGTTTCTGCCGAGGCGCCCCGTAAGCAAACCATAATTCACAATCTTTACTTTCCTGTGAATTACACCCGCGCAATACTGGTGGGCCGCTGCTGCAAACATGTAAATTCACGAAAAGAATAGAACACGACCTTGTCTATGCTGTGTCTAAGTCCGGGTGTTGGGTGCGGAACCCTGGAGAACGAACATGCTACGTGTATTTGAAGAGCCATAACGTTAGATACTACCGCATCGGCTGGGGAAGGTTTTCGATGATCACTCCAATAACTACCAGGCATGTCCGTCGTATTAATATATTGAGAAAAGGGACGAAGACCTTAAATGATCAGAACCATAGCTGGCAAGTTTTCCACATGAGTATGCGGCAGACAGGTTTGGTAATATGGACATGCACAAAGGTTTTCTTAGCCGCCATCCACAAGGTTTCCTGAACCTACCGGTAGAATATCAGGTCGGTCCAAAGACAGGGGGCTTAGGTTACTGAACTGAGTAATCGTAGCTTAATTCGGTTAGCATGTGAATGTAGTGGGGGGTACAATCAACGCGCACGATATGAGTTATCACGGAGCAGCAGAGATGAATACCAACCGTAACGCTTCAATGTACGTGCTCCCCTGCGCTAAGCCATTCAGGTTCTAGTCATCAGGCACAAAAAACGCTTACTGTCTATATGGCATGATAACGGTATCCAAAGGCTATTATCACACGCTCAAGCCCCGAACTGGTGCAGTCTCTAAAGTAGATGTAACACCCCTGCAATCGAATTAACGTGCGTACAAAAAGGTACAACTACTTGGTTACGAACGGATTTTTCTTGAACGGTAGTATCCTGGTTTCGCTTCATATAAGACATCATTTTACGTCACGATACGTTCCCTATCGTGAGGCTACAAAATAATCGTAAAATAGCTGAAGAAGTGAATGCATGCAATCTCAGCGCTTATAAGGCTACGATATTAAGGTTCCTGGAATTTATAGAAACATGAAAAAACATTAACTCGGCAATATAATGCACCGTTATTAATTCAGCGGCTACGGGCGGACATTCCGGATACGATAGACGATTGTTTGCGAGGTGGATGCCGCTGGGGCATATCTACGTGCCGTCCTGTGGGCATAGAGGTTTCATAAGCGTACTTCGGGACGGATATCCTGAAAACAGCATGTGGAAGCCATGTGCATTGTTAACCATTTCGGTAGATTAGTCGAGCTTCAACCGGCATAGACAACTCCCTGGTATTTTACTAATGGGGTTACACGGATTTATCTACATTACAATATTCGTCCTTTCTTTAAGCCTCGAACGTATTTATTACGGTTGCTAGACTTTCCCGATTGAGGCTATTGAGGGAAAGATGCCCCCCGTGTCTTACATTTTTTCAATCTAGACCGACCATGTACGTAGCGCCTAAATGGTGTGAGAATAGCTGACATTCAGCTCAAGGCGCACCCAGGAAATTCTGGATGGAATTCTTACACCTCCGAGCTCAATAAAATAAGTATAGAACGAGCACGTTTGCCAGGAAAAACGGCTACACCGGTTAAGTGACATTTTCTAAGTCATGCGGGACGCTTAAACCATTCCTATATCTCGAGCTCTCTCTGCCGCCCAGTACAGGGATTTACATCTAGAGTCAATTTAGTACGACGATCGCCGCTCGCAACCAATGATGAAGCGTAAGCCAGTAGTGCCTACTCCTTAACAGACGTCTCATCTCAAGCTCGATAAATGACGGGGGTGCATTGACCCGCAAGAATTGCACGGATCATACGAGAGTTAGAAGAGGTCGCCGTTAAGAAGAGCTAGTCAGTTGATAATGCGAAACATTTAACCCCCGTTTCTAGAGATTCCGCGCAGTCGCGTGTCGCTGGGAGACTCTCCTTGGCTCGCCACACTGGGGCGTCTCGCTGGCACATTATCAATCCCTTAAGGATTAATTACAAACCGTTTATACCAAATGCACACAGCTTATATGGCGATTGTTTGCGGGTTATCGGGTGTACACTGACTGGAGTCGCGAAATTGTACGCGGATTGTCTGTGCTTTATGATGAAAGCACATAGATGGGGTACGAGACACAGAATCGTATCATGTAGCGTAGCTTTAGAAGATTATATATCAACCGCGGTTGGGTTAGGCGTGTTCGACAGGTCTATTCCATTATAGGGACACTACTCGCATTAAGGTCTCGTTGTCACTTACACGCGGATATTCAAACGATAAGTGCTACAGACTAAAGATCTGAAACTAAGTCCGAAGATGAGATTCGTACTCGAGCACCAAACACTCGGATCTACTAACCAAGGGATCGAGTACTCATCCAGAGAGGGCGCAATATGCCTCGCGTGGCAGAATTCCCTGTTGGCTGGAATCCACCATCTACAGTTCAGTTCACCTTATTAAGAGCCCAAGGCCCTACGTTCCATCTTATATTTCATATAAAGATTTAATGGGCAAGGGGAATGATGCGTCGTGATCTAAGACCCAAGAGTATGAAGCGAGCAGAAGGAATCCTAAAGTGTTCTAGTCAATGAAACGACGTGATGCCTTGAACCAAAAGTCGGGCAGTAATTCAAACCACAGCTACAAGGTTAGTGCTATCCTATTATGGACTAGTTCATTTGTTGTAGGTACATCTACTGTAACCTACCCGCTCGGATTAAAAGGACTCATGCCTATGTCTCAGCGCACGGCATATACCAAGCGTCCAATCGGGCGTCGGTTCCTATTATTTGGCGCTCGTATCAAAACATGATAATTTTTACCAGTGGTAACGAAGAGTCGGTCACAAGTGCTGTAGGATATGCCTCTTAGACTGGTTCGGAACAGACTATATCAACGTTCTAGAAGGAAGGTAAGTCCAGGCTATGTCAGTAGGATTATAATGAGTACTTCGATATAGTGATGGTTTAGGGTTCATTAGACTCACCTACGCTTTGGGTGAGGCGGAGAAACCGTTTGTGTTGTAGCTTCTACGAGATGGGGCGCGGTCACACCGTAACACGGGACGCATGACGTACAACAAGACAGTCGTTACGAGTCAAAAATGCCAGACATCACACGTCTGTCACATGTATTTTGTTATGCAGAGCAATGTCAAAGCTATCCCTTGCGTATATGCACACTTATAAGAATATCCACGCATATAATAAATGAAAAAGTAGATGATATTAAAGTTAGAGCCCCCTCTAGAGCTTAACATTCTGGAGTGAGGCTTGCATGGATGGGGTGCCTGGAATTATCGCAACGCGAACCCACATGGTACGTGGCAGTACACTACCACTAACTATGTTCAATCCCCCTCAGACCGTGAGGCAGTGTCCTAATGCCGACATTGAATATAATTCGCCACGGCATGTCTACGAAGAACGAAGCTCGCCGGGTTTATATTCGTTACCGACAGAACAAAAATAATCCCATGAAATGACTTGTGGACTTATTACGTGCAGGCACCGATTGATCAGCTAAGGGCGCCCCCAGAATGAAGATTTGACGGATATTAAAAAGATCGACTGGCCAGTTCTGCGAATATGTGAACGATACATTTGGGAGCAAAGGATATATGGACACACATCTCGTTCTACGGCGTATAGACAATGCCGCGCCTCTGGAAAAGGCGATCGGCTACAACCAACCTGGTGAACAGCTGCCACTCCATGTATGCATTATGCGGGGCCTCGTCGGAACTCAAACTTCAGTACTACTACAGGCGTGTGAGTCACGTTGCGCACAAATCGATACGACGCCAGCAGTCAGGAATTATGAGTAGTCCCATGCGATAAATATGCTTCCTCGAAGATATGCTTTAGAGTAACTAAGTTACGGAGTCTAATAGTTTATCGCCGCATCTTCCGGGAGTTTACGGAAGCTCCCTCCGTAACGGCAAGAGGTAATGCTAAGGATGAATAATAGCCTCCGAGTGCTCTCCGTGATCTGTACCAGGGCCTGATTACTTAGCTGCGCTTGGGCGGATCGAAGGGTTATACCGAGAACCCAGAATATTGGGGTTGTTTATGCAGGATCTGGCTATCACGTTCCAAGAGATACGGAGCAATAGTGATCCTACAACGAAGTAAACTATTTCTATGGCTTTAGGATCGCGTTGATTCAATAAATTGGACTCGGGTGAGACTAGGCCATCCCGGGTGCAGTTACTGTAGTCATCCATTAGATTGTATTGATTCGGCCTCAGAAGTTCAGTAGGAGTTCACCTATAGTTGAGAAACGCCAGCCTCAAAACTCAGGTTTTGAAAATCGACCTGGTGGAGAATTTGCCACGCATACATGCAATTTGAAGGGTACTTTGGATTTTATCAGAACTATTTGCGAAATATCAGTCGAAAGTACAATTTCAGGGAGACTCAAGAATCTTGCAGACGCAGGATCCCCTTAGAAAGGTGGGCTGGTGTTGATATAGAGCTGAAAACAGCTACACGACCATAATGTCAAAGGGACATATCTAGGACGTTACTACTTTCGTACACATTTGTTTGAGATGTTACGTTATACAATGAAATTTATGCTGTGAAAGCGGTGTGGAATATGACTGGAAAGTGCTCCAGTAGAGTTTGCTATACTGATTATGTAAGAGATTAAAATACCTTCAATTCGGCCATTTCGGGATGGAATATCGCTGGCGAATTTCGACAGTAAGAGCCGACCCAGTACTTTGAGCTCCGCCACATTTGTAGCGAATGCCATAATAGCCTCACCAGAATTTAACTATTGTGCGCTCATGCTTATGGGGGTTCGGCGTTATAATTATTCTTTCTTAGAAGCCAGGACATATATTACCTACAGTATCTGTGATATCACGCTTGTACTCCTCATACATCTACAGATCACGAAGCTCCCTGACGGTGGGGACGGTCGTATGCATAAGGCCAGTTGCAGACGGCCGATACGGAATCGAGTTGGCGGAAATTGTAATTTGTTCTATCCCATCTATACTGGCAGGAAATGATTCGTAAAAGATTAACGGTGGGTTACACGCCGATAAAAACAGGGAAAGAAGTCAAATATGAAGCCCCCTACGTCTGGTTTACGGACAAGAGAGGTAATACTAGGTTATAGGATAAATGAGTTGATAGCACGGGTCGCACAACTTTGTACTAACCGTAAATTAGATAGGATAGATGATTTCGGTTCCACAACCATAAAGGTTACACGGACTGACCCACTCCGTTGTTGTCCAGAAACTTATTCTGTGGTCGGCCAGTCCCAAGCATCGATGAACAAGGTACCCTGTAGTAACGGACCCGCTTAAAAAGCTGAAGGATCCATAGCTAGACGTCACAGCATACTTCGTTGGTTGGCCCGGTTCTGCCGGGCTTATGTAAGCTTGGGTCCGATATCGCACAGTCGCAGCGAAGGGTCTGACTCAAGCTAAAATGCTGTTCGCTATTCTACATTACTTCGACATAACGGAAGGTACTGATTACCGCGCATTTTCGAAGATGTTTCAAAAGAAGATCATTCCCGATTTTACGGCTACTACGTCGGCTATCTACTGACTTAGCGGGGCCTGGAGAGTACACGGACAATCAAATTCTAAATACTCCGTGGAAATTTTGCTACATAGACAGAACGATAGTACAAGAGGTGTCTAGGAGAGCCGATAGTGTGTAGTGCCAGTAGTCAGTGCACAAGAATGACTTAAAGCTGCGTATCGCCAAAACTCATAGTGGATAACATCAGAGACCAAGAATTCTCGCAGGCTCAGAGGAAACATGGAATTCAAGGCATTTAAACGTTGAGTTCTTATCCGGATAAACTGCTACTTCGGTTGTCCGCTACTCGAGTTATCATATGATACTAACTACGCACGAGCCCCGGCTACGACTAGCCGTCCTGTATGTTAGGGTTAACTCTTGCTTGCCTCGCTGCTCAGTTGCACTATTAAGTTCGTCCGAAAATGATATGGTGATTTGTAGTACGATTTCTAAGCCGGCTGGATCTTCTTGCGTCTTAAGTTAGGGCCCGGATTCGTGCGGTACTATCTGAGAGAATGCATAAAGATGAGTCATTCACGCATCAGACATGCGAACCGACGACGGTTTTTCCTCAAAGTGTAGAAATCATTAGCAGAGCACTAAGCGTGGTTACTTTCGACCGGGATACCATGCCTGAGTAGATAAAATAGGTGAATCAGAGAACGATAATCTGCTAGCCCTTCTAACACATTGTCTAATCGAGACTGTTTGCCTGCCTGACGATACTAGTTGCAGGGGTCAAAGAAGGGTTATACGTAATACTATATTCTTTCATAGCTGTATCGATTAACAACGCAGGAGACACAGGGACGTTCGTTTCACGTCACCATCAATGGTTTCCTACCTCAGATACAGTACCGACATATGGCGATCTACTTGACCATTAGGACACTAACTGACTTCTAACCTTTCTGCGTTAATACCATCCGTTCAATGGACGCCTAGATGCCGGAGCGCTCCTGGGAAGGAGGGTACCAAATGCTAAACGATATCCGGACTCCTTACGAAACTCCTCCACCATGCCTGAATTTCAACGTAGCTAGGTCGACTGGTAGAAATATGTTATTAGAAAACAACTCTGAAAACAGAAGAATCCAGGGACTGACACAGACCGATTGCTTATCTAGTTGGCAAGCAACAATGTCCATATAAAAACCAAAGAAAGCATGAACTTTTATCTAAAATAGTACCCACCCGATATGGTTGATCGGCTTGCCGATCGGGTACCGAACTAGGCACAGGAATATCAGTCCCGTAGAAGCTTTTGAGCTTTGTTGCTGATTTTCTCGCAGTCTGCTACTGGAGAACGGGTTTACAGGATCTCAATCCCTATTAAGGAATAAACGTTAGCAGTCCGGACTGTTACGGAGGTTCCTGTATTAAGCCGGCCTCTTCTACCGTCCCACTTGGAGTATATGACCACATGTCCTGGCAGAAAGTCTTAGGCCTTGCAACCAGGAAGTACCCGCTGGTCGGACCGGATGTAACTCTGCAGACGGAGCGCTGTTCGCTTTCGAGTGACCTGGGATGATACCGCCGGGCCATCTGAAATGATCTGGGTCGTAAACCCTGGTTAATTAATATTAGACGACTTCTGTAAGGGGTGTAGTCAAAGGACGCACACTAAGCACTATGGCTATCTTTCTATAGAGACTGGTGGCTTAATCGGCTCCTATGGAAGATTGATCTCCTAGCCGTTCTACGGTCTAATCAAGATAATAAGTGACGTTACCCAATAGTTGCTGACTTAGTTATCGATCCATGGGGCCGTATGCAGAACAATGCGAATTTGCCATTAACTCGTGAACGGCGTGGTCTGATAAGACCGGATAGAAACCGTAATGACTCAGAGGAGTCTATTTTTCGAAATCGTTAGGAGGTTCGATCACTCCGACCTATCTCCGGGACCCGCGCAGAACACACCAAATAGTTAACAGGATGCGGTCATTCCGCATGGTGTAGAAACAAGAATTAAAGGGGAATGATAGTACGGTGCGTAAATTACTATCGCTAATTTCACTCACGGCCTTGTGAAAATATCGTCCGCGTCAGATCTTGTGGGATTAAAAGTTAAGTCCGTGCGCCATGGTTTTAGGGAGAATGGGGAATATAATGCAACAGATCTGAGGGAGATAAGCGTATATGCACGGGTAGGGCAATCGGTCAGGGGATTAGGTGGTGCATTTCGACGAGCTCTACGGCGCGGTTAGTGCTTCAGCACCCGGAGTTACTACTATAGTCCATACAATCTGGCATAAGAGCAGAGCGACCTAGCTTGTGCTATAGTTCTATTGAGCCAAACTAACCGTATATGTAAACTGTCAGTAAGTAAACAAGGTTTTCCCGTGTAGGGTATTGTATTTGCCGGAGCCGGCTTTCAGCCTTTCTTCCTAGACAAGTACACCGGATACTAGACCATCCAAACGACTACGGAGAAGCACATTTTCATTATTGCAATGTCAGATAGGTAAACTGGTGTCGAAGCCATGCTCACGGTCTGGAATCGAACTGAAGTTGAGTATGCTTATACGATTCACTTAAGATTGTATGGGACGTGCGAATACAGTTCTTGATTAATATTCTCAAAAATAAGCGCTAGGTCAGAAAATTCCTCAGTGGCGAATATCAGAAAAGTATCGATACGATAAAATTAAATCGAACACCCTTTCCGATTGAGTTGTACCAAATAAGCTCTTGATATTTTGAATAACTTCCGAGGAACTGTTTAATAAGAGGTATTCGTTATATGTCTCTGATCATTACTACTACGCTGTCGATAGCAAAAATTCATTCATGCTTAACGATCACTATAAATCTTCGAGTTAATTTTCAAAGCAGCCCCTCGAAGGAAAGACATTCACTTTAGTTAGAGTTTTAAAGCCCTGAGGGAGTCAAAGGCTCCCAAGGTTATCATTGGAAAGTATGGAAATACTAATTGTCTCAAGGCCGAGCCAAACCCACCTAATAACTAACTTGTTCTTTACCATAGGGGTGGTAGAGAATCTATAAGGAGGACGGCAATATCTTGGCCAGTATATCTATTCATGGAGCCGGTCATTGTGTATACAAATAACTAGCAGCATATATCATAACCCTAAGCTTGGTTGTGCGTGTATTTGGCCGGACTATCCGGCCCTTAAAACGACCAGACATAAATTACGTGTGATTTTCCCAACGAGGAGTCGCTTACCACCAAACAAGCCCATTCACTGTGTGGTTAATAACTGCTAAAAAAATAGGAAGAAATCCAAAGATACCGTGCAGCCGATTATCAACTCAATGGACTTAGTACCCTCGGCTCTATTAGTTGAAATGATAAAGCGTTAATGGGGACTATACAAGGGGCGCTGAGGCGGTAAGTGCTCCCTGACGGTATAAATTGATGTACAGTTTTTGAGAAGATCATGTAGTCTGGCCCATCCGAGGTGACTAGAAACCGGAACTCAAGCAATTTGTTGGAAATGTTTGTATTCTGGGGTCAACTAAAGGGCAGATACGAGATGGCGATCGCGTGTGGCATGAATGTAGCCTCAAGTCCCCCAGTCTCGTTATAAGCAGTTGGAAGAGAAGTAAGTAGATGGGTGCCTATGCACCTGGTTACTCAATACATAGTGATGTGTACGTGAAAAGAGACGATGAAGGTGCGCCACAATTCTCGATCAGGTAGATTGTTGTGCCGTGCCTAGGATTATTGATGCGGATCCATATGACAGCCACCTTGGACTAGTTCCTGATTTGAATGTCCCTTGAATATATTCGAGAACATGTGCGAAACTCTACCATACTGTCCCAAGAGAGCGGAGTAGCCTAAACACATTATTTAGAAGAAGACGCTAAAGATTATCTTCTTACCCTCTTCGCTCACCTGAGTCACTTCCATTATTCATAAGATATTGTAACGAAAGAAGCTCCTCGCAGAGGCCCTCATATAAGGTGATAGTCCTAGCAAATTTTTCGCGACGATGCTTCATATGCATCTCCGAGACTTGTTGAACTGGTAACTCATTTGTAGCAAGGTGAACCAAGATTAGACGGTCGATATGAAGAGAATAAGTTCGTAGTCTTTTACAATAAATTGTGCCCAATCTTATCACTGTCAAAACTAACGGTGTTGATGTTCAACAGATGAGTAGTTCAGTGATAATGTCGATATTAGGACGAGTCGAGCAATTACCAGGCAGTTTGCGAGAGCGATTAAACGTAAACGGAGACGACGCAGCAACAAAATCTCCCGGCACTAGTGTATACCTTGTCAGTCTCATAGTGTATAGCGGAACCGAATAATACTAAATGCGTTTTAAAAACTAATCGCAAAGCTCATGCTGTCAGTTGGAGGGATGGCGGCTCAATGTAGACATTCGATTATGCTGCGCTATCTGGTTTTGGGGCTGTGCGATGAACAGCAAAAATCGGGTATACTTCAATTGTGGACAACCGAACTCAAATGCCGACATCGCGCCCTGGTGGATAGACTGGGACCGGAAGTCCGTGGAGCCCTTATCTGGTACAGGCGTAAGTCCAGTCAGACTCGTAGAGTGTAAATGGCTGCGAAGTAGAACTTGGGTAATCAGTCACAAGTTATCTCAACCGCGTTATGCTAGTGCATAGACTAGGTAAAATAGTTAACACTGGTCTGCAAAGTGTATAGTCGGCGAATGCAATAGTTAAACGGAAGTGCCGGCACTTTTGATTGATAACGCTGATGAGCTGGGGCCTAAAGCCATATATAAAAGCCGGGCAGTGTATAATAGCAGGCACTTAACGAGAATAGGAAAGGTCGCCGTTACGCTCTTCCAAGAGGCAGGGATAATCGAGACCTTTGGGAGTTAGCTTTTCATTCGAACAACCAAAACTATCAAAGAAGAAAATTGTGGTATGGATGACATTTTGACGCGCGCGAAAAGGGTATTTCTGGGTAAGCTGAGGTGGGACCCAACCCGGAAGTTTCATCGCTTTGTTCAACAGGTCATCCGATATATGGGTATGAACCCAAAATAACGCAAAGATATTATTGTTTTTTAATAAGAATGCAAATGGACCCTATCTGATTGTCACGCGTTACTCAGGGCAAAACACCCCTGTAAAGACTGAGTGAAGCTAAAATCGCGCCAAAAGCGTGTTCACTGACATGTTCTGATAACCTGTGGTATAAAGTCTCTGCCGAACTTACACGAAATCTATCTCTCAGTAGGCTAACTTGATAGAAAGCTAGTAAGACCTACGTATTATGCAGGCTTACACAACAATGCACCGCCAAGTGTGAGGCCGGAAGTTCGCGATAAGGGAAAAAGATGCATTAGTAGATGCTGACTTCCAGGAGCCGAGCGTGTAGGGACGCGGGTCTAATTCAATTATGGGCCCCTGAATCATCAATCACGATGGACCCTTGAATTCATTCAGAAAGAAAACTACCGCAAGGGAGCGGCCGAGGAGCGGAGACCGACAGCTAAGCCAAACCACAGTTCTACAAATGTTCTACTTGCTTTCCGGGCGTCTATTATAAGGTGTAGTCGTTCCGACGTAGATTGGTTGTCGTAAAGAACGACAATTTTCGTTCTAGTATTCGCTAGGACTATACAAGCACATCGTATCAGCGCTACTCCTGTCAGAAAATTGGACCATAACCTCGAAAAATGTGAGGGACGAGCGGAACGAAGCGGCATAATTATATGCTCTTTAATAAACGCCTTCTTATATCAGGTCGTAAAGTAGAACTTTTTGCTAGTCTATGCTTCTCTCGCAGTTTAGGGAAGTGTGTATAACACGTTTTGAACGGAGGATTATGGTCTTTGTCTGTGACGGTTGTCTCGCGTTCATAAGGTCTTGGCGTTTAGTATGACATTAACCCAAACAGCAAGTTTCATGGGCCACTAAAAAGCGTGCTTAGATACGATGTACGCCCGCAGCATCGAGTAAATACTAACACAGGAGCCGATGTTGTGTCATATCAAGTTTACACACGCGGGTTAAAGACAGATAGACTGATGGCTTATACTAAGATATTGCAGTTTGGGAAGGAAATCGCGAGTTCGCTGACTCCGACGTAGCTATGTTAATAACGGTAATGTAGCAACATTTTTGTAGGTTTCTGTTCAAAAAGCGGTATAAGACGCTGTTTCACACGTTATCGTTCCATAGCTCTGTGCTAAGCAATGCTTTGGGCGAACGTTGCTTTAGGATATCTTAGAACGTGGTAGTAGGCTCCTTTCACTACTCTCTGTGGCAACATTGCGACCAAACGCGAAGATGACTTCGTAATCCCAAACACCAAAGCCGCGAGAGATCCCTGAAAAATGGACCAGTTAGTTATCACGTACTCCAAATTCATATATGCATACAACTCGGAATTGTAAAGCGGGACTCTTCAAAAACGCAACTCTTGTGTGACCTGAACGTTAAATGTGTACAAACCGTTGGGAAGCCATTTATTGAAATCGGGGATCGCAATGCAGGTTAATAATCCCGTCTTGATGCCCGTTGAAAAAAAAGCCAGAAGGGGATAATACGCATATGTCTCATCCGCCCTTGAAACGTAAAGCCCGTAGTTTCTCAATGCATTGTATACTGTGTCGTTAGGCGACATCCCCTTAAGACGGCCGATTCTTTATACGGCATTTCCTGGTTGAGGCTTTCGCATGGATCAGGTAGAAGTTTGATTGTACTCTATTGTCAAATGATAACATTCTGTCTTACGTCCATGTATAGGAGCGCATCCGTCGTGGGTGTGATCTACTATCTAATTCAGTACACGTGGAGTAAGTATGACTTATTCTTACAACTGACGCGGATCACATCACCCTCTTCGATGGAGTACTTATCTTAACGAGTTTAGCAAGCAGATGATAAATCCAAGTAGAGCCTAACTTTGCGTCCGGCAGTGACATGAAAAATTTACTCTAATTATCTCTTTGCATTGAAGCATTTTTCGGGACAGCCAAATTAATGGCCTAATTGCCCGTGGCAGCAATAGAAATTTCGTGCGATTCATATAAGAGACTAATCATATATGTATGCCATTAGTCACCCAACTTCCCACCCGAGTCAGTCGTAAATACCACACTTTTGGCCGAAGCAGAAGAATTATTTCGTTCCAAGTTGAGATACCATCTTGGCACCCTGTTTTGCAGCCGACCAAGTCGAGTTCGCGTACAGGATATGTTCAACCCTCAAAAACGAGCTGAATCGAGATATATAATTCAGTCCTATTCAACTCATTGAGCGTTTCCCCCCCCCCTATGCTGGGCTTATGGGTAACAATTCAAGTCTATCGGGTTCTAAGAGGTTGGCGCGATGTTACGAGGCTAGCTTTATTATGTAAGGATATTAATCAGGTGCCGGTCAGTTTATTGCAATAGCATCTAAATAAATAAGTTTCGCTGGAACTAGATGTCACTAGGGGTGTACTTAACAGATCGGTATCTAAATCGTACACAAACACCACACTTGCTGATTTTCATAAAGGGACCAAACAGTATCGTATGCCGAATAGATCGATGTTTTGTTGTGGTGGGAGAGGTTATGAGAGAAATTACAGGTTCTTCGAGTCCCAAAACCCAGTCGTGATTATCATTCATGTTGAGAACATAATCACTTCACAGTTATAAAACACATCTATCGTTTCAGCCCGGTCAACAAGCTTCATGTGTAAGTAGTCAGGCTGGCAACAAGTGCGAAGGAGAGTATCTACGGCGGCACAATCTATCTGGTCAATAAATCGTAGTGTTGAATTCGCGGATATTCTAATGCGTGTTCGAAAAACCAATTCGCTCAAAGAGTGTGGACGCAGGTCAGAACTATTGTATATAAATCAAAAAAACGATCATTGACCAATATATTGAATCAATCATTCCGTGGGCACGCAGAGTACGCAAGAATCCGTGCGTCCCACTACAGTATATCATCTGACCACCGCAAGGCGGTCAGGCCATAGGACCCATCATCTAGCCGAGCGTTTCATAAATGTAAGTACGGAAACAAGCGAATTGAGCGGAATTCGTTCCAAAATTGCACTTATAAGGATTTAGTTTATAAACGCTTTCCAAAACTAAGCTGTTGGAGCGTACCTATATAGGTCTAAAAACTACTGTCCGGCCGGACGTGTTCTAGAGCAAGGCAAACTTCGCTAAGTTGGCGTGGCGAGTGTGTTAACCTTTGGAGATAGTAGACCTTCGTTTGGGATCATGACCTATCTTATCATTGATCCTTTCCATGCCGAGGGTACTATTTGCTACGACGGAGCTCTTACGGATATTACAAGACGTAAAGTTATAAGTATAACAAAAGTGGTTTGAACCTTACAAAGCTTTCACAAGGCTGCCAATGGTAATGCATAAGGCAGTAGCCATGGGAACCGCTATTTTAGTCATGTTTTATAATACAATCGTCCTAGCTCCCAAAGAGCATATATATTGGGAGAGTCTCCTTGACTCAGTTAGCATAACTCTAATGAGATGACTTTTTGAGAACTGATTTTGTTAGGACACGAGAAGCGCTTACGATCTAAATTTAGGCTCCTGGAGGCACGTGCATGGTTTTTCCCTCTGTAGTTGATACCTTAGATACCAGGAGCCAACCGCTAGCCTGAAGTTATGCTATCATTGTCTACAAATCGCTAATATGACGACTCATAGACAGAGGTGGGTGCTAAGAACACTATTAACTATACAAGAGTAAGGTAGTTGCGCGGAGTGTTATGATCGACAGTGCTGTAGAGACTTGATTGATGAATCTAAGACTGGAAATTATGACTTAAAAGCACAATCACTCATGAGACCACGCAGAGAACCGGAAACACAACAAAGGTAATGTTTATTCGGGGACTCCGCGAGCACTCCGTTGTTAACCGAAGATTACTAAATTCGAGACTGATTAAGAGCCAGCGTATCATTTCAATTAGAAGTTTACACTAACTATACGGCATTTGTAATGGGAACCCTCGGTTGAACTTGTTTAGACGCCTTCACAATTGTTTGTCGGAAGGTTAACATACAAGCTGACCTAGGACGGGATATCATCTATAGGGCCTAAGTCTCACAGCCGTTTCCATAAAGCTAGCGAATGTCATGTCTAGGACTTTCTACTCGCTCGACAAAACGAGAATAACCCGGGTATGCGTATCCGGCCCATCAGAAATGACAAATATCTTATAATCAAGGCACAACAGACCTACGGAGAGTCGTTGCTTCATGACGGGCTTTCAGTTACCTGAATATTAATCTCGAGAATTATTCTGTCCAATATAAGACTGCGATTGGCGACGCGAAGCTACATACCCATGTAATCATCTTGCCTTTGTGTTTTGTGTTCCTGAATCGAGGGCTGGTGTAAATTCACTCCCTCTACTTTTCAACTGAAACAGTGCATGAATTCTTTATACCTACGCTCCCGATTTGCTGTCACGCTTTAAAGCTCGTGTTCACTTTACTTTATCGTGAGAGTCCAGCTATTGCCACTTATTGCTTCATTGTGCAATCAATCTGAAAGACCTACTAGCCTGACACTCCTAACTAATTCTCTCAATCGGATGAAGTTAACGGTGGAGCACAAGGTGAATCCTAATAGTTCTCCTCGTTAGTCAACCTCTTATTCCCGGATATTGGAAGGGGCACAGCCCACAAGCTAGTAATATCCCGATACTCGTAGTACATGATCATTCAAGAAGAAACAGCGGCTCGCTGGGACCGTAGACCTGGATGCCAGAACGGGGCACTTGGAACACTGTAAAAACATGATTAATCTCTTCTAAGTGCACCCGCACTTCAGCAGGTAGTGAGATTTCATTTTCACGCTCTTTAGTCGTAAAGAACTTGCCTGACTGAGCAGAATAACCGTCTTATAATTGGTGTCTAGTCCAGATTACATGTAGGTGTGACCAAACGACCAGAGCGCCCAGCTAGTTGAAAGAATATGCAGACCGAGACCATTTGGAGTCAACGAAACAACACAATTAGCAGCAATTTTAAAAGCTTAATCCTAGCGCGTGTATTATGTAACGAAGAAAATCACTAATAGCCCTCTTCCACATTCGATCAACAGAAATTGGTTCTAAGTCGATCGTTTGCCTATCAGGTTGCTAACTGACTAACATAGGCAATTTTGAGGGTAGGATTGTCGTCTATAAGCTATCTCTGTTTACCAAGGGGAACGCCAACGAAACAAAACTGACATCCGACAACCCGACACTCTTATAGTGGATATCTAACTCGCTGAGGTAGCCTGATATAAGCGACCCTAAAGAGTTGACTGGTTTCACGTAAAAACCTAATGAGTAAATTACTGGAGTCTATAATTTAACTAGCCTACCCCCTATAAGCCCCTCGTGTAAGTCAGGCCCCCAATTAGTCCATCCGCTAATAGTTGCGTCGCTATTAAGAATAGCAGTTAATACACGCGCGCACTTGCAGATTCAGTCATCATTCGGTGAAAGTTGCTCAAGTAATGGCAAGGACGTACACGATCTCCTTATCATAGTCAATGCTGTAATCAGCATTAGGCTTACTAAGTATCGGGCACCATTTTCCGACGGGGACTACTCCTCTCGGACAATCTACTAAGATATAACGTACGAACTATGTTCATTCGTTACTTGATCTCGCGAATAAAAATCCGAAGAAAGTTGAGATAGGGTCAGTCTACAGAGGTGAGCCCCTCGCGAAGAGAGGGCGGTCGTTGGCTGGTTGTTTACTCGGAGTCCTGAAGTTGCGTTAATTAGTTCTAATTAATTTCACTGCGATAAAGTCCTCTACATCAATTGAGACTCATGTGAAAGTTGAAACAGGTGGTCAGAAATTTCATGCTGCTAAAGTCATAGAGAACACTGCACCACGATAGACCCATGTCTGGGAGGCTTGAATCATAACCAACACGGCTACTACGGTATTAAATATGGATCTATGTCAGAAGTCGGAACCGAGGGATACGAAAAGGAAGTAGTAAGATTGTCAATGAAAAGGGGTGGTCTAGGCTCCACGCATTAAGAATGAGGACATGGTAACAGTGGCATTCCGGTCTGAAGCGTATACCTATTCAGAGCCAGCTAGCCGACTGCTAGTGTATATACAATCAGGTATACGAATACCGGTAGCAGGTTCTCTGTCGGTAACTGAAAACCGGTTGCATTTGCATATCGATAACACAAATATGAAGTTATCATAGTCAGGTTCTTAGCGATTGTACACGACCAGATTTAATGTCCCGGTAGCCGTTTGATCCCGTTCTTAGGGTACCCATCATACGTCTCGTAATAAAGAGAAAAGAATACAAACGGCGTGCAATCACCAGTTTGACCGCGATAGCTCCACAAACGCTAAATTTGCTCTTAGGATACGATATTTACTTCCCGAAGTGACGCTGCGATTTAATAACTGTCATCTAGTCACACATTCGAGACCTAATTACGTAGTCCAATAAAGTCACCTAAGGAGCGCTAGGACCATGGACAACCCAGATGTCTGGACGGCTTTAAGACATAGAACTGTATGGGCAAAGACTGGAGGTTGTCTCGACCCACTCATGTTTTGTCTATGCACGTACTGTGCAAGACGATGGGTTGGGTGCGGATGCAAAGCTAAGGCAAAGTCCGAGTGACAGTGATAGACTGCCCAAAGTGGTATTTTGTAAATATCAACAGTATTGGGCATGGGATGATTAGTCACAGCCTAAGGGGGAAATGCAAAGTTCGAGGCAATCAGAAGTAGGAAAGCTTCATAGAGAGCATCTTATAAGTATGCACAGTTCTCGTATTTTAATGTTACTTATGTGGTGACCTACACCATTTATCTAATTGTCTGTAGTAGTCACTTCCATCGGATGCTGCTAACTAATCATGTAACACAGCTCATTATCAAGGGGGGTTAACGCAGAACCGGATTCCTGAAAATGGGATATTAGGAACCTAGGAATAGTAGATACTATGTCTTCTACGAGAGGAAGATGTGATGGCGATTGCGTAAGGGAAGGCACACTTCGCCGCATCCGGTTGGCACGATGTTGTGACAGATATTCTGTTTCCAGCACTAGCGAGGCTCGTCACTCTGAAACAGCGGACTACCTTCTAATGTCTGTGAATTAAGCAATATCAATAAAGCTTTACAGCTGTAACCTGCGCCGCTAACATCTAGCGGTGCTGATACGTTAGTAGGCATGACATGAATGTATTTCAGAGTTAATGATAAAGCACTTGACTTATACTATGCGCCATGAATCCTCTCTCCGTCCTGAAATCTCCGGCAGGAAGGGATAGTTACATCGACATCGACTACAATATATCTGTTAGAAAGGCGCGTCAACTAGTCGAAGTATCCGTTATTCCTCGTCGAAGGGATCACAAGACACCAAGCGTAGAGCAAGGAATTCCGTGCATGAGTCGATTCTCGCGGAACTTATTCGACCTAGTTGAAAGAGTTACATATGCCATATTAGCAGCTTAAG
Download .txt
gitextract_2ee5zeqm/

├── .github/
│   └── workflows/
│       ├── c-cpp-dev.yml
│       ├── c-cpp-temp.yml
│       └── c-cpp.yml
├── .gitignore
├── .gitmodules
├── LICENSE
├── README.md
├── example/
│   ├── caster/
│   │   ├── fasta_alignments/
│   │   │   ├── gene1.fa
│   │   │   ├── gene2.fa
│   │   │   ├── gene3.fa
│   │   │   ├── gene4.fa
│   │   │   └── gene5.fa
│   │   └── phylip_alignments/
│   │       ├── gene1.phy
│   │       ├── gene2.phy
│   │       ├── gene3.phy
│   │       ├── gene4.phy
│   │       └── gene5.phy
│   ├── caster-sliding-window/
│   │   ├── ape.fa
│   │   ├── mapping.tsv
│   │   ├── slidingwindow.tsv
│   │   └── slidingwindow.xlsx
│   ├── example.phylip
│   ├── genetree-contracted.nw
│   ├── genetree.nw
│   ├── genetrees.tre_1.fas
│   ├── genetrees.tre_2.fas
│   ├── genetrees.tre_3.fas
│   ├── list.txt
│   ├── multitree.nw
│   ├── multitree_genename.nw
│   ├── sancheck/
│   │   ├── Scoring/
│   │   │   ├── astral-pro.tsv
│   │   │   ├── concat.treefile
│   │   │   ├── gene.trees
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── ScoringNormal/
│   │   │   ├── astral-bs10-speices.tre
│   │   │   ├── genetrees-bs10.tre
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── TwostepAlgorithm/
│   │   │   ├── estimatedgenetre.nw
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralNonbinaryExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── astralproExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── casterExample/
│   │   │   ├── sancheck.bat
│   │   │   └── sancheck.sh
│   │   ├── wasterExample/
│   │   │   ├── sancheck-local.bat
│   │   │   └── sancheck-local.sh
│   │   └── wastralhExample/
│   │       ├── sancheck.bat
│   │       └── sancheck.sh
│   ├── waster/
│   │   ├── filename1.fa
│   │   ├── filename2.fa
│   │   ├── filename3.fq
│   │   ├── filename4.fq
│   │   └── input_list.txt
│   └── waster-walkthrough/
│       ├── Chimpanzee.fa
│       ├── Gorilla.fa
│       ├── Human.fq
│       ├── Orangutan.fa
│       └── input.tsv
├── make.bat
├── makefile
├── misc/
│   ├── caster-linux-walkthrough.md
│   ├── caster-sliding-window-walkthrough.md
│   ├── toolpick.xlsx
│   └── waster-linux-walkthrough.md
├── src/
│   ├── .vscode/
│   │   ├── c_cpp_properties.json
│   │   ├── launch.json
│   │   ├── settings.json
│   │   └── tasks.json
│   ├── algorithms.hpp
│   ├── argparser.hpp
│   ├── aster-gui.py
│   ├── astral-hybrid.cpp
│   ├── astral-pro.cpp
│   ├── astral.cpp
│   ├── biallelic-cuda.cu
│   ├── biallelic-cuda.cuh
│   ├── biallelic-cuda.hpp
│   ├── caster-pair.cpp
│   ├── caster-site.cpp
│   ├── castles.hpp
│   ├── codonSplit.py
│   ├── debug.cpp
│   ├── dstar-branch-merge-diag.cpp
│   ├── dstar-branch.cpp
│   ├── dstar.cpp
│   ├── genetreewithbinaryweight.hpp
│   ├── genetreewithhybridweight.hpp
│   ├── incbeta.c
│   ├── landmark.hpp
│   ├── merge-pairend.cpp
│   ├── monster.cpp
│   ├── multitree.hpp
│   ├── numerical.hpp
│   ├── runIqtreeRate.py
│   ├── sequence-pair.hpp
│   ├── sequence.hpp
│   ├── sequencenontrivialpi.hpp
│   ├── sequtils.hpp
│   ├── sister.cpp
│   ├── speciestree.hpp
│   ├── threadpool.hpp
│   ├── treeutils.hpp
│   ├── tutorial.hpp
│   ├── waster-old.cpp
│   └── waster.cpp
└── tutorial/
    ├── astral-pro3.md
    ├── astral4.md
    ├── caster-site.md
    ├── waster.md
    └── wastral.md
Download .txt
SYMBOL INDEX (809 symbols across 34 files)

FILE: src/algorithms.hpp
  type LogInfo (line 60) | struct LogInfo {
    method LogInfo (line 64) | LogInfo(bool enabled = true, ostream& fout = cerr): fout(fout), enable...
    method LogInfo (line 66) | LogInfo& operator<< (const T& v) {
    method LogInfo (line 71) | LogInfo& operator<< (basic_ostream<char, std::char_traits<char> >& (*e...
  type Hasher (line 79) | struct Hasher{
  function string (line 85) | string formatBootstrap(double s){
  type AnnotatedTree (line 91) | struct AnnotatedTree{
    type Node (line 92) | struct Node{
      method CustomizedAnnotation (line 102) | const CustomizedAnnotation& annotation() const{
      method Node (line 107) | Node(){}
      method isLeaf (line 109) | bool isLeaf() const{
      method parent (line 113) | shared_ptr<Node> parent() const{
      method leftChild (line 117) | shared_ptr<Node> leftChild() const{
      method rightChild (line 121) | shared_ptr<Node> rightChild() const{
      method taxonID (line 125) | int taxonID() const{
      method string (line 129) | string taxonName() const{
      method support (line 133) | double support() const{
      method length (line 137) | double length() const{
    method root (line 144) | shared_ptr<Node> root(){
    method addRoot (line 148) | shared_ptr<Node> addRoot(){
    method addLeft (line 153) | shared_ptr<Node> addLeft(shared_ptr<Node> node){
    method addRight (line 160) | shared_ptr<Node> addRight(shared_ptr<Node> node){
  type PlacementAlgorithm (line 168) | struct PlacementAlgorithm{
    type Node (line 170) | struct Node{
      method Node (line 171) | Node(int leafId = -1): leafId(leafId){}
    method PlacementAlgorithm (line 191) | PlacementAlgorithm(const vector<hash_t> &taxonHash, TripartitionInitia...
    method score_t (line 214) | score_t& sYes(int v){
    method score_t (line 218) | score_t& sNo(int v){
    method makeNode (line 230) | int makeNode(int v, int u, bool modifyRoot = false){
    method addSibling (line 252) | void addSibling(int v, int i){
    method forceLeftHeavy (line 258) | void forceLeftHeavy(int v){
    method defaultInitializer (line 270) | void defaultInitializer(){
    method place (line 283) | void place(int i){
    method tripUpdateSet (line 287) | void tripUpdateSet(int tgt, int i){
    method tripUpdateGet (line 292) | void tripUpdateGet(int tgt, int i){
    method tripScoreSet (line 296) | void tripScoreSet(){
    method score_t (line 301) | score_t tripScoreGet(){
    method score_t (line 305) | score_t tripScore(){
    method switchSubtreeSet (line 310) | void switchSubtreeSet(int v, int src, int tgt){
    method switchSubtreeGet (line 320) | void switchSubtreeGet(int v, int src, int tgt){
    method switchSubtree (line 330) | void switchSubtree(int v, int src, int tgt){
    method scoringPlacementDPSet (line 335) | void scoringPlacementDPSet(int v, int i){
    method scoringPlacementDPGet (line 366) | void scoringPlacementDPGet(int v, int i){
    method locateBranchAddingSet (line 415) | void locateBranchAddingSet(int i){
    method locateBranchAddingGet (line 422) | int locateBranchAddingGet(int i){
    method locateBranchAdding (line 436) | int locateBranchAdding(int i){
    method locateBranch (line 441) | int locateBranch(int i){
    method score_t (line 449) | inline score_t nnPerform(int v, int best_case, score_t top_score){
    method score_t (line 489) | score_t nnLocal(int v, bool recurse, score_t e_ab_cd){
    method score_t (line 640) | score_t nnMove(int v){
    method nnLocal2 (line 774) | bool nnLocal2(int v, score_t& e_ab_cd) {
    method nnCheckLight (line 837) | bool nnCheckLight(int v, score_t& e_ab_cd, score_t& abe_c_d) {
    method score_t (line 941) | score_t nnPrecheckHeavy(int v) {
    method nnCheckHeavy (line 962) | bool nnCheckHeavy(int v, score_t& e_ab_cd, score_t& cde_a_b, bool prec...
    method score_t (line 1076) | score_t nnMove2(int v) {
    method nnMove (line 1107) | void nnMove(){
    method tripHashGeneratorSet (line 1118) | void tripHashGeneratorSet(int v){
    method tripHashGeneratorGet (line 1138) | pair<bool, hash_t> tripHashGeneratorGet(int v){
    method run (line 1163) | void run(){
    method string (line 1177) | string printSubtree(int v){
    method string (line 1182) | string printTree(){
    method string (line 1186) | string printSubtree(int v, const vector<string> &names){
    method string (line 1191) | string printTree(const vector<string> &names){
  type ConstrainedOptimizationAlgorithm (line 1196) | struct ConstrainedOptimizationAlgorithm{
    type Node (line 1197) | struct Node{
      method Node (line 1198) | Node(int leafId, hash_t hash): hash(hash), leafId(leafId) {}
    method ConstrainedOptimizationAlgorithm (line 1221) | ConstrainedOptimizationAlgorithm(const int ntaxa, TripartitionInitiali...
    method ConstrainedOptimizationAlgorithm (line 1233) | ConstrainedOptimizationAlgorithm(const ConstrainedOptimizationAlgorith...
    method subsampleSubtree (line 1236) | int subsampleSubtree(int v, PlacementAlgorithm &pAlg, const unordered_...
    method createPlacementAlgorithm (line 1280) | void createPlacementAlgorithm(PlacementAlgorithm &pAlg, const unordere...
    method subsampleSubtree (line 1299) | int subsampleSubtree(int v, PlacementAlgorithm &pAlg, double subsample...
    method createPlacementAlgorithm (line 1343) | void createPlacementAlgorithm(PlacementAlgorithm &pAlg, double subsamp...
    method guideSubtree (line 1363) | int guideSubtree(PlacementAlgorithm &pAlg, const string &tree, const u...
    method addGuideTree (line 1432) | void addGuideTree(const string &tree, const unordered_map<string, int>...
    method hash2node (line 1446) | int hash2node(hash_t h){
    method addTripartitions (line 1454) | void addTripartitions(const vector<tuple<hash_t, hash_t, score_t> > tr...
    method optimalTreeDP (line 1462) | void optimalTreeDP(int v){
    method score_t (line 1476) | score_t computeOptimalTree(){
    method string (line 1482) | string printOptimalSubtree(int v){
    method string (line 1488) | string printOptimalTree(){
    method string (line 1492) | string printOptimalSubtreeWithScore(int v){
    method string (line 1498) | string printOptimalTreeWithScore(){
    method run (line 1502) | pair<score_t, string> run(int nJobs = 1, double subsampleRate = 0, boo...
    method constrainedRun (line 1515) | pair<score_t, string> constrainedRun(int nJobs, const string tree, con...
    method placeNode (line 1522) | static bool placeNode(PlacementAlgorithm &pAlg, vector<PlacementAlgori...
    method twoStepWorkflow (line 1551) | void twoStepWorkflow(PlacementAlgorithm &pAlg){
    method twoStepRun (line 1631) | pair<score_t, string> twoStepRun(int nJobs){
    method gTest (line 1644) | inline static double gTest(double v1, double v2, double v3){
    method switchSubtree (line 1659) | void switchSubtree(Quadrupartition &quad, int v, int s, int t){
    method computeOptimalSubtreeWithSupport (line 1670) | void computeOptimalSubtreeWithSupport(SpeciesTree &tree, Quadrupartiti...
    method SpeciesTree (line 1789) | SpeciesTree optimalTreeWithSupport(double lambda, double weight) {
    method string (line 1838) | string subtreeLeaves(shared_ptr<SpeciesTree::Node> node){
    method printFreqQuadCSVRecursion (line 1843) | void printFreqQuadCSVRecursion(shared_ptr<SpeciesTree::Node> v, shared...
    method printFreqQuadCSV (line 1857) | void printFreqQuadCSV(SpeciesTree& tree){
  type MetaAlgorithm (line 1868) | struct MetaAlgorithm{
    method MetaAlgorithm (line 1883) | MetaAlgorithm(){
    method MetaAlgorithm (line 1887) | MetaAlgorithm(int argc, char** argv) {
    method staticInitialize (line 1892) | static void staticInitialize(int argc, char** argv) {
    method initialize (line 1933) | void initialize(int argc, char** argv, string dummy1 = "", string dumm...
    method initialize (line 1938) | void initialize(){
    method string (line 1966) | string mappedname(string name){
    method run (line 1971) | pair<score_t, string> run(){

FILE: src/argparser.hpp
  class ArgParser (line 14) | class ArgParser{
    method addArg (line 27) | void addArg(char sName, string lName, string description, bool priorit...
    method addIntArg (line 35) | void addIntArg(char sName, string lName, int defaultValue, string desc...
    method addDoubleArg (line 41) | void addDoubleArg(char sName, string lName, double defaultValue, strin...
    method addStringArg (line 47) | void addStringArg(char sName, string lName, string defaultValue, strin...
    method addFlag (line 53) | void addFlag(char sName, string lName, string description, function<vo...
    method string (line 67) | string& getStringArg(string name){
    method setProgramName (line 71) | void setProgramName(string name, string fname = "Accurate Species Tree...
    method string (line 76) | string getFullName(){
    method printHelp (line 80) | void printHelp(string name){
    method ArgParser (line 88) | ArgParser(){
    method parse (line 109) | void parse(int argc, char** argv){

FILE: src/aster-gui.py
  class FileButton (line 14) | class FileButton(QtWidgets.QPushButton):
    method __init__ (line 15) | def __init__(self, arg):
    method setPath (line 20) | def setPath(self):
  class FolderButton (line 24) | class FolderButton(QtWidgets.QPushButton):
    method __init__ (line 25) | def __init__(self, arg):
    method setPath (line 30) | def setPath(self):
  class Ui_MainWindow (line 34) | class Ui_MainWindow(object):
    method setupUi (line 35) | def setupUi(self, MainWindow):
    method retranslateUi (line 132) | def retranslateUi(self, MainWindow):
    method run (line 167) | def run(self):

FILE: src/astral-hybrid.cpp
  function score_t (line 26) | score_t from_string(const string s){
  function ostream (line 30) | ostream& operator<<(ostream& cout, long double x){
  function score_t (line 36) | score_t from_string(const string s){
  function MAPPING (line 62) | int MAPPING(long long begin, long long end){
  function score_t (line 84) | score_t WEIGHT_S(long long begin, long long end){
  function score_t (line 92) | score_t DEFAULT_WEIGHT_S(){
  function score_t (line 96) | score_t WEIGHT_L(long long begin, long long end){
  function parse (line 104) | void parse(score_t treeweight, int parent = -1, bool isLeft = true){
  function readInputTrees (line 157) | void readInputTrees(string input, string mapping, string treeweights) {
  function DETECT (line 183) | void DETECT(long long begin, long long end){
  function detectSupport (line 192) | void detectSupport(){
  function detectSupportType (line 209) | void detectSupportType(string input) {
  function main (line 242) | int main(int argc, char** argv){

FILE: src/astral-pro.cpp
  function string (line 29) | string to_string(const __int128 x){
  function ostream (line 33) | ostream& operator<<(ostream& cout, __int128 x){
  function from_string (line 41) | double from_string(const string s){
  class DynamicBitset (line 67) | class DynamicBitset{
    method DynamicBitset (line 72) | DynamicBitset(){}
    method DynamicBitset (line 73) | DynamicBitset(int sz): size(sz), vec((sz + 63) / 64){}
    method set (line 75) | void set(int i){
    method DynamicBitset (line 85) | DynamicBitset operator|(const DynamicBitset &b) const{
    method DynamicBitset (line 97) | DynamicBitset operator&(const DynamicBitset &b) const{
    method DynamicBitset (line 106) | DynamicBitset operator^(const DynamicBitset &b) const{
    method DynamicBitset (line 118) | DynamicBitset operator-(const DynamicBitset &b) const{
    method isDisjointTo (line 142) | bool isDisjointTo(const DynamicBitset &b) const{
    method setBits (line 150) | vector<int> setBits() const{
  class GenetreeAnnotator (line 161) | class GenetreeAnnotator{
    type Node (line 163) | struct Node{
    method createSubtree (line 177) | tuple<int, int, int> createSubtree(const unordered_map<long long, stri...
    method scoreSubtree (line 237) | int scoreSubtree(int cur){
    method annotateTree (line 256) | int annotateTree(const unordered_map<long long, string> &leafname, con...
    method buildTree (line 292) | int buildTree(int cur, int p, int depth = 0) const{
    method string (line 328) | string printTree(int cur, int depth = 0) const{
  function string (line 343) | string MAPPING(long long begin, long long end){
  function string (line 352) | string GET_NAME(long long begin, long long end){
  function LENGTH (line 360) | double LENGTH(long long begin, long long end){
  function parse (line 367) | long long parse(unordered_map<long long, string> &leafname, unordered_ma...
  function string (line 410) | string convert2string(const unordered_map<long long, string> &leafname, ...
  function annotate (line 417) | void annotate(string input, string mapping){
  function examplePrintSubtreeWithSupport (line 459) | void examplePrintSubtreeWithSupport(shared_ptr<AnnotatedTree::Node> node){
  function string (line 478) | string sampleGenetree(int p, int inode, const unordered_set<int> &outgro...
  function outgroupLength (line 492) | pair<double, int> outgroupLength(const Tree& tr, string label = "outgrou...
  function computeOutgroupLength (line 504) | double computeOutgroupLength(){
  function main (line 521) | int main(int argc, char** argv){

FILE: src/astral.cpp
  function string (line 31) | string to_string(const __int128 x){
  function ostream (line 35) | ostream& operator<<(ostream& cout, __int128 x){
  function from_string (line 43) | double from_string(const string s){
  function MAPPING (line 64) | int MAPPING(long long begin, long long end){
  function LENGTH (line 80) | double LENGTH(long long begin, long long end){
  function parse (line 87) | void parse(int parent = -1, bool isLeft = true){
  function readInputTrees (line 136) | void readInputTrees(string input, string mapping) {
  function examplePrintSubtreeWithSupport (line 158) | void examplePrintSubtreeWithSupport(shared_ptr<AnnotatedTree::Node> node){
  function string (line 177) | string sampleGenetree(int p, int inode, const unordered_set<int> &outgro...
  function outgroupLength (line 187) | pair<double, int> outgroupLength(const Tree& tr, string label = "outgrou...
  function computeOutgroupLength (line 199) | double computeOutgroupLength(){
  function main (line 216) | int main(int argc, char** argv){

FILE: src/biallelic-cuda.hpp
  type TripartitionInitializer (line 15) | struct TripartitionInitializer{
  type Tripartition (line 23) | struct Tripartition{
    method Tripartition (line 35) | Tripartition(const TripartitionInitializer &TI): n(TI.h.size()), color...
    method Tripartition (line 103) | Tripartition (Tripartition && T): GI(T.GI), GF(T.GF), S(T.S), H(T.H), ...
    method Tripartition (line 108) | Tripartition& operator= ( Tripartition && ) = delete;
    method Tripartition (line 109) | Tripartition( const Tripartition & ) = delete;
    method Tripartition (line 110) | Tripartition& operator= ( const Tripartition & ) = delete;
    method update (line 112) | void update(int x, int i){
    method score_t (line 118) | score_t score(){
    method updatePart (line 127) | void updatePart(int part, int x, int i){
    method score_t (line 137) | score_t scorePart(int part){
    method gpuWork (line 149) | void gpuWork(queue<score_t>& Q){

FILE: src/caster-pair.cpp
  type Workflow (line 43) | struct Workflow {
    method addName (line 50) | void addName(const string& name) {
    method infoCount (line 57) | static int infoCount(const array<int, 4> &cnt){
    method add (line 65) | static array<int, 4> add(const array<int, 4> &a, const array<int, 4> &b){
    method sum (line 73) | static int sum(const array<int, 4> &cnt){
    method buildGeneSeq (line 81) | void buildGeneSeq(TripartitionInitializer::Gene::Initializer &gene, co...
    method formatGene (line 94) | void formatGene(const vector<int> &ind2species, size_t pos, size_t nSi...
    method read (line 102) | void read(const string &file, const string &fileFormat, const string &...
    method Workflow (line 207) | Workflow(int argc, char** argv){
    method init (line 213) | void init(){
  function main (line 226) | int main(int argc, char** argv){

FILE: src/caster-site.cpp
  type Workflow (line 48) | struct Workflow {
    method addName (line 55) | void addName(const string& name) {
    method infoCount (line 62) | static int infoCount(const array<int, 4> &cnt){
    method add (line 70) | static array<int, 4> add(const array<int, 4> &a, const array<int, 4> &b){
    method sum (line 78) | static int sum(const array<int, 4> &cnt){
    method buildGeneSeq (line 86) | void buildGeneSeq(TripartitionInitializer::Gene::Initializer &gene, co...
    method formatGene (line 98) | void formatGene(const vector<int> &ind2species, size_t pos, size_t nSi...
    method read (line 105) | void read(const string &file, const string &fileFormat, const string &...
    method Workflow (line 166) | Workflow(int argc, char** argv){
    method init (line 173) | void init(){
  function main (line 187) | int main(int argc, char** argv){

FILE: src/castles.hpp
  type CastlesNode (line 3) | struct CastlesNode{
    method length_t (line 4) | static length_t safe_div(length_t n, length_t d){
    method length_t (line 9) | static length_t lambertw(length_t x, length_t err = 1e-9){
    method CastlesNode (line 30) | CastlesNode(const CustomizedAnnotation &annot, length_t s = 1000, leng...

FILE: src/codonSplit.py
  function split_codon_positions (line 3) | def split_codon_positions(input_fasta):

FILE: src/debug.cpp
  function main (line 3) | int main(){

FILE: src/dstar-branch-merge-diag.cpp
  type Row (line 14) | struct Row{
  type Birow (line 18) | struct Birow{
  function main (line 40) | int main(int argc, char *argv[])

FILE: src/dstar-branch.cpp
  type Tree (line 15) | struct Tree{
    type Node (line 16) | struct Node{
      method Node (line 21) | Node(const string &nw, int &i){
      method print (line 36) | void print(ostream& fout){
      method addLabel (line 47) | void addLabel(int &cnt){
    type Instruction (line 62) | struct Instruction{
      type Unit (line 63) | struct Unit{
        method Unit (line 68) | Unit operator+ (const Unit &o) const{
      method print (line 84) | void print(ostream &fout, const string &prefix){
    method Tree (line 107) | Tree(const string &nw){
    method Instruction (line 123) | static Instruction createInstruction(Node *ingroup, Node *tgt1, Node *...
      type Unit (line 63) | struct Unit{
        method Unit (line 68) | Unit operator+ (const Unit &o) const{
      method print (line 84) | void print(ostream &fout, const string &prefix){
    method createJobTgt (line 134) | static void createJobTgt(vector<Instruction> &jobs, Node *ingroup, Nod...
    method createJobIngroup (line 141) | static void createJobIngroup(vector<Instruction> &jobs, Node *ingroup){
    method createJob (line 157) | vector<Instruction> createJob(){
    method print (line 163) | void print(ostream& fout){
  type DataType16 (line 173) | struct DataType16{
  type DataType8 (line 180) | struct DataType8{
  class DStarQuadrupartitionScorer (line 187) | class DStarQuadrupartitionScorer{
    type Block (line 194) | struct Block{
    method CounterType (line 201) | inline static CounterType quadXXYY(CounterType x0, CounterType x1, Cou...
    method ScoreType (line 205) | static ScoreType scoreSite(int pos, const array<vector<FreqType>, 4> &...
    method ScoreType (line 231) | static ScoreType scoreInterval(int start, int end, const array<vector<...
    method dstar (line 238) | static vector<ScoreType> dstar(int windowSize, const array<vector<Freq...
    method CounterType (line 248) | static CounterType quartetCnt(int start, int end, const array<vector<F...
    method dstarQuartetCnt (line 261) | static vector<CounterType> dstarQuartetCnt(int windowSize, const array...
    method Block (line 271) | static Block parseFreqs(const array<vector<FreqType>, 4> &f1, const ar...
    method string (line 295) | static string multiind(string input, string mapping = "", int interval...
  type Algorithm (line 390) | struct Algorithm{
    method string2seq (line 401) | static array<vector<unsigned short>, 4> string2seq(const string &s){
    method cntReset (line 410) | void cntReset(array<vector<DataType::FreqType>, 4> &res){
    method convert (line 417) | void convert(array<vector<DataType::FreqType>, 4> &res, const array<ve...
    method instructionCnt (line 422) | void instructionCnt(Tree::Node *node, array<vector<DataType::FreqType>...
    method instructionScore (line 431) | int instructionScore(Tree::Node *node, array<vector<DataType::FreqType...
    method runInstruction (line 454) | void runInstruction(Tree &tree, Tree::Instruction &ins){
    method threadJobs (line 474) | void threadJobs(Tree &tree, vector<Tree::Instruction> &jobs, int L, in...
    method Algorithm (line 478) | Algorithm(const string &faFile, const string &nwFile, const string &ts...
  function main (line 561) | int main(int argc, char *argv[])

FILE: src/dstar.cpp
  type DataType16 (line 14) | struct DataType16{
  class DStarQuadrupartitionScorer (line 21) | class DStarQuadrupartitionScorer{
    type Block (line 28) | struct Block{
    method CounterType (line 35) | inline static CounterType quadXXYY(CounterType x0, CounterType x1, Cou...
    method ScoreType (line 39) | static ScoreType scoreSite(int pos, const array<vector<FreqType>, 4> &...
    method ScoreType (line 65) | static ScoreType scoreInterval(int start, int end, const array<vector<...
    method dstar (line 72) | static vector<ScoreType> dstar(int windowSize, const array<vector<Freq...
    method CounterType (line 82) | static CounterType quartetCnt(int start, int end, const array<vector<F...
    method dstarQuartetCnt (line 95) | static vector<CounterType> dstarQuartetCnt(int windowSize, const array...
    method Block (line 105) | static Block parseFreqs(const array<vector<FreqType>, 4> &f1, const ar...
    method string (line 129) | static string multiind(string input, string mapping = "", int interval...
  function main (line 237) | int main(int argc, char *argv[])

FILE: src/genetreewithbinaryweight.hpp
  type CustomizedAnnotation (line 20) | struct CustomizedAnnotation{
    type Quadrupartition (line 21) | struct Quadrupartition{
      method numericalBalancing (line 29) | void numericalBalancing(){
      method Quadrupartition (line 39) | Quadrupartition operator+ (const Quadrupartition& o) const{
      method Quadrupartition (line 50) | Quadrupartition& operator+= (const Quadrupartition& o){
      method Quadrupartition (line 60) | Quadrupartition operator- (const Quadrupartition& o) const{
    method CustomizedAnnotation (line 73) | CustomizedAnnotation operator+ (const CustomizedAnnotation& o) const{
    method CustomizedAnnotation (line 81) | CustomizedAnnotation& operator+= (const CustomizedAnnotation& o){
    method CustomizedAnnotation (line 88) | CustomizedAnnotation operator- (const CustomizedAnnotation& o) const{
  type TripartitionInitializer (line 97) | struct TripartitionInitializer{
    type Node (line 98) | struct Node{
  type Tripartition (line 108) | struct Tripartition{
    type Partition (line 109) | struct Partition{
      type Node (line 110) | struct Node{
      method score_t (line 119) | score_t normal(Node& w){
      method Partition (line 157) | Partition(TripartitionInitializer init, int p): leafParent(init.leaf...
      method update (line 166) | void update(int x, int i){
      method score_t (line 182) | score_t score(){
    method Tripartition (line 189) | Tripartition(const TripartitionInitializer &init){
    method updatePart (line 193) | void updatePart(int part, int x, int i){
    method update (line 197) | void update(int x, int i){
    method score_t (line 204) | score_t scorePart(int part){
    method score_t (line 208) | score_t score(){
  type Quadrupartition (line 215) | struct Quadrupartition{
    type Partition (line 216) | struct Partition{
      type Node (line 217) | struct Node{
        type Topology (line 218) | struct Topology{
      method extended (line 242) | void extended(Node& w, Node& u, Node& v){
      method CustomizedAnnotation (line 352) | CustomizedAnnotation extended(Node& w){
      method Partition (line 382) | Partition(TripartitionInitializer init, int p): leafParent(init.leaf...
      method update (line 393) | void update(int x, int i){
      method score (line 431) | array<double, 3> score(){
      method CustomizedAnnotation (line 435) | CustomizedAnnotation annotate(){
    method Quadrupartition (line 445) | Quadrupartition(const TripartitionInitializer &init){
    method update (line 449) | void update(int x, int i){
    method score (line 456) | array<double, 3> score(){
    method CustomizedAnnotation (line 470) | CustomizedAnnotation annotate(){

FILE: src/genetreewithhybridweight.hpp
  type TripartitionInitializer (line 17) | struct TripartitionInitializer{
    type Node (line 18) | struct Node{
  type Tripartition (line 28) | struct Tripartition{
    type Partition (line 29) | struct Partition{
      type Node (line 30) | struct Node{
      method score_t (line 39) | score_t normal(Node& w){
      method Partition (line 78) | Partition(const TripartitionInitializer &init, int p): leafParent(in...
      method update (line 89) | void update(int x, int i){
      method score_t (line 105) | score_t score(){
    method Tripartition (line 112) | Tripartition(const TripartitionInitializer &init){
    method updatePart (line 116) | void updatePart(int part, int x, int i){
    method update (line 120) | void update(int x, int i){
    method score_t (line 127) | score_t scorePart(int part){
    method score_t (line 131) | score_t score(){
  type Quadrupartition (line 138) | struct Quadrupartition{
    type Partition (line 139) | struct Partition{
      type Node (line 140) | struct Node{
      method normal (line 155) | array<score_t, 3> normal(Node& w){
      method Partition (line 217) | Partition(TripartitionInitializer init, int p): leafParent(init.leaf...
      method update (line 227) | void update(int x, int i){
      method score (line 255) | array<score_t, 5> score(){
    method Quadrupartition (line 262) | Quadrupartition(const TripartitionInitializer &init){
    method update (line 266) | void update(int x, int i){
    method score (line 273) | array<double, 3> score(){

FILE: src/incbeta.c
  function incbeta (line 32) | double incbeta(double a, double b, double x) {

FILE: src/landmark.hpp
  type Vector (line 9) | struct Vector{
    method Vector (line 12) | Vector operator+(const Vector& b) const{
    method Vector (line 16) | Vector operator-(const Vector& b) const{
    method Vector (line 20) | Vector& operator+=(const Vector& b){
    method Vector (line 25) | Vector& operator-=(const Vector& b){
    method Vector (line 30) | Vector operator*(double c) const{
    method Vector (line 35) | Vector operator/(double c) const{
    method Vector (line 40) | Vector& operator*=(double c){
    method Vector (line 45) | Vector& operator/=(double c){
    method norm (line 55) | double norm() const{
    method normalize (line 59) | void normalize(){
    method Vector (line 63) | Vector(double x, double y, double z = 0, bool normalized = false): x(x...
    method Vector (line 67) | Vector(): x(0), y(0), z(0){}
  type TripartitionInitializer (line 70) | struct TripartitionInitializer{
  type Tripartition (line 74) | struct Tripartition{
    method Tripartition (line 83) | Tripartition(TripartitionInitializer &init): M(init.M), n(init.M.size(...
    method updatePart (line 90) | void updatePart(int part, int x, int i){
    method score_t (line 108) | score_t scorePart(int part){

FILE: src/merge-pairend.cpp
  function string (line 34) | const string STRING_REVERSE_COMPLEMENT(const string &seq){
  function string (line 42) | const string STRING_REVERSE(const string &seq){
  function string (line 50) | const string STRING_UPPER(const string &seq){
  function MATCH_LENGTH (line 58) | int MATCH_LENGTH(const string &seqL, const string &seqR, int offset, int...
  function BEST_MATCH (line 70) | int BEST_MATCH(const string &seqL, const string &seqR, int minmatch = 20...
  function MERGE (line 82) | void MERGE(string &seq, string &qc, const string &seqL, const string &se...
  function main (line 110) | int main(int argc, char** argv){

FILE: src/monster.cpp
  function addName (line 28) | void addName(const string& name) {
  function main (line 35) | int main(int argc, char** argv){

FILE: src/multitree.hpp
  type CustomizedAnnotation (line 20) | struct CustomizedAnnotation{
    type Quadrupartition (line 21) | struct Quadrupartition{
      method numericalBalancing (line 29) | void numericalBalancing(){
      method Quadrupartition (line 40) | Quadrupartition operator+ (const Quadrupartition& o) const{
      method Quadrupartition (line 51) | Quadrupartition& operator+= (const Quadrupartition& o){
      method Quadrupartition (line 61) | Quadrupartition operator- (const Quadrupartition& o) const{
    method CustomizedAnnotation (line 74) | CustomizedAnnotation operator+ (const CustomizedAnnotation& o) const{
    method CustomizedAnnotation (line 82) | CustomizedAnnotation& operator+= (const CustomizedAnnotation& o){
    method CustomizedAnnotation (line 89) | CustomizedAnnotation operator- (const CustomizedAnnotation& o) const{
  type TripartitionInitializer (line 98) | struct TripartitionInitializer{
    type Node (line 99) | struct Node{
  type Tripartition (line 109) | struct Tripartition{
    type Partition (line 110) | struct Partition{
      type Node (line 111) | struct Node{
      method score_t (line 117) | score_t normal(Node& w){
      method special (line 132) | void special(Node& w){
      method Partition (line 145) | Partition(const TripartitionInitializer &init, int p): leafParent(in...
      method update (line 154) | void update(int x, int i){
      method score_t (line 175) | score_t score(){
    type Node (line 182) | struct Node{
    method Tripartition (line 188) | Tripartition(const TripartitionInitializer &init){
    method updatePart (line 222) | void updatePart(int part, int x, int i){
    method update (line 226) | void update(int x, int i){
    method score_t (line 233) | score_t scorePart(int part){
    method score_t (line 237) | score_t score(){
  type Quadrupartition (line 244) | struct Quadrupartition{
    type Partition (line 245) | struct Partition{
      type Node (line 246) | struct Node{
        type Topology (line 247) | struct Topology{
      method extended (line 277) | void extended(Node& w, Node& u, Node& v){
      method CustomizedAnnotation (line 423) | CustomizedAnnotation extended(Node& w){
      method normal (line 459) | array<score_t, 3> normal(Node& w){
      method special (line 497) | void special(Node& w){
      method Partition (line 523) | Partition(const TripartitionInitializer &init, int p): leafParent(in...
      method update (line 533) | void update(int x, int i){
      method score (line 575) | array<double, 3> score(){
      method CustomizedAnnotation (line 581) | CustomizedAnnotation annotate(){
    method Quadrupartition (line 591) | Quadrupartition(const TripartitionInitializer &init){
    method update (line 595) | void update(int x, int i){
    method score (line 602) | array<double, 3> score(){
    method CustomizedAnnotation (line 616) | CustomizedAnnotation annotate(){

FILE: src/numerical.hpp
  type CustomizedAnnotation (line 13) | struct CustomizedAnnotation{
    method CustomizedAnnotation (line 16) | CustomizedAnnotation(){}
    method CustomizedAnnotation (line 17) | CustomizedAnnotation(int len): bs(len){}
    method bootstrap (line 19) | array<int, 3> bootstrap(){
    method CustomizedAnnotation (line 29) | CustomizedAnnotation operator+ (const CustomizedAnnotation& o) const{
    method CustomizedAnnotation (line 39) | CustomizedAnnotation& operator+= (const CustomizedAnnotation& o){
  type TripartitionInitializer (line 49) | struct TripartitionInitializer{
  type Tripartition (line 54) | struct Tripartition{
    method Tripartition (line 60) | Tripartition(TripartitionInitializer &init): M(init.M), cnt(init.cnt),...
    method updatePart (line 68) | void updatePart(int part, int x, int i){
    method score_t (line 85) | score_t scorePart(int part){
  type Quadrupartition (line 96) | struct Quadrupartition{
    method Quadrupartition (line 104) | Quadrupartition(TripartitionInitializer &init): M(init.M), cnt(init.cn...
    method update (line 116) | void update(int x, int i){
    method score (line 131) | array<double, 3> score(){
    method CustomizedAnnotation (line 142) | CustomizedAnnotation annotate(){

FILE: src/sequence-pair.hpp
  type CustomizedAnnotation (line 16) | struct CustomizedAnnotation{
    method CustomizedAnnotation (line 19) | CustomizedAnnotation(){}
    method CustomizedAnnotation (line 20) | CustomizedAnnotation(int len): bs(len){}
    method bootstrap (line 22) | array<int, 3> bootstrap(){
    method CustomizedAnnotation (line 32) | CustomizedAnnotation operator+ (const CustomizedAnnotation& o) const{
    method CustomizedAnnotation (line 42) | CustomizedAnnotation& operator+= (const CustomizedAnnotation& o){
  function score_t (line 52) | inline score_t scorePos(const array<array<unsigned short, 4>, 3> &cnt, s...
  type TripartitionInitializer (line 67) | struct TripartitionInitializer{
    type Sequence (line 68) | struct Sequence{
      method Sequence (line 72) | Sequence(){
      method append (line 76) | void append(char c1, char c2) {
      method len (line 100) | size_t len() const {
      method get (line 104) | bool get(size_t id, size_t pos) const {
      method add (line 110) | void add(size_t id, array<size_t, 4>& cnt) const {
      method add (line 119) | inline void add(size_t id, array<unsigned short, 4>& cnt) const {
      method rmv (line 128) | inline void rmv(size_t id, array<unsigned short, 4>& cnt) const {
    type Array (line 138) | struct Array {
      method Array (line 142) | Array() : seq(1) {}
      method append (line 144) | void append(const T& t) {
      method T (line 153) | const T& get(size_t id) const {
    type Gene (line 159) | struct Gene{
      type Initializer (line 160) | struct Initializer {
        method Initializer (line 168) | Initializer(int nInd, int nSpecies, int nSite, int nKernal, int nR...
        method setIndSiteRep2kernal (line 172) | void setIndSiteRep2kernal(int iInd, int iSite, int iRep, int iKern...
      type Kernal (line 201) | struct Kernal {
        method reset (line 204) | void reset(){
        method update (line 210) | void update(int y, int x, const Sequence &seq, size_t pSeq){
        method score_t (line 215) | score_t score(const score_t pq){
      method Gene (line 231) | Gene(): nInd(0), nSpecies(0), nSite(0), nKernal(0), nRep(0),
      method Gene (line 235) | Gene(const Initializer& init): nInd(init.nInd), nSpecies(init.nSpeci...
      method updateCnt (line 239) | void updateCnt(int i, int y, int x, const Sequence &seq) {
      method score_t (line 263) | score_t scoreCnt() {
      method clearCntScore (line 274) | void clearCntScore(){
  type Tripartition (line 288) | struct Tripartition{
    method Tripartition (line 292) | Tripartition(TripartitionInitializer &init): TI(init), color(init.nThr...
    method updatePart (line 298) | void updatePart(int part, int x, int i){
    method score_t (line 307) | score_t scorePart(int part){
  function score_t (line 317) | inline score_t quadPos(const array<unsigned short, 4> &cnt0, const array...
  function quadPos (line 328) | inline array<score_t, 3> quadPos(const array<array<unsigned short, 4>, 4...
  type Quadrupartition (line 334) | struct Quadrupartition{
    type Gene (line 335) | struct Gene{
      type Kernal (line 336) | struct Kernal {
        method reset (line 339) | void reset(){
        method update (line 345) | void update(int y, int x, const TripartitionInitializer::Sequence ...
        method score (line 350) | array<score_t, 3> score(score_t pq){
      method Gene (line 368) | Gene(TripartitionInitializer::Gene& init, int ufb_size, int ufb_fold...
      method updateCnt (line 376) | void updateCnt(int i, int y, int x, const TripartitionInitializer::S...
      method scoreCnt (line 400) | array<score_t, 3> scoreCnt() {
      method annotate (line 412) | void annotate(CustomizedAnnotation &annot){
      method clearCntScore (line 439) | void clearCntScore(){
    method Quadrupartition (line 451) | Quadrupartition(TripartitionInitializer &init): TI(init), color(init.n...
    method updatePart (line 458) | void updatePart(int part, int x, int i){
    method scorePart (line 467) | void scorePart(int part, array<score_t, 3> &result){
    method annotatePart (line 477) | void annotatePart(int part, CustomizedAnnotation &result){
    method update (line 486) | void update(int x, int i){
    method score (line 493) | array<double, 3> score(){
    method CustomizedAnnotation (line 511) | CustomizedAnnotation annotate(){

FILE: src/sequence.hpp
  type CustomizedAnnotation (line 21) | struct CustomizedAnnotation{
    method CustomizedAnnotation (line 25) | CustomizedAnnotation(){}
    method CustomizedAnnotation (line 26) | CustomizedAnnotation(int len): bs(len){}
    method bootstrap (line 28) | array<int, 3> bootstrap(){
    method lengths (line 38) | array<score_t, 5> lengths(){
    method CustomizedAnnotation (line 53) | CustomizedAnnotation operator+ (const CustomizedAnnotation& o) const{
    method CustomizedAnnotation (line 68) | CustomizedAnnotation& operator+= (const CustomizedAnnotation& o){
  function XXYY (line 83) | inline long long XXYY(long long x0, long long x1, long long x2, long lon...
  function score_t (line 88) | inline score_t scorePos(const array<array<unsigned short, 4>, 3> &cnt, c...
  type TripartitionInitializer (line 121) | struct TripartitionInitializer{
    type Sequence (line 122) | struct Sequence{
      method Sequence (line 126) | Sequence(){
      method append (line 130) | void append(char c) {
      method len (line 146) | size_t len() const {
      method get (line 150) | bool get(size_t id, size_t pos) const {
      method get (line 156) | char get(size_t id) const {
      method add (line 164) | void add(size_t id, array<size_t, 4>& cnt) const {
      method add (line 173) | inline void add(size_t id, array<unsigned short, 4>& cnt) const {
      method rmv (line 182) | inline void rmv(size_t id, array<unsigned short, 4>& cnt) const {
    type Array (line 192) | struct Array {
      method Array (line 196) | Array() : seq(1) {}
      method append (line 198) | void append(const T& t) {
      method T (line 207) | const T& get(size_t id) const {
    type Gene (line 213) | struct Gene{
      type Initializer (line 214) | struct Initializer {
        method Initializer (line 222) | Initializer(int nInd, int nSpecies, int nSite, int nKernal, int nR...
        method setIndSiteRep2kernal (line 226) | void setIndSiteRep2kernal(int iInd, int iSite, int iRep, int iKern...
      type Kernal (line 255) | struct Kernal {
        method reset (line 258) | void reset(){
        method update (line 264) | void update(int y, int x, const Sequence &seq, size_t pSeq){
        method score_t (line 269) | score_t score(const array<float, 4> &pi){
      method Gene (line 285) | Gene(): nInd(0), nSpecies(0), nSite(0), nKernal(0), nRep(0),
      method Gene (line 289) | Gene(const Initializer& init): nInd(init.nInd), nSpecies(init.nSpeci...
      method updateCnt (line 293) | void updateCnt(int i, int y, int x, const Sequence &seq) {
      method score_t (line 317) | score_t scoreCnt() {
      method clearCntScore (line 328) | void clearCntScore(){
  type Tripartition (line 342) | struct Tripartition{
    method Tripartition (line 346) | Tripartition(TripartitionInitializer &init): TI(init), color(init.nThr...
    method updatePart (line 352) | void updatePart(int part, int x, int i){
    method score_t (line 361) | score_t scorePart(int part){
  function quadXXYY (line 371) | inline long long quadXXYY(long long x0, long long x1, long long x2, long...
  function score_t (line 375) | inline score_t quadPos(const array<unsigned short, 4> &cnt0, const array...
  function quadPos (line 408) | inline array<score_t, 3> quadPos(const array<array<unsigned short, 4>, 4...
  function roughBlCntPos (line 414) | inline array<int, 2> roughBlCntPos(const array<unsigned short, 4> &a, co...
  function blCntPos (line 425) | inline array<double, 2> blCntPos(const array<unsigned short, 4> &a, cons...
  type Quadrupartition (line 432) | struct Quadrupartition{
    type Gene (line 433) | struct Gene{
      type Kernal (line 434) | struct Kernal {
        method reset (line 437) | void reset(){
        method update (line 443) | void update(int y, int x, const TripartitionInitializer::Sequence ...
        method score (line 448) | array<score_t, 3> score(const array<float, 4> &pi){
      method Gene (line 466) | Gene(TripartitionInitializer::Gene& init, int ufb_size, int ufb_fold...
      method updateCnt (line 474) | void updateCnt(int i, int y, int x, const TripartitionInitializer::S...
      method scoreCnt (line 498) | array<score_t, 3> scoreCnt() {
      method blCnt (line 510) | void blCnt(array<score_t, 2> &res, int i, int j){
      method annotate (line 537) | void annotate(CustomizedAnnotation &annot){
      method clearCntScore (line 570) | void clearCntScore(){
    method Quadrupartition (line 582) | Quadrupartition(TripartitionInitializer &init): TI(init), color(init.n...
    method updatePart (line 589) | void updatePart(int part, int x, int i){
    method scorePart (line 598) | void scorePart(int part, array<score_t, 3> &result){
    method annotatePart (line 608) | void annotatePart(int part, CustomizedAnnotation &result){
    method update (line 617) | void update(int x, int i){
    method score (line 624) | array<double, 3> score(){
    method CustomizedAnnotation (line 642) | CustomizedAnnotation annotate(){

FILE: src/sequencenontrivialpi.hpp
  function score_t (line 7) | inline score_t scorePos(const array<array<int, 4>, 3> cnt, const score_t...
  type TripartitionInitializer (line 24) | struct TripartitionInitializer{
  type Tripartition (line 32) | struct Tripartition{
    method Tripartition (line 43) | Tripartition(const TripartitionInitializer &init): nThreads(init.nThre...
    method resetWork (line 45) | void resetWork(int start, int end){
    method addTotalWork (line 55) | void addTotalWork(int i, int start, int end){
    method rmvTotalWork (line 62) | void rmvTotalWork(int i, int start, int end){
    method addWork (line 69) | void addWork(int x, int i, int start, int end){
    method rmvWork (line 76) | void rmvWork(int x, int i, int start, int end){
    method scoreWork (line 83) | void scoreWork(score_t &res, int start, int end){
    method reset (line 94) | void reset(){
    method addTotal (line 101) | void addTotal(int i){
    method rmvTotal (line 109) | void rmvTotal(int i){
    method add (line 117) | void add(int x, int i){
    method rmv (line 124) | void rmv(int x, int i){
    method score_t (line 131) | score_t score(){

FILE: src/sequtils.hpp
  type SeqUtils (line 17) | namespace SeqUtils{
    function string (line 20) | string fastaFormatName(const string &name){
    function string (line 28) | string fastaFormatRead(const string &name){
  type SeqParser (line 37) | struct SeqParser{
    method SeqParser (line 45) | SeqParser(string fileName, string fileFormat = "auto"){
    method nextSeq (line 64) | bool nextSeq(){
    method string (line 69) | string getSeq(size_t threshold = 0){
    method string (line 80) | static string STRING_REVERSE_COMPLEMENT(const string &seq){
    method string (line 94) | static string formatSeq(const string raw){
    method seemsFastq (line 110) | static bool seemsFastq(const string &line){
    method seemsFasta (line 114) | static bool seemsFasta(const string &line){
    method initFastq (line 118) | void initFastq(const string &fileName){
    method initFasta (line 123) | void initFasta(const string &fileName){
    method nextFastaSeq (line 133) | bool nextFastaSeq(){
    method nextFastqSeq (line 164) | bool nextFastqSeq(){
  type AlignmentParser (line 183) | struct AlignmentParser{
    method AlignmentParser (line 196) | AlignmentParser(string fileName, string fileFormat = "auto", string se...
    method nextAlignment (line 216) | bool nextAlignment(){
    method getLength (line 223) | size_t getLength(){
    method nextSeq (line 227) | bool nextSeq(){
    method string (line 238) | string getName(){
    method string (line 242) | string getSeq(){
    method string (line 254) | static string getFastaName(const string &fasta){
    method string (line 275) | static string removeSpace(const string &seq){
    method seemsPhylip (line 283) | static bool seemsPhylip(const string &line){
    method seemsFasta (line 296) | static bool seemsFasta(const string &line){
    method initPhylip (line 300) | void initPhylip(const string &fileName){
    method initFasta (line 305) | void initFasta(const string &fileName){
    method initFastaList (line 310) | void initFastaList(const string &fileName){
    method parseSeqFasta (line 319) | bool parseSeqFasta(){
    method nextAlignmentFasta (line 340) | bool nextAlignmentFasta(){
    method nextSeqFasta (line 356) | bool nextSeqFasta(){
    method nextAlignmentPhylip (line 364) | bool nextAlignmentPhylip(){
    method nextSeqPhylip (line 371) | bool nextSeqPhylip(){
    method string (line 379) | string toFormatNA(const string &seq){
    method string (line 393) | string toAmbiguity(const string &seq){
    method string (line 420) | string toFormatAA2NA(const string &seq){
  type SeqHot (line 435) | struct SeqHot{
    method SeqHot (line 438) | SeqHot(){}
    method SeqHot (line 439) | SeqHot(int n): b(n){}
    method SeqHot (line 440) | SeqHot(const vector<bool> b): b(b){}
    method nSites (line 446) | int nSites() const{
    method SeqHot (line 450) | SeqHot operator|(const SeqHot x) const{
    method SeqHot (line 459) | SeqHot operator&(const SeqHot x) const{
    method SeqHot (line 468) | SeqHot operator^(const SeqHot x) const{
    method SeqHot (line 484) | SeqHot sample(const vector<int> &cols) const{
    method sum (line 492) | int sum() const{
  type AlignmentHot (line 499) | struct AlignmentHot
    method AlignmentHot (line 504) | AlignmentHot(){}
    method AlignmentHot (line 505) | AlignmentHot(int n): s(n){}
    method AlignmentHot (line 506) | AlignmentHot(const vector<SeqHot> s, double p): s(s), p(p){}
    method SeqHot (line 508) | SeqHot& operator[](int i){
    method SeqHot (line 512) | const SeqHot& operator[](int i) const{
    method nTaxa (line 516) | int nTaxa() const{
    method nSites (line 520) | int nSites() const{
    method AlignmentHot (line 524) | AlignmentHot operator+(const AlignmentHot &x) const{
    method AlignmentHot (line 533) | AlignmentHot operator-(const AlignmentHot &x) const{
    method SeqHot (line 549) | SeqHot seqOr() const{
    method seqSum (line 556) | vector<int> seqSum() const{
    method AlignmentHot (line 564) | AlignmentHot sample(const vector<int> &cols) const{
  type MSA (line 574) | struct MSA
    method AlignmentHot (line 578) | AlignmentHot& A(){ return a[0]; }
    method AlignmentHot (line 579) | AlignmentHot& C(){ return a[1]; }
    method AlignmentHot (line 580) | AlignmentHot& G(){ return a[2]; }
    method AlignmentHot (line 581) | AlignmentHot& T(){ return a[3]; }
    method AlignmentHot (line 582) | const AlignmentHot& A() const{ return a[0]; }
    method AlignmentHot (line 583) | const AlignmentHot& C() const{ return a[1]; }
    method AlignmentHot (line 584) | const AlignmentHot& G() const{ return a[2]; }
    method AlignmentHot (line 585) | const AlignmentHot& T() const{ return a[3]; }
    method AlignmentHot (line 586) | AlignmentHot& operator[](int i){ return a[i]; }
    method AlignmentHot (line 587) | const AlignmentHot& operator[](int i) const{ return a[i]; }
    method MSA (line 589) | MSA(){}
    method MSA (line 591) | MSA(const vector<string> seqs){
    method nTaxa (line 613) | int nTaxa() const{
    method nSites (line 617) | int nSites() const{
    method alleleCnt (line 633) | vector<int> alleleCnt() const{
    method minorAlleleSum (line 642) | vector<int> minorAlleleSum() const{
    method MSA (line 657) | MSA sample(const vector<int> &cols) const{
  type DistanceMatrix (line 666) | struct DistanceMatrix{
    method nTaxa (line 677) | int nTaxa() const{
    method DistanceMatrix (line 681) | DistanceMatrix(){}
    method DistanceMatrix (line 683) | DistanceMatrix(int n): d(n, vector<double>(n)), w(n, vector<double>(n)){}
    method DistanceMatrix (line 685) | DistanceMatrix(const AlignmentHot &a, const AlignmentHot &b, bool floy...
    method cluster (line 709) | vector<vector<int> > cluster(mt19937 &eng, double threshold = 3, bool ...
    method partition (line 773) | vector<DistanceMatrix> partition(const vector<vector<int> > &groups){

FILE: src/sister.cpp
  function addName (line 26) | void addName(const string& name) {
  function main (line 33) | int main(int argc, char** argv){

FILE: src/speciestree.hpp
  type SpeciesTree (line 6) | struct SpeciesTree {
    type Node (line 7) | struct Node {
      method Node (line 15) | Node() {}
      method isLeaf (line 21) | bool isLeaf() const {
      method parent (line 25) | shared_ptr<Node> parent() const {
      method leftChild (line 29) | shared_ptr<Node> leftChild() const {
      method rightChild (line 33) | shared_ptr<Node> rightChild() const {
      method taxonID (line 37) | int taxonID() const {
      method string (line 41) | string taxonName() const {
    method string (line 46) | static string to_string(double v) {
    method root (line 55) | shared_ptr<Node> root() {
    method addRoot (line 59) | shared_ptr<Node> addRoot() {
    method addLeft (line 64) | shared_ptr<Node> addLeft(shared_ptr<Node> node) {
    method addRight (line 71) | shared_ptr<Node> addRight(shared_ptr<Node> node) {
    method string (line 78) | string simpleTree(const string &LEN, const string& SUP) {
    method string (line 91) | string simpleSubtree(shared_ptr<Node> node, const string& LEN, const s...
    method string (line 106) | string annotatedTree(const string& LEN) {
    method string (line 119) | string annotatedSubtree(shared_ptr<Node> node, const string& LEN, bool...
    method string (line 134) | string annotations(shared_ptr<Node> node) {

FILE: src/threadpool.hpp
  class ThreadPool (line 13) | class ThreadPool{
    type TaskBlock (line 14) | struct TaskBlock{
      method TaskBlock (line 15) | TaskBlock(){}
      method TaskBlock (line 17) | TaskBlock(const shared_ptr<const vector<function<score_t(const int)>...
    method worker (line 30) | static void worker(future<shared_ptr<TaskBlock> > next, const int id){
    method work (line 43) | void work(){
    method ThreadPool (line 70) | ThreadPool(){}
    method ThreadPool (line 72) | ThreadPool(int n){
    method initialize (line 76) | void initialize(int n){
    method push (line 90) | void push(function<score_t(const int)> f){
    method score_t (line 94) | score_t pop(){

FILE: src/treeutils.hpp
  type TreeUtils (line 17) | namespace TreeUtils{
    function string (line 18) | string PARSE_LEAFNAME(const string& TEXT){
    function from_string (line 26) | double from_string(const string s){
    function string (line 30) | string fastaFormatName(const string &name){
    function string (line 38) | string fastaFormatRead(const string &name){
  type TreeTokenizer (line 47) | struct TreeTokenizer{
    method TreeTokenizer (line 53) | TreeTokenizer(const string& TEXT): TEXT(TEXT){}
    method string (line 55) | string operator()(){
    method string (line 61) | string preview(){
  type Tree (line 84) | struct Tree{
    type Node (line 85) | struct Node
    method Tree (line 96) | Tree(){}
    method Tree (line 98) | Tree(TreeTokenizer &tk){
    method Tree (line 107) | Tree(TreeTokenizer &tk, const unordered_map<string, int>& name2id): Tr...
    method Tree (line 113) | Tree(const string& TEXT): Tree(){
    method Tree (line 123) | Tree(const string& TEXT, const unordered_map<string, int>& name2id): T...
    method text2trees (line 129) | static vector<Tree> text2trees(const string& TEXT){
    method text2trees (line 138) | static vector<Tree> text2trees(const string& TEXT, const unordered_map...
    method readSubtree (line 147) | int readSubtree(TreeTokenizer& tk){
    method string (line 184) | string subtree2string(int v, const vector<vector<int> > &children, boo...
    method string (line 204) | string newick(bool keepLength = true, bool keepInternalLabel = true, b...
    method string (line 213) | string subtree2string(int v, const vector<vector<int> > &children, con...
    method string (line 232) | string newick(const vector<string> &names, bool keepLength = true, boo...
  type BinaryTree (line 242) | struct BinaryTree{
    type Node (line 243) | struct Node{
    method string (line 269) | string& label(int i){
    method BinaryTree (line 281) | BinaryTree(){}
    method BinaryTree (line 283) | BinaryTree(const Tree& tree, bool resolveNonbinary = true){
    method build (line 292) | int build(const Tree& tree, const vector<vector<int> > &children, int ...
    method text2trees (line 320) | static vector<BinaryTree> text2trees(const string& TEXT){
    method text2trees (line 327) | static vector<BinaryTree> text2trees(const string& TEXT, const unorder...
    method string (line 338) | string newick(bool keepLength = true, bool keepInternalLabel = true, b...
    method string (line 342) | string newick(const vector<string> &names, bool keepLength = true, boo...
    method string (line 347) | string subtree2string(int v, bool keepLength, bool keepInternalLabel, ...
    method string (line 365) | string subtree2string(int v, const vector<string> &names, bool keepLen...

FILE: src/tutorial.hpp
  class MDGenerator (line 7) | class MDGenerator{
    method string (line 703) | string replace(string txt, string from, string to){
    method string (line 707) | string uniqueIntro(){
    method string (line 717) | string sharedIntro(){
    method string (line 726) | string inputOutput(){
    method string (line 735) | string sharedExe(){
    method string (line 744) | string uniqueExe(){
    method string (line 752) | string sharedAdv(){
    method string (line 761) | string uniqueAdv(){
    method MDGenerator (line 774) | MDGenerator(string programName): programName(programName){

FILE: src/waster-old.cpp
  function CHAR2BITS (line 45) | static unsigned char CHAR2BITS(char c){
  function CHAR2MASK (line 53) | static unsigned char CHAR2MASK(char c){
  class KmerTable (line 58) | class KmerTable{
    method shift (line 68) | static void shift(size_t &bits, size_t &mask, const unsigned char c){
    method rshift (line 73) | static void rshift(size_t &bits, size_t &mask, const unsigned char c){
    method REVERSE_COMPLEMENT (line 78) | static size_t REVERSE_COMPLEMENT(size_t bits){
    method KmerTable (line 87) | KmerTable(): table(new uint8_t[LEN]{}){}
    method add (line 93) | void add(const string &seqs, const string &seqn, bool bothStrands = tr...
    method postprocess (line 118) | void postprocess(){
    method fillProportion (line 130) | double fillProportion() const{
    method frequentPatterns (line 134) | vector<size_t> frequentPatterns(size_t n, bool optimize4noDownsample =...
  class SNP (line 160) | class SNP{
    method staticInit (line 169) | static void staticInit(){
    method staticFilter (line 181) | static void staticFilter(){
    method staticClear (line 197) | static void staticClear(){
    method locate (line 204) | static size_t locate(size_t pattern){
    method SNP (line 212) | SNP(): snps(sortedPattern.size(), (char) 0){}
    method add (line 214) | void add(size_t pattern, char c){
    method add (line 221) | void add(const string &seqs, const string &seqn, bool bothStrands = tr...
    method postprocess (line 237) | void postprocess(){
    method string (line 245) | const string& get(){
  type Workflow (line 257) | struct Workflow {
    method addName (line 271) | void addName(const string& name) {
    method buildGeneSeq (line 278) | void buildGeneSeq(TripartitionInitializer::Gene::Initializer &gene, si...
    method formatGene (line 295) | void formatGene(size_t pos, size_t nSite, size_t offset) {
    method countAT (line 302) | static int countAT(const string seq){
    method countCG (line 310) | static int countCG(const string seq){
    method readAlignment (line 318) | void readAlignment(){
    method Workflow (line 368) | Workflow(int argc, char** argv){
    method init (line 408) | void init(){
  function main (line 524) | int main(int argc, char** argv){

FILE: src/waster.cpp
  function CHAR2BITS (line 48) | unsigned char CHAR2BITS(char c){
  function CHAR2MASK (line 56) | unsigned char CHAR2MASK(char c){
  function REVERSE_COMPLEMENT (line 61) | char REVERSE_COMPLEMENT(char c){
  function REVERSE_COMPLEMENT (line 69) | size_t REVERSE_COMPLEMENT(size_t b){
  function string (line 79) | string print(size_t b){
  function string (line 87) | string print(size_t b1, size_t b2){
  function string (line 91) | string print(size_t b1, char c, size_t b2){
  class KmerTable (line 95) | class KmerTable{
    method shift (line 108) | static void shift(size_t &bits, size_t &mask, const unsigned char c){
    method rshift (line 113) | static void rshift(size_t &bits, size_t &mask, const unsigned char c){
    method REVERSE_COMPLEMENT (line 118) | static size_t REVERSE_COMPLEMENT(size_t bits){
    method KmerTable (line 127) | KmerTable(size_t nThreads = 1): table(new uint8_t[LEN]{}), cache(nThre...
    method addChar (line 142) | void addChar(size_t p, uint8_t c) {
    method performAddChar (line 149) | void performAddChar(){
    method performAddCharThread (line 171) | void performAddCharThread(size_t threadID){
    method add (line 182) | void add(const string &seqs, const string &seqn, bool bothStrands = tr...
    method postprocess (line 199) | void postprocess(){
    method performPostprocess (line 218) | void performPostprocess(size_t threadID, size_t &realcnt) {
    method fillProportion (line 237) | double fillProportion() const{
    method frequentPatterns (line 241) | vector<size_t> frequentPatterns(size_t n) const{
  class KmerConsensus (line 290) | class KmerConsensus {
    type Profile (line 298) | struct Profile {
      method add (line 303) | void add(size_t b1, size_t b2) {
      method output (line 318) | pair<size_t, double> output(size_t p) {
    method KmerConsensus (line 361) | KmerConsensus(const vector<size_t> &sortedPattern, size_t nThreads = 1):
    method profileAdd (line 371) | void profileAdd(size_t pattern, size_t b1, size_t b2){
    method performProfileAdd (line 378) | void performProfileAdd(){
    method performProfileAddThread (line 391) | void performProfileAddThread(size_t threadID){
    method add (line 411) | void add(const string& seqs, const string& seqn, bool bothStrands = tr...
    method postprocess (line 430) | void postprocess() {
    method generateConsensus (line 437) | vector<pair<size_t, double> > generateConsensus(size_t n) {
  class SNP (line 459) | class SNP {
    type SEQ (line 461) | struct SEQ{
      method debuginfo (line 468) | void debuginfo(){
      method SEQ (line 477) | SEQ(){}
      method SEQ (line 479) | SEQ(int n){
      method set (line 489) | void set(int i, char c){
      method string (line 496) | string get(){
      method uniqueCount (line 503) | size_t uniqueCount(){
      method countAT (line 507) | size_t countAT(){
      method countCG (line 515) | size_t countCG(){
    method dist (line 536) | static size_t dist(size_t a, size_t b) {
    method ufroot (line 546) | int ufroot(int node) {
    method ufrootConst (line 551) | int ufrootConst(int node) const{
    method pairup (line 556) | static size_t pairup(size_t b1, size_t b2) {
    method SNP (line 563) | SNP(const vector<pair<size_t, double> > &consensus) {
    method SNP (line 612) | SNP(const string &file){
    method save (line 651) | void save(const string &file){
    method SEQ (line 668) | SEQ initSeq(){
      method debuginfo (line 468) | void debuginfo(){
      method SEQ (line 477) | SEQ(){}
      method SEQ (line 479) | SEQ(int n){
      method set (line 489) | void set(int i, char c){
      method string (line 496) | string get(){
      method uniqueCount (line 503) | size_t uniqueCount(){
      method countAT (line 507) | size_t countAT(){
      method countCG (line 515) | size_t countCG(){
    method add (line 673) | void add(SEQ& seq, const string &seqs, const string &seqn) const{
  type Workflow (line 709) | struct Workflow {
    method addName (line 723) | void addName(const string& name) {
    method buildGeneSeq (line 730) | void buildGeneSeq(TripartitionInitializer::Gene::Initializer &gene, si...
    method formatGene (line 747) | void formatGene(size_t pos, size_t nSite, size_t offset) {
    method countAT (line 754) | static int countAT(const string seq){
    method countCG (line 762) | static int countCG(const string seq){
    method readAlignment (line 770) | void readAlignment(){
    method Workflow (line 820) | Workflow(int argc, char** argv){
    method processingFile (line 859) | static void processingFile(const SNP& snp, SNP::SEQ& snpseq, string fi...
    method init (line 881) | void init(){
  function main (line 1049) | int main(int argc, char** argv){
Copy disabled (too large) Download .json
Condensed preview — 116 files, each showing path, character count, and a content snippet. Download the .json file for the full structured content (15,749K chars).
[
  {
    "path": ".github/workflows/c-cpp-dev.yml",
    "chars": 739,
    "preview": "name: C/C++ CI development branch sancheck\n\non:\n  push:\n    branches: [ \"development\" ]\n\njobs: \n  precheck-and-update-tu"
  },
  {
    "path": ".github/workflows/c-cpp-temp.yml",
    "chars": 3235,
    "preview": "name: C/C++ CI development branch sancheck\n\non:\n  push:\n    branches: [ \"temp\" ]\n\njobs:\n  linux-sancheck:\n\n    runs-on: "
  },
  {
    "path": ".github/workflows/c-cpp.yml",
    "chars": 2540,
    "preview": "name: C/C++ CI\n\non:\n  push:\n    branches: [ \"master\" ]\n  pull_request:\n    branches: [ \"master\" ]\n\njobs:\n  linux-build:\n"
  },
  {
    "path": ".gitignore",
    "chars": 264,
    "preview": "# Prerequisites\n*.d\n\n# Compiled Object files\n*.slo\n*.lo\n*.o\n*.obj\n\n# Precompiled Headers\n*.gch\n*.pch\n\n# Compiled Dynamic"
  },
  {
    "path": ".gitmodules",
    "chars": 99,
    "preview": "[submodule \"standalone/TAPER\"]\n\tpath = standalone/TAPER\n\turl = https://github.com/chaoszhang/TAPER\n"
  },
  {
    "path": "LICENSE",
    "chars": 34523,
    "preview": "                    GNU AFFERO GENERAL PUBLIC LICENSE\n                       Version 3, 19 November 2007\n\n Copyright (C)"
  },
  {
    "path": "README.md",
    "chars": 7422,
    "preview": "# Accurate Species Tree EstimatoR (ASTER❋)\n\n[<img src=\"misc/ASTER.png\" width=\"250\"/>](misc/ASTER.png)\n\nA family of optim"
  },
  {
    "path": "example/caster/fasta_alignments/gene1.fa",
    "chars": 2043,
    "preview": ">Human\nCCGTTTTCAGGTAAGACCCGTCGGATTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGACAGAGCGGAC"
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    "path": "example/caster/fasta_alignments/gene2.fa",
    "chars": 2043,
    "preview": ">Human\nGATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGAGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGGCCGGG"
  },
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    "path": "example/caster/fasta_alignments/gene3.fa",
    "chars": 2043,
    "preview": ">Human\nCGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACACTAGATTTACGCATGTTCAGAGCTAAGAAAACATGAGCGAGATGGTGGCGTGTAACTCCAC"
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    "path": "example/caster/fasta_alignments/gene4.fa",
    "chars": 2043,
    "preview": ">Human\nGCGACGCTCTAAGACCTGTTCAGTGTCTAGACCCGAGTGGAGTAGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACCAAGAG"
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    "path": "example/caster/fasta_alignments/gene5.fa",
    "chars": 2043,
    "preview": ">Human\nCTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCAAGCACCCTCCGGATCGCGAGCTAGAGCGTCCATC"
  },
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    "path": "example/caster/phylip_alignments/gene1.phy",
    "chars": 2045,
    "preview": "4 500\nHuman CCGTTTTCAGGTAAGACCCGTCGGATTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGACAGAG"
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    "path": "example/caster/phylip_alignments/gene2.phy",
    "chars": 2045,
    "preview": "4 500\nHuman GATTCAACACACTCTAAGCCGCGGCACTCAATTCTCGGAAGAAGCAGGCCCTTGATATCACCAACGAGTTTGCTATATTCGTGCATGCCCGGAGATAGGCGCCAGTGG"
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    "path": "example/caster/phylip_alignments/gene3.phy",
    "chars": 2045,
    "preview": "4 500\nHuman CGGACGCGAGGCGGACCTCAACATTTCTCTAAGGCTTCCCACTAAATTAACACTAGATTTACGCATGTTCAGAGCTAAGAAAACATGAGCGAGATGGTGGCGTGTAAC"
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    "path": "example/caster/phylip_alignments/gene4.phy",
    "chars": 2045,
    "preview": "4 500\nHuman GCGACGCTCTAAGACCTGTTCAGTGTCTAGACCCGAGTGGAGTAGCTGCTTTGATTCTCCGGGTAACTGTCTATCCACCGGGTACCGTGCGAACTAATAGCTACTACC"
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    "path": "example/caster/phylip_alignments/gene5.phy",
    "chars": 2045,
    "preview": "4 500\nHuman CTTCATTGCCGTCGGCGCAATCCTTCGCACACCAAGGGTATTATAGCCATGTTCGCCGCTTTTGCCCTAGACTACTGCAAGCACCCTCCGGATCGCGAGCTAGAGCGT"
  },
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    "path": "example/caster-sliding-window/ape.fa",
    "chars": 3000060,
    "preview": ">Human\nATGGTTGGGTACGTCCTTCGAAGGGGATCATGGTCATACAAGTTGGCATGGTTACGCCCGGCAACGTTTTCATGAGATCGCCGATGTATATAACTTGCGGATAACAATCGCAT"
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    "path": "example/caster-sliding-window/mapping.tsv",
    "chars": 80,
    "preview": "Human\tA\r\nChimpanzee\tB\r\nBonobo\tB\r\nGorilla\tC\r\nOrangutan\tOutgroup\r\nMouse\tOutgroup\r\n"
  },
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    "path": "example/caster-sliding-window/slidingwindow.tsv",
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    "path": "example/genetree-contracted.nw",
    "chars": 3992442,
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    "path": "example/sancheck/Scoring/astral-pro.tsv",
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    "path": "example/sancheck/Scoring/sancheck.bat",
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    "preview": "exe\\astral-hybrid.exe -t 2 -a example\\genetree.map example\\genetree.nw"
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    "path": "example/waster/filename2.fa",
    "chars": 632,
    "preview": ">Contig1     \nACACATCAAAGTTCTACGTGTAGACTTCCCAGTTCATGTAAGATTTCAATCAAATCCTTA\nCTTATTAGAACGAATTTTGGATTGGCTACAGACTTTACATTGAAA"
  },
  {
    "path": "example/waster/filename3.fq",
    "chars": 1280,
    "preview": "@read1\nACACATCAAAGTTTTACCTGCAGACTTCCCAGTTCATGTAAGATTTCAATCCAGTCCTTGCTTATTAGAACGAATTTTGGATTGGCTACAGACTTTACATTGAAAGTCCACCC"
  },
  {
    "path": "example/waster/filename4.fq",
    "chars": 1255,
    "preview": "@read1\nACACATCAAAGTTTTACGTGCAGACTTCCCAGTTCATGTAAAATTTCAATCCAGTCCTTGCTTATTAGAACGAATTTTGGATTGGCTACAGACTTTACATTGAAAGTCTATCC"
  },
  {
    "path": "example/waster/input_list.txt",
    "chars": 148,
    "preview": "speciesA\texample/waster/filename1.fa\nspeciesB\texample/waster/filename2.fa\nspeciesC\texample/waster/filename3.fq\nspeciesD\t"
  },
  {
    "path": "example/waster-walkthrough/Chimpanzee.fa",
    "chars": 2545,
    "preview": ">Chr1\r\nCCGTTTTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAGCGGAC"
  },
  {
    "path": "example/waster-walkthrough/Gorilla.fa",
    "chars": 2570,
    "preview": ">Scaffold1\r\nCCGTATTCAGGTAAGACCCGTCGGGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACAGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGATAGAG"
  },
  {
    "path": "example/waster-walkthrough/Human.fq",
    "chars": 5231,
    "preview": "@Read1\r\nCCGTTTTCAGGTAAGACCCGTCGGATTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATATCAGATTATTCGGGGAGACTCCAAATTGCTGCCTTGACAGAGCGGA"
  },
  {
    "path": "example/waster-walkthrough/Orangutan.fa",
    "chars": 2560,
    "preview": ">Contig1\r\nCCGTTTTCAGGTAAGACCCGTCGCGTTTCCTATAGTGCGCTCTAGAAAGGGGCATTACTGCGAATAGCAGATTATACGGGGAGACTACAAATTGCTGCCTTGATAGAGCG"
  },
  {
    "path": "example/waster-walkthrough/input.tsv",
    "chars": 86,
    "preview": "Human\tHuman.fq\r\nChimpanzee\tChimpanzee.fa\r\nGorilla\tGorilla.fa\r\nOrangutan\tOrangutan.fa\r\n"
  },
  {
    "path": "make.bat",
    "chars": 1997,
    "preview": "mkdir exe\r\ng++ -std=gnu++11 -O2 -pthread -static -static-libgcc -static-libstdc++ src/astral.cpp -o exe/astral4.exe\r\ncop"
  },
  {
    "path": "makefile",
    "chars": 3733,
    "preview": "all: dir astral astral-pro wastral caster-site caster-site_branchlength caster-pair waster waster_branchlength dstar dst"
  },
  {
    "path": "misc/caster-linux-walkthrough.md",
    "chars": 4215,
    "preview": "# CASTER Linux walkthrough (Linux版CASTER演示)\n\n[<img src=\"CASTER.png\" width=\"500\"/>](CASTER.png)\n\n# INSTALLATION (安装)\n\nYou"
  },
  {
    "path": "misc/caster-sliding-window-walkthrough.md",
    "chars": 1682,
    "preview": "# CASTER sliding window Linux walkthrough\r\n\r\n[<img src=\"CASTER.png\" width=\"500\"/>](CASTER.png)\r\n\r\n# Installation\r\n\r\n```\r"
  },
  {
    "path": "misc/waster-linux-walkthrough.md",
    "chars": 1969,
    "preview": "# WASTER Linux walkthrough (Linux版WASTER演示)\n\n[<img src=\"WASTER.png\" width=\"500\"/>](WASTER.png)\n\n# INSTALLATION (安装)\n\nYou"
  },
  {
    "path": "src/.vscode/c_cpp_properties.json",
    "chars": 344,
    "preview": "{\n  \"configurations\": [\n    {\n      \"name\": \"linux-gcc-x64\",\n      \"includePath\": [\n        \"${workspaceFolder}/**\"\n    "
  },
  {
    "path": "src/.vscode/launch.json",
    "chars": 1336,
    "preview": "{\n  \"version\": \"0.2.0\",\n  \"configurations\": [\n    {\n      \"name\": \"C/C++: g++ build active file\",\n      \"type\": \"cppdbg\""
  },
  {
    "path": "src/.vscode/settings.json",
    "chars": 1291,
    "preview": "{\n  \"files.associations\": {\n    \"iosfwd\": \"cpp\",\n    \"iostream\": \"cpp\",\n    \"ostream\": \"cpp\",\n    \"array\": \"cpp\",\n    \"s"
  },
  {
    "path": "src/.vscode/tasks.json",
    "chars": 455,
    "preview": "{\n    \"version\": \"2.0.0\",\n    \"tasks\": [\n      {\n        \"type\": \"shell\",\n        \"label\": \"C/C++: g++ build active file"
  },
  {
    "path": "src/algorithms.hpp",
    "chars": 60308,
    "preview": "#define ALG_VERSION \"v1.25\"\r\n\r\n/* CHANGE LOG\r\n * 1.25: numerical bug fixed for LPP support\r\n * 1.24: adding support for "
  },
  {
    "path": "src/argparser.hpp",
    "chars": 6103,
    "preview": "#ifndef ARG_PARSER\n#define ARG_PARSER\n\n#include<string>\n#include<unordered_set>\n#include<unordered_map>\n#include<functio"
  },
  {
    "path": "src/aster-gui.py",
    "chars": 12869,
    "preview": "# -*- coding: utf-8 -*-\r\n\r\n# Form implementation generated from reading ui file 'ASTER.ui'\r\n#\r\n# Created by: PyQt5 UI co"
  },
  {
    "path": "src/astral-hybrid.cpp",
    "chars": 9598,
    "preview": "#define DRIVER_VERSION \"8\"\r\n\r\n/* CHANGE LOG\r\n * 8: bug fix for huge input\r\n * 7: bug fix\r\n * 6: auto-detect support type"
  },
  {
    "path": "src/astral-pro.cpp",
    "chars": 19836,
    "preview": "#define DRIVER_VERSION \"8\"\r\n\r\n/* CHANGE LOG\r\n * 8: bug fix for huge input\r\n * 7: Adding support for genic branch length\r"
  },
  {
    "path": "src/astral.cpp",
    "chars": 8403,
    "preview": "#define DRIVER_VERSION \"8\"\r\n\r\n/* CHANGE LOG\r\n * 8: bug fix for huge input\r\n * 7: Adding support for genic branch length\r"
  },
  {
    "path": "src/biallelic-cuda.cu",
    "chars": 8038,
    "preview": "#include \"biallelic-cuda.cuh\"\r\n#include <cuda_runtime_api.h>\r\n#include <cuda.h>\r\n\r\n__constant__ short TAPE[MAX_TAPE_SIZE"
  },
  {
    "path": "src/biallelic-cuda.cuh",
    "chars": 1089,
    "preview": "#include<stdlib.h>\n\n#define BATCH 32\n#define BATCH_TYPE unsigned\n#define MAX_TAPE_SIZE 4096\n\n#define THREAD_POOL\n#ifdef "
  },
  {
    "path": "src/biallelic-cuda.hpp",
    "chars": 5164,
    "preview": "#define OBJECTIVE_VERSION \"0\"\r\n\r\n#include<iostream>\r\n#include<vector>\r\n#include<array>\r\n#include<algorithm>\r\n#include<bi"
  },
  {
    "path": "src/caster-pair.cpp",
    "chars": 9991,
    "preview": "#define DRIVER_VERSION \"6\"\r\n\r\n/* CHANGE LOG\r\n * 6: Bug fix\r\n * 5: Final score normalization & Switching default objectiv"
  },
  {
    "path": "src/caster-site.cpp",
    "chars": 7783,
    "preview": "#define DRIVER_VERSION \"6\"\n\n/* CHANGE LOG\n * 6: Fix corner case bug\n * 5: Final score normalization & Updating Eqfreq\n *"
  },
  {
    "path": "src/castles.hpp",
    "chars": 4190,
    "preview": "#include<cmath>\n\nstruct CastlesNode{\n    static length_t safe_div(length_t n, length_t d){\n        if (d == 0) return 0."
  },
  {
    "path": "src/codonSplit.py",
    "chars": 1518,
    "preview": "import sys\r\n\r\ndef split_codon_positions(input_fasta):\r\n    with open(input_fasta, 'r') as infile, \\\r\n         open(input"
  },
  {
    "path": "src/debug.cpp",
    "chars": 1826,
    "preview": "#include \"treeutils.hpp\"\n\nint main(){\n    string s = \"((((((((((((((((((TAEGU:0.042517,GEOFO:0.036656)1.000000:0.066334,"
  },
  {
    "path": "src/dstar-branch-merge-diag.cpp",
    "chars": 4617,
    "preview": "#define DRIVER_VERSION \"0\"\r\n\r\n#include<iostream>\r\n#include<fstream>\r\n#include<sstream>\r\n#include<unordered_map>\r\n#includ"
  },
  {
    "path": "src/dstar-branch.cpp",
    "chars": 25921,
    "preview": "#define DRIVER_VERSION \"1\"\r\n\r\n#include<iostream>\r\n#include<fstream>\r\n#include<sstream>\r\n#include<unordered_map>\r\n#includ"
  },
  {
    "path": "src/dstar.cpp",
    "chars": 11451,
    "preview": "#define DRIVER_VERSION \"1\"\r\n\r\n#include<iostream>\r\n#include<fstream>\r\n#include<sstream>\r\n#include<unordered_map>\r\n#includ"
  },
  {
    "path": "src/genetreewithbinaryweight.hpp",
    "chars": 17126,
    "preview": "#define OBJECTIVE_VERSION \"4\"\r\n\r\n/* CHANGE LOG\r\n * 4. adding support for CASTLES\r\n * 3. code refactoring\r\n * 2. add cust"
  },
  {
    "path": "src/genetreewithhybridweight.hpp",
    "chars": 10491,
    "preview": "#define OBJECTIVE_VERSION \"3\"\r\n\r\n/* CHANGE LOG\r\n * 3: add weighting by tree\r\n */\r\n\r\n#include<vector>\r\n#include<array>\r\n#"
  },
  {
    "path": "src/incbeta.c",
    "chars": 2478,
    "preview": "/*\n * zlib License\n *\n * Regularized Incomplete Beta Function\n *\n * Copyright (c) 2016, 2017 Lewis Van Winkle\n * http://"
  },
  {
    "path": "src/landmark.hpp",
    "chars": 2779,
    "preview": "#define OBJECTIVE_VERSION \"0\"\n\n#include<vector>\n#include<cmath>\n#include \"threadpool.hpp\"\n\nusing namespace std;\n\nstruct "
  },
  {
    "path": "src/merge-pairend.cpp",
    "chars": 5254,
    "preview": "#define DRIVER_VERSION \"0\"\n\n#include<iostream>\n#include<fstream>\n#include<cstdio>\n#include<cmath>\n#include<cstdlib>\n#inc"
  },
  {
    "path": "src/monster.cpp",
    "chars": 3166,
    "preview": "#define DRIVER_VERSION \"0\"\n\n#include<iostream>\n#include<fstream>\n#include<sstream>\n#include<unordered_map>\n#include<unor"
  },
  {
    "path": "src/multitree.hpp",
    "chars": 21335,
    "preview": "#define OBJECTIVE_VERSION \"3\"\r\n\r\n/* CHANGE LOG\r\n * 3. add CASTLES-Pro branch length calculations\r\n * 2. add customized a"
  },
  {
    "path": "src/numerical.hpp",
    "chars": 4660,
    "preview": "#define OBJECTIVE_VERSION \"0\"\n\n#include<vector>\n#include<array>\n#include<cmath>\n#include \"threadpool.hpp\"\n\n#define CUSTO"
  },
  {
    "path": "src/runIqtreeRate.py",
    "chars": 834,
    "preview": "#!/usr/bin/env python3\r\n\r\n# ARGS: 1. phylip concat 2. species tree topology 3. output rates 4. output trees\r\n\r\nimport sy"
  },
  {
    "path": "src/sequence-pair.hpp",
    "chars": 16531,
    "preview": "#define OBJECTIVE_VERSION \"0\"\r\n\r\n#include<vector>\r\n#include<array>\r\n#include<thread>\r\n#include<future>\r\n#include<bitset>"
  },
  {
    "path": "src/sequence.hpp",
    "chars": 22147,
    "preview": "#define OBJECTIVE_VERSION \"2\"\r\n\r\n/* CHANGE LOG\r\n * 2: bug fix for branch length\r\n * 1: add branch length & bug fixed\r\n *"
  },
  {
    "path": "src/sequencenontrivialpi.hpp",
    "chars": 4893,
    "preview": "#include<vector>\r\n#include<array>\r\n#include<thread>\r\n\r\nusing namespace std;\r\n\r\ninline score_t scorePos(const array<array"
  },
  {
    "path": "src/sequtils.hpp",
    "chars": 23689,
    "preview": "#ifndef SEQ_UTILS\n#define SEQ_UTILS\n\n#include<queue>\n#include<tuple>\n#include<algorithm>\n#include<random>\n#include<strin"
  },
  {
    "path": "src/sister.cpp",
    "chars": 2573,
    "preview": "#define DRIVER_VERSION \"0\"\n\n#include<iostream>\n#include<fstream>\n#include<sstream>\n#include<unordered_map>\n#include<unor"
  },
  {
    "path": "src/speciestree.hpp",
    "chars": 3685,
    "preview": "#include<map>\r\n#include<string>\r\n#include<memory>\r\n#include<sstream>\r\n\r\nstruct SpeciesTree {\r\n\tstruct Node {\r\n\t\tshared_p"
  },
  {
    "path": "src/threadpool.hpp",
    "chars": 2723,
    "preview": "#ifndef THREAD_POOL\r\n#define THREAD_POOL\r\n\r\n#include<thread>\r\n#include<queue>\r\n#include<vector>\r\n#include<future>\r\n#incl"
  },
  {
    "path": "src/treeutils.hpp",
    "chars": 11865,
    "preview": "#ifndef TREE_UTILS\n#define TREE_UTILS\n\n#include<queue>\n#include<tuple>\n#include<algorithm>\n#include<random>\n#include<str"
  },
  {
    "path": "src/tutorial.hpp",
    "chars": 36782,
    "preview": "#ifndef TUTORIAL\n#define TUTORIAL\n\n#include<regex>\n#include<fstream>\n\nclass MDGenerator{\nconst string APRO_UNIQUE_INTRO "
  },
  {
    "path": "src/waster-old.cpp",
    "chars": 19388,
    "preview": "#define DRIVER_VERSION \"2\"\n\n/* CHANGE LOG\n * 2: Final score normalization\n * 1: Remove non-effective sites\n */\n\n#include"
  },
  {
    "path": "src/waster.cpp",
    "chars": 36584,
    "preview": "#define DRIVER_VERSION \"5\"\n\n/* CHANGE LOG\n * 5: Early termination for high coverage read files\n * 4: Parallelization\n * "
  },
  {
    "path": "tutorial/astral-pro3.md",
    "chars": 11727,
    "preview": "# Accurate Species Tree ALgorithm for PaRalogs and Orthologs (ASTRAL-Pro3)\nASTRAL-Pro stands for ASTRAL for PaRalogs and"
  },
  {
    "path": "tutorial/astral4.md",
    "chars": 11202,
    "preview": "# Accurate Species Tree ALgorithm (ASTRAL-IV)\nASTRAL is a tool for estimating an unrooted species tree given a set of un"
  },
  {
    "path": "tutorial/caster-site.md",
    "chars": 13497,
    "preview": "# Coalescence-aware Alignment-based Species Tree EstimatoR (CASTER)\n\n[<img src=\"../misc/CASTER.png\" width=\"500\"/>](../mi"
  },
  {
    "path": "tutorial/waster.md",
    "chars": 9827,
    "preview": "# Without-Alignment/Assembly Species Tree EstimatoR † (WASTER)\n\n[<img src=\"../misc/WASTER.png\" width=\"500\"/>](../misc/WA"
  },
  {
    "path": "tutorial/wastral.md",
    "chars": 12880,
    "preview": "# Weighted ASTRAL (wASTRAL)\nWeighted ASTRAL program has the following modes for different weighting schemes:\n1. Weighted"
  }
]

// ... and 2 more files (download for full content)

About this extraction

This page contains the full source code of the chaoszhang/ASTER GitHub repository, extracted and formatted as plain text for AI agents and large language models (LLMs). The extraction includes 116 files (15.0 MB), approximately 3.9M tokens, and a symbol index with 809 extracted functions, classes, methods, constants, and types. Use this with OpenClaw, Claude, ChatGPT, Cursor, Windsurf, or any other AI tool that accepts text input. You can copy the full output to your clipboard or download it as a .txt file.

Extracted by GitExtract — free GitHub repo to text converter for AI. Built by Nikandr Surkov.

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