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# Отчет по лабораторной работе №7
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## Задачи
Написать небольшое эссе (буквально несколько абзацев) своими словами. А помогут Вам в этом вопросы из списка:
1. Какие алгоритмы и методы используются для балансировки нагрузки?
2. Какие открытые технологии существуют для балансировки нагрузки?
3. Как осуществляется балансировка нагрузки на базах данных?
4. Реверс-прокси как один из элементов балансировки нагрузки.
## Эссе
Балансировка нагрузки это важный процесс в сфере информационных технологий, который позволяет равномерно распределять нагрузку между компьютерами, серверами или другими ресурсами для обеспечения оптимальной производительности системы. В данном эссе я рассмотрю несколько вопросов, связанных с алгоритмами и методами балансировки нагрузки, открытыми технологиями, а также балансировкой нагрузки на базах данных и использованием реверс-прокси.
Первый вопрос касается алгоритмов и методов, используемых для балансировки нагрузки. Существует несколько подходов, таких как раунд-робин, весовая нагрузка, наименьшее количество соединений и IP хэширование. Раунд-робин распределяет запросы по всем доступным серверам одинаковым образом. Весовая нагрузка позволяет приоритезировать определенные серверы и передавать им больше запросов. Наименьшее количество соединений выбирает сервер с наименьшим количеством активных соединений. IP хэширование использует IP-адрес клиента для определения сервера, который будет обрабатывать его запросы.
Второй вопрос касается открытых технологий для балансировки нагрузки. Среди них можно выделить HAProxy, NGINX, Apache HTTP Server и AWS Elastic Load Balancer. HAProxy является высокопроизводительным реверс-прокси, который поддерживает различные алгоритмы балансировки нагрузки. NGINX также является реверс-прокси и обладает возможностями балансировки нагрузки. Apache HTTP Server предоставляет модуль mod_proxy_balancer для балансировки нагрузки. AWS Elastic Load Balancer предоставляет гибкую и масштабируемую балансировку нагрузки в облачной среде.
Третий вопрос касается балансировки нагрузки на базах данных. Для балансировки нагрузки на базах данных используются различные методы, такие как горизонтальное шардирование, репликация и кэширование. Горизонтальное шардирование разделяет данные на несколько фрагментов и распределяет их по разным серверам. Репликация создает копии базы данных на разных серверах для обработки запросов. Кэширование позволяет хранить результаты часто используемых запросов для улучшения производительности.
Реверс-прокси является важным элементом балансировки нагрузки. Он работает на стороне сервера и перенаправляет запросы с клиента на разные серверы в зависимости от текущей нагрузки. Реверс-прокси предоставляет централизованную точку контроля над серверами, обеспечивает отказоустойчивость и улучшает производительность системы.

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# Отчет по лабораторной работе №3
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## REST API, Gateway и синхронный обмен между микросервисами
## Создание микросервисов
1. С помощью команды `dotnet new web -n worker-2` в терминале создал первый микросервис.
2. Добавил решение командой `dotnet new sln`
3. Связал решение и проект командой `dotnet sln worker-2.sln add worker-2.csproj`
4. Повторил действие для второго микросервиса
5. Добавил библиотеку Swagger и OpenAi в проекты и запустил с помощью команды `dotnet run`
Скриншоты протестированных микросервисов:
![](pic/1.png)
![](pic/2.png)
![](pic/4.png)
## Реализация синхронного обмена
Реализовал код, который вызывает сихронно данные из соседнего микросервиса.
```cs
//worker-2
app.MapGet("/Locations/", async () =>
{
var httpClient = new HttpClient();
var secondWorkerResponse = await httpClient.GetStringAsync("http://worker-1:8080/");
return secondWorkerResponse.ToArray();
})
.WithName("GetBreeds")
.WithOpenApi();
## Реализация gateway при помощи nginx
Добавил nginx.conf:
```conf
server {
listen 8080;
listen [::]:8080;
server_name localhost;
location / {
root /usr/share/nginx/html;
index index.html index.htm;
}
location /worker-1/ {
proxy_pass http://worker-1:8080/;
proxy_set_header Host $host;
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-Proto $scheme;
proxy_set_header X-Forwarded-Prefix /worker-1;
}
location /worker-2/ {
proxy_pass http://worker-2:8080/;
proxy_set_header Host $host;
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-Proto $scheme;
proxy_set_header X-Forwarded-Prefix /worker-2;
}
}
```
Результат, после выполнения команды `docker-compose up`:
Docker:
![](pic/3.png)
![](pic/5.png)

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version: "3.1"
services:
worker-1:
build: ./worker-1
worker-2:
build: ./worker-2
depends_on:
- worker-1
gateway:
image: nginx:latest
ports:
- 8080:8080
volumes:
- ./static:/usr/share/nginx/html:ro
- ./nginx.conf:/etc/nginx/conf.d/default.conf:ro

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server {
listen 8080;
listen [::]:8080;
server_name localhost;
location / {
root /usr/share/nginx/html;
index index.html index.htm;
}
location /worker-1/ {
proxy_pass http://worker-1:8080/;
proxy_set_header Host $host;
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-Proto $scheme;
proxy_set_header X-Forwarded-Prefix /worker-1;
}
location /worker-2/ {
proxy_pass http://worker-2:8080/;
proxy_set_header Host $host;
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-Proto $scheme;
proxy_set_header X-Forwarded-Prefix /worker-2;
}
}

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<!DOCTYPE html>
<html lang="ru">
<head>
<meta charset="UTF-8">
<meta name="viewport" content="width=device-width, initial-scale=1.0">
<title>Тестовое приложение для л/р 3</title>
</head>
<body>
<p>Дунаев О.И. ИСЭбд-41.</p>
<p><a href="/worker-1/">Отправить запрос к worker-1</a></p>
<p><a href="/worker-2/">Отправить запрос к worker-2</a></p>
</body>
</html>

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FROM mcr.microsoft.com/dotnet/sdk:7.0 AS build-env
WORKDIR /app
COPY . ./
RUN dotnet restore
RUN dotnet publish -c Release -o out
FROM mcr.microsoft.com/dotnet/aspnet:7.0
WORKDIR /app
COPY --from=build-env /app/out .
ENTRYPOINT ["dotnet", "worker-1.dll"]

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List<Pets> pets = new()
{
new Pets() { Uuid= Guid.Parse("6a1b4a72-5669-41fe-8d5b-106dc86f58bd"), Animals = "Кот", Breed = "Бигль"},
new Pets() { Uuid= Guid.Parse("464bbdb8-39c0-4644-b9c0-3df1c484ea7e"), Animals = "Собака", Breed = "Мейн-Кун"},
new Pets() { Uuid= Guid.Parse("f8692bea-b7e6-4164-b564-a921f16c35c9"), Animals = "Хомяк", Breed = "Лемминг"},
};
var builder = WebApplication.CreateBuilder(args);
builder.Services.AddEndpointsApiExplorer();
builder.Services.AddSwaggerGen();
var app = builder.Build();
if (app.Environment.IsDevelopment())
{
app.UseSwagger();
app.UseSwaggerUI();
}
app.UseHttpsRedirection();
app.MapGet("/", () =>
{
return pets.Select(r => new PetEntityDto()
{
Uuid = r.Uuid,
Animals = r.Animals,
Breed = r.Breed,
});
})
.WithName("GetPets")
.WithOpenApi();
app.MapGet("/{uuid}", (Guid uuid) =>
{
var pet = pets.FirstOrDefault(r => r.Uuid == uuid);
if (pet == null)
return Results.NotFound();
return Results.Json(new PetEntityDto()
{
Uuid = pet.Uuid,
Animals = pet.Animals,
Breed = pet.Breed,
});
})
.WithName("GetPetByGUID")
.WithOpenApi();
app.MapPost("/{animals}/{breed}", (string Animals, string Breed) =>
{
Guid NewGuid = Guid.NewGuid();
pets.Add(new Pets() { Uuid = NewGuid, Animals = (string)Animals, Breed = (string)Breed});
var pet = pets.FirstOrDefault(r => r.Uuid == NewGuid);
if (pet == null)
return Results.NotFound();
return Results.Json(new PetEntityDto()
{
Uuid = pet.Uuid,
Animals = pet.Animals,
Breed = pet.Breed,
});
})
.WithName("PostPet")
.WithOpenApi();
app.MapPatch("/{uuid}/{animals}/{breed}", (Guid uuid, string ?animals, string ?breed) =>
{
var pet = pets.FirstOrDefault(r => r.Uuid == uuid);
if (pet == null)
return Results.NotFound();
if (animals != null) pet.Animals = animals;
if (breed != null) pet.Breed = breed;
return Results.Json(new PetEntityDto()
{
Uuid = pet.Uuid,
Animals = pet.Animals,
Breed = pet.Breed,
});
})
.WithName("UpdatePet")
.WithOpenApi();
app.MapDelete("/{uuid}", (Guid uuid) =>
{
var pet = pets.FirstOrDefault(r => r.Uuid == uuid);
if (pet == null)
return Results.NotFound();
pets.Remove(pet);
return Results.Json(new PetEntityDto()
{
Uuid = pet.Uuid,
Animals = pet.Animals,
Breed = pet.Breed,
});
})
.WithName("DeletePetByGUID")
.WithOpenApi();
app.Run();
public class Pets
{
public Guid Uuid { get; set; }
public string Animals { get; set; } = string.Empty;
public string Breed { get; set; } = string.Empty;
}
public class PetEntityDto : Pets { }

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{
"$schema": "http://json.schemastore.org/launchsettings.json",
"iisSettings": {
"windowsAuthentication": false,
"anonymousAuthentication": true,
"iisExpress": {
"applicationUrl": "http://localhost:51956",
"sslPort": 44303
}
},
"profiles": {
"http": {
"commandName": "Project",
"dotnetRunMessages": true,
"launchBrowser": true,
"applicationUrl": "http://localhost:5197",
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
},
"https": {
"commandName": "Project",
"dotnetRunMessages": true,
"launchBrowser": true,
"applicationUrl": "https://localhost:7027;http://localhost:5197",
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
},
"IIS Express": {
"commandName": "IISExpress",
"launchBrowser": true,
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
}
}
}

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{
"Logging": {
"LogLevel": {
"Default": "Information",
"Microsoft.AspNetCore": "Warning"
}
}
}

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{
"Logging": {
"LogLevel": {
"Default": "Information",
"Microsoft.AspNetCore": "Warning"
}
},
"AllowedHosts": "*"
}

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<Project Sdk="Microsoft.NET.Sdk.Web">
<PropertyGroup>
<TargetFramework>net7.0</TargetFramework>
<Nullable>enable</Nullable>
<ImplicitUsings>enable</ImplicitUsings>
<RootNamespace>worker_1</RootNamespace>
</PropertyGroup>
<ItemGroup>
<PackageReference Include="Microsoft.AspNetCore.OpenApi" Version="7.0.0" />
<PackageReference Include="Swashbuckle.AspNetCore" Version="6.5.0" />
</ItemGroup>
</Project>

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Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio Version 17
VisualStudioVersion = 17.0.31903.59
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "worker-1", "worker-1.csproj", "{90F6C7BD-78E2-47C8-A702-DD47E74D3865}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{90F6C7BD-78E2-47C8-A702-DD47E74D3865}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{90F6C7BD-78E2-47C8-A702-DD47E74D3865}.Debug|Any CPU.Build.0 = Debug|Any CPU
{90F6C7BD-78E2-47C8-A702-DD47E74D3865}.Release|Any CPU.ActiveCfg = Release|Any CPU
{90F6C7BD-78E2-47C8-A702-DD47E74D3865}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
EndGlobal

View File

@ -1,11 +0,0 @@
FROM mcr.microsoft.com/dotnet/sdk:7.0 AS build-env
WORKDIR /app
COPY . ./
RUN dotnet restore
RUN dotnet publish -c Release -o out
FROM mcr.microsoft.com/dotnet/aspnet:7.0
WORKDIR /app
COPY --from=build-env /app/out .
ENTRYPOINT ["dotnet", "worker-2.dll"]

View File

@ -1,139 +0,0 @@
List<Location> locations = new()
{
new Location() { Uuid= Guid.NewGuid(), Habitat = "Америка", IsSingleLocation = true, IdBreed = Guid.Parse("6a1b4a72-5669-41fe-8d5b-106dc86f58bd") },
new Location() { Uuid= Guid.NewGuid(), Habitat = "Россия", IsSingleLocation = false, IdBreed = Guid.Parse("f8692bea-b7e6-4164-b564-a921f16c35c9") },
new Location() { Uuid= Guid.NewGuid(), Habitat = "Китай", IsSingleLocation = false, IdBreed = Guid.Parse("464bbdb8-39c0-4644-b9c0-3df1c484ea7e") },
new Location() { Uuid= Guid.NewGuid(), Habitat = "Хорватия", IsSingleLocation = true, IdBreed = Guid.Parse("464bbdb8-39c0-4644-b9c0-3df1c484ea7e") },
};
var builder = WebApplication.CreateBuilder(args);
builder.Services.AddEndpointsApiExplorer();
builder.Services.AddSwaggerGen();
var app = builder.Build();
if (app.Environment.IsDevelopment())
{
app.UseSwagger();
app.UseSwaggerUI();
}
app.UseHttpsRedirection();
app.MapGet("/", () =>
{
return locations.Select(r => new LocationEntityDto()
{
Uuid = r.Uuid,
Habitat = r.Habitat,
IsSingleLocation = r.IsSingleLocation,
IdBreed = r.IdBreed,
});
})
.WithName("GetLocations")
.WithOpenApi();
app.MapGet("/{uuid}", (Guid uuid) =>
{
var location = locations.FirstOrDefault(r => r.Uuid == uuid);
if (location == null)
return Results.NotFound();
return Results.Json(new LocationEntityDto()
{
Uuid = location.Uuid,
Habitat = location.Habitat,
IsSingleLocation = location.IsSingleLocation,
IdBreed = location.IdBreed,
});
})
.WithName("GetLocationByGUID")
.WithOpenApi();
app.MapPost("/{habitat}/{isSingleLocation}/{idBreed}", (string? Habitat, bool IsSingleLocation, Guid IdBreed) =>
{
Guid NewGuid = Guid.NewGuid();
locations.Add(new Location() { Uuid = NewGuid, Habitat = (string)Habitat, IsSingleLocation = (bool)IsSingleLocation, IdBreed = (Guid)IdBreed });
var location = locations.FirstOrDefault(r => r.Uuid == NewGuid);
if (location == null)
return Results.NotFound();
return Results.Json(new LocationEntityDto()
{
Uuid = location.Uuid,
Habitat = location.Habitat,
IsSingleLocation = location.IsSingleLocation,
IdBreed = location.IdBreed,
});
})
.WithName("PostLocation")
.WithOpenApi();
app.MapPatch("/{uuid}/{habitat}/{isSingleLocation}/{idBreed}", (Guid uuid, string ?habitat, bool isSingleLocation, Guid idBreed) =>
{
var location = locations.FirstOrDefault(r => r.Uuid == uuid);
if (location == null)
return Results.NotFound();
if (habitat != ",") location.Habitat = habitat;
if (isSingleLocation != location.IsSingleLocation) location.IsSingleLocation = isSingleLocation;
if (idBreed != location.IdBreed) location.IdBreed = idBreed;
return Results.Json(new LocationEntityDto()
{
Uuid = location.Uuid,
Habitat = location.Habitat,
IsSingleLocation = location.IsSingleLocation,
IdBreed = location.IdBreed,
});
})
.WithName("UpdateLocation")
.WithOpenApi();
app.MapDelete("/{uuid}", (Guid uuid) =>
{
var location = locations.FirstOrDefault(r => r.Uuid == uuid);
if (location == null)
return Results.NotFound();
locations.Remove(location);
return Results.Json(new LocationEntityDto()
{
Uuid = location.Uuid,
Habitat = location.Habitat,
IsSingleLocation = location.IsSingleLocation,
IdBreed = location.IdBreed,
});
})
.WithName("DeleteLocation")
.WithOpenApi();
app.MapGet("/Locations/", async () =>
{
var httpClient = new HttpClient();
var secondWorkerResponse = await httpClient.GetStringAsync("http://worker-1:8080/");
return secondWorkerResponse.ToArray();
})
.WithName("GetBreeds")
.WithOpenApi();
app.Run();
public class Location
{
public Guid Uuid { get; set; }
public string Habitat { get; set; } = string.Empty;
public bool IsSingleLocation { get; set; }
public Guid IdBreed { get; set; }
}
public class LocationEntityDto : Location { }
public class Breeds
{
public Guid Uuid { get; set; }
public string Animals { get; set; } = string.Empty;
public string Breed { get; set; } = string.Empty;
}
public class BreedEntityDto : Breeds { }

View File

@ -1,38 +0,0 @@
{
"$schema": "http://json.schemastore.org/launchsettings.json",
"iisSettings": {
"windowsAuthentication": false,
"anonymousAuthentication": true,
"iisExpress": {
"applicationUrl": "http://localhost:36404",
"sslPort": 44384
}
},
"profiles": {
"http": {
"commandName": "Project",
"dotnetRunMessages": true,
"launchBrowser": true,
"applicationUrl": "http://localhost:5101",
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
},
"https": {
"commandName": "Project",
"dotnetRunMessages": true,
"launchBrowser": true,
"applicationUrl": "https://localhost:7125;http://localhost:5101",
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
},
"IIS Express": {
"commandName": "IISExpress",
"launchBrowser": true,
"environmentVariables": {
"ASPNETCORE_ENVIRONMENT": "Development"
}
}
}
}

View File

@ -1,8 +0,0 @@
{
"Logging": {
"LogLevel": {
"Default": "Information",
"Microsoft.AspNetCore": "Warning"
}
}
}

View File

@ -1,9 +0,0 @@
{
"Logging": {
"LogLevel": {
"Default": "Information",
"Microsoft.AspNetCore": "Warning"
}
},
"AllowedHosts": "*"
}

View File

@ -1,15 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk.Web">
<PropertyGroup>
<TargetFramework>net7.0</TargetFramework>
<Nullable>enable</Nullable>
<ImplicitUsings>enable</ImplicitUsings>
<RootNamespace>worker_2</RootNamespace>
</PropertyGroup>
<ItemGroup>
<PackageReference Include="Microsoft.AspNetCore.OpenApi" Version="7.0.0" />
<PackageReference Include="Swashbuckle.AspNetCore" Version="6.5.0" />
</ItemGroup>
</Project>

View File

@ -1,22 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio Version 17
VisualStudioVersion = 17.0.31903.59
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "worker-2", "worker-2.csproj", "{C9D63524-2C63-4E86-91B6-D86955CFA5F8}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{C9D63524-2C63-4E86-91B6-D86955CFA5F8}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{C9D63524-2C63-4E86-91B6-D86955CFA5F8}.Debug|Any CPU.Build.0 = Debug|Any CPU
{C9D63524-2C63-4E86-91B6-D86955CFA5F8}.Release|Any CPU.ActiveCfg = Release|Any CPU
{C9D63524-2C63-4E86-91B6-D86955CFA5F8}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
EndGlobal

View File

@ -1,3 +0,0 @@
# Default ignored files
/shelf/
/workspace.xml

View File

@ -1 +0,0 @@
receive.py

View File

@ -1,6 +0,0 @@
<component name="InspectionProjectProfileManager">
<settings>
<option name="USE_PROJECT_PROFILE" value="false" />
<version value="1.0" />
</settings>
</component>

View File

@ -1,7 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="Black">
<option name="sdkName" value="Python 3.12 (python4Lab)" />
</component>
<component name="ProjectRootManager" version="2" project-jdk-name="Python 3.9 (lab_4)" project-jdk-type="Python SDK" />
</project>

View File

@ -1,8 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="ProjectModuleManager">
<modules>
<module fileurl="file://$PROJECT_DIR$/.idea/python4Lab.iml" filepath="$PROJECT_DIR$/.idea/python4Lab.iml" />
</modules>
</component>
</project>

View File

@ -1,10 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<module type="PYTHON_MODULE" version="4">
<component name="NewModuleRootManager">
<content url="file://$MODULE_DIR$">
<excludeFolder url="file://$MODULE_DIR$/venv" />
</content>
<orderEntry type="jdk" jdkName="Python 3.9 (lab_4)" jdkType="Python SDK" />
<orderEntry type="sourceFolder" forTests="false" />
</component>
</module>

View File

@ -1,6 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="VcsDirectoryMappings">
<mapping directory="$PROJECT_DIR$/../../.." vcs="Git" />
</component>
</project>

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@ -1,20 +0,0 @@
import pika
import time
def process_message(ch, method, properties, body):
print(f"Получено сообщение: {body}")
time.sleep(3)
print("Сообщение успешно обработано")
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
result = channel.queue_declare(queue='', exclusive=True)
queue_name = result.method.queue
channel.queue_bind(exchange='Agreements', queue=queue_name)
channel.basic_consume(queue=queue_name, on_message_callback=process_message, auto_ack=True)
print('Ожидание сообщений...')
channel.start_consuming()

View File

@ -1,19 +0,0 @@
import pika
def process_message(ch, method, properties, body):
print(f"Получено сообщение: {body}")
print("Сообщение успешно обработано")
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
result = channel.queue_declare(queue='', exclusive=True)
queue_name = result.method.queue
channel.queue_bind(exchange='Agreements', queue=queue_name)
channel.basic_consume(queue=queue_name, on_message_callback=process_message, auto_ack=True)
print('Ожидание сообщений...')
channel.start_consuming()

View File

@ -1,19 +0,0 @@
import pika
import time
import random
collection = ["Application for Travel Agency", "Buying tickets", "Execution of the agreement", "Check-into a hotel"]
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
channel.exchange_declare(exchange='Agreements', exchange_type='fanout')
while True:
message = f"Message: {random.choice(collection)}"
channel.basic_publish(exchange='Agreements', routing_key='', body=message)
time.sleep(1)
connection.close()

View File

@ -1,160 +0,0 @@
# Byte-compiled / optimized / DLL files
__pycache__/
*.py[cod]
*$py.class
# C extensions
*.so
# Distribution / packaging
.Python
build/
develop-eggs/
dist/
downloads/
eggs/
.eggs/
lib/
lib64/
parts/
sdist/
var/
wheels/
share/python-wheels/
*.egg-info/
.installed.cfg
*.egg
MANIFEST
# PyInstaller
# Usually these files are written by a python script from a template
# before PyInstaller builds the exe, so as to inject date/other infos into it.
*.manifest
*.spec
# Installer logs
pip-log.txt
pip-delete-this-directory.txt
# Unit test / coverage reports
htmlcov/
.tox/
.nox/
.coverage
.coverage.*
.cache
nosetests.xml
coverage.xml
*.cover
*.py,cover
.hypothesis/
.pytest_cache/
cover/
# Translations
*.mo
*.pot
# Django stuff:
*.log
local_settings.py
db.sqlite3
db.sqlite3-journal
# Flask stuff:
instance/
.webassets-cache
# Scrapy stuff:
.scrapy
# Sphinx documentation
docs/_build/
# PyBuilder
.pybuilder/
target/
# Jupyter Notebook
.ipynb_checkpoints
# IPython
profile_default/
ipython_config.py
# pyenv
# For a library or package, you might want to ignore these files since the code is
# intended to run in multiple environments; otherwise, check them in:
# .python-version
# pipenv
# According to pypa/pipenv#598, it is recommended to include Pipfile.lock in version control.
# However, in case of collaboration, if having platform-specific dependencies or dependencies
# having no cross-platform support, pipenv may install dependencies that don't work, or not
# install all needed dependencies.
#Pipfile.lock
# poetry
# Similar to Pipfile.lock, it is generally recommended to include poetry.lock in version control.
# This is especially recommended for binary packages to ensure reproducibility, and is more
# commonly ignored for libraries.
# https://python-poetry.org/docs/basic-usage/#commit-your-poetrylock-file-to-version-control
#poetry.lock
# pdm
# Similar to Pipfile.lock, it is generally recommended to include pdm.lock in version control.
#pdm.lock
# pdm stores project-wide configurations in .pdm.toml, but it is recommended to not include it
# in version control.
# https://pdm.fming.dev/#use-with-ide
.pdm.toml
# PEP 582; used by e.g. github.com/David-OConnor/pyflow and github.com/pdm-project/pdm
__pypackages__/
# Celery stuff
celerybeat-schedule
celerybeat.pid
# SageMath parsed files
*.sage.py
# Environments
.env
.venv
env/
venv/
ENV/
env.bak/
venv.bak/
# Spyder project settings
.spyderproject
.spyproject
# Rope project settings
.ropeproject
# mkdocs documentation
/site
# mypy
.mypy_cache/
.dmypy.json
dmypy.json
# Pyre type checker
.pyre/
# pytype static type analyzer
.pytype/
# Cython debug symbols
cython_debug/
# PyCharm
# JetBrains specific template is maintained in a separate JetBrains.gitignore that can
# be found at https://github.com/github/gitignore/blob/main/Global/JetBrains.gitignore
# and can be added to the global gitignore or merged into this file. For a more nuclear
# option (not recommended) you can uncomment the following to ignore the entire idea folder.
#.idea/

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@ -1,116 +0,0 @@
# Отчет по лабораторной работе №4
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## Прохождение tutorial
Установил rabbitMQ server, erlang и зашел в брокер под гостем по http://localhost:15672/#/
Туториал 1:
![](scrins/tut1.png)
![](scrins/send.png)
![](scrins/receive.png)
Туториал 2:
![](scrins/tut2.png)
![](scrins/newtask.png)
![](scrins/worker.png)
Туториал 3:
![](scrins/tut3.png)
![](scrins/emitlog.png)
![](scrins/receivelogs.png).
## Разработка демонстрационных приложений
Предметная область: Дополенительные соглашения и договора на заселение в отель Туристического агентства.
Разработа три приложения согласно предметной области.
1. Publisher
```py
import pika
import time
import random
collection = ["Application for Travel Agency", "Buying tickets", "Execution of the agreement", "Check-into a hotel"]
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
channel.exchange_declare(exchange='Agreements', exchange_type='fanout')
while True:
message = f"Message: {random.choice(collection)}"
channel.basic_publish(exchange='Agreements', routing_key='', body=message)
time.sleep(1)
connection.close()
```
2. Consumer 1.
```py
import pika
import time
def process_message(ch, method, properties, body):
print(f"Получено сообщение: {body}")
time.sleep(3)
print("Сообщение успешно обработано")
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
result = channel.queue_declare(queue='', exclusive=True)
queue_name = result.method.queue
channel.queue_bind(exchange='Agreements', queue=queue_name)
channel.basic_consume(queue=queue_name, on_message_callback=process_message, auto_ack=True)
print('Ожидание сообщений...')
channel.start_consuming()
```
3. Consumer 2.
```py
import pika
def process_message(ch, method, properties, body):
print(f"Получено сообщение: {body}")
print("Сообщение успешно обработано")
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
result = channel.queue_declare(queue='', exclusive=True)
queue_name = result.method.queue
channel.queue_bind(exchange='Agreements', queue=queue_name)
channel.basic_consume(queue=queue_name, on_message_callback=process_message, auto_ack=True)
print('Ожидание сообщений...')
channel.start_consuming()
```
## Результаты выполнения лабораторной работы
Результат отработки Consumer_1:
![](scrins/maintask1.png)
Результат отработки Consumer_2:
![](scrins/maintask2.png)
![](scrins/maintask_dop.png)
Вывод: Consumer_2 нагружает меньше памяти, чем Consumer_1 и принимает сообщения гораздо быстрее, тем самым не позволяя очереди накапливать огромное количество сообщений.

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@ -1,25 +0,0 @@
import pika, sys, os
def main():
connection = pika.BlockingConnection(pika.ConnectionParameters(host='localhost'))
channel = connection.channel()
channel.queue_declare(queue='DunaevLogs')
def callback(ch, method, properties, body):
print(f" [x] Получено сообщение: {body}")
channel.basic_consume(queue='DunaevLogs', on_message_callback=callback, auto_ack=True)
print(' [*] Ожидание сообщений. Для завершения CTRL+C')
channel.start_consuming()
if __name__ == '__main__':
try:
main()
except KeyboardInterrupt:
print('Произошла ошибка')
try:
sys.exit(0)
except SystemExit:
os._exit(0)

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@ -1,11 +0,0 @@
import pika
connection = pika.BlockingConnection(pika.ConnectionParameters('localhost'))
channel = connection.channel()
channel.queue_declare(queue='dunaev')
channel.basic_publish(exchange='',routing_key='dunaev',body='Hello, my name is Oleg, i am from ISEbd-41!')
print(" [x] Отправлено сообщение")
connection.close()

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@ -1,13 +0,0 @@
import pika
import sys
connection = pika.BlockingConnection(pika.ConnectionParameters(host='localhost'))
channel = connection.channel()
channel.queue_declare(queue='dunaev2', durable=True)
message = ' '.join(sys.argv[1:]) or "Hello, my name is Oleg, i am from ISEbd-41!"
channel.basic_publish(exchange='', routing_key='dunaev2', body=message, properties=pika.BasicProperties(
delivery_mode=pika.spec.PERSISTENT_DELIVERY_MODE))
print(f" [x] Отправлено {message}")
connection.close()

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@ -1,19 +0,0 @@
import pika
import time
connection = pika.BlockingConnection(pika.ConnectionParameters(host='localhost'))
channel = connection.channel()
channel.queue_declare(queue='dunaev2', durable=True)
print(' [*] Ожидание сообщений.')
def callback(ch, method, properties, body):
print(f" [x] Получено сообщение: {body.decode()}")
time.sleep(body.count(b'.'))
print(" [x] Выполнено")
ch.basic_ack(delivery_tag=method.delivery_tag)
channel.basic_qos(prefetch_count=1)
channel.basic_consume(queue='dunaev2', on_message_callback=callback)
channel.start_consuming()

View File

@ -1,12 +0,0 @@
import pika
import sys
connection = pika.BlockingConnection(pika.ConnectionParameters(host='localhost'))
channel = connection.channel()
channel.exchange_declare(exchange='DunaevLogs', exchange_type='fanout')
message = ' '.join(sys.argv[1:]) or "Info: Hello, my name is Oleg, i am from ISEbd-41!"
channel.basic_publish(exchange='DunaevLogs', routing_key='', body=message)
print(f" [x] Отправлено сообщение: {message}")
connection.close()

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@ -1,21 +0,0 @@
import pika
connection = pika.BlockingConnection(pika.ConnectionParameters(host='localhost'))
channel = connection.channel()
channel.exchange_declare(exchange='DunaevLogs', exchange_type='fanout')
result = channel.queue_declare(queue='', exclusive=True)
queue_name = result.method.queue
channel.queue_bind(exchange='DunaevLogs', queue=queue_name)
print(' [*] Ожидание сообщений. Для завершения CTRL+C')
def callback(ch, method, properties, body):
print(f" [x] {body}")
channel.basic_consume(
queue=queue_name, on_message_callback=callback, auto_ack=True)
channel.start_consuming()

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# Отчет по лабораторной работе №8
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## Задачи
Написать небольшое эссе (буквально несколько абзацев) своими словами. А помогут Вам в этом вопросы из списка:
1. Зачем сложные системы (например, социальная сеть ВКонтакте) пишутся в "распределенном" стиле, где каждое отдельное приложение (или сервис) функционально выполняет только ограниченный спектр задач?
2. Для чего были созданы системы оркестрации приложений? Каким образом они упрощают / усложняют разработку и сопровождение распределенных систем?
3. Для чего нужны очереди обработки сообщений и что может подразумеваться под сообщениями?
4. Какие преимущества и недостатки распределенных приложений существуют на Ваш взгляд?
5. Целесообразно ли в сложную распределенную систему внедрять параллельные вычисления? Приведите примеры, когда это действительно нужно, а когда нет.
## Эссе
1.Каждое приложение функционально выполняет ограниченный спектр задач, что позволяет системе быть модульной и легко адаптируемой к изменениям в требованиях или технологиях. Это также снижает общую сложность системы, поскольку отдельные компоненты могут быть разработаны, протестированы и развернуты независимо друг от друга.
2.Системы оркестрации приложений были созданы для упрощения управления и координации распределенных систем. Они позволяют автоматизировать развертывание, масштабирование и мониторинг приложений, а также обеспечивают интеграцию различных сервисов и компонентов. В то же время, их использование может усложнить разработку и поддержку распределенных систем для менее опытных разработчиков, поскольку требует понимания и применения определенных инструментов и подходов.
3.Очереди обработки сообщений нужны для асинхронной коммуникации между компонентами распределенных систем и обеспечения их стабильной работы. Сообщениями могут быть любые данные, которые требуют обработки или передачи между различными частями приложения.
4.Распределенные приложения имеют преимущества, такие как масштабируемость, надежность и гибкость. Однако они также имеют и недостатки, такие как сложность в управлении и сопровождении, проблемы с согласованностью данных и необходимость в более сложной инфраструктуре.
5.Внедрение параллельных вычислений в сложную распределенную систему может быть целесообразным, если система должна обрабатывать большое количество данных или выполнять множество операций одновременно. Это может ускорить процесс обработки и повысить производительность. Однако это также может увеличить сложность системы и потребовать дополнительных усилий для обеспечения ее стабильности и согласованности. Примеры, когда параллельные вычисления действительно нужны, включают обработку больших объемов данных, анализ в реальном времени и игры с интенсивной графикой. В то время как для систем, которые выполняют менее сложные и ресурсоемкие операции, параллельные вычисления могут не потребоваться.

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# Отчет по лабораторной работе №5
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## Создание приложения
Выбрал язык C#, Windows Forms.
Приложение имеет три текстовых поля, в которых можно через пробел вносить элементы матрицы. В матрицы-множители значения можно сгенерировать внутри программы. Размерность можно регулировать от 2 до 1000 в специальном поле. При необходимости можно очистить все матрицы. Также есть флажок выключения вывода значений матриц в текстовые поля, т.к. это занимает слишком много времени. Количество потоков в параллельном алгоритме регулируется в соответствующем поле.
Попробуем запустить обычный и паралелльный алгоритмы на матрицах 10х10 и зафиксировать результат выполнения по времени.
![](pic/1.png)
![](pic/2.png)
## Бенчмарки
Протестируем обычный и параллельный алгоритм матрицах 100х100, 300х300 и 500х500.
Сверху отображен результат обычного алгоритма, снизу паралелльного.
Матрицы 100х100
![](pic/3.png)
![](pic/4.png)
Матрицы 300х300
![](pic/5.png)
![](pic/6.png)
Матрицы 500х500
![](pic/7.png)
![](pic/8.png)
Вывод: Параллельный алгоритм работает быстрее только при наличии большого количества операций и данных. Если элементов не так много, то обычный алгоритм справляется быстрее. Также была обнаружено оптимальное количество потоков для лучшей работы обработки матриц 500х500 - 4 потока.

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namespace RVIP_Lab5
{
public class Alg1
{
static int[,] MultiplyMatrices(int[,] matrix1, int[,] matrix2)
{
int rows1 = matrix1.GetLength(0);
int cols1 = matrix1.GetLength(1);
int cols2 = matrix2.GetLength(1);
int[,] result = new int[rows1, cols2];
for (int i = 0; i < rows1; i++)
{
for (int j = 0; j < cols2; j++)
{
for (int k = 0; k < cols1; k++)
{
result[i, j] += matrix1[i, k] * matrix2[k, j];
}
}
}
return result;
}
public int[,] Begin(int[,] matrix1, int[,] matrix2)
{
int[,] result = MultiplyMatrices(matrix1, matrix2);
return result;
}
}
}

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@ -1,50 +0,0 @@
namespace RVIP_Lab5
{
public class Alg2
{
public int[,] Begin(int[,] matrix1, int[,] matrix2, int numThreads)
{
int rowsA = matrix1.GetLength(0);
int columnsA = matrix1.GetLength(1);
int rowsB = matrix2.GetLength(0);
int columnsB = matrix2.GetLength(1);
int[,] resultMatrix = new int[rowsA, columnsB];
int rowsPerThread = rowsA / numThreads;
Thread[] threads = new Thread[numThreads];
for (int i = 0; i < numThreads; i++)
{
int startRow = i * rowsPerThread;
int endRow = (i == numThreads - 1) ? rowsA : startRow + rowsPerThread;
threads[i] = new Thread(() => MultiplyRows(startRow, endRow, matrix1, matrix2, resultMatrix));
threads[i].Start();
}
foreach (Thread thread in threads)
{
thread.Join();
}
return resultMatrix;
}
static void MultiplyRows(int startRow, int endRow, int[,] matrixA, int[,] matrixB, int[,] resultMatrix)
{
for (int i = startRow; i < endRow; i++)
{
for (int j = 0; j < matrixB.GetLength(1); j++)
{
int sum = 0;
for (int k = 0; k < matrixA.GetLength(1); k++)
{
sum += matrixA[i, k] * matrixB[k, j];
}
resultMatrix[i, j] = sum;
}
}
}
}
}

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using System.Drawing;
namespace RVIP_Lab5
{
public class Controller
{
public string PrintResultMatrix(int[,] result)
{
string resultString = "";
for (int i = 0; i < result.GetLength(0); i++)
{
for (int j = 0; j < result.GetLength(1); j++)
{
resultString += result[i, j];
if (j != result.GetLength(1) - 1)
{
resultString += " ";
}
}
resultString += Environment.NewLine;
}
return resultString;
}
public int[,] GetMatrixFromTextbox(string inputText)
{
string[] lines = inputText.Split(Environment.NewLine);
int numRows = lines.Length;
int numCol = lines[0].Split(' ').Length;
int[,] matrix = new int[numRows, numCol];
for (int i = 0; i < numRows; i++)
{
string[] elements = lines[i].Split(' ');
for (int j = 0; j < numCol; j++)
{
matrix[i, j] = int.Parse(elements[j]);
}
}
return matrix;
}
public string GetTextFromFile(string filePath)
{
string text = "";
using (StreamReader sr = new StreamReader(filePath))
{
text = sr.ReadToEnd();
}
return text;
}
public int[,] GenerateNewMatrix(int count)
{
Random random = new Random();
int[,] matrix = new int[count, count];
for (int i = 0; i < count; i++)
{
for (int j = 0; j < count; j++)
{
matrix[i, j] = random.Next(1, 26);
}
}
return matrix;
}
}
}

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namespace RVIP_Lab5
{
partial class Form1
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Windows Form Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
textBoxMatrix1 = new TextBox();
textBoxResult = new TextBox();
buttonAlg1 = new Button();
label1 = new Label();
textBoxMatrix2 = new TextBox();
label2 = new Label();
buttonAlg2 = new Button();
openFileDialog1 = new OpenFileDialog();
label3 = new Label();
labelResultTime = new Label();
label4 = new Label();
countStream = new NumericUpDown();
label5 = new Label();
genCountRowCol = new NumericUpDown();
button1 = new Button();
buttonGenerateMatrix2 = new Button();
buttonGenerateMatrix1 = new Button();
((System.ComponentModel.ISupportInitialize)countStream).BeginInit();
((System.ComponentModel.ISupportInitialize)genCountRowCol).BeginInit();
SuspendLayout();
//
// textBoxMatrix1
//
textBoxMatrix1.Location = new Point(12, 50);
textBoxMatrix1.Multiline = true;
textBoxMatrix1.Name = "textBoxMatrix1";
textBoxMatrix1.Size = new Size(258, 258);
textBoxMatrix1.TabIndex = 0;
//
// textBoxResult
//
textBoxResult.Location = new Point(768, 50);
textBoxResult.Multiline = true;
textBoxResult.Name = "textBoxResult";
textBoxResult.Size = new Size(258, 258);
textBoxResult.TabIndex = 1;
//
// buttonAlg1
//
buttonAlg1.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
buttonAlg1.Location = new Point(1080, 60);
buttonAlg1.Name = "buttonAlg1";
buttonAlg1.Size = new Size(258, 40);
buttonAlg1.TabIndex = 2;
buttonAlg1.Text = "Обычный алгоритм";
buttonAlg1.UseVisualStyleBackColor = true;
buttonAlg1.Click += buttonAlg1_Click;
//
// label1
//
label1.AutoSize = true;
label1.BackColor = Color.Transparent;
label1.Font = new Font("Segoe UI", 72F, FontStyle.Regular, GraphicsUnit.Point);
label1.Location = new Point(276, 117);
label1.Name = "label1";
label1.Size = new Size(111, 128);
label1.TabIndex = 3;
label1.Text = "X";
//
// textBoxMatrix2
//
textBoxMatrix2.Location = new Point(378, 50);
textBoxMatrix2.Multiline = true;
textBoxMatrix2.Name = "textBoxMatrix2";
textBoxMatrix2.Size = new Size(258, 258);
textBoxMatrix2.TabIndex = 4;
//
// label2
//
label2.AutoSize = true;
label2.BackColor = Color.Transparent;
label2.Font = new Font("Segoe UI", 72F, FontStyle.Regular, GraphicsUnit.Point);
label2.Location = new Point(642, 117);
label2.Name = "label2";
label2.Size = new Size(120, 128);
label2.TabIndex = 5;
label2.Text = "=";
//
// buttonAlg2
//
buttonAlg2.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
buttonAlg2.Location = new Point(1080, 117);
buttonAlg2.Name = "buttonAlg2";
buttonAlg2.Size = new Size(258, 39);
buttonAlg2.TabIndex = 8;
buttonAlg2.Text = "Паралелльный алгоритм";
buttonAlg2.UseVisualStyleBackColor = true;
buttonAlg2.Click += buttonAlg2_Click;
//
// openFileDialog1
//
openFileDialog1.FileName = "openFileDialog1";
//
// label3
//
label3.AutoSize = true;
label3.Font = new Font("Segoe UI", 15.75F, FontStyle.Regular, GraphicsUnit.Point);
label3.Location = new Point(574, 349);
label3.Name = "label3";
label3.Size = new Size(111, 30);
label3.TabIndex = 9;
label3.Text = "Результат:";
//
// labelResultTime
//
labelResultTime.AutoSize = true;
labelResultTime.Font = new Font("Segoe UI", 15.75F, FontStyle.Regular, GraphicsUnit.Point);
labelResultTime.Location = new Point(719, 349);
labelResultTime.Name = "labelResultTime";
labelResultTime.Size = new Size(0, 30);
labelResultTime.TabIndex = 10;
//
// label4
//
label4.AutoSize = true;
label4.Location = new Point(15, 394);
label4.Name = "label4";
label4.Size = new Size(123, 15);
label4.TabIndex = 12;
label4.Text = "Количество потоков:";
//
// countStream
//
countStream.Location = new Point(144, 392);
countStream.Maximum = new decimal(new int[] { 10, 0, 0, 0 });
countStream.Minimum = new decimal(new int[] { 1, 0, 0, 0 });
countStream.Name = "countStream";
countStream.Size = new Size(66, 23);
countStream.TabIndex = 13;
countStream.Value = new decimal(new int[] { 4, 0, 0, 0 });
//
// label5
//
label5.AutoSize = true;
label5.Location = new Point(15, 349);
label5.Name = "label5";
label5.Size = new Size(166, 15);
label5.TabIndex = 16;
label5.Text = "Размерность при генерации:";
//
// genCountRowCol
//
genCountRowCol.Location = new Point(187, 347);
genCountRowCol.Maximum = new decimal(new int[] { 1000, 0, 0, 0 });
genCountRowCol.Minimum = new decimal(new int[] { 2, 0, 0, 0 });
genCountRowCol.Name = "genCountRowCol";
genCountRowCol.Size = new Size(66, 23);
genCountRowCol.TabIndex = 17;
genCountRowCol.Value = new decimal(new int[] { 10, 0, 0, 0 });
//
// button1
//
button1.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
button1.Location = new Point(1080, 171);
button1.Name = "button1";
button1.Size = new Size(258, 46);
button1.TabIndex = 22;
button1.Text = "Очистить матрицы";
button1.UseVisualStyleBackColor = true;
button1.Click += button1_Click;
//
// buttonGenerateMatrix2
//
buttonGenerateMatrix2.Location = new Point(447, 12);
buttonGenerateMatrix2.Name = "buttonGenerateMatrix2";
buttonGenerateMatrix2.Size = new Size(122, 32);
buttonGenerateMatrix2.TabIndex = 15;
buttonGenerateMatrix2.Text = "Сгенерировать";
buttonGenerateMatrix2.UseVisualStyleBackColor = true;
buttonGenerateMatrix2.Click += buttonGenerateMatrix2_Click;
//
// buttonGenerateMatrix1
//
buttonGenerateMatrix1.Location = new Point(75, 12);
buttonGenerateMatrix1.Name = "buttonGenerateMatrix1";
buttonGenerateMatrix1.Size = new Size(122, 32);
buttonGenerateMatrix1.TabIndex = 14;
buttonGenerateMatrix1.Text = "Сгенерировать";
buttonGenerateMatrix1.UseVisualStyleBackColor = true;
buttonGenerateMatrix1.Click += buttonGenerateMatrix1_Click;
//
// Form1
//
AutoScaleDimensions = new SizeF(7F, 15F);
AutoScaleMode = AutoScaleMode.Font;
ClientSize = new Size(1507, 446);
Controls.Add(button1);
Controls.Add(genCountRowCol);
Controls.Add(label5);
Controls.Add(buttonGenerateMatrix2);
Controls.Add(buttonGenerateMatrix1);
Controls.Add(countStream);
Controls.Add(label4);
Controls.Add(labelResultTime);
Controls.Add(label3);
Controls.Add(buttonAlg2);
Controls.Add(label2);
Controls.Add(textBoxMatrix2);
Controls.Add(label1);
Controls.Add(buttonAlg1);
Controls.Add(textBoxResult);
Controls.Add(textBoxMatrix1);
Name = "Form1";
Text = "Перемножение матриц: Дунаев О.И. ИСЭбд-41";
((System.ComponentModel.ISupportInitialize)countStream).EndInit();
((System.ComponentModel.ISupportInitialize)genCountRowCol).EndInit();
ResumeLayout(false);
PerformLayout();
}
#endregion
private TextBox textBoxMatrix1;
private TextBox textBoxResult;
private Button buttonAlg1;
private Label label1;
private TextBox textBoxMatrix2;
private Label label2;
private Button buttonAlg2;
private OpenFileDialog openFileDialog1;
private Label label3;
private Label labelResultTime;
private Label label4;
private NumericUpDown countStream;
private Label label5;
private NumericUpDown genCountRowCol;
private Button button1;
private Button buttonGenerateMatrix2;
private Button buttonGenerateMatrix1;
}
}

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@ -1,121 +0,0 @@
using System.Diagnostics;
namespace RVIP_Lab5
{
public partial class Form1 : Form
{
public Controller service;
public Alg1 Alg1;
public Alg2 Alg2;
public Stopwatch stopwatch;
public int[,] matrixA;
public int[,] matrixB;
public Form1()
{
InitializeComponent();
this.service = new Controller();
this.Alg1 = new Alg1();
this.Alg2 = new Alg2();
this.stopwatch = new Stopwatch();
}
private void buttonAlg1_Click(object sender, EventArgs e)
{
try
{
stopwatch.Start();
int[,] matrixResult = Alg1.Begin(matrixA, matrixB);
stopwatch.Stop();
labelResultTime.Text = "" + stopwatch.Elapsed;
textBoxResult.Text = service.PrintResultMatrix(matrixResult);
}
catch (Exception ex)
{
MessageBox.Show(ex.Message, "Îøèáêà", MessageBoxButtons.OK, MessageBoxIcon.Error);
}
stopwatch.Reset();
}
private void buttonAlg2_Click(object sender, EventArgs e)
{
try
{
stopwatch.Start();
int[,] matrixResult = Alg2.Begin(matrixA, matrixB, (int)countStream.Value);
stopwatch.Stop();
labelResultTime.Text = "" + stopwatch.Elapsed;
textBoxResult.Text = service.PrintResultMatrix(matrixResult);
}
catch (Exception ex)
{
MessageBox.Show(ex.Message, "Îøèáêà", MessageBoxButtons.OK, MessageBoxIcon.Error);
}
stopwatch.Reset();
}
private void buttonLoadMatrix1_Click(object sender, EventArgs e)
{
openFileDialog1.ShowDialog();
string filePath = openFileDialog1.FileName;
string result = service.GetTextFromFile(filePath);
textBoxMatrix1.Text = result;
matrixA = service.GetMatrixFromTextbox(result);
}
private void buttonLoadMatrix2_Click(object sender, EventArgs e)
{
openFileDialog1.ShowDialog();
string filePath = openFileDialog1.FileName;
string result = service.GetTextFromFile(filePath);
textBoxMatrix2.Text = result;
matrixB = service.GetMatrixFromTextbox(result);
}
private void buttonGenerateMatrix1_Click(object sender, EventArgs e)
{
matrixA = service.GenerateNewMatrix((int)genCountRowCol.Value);
textBoxMatrix1.Text = service.PrintResultMatrix(matrixA);
}
private void buttonGenerateMatrix2_Click(object sender, EventArgs e)
{
matrixB = service.GenerateNewMatrix((int)genCountRowCol.Value);
textBoxMatrix2.Text = service.PrintResultMatrix(matrixB);
}
private void button1_Click(object sender, EventArgs e)
{
textBoxMatrix1.Text = "";
textBoxMatrix2.Text = "";
textBoxResult.Text = "";
matrixA = null;
matrixB = null;
}
}
}

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@ -1,123 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
Version 2.0
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">2.0</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1"><value>this is my long string</value><comment>this is a comment</comment></data>
<data name="Color1" type="System.Drawing.Color, System.Drawing"">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
<value>[base64 mime encoded serialized .NET Framework object]</value>
</data>
<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
<value>[base64 mime encoded string representing a byte array form of the .NET Framework object]</value>
<comment>This is a comment</comment>
</data>
There are any number of "resheader" rows that contain simple
name/value pairs.
Each data row contains a name, and value. The row also contains a
type or mimetype. Type corresponds to a .NET class that support
text/value conversion through the TypeConverter architecture.
Classes that don't support this are serialized and stored with the
mimetype set.
The mimetype is used for serialized objects, and tells the
ResXResourceReader how to depersist the object. This is currently not
extensible. For a given mimetype the value must be set accordingly:
Note - application/x-microsoft.net.object.binary.base64 is the format
that the ResXResourceWriter will generate, however the reader can
read any of the formats listed below.
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Soap.SoapFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.bytearray.base64
value : The object must be serialized into a byte array
: using a System.ComponentModel.TypeConverter
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:import namespace="http://www.w3.org/XML/1998/namespace" />
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
<xsd:element name="metadata">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" />
</xsd:sequence>
<xsd:attribute name="name" use="required" type="xsd:string" />
<xsd:attribute name="type" type="xsd:string" />
<xsd:attribute name="mimetype" type="xsd:string" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="assembly">
<xsd:complexType>
<xsd:attribute name="alias" type="xsd:string" />
<xsd:attribute name="name" type="xsd:string" />
</xsd:complexType>
</xsd:element>
<xsd:element name="data">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
<xsd:element name="comment" type="xsd:string" minOccurs="0" msdata:Ordinal="2" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" msdata:Ordinal="1" />
<xsd:attribute name="type" type="xsd:string" msdata:Ordinal="3" />
<xsd:attribute name="mimetype" type="xsd:string" msdata:Ordinal="4" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="resheader">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" msdata:Ordinal="1" />
</xsd:sequence>
<xsd:attribute name="name" type="xsd:string" use="required" />
</xsd:complexType>
</xsd:element>
</xsd:choice>
</xsd:complexType>
</xsd:element>
</xsd:schema>
<resheader name="resmimetype">
<value>text/microsoft-resx</value>
</resheader>
<resheader name="version">
<value>2.0</value>
</resheader>
<resheader name="reader">
<value>System.Resources.ResXResourceReader, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<resheader name="writer">
<value>System.Resources.ResXResourceWriter, System.Windows.Forms, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b77a5c561934e089</value>
</resheader>
<metadata name="openFileDialog1.TrayLocation" type="System.Drawing.Point, System.Drawing, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a">
<value>7, 19</value>
</metadata>
</root>

View File

@ -1,17 +0,0 @@
namespace RVIP_Lab5
{
internal static class Program
{
/// <summary>
/// The main entry point for the application.
/// </summary>
[STAThread]
static void Main()
{
// To customize application configuration such as set high DPI settings or default font,
// see https://aka.ms/applicationconfiguration.
ApplicationConfiguration.Initialize();
Application.Run(new Form1());
}
}
}

View File

@ -1,11 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<OutputType>WinExe</OutputType>
<TargetFramework>net6.0-windows</TargetFramework>
<Nullable>enable</Nullable>
<UseWindowsForms>true</UseWindowsForms>
<ImplicitUsings>enable</ImplicitUsings>
</PropertyGroup>
</Project>

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@ -1,25 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio Version 17
VisualStudioVersion = 17.3.32811.315
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "RVIP_Lab5", "RVIP_Lab5.csproj", "{1DB0461C-8F6E-4BE5-B697-09C4F10570BF}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{1DB0461C-8F6E-4BE5-B697-09C4F10570BF}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{1DB0461C-8F6E-4BE5-B697-09C4F10570BF}.Debug|Any CPU.Build.0 = Debug|Any CPU
{1DB0461C-8F6E-4BE5-B697-09C4F10570BF}.Release|Any CPU.ActiveCfg = Release|Any CPU
{1DB0461C-8F6E-4BE5-B697-09C4F10570BF}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(ExtensibilityGlobals) = postSolution
SolutionGuid = {7B6008C5-2210-4BAA-B61A-F6C7D82930FA}
EndGlobalSection
EndGlobal

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## files generated by popular Visual Studio add-ons.
##
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# Including strong name files can present a security risk
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# General
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# Windows thumbnail cache files
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# Windows shortcuts
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*.swp

View File

@ -1,46 +0,0 @@
namespace Lab6
{
public class Alg1
{
public int Begin(int[,] matrix)
{
return CalculateDeterminant(matrix);
}
static int CalculateDeterminant(int[,] matrix)
{
int n = matrix.GetLength(0);
if (n == 1)
{
return matrix[0, 0];
}
int determinant = 0;
for (int j = 0; j < n; j++)
{
int[,] submatrix = new int[n - 1, n - 1];
for (int i = 1; i < n; i++)
{
for (int k = 0; k < n; k++)
{
if (k < j)
{
submatrix[i - 1, k] = matrix[i, k];
}
else if (k > j)
{
submatrix[i - 1, k - 1] = matrix[i, k];
}
}
}
determinant += (int)Math.Pow(-1, j) * matrix[0, j] * CalculateDeterminant(submatrix);
}
return determinant;
}
}
}

View File

@ -1,90 +0,0 @@
using System.Diagnostics.CodeAnalysis;
using System.Drawing.Drawing2D;
namespace Lab6
{
public class Alg2
{
public double Begin(double[,] matrixA, int threadCount)
{
int size = matrixA.GetLength(0);
if (size == 1)
{
return matrixA[0, 0];
}
else if (size == 2)
{
return matrixA[0, 0] * matrixA[1, 1] - matrixA[0, 1] * matrixA[1, 0];
}
else
{
double determinant = 0;
object lockObject = new object();
Parallel.For(0, size, new ParallelOptions { MaxDegreeOfParallelism = threadCount }, i =>
{
double[,] subMatrix = GetSubMatrix(matrixA, i);
double subDeterminant = matrixA[0, i] * Determinant(subMatrix);
lock (lockObject)
{
determinant += Math.Pow(-1, i) * subDeterminant;
}
});
return determinant;
}
}
static double[,] GetSubMatrix(double[,] matrix, int columnIndex)
{
int size = matrix.GetLength(0);
double[,] subMatrix = new double[size - 1, size - 1];
for (int i = 1; i < size; i++)
{
for (int j = 0; j < size; j++)
{
if (j < columnIndex)
{
subMatrix[i - 1, j] = matrix[i, j];
}
else if (j > columnIndex)
{
subMatrix[i - 1, j - 1] = matrix[i, j];
}
}
}
return subMatrix;
}
static double Determinant(double[,] matrix)
{
int size = matrix.GetLength(0);
if (size == 1)
{
return matrix[0, 0];
}
else if (size == 2)
{
return matrix[0, 0] * matrix[1, 1] - matrix[0, 1] * matrix[1, 0];
}
else
{
double determinant = 0;
for (int i = 0; i < size; i++)
{
double[,] subMatrix = GetSubMatrix(matrix, i);
determinant += Math.Pow(-1, i) * matrix[0, i] * Determinant(subMatrix);
}
return determinant;
}
}
}
}

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@ -1,95 +0,0 @@
using System.Drawing;
namespace Lab6
{
public class Controller
{
public double[,] ConvertArray(int[,] intArray)
{
int rows = intArray.GetLength(0);
int cols = intArray.GetLength(1);
double[,] doubleArray = new double[rows, cols];
for (int i = 0; i < rows; i++)
{
for (int j = 0; j < cols; j++)
{
doubleArray[i, j] = (double)intArray[i, j];
}
}
return doubleArray;
}
public string PrintResultMatrix(int[,] result)
{
string resultString = "";
for (int i = 0; i < result.GetLength(0); i++)
{
for (int j = 0; j < result.GetLength(1); j++)
{
resultString += result[i, j];
if (j != result.GetLength(1) - 1)
{
resultString += " ";
}
}
resultString += Environment.NewLine;
}
return resultString;
}
public int[,] GetMatrixFromTextbox(string inputText)
{
string[] lines = inputText.Split(Environment.NewLine);
int numRows = lines.Length;
int numCol = lines[0].Split(' ').Length;
int[,] matrix = new int[numRows, numCol];
for (int i = 0; i < numRows; i++)
{
string[] elements = lines[i].Split(' ');
for (int j = 0; j < numCol; j++)
{
matrix[i, j] = int.Parse(elements[j]);
}
}
return matrix;
}
public string GetTextFromFile(string filePath)
{
string text = "";
using (StreamReader sr = new StreamReader(filePath))
{
text = sr.ReadToEnd();
}
return text;
}
public int[,] GenerateNewMatrix(int count)
{
Random random = new Random();
int[,] matrix = new int[count, count];
for (int i = 0; i < count; i++)
{
for (int j = 0; j < count; j++)
{
matrix[i, j] = random.Next(1, 5);
}
}
return matrix;
}
}
}

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@ -1,222 +0,0 @@
namespace Lab6
{
partial class Form1
{
/// <summary>
/// Required designer variable.
/// </summary>
private System.ComponentModel.IContainer components = null;
/// <summary>
/// Clean up any resources being used.
/// </summary>
/// <param name="disposing">true if managed resources should be disposed; otherwise, false.</param>
protected override void Dispose(bool disposing)
{
if (disposing && (components != null))
{
components.Dispose();
}
base.Dispose(disposing);
}
#region Windows Form Designer generated code
/// <summary>
/// Required method for Designer support - do not modify
/// the contents of this method with the code editor.
/// </summary>
private void InitializeComponent()
{
textBoxMatrix1 = new TextBox();
textBoxResult = new TextBox();
buttonAlg1 = new Button();
buttonAlg2 = new Button();
openFileDialog1 = new OpenFileDialog();
label3 = new Label();
labelResultTime = new Label();
label4 = new Label();
countStream = new NumericUpDown();
buttonGenerateMatrix1 = new Button();
label5 = new Label();
genCountRowCol = new NumericUpDown();
button1 = new Button();
label1 = new Label();
((System.ComponentModel.ISupportInitialize)countStream).BeginInit();
((System.ComponentModel.ISupportInitialize)genCountRowCol).BeginInit();
SuspendLayout();
//
// textBoxMatrix1
//
textBoxMatrix1.Location = new Point(58, 48);
textBoxMatrix1.Multiline = true;
textBoxMatrix1.Name = "textBoxMatrix1";
textBoxMatrix1.Size = new Size(565, 274);
textBoxMatrix1.TabIndex = 0;
//
// textBoxResult
//
textBoxResult.Location = new Point(833, 48);
textBoxResult.Multiline = true;
textBoxResult.Name = "textBoxResult";
textBoxResult.Size = new Size(258, 40);
textBoxResult.TabIndex = 1;
//
// buttonAlg1
//
buttonAlg1.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
buttonAlg1.Location = new Point(833, 186);
buttonAlg1.Name = "buttonAlg1";
buttonAlg1.Size = new Size(258, 40);
buttonAlg1.TabIndex = 2;
buttonAlg1.Text = "Обычный алгоритм";
buttonAlg1.UseVisualStyleBackColor = true;
buttonAlg1.Click += buttonAlg1_Click;
//
// buttonAlg2
//
buttonAlg2.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
buttonAlg2.Location = new Point(833, 232);
buttonAlg2.Name = "buttonAlg2";
buttonAlg2.Size = new Size(258, 39);
buttonAlg2.TabIndex = 8;
buttonAlg2.Text = "Паралелльный алгоритм";
buttonAlg2.UseVisualStyleBackColor = true;
buttonAlg2.Click += buttonAlg2_Click;
//
// openFileDialog1
//
openFileDialog1.FileName = "openFileDialog1";
//
// label3
//
label3.AutoSize = true;
label3.Font = new Font("Segoe UI", 15.75F, FontStyle.Regular, GraphicsUnit.Point);
label3.Location = new Point(23, 370);
label3.Name = "label3";
label3.Size = new Size(111, 30);
label3.TabIndex = 9;
label3.Text = "Результат:";
//
// labelResultTime
//
labelResultTime.AutoSize = true;
labelResultTime.Font = new Font("Segoe UI", 15.75F, FontStyle.Regular, GraphicsUnit.Point);
labelResultTime.Location = new Point(165, 370);
labelResultTime.Name = "labelResultTime";
labelResultTime.Size = new Size(0, 30);
labelResultTime.TabIndex = 10;
//
// label4
//
label4.AutoSize = true;
label4.Location = new Point(833, 129);
label4.Name = "label4";
label4.Size = new Size(123, 15);
label4.TabIndex = 12;
label4.Text = "Количество потоков:";
//
// countStream
//
countStream.Location = new Point(1007, 127);
countStream.Maximum = new decimal(new int[] { 10, 0, 0, 0 });
countStream.Minimum = new decimal(new int[] { 1, 0, 0, 0 });
countStream.Name = "countStream";
countStream.Size = new Size(66, 23);
countStream.TabIndex = 13;
countStream.Value = new decimal(new int[] { 4, 0, 0, 0 });
//
// buttonGenerateMatrix1
//
buttonGenerateMatrix1.Location = new Point(268, 10);
buttonGenerateMatrix1.Name = "buttonGenerateMatrix1";
buttonGenerateMatrix1.Size = new Size(122, 32);
buttonGenerateMatrix1.TabIndex = 14;
buttonGenerateMatrix1.Text = "Сгенерировать";
buttonGenerateMatrix1.UseVisualStyleBackColor = true;
buttonGenerateMatrix1.Click += buttonGenerateMatrix1_Click;
//
// label5
//
label5.AutoSize = true;
label5.Location = new Point(833, 100);
label5.Name = "label5";
label5.Size = new Size(166, 15);
label5.TabIndex = 16;
label5.Text = "Размерность при генерации:";
//
// genCountRowCol
//
genCountRowCol.Location = new Point(1007, 98);
genCountRowCol.Maximum = new decimal(new int[] { 500, 0, 0, 0 });
genCountRowCol.Minimum = new decimal(new int[] { 2, 0, 0, 0 });
genCountRowCol.Name = "genCountRowCol";
genCountRowCol.Size = new Size(66, 23);
genCountRowCol.TabIndex = 17;
genCountRowCol.Value = new decimal(new int[] { 3, 0, 0, 0 });
//
// button1
//
button1.Font = new Font("Segoe UI", 12F, FontStyle.Regular, GraphicsUnit.Point);
button1.Location = new Point(833, 295);
button1.Name = "button1";
button1.Size = new Size(258, 46);
button1.TabIndex = 22;
button1.Text = "Очистить матрицы";
button1.UseVisualStyleBackColor = true;
button1.Click += button1_Click;
//
// label1
//
label1.AutoSize = true;
label1.Font = new Font("Segoe UI", 15.75F, FontStyle.Regular, GraphicsUnit.Point);
label1.Location = new Point(833, 12);
label1.Name = "label1";
label1.Size = new Size(240, 30);
label1.TabIndex = 23;
label1.Text = "Детерминант матрицы:";
//
// Form1
//
AutoScaleDimensions = new SizeF(7F, 15F);
AutoScaleMode = AutoScaleMode.Font;
ClientSize = new Size(1132, 534);
Controls.Add(label1);
Controls.Add(button1);
Controls.Add(genCountRowCol);
Controls.Add(label5);
Controls.Add(buttonGenerateMatrix1);
Controls.Add(countStream);
Controls.Add(label4);
Controls.Add(labelResultTime);
Controls.Add(label3);
Controls.Add(buttonAlg2);
Controls.Add(buttonAlg1);
Controls.Add(textBoxResult);
Controls.Add(textBoxMatrix1);
Name = "Form1";
Text = "Перемножение матриц: Дунаев О.И. ИСЭбд-41";
((System.ComponentModel.ISupportInitialize)countStream).EndInit();
((System.ComponentModel.ISupportInitialize)genCountRowCol).EndInit();
ResumeLayout(false);
PerformLayout();
}
#endregion
private TextBox textBoxMatrix1;
private TextBox textBoxResult;
private Button buttonAlg1;
private Button buttonAlg2;
private OpenFileDialog openFileDialog1;
private Label label3;
private Label labelResultTime;
private Label label4;
private NumericUpDown countStream;
private Button buttonGenerateMatrix1;
private Label label5;
private NumericUpDown genCountRowCol;
private Button button1;
private Label label1;
}
}

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@ -1,90 +0,0 @@
using System.Diagnostics;
namespace Lab6
{
public partial class Form1 : Form
{
public Controller service;
public Alg1 Alg1;
public Alg2 Alg2;
public Stopwatch stopwatch;
public int[,] matrixA;
public Form1()
{
InitializeComponent();
this.service = new Controller();
this.Alg1 = new Alg1();
this.Alg2 = new Alg2();
this.stopwatch = new Stopwatch();
}
private void buttonAlg1_Click(object sender, EventArgs e)
{
try
{
stopwatch.Start();
int result = Alg1.Begin(matrixA);
stopwatch.Stop();
labelResultTime.Text = "" + stopwatch.Elapsed;
textBoxResult.Text = Convert.ToString(result);
}
catch (Exception ex)
{
MessageBox.Show(ex.Message, "Îøèáêà", MessageBoxButtons.OK, MessageBoxIcon.Error);
}
stopwatch.Reset();
}
private void buttonAlg2_Click(object sender, EventArgs e)
{
try
{
double[,] doubleMatrix = service.ConvertArray(matrixA);
stopwatch.Start();
textBoxResult.Text = Convert.ToString(Alg2.Begin(doubleMatrix, (int)countStream.Value));
stopwatch.Stop();
labelResultTime.Text = "" + stopwatch.Elapsed;
}
catch (Exception ex)
{
MessageBox.Show(ex.Message, "Îøèáêà", MessageBoxButtons.OK, MessageBoxIcon.Error);
}
stopwatch.Reset();
}
private void buttonLoadMatrix1_Click(object sender, EventArgs e)
{
openFileDialog1.ShowDialog();
string filePath = openFileDialog1.FileName;
string result = service.GetTextFromFile(filePath);
textBoxMatrix1.Text = result;
matrixA = service.GetMatrixFromTextbox(result);
}
private void buttonGenerateMatrix1_Click(object sender, EventArgs e)
{
matrixA = service.GenerateNewMatrix((int)genCountRowCol.Value);
textBoxMatrix1.Text = service.PrintResultMatrix(matrixA);
}
private void button1_Click(object sender, EventArgs e)
{
textBoxMatrix1.Text = "";
textBoxResult.Text = "";
matrixA = null;
}
}
}

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@ -1,123 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<root>
<!--
Microsoft ResX Schema
Version 2.0
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">2.0</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1"><value>this is my long string</value><comment>this is a comment</comment></data>
<data name="Color1" type="System.Drawing.Color, System.Drawing"">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
<value>[base64 mime encoded serialized .NET Framework object]</value>
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<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
<value>[base64 mime encoded string representing a byte array form of the .NET Framework object]</value>
<comment>This is a comment</comment>
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There are any number of "resheader" rows that contain simple
name/value pairs.
Each data row contains a name, and value. The row also contains a
type or mimetype. Type corresponds to a .NET class that support
text/value conversion through the TypeConverter architecture.
Classes that don't support this are serialized and stored with the
mimetype set.
The mimetype is used for serialized objects, and tells the
ResXResourceReader how to depersist the object. This is currently not
extensible. For a given mimetype the value must be set accordingly:
Note - application/x-microsoft.net.object.binary.base64 is the format
that the ResXResourceWriter will generate, however the reader can
read any of the formats listed below.
mimetype: application/x-microsoft.net.object.binary.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Binary.BinaryFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.soap.base64
value : The object must be serialized with
: System.Runtime.Serialization.Formatters.Soap.SoapFormatter
: and then encoded with base64 encoding.
mimetype: application/x-microsoft.net.object.bytearray.base64
value : The object must be serialized into a byte array
: using a System.ComponentModel.TypeConverter
: and then encoded with base64 encoding.
-->
<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
<xsd:import namespace="http://www.w3.org/XML/1998/namespace" />
<xsd:element name="root" msdata:IsDataSet="true">
<xsd:complexType>
<xsd:choice maxOccurs="unbounded">
<xsd:element name="metadata">
<xsd:complexType>
<xsd:sequence>
<xsd:element name="value" type="xsd:string" minOccurs="0" />
</xsd:sequence>
<xsd:attribute name="name" use="required" type="xsd:string" />
<xsd:attribute name="type" type="xsd:string" />
<xsd:attribute name="mimetype" type="xsd:string" />
<xsd:attribute ref="xml:space" />
</xsd:complexType>
</xsd:element>
<xsd:element name="assembly">
<xsd:complexType>
<xsd:attribute name="alias" type="xsd:string" />
<xsd:attribute name="name" type="xsd:string" />
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<xsd:element name="data">
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<metadata name="openFileDialog1.TrayLocation" type="System.Drawing.Point, System.Drawing, Version=4.0.0.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a">
<value>7, 19</value>
</metadata>
</root>

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@ -1,11 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<OutputType>WinExe</OutputType>
<TargetFramework>net6.0-windows</TargetFramework>
<Nullable>enable</Nullable>
<UseWindowsForms>true</UseWindowsForms>
<ImplicitUsings>enable</ImplicitUsings>
</PropertyGroup>
</Project>

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@ -1,25 +0,0 @@

Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio Version 17
VisualStudioVersion = 17.3.32811.315
MinimumVisualStudioVersion = 10.0.40219.1
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Lab6", "Lab6.csproj", "{5E467820-7298-4466-AD82-CEDEB780CA68}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
Release|Any CPU = Release|Any CPU
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{5E467820-7298-4466-AD82-CEDEB780CA68}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{5E467820-7298-4466-AD82-CEDEB780CA68}.Debug|Any CPU.Build.0 = Debug|Any CPU
{5E467820-7298-4466-AD82-CEDEB780CA68}.Release|Any CPU.ActiveCfg = Release|Any CPU
{5E467820-7298-4466-AD82-CEDEB780CA68}.Release|Any CPU.Build.0 = Release|Any CPU
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GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
GlobalSection(ExtensibilityGlobals) = postSolution
SolutionGuid = {7933D480-E7B1-4658-8726-83CCD3BED00D}
EndGlobalSection
EndGlobal

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@ -1,17 +0,0 @@
namespace Lab6
{
internal static class Program
{
/// <summary>
/// The main entry point for the application.
/// </summary>
[STAThread]
static void Main()
{
// To customize application configuration such as set high DPI settings or default font,
// see https://aka.ms/applicationconfiguration.
ApplicationConfiguration.Initialize();
Application.Run(new Form1());
}
}
}

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@ -1,42 +0,0 @@
# Отчет по лабораторной работе №6
Выполнил студент гр. ИСЭбд-41 Дунаев О.И.
## Создание приложения
Выбрал язык C#, Windows Forms.
Приложение имеет поле ввода матрицы, в которое можно через пробел вносить элементы матрицы. При необходимости можно сгенерировать матрицу указав её размерность . При необходимости можно очистить матрицу и определитель. Количество потоков в параллельном алгоритме регулируется в соответствующем поле.
Попробуем запустить обычный и паралелльный алгоритмы на матрицах 3х3 и зафиксировать результат выполнения по времени.
![](pic/1.png)
![](pic/2.png)
## Бенчмарки
Протестируем обычный и параллельный алгоритм определение детерминанта на различной размерности матрицы.
В ходе экспериментов было установлено, что обработка матрицы размеров больше 12х12 занимает слишком много времени в обычном алгоритме, поэтому для тестирования возьмем матрицы 5х5, 8х8 и 11х11.
Сверху отображен результат обычного алгоритма, снизу паралелльного.
Матрица 5х5
![](pic/5x5№1.png)
![](pic/5x5№2.png)
Матрицы 8x8
![](pic/8x8№1.png)
![](pic/8x8№2.png)
Матрицы 12х12
![](pic/12x12№1.png)
![](pic/12x12№2.png)
Вывод: Параллельный алгоритм работает быстрее только при наличии большого количества операций. Если операций не так много, то обычный алгоритм справляется быстрее.

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## Ignore Visual Studio temporary files, build results, and
## files generated by popular Visual Studio add-ons.
##
## Get latest from https://github.com/github/gitignore/blob/main/VisualStudio.gitignore
# User-specific files
*.rsuser
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*.userprefs
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mono_crash.*
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[Aa][Rr][Mm]64/
bld/
[Bb]in/
[Oo]bj/
[Ll]og/
[Ll]ogs/
# Visual Studio 2015/2017 cache/options directory
.vs/
# Uncomment if you have tasks that create the project's static files in wwwroot
#wwwroot/
# Visual Studio 2017 auto generated files
Generated\ Files/
# MSTest test Results
[Tt]est[Rr]esult*/
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##
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##
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## Создание приложений
Создадим 2 приложения.
Был выбран язык C# и технология .NET 5.
Для создания обычных консольных приложений воспользуемся командами:
```sh
dotnet new console -o worker-1
dotnet new console -o worker-2
```
Согласно варианту, программа 1 ищет в каталоге /var/data файл с наибольшим количеством строк и перекладывает его в /var/result/data.txt.
[Исходный код программы worker-1](worker-1/Program.cs)
Согласно варианту программа 2 должна искать набольшее число из файла /var/data/data.txt и сохраняет его вторую степень в /var/result/result.txt.
[Исходный код программы worker-2](worker-2/Program.cs)
Дополнительно создан файл [.gitignore](.gitignore) для того, чтобы не закоммитить в git ничего лишнего.
## Настройка окружения
Для связи двух приложений воспользуемся следующей схемой:
1. Каталог `./data` должен быть примонтирован в каталог `/var/data` для программы 1.
Оттуда будут браться исходные данные.
2. Каталог `./result-1` должен быть примонтирован в каталог `/var/result` для программы 2.
Туда будут складываться промежуточные данные.
3. Каталог `./result-1` также должен быть примонтирован в каталог `/var/data` для программы 2.
Оттуда будут браться промежуточные результаты.
4. Каталог `./result` должен быть примонтирован в каталог `/var/result` для программы 2.
Туда будут складывать результаты финальной обработки.
Для каждой программы были созданы файлы Dockerfile ([программа 1](worker-1/Dockerfile), [программа 2](worker-2/Dockerfile)) с подробным описанием процесса сборки.
Был создан файл [docker-compose.yml](docker-compose.yml), в котором указан манифест для запуска распределённого приложения.
## Сборка и запуск
1. В каталог `./data` помещены 3 файла с различными названиями и содержимым.
![](scrins/1.png)
На выходе программа должна записать данные из рандомного файла директории `/var/data`.
![](scrins/5.png)
![](scrins/3.png)
![](scrins/4.png)
2. Теперь, обрабатывая эти файлы:
![](scrins/2.png)
На выходе программа должна записать число 7921 в `./result` так как в файле c названием data.txt наибольшее число = 89.
![](scrins/6.png)
Для запуска приложения необходимо ввести команду `docker compose up --build`.
Результат запуска после сборки:
```
[+] Running 2/1
✔ Container lab_2-worker-1-1 Created 0.0s
✔ Container lab_2-worker-2-1 Created 0.0s
Attaching to lab_2-worker-1-1, lab_2-worker-2-1
lab_2-worker-1-1 | Файл /var/data/data.txt успешно скопирован в /var/result/data.txt.
lab_2-worker-1-1 exited with code 0
lab_2-worker-2-1 | Квадрат наибольшего числа сохранено в файле: /var/result/result.txt
lab_2-worker-2-1 exited with code 0
```
В результате в каталоге `./result` создался файл `result.txt` с содержимым `7921`, что соответствует входным данным.
Изменение значений в файлах из каталога `./data` также изменяет содержимое в файлах из каталогов `./result-1` и `./result`.

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12
32
43
23
65
43

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@ -1,3 +0,0 @@
12
1
2

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@ -1,10 +0,0 @@
54
65
3
24
67
89
32
1
5
74

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@ -1,18 +0,0 @@
version: "3.1"
services:
worker-1:
build: ./worker-1
volumes:
# Монтирует локальную папку data к папке data в контейнере.
- ./data:/var/data
# Монтирует локальную папку result-1 к папке result в контейнере.
- ./result-1:/var/result
worker-2:
build: ./worker-2
volumes:
# Монтирует локальную папку result-1 к папке data в контейнере.
- ./result-1:/var/data
- ./result:/var/result
# Зависимость от первого приложения.
depends_on:
- worker-1

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