Reapply "题目记录.md"

This reverts commit ef954349d4.
This commit is contained in:
2025-08-15 03:57:05 +08:00
parent ef954349d4
commit 2cf33460f8
2 changed files with 167 additions and 0 deletions

33
goroutine/task.go Normal file
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package goroutine
import (
"context"
"fmt"
clientv3 "go.etcd.io/etcd/client/v3"
"goLearn/model"
"time"
)
func Runtask(ctx context.Context) {
ctx2 := ctx.Value("value").(model.Task)
fmt.Println(ctx2.Id)
config := clientv3.Config{
Endpoints: []string{"127.0.0.1:2379"}, // etcd节点地址集群模式可填多个
DialTimeout: 5 * time.Second, // 连接超时时间
// 如需认证,添加以下配置
// Username: "root",
// Password: "123456",
}
// 2. 建立连接
client, err := clientv3.New(config)
if err != nil {
fmt.Printf("连接etcd失败: %v\n", err)
return
}
defer client.Close() // 程序退出时关闭连接
fmt.Println("成功连接到etcd")
}

134
timu.md Normal file
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​​基础要求​​​​生产者​​: 2 个协程,每秒生成 1 个随机数0-100发送到缓冲通道容量为 10。 使用 sync.Mutex保护以下操作 记录每个数字的生成次数map[int]int 统计总生产数量int消费者 3 个协程从通道读取数据并打印格式消费者ID: 处理数据X (历史出现次数: Y)。 使用 sync.RWMutex保护对 map[int]int的读取查询历史次数写操作仍由 sync.Mutex保护。主协程 5 秒后关闭通道,等待所有协程退出。 程序退出前,打印最终统计数据: 总生产/消费次数 每个数字的出现频率(按频率降序排列)​​进阶要求​​​​性能优化​​: 消费者读取历史次数时,必须使用 RLock()允许多个消费者并发查询。 生产者更新 map和计数器时用最短的锁持有时间例如合并写锁操作异常处理 若通道已满,生产者需打印警告并丢弃数据。 消费者检测到通道关闭后立即退出,打印退出日志。​​扩展功能​​(可选): 添加一个监控协程,每秒打印当前最频繁生成的 3 个数字(需使用 RWMutex读取数据
```
package model
type Task struct {
Id string
Content string
}
type Data struct {
Count int
Record map[int]int
}
package main
import (
"fmt"
"goLearn/goroutine"
"goLearn/model"
"sync"
"time"
)
var Ch = make(chan model.Task, 3)
var mutex sync.Mutex
var rwmutex sync.RWMutex
func main() {
var wg sync.WaitGroup
data := &model.Data{
Count: 0,
Record: make(map[int]int),
}
donetitle := make(chan struct{})
for i := 0; i < 10; i++ {
wg.Add(1)
go goroutine.NewProducer(Ch, &wg, donetitle, i, &mutex, data, &rwmutex)
}
for i := 0; i < 3; i++ {
wg.Add(1)
go goroutine.NewConsumer(Ch, &wg, donetitle, i, data, &rwmutex)
}
time.Sleep(10 * time.Second)
close(donetitle)
wg.Wait()
fmt.Println("任务完成")
}
package goroutine
import (
"fmt"
"goLearn/model"
"math/rand"
"strconv"
"sync"
"time"
)
func NewProducer(ch chan model.Task, wg *sync.WaitGroup, done chan struct{}, num int, mutex *sync.Mutex, data *model.Data, rwmutex *sync.RWMutex) {
defer wg.Done()
timech := time.Tick(1 * time.Second)
rand.Seed(time.Now().UnixNano())
for {
select {
case <-timech:
fmt.Printf("生产者%d号上锁\n", num+1)
randnum := rand.Intn(100)
task := model.Task{
Id: strconv.Itoa(randnum),
Content: "访问数据库",
}
mutex.Lock()
data.Count += 1
mutex.Unlock()
rwmutex.Lock()
data.Record[randnum] += 1
rwmutex.Unlock()
fmt.Printf("生产者%d号注入编号为%s,内容为:%s\n", num+1, task.Id, task.Content)
ch <- task
fmt.Printf("生产者%d号释放锁\n", num+1)
case <-done:
fmt.Printf("生产者%d号退出任务\n", num+1)
return
}
}
}
package goroutine
import (
"fmt"
"goLearn/model"
"sync"
)
func NewConsumer(ch chan model.Task, wg *sync.WaitGroup, done chan struct{}, num int, data *model.Data, rwmutex *sync.RWMutex) {
defer wg.Done()
for {
select {
case <-ch:
rwmutex.RLock()
fmt.Printf("消费者%d号处理消息统计消息总数为%d\n", num+1, data.Count)
fmt.Printf("消费者%d号当前记录详情如下\n", num+1)
for key, value := range data.Record {
fmt.Printf(" 键:%d%d\n", key, value)
}
rwmutex.RUnlock()
case <-done:
fmt.Printf("消费者%d号退出接收\n", num+1)
return
}
}
}
```