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Asim Aslam 4311b73361 Enhance ADK vs Go Micro comparison and apply lint fixes (#2994)
* docs: compare Go Micro with Google ADK in the comparison guide

Adds a 'vs Agent Frameworks (Google ADK)' section: ADK builds an agent,
Go Micro builds the distributed system the agent lives in (agents are
services in the mesh). Covers the category difference, a feature table,
when to choose each, and MCP/A2A interoperability.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01CmdEY7pYmV5zzwCjNJ4ykL

* docs: replace ADK comparison slogan with concrete explanation

State plainly what each tool provides (ADK builds an agent process; Go Micro
builds the surrounding service mesh) instead of marketing phrasing.

* lint: apply golangci-lint autofixes; exclude ST1003 and demo errcheck

Mechanical, behaviour-preserving fixes applied by 'golangci-lint run --fix':
gofmt, misspell (US spelling), usestdlibvars (http.Method*/Status*), unconvert,
and the auto-fixable staticcheck simplifications (QF*, S1017/S1019/S1023/S1039).

Config: exclude ST1003 (remaining offenders are exported API renames, e.g.
web.Id, which would break compatibility) and skip errcheck for examples/ and
internal/harness/ (demo code where fire-and-forget is intentional).

Build and test compilation verified.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01CmdEY7pYmV5zzwCjNJ4ykL

* lint: WIP cleanup checkpoint (errcheck config + partial fixes)

Checkpoint of an in-progress golangci-lint cleanup (background pass). Builds
cleanly; lint is not yet zero. Follow-up commit will complete the cleanup and
switch CI to a blocking full-tree lint.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01CmdEY7pYmV5zzwCjNJ4ykL

---------

Co-authored-by: Claude <noreply@anthropic.com>
2026-06-22 17:21:47 +01:00

120 行
2.6 KiB
Go

// Package memory provides an in memory log buffer
package memory
import (
"fmt"
"go-micro.dev/v6/debug/log"
"go-micro.dev/v6/internal/util/ring"
)
var (
// DefaultSize of the logger buffer.
DefaultSize = 1024
)
// memoryLog is default micro log.
type memoryLog struct {
*ring.Buffer
}
// NewLog returns default Logger with.
func NewLog(opts ...log.Option) log.Log {
// get default options
options := log.DefaultOptions()
// apply requested options
for _, o := range opts {
o(&options)
}
return &memoryLog{
Buffer: ring.New(options.Size),
}
}
// Write writes logs into logger.
func (l *memoryLog) Write(r log.Record) error {
l.Put(fmt.Sprint(r.Message))
return nil
}
// Read reads logs and returns them.
func (l *memoryLog) Read(opts ...log.ReadOption) ([]log.Record, error) {
options := log.ReadOptions{}
// initialize the read options
for _, o := range opts {
o(&options)
}
var entries []*ring.Entry
// if Since options ha sbeen specified we honor it
if !options.Since.IsZero() {
entries = l.Since(options.Since)
}
// only if we specified valid count constraint
// do we end up doing some serious if-else kung-fu
// if since constraint has been provided
// we return *count* number of logs since the given timestamp;
// otherwise we return last count number of logs
if options.Count > 0 {
switch len(entries) > 0 {
case true:
// if we request fewer logs than what since constraint gives us
if options.Count < len(entries) {
entries = entries[0:options.Count]
}
default:
entries = l.Get(options.Count)
}
}
records := make([]log.Record, 0, len(entries))
for _, entry := range entries {
record := log.Record{
Timestamp: entry.Timestamp,
Message: entry.Value,
}
records = append(records, record)
}
return records, nil
}
// Stream returns channel for reading log records
// along with a stop channel, close it when done.
func (l *memoryLog) Stream() (log.Stream, error) {
// get stream channel from ring buffer
stream, stop := l.Buffer.Stream()
// make a buffered channel
records := make(chan log.Record, 128)
// get last 10 records
last10 := l.Get(10)
// stream the log records
go func() {
// first send last 10 records
for _, entry := range last10 {
records <- log.Record{
Timestamp: entry.Timestamp,
Message: entry.Value,
Metadata: make(map[string]string),
}
}
// now stream continuously
for entry := range stream {
records <- log.Record{
Timestamp: entry.Timestamp,
Message: entry.Value,
Metadata: make(map[string]string),
}
}
}()
return &logStream{
stream: records,
stop: stop,
}, nil
}