- local-agent/server:detector 保留 kn_number(parseScanDevices 可測化、 合成 ID 語意不動)+ DeviceInfo.SerialNumber + Manager serialToLocalID 反查表 + GetDevice 雙查(sessions 先、serial 後,純加法) - visiona-agent:pairing exchange 帶本地裝置清單(DeviceLister 失敗不中斷 配對、timeout 2s、omitempty 舊版相容) - visionA-backend:exchange 收 devices —— R1 取第一顆可用序號、R2 假序號 0x00000000 寫 NULL、R4 同 owner 同序號復用既有 device_id(防 23505)、 pg+mem 兩實作對齊 - 五個 proxy 操作(flash/inference/camera/connect/disconnect)收斂於 GetDevice 單一入口,serial 路由一處涵蓋 - docs:api-spec.md §2 增補 POST /api/pairing/exchange(schema + R1/R2/R4) - 測試:行為級四環節鏈 + dbtest 130 實跑 6/6 + DBOn 回歸 4/4; 三 module build/vet/test 全綠 - review:通過 0C/0M/6Mi/5Sug(.autoflow/05-implementation/review/ wp0-serial-routing-review.md);Minor #1 Rescan stale session 掛 WP-C 前置 Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
274 lines
7.5 KiB
Go
274 lines
7.5 KiB
Go
package kneron
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import (
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"encoding/json"
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"fmt"
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"os"
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"os/exec"
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"path/filepath"
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"strings"
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"time"
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"visiona-agent/server/internal/driver"
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)
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// ResolvePython finds the best Python interpreter for the given script path.
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//
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// Search order:
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// 1. VISIONA_PYTHON env var (highest priority — set by Wails shell when it
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// has already provisioned a bundled venv)
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// 2. Script-local venv / parent venv
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// 3. %APPDATA%\visiona-agent\runtime\venv (Windows installer seeded venv)
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// 4. ~/.local/share/visiona-agent/runtime/venv (Linux)
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// 5. ~/Library/Application Support/visiona-agent/runtime/venv (macOS)
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// 6. Legacy: ~/.edge-ai-platform/venv / %LOCALAPPDATA%\EdgeAIPlatform\venv
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// 7. System python3 / python
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func ResolvePython(scriptPath string) string {
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// 1. Environment variable override (set by Wails shell)
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if p := os.Getenv("VISIONA_PYTHON"); p != "" {
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if _, err := os.Stat(p); err == nil {
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return p
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}
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}
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scriptDir := filepath.Dir(scriptPath)
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parentDir := filepath.Dir(scriptDir)
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// 2. Script-local / parent venv
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var candidates []string
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for _, base := range []string{scriptDir, parentDir} {
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candidates = append(candidates,
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filepath.Join(base, "venv", "bin", "python3"), // Unix
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filepath.Join(base, "venv", "Scripts", "python.exe"), // Windows
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)
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}
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// 3-5. Platform-specific data dir (visiona-agent)
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if home, err := os.UserHomeDir(); err == nil {
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candidates = append(candidates,
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// Windows: %APPDATA%\visiona-agent\runtime\venv
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filepath.Join(os.Getenv("APPDATA"), "visiona-agent", "runtime", "venv", "Scripts", "python.exe"),
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// macOS
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filepath.Join(home, "Library", "Application Support", "visiona-agent", "runtime", "venv", "bin", "python3"),
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// Linux
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filepath.Join(home, ".local", "share", "visiona-agent", "runtime", "venv", "bin", "python3"),
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// 6. Legacy edge-ai-platform paths (backwards compat for upgrades)
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filepath.Join(home, ".edge-ai-platform", "venv", "bin", "python3"),
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filepath.Join(home, ".edge-ai-platform", "venv", "Scripts", "python.exe"),
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)
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}
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// 6b. Legacy %LOCALAPPDATA%\EdgeAIPlatform\venv
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if appData := os.Getenv("LOCALAPPDATA"); appData != "" {
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candidates = append(candidates,
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filepath.Join(appData, "EdgeAIPlatform", "venv", "Scripts", "python.exe"),
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)
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}
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for _, p := range candidates {
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if p == "" {
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continue
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}
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if _, err := os.Stat(p); err == nil {
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return p
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}
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}
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// 7. Fallback to system python
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for _, name := range []string{"python3", "python"} {
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if p, err := exec.LookPath(name); err == nil {
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return p
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}
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}
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return "python3"
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}
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// KneronVendorID is the USB vendor ID for Kneron devices.
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const KneronVendorID uint16 = 0x3231
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// Known Kneron product IDs.
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const (
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ProductIDKL520 = "0x0100"
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ProductIDKL720 = "0x0200"
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ProductIDKL720Alt = "0x0720"
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)
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// chipFromProductID returns the chip name and device type from the product_id
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// reported by the Python bridge scan result.
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func chipFromProductID(productID string) (chip string, deviceType string) {
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pid := strings.ToLower(strings.TrimSpace(productID))
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switch pid {
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case "0x0100":
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return "KL520", "kneron_kl520"
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case "0x0200", "0x0720":
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return "KL720", "kneron_kl720"
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default:
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// Unknown product — default to KL520 for USB Boot devices,
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// otherwise use the raw product ID as suffix.
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return "KL520", "kneron_kl520"
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}
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}
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// DetectDevices attempts to discover all connected Kneron devices (KL520, KL720, etc.)
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// by invoking the Python bridge script with a scan command. If Python or
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// the bridge script is not available, it returns an empty list.
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func DetectDevices(scriptPath string) []driver.DeviceInfo {
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// Try to run the bridge script with a scan command via a short-lived process.
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pythonBin := ResolvePython(scriptPath)
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cmd := exec.Command(pythonBin, scriptPath)
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cmd.Stdin = nil
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// Ensure libusb-1.0.dll can be found on Windows by adding the binary's
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// directory to PATH (the installer places the DLL there).
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scriptDir := filepath.Dir(scriptPath)
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installDir := filepath.Dir(scriptDir)
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cmd.Env = append(os.Environ(),
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fmt.Sprintf("PATH=%s;%s;%s", installDir, scriptDir, os.Getenv("PATH")),
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)
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stdinPipe, err := cmd.StdinPipe()
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if err != nil {
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return nil
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}
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stdoutPipe, err := cmd.StdoutPipe()
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if err != nil {
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stdinPipe.Close()
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return nil
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}
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if err := cmd.Start(); err != nil {
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return nil
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}
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defer func() {
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stdinPipe.Close()
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cmd.Process.Kill()
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cmd.Wait()
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}()
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// Read the ready signal.
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decoder := json.NewDecoder(stdoutPipe)
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var readyResp map[string]interface{}
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done := make(chan error, 1)
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go func() {
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done <- decoder.Decode(&readyResp)
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}()
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select {
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case err := <-done:
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if err != nil {
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return nil
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}
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case <-time.After(5 * time.Second):
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return nil
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}
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if status, ok := readyResp["status"].(string); !ok || status != "ready" {
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return nil
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}
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// Send the scan command.
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scanCmd, _ := json.Marshal(map[string]interface{}{"cmd": "scan"})
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scanCmd = append(scanCmd, '\n')
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if _, err := stdinPipe.Write(scanCmd); err != nil {
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return nil
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}
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// Read the scan response.
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var scanResp map[string]interface{}
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scanDone := make(chan error, 1)
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go func() {
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scanDone <- decoder.Decode(&scanResp)
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}()
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select {
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case err := <-scanDone:
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if err != nil {
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return nil
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}
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case <-time.After(5 * time.Second):
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return nil
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}
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// Parse detected devices from the response.
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devicesRaw, ok := scanResp["devices"].([]interface{})
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if !ok || len(devicesRaw) == 0 {
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return nil
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}
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return parseScanDevices(devicesRaw)
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}
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// parseScanDevices converts the raw `devices` array from the Python bridge
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// scan response into driver.DeviceInfo entries.
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//
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// Extracted from DetectDevices so the parsing logic is unit-testable without
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// spawning the Python bridge subprocess.
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//
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// Serial number (kn_number) handling:
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// - The bridge reports kn_number formatted "0x%08X" (SDK scan branch).
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// - A missing or non-string kn_number yields an empty SerialNumber; the
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// device is still registered (serial is additive metadata — a device must
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// never be dropped because its serial could not be read).
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// - The synthetic ID ("kl520-0") stays untouched: it remains the local
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// sessions routing key (flash/inference depend on it). The serial travels
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// in the new SerialNumber field only (ADR-018 serial routing).
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func parseScanDevices(devicesRaw []interface{}) []driver.DeviceInfo {
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// Track per-chip counters for naming (e.g. "KL520 #1", "KL720 #1").
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chipCount := map[string]int{}
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var devices []driver.DeviceInfo
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for _, devRaw := range devicesRaw {
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dev, ok := devRaw.(map[string]interface{})
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if !ok {
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continue
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}
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port := ""
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if p, ok := dev["port"].(string); ok {
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port = p
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}
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fw := ""
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if f, ok := dev["firmware"].(string); ok {
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fw = f
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}
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productID := ""
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if p, ok := dev["product_id"].(string); ok {
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productID = p
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}
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serial := ""
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if s, ok := dev["kn_number"].(string); ok {
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serial = strings.TrimSpace(s)
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}
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chip, devType := chipFromProductID(productID)
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chipCount[chip]++
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idx := chipCount[chip]
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info := driver.DeviceInfo{
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ID: fmt.Sprintf("%s-%d", strings.ToLower(chip), idx-1),
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Name: fmt.Sprintf("Kneron %s #%d", chip, idx),
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Type: devType,
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Port: port,
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SerialNumber: serial,
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VendorID: KneronVendorID,
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Status: driver.StatusDetected,
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FirmwareVer: fw,
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}
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devices = append(devices, info)
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}
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return devices
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}
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// DetectKL720Devices is a backward-compatible alias for DetectDevices.
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// Deprecated: Use DetectDevices instead.
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func DetectKL720Devices(scriptPath string) []driver.DeviceInfo {
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return DetectDevices(scriptPath)
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}
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