8130c344cc
Add "Eltávolítás" to remove deployed (non-orphaned) stacks — reverts them to "Nincs telepítve" while preserving templates for redeploy. Modal offers HDD data and backup data cleanup choices. Auto-inject missing deploy fields (secrets, domains) into existing app.yaml when templates are updated via sync or on controller startup. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
485 lines
15 KiB
Go
485 lines
15 KiB
Go
package stacks
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import (
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"bufio"
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"context"
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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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)
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// DeleteResponse holds the result of a stack deletion (orphan delete).
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type DeleteResponse struct {
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Deleted string `json:"deleted"`
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VolumesRemoved []string `json:"volumes_removed"`
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HDDPathsRemoved []string `json:"hdd_paths_removed"`
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HDDPathsPreserved []string `json:"hdd_paths_preserved"`
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}
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// RemoveResponse holds the result of removing a deployed (non-orphaned) stack.
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type RemoveResponse struct {
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Removed string `json:"removed"`
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VolumesRemoved []string `json:"volumes_removed"`
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HDDPathsRemoved []string `json:"hdd_paths_removed"`
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HDDPathsPreserved []string `json:"hdd_paths_preserved"`
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BackupPathsRemoved []string `json:"backup_paths_removed,omitempty"`
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}
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// BackupDataResponse holds information about backup data associated with a stack.
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type BackupDataResponse struct {
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Stack string `json:"stack"`
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BackupPaths []HDDPath `json:"backup_paths"` // reuses HDDPath (path, size, exists)
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HasBackups bool `json:"has_backups"`
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}
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// HDDDataResponse holds information about HDD data associated with a stack.
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type HDDDataResponse struct {
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Stack string `json:"stack"`
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HDDPaths []HDDPath `json:"hdd_paths"`
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HasHDDData bool `json:"has_hdd_data"`
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}
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// HDDPath represents a single HDD bind mount path and its status.
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type HDDPath struct {
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Path string `json:"path"`
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SizeBytes int64 `json:"size_bytes"`
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SizeHuman string `json:"size_human"`
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Exists bool `json:"exists"`
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}
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// ProtectedHDDPaths returns the set of top-level HDD directories that must never be deleted.
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func ProtectedHDDPaths(hddPath string) map[string]bool {
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if hddPath == "" {
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return nil
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}
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return map[string]bool{
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hddPath: true,
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filepath.Join(hddPath, "appdata"): true,
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filepath.Join(hddPath, "backups"): true,
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filepath.Join(hddPath, "media"): true,
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filepath.Join(hddPath, "Dokumentumok"): true,
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}
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}
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// DeleteStack removes an orphaned stack: stops containers, removes volumes,
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// optionally removes HDD data, and deletes the stack directory.
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func (m *Manager) DeleteStack(name string, removeHDDData bool) (*DeleteResponse, error) {
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// Safety: never delete protected stacks
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if m.cfg.IsProtectedStack(name) {
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return nil, fmt.Errorf("stack %q is protected and cannot be deleted", name)
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}
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stack, ok := m.GetStack(name)
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if !ok {
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return nil, fmt.Errorf("stack %q not found", name)
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}
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// Must be orphaned
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if !stack.Orphaned {
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return nil, fmt.Errorf("stack %q is not orphaned — only orphaned stacks can be deleted", name)
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}
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// Must be stopped (not running)
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if stack.State == StateRunning || stack.State == StateStarting || stack.State == StateRestarting {
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return nil, fmt.Errorf("stack %q is still running — stop it first before deleting", name)
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}
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stackDir := filepath.Dir(stack.ComposePath)
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hddPath := m.cfg.Paths.HDDPath
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m.logger.Printf("[INFO] Deleting orphaned stack: %s (removeHDDData=%v)", name, removeHDDData)
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start := time.Now()
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resp := &DeleteResponse{
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Deleted: name,
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}
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// Step 1: Parse compose file for HDD bind mounts
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hddMounts := ParseComposeHDDMounts(stack.ComposePath, hddPath)
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// Step 2: Run docker compose down --rmi local --volumes
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// H14: Return error if docker compose down fails — continuing would leave orphaned containers.
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env := m.stackEnv(stackDir)
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output, err := m.composeExecCustomEnv(stackDir, env, "down", "--rmi", "local", "--volumes")
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if err != nil {
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m.logger.Printf("[ERROR] docker compose down for %s failed: %v (output: %s)", name, err, truncateStr(output, 200))
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return resp, fmt.Errorf("docker compose down failed for %s: %w", name, err)
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}
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// Step 3: Identify removed volumes from compose output
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for _, line := range strings.Split(output, "\n") {
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line = strings.TrimSpace(line)
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if strings.Contains(line, "Removing volume") || strings.Contains(line, "Volume") {
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resp.VolumesRemoved = append(resp.VolumesRemoved, line)
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}
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}
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// Step 4: Handle HDD data
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protected := ProtectedHDDPaths(hddPath)
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for _, mount := range hddMounts {
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// Safety: never delete protected top-level dirs
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cleanPath := filepath.Clean(mount)
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if protected != nil && protected[cleanPath] {
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m.logger.Printf("[WARN] Refusing to delete protected HDD path: %s", cleanPath)
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continue
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}
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if _, err := os.Stat(cleanPath); os.IsNotExist(err) {
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continue // path doesn't exist, nothing to do
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}
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if removeHDDData {
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// Get size before removal
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sizeHuman := getDirSizeHuman(cleanPath)
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if err := os.RemoveAll(cleanPath); err != nil {
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m.logger.Printf("[ERROR] Failed to remove HDD data %s: %v", cleanPath, err)
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} else {
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m.logger.Printf("[INFO] Removed HDD data: %s (%s)", cleanPath, sizeHuman)
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resp.HDDPathsRemoved = append(resp.HDDPathsRemoved, fmt.Sprintf("%s (%s)", cleanPath, sizeHuman))
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}
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} else {
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sizeHuman := getDirSizeHuman(cleanPath)
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resp.HDDPathsPreserved = append(resp.HDDPathsPreserved, fmt.Sprintf("%s (%s)", cleanPath, sizeHuman))
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}
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}
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// Step 5: Remove stack directory
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if err := os.RemoveAll(stackDir); err != nil {
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m.logger.Printf("[ERROR] Failed to remove stack directory %s: %v", stackDir, err)
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return resp, fmt.Errorf("failed to remove stack directory: %w", err)
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}
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m.logger.Printf("[INFO] Stack %s deleted successfully (took %.1fs)", name, time.Since(start).Seconds())
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// Step 6: Remove from in-memory map and rescan
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m.mu.Lock()
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delete(m.stacks, name)
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m.mu.Unlock()
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if err := m.ScanStacks(); err != nil {
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m.logger.Printf("[WARN] Rescan after delete failed: %v", err)
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}
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return resp, nil
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}
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// GetStackHDDData returns information about HDD bind mounts for a stack.
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func (m *Manager) GetStackHDDData(name string) (*HDDDataResponse, error) {
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stack, ok := m.GetStack(name)
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if !ok {
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return nil, fmt.Errorf("stack %q not found", name)
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}
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hddPath := m.cfg.Paths.HDDPath
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resp := &HDDDataResponse{
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Stack: name,
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}
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if hddPath == "" {
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return resp, nil
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}
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mounts := ParseComposeHDDMounts(stack.ComposePath, hddPath)
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protected := ProtectedHDDPaths(hddPath)
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for _, mount := range mounts {
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cleanPath := filepath.Clean(mount)
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// Skip protected top-level dirs
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if protected != nil && protected[cleanPath] {
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continue
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}
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hddItem := HDDPath{
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Path: cleanPath,
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}
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info, err := os.Stat(cleanPath)
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if err != nil {
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hddItem.Exists = false
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} else {
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hddItem.Exists = true
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if info.IsDir() {
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hddItem.SizeBytes = getDirSizeBytes(cleanPath)
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hddItem.SizeHuman = getDirSizeHuman(cleanPath)
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}
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}
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resp.HDDPaths = append(resp.HDDPaths, hddItem)
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}
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resp.HasHDDData = len(resp.HDDPaths) > 0
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return resp, nil
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}
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// RemoveStack removes a deployed (non-orphaned) stack: stops containers, removes
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// volumes, optionally removes HDD data and backup data, then removes app.yaml
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// so the stack reverts to "not deployed" state. The template files (docker-compose.yml,
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// .felhom.yml) are preserved so the user can redeploy.
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func (m *Manager) RemoveStack(name string, removeHDDData bool, backupPathsToRemove []string) (*RemoveResponse, error) {
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// Safety: never remove protected stacks
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if m.cfg.IsProtectedStack(name) {
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return nil, fmt.Errorf("stack %q is protected and cannot be removed", name)
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}
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stack, ok := m.GetStack(name)
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if !ok {
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return nil, fmt.Errorf("stack %q not found", name)
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}
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// Must be deployed
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if !stack.Deployed {
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return nil, fmt.Errorf("stack %q is not deployed", name)
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}
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// Must be stopped (not running)
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if stack.State == StateRunning || stack.State == StateStarting || stack.State == StateRestarting {
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return nil, fmt.Errorf("stack %q is still running — stop it first before removing", name)
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}
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stackDir := filepath.Dir(stack.ComposePath)
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hddPath := m.cfg.Paths.HDDPath
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m.logger.Printf("[INFO] Removing deployed stack: %s (removeHDDData=%v, backupPaths=%d)", name, removeHDDData, len(backupPathsToRemove))
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start := time.Now()
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resp := &RemoveResponse{
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Removed: name,
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}
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// Step 1: Parse compose file for HDD bind mounts
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hddMounts := ParseComposeHDDMounts(stack.ComposePath, hddPath)
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// Step 2: Run docker compose down --volumes (keep images for potential redeploy)
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env := m.stackEnv(stackDir)
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output, err := m.composeExecCustomEnv(stackDir, env, "down", "--volumes")
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if err != nil {
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m.logger.Printf("[ERROR] docker compose down for %s failed: %v (output: %s)", name, err, truncateStr(output, 200))
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return resp, fmt.Errorf("docker compose down failed for %s: %w", name, err)
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}
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// Step 3: Identify removed volumes from compose output
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for _, line := range strings.Split(output, "\n") {
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line = strings.TrimSpace(line)
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if strings.Contains(line, "Removing volume") || strings.Contains(line, "Volume") {
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resp.VolumesRemoved = append(resp.VolumesRemoved, line)
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}
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}
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// Step 4: Handle HDD data
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protected := ProtectedHDDPaths(hddPath)
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for _, mount := range hddMounts {
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cleanPath := filepath.Clean(mount)
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if protected != nil && protected[cleanPath] {
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m.logger.Printf("[WARN] Refusing to delete protected HDD path: %s", cleanPath)
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continue
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}
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if _, err := os.Stat(cleanPath); os.IsNotExist(err) {
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continue
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}
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if removeHDDData {
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sizeHuman := getDirSizeHuman(cleanPath)
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if err := os.RemoveAll(cleanPath); err != nil {
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m.logger.Printf("[ERROR] Failed to remove HDD data %s: %v", cleanPath, err)
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} else {
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m.logger.Printf("[INFO] Removed HDD data: %s (%s)", cleanPath, sizeHuman)
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resp.HDDPathsRemoved = append(resp.HDDPathsRemoved, fmt.Sprintf("%s (%s)", cleanPath, sizeHuman))
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}
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} else {
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sizeHuman := getDirSizeHuman(cleanPath)
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resp.HDDPathsPreserved = append(resp.HDDPathsPreserved, fmt.Sprintf("%s (%s)", cleanPath, sizeHuman))
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}
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}
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// Step 5: Handle backup data cleanup
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for _, bkPath := range backupPathsToRemove {
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cleanPath := filepath.Clean(bkPath)
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if _, err := os.Stat(cleanPath); os.IsNotExist(err) {
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continue
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}
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sizeHuman := getDirSizeHuman(cleanPath)
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if err := os.RemoveAll(cleanPath); err != nil {
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m.logger.Printf("[ERROR] Failed to remove backup data %s: %v", cleanPath, err)
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} else {
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m.logger.Printf("[INFO] Removed backup data: %s (%s)", cleanPath, sizeHuman)
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resp.BackupPathsRemoved = append(resp.BackupPathsRemoved, fmt.Sprintf("%s (%s)", cleanPath, sizeHuman))
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}
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}
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// Step 6: Remove app.yaml only (keep template files for redeploy)
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appYAMLPath := filepath.Join(stackDir, "app.yaml")
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if err := os.Remove(appYAMLPath); err != nil && !os.IsNotExist(err) {
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m.logger.Printf("[ERROR] Failed to remove %s: %v", appYAMLPath, err)
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return resp, fmt.Errorf("failed to remove app.yaml: %w", err)
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}
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m.logger.Printf("[INFO] Stack %s removed successfully (took %.1fs)", name, time.Since(start).Seconds())
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// Step 7: Update in-memory state and rescan
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m.mu.Lock()
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if s, ok := m.stacks[name]; ok {
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s.Deployed = false
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s.AppConfig = nil
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}
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m.mu.Unlock()
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if err := m.ScanStacks(); err != nil {
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m.logger.Printf("[WARN] Rescan after remove failed: %v", err)
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}
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return resp, nil
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}
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// GetStackBackupData returns information about backup data for a stack.
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// drivePath is the app's home drive (HDD or system data path).
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func (m *Manager) GetStackBackupData(name string, drivePath string) (*BackupDataResponse, error) {
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_, ok := m.GetStack(name)
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if !ok {
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return nil, fmt.Errorf("stack %q not found", name)
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}
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resp := &BackupDataResponse{
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Stack: name,
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}
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if drivePath == "" {
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return resp, nil
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}
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// Check DB dump directory: <drive>/backups/primary/<stack>/db-dumps
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dbDumpPath := filepath.Join(drivePath, "backups", "primary", name, "db-dumps")
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resp.BackupPaths = append(resp.BackupPaths, buildPathInfo(dbDumpPath))
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// Check cross-drive rsync directory: <drive>/backups/secondary/<stack>/rsync
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rsyncPath := filepath.Join(drivePath, "backups", "secondary", name, "rsync")
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resp.BackupPaths = append(resp.BackupPaths, buildPathInfo(rsyncPath))
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for _, p := range resp.BackupPaths {
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if p.Exists {
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resp.HasBackups = true
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break
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}
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}
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return resp, nil
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}
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// buildPathInfo creates an HDDPath with size info for a given path.
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func buildPathInfo(path string) HDDPath {
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item := HDDPath{Path: path}
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info, err := os.Stat(path)
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if err != nil {
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item.Exists = false
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return item
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}
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item.Exists = true
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if info.IsDir() {
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item.SizeBytes = getDirSizeBytes(path)
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item.SizeHuman = getDirSizeHuman(path)
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}
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return item
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}
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// ParseComposeHDDMounts reads a docker-compose.yml and extracts host paths
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// that reference the HDD path from volume bind mounts.
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func ParseComposeHDDMounts(composePath, hddPath string) []string {
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if hddPath == "" {
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return nil
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}
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data, err := os.ReadFile(composePath)
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if err != nil {
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return nil
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}
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var mounts []string
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seen := make(map[string]bool)
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scanner := bufio.NewScanner(strings.NewReader(string(data)))
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inVolumes := false
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for scanner.Scan() {
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line := strings.TrimSpace(scanner.Text())
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// Track when we're in a volumes section (service-level, not top-level)
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if strings.HasPrefix(line, "volumes:") {
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inVolumes = true
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continue
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}
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if inVolumes && !strings.HasPrefix(line, "-") && !strings.HasPrefix(line, "#") && line != "" {
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inVolumes = false
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}
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if !inVolumes || !strings.HasPrefix(line, "- ") {
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continue
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}
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// Parse bind mount: "- /host/path:/container/path:options"
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mountStr := strings.TrimPrefix(line, "- ")
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mountStr = strings.Trim(mountStr, "\"'")
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parts := strings.SplitN(mountStr, ":", 3)
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if len(parts) < 2 {
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continue
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}
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hostPath := parts[0]
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// Resolve ${HDD_PATH} variable reference
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hostPath = strings.ReplaceAll(hostPath, "${HDD_PATH}", hddPath)
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// C10: Clean path BEFORE prefix check to prevent traversal like ${HDD_PATH}/../../etc/passwd.
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cleanPath := filepath.Clean(hostPath)
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cleanHDD := filepath.Clean(hddPath)
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// Check if this is an HDD mount (must be cleanHDD itself or a direct subpath)
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if cleanPath != cleanHDD && !strings.HasPrefix(cleanPath, cleanHDD+string(filepath.Separator)) {
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continue
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}
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if !seen[cleanPath] {
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seen[cleanPath] = true
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mounts = append(mounts, cleanPath)
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}
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}
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return mounts
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}
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// getDirSizeHuman returns a human-readable size string for a directory using du.
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func getDirSizeHuman(path string) string {
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cmd := exec.Command("du", "-sh", path)
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output, err := cmd.Output()
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if err != nil {
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return "unknown"
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}
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fields := strings.Fields(string(output))
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if len(fields) > 0 {
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return fields[0]
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}
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return "unknown"
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}
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// getDirSizeBytes returns the total size in bytes for a directory.
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func getDirSizeBytes(path string) int64 {
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ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
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defer cancel()
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cmd := exec.CommandContext(ctx, "du", "-sb", path)
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output, err := cmd.Output()
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if err != nil {
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return 0
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}
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fields := strings.Fields(string(output))
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if len(fields) > 0 {
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var size int64
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if n, _ := fmt.Sscanf(fields[0], "%d", &size); n != 1 {
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return 0
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}
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return size
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}
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return 0
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}
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