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cloud-ip-validator/internal/dashboard/dto.go
T

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package dashboard
import (
"fmt"
"strconv"
"time"
)
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// Wire shapes for control-api's /api/v1/admin/* surface, defined locally
// rather than importing internal/httpapi's (unexported) DTOs or
// internal/db's models — the same "each binary owns the wire shapes it
// needs" pattern already used by internal/probercore and internal/agentcore.
//
// The read-only list/detail endpoints (ipQueueItem, validator, check,
// event below) mirror internal/db model structs field-for-field: those
// endpoints marshal Go structs with no json tags, so encoding/json matches
// fields by name (case-insensitively) with no tags needed here either.
// Everything else mirrors internal/httpapi/dto_admin.go's snake_case tags.
type statusResponse struct {
TotalIPs int `json:"total_ips"`
IPsByState map[string]int `json:"ips_by_state"`
TotalValidators int `json:"total_validators"`
// ResultsByOverall counts finished addresses by overall result
// (pass/partial/fail/cancelled).
ResultsByOverall map[string]int `json:"results_by_overall"`
}
// Terminal queue states: the address needs no further processing. Shared by
// the overview progress indicator; "occupied" counts as terminal too (the
// check cycle never ran because the floating IP was already bound).
var terminalStates = []string{"done", "failed", "occupied"}
// activeStates are the states of an address that is being worked on right
// now (everything between "queued" and a terminal state).
var activeStates = []string{"assigning_fip", "awaiting_self_check", "checking", "aggregating"}
// sumStates adds up the counts of the given states in a status breakdown.
func sumStates(byState map[string]int, states []string) int {
n := 0
for _, s := range states {
n += byState[s]
}
return n
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}
type ipQueueItem struct {
ID int64
IPAddress string
Sequence int
State string
OwnerValidatorID *string
FIPID string
AttemptNumber int
RetryCount int
LeaseExpiresAt *time.Time
EgressComplete bool
OverallResult string
AssignedAt *time.Time
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FIPAssociatedAt *time.Time
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AggregatedAt *time.Time
FIPReleasedAt *time.Time
CreatedAt time.Time
UpdatedAt time.Time
}
type check struct {
ID int64
RegistryID int64
CycleID int
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IPID int64
IPAddress string
AttemptNumber int
ValidatorID string
Source string
CheckType string
Target string
Success bool
LatencyMS int64
Detail string
CheckedAt time.Time
}
type event struct {
ID int64
SourceType string
SourceID string
IPID *int64
EventType string
Payload string
OccurredAt time.Time
}
type ipDetailResponse struct {
IP ipQueueItem `json:"ip"`
Checks []check `json:"checks"`
Events []event `json:"events"`
}
type validator struct {
ValidatorID string
Hostname string
OSPortID string
State string
CurrentIPID *int64
AgentVersion string
LastHeartbeatAt *time.Time
}
type submitIPsResponse struct {
Added []string `json:"added"`
Requeued []string `json:"requeued"`
Reordered []string `json:"reordered"`
SkippedInProgress []string `json:"skipped_in_progress"`
}
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type deleteIPsResponse struct {
Deleted []string `json:"deleted"`
NotFound []string `json:"not_found"`
}
type clearQueueResponse struct {
Deleted []string `json:"deleted"`
Count int `json:"count"`
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}
// ipsPage is the paginated envelope of GET /admin/ips (sent when the request
// carries `limit`).
type ipsPage struct {
Items []ipQueueItem `json:"items"`
Total int `json:"total"`
Limit int `json:"limit"`
Offset int `json:"offset"`
}
// registryPage is the paginated envelope of GET /admin/registry.
type registryPage struct {
Items []registryItem `json:"items"`
Total int `json:"total"`
Limit int `json:"limit"`
Offset int `json:"offset"`
}
// scanStatusDTO is the state of control-api's background floating-IP scan job
// (POST/GET /api/v1/admin/ips/scan).
type scanStatusDTO struct {
State string `json:"state"`
Running bool `json:"running"`
DryRun bool `json:"dry_run"`
Pages int `json:"pages"`
Discovered int `json:"discovered"`
Free int `json:"free"`
Added int `json:"added"`
Requeued int `json:"requeued"`
Reordered int `json:"reordered"`
SkippedInProgress int `json:"skipped_in_progress"`
StartedAt *time.Time `json:"started_at"`
FinishedAt *time.Time `json:"finished_at"`
Error string `json:"error"`
}
// Finished reports a job that has run to a terminal state (as opposed to
// "idle" = never started, or still running).
func (s scanStatusDTO) Finished() bool {
if s.Running {
return false
}
switch s.State {
case "done", "error", "cancelled":
return true
}
return false
}
// StateLabel is the Russian description of the job's state.
func (s scanStatusDTO) StateLabel() string {
switch s.State {
case "clearing":
return "очистка"
case "listing":
return "читаются страницы"
case "enqueuing":
return "ставятся в очередь"
case "done":
return "готово"
case "error":
return "ошибка"
case "cancelled":
return "отменено"
case "idle", "":
return "нет активного сканирования"
default:
return s.State
}
}
// PillClass picks the pill style for the state.
func (s scanStatusDTO) PillClass() string {
switch s.State {
case "done":
return "pill-success"
case "error":
return "pill-danger"
case "cancelled":
return "pill-cancel"
case "clearing", "listing", "enqueuing":
return "pill-info"
default:
return "pill-neutral"
}
}
// Handled is how many of the free addresses the enqueuing phase has already
// processed.
func (s scanStatusDTO) Handled() int {
return s.Added + s.Requeued + s.Reordered + s.SkippedInProgress
}
// Indeterminate is true while the amount of work is not known yet.
func (s scanStatusDTO) Indeterminate() bool {
return s.State == "clearing" || s.State == "listing" || (s.State == "enqueuing" && s.Free <= 0)
}
// Elapsed is the human-readable run time: until now while running, until
// finished_at afterwards; empty when the job never started.
func (s scanStatusDTO) Elapsed() string {
if s.StartedAt == nil {
return ""
}
end := time.Now()
if !s.Running && s.FinishedAt != nil {
end = *s.FinishedAt
}
return fmtDuration(end.Sub(*s.StartedAt))
}
// fmtDuration renders a duration in Russian as "2 ч 05 мин", "3 мин 07 с" or
// "42 с" — coarse on purpose (progress/ETA display).
func fmtDuration(d time.Duration) string {
if d < 0 {
d = 0
}
sec := int(d.Round(time.Second) / time.Second)
h, m, sc := sec/3600, (sec%3600)/60, sec%60
switch {
case h > 0:
return fmt.Sprintf("%d ч %02d мин", h, m)
case m > 0:
return fmt.Sprintf("%d мин %02d с", m, sc)
default:
return fmt.Sprintf("%d с", sc)
}
}
// registryItem is one row of the durable per-address registry — see
// httpapi's registryDTO. Survives an address being deleted from the check
// queue and later re-added, unlike ipQueueItem above.
type registryItem struct {
IPAddress string `json:"ip_address"`
FirstSeenAt time.Time `json:"first_seen_at"`
LastSeenAt time.Time `json:"last_seen_at"`
TotalCycles int `json:"total_cycles"`
LastResult string `json:"last_result"`
LastCheckedAt *time.Time `json:"last_checked_at"`
InQueue bool `json:"in_queue"`
CurrentState string `json:"current_state"`
}
type registryHistoryResponse struct {
Registry registryItem `json:"registry"`
Checks []check `json:"checks"`
}
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type validatorDTO struct {
ValidatorID string `json:"validator_id"`
Hostname string `json:"hostname"`
OSPortID string `json:"os_port_id"`
State string `json:"state"`
LastHeartbeatAt *time.Time `json:"last_heartbeat_at"`
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}
type siteDTO struct {
Index int `json:"index"`
SiteID string `json:"site_id"`
Hostname string `json:"hostname"`
State string `json:"state"`
LastHeartbeatAt *time.Time `json:"last_heartbeat_at"`
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}
type targetGroupDTO struct {
Name string `json:"name"`
Targets []string `json:"targets"`
}
type checkTypeDTO struct {
Name string `json:"name"`
Enabled bool `json:"enabled"`
Targets []string `json:"targets"`
}
type errorResponse struct {
Error string `json:"error"`
}
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type orchestratorSettingsDTO struct {
FIPSettleSeconds int `json:"fip_settle_seconds"`
HistoryRetentionCycles int `json:"history_retention_cycles"`
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}
type inboundChecksDTO struct {
Ports []int `json:"ports"`
ICMP bool `json:"icmp"`
}
// autoCycleDTO mirrors internal/httpapi's autoCycleDTO — the status and
// parameters of the automatic check cycle (/api/v1/admin/auto-cycle).
type autoCycleDTO struct {
Enabled bool `json:"enabled"`
IntervalSeconds int `json:"interval_seconds"`
MaxRunSeconds int `json:"max_run_seconds"`
Phase string `json:"phase"`
RunStartedAt *time.Time `json:"run_started_at"`
NextRunAt *time.Time `json:"next_run_at"`
LastRunStartedAt *time.Time `json:"last_run_started_at"`
LastRunFinishedAt *time.Time `json:"last_run_finished_at"`
LastOutcome string `json:"last_outcome"`
LastError string `json:"last_error"`
LastScannedFree int `json:"last_scanned_free"`
RunsTotal int `json:"runs_total"`
}
// secondsToMinutes renders seconds as minutes for the settings form: a
// whole number when divisible by 60, otherwise a decimal ("1.5").
func secondsToMinutes(sec int) string {
return strconv.FormatFloat(float64(sec)/60, 'f', -1, 64)
}
// IntervalMinutes and MaxRunMinutes are used by the settings template: the
// UI works in minutes, the API in seconds.
func (a autoCycleDTO) IntervalMinutes() string { return secondsToMinutes(a.IntervalSeconds) }
func (a autoCycleDTO) MaxRunMinutes() string { return secondsToMinutes(a.MaxRunSeconds) }
// PhaseLabel is the Russian description of the current phase.
func (a autoCycleDTO) PhaseLabel() string {
switch a.Phase {
case "scanning":
return "сканирование Floating IP"
case "running":
return "идёт проверка"
case "waiting":
return "пауза между циклами"
case "idle":
return "ожидает запуска"
default:
return a.Phase
}
}
// OutcomeLabel is the Russian description of the last cycle's outcome.
func (a autoCycleDTO) OutcomeLabel() string {
switch a.LastOutcome {
case "completed":
return "завершён"
case "no_free_ips":
return "нет свободных IP"
case "timeout":
return "превышено время ожидания"
case "error":
return "ошибка"
case "stopped":
return "остановлен"
case "":
return "—"
default:
return a.LastOutcome
}
}
// OutcomePillClass picks the pill style for the last outcome.
func (a autoCycleDTO) OutcomePillClass() string {
switch a.LastOutcome {
case "completed":
return "pill-success"
case "no_free_ips", "timeout", "stopped":
return "pill-warning"
case "error":
return "pill-danger"
default:
return "pill-neutral"
}
}