Files
pansy/internal/api/api.go
T
steveandClaude Opus 4.8 5a3fc20fc7
Build image / build-and-push (push) Successful in 5s
Say at startup why the assistant is off
Verifying the live deploy, the agent routes stayed 404 while every other route
from the same build answered — so the binary was current and Agent.Ready() was
simply false. Working out which of the three conditions failed meant reading the
source, because pansy logged the enabled case and said nothing at all about the
disabled one.

It now logs which condition failed, with the hint that actually matters: an
orchestrator's stack-level environment is not the container's environment, and
a key set in one but not passed through to the other looks exactly like a key
that was never set. README says the same thing next to the compose example.

Co-Authored-By: Claude Opus 4.8 (1M context) <[email protected]>
Claude-Session: https://claude.ai/code/session_01H3zbym8Doka2d7D48maSgZ
2026-07-21 02:40:40 -04:00

204 lines
8.7 KiB
Go

// Package api wires pansy's HTTP surface: a gin engine with structured logging
// and panic recovery, the versioned JSON API under /api/v1, and (via spa.go) the
// embedded single-page-app fallback. Handlers stay thin — decode, call the
// service layer, encode — so all business logic and permission checks live in
// internal/service (added by later issues).
package api
import (
"log/slog"
"net/http"
"github.com/gin-gonic/gin"
sloggin "github.com/samber/slog-gin"
"gitea.stevedudenhoeffer.com/steve/pansy/internal/agent"
"gitea.stevedudenhoeffer.com/steve/pansy/internal/config"
"gitea.stevedudenhoeffer.com/steve/pansy/internal/service"
)
// handlers carries the dependencies shared by every HTTP handler. Handlers stay
// thin: decode the request, call a service method, encode the result.
type handlers struct {
cfg *config.Config
svc *service.Service
oidc *oidcClient // nil unless OIDC is configured (see config.OIDCReady)
// agent is nil unless the assistant is configured; the chat routes are only
// registered when it isn't, so a handler never has to check.
agent *agent.Runner
}
// New builds the gin engine with the standard middleware stack and registers the
// API routes against the given service. The embedded SPA fallback is registered
// separately by the caller via RegisterSPA (see spa.go) so the API can be built
// and tested without a web build present.
func New(cfg *config.Config, svc *service.Service) *gin.Engine {
gin.SetMode(gin.ReleaseMode)
r := gin.New()
r.Use(sloggin.New(slog.Default()), gin.Recovery())
if err := r.SetTrustedProxies(cfg.TrustedProxies); err != nil {
// Do not leave gin's trust-everyone default active on a parse failure —
// that would let any client spoof X-Forwarded-For. Fall back to trusting
// no proxies, which is also the behavior when none are configured.
slog.Error("api: invalid trusted proxies, trusting none", "error", err)
_ = r.SetTrustedProxies(nil)
}
h := &handlers{cfg: cfg, svc: svc}
v1 := r.Group("/api/v1")
// CSRF defense for every state-changing API call (no-op unless PANSY_BASE_URL
// is set; see csrfGuard).
v1.Use(h.csrfGuard())
v1.GET("/healthz", healthz)
// What this instance can actually do, so the UI offers only what works. The
// agent routes 404 when unconfigured; without this the client would have to
// probe for a 404 to find that out, and a dead button is worse than no button.
v1.GET("/capabilities", func(c *gin.Context) {
c.JSON(http.StatusOK, gin.H{"agent": cfg.Agent.Ready()})
})
// Auth endpoints are exempt from requireAuth (you can't be logged in yet);
// /me is the one that needs a session. Feature routers in later issues attach
// h.requireAuth() to their own protected groups.
auth := v1.Group("/auth")
auth.POST("/register", h.register)
auth.POST("/login", h.login)
auth.POST("/logout", h.logout)
auth.GET("/providers", h.providers)
auth.GET("/me", h.requireAuth(), h.me)
// OIDC routes exist only when OIDC can actually be offered, so an unconfigured
// instance 404s them (matching what /auth/providers advertises). Provider
// discovery is lazy (first request), so a briefly-unreachable IdP doesn't stop
// the server — or local auth — from starting.
switch {
case cfg.OIDCReady():
h.oidc = newOIDCClient(cfg)
auth.GET("/oidc/login", h.oidcLogin)
auth.GET("/oidc/callback", h.oidcCallback)
case cfg.OIDC.Enabled():
slog.Warn("api: OIDC is configured but PANSY_BASE_URL is unset; OIDC disabled (an absolute redirect URI is required)")
}
// Feature resources sit behind requireAuth, which resolves the session cookie
// to the actor the service layer's permission checks key off.
gardens := v1.Group("/gardens", h.requireAuth())
gardens.GET("", h.listGardens)
gardens.POST("", h.createGarden)
gardens.GET("/:id", h.getGarden)
gardens.PATCH("/:id", h.updateGarden)
gardens.DELETE("/:id", h.deleteGarden)
gardens.POST("/:id/copy", h.copyGarden) // duplicate a garden the actor owns
gardens.GET("/:id/full", h.getGardenFull) // one-shot editor load
gardens.GET("/:id/history", h.getGardenHistory) // change sets, newest first
gardens.GET("/:id/years", h.getGardenYears) // years with planting data
gardens.POST("/:id/objects", h.createObject)
// The grow journal hangs off a garden even for entries about one bed or one
// plop, so it inherits the ordinary garden-role check.
gardens.GET("/:id/journal", h.listJournal)
gardens.POST("/:id/journal", h.createJournalEntry)
gardens.GET("/:id/journal/counts", h.getJournalCounts)
// Sharing (owner-managed; a recipient may remove their own share).
gardens.GET("/:id/shares", h.listShares)
gardens.POST("/:id/shares", h.addShare)
gardens.PATCH("/:id/shares/:userId", h.updateShare)
gardens.DELETE("/:id/shares/:userId", h.removeShare)
// Public read-only share link (owner-managed): GET reports state, POST
// enables/rotates, DELETE disables. The link itself is served unauthenticated
// below.
gardens.GET("/:id/share-link", h.getShareLink)
gardens.POST("/:id/share-link", h.createShareLink)
gardens.DELETE("/:id/share-link", h.deleteShareLink)
// Objects are addressed by their own id; the service resolves the owning
// garden for the permission check.
objects := v1.Group("/objects", h.requireAuth())
objects.PATCH("/:id", h.updateObject)
objects.DELETE("/:id", h.deleteObject)
objects.POST("/:id/plantings", h.createPlanting) // place a plop in this object
// Plantings ("plops") are addressed by their own id; the service resolves the
// owning object/garden for the permission check.
plantings := v1.Group("/plantings", h.requireAuth())
plantings.PATCH("/:id", h.updatePlanting)
plantings.DELETE("/:id", h.deletePlanting)
// The garden assistant, registered only when it can actually be offered —
// the same shape as OIDC. An instance with no API key serves the app
// normally and simply doesn't have these routes.
if !cfg.Agent.Ready() {
// Say WHY, at startup, in the logs an operator is already looking at.
// Someone who set the key and sees no assistant otherwise has nothing to
// check — and "is the variable reaching the container?" is exactly the
// question they need answered.
slog.Info("api: garden assistant disabled",
"enabled", cfg.Agent.Enabled,
"hasApiKey", cfg.Agent.OllamaCloudAPIKey != "",
"model", cfg.Agent.Model,
"hint", "needs OLLAMA_CLOUD_API_KEY set in the container's environment (not just the stack's)")
}
if cfg.Agent.Ready() {
runner, err := agent.NewRunner(svc, cfg)
if err != nil {
// Configured but unusable (an unresolvable model spec, say). Log it and
// carry on without the assistant rather than refusing to start: a
// garden planner that won't boot because of a chat feature is worse
// than one without chat.
slog.Error("api: garden assistant disabled", "error", err)
} else {
h.agent = runner
agentGroup := v1.Group("/agent", h.requireAuth())
agentGroup.POST("/chat", h.agentChat)
gardens.GET("/:id/agent/history", h.getAgentHistory)
gardens.DELETE("/:id/agent/history", h.deleteAgentHistory)
slog.Info("api: garden assistant enabled", "model", cfg.Agent.Model)
}
}
// Undo. A change set is addressed by its own id; the service resolves the
// owning garden for the permission check, same as objects and plantings.
changeSets := v1.Group("/change-sets", h.requireAuth())
changeSets.POST("/:id/revert", h.revertChangeSet)
// Journal entries are addressed by their own id; the service resolves the
// owning garden for the permission check, same as objects and plantings.
journal := v1.Group("/journal", h.requireAuth())
journal.PATCH("/:id", h.updateJournalEntry)
journal.DELETE("/:id", h.deleteJournalEntry)
// Plant catalog: built-ins (seeded, read-only) plus the actor's own rows.
plants := v1.Group("/plants", h.requireAuth())
plants.GET("", h.listPlants)
plants.POST("", h.createPlant)
plants.PATCH("/:id", h.updatePlant)
plants.DELETE("/:id", h.deletePlant)
// Seed lots: what the actor bought, and what's left. Private to the buyer,
// so these hang off the session actor rather than off a garden.
seedLots := v1.Group("/seed-lots", h.requireAuth())
seedLots.GET("", h.listSeedLots)
seedLots.POST("", h.createSeedLot)
seedLots.GET("/:id", h.getSeedLot)
seedLots.PATCH("/:id", h.updateSeedLot)
seedLots.DELETE("/:id", h.deleteSeedLot)
// Public, unauthenticated read of a garden by its share token. Deliberately
// NOT behind requireAuth: the token is the capability, so a logged-out visitor
// opens a shared link without being redirected to /login or OIDC. Only GET,
// only the read-only /full payload — never a mutation.
public := v1.Group("/public")
public.GET("/gardens/:token", h.getPublicGarden)
return r
}
// healthz is a liveness probe: always returns {"ok": true} when the server is up.
func healthz(c *gin.Context) {
c.JSON(http.StatusOK, gin.H{"ok": true})
}