All checks were successful
PR build (required check) / changes (pull_request) Successful in 6s
secrets-guard / encrypted (pull_request) Successful in 7s
PR build (required check) / build-backend (pull_request) Has been skipped
shell-lint / shellcheck (pull_request) Successful in 7s
PR build (required check) / validate-observability (pull_request) Has been skipped
PR build (required check) / build-frontend (pull_request) Successful in 1m0s
PR build (required check) / gate (pull_request) Successful in 2s
Ports frontend/ (Jinja2/FastAPI, ~1180 LOC) to Go with html/template. No climate math, no DB, no auth here -- every route fetches from the backend's /content/* API, so this is I/O-bound glue with no hard-porting wall; the risk was always in reproducing the rendering exactly, not the language. Verified with a golden-HTML diff, not just unit tests: both the Python original and the Go rewrite were run against the same committed fixtures (frontend/tests/fixtures/) and every one of the 11 routes compared byte-for-byte. The only surviving differences after that process are insignificant inter-tag whitespace and one attribute where Go's stricter escaper HTML-encodes an apostrophe Jinja left literal (functionally identical in every browser) -- confirmed programmatically by normalizing whitespace and unescaping before diffing, not by eyeballing. That process caught defects unit tests alone would have missed, because map[string]any has no compile-time field check: - Render-context keys were snake_case throughout (content.py's Jinja convention, ported verbatim) while the templates -- written independently -- read PascalCase fields. A missing map key doesn't error in html/template, it silently renders empty, so this was invisible in every status code and every "it built" signal: title, meta description, canonical URL, OpenGraph tags, the homepage's entire ranked list, and the brand-tag/nav-active state were all blank across every page. Fixed by renaming every key to match each template's own header comment (the authoritative per-page field contract) and, where an API struct's exported fields already matched what a template needed (contentapi.CityInfo, Crumb, HomeRanked, HubCountry, ...), passing the struct straight through instead of hand-rewrapping it in a map -- removes a whole layer of future drift risk, not just this instance of it. - Three pages 500'd outright: `.ToolHref` needed a fully-composed href string, not the bare "lat,lon" fragment the handlers were building; the all-time-records table needed the raw contentapi.AllTimeRecords struct, not a re-wrapped map. - JSON-LD was being double-encoded: `<script type="application/ld+json">` is JAVASCRIPT context to html/template's contextual escaper regardless of the script's `type` attribute, so a template.HTML-typed value placed there gets re-escaped as a quoted JS string instead of emitted raw -- the entire structured-data payload shipped as a JSON string containing JSON, which no crawler would parse as the intended object. Needed template.JS instead, the type that actually means "trusted JS source." The glossary term page's JSON-LD was simply never built at all (the Jinja original assembled it inline in the template rather than through content.py's context dict, and that got lost in translation) -- added. - html/template silently strips literal HTML comments AND JavaScript comments from the parsed output (verified in isolation, zero template actions involved) -- confirmed as real engine behavior, not a bug in either port, so both need a FuncMap function returning template.HTML / template.JS respectively to survive parsing rather than a literal `<!-- -->` or `//` in the template source. Packaging: multi-stage Go build, final image alpine (not distroless -- the Swarm stack's env-entrypoint.sh shim needs bash), 187MB -> 22.6MB. Two defects caught before they reached a host: - The Swarm stack overrides `entrypoint:` with no `command:`, which drops the image's own CMD entirely (Docker/Swarm semantics, not merged) -- env-entrypoint.sh then fell through to its hardcoded `exec uvicorn app:app` fallback, which doesn't exist in this image. Every deploy would have exited 127. Fixed with an explicit `command:` on the stack's frontend service, and corrected the shim's stale comment claiming CMD passes through automatically. - `COPY --chown=thermograph` resolves the group by NAME at copy time; Alpine's `adduser -S` with no `-G` doesn't create a same-named group, so the classic (non-BuildKit) Docker builder -- which this CI runner falls back to, since it installs plain `docker.io` with no buildx plugin -- failed outright. Fixed with an explicit group and numeric --chown. Verification: go build/vet/test -race clean across all packages; the Docker image builds and passes its embedded go test step under both BuildKit and the classic builder; shellcheck 0 findings on the one script touched; rebased onto current main (the ERA5 lake stack landed on both main and dev during this work -- confirmed additive, no overlap with frontend/daemon).
138 lines
4.4 KiB
Go
138 lines
4.4 KiB
Go
package format
|
|
|
|
import (
|
|
"os"
|
|
"path/filepath"
|
|
"regexp"
|
|
"strconv"
|
|
"testing"
|
|
)
|
|
|
|
// Boundary tests derived from the BACKEND's grading.py (the source of truth
|
|
// for tier names/thresholds — see the cross-repo contract in CLAUDE.md).
|
|
// Each threshold is asserted AT the boundary, not just around it, because the
|
|
// side each comparison is inclusive on is exactly what an off-by-one breaks:
|
|
// the top tier is strict (pct > 99), every other bound is lower-INCLUSIVE.
|
|
//
|
|
// Note: the Python frontend itself carried no band table (labels/classes
|
|
// arrive pre-computed from the content API); these are ported for the Go
|
|
// side's display parity per the same contract the backend enforces.
|
|
|
|
func TestTempBandBoundaries(t *testing.T) {
|
|
cases := []struct {
|
|
pct float64
|
|
wantLabel string
|
|
wantClass string
|
|
}{
|
|
{99.01, "Near Record", "rec-hot"}, // strictly above 99 only
|
|
{99, "Very High", "very-hot"}, // AT 99: NOT Near Record (top tier is strict)
|
|
{90, "Very High", "very-hot"}, // lower-inclusive
|
|
{89.99, "High", "hot"},
|
|
{75, "High", "hot"},
|
|
{74.99, "Above Normal", "warm"},
|
|
{60, "Above Normal", "warm"},
|
|
{59.99, "Normal", "normal"},
|
|
{40, "Normal", "normal"},
|
|
{39.99, "Below Normal", "cool"},
|
|
{25, "Below Normal", "cool"},
|
|
{24.99, "Low", "cold"},
|
|
{10, "Low", "cold"},
|
|
{9.99, "Very Low", "very-cold"},
|
|
{1, "Very Low", "very-cold"},
|
|
{0.99, "Near Record", "rec-cold"}, // strictly below 1
|
|
{0, "Near Record", "rec-cold"},
|
|
{-1, "Near Record", "rec-cold"}, // out-of-range falls to the bottom tier
|
|
{100, "Near Record", "rec-hot"},
|
|
}
|
|
for _, c := range cases {
|
|
label, class := BandFor(c.pct, TempBands)
|
|
if label != c.wantLabel || class != c.wantClass {
|
|
t.Errorf("BandFor(%v, TempBands) = (%q, %q), want (%q, %q)",
|
|
c.pct, label, class, c.wantLabel, c.wantClass)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestRainBandBoundaries(t *testing.T) {
|
|
cases := []struct {
|
|
pct float64
|
|
wantLabel string
|
|
wantClass string
|
|
}{
|
|
{99.01, "Extreme", "wet-9"}, // strictly above 99 only
|
|
{99, "Severe", "wet-8"}, // AT 99: NOT Extreme
|
|
{95, "Severe", "wet-8"},
|
|
{94.99, "Very Heavy", "wet-7"},
|
|
{90, "Very Heavy", "wet-7"},
|
|
{89.99, "Heavy", "wet-6"},
|
|
{60, "Heavy", "wet-6"},
|
|
{59.99, "Typical", "wet-5"},
|
|
{40, "Typical", "wet-5"},
|
|
{39.99, "Brisk", "wet-4"},
|
|
{25, "Brisk", "wet-4"},
|
|
{24.99, "Light", "wet-3"},
|
|
{10, "Light", "wet-3"},
|
|
{9.99, "Trace", "wet-2"},
|
|
{0, "Trace", "wet-2"},
|
|
{100, "Extreme", "wet-9"},
|
|
}
|
|
for _, c := range cases {
|
|
label, class := BandFor(c.pct, RainBands)
|
|
if label != c.wantLabel || class != c.wantClass {
|
|
t.Errorf("BandFor(%v, RainBands) = (%q, %q), want (%q, %q)",
|
|
c.pct, label, class, c.wantLabel, c.wantClass)
|
|
}
|
|
}
|
|
}
|
|
|
|
// parseBackendBands extracts a band table from backend/data/grading.py by
|
|
// name, so the Go copies cannot silently drift from the source of truth.
|
|
func parseBackendBands(t *testing.T, src []byte, name string) []Band {
|
|
t.Helper()
|
|
block := regexp.MustCompile(`(?s)` + name + `\s*=\s*\[(.*?)\]`).FindSubmatch(src)
|
|
if block == nil {
|
|
t.Fatalf("could not find %s in grading.py", name)
|
|
}
|
|
rows := regexp.MustCompile(`\(\s*(\d+)\s*,\s*"([^"]+)"\s*,\s*"([^"]+)"\s*\)`).FindAllSubmatch(block[1], -1)
|
|
var out []Band
|
|
for _, r := range rows {
|
|
thr, err := strconv.ParseFloat(string(r[1]), 64)
|
|
if err != nil {
|
|
t.Fatalf("bad threshold in %s: %v", name, err)
|
|
}
|
|
out = append(out, Band{Threshold: thr, Label: string(r[2]), Class: string(r[3])})
|
|
}
|
|
if len(out) == 0 {
|
|
t.Fatalf("no bands parsed for %s", name)
|
|
}
|
|
return out
|
|
}
|
|
|
|
// TestBandsMatchBackend re-parses grading.py and asserts thresholds, labels,
|
|
// classes AND ordering are identical. Skips when the monorepo backend
|
|
// checkout isn't present (the tables above remain the committed contract).
|
|
func TestBandsMatchBackend(t *testing.T) {
|
|
path := filepath.Join("..", "..", "..", "..", "backend", "data", "grading.py")
|
|
raw, err := os.ReadFile(path)
|
|
if err != nil {
|
|
t.Skipf("backend checkout not present (%v) — parity asserted only against the committed copy", err)
|
|
}
|
|
for _, tc := range []struct {
|
|
name string
|
|
ours []Band
|
|
}{
|
|
{"TEMP_BANDS", TempBands},
|
|
{"RAIN_BANDS", RainBands},
|
|
} {
|
|
theirs := parseBackendBands(t, raw, tc.name)
|
|
if len(theirs) != len(tc.ours) {
|
|
t.Errorf("%s: backend has %d tiers, ours has %d", tc.name, len(theirs), len(tc.ours))
|
|
continue
|
|
}
|
|
for i := range theirs {
|
|
if theirs[i] != tc.ours[i] {
|
|
t.Errorf("%s[%d]: backend %+v != ours %+v", tc.name, i, theirs[i], tc.ours[i])
|
|
}
|
|
}
|
|
}
|
|
}
|