g1t/services/billing/src/margin.rs

1,604 lines72,063 bytesCodeBlame
1//! What g1t earns on each thing it sells, measured against what
2//! Cloudflare actually charged for it.
3//!
4//! Once a day, after `costs` has read Cloudflare's bill, the reconciler
5//! puts three figures side by side for every day and each of g1t's
6//! products (a "bucket": sandboxes, deployments, git, repository storage,
7//! …):
8//!
9//! 1. **What Cloudflare charged**: the day's cost lines `cost_map` gives
10//! the bucket.
11//! 2. **What g1t's meters recorded**: the cost on the ledger's entries for
12//! it (the price book's cost at the time) and, where a mapping names
13//! one, g1t's own count of the same units (git operations).
14//! 3. **What customers were charged**: the entries' value at price, before
15//! the plan's included usage, a trial or a pool paid part of it; and of
16//! that, what workspaces paid. Month-end meters (git, storage, scans,
17//! embeddings, the actions cache) come from daily snapshots of what they
18//! had come to (`pending_days`). The plan's price is the `platform`
19//! bucket's: the plan pays for running g1t.
20//!
21//! From those: margin per product (value against cost) and for all of g1t
22//! (money in against every cost); drift (counts or costs that disagree past
23//! a mapping's threshold, and leaks: cost with no revenue, or a Cloudflare
24//! meter no one mapped); each workspace's cost, Cloudflare's figure shared
25//! out by each workspace's own meters; and price proposals when a unit's
26//! real cost has moved (`pricing`). Alerts go to staff by email and as a
27//! banner in sudo. See docs/BILLING_OPERATIONS.md.
28
29use std::collections::{BTreeMap, BTreeSet};
30
31use g1t_contracts::billing::*;
32use g1t_contracts::{FailureCode, Outcome, new_id};
33use g1t_contracts::time::rfc3339;
34use g1t_kit::now_ms;
35use serde::{Deserialize, Serialize};
36use worker::wasm_bindgen::JsValue;
37use worker::{Env, Result};
38
39use crate::Billing;
40use crate::costs::{self, ARTIFACTS_OPERATIONS, DAY_MS, Rule, SOURCE_ARTIFACTS, SOURCE_BILLABLE, UNMAPPED};
41
42/// Buckets that are the cost of running g1t, paid by the plan rather than
43/// sold by the unit: never a leak for having no revenue of their own.
44pub(crate) const OVERHEAD: [&str; 1] = ["platform"];
45/// Buckets Cloudflare does not bill: their cost is g1t's own figure.
46pub(crate) const NOT_CLOUDFLARE: [&str; 1] = ["models"];
47/// The days drift is judged over.
48const DRIFT_DAYS: u64 = 7;
49/// The days a workspace's cost is set against its revenue.
50const ANOMALY_DAYS: u64 = 30;
51/// The days a unit's cost is measured over.
52const MEASURE_DAYS: u64 = 30;
53/// Fewer of g1t's units than this say nothing about cost per unit.
54const MIN_UNITS: f64 = 1_000.0;
55/// An open alert is emailed again after this long.
56const REMIND_MS: u64 = 7 * DAY_MS;
57
58// ---------------------------------------------------------------------
59// The arithmetic, apart from the database so it can be tested.
60// ---------------------------------------------------------------------
61
62/// One of g1t's products on one day.
63#[derive(Clone, Debug, Default, PartialEq)]
64pub(crate) struct ProductDay {
65 pub day: String,
66 pub bucket: String,
67 /// What Cloudflare charged g1t, in millionths of a dollar.
68 pub cf_cost_micros: i64,
69 /// What g1t's meters recorded it cost (the price book's cost).
70 pub own_cost_micros: i64,
71 /// What customers were charged for it at price, before what paid.
72 pub value_micros: i64,
73 /// Of that, what workspaces paid themselves.
74 pub cash_micros: i64,
75 /// Units Cloudflare counted and units g1t counted, where a mapping
76 /// says they are the same units.
77 pub cf_quantity: f64,
78 pub own_quantity: f64,
79}
80
81impl ProductDay {
82 /// What it cost: Cloudflare's figure where Cloudflare bills it, else
83 /// g1t's own (models are billed by their providers, through the gateway).
84 pub fn cost(&self) -> i64 {
85 if NOT_CLOUDFLARE.contains(&self.bucket.as_str()) { self.own_cost_micros } else { self.cf_cost_micros }
86 }
87}
88
89/// A line of Cloudflare's bill, as stored.
90#[derive(Clone, Debug, Deserialize)]
91pub(crate) struct LineRow {
92 pub day: String,
93 pub source: String,
94 pub product: String,
95 pub meter: String,
96 pub quantity: f64,
97 pub cost_usd: f64,
98}
99
100/// A count of g1t's own, as stored.
101#[derive(Clone, Debug, Deserialize)]
102pub(crate) struct OwnRow {
103 pub day: String,
104 pub meter: String,
105 pub workspace: String,
106 pub quantity: f64,
107}
108
109/// What a workspace was charged for one key on one day.
110#[derive(Clone, Debug, Default, PartialEq)]
111pub(crate) struct UsageRow {
112 pub day: String,
113 pub workspace: String,
114 /// A ledger task (or `builds`), a month-end source, or `plan`.
115 pub key: String,
116 pub value: i64,
117 pub cash: i64,
118 pub cost: i64,
119}
120
121/// One workspace's share of a product's cost on one day.
122#[derive(Clone, Debug, PartialEq)]
123pub(crate) struct WorkspaceDay {
124 pub day: String,
125 pub workspace: String,
126 pub bucket: String,
127 pub cost: i64,
128 pub revenue: i64,
129}
130
131fn micros(dollars: f64) -> i64 {
132 (dollars * 1_000_000.0).round() as i64
133}
134
135/// Puts the day's bill, g1t's counts and what customers were charged side
136/// by side, a row per day and bucket, and shares each bucket's cost out
137/// to workspaces.
138pub(crate) fn fold(
139 rules: &[Rule],
140 revenue_map: &BTreeMap<String, String>,
141 lines: &[LineRow],
142 own: &[OwnRow],
143 usage: &[UsageRow],
144) -> (Vec<ProductDay>, Vec<WorkspaceDay>) {
145 let mut days: BTreeMap<(String, String), ProductDay> = BTreeMap::new();
146 let entry = |day: &str, bucket: &str| -> ProductDay {
147 ProductDay { day: day.to_owned(), bucket: bucket.to_owned(), ..ProductDay::default() }
148 };
149 // Which of g1t's own meters count each bucket's units.
150 let mut own_meters: BTreeMap<&str, BTreeSet<&str>> = BTreeMap::new();
151 for rule in rules {
152 if let Some(meter) = &rule.own_meter {
153 own_meters.entry(rule.bucket.as_str()).or_default().insert(meter.as_str());
154 }
155 }
156 let mut events: BTreeMap<(String, String), f64> = BTreeMap::new();
157 for line in lines {
158 let rule = costs::classify(rules, &line.product, &line.meter);
159 let bucket = rule.map_or(UNMAPPED, |r| r.bucket.as_str());
160 let key = (line.day.clone(), bucket.to_owned());
161 if line.source == SOURCE_ARTIFACTS {
162 // What Artifacts counted: operations only, and only where the
163 // bill does not count them itself.
164 if ARTIFACTS_OPERATIONS.contains(&line.meter.as_str()) {
165 *events.entry(key).or_default() += line.quantity;
166 }
167 continue;
168 }
169 let row = days.entry(key.clone()).or_insert_with(|| entry(&key.0, &key.1));
170 row.cf_cost_micros += micros(line.cost_usd);
171 if line.source == SOURCE_BILLABLE && rule.is_some_and(|r| r.own_meter.is_some()) {
172 row.cf_quantity += line.quantity;
173 }
174 }
175 for (key, quantity) in events {
176 let row = days.entry(key.clone()).or_insert_with(|| entry(&key.0, &key.1));
177 if row.cf_quantity == 0.0 {
178 row.cf_quantity = quantity;
179 }
180 }
181 // g1t's own counts of the same units, by bucket and by workspace.
182 let mut own_by: BTreeMap<(String, String), Vec<(String, f64)>> = BTreeMap::new();
183 // Cloudflare's own count by workspace, where it gives one
184 // (`cloudflare_<bucket>`): the best way to share its cost.
185 let mut cf_by: BTreeMap<(String, String), Vec<(String, f64)>> = BTreeMap::new();
186 for count in own {
187 if let Some(bucket) = count.meter.strip_prefix("cloudflare_") {
188 cf_by.entry((count.day.clone(), bucket.to_owned())).or_default().push((count.workspace.clone(), count.quantity));
189 continue;
190 }
191 for (bucket, meters) in &own_meters {
192 if meters.contains(count.meter.as_str()) {
193 let key = (count.day.clone(), (*bucket).to_owned());
194 days.entry(key.clone()).or_insert_with(|| entry(&key.0, &key.1)).own_quantity += count.quantity;
195 own_by.entry(key).or_default().push((count.workspace.clone(), count.quantity));
196 }
197 }
198 }
199 // What customers were charged.
200 let bucket_of = |key: &str| revenue_map.get(key).cloned().unwrap_or_else(|| "models".to_owned());
201 let mut value_by: BTreeMap<(String, String), Vec<(String, f64)>> = BTreeMap::new();
202 let mut cost_by: BTreeMap<(String, String), Vec<(String, f64)>> = BTreeMap::new();
203 let mut revenue: BTreeMap<(String, String, String), i64> = BTreeMap::new();
204 let mut active: BTreeMap<String, Vec<(String, f64)>> = BTreeMap::new();
205 for u in usage {
206 let bucket = bucket_of(&u.key);
207 let key = (u.day.clone(), bucket.clone());
208 let row = days.entry(key.clone()).or_insert_with(|| entry(&key.0, &key.1));
209 row.own_cost_micros += u.cost;
210 row.value_micros += u.value;
211 row.cash_micros += u.cash;
212 value_by.entry(key.clone()).or_default().push((u.workspace.clone(), u.value as f64));
213 cost_by.entry(key).or_default().push((u.workspace.clone(), u.cost as f64));
214 *revenue.entry((u.day.clone(), u.workspace.clone(), bucket)).or_default() += u.cash;
215 active.entry(u.day.clone()).or_default().push((u.workspace.clone(), u.value.max(u.cost) as f64));
216 }
217 // Each bucket's cost shared out: by Cloudflare's own count per
218 // workspace, else by g1t's own count of its units, else
219 // by what each workspace was charged for it, else by what its usage
220 // cost; running g1t, and what no one mapped, by each workspace's share
221 // of all usage that day.
222 let mut shares: BTreeMap<(String, String, String), i64> = BTreeMap::new();
223 for ((day, bucket), row) in &days {
224 let key = (day.clone(), bucket.clone());
225 let weigh = |m: &BTreeMap<(String, String), Vec<(String, f64)>>| m.get(&key).filter(|w| w.iter().any(|(_, v)| *v > 0.0)).cloned();
226 let weights = if OVERHEAD.contains(&bucket.as_str()) || bucket == UNMAPPED {
227 active.get(day).cloned()
228 } else {
229 weigh(&cf_by).or_else(|| weigh(&own_by)).or_else(|| weigh(&value_by)).or_else(|| weigh(&cost_by)).or_else(|| active.get(day).cloned())
230 };
231 for (workspace, micros) in attribute(row.cost(), &weights.unwrap_or_default()) {
232 *shares.entry((day.clone(), workspace, bucket.clone())).or_default() += micros;
233 }
234 }
235 let keys: BTreeSet<(String, String, String)> = shares.keys().chain(revenue.keys()).cloned().collect();
236 let workspaces = keys
237 .into_iter()
238 .map(|(day, workspace, bucket)| WorkspaceDay {
239 cost: shares.get(&(day.clone(), workspace.clone(), bucket.clone())).copied().unwrap_or(0),
240 revenue: revenue.get(&(day.clone(), workspace.clone(), bucket.clone())).copied().unwrap_or(0),
241 day,
242 workspace,
243 bucket,
244 })
245 .collect();
246 (days.into_values().collect(), workspaces)
247}
248
249/// A month-end source's day, from the snapshots of what it had come to:
250/// each day's figure less the day before's in the same month (the first
251/// day of a month, or the first snapshot, is its own).
252pub(crate) fn pending_deltas(snapshots: &[(String, String, String, i64, i64)]) -> Vec<UsageRow> {
253 // (day, workspace, source, cost, charge), any order.
254 let mut sorted = snapshots.to_vec();
255 sorted.sort_by(|a, b| (&a.1, &a.2, &a.0).cmp(&(&b.1, &b.2, &b.0)));
256 let mut out = Vec::new();
257 let mut previous: Option<&(String, String, String, i64, i64)> = None;
258 for snap in &sorted {
259 let (day, workspace, source, cost, charge) = snap;
260 let (before_cost, before_charge) = match previous {
261 Some(p) if p.1 == *workspace && p.2 == *source && p.0[..7] == day[..7] => (p.3, p.4),
262 _ => (0, 0),
263 };
264 let (cost, charge) = ((cost - before_cost).max(0), (charge - before_charge).max(0));
265 if cost > 0 || charge > 0 {
266 out.push(UsageRow { day: day.clone(), workspace: workspace.clone(), key: source.clone(), value: charge, cash: charge, cost });
267 }
268 previous = Some(snap);
269 }
270 out
271}
272
273/// Margin as a share of what was charged, in percent; None when nothing was.
274pub(crate) fn margin_percent(revenue_micros: i64, cost_micros: i64) -> Option<f64> {
275 (revenue_micros > 0).then(|| (revenue_micros - cost_micros) as f64 * 100.0 / revenue_micros as f64)
276}
277
278/// How far `ours` is from `theirs`, in percent of theirs; None when theirs
279/// is nothing.
280pub(crate) fn delta_percent(ours: f64, theirs: f64) -> Option<f64> {
281 (theirs > 0.0).then(|| (ours - theirs) * 100.0 / theirs)
282}
283
284#[derive(Clone, Copy, Debug, PartialEq, Eq)]
285pub(crate) enum DriftKind {
286 /// g1t counted a different number of units than Cloudflare did.
287 Count,
288 /// What Cloudflare charged differs from what the price book says the
289 /// same usage cost.
290 Cost,
291 /// Cloudflare charged for something nothing charges customers for.
292 Leak,
293}
294
295impl DriftKind {
296 pub fn as_str(self) -> &'static str {
297 match self {
298 DriftKind::Count => "count",
299 DriftKind::Cost => "cost",
300 DriftKind::Leak => "leak",
301 }
302 }
303}
304
305#[derive(Clone, Debug, PartialEq)]
306pub(crate) struct Drift {
307 pub bucket: String,
308 pub kind: DriftKind,
309 pub ours: f64,
310 pub cloudflare: f64,
311 pub delta_percent: Option<f64>,
312}
313
314/// Drift over a window for one bucket: counts more than `threshold`
315/// percent apart, a bill that far from the price book's cost of the same
316/// usage, and cost with nothing charged for it. Under `min_cost_micros`
317/// in all, cost says nothing.
318pub(crate) fn drifts(bucket: &str, days: &[ProductDay], threshold: f64, counted: bool, min_cost_micros: i64) -> Vec<Drift> {
319 let overhead = OVERHEAD.contains(&bucket);
320 let sum = |f: &dyn Fn(&ProductDay) -> f64| days.iter().map(f).sum::<f64>();
321 let cf_cost = sum(&|d| d.cf_cost_micros as f64);
322 let own_cost = sum(&|d| d.own_cost_micros as f64);
323 let value = sum(&|d| d.value_micros as f64);
324 let (cf_quantity, own_quantity) = (sum(&|d| d.cf_quantity), sum(&|d| d.own_quantity));
325 let mut out = Vec::new();
326 if counted && cf_quantity > 0.0 {
327 let delta = delta_percent(own_quantity, cf_quantity);
328 if delta.is_some_and(|d| d.abs() > threshold) {
329 out.push(Drift { bucket: bucket.into(), kind: DriftKind::Count, ours: own_quantity, cloudflare: cf_quantity, delta_percent: delta });
330 }
331 }
332 let enough = cf_cost.max(own_cost) >= min_cost_micros as f64;
333 if enough && !overhead && cf_cost > 0.0 && own_cost > 0.0 && !NOT_CLOUDFLARE.contains(&bucket) {
334 let delta = delta_percent(own_cost, cf_cost);
335 if delta.is_some_and(|d| d.abs() > threshold) {
336 out.push(Drift { bucket: bucket.into(), kind: DriftKind::Cost, ours: own_cost, cloudflare: cf_cost, delta_percent: delta });
337 }
338 }
339 if !overhead && cf_cost >= min_cost_micros as f64 && value <= 0.0 {
340 out.push(Drift { bucket: bucket.into(), kind: DriftKind::Leak, ours: value, cloudflare: cf_cost, delta_percent: None });
341 }
342 out
343}
344
345/// When the last `days` in a row (each with enough cost to say something)
346/// were all under the floor: the first of them and the worst margin.
347/// Each item is a day's (day, revenue, cost).
348pub(crate) fn breach(series: &[(String, i64, i64)], floor_percent: f64, days: usize, min_cost_micros: i64) -> Option<(String, f64)> {
349 if days == 0 || series.len() < days {
350 return None;
351 }
352 let tail = &series[series.len() - days..];
353 let mut worst = f64::INFINITY;
354 for (_, revenue, cost) in tail {
355 if *cost < min_cost_micros {
356 return None;
357 }
358 let margin = margin_percent(*revenue, *cost).unwrap_or(-100.0);
359 if margin >= floor_percent {
360 return None;
361 }
362 worst = worst.min(margin);
363 }
364 Some((tail[0].0.clone(), worst))
365}
366
367/// `total` shared out in proportion to `weights`, in whole millionths that
368/// add up to it exactly (largest remainder first). Nothing to share, or no
369/// weight, shares nothing.
370pub(crate) fn attribute(total: i64, weights: &[(String, f64)]) -> Vec<(String, i64)> {
371 let mut merged: BTreeMap<String, f64> = BTreeMap::new();
372 for (key, w) in weights {
373 *merged.entry(key.clone()).or_default() += w.max(0.0);
374 }
375 let sum: f64 = merged.values().sum();
376 if total <= 0 || sum <= 0.0 {
377 return Vec::new();
378 }
379 let mut shares: Vec<(String, i64, f64)> = merged
380 .into_iter()
381 .map(|(key, w)| {
382 let exact = total as f64 * w / sum;
383 (key, exact.floor() as i64, exact - exact.floor())
384 })
385 .collect();
386 let mut left = total - shares.iter().map(|s| s.1).sum::<i64>();
387 let mut order: Vec<usize> = (0..shares.len()).collect();
388 order.sort_by(|a, b| shares[*b].2.total_cmp(&shares[*a].2).then(shares[*a].0.cmp(&shares[*b].0)));
389 for index in order {
390 if left <= 0 {
391 break;
392 }
393 shares[index].1 += 1;
394 left -= 1;
395 }
396 shares.into_iter().filter(|s| s.1 > 0).map(|(key, micros, _)| (key, micros)).collect()
397}
398
399/// Workspaces that cost g1t more than `factor` times what they paid, with
400/// at least `floor_micros` of cost: each (workspace, cost, revenue), the
401/// biggest gap first.
402pub(crate) fn anomalies(rows: &[(String, i64, i64)], factor: f64, floor_micros: i64) -> Vec<(String, i64, i64)> {
403 let mut out: Vec<(String, i64, i64)> = rows
404 .iter()
405 .filter(|(_, cost, revenue)| *cost >= floor_micros && *cost as f64 > *revenue as f64 * factor)
406 .cloned()
407 .collect();
408 out.sort_by(|a, b| (b.1 - b.2).cmp(&(a.1 - a.2)).then(a.0.cmp(&b.0)));
409 out
410}
411
412/// Cloudflare's marginal rate for one of its units: the median over the
413/// charged days of cost over quantity, in dollars. None while the included
414/// amounts still cover it. Each item is a day's (quantity, cost).
415pub(crate) fn billed_rate(days: &[(f64, f64)]) -> Option<f64> {
416 let mut rates: Vec<f64> = days.iter().filter(|(q, c)| *q > 0.0 && *c > 0.0).map(|(q, c)| c / q).collect();
417 if rates.is_empty() {
418 return None;
419 }
420 rates.sort_by(f64::total_cmp);
421 Some(rates[rates.len() / 2])
422}
423
424/// What one of g1t's units costs, from Cloudflare's rate per its own unit
425/// and how many of Cloudflare's units each of g1t's took: if Cloudflare
426/// counts three operations for every git operation g1t counts, a git
427/// operation costs three of Cloudflare's. None without enough of g1t's
428/// units to say.
429pub(crate) fn derived_unit_cost(rate_per_cf_unit: f64, cf_units: f64, own_units: f64) -> Option<f64> {
430 (own_units >= MIN_UNITS && cf_units > 0.0 && rate_per_cf_unit > 0.0).then(|| rate_per_cf_unit * cf_units / own_units)
431}
432
433/// How many units a price is per: `1,000 operations` → 1,000, `million
434/// requests` → 1,000,000, `second` → 1.
435pub(crate) fn unit_size(unit: &str) -> f64 {
436 let first = unit.split_whitespace().next().unwrap_or_default().replace(',', "");
437 match first.as_str() {
438 "million" => 1_000_000.0,
439 "thousand" => 1_000.0,
440 n => n.parse().unwrap_or(1.0),
441 }
442}
443
444fn day_before(day: &str, days: u64) -> String {
445 let ms = g1t_contracts::time::parse_rfc3339(&format!("{day}T00:00:00Z")).unwrap_or(0);
446 rfc3339(ms.saturating_sub(days * DAY_MS))[..10].to_owned()
447}
448
449/// Dollars to the cent from a dollar up, finer below: `$17.02`, `$0.063`.
450fn dollars(micros: i64) -> String {
451 if micros.abs() >= 1_000_000 {
452 let cents = (micros as f64 / 10_000.0).round() as i64;
453 format!("{}${}.{:02}", if cents < 0 { "-" } else { "" }, cents.abs() / 100, cents.abs() % 100)
454 } else {
455 crate::features::dollars(micros)
456 }
457}
458
459/// The days a plan payment is spread over.
460const PLAN_DAYS: u64 = 30;
461
462/// `micros` paid on `day` spread evenly over `days` days from it, in
463/// whole micros that add up to it (the first days take the remainder).
464pub(crate) fn spread(day: &str, micros: i64, days: u64) -> Vec<(String, i64)> {
465 if micros <= 0 || days == 0 {
466 return Vec::new();
467 }
468 let start = g1t_contracts::time::parse_rfc3339(&format!("{}T00:00:00Z", &day[..10.min(day.len())])).unwrap_or(0);
469 let each = micros / days as i64;
470 let rest = micros % days as i64;
471 (0..days)
472 .map(|n| (rfc3339(start + n * DAY_MS)[..10].to_owned(), each + i64::from((n as i64) < rest)))
473 .collect()
474}
475
476// ---------------------------------------------------------------------
477// The daily run, and what sudo reads.
478// ---------------------------------------------------------------------
479
480#[derive(Serialize)]
481struct Mail<'a> {
482 to: &'a str,
483 from: &'a str,
484 subject: &'a str,
485 text: String,
486 html: String,
487}
488
489fn escape(text: &str) -> String {
490 text.replace('&', "&amp;").replace('<', "&lt;").replace('>', "&gt;").replace('"', "&quot;")
491}
492
493/// Emails staff through Cloudflare Email Sending, the `EMAIL` binding.
494async fn email_staff(env: &Env, to: &str, subject: &str, lines: &[String]) -> Result<()> {
495 let link = "https://sudo.g1t.sh/costs";
496 let text = format!("{}\n\nCosts & margin: {link}\n\nSent by g1t-billing's margin guard (COSTS_ALERT_EMAIL).\n", lines.join("\n\n"));
497 let mut html = String::from("<div style=\"font-family:system-ui,sans-serif;max-width:560px;margin:0 auto;padding:24px 16px;color:#16150f\">");
498 for line in lines {
499 html.push_str(&format!("<p style=\"font-size:15px;line-height:1.6\">{}</p>", escape(line)));
500 }
501 html.push_str(&format!(
502 "<p><a href=\"{link}\">Open Costs &amp; margin in sudo</a></p><p style=\"font-size:13px;color:#6e6a5e\">Sent by g1t-billing's margin guard (COSTS_ALERT_EMAIL).</p></div>"
503 ));
504 let mail = Mail { to, from: "g1t <noreply@g1t.sh>", subject, text, html };
505 let binding = g1t_kit::js::binding(env, "EMAIL")?;
506 g1t_kit::js::call(&binding, "send", &[g1t_kit::js::to_js(&mail)?]).await?;
507 Ok(())
508}
509
510#[derive(Deserialize)]
511struct AlertRow {
512 id: String,
513 kind: String,
514 subject: String,
515 detail: String,
516 since: String,
517 opened_at: String,
518 emailed_at: Option<String>,
519}
520
521impl From<AlertRow> for MarginAlert {
522 fn from(r: AlertRow) -> Self {
523 MarginAlert { id: r.id, kind: r.kind, subject: r.subject, detail: r.detail, since: r.since, opened_at: r.opened_at, emailed_at: r.emailed_at }
524 }
525}
526
527#[derive(Deserialize)]
528struct MarginRow {
529 day: String,
530 bucket: String,
531 cf_cost_micros: i64,
532 own_cost_micros: i64,
533 value_micros: i64,
534 cash_micros: i64,
535 cf_quantity: f64,
536 own_quantity: f64,
537}
538
539impl From<MarginRow> for ProductDay {
540 fn from(r: MarginRow) -> Self {
541 ProductDay {
542 day: r.day,
543 bucket: r.bucket,
544 cf_cost_micros: r.cf_cost_micros,
545 own_cost_micros: r.own_cost_micros,
546 value_micros: r.value_micros,
547 cash_micros: r.cash_micros,
548 cf_quantity: r.cf_quantity,
549 own_quantity: r.own_quantity,
550 }
551 }
552}
553
554impl Billing {
555 /// The day's work: read Cloudflare's bill and g1t's own counts,
556 /// reconcile, look for drift, measure unit costs, apply prices whose
557 /// day has come, and raise or clear alerts.
558 pub(crate) async fn costs_daily(&self, env: &Env, keeper: &crate::keeper::Keeper) -> Result<CostsRun> {
559 let mut run = CostsRun::default();
560 let (since, until) = match self.read_cloudflare(keeper, &mut run.problems).await? {
561 Some((since, until, lines)) => {
562 run.lines = lines;
563 (since, until)
564 }
565 // Without the bill, still reconcile what g1t knows itself, over
566 // the same days the bill would be read for.
567 None => {
568 #[derive(Deserialize)]
569 struct Last {
570 day: Option<String>,
571 }
572 let last = self.db.prepare("SELECT MAX(day) AS day FROM margin_days").first::<Last>(None).await?.and_then(|l| l.day);
573 costs::window(last.as_deref(), now_ms())
574 }
575 };
576 if let Err(error) = self.count_own(&since, &until).await {
577 run.problems.push(format!("g1t's own counts could not be read: {error}"));
578 }
579 self.snapshot_pending(&until).await?;
580 run.days = self.reconcile_range(&since, &until).await?;
581 let drift = self.find_drift(&until).await?;
582 run.proposals = self.measure_units(&until).await?;
583 self.apply_due_versions().await?;
584 run.alerts = self.raise_alerts(env, &until, &drift).await?;
585 if let Some(identity) = &self.identity
586 && let Err(error) = self.tell_owners_of_rises(identity).await
587 {
588 run.problems.push(format!("owners could not be told of a price rise: {error}"));
589 }
590 for problem in &run.problems {
591 worker::console_warn!("costs: {problem}");
592 }
593 Ok(run)
594 }
595
596 /// What each month-end source had come to by the end of `day`.
597 async fn snapshot_pending(&self, day: &str) -> Result<()> {
598 self.db
599 .prepare(
600 "INSERT INTO pending_days (day, workspace, source, cost_micros, charge_micros)
601 SELECT ?1, workspace, source, COALESCE(cost_micros, 0), COALESCE(charge_micros, 0) FROM pending_usage WHERE month = ?2
602 ON CONFLICT (day, workspace, source) DO UPDATE SET cost_micros = excluded.cost_micros, charge_micros = excluded.charge_micros",
603 )
604 .bind(&[day.into(), day[..7].into()])?
605 .run()
606 .await?;
607 Ok(())
608 }
609
610 /// What customers were charged on the days, by workspace and key.
611 async fn usage_rows(&self, since: &str, until: &str) -> Result<Vec<UsageRow>> {
612 #[derive(Deserialize)]
613 struct Row {
614 day: String,
615 workspace: String,
616 key: String,
617 internal: i64,
618 own_provider: i64,
619 cash: Option<i64>,
620 drawn: Option<i64>,
621 cost: Option<i64>,
622 }
623 let charged_here = crate::storage::CHARGED_HERE.iter().map(|s| format!("'{s}'")).collect::<Vec<_>>().join(", ");
624 let end = format!("{until}T23:59:59.999Z");
625 let rows = self
626 .db
627 .prepare(format!(
628 "SELECT substr(created_at, 1, 10) AS day, workspace,
629 CASE WHEN task = 'deployments' AND reference LIKE 'deploy/%' THEN 'builds' ELSE COALESCE(task, 'other') END AS key,
630 CASE WHEN workspace IN ({internal}) THEN 1 ELSE 0 END AS internal,
631 CASE WHEN billed_to = 'workspace' THEN 1 ELSE 0 END AS own_provider,
632 -SUM(amount_micros) AS cash,
633 SUM(COALESCE(credit_micros, 0) + COALESCE(trial_micros, 0) + COALESCE(oss_micros, 0) + COALESCE(given_micros, 0)) AS drawn,
634 SUM(COALESCE(cost_micros, 0)) AS cost
635 FROM ledger
636 WHERE kind = 'usage' AND created_at >= ?1 AND created_at <= ?2 AND COALESCE(task, '') NOT IN ({charged_here})
637 GROUP BY 1, 2, 3, 4, 5",
638 internal = crate::sales::INTERNAL_SQL
639 ))
640 .bind(&[since.into(), end.as_str().into()])?
641 .all()
642 .await?
643 .results::<Row>()?;
644 let mut out: Vec<UsageRow> = rows
645 .into_iter()
646 .map(|r| {
647 // A workspace's own model provider was paid there: no cost
648 // to g1t. g1t's own workspaces are valued at price.
649 let cost = if r.own_provider == 1 { 0 } else { r.cost.unwrap_or(0) };
650 let cash = r.cash.unwrap_or(0);
651 let value = if r.internal == 1 { crate::credits::with_margin(cost, self.margin_percent) } else { cash + r.drawn.unwrap_or(0) };
652 UsageRow { day: r.day, workspace: r.workspace, key: r.key, value, cash, cost }
653 })
654 .collect();
655 // Month-end sources, from their daily snapshots.
656 #[derive(Deserialize)]
657 struct Snap {
658 day: String,
659 workspace: String,
660 source: String,
661 cost_micros: i64,
662 charge_micros: i64,
663 }
664 let snaps = self
665 .db
666 .prepare("SELECT day, workspace, source, cost_micros, charge_micros FROM pending_days WHERE day >= ?1 AND day <= ?2")
667 .bind(&[day_before(since, 1).into(), until.into()])?
668 .all()
669 .await?
670 .results::<Snap>()?
671 .into_iter()
672 .filter(|s| crate::storage::CHARGED_HERE.contains(&s.source.as_str()) || s.source == "domains")
673 .map(|s| (s.day, s.workspace, s.source, s.cost_micros, s.charge_micros))
674 .collect::<Vec<_>>();
675 out.extend(pending_deltas(&snaps).into_iter().filter(|u| u.day.as_str() >= since));
676 // The plan's price, spread over the 30 days it pays for, so a month's
677 // payment does not read as one very good day and 29 bad ones.
678 #[derive(Deserialize)]
679 struct Plan {
680 day: String,
681 workspace: String,
682 micros: Option<i64>,
683 }
684 let plans = self
685 .db
686 .prepare(
687 "SELECT substr(paid_at, 1, 10) AS day, workspace, SUM(amount_micros) AS micros FROM plan_payments
688 WHERE paid_at >= ?1 AND paid_at <= ?2 GROUP BY 1, 2",
689 )
690 .bind(&[day_before(since, PLAN_DAYS - 1).into(), end.as_str().into()])?
691 .all()
692 .await?
693 .results::<Plan>()?;
694 for p in plans {
695 for (day, micros) in spread(&p.day, p.micros.unwrap_or(0), PLAN_DAYS) {
696 if day.as_str() >= since && day.as_str() <= until {
697 out.push(UsageRow { day, workspace: p.workspace.clone(), key: "plan".into(), value: micros, cash: micros, cost: 0 });
698 }
699 }
700 }
701 Ok(out)
702 }
703
704 /// Reconciles the days and writes `margin_days` and `workspace_costs`.
705 async fn reconcile_range(&self, since: &str, until: &str) -> Result<u32> {
706 let rules = self.rules().await?;
707 #[derive(Deserialize)]
708 struct Map {
709 key: String,
710 bucket: String,
711 }
712 let revenue_map: BTreeMap<String, String> = self
713 .db
714 .prepare("SELECT key, bucket FROM revenue_map")
715 .all()
716 .await?
717 .results::<Map>()?
718 .into_iter()
719 .map(|m| (m.key, m.bucket))
720 .collect();
721 let lines = self
722 .db
723 .prepare("SELECT day, source, product, meter, quantity, cost_usd FROM cost_lines WHERE day >= ?1 AND day <= ?2")
724 .bind(&[since.into(), until.into()])?
725 .all()
726 .await?
727 .results::<LineRow>()?;
728 let own = self
729 .db
730 .prepare("SELECT day, meter, workspace, quantity FROM own_counts WHERE day >= ?1 AND day <= ?2")
731 .bind(&[since.into(), until.into()])?
732 .all()
733 .await?
734 .results::<OwnRow>()?;
735 let usage = self.usage_rows(since, until).await?;
736 let (days, workspaces) = fold(&rules, &revenue_map, &lines, &own, &usage);
737 let now = rfc3339(now_ms());
738 self.db
739 .batch(vec![
740 self.db.prepare("DELETE FROM margin_days WHERE day >= ?1 AND day <= ?2").bind(&[since.into(), until.into()])?,
741 self.db.prepare("DELETE FROM workspace_costs WHERE day >= ?1 AND day <= ?2").bind(&[since.into(), until.into()])?,
742 ])
743 .await?;
744 for chunk in days.chunks(50) {
745 let mut statements = Vec::with_capacity(chunk.len());
746 for d in chunk {
747 statements.push(
748 self.db
749 .prepare(
750 "INSERT OR REPLACE INTO margin_days (day, bucket, cf_cost_micros, own_cost_micros, value_micros, cash_micros, cf_quantity, own_quantity, computed_at)
751 VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?)",
752 )
753 .bind(&[
754 d.day.as_str().into(),
755 d.bucket.as_str().into(),
756 (d.cf_cost_micros as f64).into(),
757 (d.own_cost_micros as f64).into(),
758 (d.value_micros as f64).into(),
759 (d.cash_micros as f64).into(),
760 d.cf_quantity.into(),
761 d.own_quantity.into(),
762 now.as_str().into(),
763 ])?,
764 );
765 }
766 self.db.batch(statements).await?;
767 }
768 for chunk in workspaces.chunks(50) {
769 let mut statements = Vec::with_capacity(chunk.len());
770 for w in chunk {
771 statements.push(
772 self.db
773 .prepare("INSERT OR REPLACE INTO workspace_costs (day, workspace, bucket, cost_micros, revenue_micros) VALUES (?, ?, ?, ?, ?)")
774 .bind(&[
775 w.day.as_str().into(),
776 w.workspace.as_str().into(),
777 w.bucket.as_str().into(),
778 (w.cost as f64).into(),
779 (w.revenue as f64).into(),
780 ])?,
781 );
782 }
783 self.db.batch(statements).await?;
784 }
785 Ok(costs::days_between(since, until).len() as u32)
786 }
787
788 async fn margin_days(&self, since: &str, until: &str) -> Result<Vec<ProductDay>> {
789 Ok(self
790 .db
791 .prepare("SELECT * FROM margin_days WHERE day >= ?1 AND day <= ?2 ORDER BY day, bucket")
792 .bind(&[since.into(), until.into()])?
793 .all()
794 .await?
795 .results::<MarginRow>()?
796 .into_iter()
797 .map(ProductDay::from)
798 .collect())
799 }
800
801 /// Drift over the last week, written to `cost_drift` (replacing the
802 /// last run's), with unmapped Cloudflare meters as leaks.
803 async fn find_drift(&self, until: &str) -> Result<Vec<(Drift, String)>> {
804 let since = day_before(until, DRIFT_DAYS - 1);
805 let settings = self.cost_settings().await?;
806 let rules = self.rules().await?;
807 let days = self.margin_days(&since, until).await?;
808 let mut by: BTreeMap<String, Vec<ProductDay>> = BTreeMap::new();
809 for d in days {
810 by.entry(d.bucket.clone()).or_default().push(d);
811 }
812 let mut found = Vec::new();
813 for (bucket, days) in &by {
814 let bucket_rules: Vec<&Rule> = rules.iter().filter(|r| &r.bucket == bucket).collect();
815 let threshold = bucket_rules.iter().map(|r| r.drift_percent).fold(f64::INFINITY, f64::min);
816 let threshold = if threshold.is_finite() { threshold } else { 10.0 };
817 let counted = bucket_rules.iter().any(|r| r.own_meter.is_some());
818 for drift in drifts(bucket, days, threshold, counted, settings.min_daily_cost_micros) {
819 let title = costs::bucket_title(bucket);
820 let detail = match drift.kind {
821 DriftKind::Count => format!(
822 "{title}: g1t counted {}, Cloudflare {} over the last {DRIFT_DAYS} days ({:+.1}%). Customers are charged for what g1t counts; check what Cloudflare counts as a unit (billable_units, cost_map).",
823 crate::features::thousands(drift.ours.max(0.0).round() as u64),
824 crate::features::thousands(drift.cloudflare.max(0.0).round() as u64),
825 drift.delta_percent.unwrap_or(0.0)
826 ),
827 DriftKind::Cost => format!(
828 "{title}: Cloudflare charged {} over the last {DRIFT_DAYS} days; the price book's cost of the same usage is {} ({:+.1}%). A price may be stale: see the proposals.",
829 dollars(drift.cloudflare as i64),
830 dollars(drift.ours as i64),
831 drift.delta_percent.unwrap_or(0.0)
832 ),
833 DriftKind::Leak if bucket == UNMAPPED => {
834 format!("Cloudflare charged {} for meters no mapping claims. Map them on Costs & margin.", dollars(drift.cloudflare as i64))
835 }
836 DriftKind::Leak => format!(
837 "{title}: Cloudflare charged {} over the last {DRIFT_DAYS} days and customers were charged nothing for it.",
838 dollars(drift.cloudflare as i64)
839 ),
840 };
841 found.push((drift, detail));
842 }
843 }
844 let now = rfc3339(now_ms());
845 let mut statements = vec![self.db.prepare("DELETE FROM cost_drift")];
846 for (drift, detail) in &found {
847 statements.push(
848 self.db
849 .prepare("INSERT OR REPLACE INTO cost_drift (bucket, kind, ours, cloudflare, delta_percent, detail, found_at) VALUES (?, ?, ?, ?, ?, ?, ?)")
850 .bind(&[
851 drift.bucket.as_str().into(),
852 drift.kind.as_str().into(),
853 drift.ours.into(),
854 drift.cloudflare.into(),
855 drift.delta_percent.map_or(JsValue::NULL, JsValue::from),
856 detail.as_str().into(),
857 now.as_str().into(),
858 ])?,
859 );
860 }
861 self.db.batch(statements).await?;
862 Ok(found)
863 }
864
865 /// Unit costs from the bill for mappings that scale to g1t's own count
866 /// (git operations), proposed to the price book.
867 async fn measure_units(&self, until: &str) -> Result<u32> {
868 #[derive(Deserialize)]
869 struct Scaled {
870 product: String,
871 meter: String,
872 price_meter: String,
873 own_meter: String,
874 unit: Option<String>,
875 }
876 let scaled = self
877 .db
878 .prepare(
879 "SELECT m.product, m.meter, m.price_meter, m.own_meter, p.unit FROM cost_map m LEFT JOIN prices p ON p.meter = m.price_meter
880 WHERE m.scale_to_own = 1 AND m.price_meter IS NOT NULL AND m.own_meter IS NOT NULL",
881 )
882 .all()
883 .await?
884 .results::<Scaled>()?;
885 let since = day_before(until, MEASURE_DAYS - 1);
886 let rules = self.rules().await?;
887 let mut proposed = 0;
888 for s in scaled {
889 #[derive(Deserialize)]
890 struct Day {
891 product: String,
892 meter: String,
893 quantity: f64,
894 cost_usd: f64,
895 }
896 let lines = self
897 .db
898 .prepare("SELECT product, meter, quantity, cost_usd FROM cost_lines WHERE source = ?1 AND product = ?2 AND day >= ?3 AND day <= ?4")
899 .bind(&[SOURCE_BILLABLE.into(), s.product.as_str().into(), since.as_str().into(), until.into()])?
900 .all()
901 .await?
902 .results::<Day>()?;
903 // Only the lines this very mapping claims.
904 let mine: Vec<(f64, f64)> = lines
905 .iter()
906 .filter(|l| costs::classify(&rules, &l.product, &l.meter).is_some_and(|r| r.product == s.product && r.meter == s.meter))
907 .map(|l| (l.quantity, l.cost_usd))
908 .collect();
909 let Some(rate) = billed_rate(&mine) else { continue };
910 let cf_units: f64 = mine.iter().map(|(q, _)| q).sum();
911 #[derive(Deserialize)]
912 struct Own {
913 total: Option<f64>,
914 }
915 let own_units = self
916 .db
917 .prepare("SELECT SUM(quantity) AS total FROM own_counts WHERE meter = ?1 AND day >= ?2 AND day <= ?3")
918 .bind(&[s.own_meter.as_str().into(), since.as_str().into(), until.into()])?
919 .first::<Own>(None)
920 .await?
921 .and_then(|o| o.total)
922 .unwrap_or(0.0);
923 let Some(per_unit) = derived_unit_cost(rate, cf_units, own_units) else { continue };
924 let size = unit_size(s.unit.as_deref().unwrap_or("1"));
925 let measured = per_unit * size * 1_000_000.0;
926 let reason = format!(
927 "Cloudflare billed ${:.4} per 1,000 of its units and counted {:.2} of them for each one g1t counted over the last {MEASURE_DAYS} days ({} against {})",
928 rate * 1000.0,
929 cf_units / own_units,
930 crate::features::thousands(cf_units.round() as u64),
931 crate::features::thousands(own_units.round() as u64)
932 );
933 if self.propose(&s.price_meter, measured, &reason, "reconciler").await?.is_some() {
934 proposed += 1;
935 }
936 }
937 Ok(proposed)
938 }
939
940 /// Opens, updates and closes margin alerts, and emails staff about new
941 /// ones (and open ones each week).
942 async fn raise_alerts(&self, env: &Env, until: &str, drift: &[(Drift, String)]) -> Result<u32> {
943 let settings = self.cost_settings().await?;
944 let since = day_before(until, u64::from(settings.alert_days.max(1)) - 1);
945 let days = self.margin_days(&since, until).await?;
946 let mut conditions: Vec<(String, String, String, String)> = Vec::new();
947 // Each product under the floor.
948 let mut by: BTreeMap<String, Vec<(String, i64, i64)>> = BTreeMap::new();
949 let mut all: BTreeMap<String, (i64, i64)> = BTreeMap::new();
950 for d in &days {
951 let overall = all.entry(d.day.clone()).or_default();
952 overall.0 += d.cash_micros;
953 overall.1 += d.cost();
954 if !OVERHEAD.contains(&d.bucket.as_str()) && d.bucket != UNMAPPED {
955 by.entry(d.bucket.clone()).or_default().push((d.day.clone(), d.value_micros, d.cost()));
956 }
957 }
958 let floor = settings.margin_floor_percent;
959 let n = settings.alert_days as usize;
960 for (bucket, series) in &by {
961 if let Some((from, worst)) = breach(series, floor, n, settings.min_daily_cost_micros) {
962 conditions.push((
963 "margin".into(),
964 bucket.clone(),
965 format!("{}: margin under {floor:.0}% for {n} days running, as low as {worst:.1}%.", costs::bucket_title(bucket)),
966 from,
967 ));
968 }
969 }
970 let series: Vec<(String, i64, i64)> = all.into_iter().map(|(day, (revenue, cost))| (day, revenue, cost)).collect();
971 if let Some((from, worst)) = breach(&series, floor, n, settings.min_daily_cost_micros) {
972 conditions.push((
973 "overall".into(),
974 "g1t".into(),
975 format!("All of g1t: money in against Cloudflare's bill under {floor:.0}% for {n} days running, as low as {worst:.1}%."),
976 from,
977 ));
978 }
979 for (d, detail) in drift {
980 let kind = if d.kind == DriftKind::Leak { "leak" } else { "drift" };
981 conditions.push((kind.into(), format!("{}:{}", d.bucket, d.kind.as_str()), detail.clone(), until.to_owned()));
982 }
983 // Workspaces costing more than they pay.
984 for (workspace, cost, revenue) in self.workspace_anomalies(until, &settings).await? {
985 conditions.push((
986 "workspace".into(),
987 workspace.clone(),
988 format!("{workspace} cost g1t {} on Cloudflare over {ANOMALY_DAYS} days and paid {}.", dollars(cost), dollars(revenue)),
989 day_before(until, ANOMALY_DAYS - 1),
990 ));
991 }
992
993 let open = self
994 .db
995 .prepare("SELECT * FROM margin_alerts WHERE resolved_at IS NULL")
996 .all()
997 .await?
998 .results::<AlertRow>()?;
999 let now = now_ms();
1000 let stamp = rfc3339(now);
1001 let mut to_email: Vec<String> = Vec::new();
1002 let mut kept: BTreeSet<String> = BTreeSet::new();
1003 for (kind, subject, detail, from) in &conditions {
1004 match open.iter().find(|a| &a.kind == kind && &a.subject == subject) {
1005 Some(alert) => {
1006 kept.insert(alert.id.clone());
1007 self.db
1008 .prepare("UPDATE margin_alerts SET detail = ? WHERE id = ?")
1009 .bind(&[detail.as_str().into(), alert.id.as_str().into()])?
1010 .run()
1011 .await?;
1012 let stale = alert
1013 .emailed_at
1014 .as_deref()
1015 .and_then(g1t_contracts::time::parse_rfc3339)
1016 .is_none_or(|at| now.saturating_sub(at) >= REMIND_MS);
1017 if stale && kind != "workspace" {
1018 to_email.push(format!("Still open: {detail}"));
1019 kept.insert(format!("email:{}", alert.id));
1020 }
1021 }
1022 None => {
1023 let id = new_id("mal", now);
1024 self.db
1025 .prepare("INSERT INTO margin_alerts (id, kind, subject, detail, since, opened_at) VALUES (?, ?, ?, ?, ?, ?)")
1026 .bind(&[id.as_str().into(), kind.as_str().into(), subject.as_str().into(), detail.as_str().into(), from.as_str().into(), stamp.as_str().into()])?
1027 .run()
1028 .await?;
1029 kept.insert(id.clone());
1030 to_email.push(detail.clone());
1031 kept.insert(format!("email:{id}"));
1032 }
1033 }
1034 }
1035 for alert in &open {
1036 if !kept.contains(&alert.id) {
1037 self.db
1038 .prepare("UPDATE margin_alerts SET resolved_at = ? WHERE id = ?")
1039 .bind(&[stamp.as_str().into(), alert.id.as_str().into()])?
1040 .run()
1041 .await?;
1042 }
1043 }
1044 let to = env.var("COSTS_ALERT_EMAIL").map(|v| v.to_string()).unwrap_or_default();
1045 if !to_email.is_empty() && !to.trim().is_empty() {
1046 let subject = format!("[g1t costs] {} margin alert{}", to_email.len(), if to_email.len() == 1 { "" } else { "s" });
1047 match email_staff(env, to.trim(), &subject, &to_email).await {
1048 Ok(()) => {
1049 for marker in kept.iter().filter_map(|k| k.strip_prefix("email:")) {
1050 self.db
1051 .prepare("UPDATE margin_alerts SET emailed_at = ? WHERE id = ?")
1052 .bind(&[stamp.as_str().into(), marker.into()])?
1053 .run()
1054 .await?;
1055 }
1056 }
1057 Err(error) => worker::console_error!("could not email the margin alerts: {error}"),
1058 }
1059 }
1060 Ok(conditions.len() as u32)
1061 }
1062
1063 /// Workspaces costing g1t more than they pay over 30 days, not g1t's own.
1064 async fn workspace_anomalies(&self, until: &str, settings: &CostSettings) -> Result<Vec<(String, i64, i64)>> {
1065 #[derive(Deserialize)]
1066 struct Row {
1067 workspace: String,
1068 cost: Option<i64>,
1069 revenue: Option<i64>,
1070 }
1071 let rows = self
1072 .db
1073 .prepare(format!(
1074 "SELECT workspace, SUM(cost_micros) AS cost, SUM(revenue_micros) AS revenue FROM workspace_costs
1075 WHERE day >= ?1 AND day <= ?2 AND workspace NOT IN ({}) GROUP BY workspace",
1076 crate::sales::INTERNAL_SQL
1077 ))
1078 .bind(&[day_before(until, ANOMALY_DAYS - 1).into(), until.into()])?
1079 .all()
1080 .await?
1081 .results::<Row>()?;
1082 let rows: Vec<(String, i64, i64)> = rows.into_iter().map(|r| (r.workspace, r.cost.unwrap_or(0), r.revenue.unwrap_or(0))).collect();
1083 Ok(anomalies(&rows, settings.anomaly_factor, settings.anomaly_floor_micros))
1084 }
1085
1086 /// For Reach out: workspaces with an open cost-over-revenue alert,
1087 /// each with its detail and cost.
1088 pub(crate) async fn costing_more_than_they_pay(&self) -> Result<Vec<(String, String, i64)>> {
1089 let alerts = self
1090 .db
1091 .prepare("SELECT * FROM margin_alerts WHERE resolved_at IS NULL AND kind = 'workspace' ORDER BY opened_at DESC LIMIT 50")
1092 .all()
1093 .await?
1094 .results::<AlertRow>()?;
1095 let mut out = Vec::new();
1096 for alert in alerts {
1097 #[derive(Deserialize)]
1098 struct Cost {
1099 cost: Option<i64>,
1100 }
1101 let cost = self
1102 .db
1103 .prepare("SELECT SUM(cost_micros) AS cost FROM workspace_costs WHERE workspace = ? AND day >= ?")
1104 .bind(&[alert.subject.as_str().into(), alert.since.as_str().into()])?
1105 .first::<Cost>(None)
1106 .await?
1107 .and_then(|c| c.cost)
1108 .unwrap_or(0);
1109 out.push((alert.subject, alert.detail, cost));
1110 }
1111 Ok(out)
1112 }
1113
1114 /// `admin_cost_alerts`: what sudo's banner says.
1115 pub(crate) async fn admin_cost_alerts(&self, _: AdminCostAlertsArgs) -> Result<Vec<MarginAlert>> {
1116 Ok(self
1117 .db
1118 .prepare("SELECT * FROM margin_alerts WHERE resolved_at IS NULL ORDER BY opened_at DESC LIMIT 50")
1119 .all()
1120 .await?
1121 .results::<AlertRow>()?
1122 .into_iter()
1123 .map(MarginAlert::from)
1124 .collect())
1125 }
1126
1127 /// `admin_run_costs`: the daily run, now.
1128 pub(crate) async fn admin_run_costs(&self, env: &Env, a: AdminRunCostsArgs) -> Result<Outcome<CostsRun>> {
1129 let keeper = crate::keeper::Keeper::from_env(env);
1130 let run = self.costs_daily(env, &keeper).await?;
1131 if !a.by.is_empty() {
1132 self.audit(
1133 "costs",
1134 "costs_run",
1135 &format!("{} lines, {} days, {} proposals, {} alerts", run.lines, run.days, run.proposals, run.alerts),
1136 &a.by,
1137 )
1138 .await?;
1139 }
1140 Ok(Outcome::Ok(run))
1141 }
1142
1143 /// `admin_set_cost_mapping`.
1144 pub(crate) async fn admin_set_cost_mapping(&self, a: AdminSetCostMappingArgs) -> Result<Outcome<CostMapping>> {
1145 let product = costs::slug(&a.product);
1146 let meter = if a.meter.trim() == "*" { "*".to_owned() } else { costs::slug(&a.meter) };
1147 if product.is_empty() || meter.is_empty() {
1148 return Ok(Outcome::fail(FailureCode::Invalid, "Name Cloudflare's product and a meter (or * for all of it)."));
1149 }
1150 let now = rfc3339(now_ms());
1151 if a.remove {
1152 self.db
1153 .prepare("DELETE FROM cost_map WHERE product = ? AND meter = ?")
1154 .bind(&[product.as_str().into(), meter.as_str().into()])?
1155 .run()
1156 .await?;
1157 self.audit("costs", "cost_mapping_removed", &format!("{product}/{meter}"), &a.by).await?;
1158 return Ok(Outcome::Ok(CostMapping {
1159 product,
1160 meter,
1161 bucket: String::new(),
1162 price_meter: None,
1163 own_meter: None,
1164 scale_to_own: false,
1165 drift_percent: 0.0,
1166 note: String::new(),
1167 updated_at: now,
1168 updated_by: a.by,
1169 }));
1170 }
1171 let bucket = costs::slug(&a.bucket);
1172 if bucket.is_empty() {
1173 return Ok(Outcome::fail(FailureCode::Invalid, "Say which of g1t's products it is a cost of."));
1174 }
1175 let clean = |v: Option<String>| v.map(|v| v.trim().to_owned()).filter(|v| !v.is_empty());
1176 let (price_meter, own_meter) = (clean(a.price_meter), clean(a.own_meter));
1177 let drift = a.drift_percent.filter(|d| d.is_finite() && *d > 0.0).unwrap_or(10.0);
1178 self.db
1179 .prepare(
1180 "INSERT INTO cost_map (product, meter, bucket, price_meter, own_meter, scale_to_own, drift_percent, note, updated_at, updated_by)
1181 VALUES (?1, ?2, ?3, ?4, ?5, ?6, ?7, ?8, ?9, ?10)
1182 ON CONFLICT (product, meter) DO UPDATE SET bucket = ?3, price_meter = ?4, own_meter = ?5, scale_to_own = ?6,
1183 drift_percent = ?7, note = ?8, updated_at = ?9, updated_by = ?10",
1184 )
1185 .bind(&[
1186 product.as_str().into(),
1187 meter.as_str().into(),
1188 bucket.as_str().into(),
1189 crate::optional(price_meter.as_deref()),
1190 crate::optional(own_meter.as_deref()),
1191 i32::from(a.scale_to_own).into(),
1192 drift.into(),
1193 a.note.trim().into(),
1194 now.as_str().into(),
1195 a.by.as_str().into(),
1196 ])?
1197 .run()
1198 .await?;
1199 self.audit("costs", "cost_mapping", &format!("{product}/{meter} → {bucket}"), &a.by).await?;
1200 Ok(Outcome::Ok(CostMapping {
1201 product,
1202 meter,
1203 bucket,
1204 price_meter,
1205 own_meter,
1206 scale_to_own: a.scale_to_own,
1207 drift_percent: drift,
1208 note: a.note.trim().to_owned(),
1209 updated_at: now,
1210 updated_by: a.by,
1211 }))
1212 }
1213
1214 /// `admin_costs`: the Costs & margin page.
1215 pub(crate) async fn admin_costs(&self, a: AdminCostsArgs, configured: bool) -> Result<CostsReport> {
1216 let until = rfc3339(now_ms())[..10].to_owned();
1217 let span = u64::from(a.days.unwrap_or(30).clamp(7, 90));
1218 let since = day_before(&until, span - 1);
1219 let days = self.margin_days(&since, &until).await?;
1220 let rules = self.rules().await?;
1221
1222 let mut products: BTreeMap<String, ProductMargin> = BTreeMap::new();
1223 let mut overall = OverallMargin::default();
1224 for d in &days {
1225 let p = products.entry(d.bucket.clone()).or_insert_with(|| ProductMargin {
1226 bucket: d.bucket.clone(),
1227 title: costs::bucket_title(&d.bucket),
1228 cost_source: if NOT_CLOUDFLARE.contains(&d.bucket.as_str()) { "ledger" } else { "cloudflare" }.into(),
1229 overhead: OVERHEAD.contains(&d.bucket.as_str()),
1230 ..ProductMargin::default()
1231 });
1232 p.cf_cost_micros += d.cf_cost_micros;
1233 p.own_cost_micros += d.own_cost_micros;
1234 p.value_micros += d.value_micros;
1235 p.cost_micros += d.cost();
1236 overall.cost_micros += d.cost();
1237 if d.bucket == "platform" {
1238 overall.plans_micros += d.cash_micros;
1239 } else {
1240 overall.usage_micros += d.cash_micros;
1241 }
1242 }
1243 for p in products.values_mut() {
1244 p.margin_micros = p.value_micros - p.cost_micros;
1245 p.margin_percent = margin_percent(p.value_micros, p.cost_micros);
1246 }
1247 let revenue = overall.usage_micros + overall.plans_micros;
1248 overall.margin_micros = revenue - overall.cost_micros;
1249 overall.margin_percent = margin_percent(revenue, overall.cost_micros);
1250 let mut products: Vec<ProductMargin> = products.into_values().collect();
1251 products.sort_by_key(|p| std::cmp::Reverse(p.cost_micros.max(p.value_micros)));
1252
1253 #[derive(Deserialize)]
1254 struct DriftRow {
1255 bucket: String,
1256 kind: String,
1257 ours: f64,
1258 cloudflare: f64,
1259 delta_percent: Option<f64>,
1260 detail: String,
1261 found_at: String,
1262 }
1263 let drift = self
1264 .db
1265 .prepare("SELECT * FROM cost_drift ORDER BY kind, bucket")
1266 .all()
1267 .await?
1268 .results::<DriftRow>()?
1269 .into_iter()
1270 .map(|r| CostDrift {
1271 title: costs::bucket_title(&r.bucket),
1272 bucket: r.bucket,
1273 kind: r.kind,
1274 ours: r.ours,
1275 cloudflare: r.cloudflare,
1276 delta_percent: r.delta_percent,
1277 detail: r.detail,
1278 found_at: r.found_at,
1279 })
1280 .collect();
1281
1282 #[derive(Deserialize)]
1283 struct Top {
1284 workspace: String,
1285 cost: Option<i64>,
1286 revenue: Option<i64>,
1287 internal: i64,
1288 }
1289 let top_workspaces = self
1290 .db
1291 .prepare(format!(
1292 "SELECT workspace, SUM(cost_micros) AS cost, SUM(revenue_micros) AS revenue,
1293 CASE WHEN workspace IN ({}) THEN 1 ELSE 0 END AS internal
1294 FROM workspace_costs WHERE day >= ?1 AND day <= ?2 GROUP BY workspace ORDER BY cost DESC LIMIT 15",
1295 crate::sales::INTERNAL_SQL
1296 ))
1297 .bind(&[since.as_str().into(), until.as_str().into()])?
1298 .all()
1299 .await?
1300 .results::<Top>()?
1301 .into_iter()
1302 .map(|t| WorkspaceCost { workspace: t.workspace, cost_micros: t.cost.unwrap_or(0), revenue_micros: t.revenue.unwrap_or(0), internal: t.internal == 1 })
1303 .collect();
1304
1305 #[derive(Deserialize)]
1306 struct Summary {
1307 source: String,
1308 product: String,
1309 meter: String,
1310 raw_name: String,
1311 unit: String,
1312 quantity: f64,
1313 cost_usd: f64,
1314 }
1315 let lines = self
1316 .db
1317 .prepare(
1318 "SELECT source, product, meter, MAX(raw_name) AS raw_name, MAX(unit) AS unit, SUM(quantity) AS quantity, SUM(cost_usd) AS cost_usd
1319 FROM cost_lines WHERE day >= ?1 AND day <= ?2 GROUP BY source, product, meter ORDER BY cost_usd DESC, product, meter LIMIT 200",
1320 )
1321 .bind(&[since.as_str().into(), until.as_str().into()])?
1322 .all()
1323 .await?
1324 .results::<Summary>()?
1325 .into_iter()
1326 .map(|l| CostLineSummary {
1327 bucket: costs::classify(&rules, &l.product, &l.meter).map(|r| r.bucket.clone()),
1328 product: l.product,
1329 meter: l.meter,
1330 raw_name: l.raw_name,
1331 unit: l.unit,
1332 source: l.source,
1333 quantity: l.quantity,
1334 cost_micros: micros(l.cost_usd),
1335 })
1336 .collect();
1337
1338 #[derive(Deserialize)]
1339 struct MapRow {
1340 product: String,
1341 meter: String,
1342 bucket: String,
1343 price_meter: Option<String>,
1344 own_meter: Option<String>,
1345 scale_to_own: i64,
1346 drift_percent: f64,
1347 note: String,
1348 updated_at: String,
1349 updated_by: String,
1350 }
1351 let mappings = self
1352 .db
1353 .prepare("SELECT * FROM cost_map ORDER BY product, meter")
1354 .all()
1355 .await?
1356 .results::<MapRow>()?
1357 .into_iter()
1358 .map(|m| CostMapping {
1359 product: m.product,
1360 meter: m.meter,
1361 bucket: m.bucket,
1362 price_meter: m.price_meter,
1363 own_meter: m.own_meter,
1364 scale_to_own: m.scale_to_own == 1,
1365 drift_percent: m.drift_percent,
1366 note: m.note,
1367 updated_at: m.updated_at,
1368 updated_by: m.updated_by,
1369 })
1370 .collect();
1371
1372 #[derive(Deserialize)]
1373 struct Fetched {
1374 at: Option<String>,
1375 }
1376 let fetched_at = self.db.prepare("SELECT MAX(fetched_at) AS at FROM cost_lines").first::<Fetched>(None).await?.and_then(|f| f.at);
1377
1378 Ok(CostsReport {
1379 configured,
1380 fetched_at,
1381 days: days
1382 .iter()
1383 .map(|d| CostDay {
1384 day: d.day.clone(),
1385 bucket: d.bucket.clone(),
1386 cf_cost_micros: d.cf_cost_micros,
1387 own_cost_micros: d.own_cost_micros,
1388 value_micros: d.value_micros,
1389 cash_micros: d.cash_micros,
1390 })
1391 .collect(),
1392 since,
1393 until,
1394 products,
1395 overall,
1396 drift,
1397 alerts: self.admin_cost_alerts(AdminCostAlertsArgs {}).await?,
1398 proposals: self.proposals().await?,
1399 versions: self.versions().await?,
1400 top_workspaces,
1401 lines,
1402 mappings,
1403 settings: self.cost_settings().await?,
1404 })
1405 }
1406}
1407
1408#[cfg(test)]
1409mod tests {
1410 use super::*;
1411
1412 fn rule(product: &str, meter: &str, bucket: &str, own: Option<&str>) -> Rule {
1413 Rule { product: product.into(), meter: meter.into(), bucket: bucket.into(), price_meter: None, own_meter: own.map(Into::into), drift_percent: 10.0 }
1414 }
1415
1416 fn rules() -> Vec<Rule> {
1417 vec![
1418 rule("containers", "*", "sandboxes", None),
1419 rule("workers", "*", "platform", None),
1420 rule("artifacts", "*", "git", Some("git_operations")),
1421 rule("artifacts", "events_", "git", Some("git_operations")),
1422 ]
1423 }
1424
1425 fn revenue_map() -> BTreeMap<String, String> {
1426 [("sandbox", "sandboxes"), ("git", "git"), ("plan", "platform")].iter().map(|(k, v)| (k.to_string(), v.to_string())).collect()
1427 }
1428
1429 fn line(day: &str, source: &str, product: &str, meter: &str, quantity: f64, cost: f64) -> LineRow {
1430 LineRow { day: day.into(), source: source.into(), product: product.into(), meter: meter.into(), quantity, cost_usd: cost }
1431 }
1432
1433 fn usage(day: &str, workspace: &str, key: &str, value: i64, cash: i64, cost: i64) -> UsageRow {
1434 UsageRow { day: day.into(), workspace: workspace.into(), key: key.into(), value, cash, cost }
1435 }
1436
1437 #[test]
1438 fn a_day_puts_the_bill_g1ts_counts_and_charges_side_by_side() {
1439 let lines = vec![
1440 line("2026-10-15", SOURCE_BILLABLE, "containers", "container_memory", 1000.0, 2.00),
1441 line("2026-10-15", SOURCE_BILLABLE, "artifacts", "artifacts_operations", 30_000.0, 3.00),
1442 // Artifacts' own events: not used while the bill has a count.
1443 line("2026-10-15", SOURCE_ARTIFACTS, "artifacts", "events_pull", 29_000.0, 0.0),
1444 line("2026-10-15", SOURCE_BILLABLE, "workers", "workers_cpu_ms", 1.0, 0.50),
1445 line("2026-10-15", SOURCE_BILLABLE, "browser_rendering", "browser_hours", 2.0, 0.25),
1446 ];
1447 let own = vec![
1448 OwnRow { day: "2026-10-15".into(), meter: "git_operations".into(), workspace: "acme".into(), quantity: 7_500.0 },
1449 OwnRow { day: "2026-10-15".into(), meter: "git_operations".into(), workspace: "beta".into(), quantity: 2_500.0 },
1450 ];
1451 let usage = vec![
1452 usage("2026-10-15", "acme", "sandbox", 2_400_000, 1_000_000, 2_000_000),
1453 usage("2026-10-15", "beta", "sandbox", 1_200_000, 1_200_000, 1_000_000),
1454 usage("2026-10-15", "acme", "git", 600_000, 600_000, 500_000),
1455 usage("2026-10-15", "acme", "implement", 120_000, 120_000, 100_000),
1456 usage("2026-10-15", "beta", "plan", 20_000_000, 20_000_000, 0),
1457 ];
1458 let (days, workspaces) = fold(&rules(), &revenue_map(), &lines, &own, &usage);
1459 let get = |bucket: &str| days.iter().find(|d| d.bucket == bucket).unwrap();
1460 let sandboxes = get("sandboxes");
1461 assert_eq!((sandboxes.cf_cost_micros, sandboxes.own_cost_micros, sandboxes.value_micros, sandboxes.cash_micros), (2_000_000, 3_000_000, 3_600_000, 2_200_000));
1462 let git = get("git");
1463 assert_eq!(git.cf_cost_micros, 3_000_000);
1464 assert_eq!((git.cf_quantity, git.own_quantity), (30_000.0, 10_000.0));
1465 assert_eq!(get("platform").value_micros, 20_000_000);
1466 // Not mapped: a leak until someone maps it.
1467 assert_eq!(get(UNMAPPED).cf_cost_micros, 250_000);
1468 // Models: no Cloudflare line, their cost is g1t's own.
1469 assert_eq!(get("models").cost(), 100_000);
1470 // Git's cost shared by g1t's own counts (Cloudflare gave none per
1471 // workspace here): three quarters to acme.
1472 let share = |ws: &str, bucket: &str| workspaces.iter().find(|w| w.workspace == ws && w.bucket == bucket).map(|w| (w.cost, w.revenue));
1473 assert_eq!(share("acme", "git"), Some((2_250_000, 600_000)));
1474 assert_eq!(share("beta", "git"), Some((750_000, 0)));
1475 // Every bucket's cost is shared out exactly.
1476 for d in &days {
1477 let shared: i64 = workspaces.iter().filter(|w| w.bucket == d.bucket).map(|w| w.cost).sum();
1478 assert_eq!(shared, d.cost(), "{}", d.bucket);
1479 }
1480 }
1481
1482 #[test]
1483 fn artifacts_events_count_when_the_bill_does_not() {
1484 let lines = vec![
1485 line("2026-10-05", SOURCE_ARTIFACTS, "artifacts", "events_pull", 120.0, 0.0),
1486 line("2026-10-05", SOURCE_ARTIFACTS, "artifacts", "events_push", 30.0, 0.0),
1487 line("2026-10-05", SOURCE_ARTIFACTS, "artifacts", "events_ratelimited", 9.0, 0.0),
1488 ];
1489 let (days, _) = fold(&rules(), &revenue_map(), &lines, &[], &[]);
1490 assert_eq!(days[0].cf_quantity, 150.0);
1491 assert_eq!(days[0].cf_cost_micros, 0);
1492 }
1493
1494 #[test]
1495 fn month_end_meters_are_told_by_the_day_from_snapshots() {
1496 let snap = |day: &str, cost: i64, charge: i64| (day.to_string(), "acme".to_string(), "git".to_string(), cost, charge);
1497 let rows = pending_deltas(&[snap("2026-10-30", 100, 120), snap("2026-10-31", 250, 300), snap("2026-11-01", 40, 48), snap("2026-11-02", 40, 48)]);
1498 assert_eq!(
1499 rows.iter().map(|r| (r.day.as_str(), r.cost, r.value)).collect::<Vec<_>>(),
1500 vec![("2026-10-30", 100, 120), ("2026-10-31", 150, 180), ("2026-11-01", 40, 48)]
1501 );
1502 }
1503
1504 #[test]
1505 fn a_plan_payment_is_spread_over_the_month_it_pays_for() {
1506 let days = spread("2026-10-01T00:00:00.000Z", 20_000_000, 30);
1507 assert_eq!(days.len(), 30);
1508 assert_eq!(days[0], ("2026-10-01".to_string(), 666_667));
1509 assert_eq!(days[29], ("2026-10-30".to_string(), 666_666));
1510 assert_eq!(days.iter().map(|d| d.1).sum::<i64>(), 20_000_000);
1511 assert!(spread("2026-10-01", 0, 30).is_empty());
1512 assert_eq!(dollars(17_024_000), "$17.02");
1513 assert_eq!(dollars(-27_668_620), "-$27.67");
1514 assert_eq!(dollars(63_000), "$0.063");
1515 }
1516
1517 #[test]
1518 fn margins_and_deltas() {
1519 assert_eq!(margin_percent(1_200_000, 1_000_000).map(|m| (m * 100.0).round() / 100.0), Some(16.67));
1520 assert_eq!(margin_percent(0, 5), None);
1521 assert_eq!(delta_percent(110.0, 100.0), Some(10.0));
1522 assert_eq!(delta_percent(1.0, 0.0), None);
1523 }
1524
1525 fn day(bucket: &str, cf: i64, own: i64, value: i64, cfq: f64, ownq: f64) -> ProductDay {
1526 ProductDay { day: "2026-10-15".into(), bucket: bucket.into(), cf_cost_micros: cf, own_cost_micros: own, value_micros: value, cash_micros: value, cf_quantity: cfq, own_quantity: ownq }
1527 }
1528
1529 #[test]
1530 fn counts_more_than_the_threshold_apart_are_drift() {
1531 // Cloudflare counted 30,000 operations where g1t counted 10,000:
1532 // binding reads, perhaps. -66.7%.
1533 let drift = drifts("git", &[day("git", 3_000_000, 1_500_000, 1_800_000, 30_000.0, 10_000.0)], 10.0, true, 100_000);
1534 assert_eq!(drift.iter().map(|d| d.kind).collect::<Vec<_>>(), vec![DriftKind::Count, DriftKind::Cost]);
1535 assert!((drift[0].delta_percent.unwrap() + 66.666).abs() < 0.01);
1536 // 9% apart: within 10%.
1537 assert!(drifts("git", &[day("git", 1_000_000, 1_000_000, 1_200_000, 10_000.0, 10_900.0)], 10.0, true, 100_000).is_empty());
1538 // Uncounted products have no count drift.
1539 assert!(drifts("sandboxes", &[day("sandboxes", 1_000_000, 1_050_000, 1_200_000, 5.0, 0.0)], 10.0, false, 100_000).is_empty());
1540 }
1541
1542 #[test]
1543 fn cost_with_no_revenue_is_a_leak_but_not_for_running_g1t() {
1544 let leak = drifts("actions_cache", &[day("actions_cache", 400_000, 0, 0, 0.0, 0.0)], 10.0, false, 100_000);
1545 assert_eq!(leak.len(), 1);
1546 assert_eq!(leak[0].kind, DriftKind::Leak);
1547 assert!(drifts("platform", &[day("platform", 5_000_000, 0, 0, 0.0, 0.0)], 10.0, false, 100_000).is_empty());
1548 // Pennies say nothing.
1549 assert!(drifts("actions_cache", &[day("actions_cache", 50_000, 0, 0, 0.0, 0.0)], 10.0, false, 100_000).is_empty());
1550 assert!(drifts(UNMAPPED, &[day(UNMAPPED, 250_000, 0, 0, 0.0, 0.0)], 10.0, false, 100_000)[0].kind == DriftKind::Leak);
1551 }
1552
1553 #[test]
1554 fn a_margin_alert_needs_n_days_in_a_row_under_the_floor() {
1555 let s = |d: &str, revenue: i64, cost: i64| (d.to_string(), revenue, cost);
1556 // 5%, 0%, -20%: three days under 10%.
1557 let series = vec![s("10-13", 1_200_000, 1_000_000), s("10-14", 1_050_000, 1_000_000), s("10-15", 1_000_000, 1_000_000), s("10-16", 1_000_000, 1_200_000)];
1558 let (from, worst) = breach(&series, 10.0, 3, 100_000).unwrap();
1559 assert_eq!(from, "10-14");
1560 assert!((worst + 20.0).abs() < 1e-9);
1561 // A good day in the window clears it.
1562 let mended = vec![s("10-14", 1_050_000, 1_000_000), s("10-15", 1_300_000, 1_000_000), s("10-16", 1_000_000, 1_200_000)];
1563 assert!(breach(&mended, 10.0, 3, 100_000).is_none());
1564 // Cost with no revenue at all is the worst margin there is.
1565 assert_eq!(breach(&[s("10-16", 0, 500_000)], 10.0, 1, 100_000).unwrap().1, -100.0);
1566 // Too little cost to judge.
1567 assert!(breach(&[s("10-16", 0, 5_000)], 10.0, 1, 100_000).is_none());
1568 assert!(breach(&series, 10.0, 9, 100_000).is_none());
1569 }
1570
1571 #[test]
1572 fn shared_costs_add_up_to_the_bill() {
1573 let w = |k: &str, v: f64| (k.to_string(), v);
1574 assert_eq!(attribute(100, &[w("a", 1.0), w("b", 1.0), w("c", 1.0)]), vec![("a".into(), 34), ("b".into(), 33), ("c".into(), 33)]);
1575 assert_eq!(attribute(10, &[w("a", 3.0), w("b", 1.0), w("a", 0.0)]), vec![("a".into(), 8), ("b".into(), 2)]);
1576 assert!(attribute(10, &[w("a", 0.0)]).is_empty());
1577 assert!(attribute(0, &[w("a", 1.0)]).is_empty());
1578 }
1579
1580 #[test]
1581 fn a_workspace_that_costs_more_than_it_pays_is_flagged() {
1582 let rows = vec![("acme".to_string(), 5_000_000, 1_000_000), ("beta".to_string(), 900_000, 0), ("gamma".to_string(), 2_000_000, 3_000_000)];
1583 let found = anomalies(&rows, 1.0, 1_000_000);
1584 assert_eq!(found, vec![("acme".to_string(), 5_000_000, 1_000_000)]);
1585 // At twice its revenue as the threshold, $5 against $3 is fine.
1586 assert!(anomalies(&[("acme".to_string(), 5_000_000, 3_000_000)], 2.0, 1_000_000).is_empty());
1587 }
1588
1589 #[test]
1590 fn a_git_operation_costs_what_cloudflare_counts_for_it() {
1591 // $0.15 per 1,000 of Cloudflare's operations, on the charged days.
1592 let rate = billed_rate(&[(10_000.0, 0.0), (20_000.0, 3.0), (30_000.0, 4.5), (5_000.0, 0.75)]).unwrap();
1593 assert!((rate - 0.000_15).abs() < 1e-12);
1594 // Cloudflare counted 3 for every 1 g1t did: binding reads count.
1595 let per_op = derived_unit_cost(rate, 300_000.0, 100_000.0).unwrap();
1596 let per_thousand_micros = per_op * unit_size("1,000 operations") * 1e6;
1597 assert!((per_thousand_micros - 450_000.0).abs() < 1e-6, "{per_thousand_micros}");
1598 // Too few of g1t's units to say.
1599 assert!(derived_unit_cost(rate, 3_000.0, 500.0).is_none());
1600 assert!(billed_rate(&[(10_000.0, 0.0)]).is_none());
1601 assert_eq!(unit_size("million requests"), 1e6);
1602 assert_eq!(unit_size("second"), 1.0);
1603 }
1604}