feat(search): add api-backed filtering and sorting
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@@ -0,0 +1,217 @@
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import { describe, expect, it } from "vitest"
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import { searchCatalog } from "@/lib/search/search-catalog"
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import { mockPlayers } from "@/lib/mock/players"
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import { mockShops } from "@/lib/mock/shops"
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import { mockServices } from "@/lib/mock/services"
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import type { SearchCatalogData } from "@/lib/search/search-catalog"
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const data: SearchCatalogData = {
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players: mockPlayers,
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shops: mockShops,
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services: mockServices,
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}
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describe("searchCatalog", () => {
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describe("q matching (case-insensitive)", () => {
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it("matches player nickname", () => {
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const res = searchCatalog({ q: "winter", limit: 50 }, data)
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const playerItems = res.items.filter((i) => i.type === "player")
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expect(playerItems.some((i) => i.type === "player" && i.player.id === "u6")).toBe(true)
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})
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it("matches player nickname case-insensitively", () => {
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const res = searchCatalog({ q: "WINTER", limit: 50 }, data)
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const playerItems = res.items.filter((i) => i.type === "player")
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expect(playerItems.some((i) => i.type === "player" && i.player.id === "u6")).toBe(true)
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})
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it("matches shop name", () => {
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const res = searchCatalog({ q: "yuki", limit: 50 }, data)
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const shopItems = res.items.filter((i) => i.type === "shop")
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expect(shopItems.some((i) => i.type === "shop" && i.shop.id === "shop2")).toBe(true)
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})
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it("matches player game name", () => {
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const res = searchCatalog({ q: "cs2", limit: 50 }, data)
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const playerItems = res.items.filter((i) => i.type === "player")
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// u8 has CS2 in games
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expect(playerItems.some((i) => i.type === "player" && i.player.id === "u8")).toBe(true)
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})
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it("matches shop derived games", () => {
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const res = searchCatalog({ q: "cs2", limit: 50 }, data)
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const shopItems = res.items.filter((i) => i.type === "shop")
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// shop1 has CS2 via u5's service s3
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expect(shopItems.some((i) => i.type === "shop" && i.shop.id === "shop1")).toBe(true)
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})
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it("returns all items when q is empty", () => {
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const res = searchCatalog({ limit: 50 }, data)
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expect(res.meta.total).toBe(mockPlayers.length + mockShops.length)
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})
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})
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describe("selectedGames ANY-match", () => {
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it("filters players by game", () => {
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const res = searchCatalog({ selectedGames: ["CS2"], limit: 50 }, data)
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const playerItems = res.items.filter((i) => i.type === "player")
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expect(playerItems.every((i) => i.type === "player" && i.player.games.includes("CS2"))).toBe(
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true,
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)
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expect(playerItems.length).toBeGreaterThan(0)
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})
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it("filters shops by derived games from services", () => {
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const res = searchCatalog({ selectedGames: ["CS2"], limit: 50 }, data)
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const shopItems = res.items.filter((i) => i.type === "shop")
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// shop1 has CS2 via services
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expect(shopItems.some((i) => i.type === "shop" && i.shop.id === "shop1")).toBe(true)
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})
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it("uses ANY-match (OR) for multiple games", () => {
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const res = searchCatalog({ selectedGames: ["CS2", "王者荣耀"], limit: 50 }, data)
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// Should include players with either game
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expect(res.meta.total).toBeGreaterThan(0)
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const playerItems = res.items.filter((i) => i.type === "player")
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for (const item of playerItems) {
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if (item.type === "player") {
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expect(item.player.games.includes("CS2") || item.player.games.includes("王者荣耀")).toBe(
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true,
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)
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}
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}
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})
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})
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describe("onlyOnline semantics", () => {
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it("filters players by status === available", () => {
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const res = searchCatalog({ onlyOnline: true, limit: 50 }, data)
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const playerItems = res.items.filter((i) => i.type === "player")
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for (const item of playerItems) {
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if (item.type === "player") {
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expect(item.player.status).toBe("available")
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}
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}
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// u7 is busy, u9 is offline — they should be excluded
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expect(playerItems.some((i) => i.type === "player" && i.player.id === "u7")).toBe(false)
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expect(playerItems.some((i) => i.type === "player" && i.player.id === "u9")).toBe(false)
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})
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it("filters shops by hasAvailable (any player available)", () => {
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const res = searchCatalog({ onlyOnline: true, limit: 50 }, data)
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const shopItems = res.items.filter((i) => i.type === "shop")
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for (const item of shopItems) {
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if (item.type === "shop") {
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expect(item.hasAvailable).toBe(true)
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}
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}
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// shop3 has only u9 (offline) → excluded
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expect(shopItems.some((i) => i.type === "shop" && i.shop.id === "shop3")).toBe(false)
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// shop1 has u5 (available) → included
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expect(shopItems.some((i) => i.type === "shop" && i.shop.id === "shop1")).toBe(true)
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})
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})
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describe("price min/max parsing", () => {
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it("filters by min price", () => {
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const res = searchCatalog({ min: "25", limit: 50 }, data)
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for (const item of res.items) {
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expect(item.minPrice).toBeGreaterThanOrEqual(25)
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}
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})
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it("filters by max price", () => {
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const res = searchCatalog({ max: "20", limit: 50 }, data)
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for (const item of res.items) {
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expect(item.minPrice).toBeLessThanOrEqual(20)
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}
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})
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it("NaN min does not filter (min='abc' → minP=NaN)", () => {
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const resAll = searchCatalog({ limit: 50 }, data)
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const resNaN = searchCatalog({ min: "abc", limit: 50 }, data)
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// NaN comparison: item.minPrice < NaN is always false, so nothing is excluded by min
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// But items with minPrice < 0 would pass too — effectively no min filter
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expect(resNaN.meta.total).toBe(resAll.meta.total)
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})
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it("NaN max does not filter (max='abc' → maxP=NaN)", () => {
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const resAll = searchCatalog({ limit: 50 }, data)
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const resNaN = searchCatalog({ max: "abc", limit: 50 }, data)
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// max is truthy ("abc") so the max filter runs, but item.minPrice > NaN is always false
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expect(resNaN.meta.total).toBe(resAll.meta.total)
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})
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})
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describe("sort options", () => {
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it("sorts by rating descending", () => {
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const res = searchCatalog({ sort: "rating", limit: 50 }, data)
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for (let i = 1; i < res.items.length; i++) {
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expect(res.items[i - 1].rating).toBeGreaterThanOrEqual(res.items[i].rating)
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}
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})
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it("sorts by orders descending", () => {
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const res = searchCatalog({ sort: "orders", limit: 50 }, data)
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for (let i = 1; i < res.items.length; i++) {
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expect(res.items[i - 1].orders).toBeGreaterThanOrEqual(res.items[i].orders)
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}
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})
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it("sorts by price ascending", () => {
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const res = searchCatalog({ sort: "price_asc", limit: 50 }, data)
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for (let i = 1; i < res.items.length; i++) {
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expect(res.items[i - 1].minPrice).toBeLessThanOrEqual(res.items[i].minPrice)
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}
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})
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it("sorts by price descending", () => {
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const res = searchCatalog({ sort: "price_desc", limit: 50 }, data)
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for (let i = 1; i < res.items.length; i++) {
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expect(res.items[i - 1].minPrice).toBeGreaterThanOrEqual(res.items[i].minPrice)
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}
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})
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it("sorts by composite formula descending", () => {
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const res = searchCatalog({ sort: "composite", limit: 50 }, data)
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const scores = res.items.map((i) => i.rating * Math.log10(i.orders + 1))
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for (let i = 1; i < scores.length; i++) {
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expect(scores[i - 1]).toBeGreaterThanOrEqual(scores[i])
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}
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})
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it("uses stable tie-breaker by insertion order", () => {
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// Create data with identical ratings to test tie-breaking
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const res = searchCatalog({ sort: "rating", limit: 50 }, data)
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// Items with same rating should preserve insertion order (players before shops)
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const sameRating = res.items.filter((i) => i.rating === res.items[0].rating)
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if (sameRating.length > 1) {
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// They should be in original insertion order
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expect(sameRating.length).toBeGreaterThan(0)
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}
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})
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})
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describe("pagination offset/limit", () => {
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it("returns correct meta", () => {
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const res = searchCatalog({ limit: 2, offset: 0 }, data)
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expect(res.meta.limit).toBe(2)
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expect(res.meta.offset).toBe(0)
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expect(res.items.length).toBe(2)
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expect(res.meta.total).toBe(mockPlayers.length + mockShops.length)
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})
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it("offset skips items", () => {
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const all = searchCatalog({ limit: 50 }, data)
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const page2 = searchCatalog({ limit: 2, offset: 2 }, data)
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expect(page2.items[0]).toEqual(all.items[2])
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expect(page2.items[1]).toEqual(all.items[3])
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})
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it("offset beyond total returns empty items", () => {
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const res = searchCatalog({ limit: 10, offset: 100 }, data)
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expect(res.items.length).toBe(0)
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expect(res.meta.total).toBeGreaterThan(0)
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})
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})
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})
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