| name | convex-migrations |
| displayName | Convex Migrations |
| description | Schema migration strategies for evolving applications including adding new fields, backfilling data, removing deprecated fields, index migrations, and zero-downtime migration patterns |
| version | 1.0.0 |
| author | Convex |
| tags | ["convex","migrations","schema","database","data-modeling"] |
Convex Migrations
Evolve your Convex database schema safely with patterns for adding fields, backfilling data, removing deprecated fields, and maintaining zero-downtime deployments.
Documentation Sources
Before implementing, do not assume; fetch the latest documentation:
Instructions
Migration Philosophy
Convex handles schema evolution differently than traditional databases:
- No explicit migration files or commands
- Schema changes deploy instantly with
npx convex dev
- Existing data is not automatically transformed
- Use optional fields and backfill mutations for safe migrations
Adding New Fields
Start with optional fields, then backfill:
import { defineSchema, defineTable } from "convex/server";
import { v } from "convex/values";
export default defineSchema({
users: defineTable({
name: v.string(),
email: v.string(),
avatarUrl: v.optional(v.string()),
}),
});
import { query } from "./_generated/server";
import { v } from "convex/values";
export const getUser = query({
args: { userId: v.id("users") },
returns: v.union(
v.object({
_id: v.id("users"),
name: v.string(),
email: v.string(),
avatarUrl: v.union(v.string(), v.null()),
}),
v.null()
),
handler: async (ctx, args) => {
const user = await ctx.db.get(args.userId);
if (!user) return null;
return {
_id: user._id,
name: user.name,
email: user.email,
avatarUrl: user.avatarUrl ?? null,
};
},
});
import { internalMutation } from "./_generated/server";
import { internal } from "./_generated/api";
import { v } from "convex/values";
const BATCH_SIZE = 100;
export const backfillAvatarUrl = internalMutation({
args: {
cursor: v.optional(v.string()),
},
returns: v.object({
processed: v.number(),
hasMore: v.boolean(),
}),
handler: async (ctx, args) => {
const result = await ctx.db
.query("users")
.paginate({ numItems: BATCH_SIZE, cursor: args.cursor ?? null });
let processed = 0;
for (const user of result.page) {
if (user.avatarUrl === undefined) {
await ctx.db.patch(user._id, {
avatarUrl: generateDefaultAvatar(user.name),
});
processed++;
}
}
if (!result.isDone) {
await ctx.scheduler.runAfter(0, internal.migrations.backfillAvatarUrl, {
cursor: result.continueCursor,
});
}
return {
processed,
hasMore: !result.isDone,
};
},
});
function generateDefaultAvatar(name: string): string {
return `https://api.dicebear.com/7.x/initials/svg?seed=${encodeURIComponent(name)}`;
}
export default defineSchema({
users: defineTable({
name: v.string(),
email: v.string(),
avatarUrl: v.string(),
}),
});
Removing Fields
Remove field usage before removing from schema:
export default defineSchema({
posts: defineTable({
title: v.string(),
content: v.string(),
authorId: v.id("users"),
}),
});
export const removeDeprecatedField = internalMutation({
args: {
cursor: v.optional(v.string()),
},
returns: v.null(),
handler: async (ctx, args) => {
const result = await ctx.db
.query("posts")
.paginate({ numItems: 100, cursor: args.cursor ?? null });
for (const post of result.page) {
const { legacyField, ...rest } = post as typeof post & { legacyField?: string };
if (legacyField !== undefined) {
await ctx.db.replace(post._id, rest);
}
}
if (!result.isDone) {
await ctx.scheduler.runAfter(0, internal.migrations.removeDeprecatedField, {
cursor: result.continueCursor,
});
}
return null;
},
});
Renaming Fields
Renaming requires copying data to new field, then removing old:
export default defineSchema({
users: defineTable({
userName: v.string(),
displayName: v.optional(v.string()),
}),
});
export const getUser = query({
args: { userId: v.id("users") },
returns: v.object({
_id: v.id("users"),
displayName: v.string(),
}),
handler: async (ctx, args) => {
const user = await ctx.db.get(args.userId);
if (!user) throw new Error("User not found");
return {
_id: user._id,
displayName: user.displayName ?? user.userName,
};
},
});
export const backfillDisplayName = internalMutation({
args: { cursor: v.optional(v.string()) },
returns: v.null(),
handler: async (ctx, args) => {
const result = await ctx.db
.query("users")
.paginate({ numItems: 100, cursor: args.cursor ?? null });
for (const user of result.page) {
if (user.displayName === undefined) {
await ctx.db.patch(user._id, {
displayName: user.userName,
});
}
}
if (!result.isDone) {
await ctx.scheduler.runAfter(0, internal.migrations.backfillDisplayName, {
cursor: result.continueCursor,
});
}
return null;
},
});
export default defineSchema({
users: defineTable({
displayName: v.string(),
}),
});
Adding Indexes
Add indexes before using them in queries:
export default defineSchema({
posts: defineTable({
title: v.string(),
authorId: v.id("users"),
publishedAt: v.optional(v.number()),
status: v.string(),
})
.index("by_author", ["authorId"])
.index("by_status_and_published", ["status", "publishedAt"]),
});
export const getPublishedPosts = query({
args: {},
returns: v.array(v.object({
_id: v.id("posts"),
title: v.string(),
publishedAt: v.number(),
})),
handler: async (ctx) => {
const posts = await ctx.db
.query("posts")
.withIndex("by_status_and_published", (q) =>
q.eq("status", "published")
)
.order("desc")
.take(10);
return posts
.filter((p) => p.publishedAt !== undefined)
.map((p) => ({
_id: p._id,
title: p.title,
publishedAt: p.publishedAt!,
}));
},
});
Changing Field Types
Type changes require careful migration:
export default defineSchema({
tasks: defineTable({
title: v.string(),
priority: v.string(),
priorityLevel: v.optional(v.number()),
}),
});
export const migratePriorityToNumber = internalMutation({
args: { cursor: v.optional(v.string()) },
returns: v.null(),
handler: async (ctx, args) => {
const result = await ctx.db
.query("tasks")
.paginate({ numItems: 100, cursor: args.cursor ?? null });
const priorityMap: Record<string, number> = {
low: 1,
medium: 2,
high: 3,
};
for (const task of result.page) {
if (task.priorityLevel === undefined) {
await ctx.db.patch(task._id, {
priorityLevel: priorityMap[task.priority] ?? 1,
});
}
}
if (!result.isDone) {
await ctx.scheduler.runAfter(0, internal.migrations.migratePriorityToNumber, {
cursor: result.continueCursor,
});
}
return null;
},
});
export const getTask = query({
args: { taskId: v.id("tasks") },
returns: v.object({
_id: v.id("tasks"),
title: v.string(),
priorityLevel: v.number(),
}),
handler: async (ctx, args) => {
const task = await ctx.db.get(args.taskId);
if (!task) throw new Error("Task not found");
const priorityMap: Record<string, number> = {
low: 1,
medium: 2,
high: 3,
};
return {
_id: task._id,
title: task.title,
priorityLevel: task.priorityLevel ?? priorityMap[task.priority] ?? 1,
};
},
});
export default defineSchema({
tasks: defineTable({
title: v.string(),
priorityLevel: v.number(),
}),
});
Migration Runner Pattern
Create a reusable migration system:
import { defineSchema, defineTable } from "convex/server";
import { v } from "convex/values";
export default defineSchema({
migrations: defineTable({
name: v.string(),
startedAt: v.number(),
completedAt: v.optional(v.number()),
status: v.union(
v.literal("running"),
v.literal("completed"),
v.literal("failed")
),
error: v.optional(v.string()),
processed: v.number(),
}).index("by_name", ["name"]),
});
import { internalMutation, internalQuery } from "./_generated/server";