Tresorit
Sync a small encrypted folder set to user-owned storage with secure links
A consolation build is possible, but the paid product's decisive value sits outside a solo rebuild. For Tresorit, sync a small encrypted folder set to user-owned storage with secure links. The hard boundary is audited encryption, cross-platform clients, sharing policy, recovery, and compliance, plus reliability, durability, and cross-device sync.
Build verification: not recorded. How we judge buildability
What you give up
- audited encryption, cross-platform clients, sharing policy, recovery, and compliance
- global sync network
- battle-tested conflict resolution
- ransomware recovery guarantees
- mobile clients and support
Why people still pay
People still pay for Tresorit because storage subscriptions sell confidence that files will still exist after a lost device, bad sync, or provider incident. The recurring cost buys chunking, encryption, conflict detection, versions, garbage collection, bandwidth, restore drills, monitoring, billing, and disaster recovery, not just the visible interface.
Your build guide
The stack, security requirements, and agent rules for a focused replacement.
Before you start
- user-owned server or S3-compatible bucket
- PostgreSQL
- MinIO or object storage
- desktop filesystem permissions
- backup key stored offline
Use these project rules and optional skill references alongside the prompt. Review each skill before adding it to your agent; the AGENTS.md export includes the same guidance.
Project rule, data: Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL.
Project rule, behavior: Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests.
Project rule, recovery: Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers.
Implementation plan
Phase 1, architecture and data
Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL.
Phase 2, implement
Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests.
Phase 3, implement
Sync and back up a small folder set, encrypt files client-side, share secure links, track versions, and restore them from user-owned object storage.
Phase 4, review and output
Sync a small encrypted folder set to user-owned storage with secure links. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests.
Phase 5, recovery and acceptance
Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Verify this invariant with a saved fixture: An invalid input or interrupted operation must retain the source and show a recoverable state; exported records must reload with the same IDs. State the practical limit: audited encryption, cross-platform clients, sharing policy, recovery, and compliance.
Build me a focused file sync, sharing and backup workflow for the personal core of Tresorit. Requirements: - Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. - Paid product context: Sync a small encrypted folder set to user-owned storage with secure links. Build only this DIY scope: Sync and back up a small folder set, encrypt files client-side, share secure links, track versions, and restore them from user-owned object storage. - Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. - Sync and back up a small folder set, encrypt files client-side, share secure links, track versions, and restore them from user-owned object storage. - Sync a small encrypted folder set to user-owned storage with secure links. - Use a desktop window with source import, a work list, and result export. Required input or access: user-owned server or S3-compatible bucket; MinIO or object storage. - Recovery: Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. - Acceptance: with one labelled sample, show the input, saved intermediate state, and exported result; verify this invariant: An invalid input or interrupted operation must retain the source and show a recoverable state; exported records must reload with the same IDs. - Out of scope: audited encryption, cross-platform clients, sharing policy, recovery, and compliance; global sync network. Keep this a personal, inspectable workflow. - Include a README with setup, a sample input, required keys or permissions, data location, and the supported scope.
$ open in your agent (prompt prefilled, you press enter), copy the prompt or copy AGENTS.md · generated from this app's build plan
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Questions about Tresorit
Can you build your own Tresorit with AI?
A full replacement is not the recommended project. A consolation build is possible, but the paid product's decisive value sits outside a solo rebuild. For Tresorit, sync a small encrypted folder set to user-owned storage with secure links. The hard boundary is audited encryption, cross-platform clients, sharing policy, recovery, and compliance, plus reliability, durability, and cross-device sync.
What does the Tresorit build prompt cover?
The prompt starts with this scope: Sync and back up a small folder set, encrypt files client-side, share secure links, track versions, and restore them from user-owned object storage. Full-product capabilities excluded from the comparison include: audited encryption, cross-platform clients, sharing policy, recovery, and compliance; global sync network; battle-tested conflict resolution. Follow the implementation plan and its prerequisites before expanding the build.
How do I use the prompt, AGENTS.md and agent skills?
Start with the Tresorit prerequisites and stack, then copy the prompt into your coding agent. Save the project rules as AGENTS.md in the project root. Linked skills are optional packages or source instructions for specific tasks; review their current contents and install only those matching the chosen stack. A skill does not supply API credentials or verify the finished app.
How long will this Tresorit project take?
The catalogue estimate is closest consolation build: one sitting for the limited scope. Setup, integration approvals, debugging, deployment and ongoing maintenance can add time. This is an estimate, not a delivery guarantee.
What would I give up by replacing Tresorit?
audited encryption, cross-platform clients, sharing policy, recovery, and compliance; global sync network; battle-tested conflict resolution; ransomware recovery guarantees; mobile clients and support. People still pay for Tresorit because storage subscriptions sell confidence that files will still exist after a lost device, bad sync, or provider incident. The recurring cost buys chunking, encryption, conflict detection, versions, garbage collection, bandwidth, restore drills, monitoring, billing, and disaster recovery, not just the visible interface.
What price is this guide comparing against?
The recorded Personal plan is $13.99/mo (monthly), checked 2026-07-31. Check the linked pricing source before buying. Building your own also has hosting, API and maintenance costs; the recorded amount is not a guaranteed saving.
What can I use instead of building Tresorit?
Peergos: End-to-end encrypted sync and secret links, with a smaller ecosystem and a stranger architecture. Check each option's license, hosting needs and feature limits.