Vibecode pCloud
track this build5 steps, step by step0%A consolation build is possible, but the paid product's decisive value sits outside a solo rebuild. For pCloud, sync and version selected folders against a user-owned object store. The hard boundary is cross-platform clients, media playback, sharing, optional encryption, and lifetime operations, plus reliability, durability, and cross-device sync.
You are building a lean indie version of pCloud. Create the following project files first, then implement the application by following them. Keep the files updated as decisions change. Do not collapse this into a single README or prompt. ===== README.md ===== # pCloud indie build ## Goal Build the smallest trustworthy replacement for the core pCloud workflow for one developer or a tiny team. ## Scope Sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. ## Quick start 1. Install the documented dependencies. 2. Copy `.env.example` to `.env`. 3. Run the development command chosen during implementation. 4. Complete the acceptance checks in `BUILD_PLAN.md`. ## Honest limits This build deliberately does not replace: - cross-platform clients, media playback, sharing, optional encryption, and lifetime operations - global sync network - battle-tested conflict resolution - ransomware recovery guarantees - mobile clients and support If those capabilities are essential, use Nextcloud instead of pretending the gap is solved. ===== AGENTS.md ===== # Agent instructions - Optimize for a working, understandable weekend build. - Prefer the fewest moving parts that satisfy the brief. - Do not invent cryptography, security guarantees, APIs, or compliance claims. - Keep secrets out of source control and logs. - Add focused tests for destructive, security-sensitive, and data-loss paths. - Run the project checks before declaring the build complete. - Record any deliberate shortcut in the README under "Tradeoffs". ===== BUILD_PLAN.md ===== # Build plan ## Original build brief Build a closest honest personal substitute for pCloud in an empty repository. Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client; do not offer alternative stacks. The core loop is: sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. Make the first run work locally with one documented command. Store all user data locally by default and make export straightforward. Put secrets in .env, ship .env.example, and never commit credentials. Build a desktop client that watches explicitly selected folders and ignores configured patterns. Chunk, hash, compress, and encrypt files locally before uploading to the configured object store. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. Document the failure model and make clear that one server is not a complete backup strategy. Include clear empty, loading, success, and recoverable error states. Add input validation, safe filenames, and graceful handling of unavailable APIs. Write focused tests for the core transformation and one end-to-end happy path. Create a README with setup, architecture, permissions, data location, and backup steps. Do not add accounts, billing, telemetry, analytics, or a hosted control plane. Do not claim to reproduce proprietary data, network liquidity, regulated access, or frontier infrastructure. Deliberately leave out multi-provider consumer sync at global scale. Deliberately leave out guaranteed durability or ransomware recovery. Deliberately leave out shared-drive administration, mobile apps, and enterprise compliance. Finish by running the tests and listing the exact commands used. ## Required capabilities - user-owned server or S3-compatible bucket - PostgreSQL - MinIO or object storage - desktop filesystem permissions - backup key stored offline ## Delivery order 1. Scaffold the smallest runnable application and document its commands. 2. Implement the primary data model and core workflow. 3. Add validation, safe failure states, and persistence. 4. Cover the critical path with automated tests. 5. Exercise a clean install from the README and fix every missing step. ## Done when - A new user can go from clone to first successful workflow using only the README. - The core workflow works without paid infrastructure unless the brief requires it. - Tests cover the highest-risk behavior. - Known limitations are explicit rather than hidden. ===== .env.example ===== # Copy to .env and document every variable when it is introduced. # Never put real credentials in this file. APP_ENV=development # Add only values required by the selected implementation.
You are building a lean indie version of pCloud. Create the following project files first, then implement the application by following them. Keep the files updated as decisions change. Do not collapse this into a single README or prompt. ===== README.md ===== # pCloud indie build ## Goal Build the smallest trustworthy replacement for the core pCloud workflow for one developer or a tiny team. ## Scope Sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. ## Quick start 1. Install the documented dependencies. 2. Copy `.env.example` to `.env`. 3. Run the development command chosen during implementation. 4. Complete the acceptance checks in `BUILD_PLAN.md`. ## Honest limits This build deliberately does not replace: - cross-platform clients, media playback, sharing, optional encryption, and lifetime operations - global sync network - battle-tested conflict resolution - ransomware recovery guarantees - mobile clients and support If those capabilities are essential, use Nextcloud instead of pretending the gap is solved. ===== AGENTS.md ===== # Agent instructions - Optimize for a working, understandable weekend build. - Prefer the fewest moving parts that satisfy the brief. - Do not invent cryptography, security guarantees, APIs, or compliance claims. - Keep secrets out of source control and logs. - Add focused tests for destructive, security-sensitive, and data-loss paths. - Run the project checks before declaring the build complete. - Record any deliberate shortcut in the README under "Tradeoffs". ===== BUILD_PLAN.md ===== # Build plan ## Original build brief Build a closest honest personal substitute for pCloud in an empty repository. Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client; do not offer alternative stacks. The core loop is: sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. Make the first run work locally with one documented command. Store all user data locally by default and make export straightforward. Put secrets in .env, ship .env.example, and never commit credentials. Build a desktop client that watches explicitly selected folders and ignores configured patterns. Chunk, hash, compress, and encrypt files locally before uploading to the configured object store. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. Document the failure model and make clear that one server is not a complete backup strategy. Include clear empty, loading, success, and recoverable error states. Add input validation, safe filenames, and graceful handling of unavailable APIs. Write focused tests for the core transformation and one end-to-end happy path. Create a README with setup, architecture, permissions, data location, and backup steps. Do not add accounts, billing, telemetry, analytics, or a hosted control plane. Do not claim to reproduce proprietary data, network liquidity, regulated access, or frontier infrastructure. Deliberately leave out multi-provider consumer sync at global scale. Deliberately leave out guaranteed durability or ransomware recovery. Deliberately leave out shared-drive administration, mobile apps, and enterprise compliance. Finish by running the tests and listing the exact commands used. ## Required capabilities - user-owned server or S3-compatible bucket - PostgreSQL - MinIO or object storage - desktop filesystem permissions - backup key stored offline ## Delivery order 1. Scaffold the smallest runnable application and document its commands. 2. Implement the primary data model and core workflow. 3. Add validation, safe failure states, and persistence. 4. Cover the critical path with automated tests. 5. Exercise a clean install from the README and fix every missing step. ## Done when - A new user can go from clone to first successful workflow using only the README. - The core workflow works without paid infrastructure unless the brief requires it. - Tests cover the highest-risk behavior. - Known limitations are explicit rather than hidden. ===== .env.example ===== # Copy to .env and document every variable when it is introduced. # Never put real credentials in this file. APP_ENV=development # Add only values required by the selected implementation.
You are building a production product version of pCloud. Create the following project files first, then implement the application by following them. Keep the files updated as decisions change. Do not collapse this into a single README or prompt. ===== PRODUCT.md ===== # pCloud product brief ## Problem A consolation build is possible, but the paid product's decisive value sits outside a solo rebuild. For pCloud, sync and version selected folders against a user-owned object store. The hard boundary is cross-platform clients, media playback, sharing, optional encryption, and lifetime operations, plus reliability, durability, and cross-device sync. ## Product outcome Sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. ## Target user A serious builder who needs a maintainable product foundation rather than a one-off demo. ## Required capabilities - user-owned server or S3-compatible bucket - PostgreSQL - MinIO or object storage - desktop filesystem permissions - backup key stored offline ## Explicit non-goals for v1 - cross-platform clients, media playback, sharing, optional encryption, and lifetime operations - global sync network - battle-tested conflict resolution - ransomware recovery guarantees - mobile clients and support ## Success criteria - The primary workflow is measurable end to end. - Setup is reproducible in a clean environment. - Failure, recovery, and support paths are documented. - Product claims match what the implementation actually guarantees. ===== ARCHITECTURE.md ===== # Architecture ## Starting brief Build a closest honest personal substitute for pCloud in an empty repository. Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client; do not offer alternative stacks. The core loop is: sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. Make the first run work locally with one documented command. Store all user data locally by default and make export straightforward. Put secrets in .env, ship .env.example, and never commit credentials. Build a desktop client that watches explicitly selected folders and ignores configured patterns. Chunk, hash, compress, and encrypt files locally before uploading to the configured object store. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. Document the failure model and make clear that one server is not a complete backup strategy. Include clear empty, loading, success, and recoverable error states. Add input validation, safe filenames, and graceful handling of unavailable APIs. Write focused tests for the core transformation and one end-to-end happy path. Create a README with setup, architecture, permissions, data location, and backup steps. Do not add accounts, billing, telemetry, analytics, or a hosted control plane. Do not claim to reproduce proprietary data, network liquidity, regulated access, or frontier infrastructure. Deliberately leave out multi-provider consumer sync at global scale. Deliberately leave out guaranteed durability or ransomware recovery. Deliberately leave out shared-drive administration, mobile apps, and enterprise compliance. Finish by running the tests and listing the exact commands used. ## Boundaries Separate the product into replaceable modules for interface, application logic, persistence, external integrations, and operational concerns. Keep domain logic independent from delivery frameworks and vendors. ## Production baseline - Configuration: validated at startup with safe local defaults where possible. - Security: least privilege, input validation, secret redaction, rate limits on abuse-prone paths, and no invented security primitives. - Data: explicit schema and migrations, transactional writes where integrity matters, backup and restore instructions. - Integrations: adapters around third-party providers, idempotent webhook or job processing, bounded retries, and timeouts. - Observability: structured logs with request or operation IDs, an error-tracking hook, and health/readiness checks where a server exists. - Quality: unit tests for domain rules, integration tests at module boundaries, and one end-to-end critical-path test. ## Decision records For each major dependency, document why it was chosen, its failure mode, and how it can be replaced. Do not introduce infrastructure until a requirement justifies it. ===== AGENTS.md ===== # Agent instructions - Read `PRODUCT.md` and `ARCHITECTURE.md` before changing code. - Implement milestone by milestone; keep each change reviewable and leave the application runnable. - Treat authentication, payments, encryption, imports, webhooks, and destructive actions as high-risk boundaries when present. - Never invent cryptography or silently weaken a requirement to make a test pass. - Use provider interfaces for external services and deterministic fakes in tests. - Add migrations and rollback or recovery notes for persistent data changes. - Log useful operational context without credentials, tokens, passwords, or personal data. - Update documentation and run all checks before completing a milestone. ===== MILESTONES.md ===== # Delivery milestones ## M0 — Decisions and scaffold - Confirm the runtime, persistence model, threat boundaries, and deployment target. - Create a reproducible local environment and continuous checks. ## M1 — Core workflow - Implement the smallest end-to-end product path with validation and tests. - Keep integrations behind interfaces. ## M2 — Trust layer - Add secure failure behavior, recovery paths, audit-relevant events, and data safeguards. - Test abuse cases and destructive operations. ## M3 — Operability - Add structured logs, error reporting hooks, health signals, backup/restore documentation, and deployment configuration. ## M4 — Release gate - Run a clean-install test, critical-path end-to-end test, dependency review, and documented rollback exercise. - Compare the shipped behavior with `PRODUCT.md` and publish remaining limitations. ===== OPERATIONS.md ===== # Operations ## Before release - Validate configuration and secrets at startup. - Define backup, restore, and rollback procedures and test them. - Document logs, error tracking, health signals, and alert ownership. - Set dependency update and vulnerability review expectations. ## Incident checklist 1. Contain the issue without destroying evidence or user data. 2. Record the timeline and affected scope. 3. Rotate exposed secrets and revoke compromised sessions or credentials. 4. Restore from a verified source when needed. 5. Document the root cause, remediation, and regression test. ## Launch constraint Do not market omitted pCloud capabilities as implemented. The v1 non-goals in `PRODUCT.md` remain user-visible limitations until they are deliberately delivered.
# pCloud indie build ## Goal Build the smallest trustworthy replacement for the core pCloud workflow for one developer or a tiny team. ## Scope Sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. ## Quick start 1. Install the documented dependencies. 2. Copy `.env.example` to `.env`. 3. Run the development command chosen during implementation. 4. Complete the acceptance checks in `BUILD_PLAN.md`. ## Honest limits This build deliberately does not replace: - cross-platform clients, media playback, sharing, optional encryption, and lifetime operations - global sync network - battle-tested conflict resolution - ransomware recovery guarantees - mobile clients and support If those capabilities are essential, use Nextcloud instead of pretending the gap is solved.
# Agent instructions - Optimize for a working, understandable weekend build. - Prefer the fewest moving parts that satisfy the brief. - Do not invent cryptography, security guarantees, APIs, or compliance claims. - Keep secrets out of source control and logs. - Add focused tests for destructive, security-sensitive, and data-loss paths. - Run the project checks before declaring the build complete. - Record any deliberate shortcut in the README under "Tradeoffs".
# Build plan ## Original build brief Build a closest honest personal substitute for pCloud in an empty repository. Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client; do not offer alternative stacks. The core loop is: sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. Make the first run work locally with one documented command. Store all user data locally by default and make export straightforward. Put secrets in .env, ship .env.example, and never commit credentials. Build a desktop client that watches explicitly selected folders and ignores configured patterns. Chunk, hash, compress, and encrypt files locally before uploading to the configured object store. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. Document the failure model and make clear that one server is not a complete backup strategy. Include clear empty, loading, success, and recoverable error states. Add input validation, safe filenames, and graceful handling of unavailable APIs. Write focused tests for the core transformation and one end-to-end happy path. Create a README with setup, architecture, permissions, data location, and backup steps. Do not add accounts, billing, telemetry, analytics, or a hosted control plane. Do not claim to reproduce proprietary data, network liquidity, regulated access, or frontier infrastructure. Deliberately leave out multi-provider consumer sync at global scale. Deliberately leave out guaranteed durability or ransomware recovery. Deliberately leave out shared-drive administration, mobile apps, and enterprise compliance. Finish by running the tests and listing the exact commands used. ## Required capabilities - user-owned server or S3-compatible bucket - PostgreSQL - MinIO or object storage - desktop filesystem permissions - backup key stored offline ## Delivery order 1. Scaffold the smallest runnable application and document its commands. 2. Implement the primary data model and core workflow. 3. Add validation, safe failure states, and persistence. 4. Cover the critical path with automated tests. 5. Exercise a clean install from the README and fix every missing step. ## Done when - A new user can go from clone to first successful workflow using only the README. - The core workflow works without paid infrastructure unless the brief requires it. - Tests cover the highest-risk behavior. - Known limitations are explicit rather than hidden.
# Copy to .env and document every variable when it is introduced. # Never put real credentials in this file. APP_ENV=development # Add only values required by the selected implementation.
# pCloud product brief ## Problem A consolation build is possible, but the paid product's decisive value sits outside a solo rebuild. For pCloud, sync and version selected folders against a user-owned object store. The hard boundary is cross-platform clients, media playback, sharing, optional encryption, and lifetime operations, plus reliability, durability, and cross-device sync. ## Product outcome Sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. ## Target user A serious builder who needs a maintainable product foundation rather than a one-off demo. ## Required capabilities - user-owned server or S3-compatible bucket - PostgreSQL - MinIO or object storage - desktop filesystem permissions - backup key stored offline ## Explicit non-goals for v1 - cross-platform clients, media playback, sharing, optional encryption, and lifetime operations - global sync network - battle-tested conflict resolution - ransomware recovery guarantees - mobile clients and support ## Success criteria - The primary workflow is measurable end to end. - Setup is reproducible in a clean environment. - Failure, recovery, and support paths are documented. - Product claims match what the implementation actually guarantees.
# Architecture ## Starting brief Build a closest honest personal substitute for pCloud in an empty repository. Use Next.js 15, TypeScript, PostgreSQL, MinIO, and a Tauri 2 sync client; do not offer alternative stacks. The core loop is: sync selected folders against a user-owned object store, encrypt files client-side, track versions, and restore any version on demand. Make the first run work locally with one documented command. Store all user data locally by default and make export straightforward. Put secrets in .env, ship .env.example, and never commit credentials. Build a desktop client that watches explicitly selected folders and ignores configured patterns. Chunk, hash, compress, and encrypt files locally before uploading to the configured object store. Store version metadata, tombstones, device identifiers, and integrity checks in PostgreSQL. Provide upload and restore queues with pause, retry, bandwidth limits, and resumable transfers. Add file history, point-in-time restore, key export, storage usage, and scheduled restore tests. Document the failure model and make clear that one server is not a complete backup strategy. Include clear empty, loading, success, and recoverable error states. Add input validation, safe filenames, and graceful handling of unavailable APIs. Write focused tests for the core transformation and one end-to-end happy path. Create a README with setup, architecture, permissions, data location, and backup steps. Do not add accounts, billing, telemetry, analytics, or a hosted control plane. Do not claim to reproduce proprietary data, network liquidity, regulated access, or frontier infrastructure. Deliberately leave out multi-provider consumer sync at global scale. Deliberately leave out guaranteed durability or ransomware recovery. Deliberately leave out shared-drive administration, mobile apps, and enterprise compliance. Finish by running the tests and listing the exact commands used. ## Boundaries Separate the product into replaceable modules for interface, application logic, persistence, external integrations, and operational concerns. Keep domain logic independent from delivery frameworks and vendors. ## Production baseline - Configuration: validated at startup with safe local defaults where possible. - Security: least privilege, input validation, secret redaction, rate limits on abuse-prone paths, and no invented security primitives. - Data: explicit schema and migrations, transactional writes where integrity matters, backup and restore instructions. - Integrations: adapters around third-party providers, idempotent webhook or job processing, bounded retries, and timeouts. - Observability: structured logs with request or operation IDs, an error-tracking hook, and health/readiness checks where a server exists. - Quality: unit tests for domain rules, integration tests at module boundaries, and one end-to-end critical-path test. ## Decision records For each major dependency, document why it was chosen, its failure mode, and how it can be replaced. Do not introduce infrastructure until a requirement justifies it.
# Agent instructions - Read `PRODUCT.md` and `ARCHITECTURE.md` before changing code. - Implement milestone by milestone; keep each change reviewable and leave the application runnable. - Treat authentication, payments, encryption, imports, webhooks, and destructive actions as high-risk boundaries when present. - Never invent cryptography or silently weaken a requirement to make a test pass. - Use provider interfaces for external services and deterministic fakes in tests. - Add migrations and rollback or recovery notes for persistent data changes. - Log useful operational context without credentials, tokens, passwords, or personal data. - Update documentation and run all checks before completing a milestone.
# Delivery milestones ## M0 — Decisions and scaffold - Confirm the runtime, persistence model, threat boundaries, and deployment target. - Create a reproducible local environment and continuous checks. ## M1 — Core workflow - Implement the smallest end-to-end product path with validation and tests. - Keep integrations behind interfaces. ## M2 — Trust layer - Add secure failure behavior, recovery paths, audit-relevant events, and data safeguards. - Test abuse cases and destructive operations. ## M3 — Operability - Add structured logs, error reporting hooks, health signals, backup/restore documentation, and deployment configuration. ## M4 — Release gate - Run a clean-install test, critical-path end-to-end test, dependency review, and documented rollback exercise. - Compare the shipped behavior with `PRODUCT.md` and publish remaining limitations.
# Operations ## Before release - Validate configuration and secrets at startup. - Define backup, restore, and rollback procedures and test them. - Document logs, error tracking, health signals, and alert ownership. - Set dependency update and vulnerability review expectations. ## Incident checklist 1. Contain the issue without destroying evidence or user data. 2. Record the timeline and affected scope. 3. Rotate exposed secrets and revoke compromised sessions or credentials. 4. Restore from a verified source when needed. 5. Document the root cause, remediation, and regression test. ## Launch constraint Do not market omitted pCloud capabilities as implemented. The v1 non-goals in `PRODUCT.md` remain user-visible limitations until they are deliberately delivered.
$ choose a build depth, inspect the files, then open the complete pack in your agent · this prompt is generated from the build plan · improve it via PR
People still pay for pCloud 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.
xcross-platform clients, media playback, sharing, optional encryption, and lifetime operations
xglobal sync network
xbattle-tested conflict resolution
xransomware recovery guarantees
xmobile clients and support
Don't feel like building it? These folks already made it free.
no votes, no pay-to-list · just what's real
pCloud pricing
| plan | monthly | annual (per mo) | what you get |
|---|---|---|---|
| free | $0 | $0 | Up to 10 GB storage after completing account-unlock steps. |
| premium 500 gb | $4.99 | $4.17 | 500 GB storage; 500 GB shared-link traffic; 30-day file history. |
| premium plus 2 tb | $9.99 | $8.33 | 2 TB storage; 2 TB shared-link traffic; 30-day file history. |
| ultra 10 tb | $29.99 | $25 | 10 TB storage; 2 TB shared-link traffic; 30-day file history. |
free tierup to 10 GB storage, unlocked through account actions
billingmonthly + annual + separate lifetime one-time purchases; 14-day refund window
hidden costsAn extra 2 TB of shared-link traffic costs $9.99/month or $99.99/year. Links stop serving once traffic is exhausted until reset or an add-on is bought. Client-side pCloud Encryption is a separate paid add-on whose current price was not exposed.
verified 2026-08-11 · source ↗
Vibecode pCloud
Not really. pCloud's value is not the code: Recheck price before merge. See the honest breakdown above.
How much does pCloud cost?
pCloud's pricing is usage-based or varies by plan · Typical Premium Plus monthly price; lifetime plans also exist..
What do I lose by replacing pCloud?
Honestly: cross-platform clients, media playback, sharing, optional encryption, and lifetime operations; global sync network; battle-tested conflict resolution; ransomware recovery guarantees; mobile clients and support. If any of those are load-bearing for you, keep paying.
Is there an open-source alternative to pCloud?
Yes: Nextcloud Files (Folder sync and versions over your own S3-compatible bucket; the metadata database becomes sacred.) OpenCloud (A file cloud that can sit on S3-compatible storage, with sync clients and your name on every incident.) The prompt is for when you want it exactly your way.