Vibecode Dashlane
track this build5 steps, step by step0%A simple vault is buildable, but matching Dashlane's extension/mobile autofill, passkey support, breach monitoring, sharing, and trust posture is not a casual clone.
You are building a lean indie version of Dashlane. 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 ===== # Dashlane indie build ## Goal Build the smallest trustworthy replacement for the core Dashlane workflow for one developer or a tiny team. ## Scope Build or adopt an encrypted vault, generate passwords, and sync encrypted data across devices. ## 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: - autofill polish - passkeys - security alerts - account recovery - audited security - sharing - support If those capabilities are essential, use KeePassXC 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 me a personal password vault to replace Dashlane. Requirements: - A Node CLI: `vault add <name>`, `vault get <name>`, `vault list`, `vault gen`. `get` copies the secret to the clipboard with clipboardy and clears it after 20 seconds. - The vault is one encrypted file at ~/.vault/store.age, encrypted with age (shell out to the age binary), key derived from a master passphrase prompted at runtime and never written to disk. - Each entry: name, username, password, URL, notes, updated timestamp. JSON inside the encrypted file, decrypted only in memory. - `vault gen` produces a 24-char random password via crypto.randomBytes, plus a 4-word diceware option for passphrases. - `vault backup` writes a datestamped encrypted copy to ~/.vault/backups/ so I can sync it with any file-sync tool I already trust. - Fully local: no accounts, no telemetry, zero network calls. - Out of scope: browser-extension autofill, passkeys, breach alerts, sharing. Do not invent any crypto, use age exactly as shipped. - README: state plainly that KeePassXC or Bitwarden is the sane choice for most people, and that a forgotten master passphrase means the vault is gone. ## Required capabilities - encrypted storage - browser extension - mobile autofill support - secure backup - optional breach data source ## 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 Dashlane. 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 ===== # Dashlane indie build ## Goal Build the smallest trustworthy replacement for the core Dashlane workflow for one developer or a tiny team. ## Scope Build or adopt an encrypted vault, generate passwords, and sync encrypted data across devices. ## 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: - autofill polish - passkeys - security alerts - account recovery - audited security - sharing - support If those capabilities are essential, use KeePassXC 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 me a personal password vault to replace Dashlane. Requirements: - A Node CLI: `vault add <name>`, `vault get <name>`, `vault list`, `vault gen`. `get` copies the secret to the clipboard with clipboardy and clears it after 20 seconds. - The vault is one encrypted file at ~/.vault/store.age, encrypted with age (shell out to the age binary), key derived from a master passphrase prompted at runtime and never written to disk. - Each entry: name, username, password, URL, notes, updated timestamp. JSON inside the encrypted file, decrypted only in memory. - `vault gen` produces a 24-char random password via crypto.randomBytes, plus a 4-word diceware option for passphrases. - `vault backup` writes a datestamped encrypted copy to ~/.vault/backups/ so I can sync it with any file-sync tool I already trust. - Fully local: no accounts, no telemetry, zero network calls. - Out of scope: browser-extension autofill, passkeys, breach alerts, sharing. Do not invent any crypto, use age exactly as shipped. - README: state plainly that KeePassXC or Bitwarden is the sane choice for most people, and that a forgotten master passphrase means the vault is gone. ## Required capabilities - encrypted storage - browser extension - mobile autofill support - secure backup - optional breach data source ## 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 Dashlane. 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 ===== # Dashlane product brief ## Problem A simple vault is buildable, but matching Dashlane's extension/mobile autofill, passkey support, breach monitoring, sharing, and trust posture is not a casual clone. ## Product outcome Build or adopt an encrypted vault, generate passwords, and sync encrypted data across devices. ## Target user A serious builder who needs a maintainable product foundation rather than a one-off demo. ## Required capabilities - encrypted storage - browser extension - mobile autofill support - secure backup - optional breach data source ## Explicit non-goals for v1 - autofill polish - passkeys - security alerts - account recovery - audited security - sharing - 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 me a personal password vault to replace Dashlane. Requirements: - A Node CLI: `vault add <name>`, `vault get <name>`, `vault list`, `vault gen`. `get` copies the secret to the clipboard with clipboardy and clears it after 20 seconds. - The vault is one encrypted file at ~/.vault/store.age, encrypted with age (shell out to the age binary), key derived from a master passphrase prompted at runtime and never written to disk. - Each entry: name, username, password, URL, notes, updated timestamp. JSON inside the encrypted file, decrypted only in memory. - `vault gen` produces a 24-char random password via crypto.randomBytes, plus a 4-word diceware option for passphrases. - `vault backup` writes a datestamped encrypted copy to ~/.vault/backups/ so I can sync it with any file-sync tool I already trust. - Fully local: no accounts, no telemetry, zero network calls. - Out of scope: browser-extension autofill, passkeys, breach alerts, sharing. Do not invent any crypto, use age exactly as shipped. - README: state plainly that KeePassXC or Bitwarden is the sane choice for most people, and that a forgotten master passphrase means the vault is gone. ## 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 Dashlane capabilities as implemented. The v1 non-goals in `PRODUCT.md` remain user-visible limitations until they are deliberately delivered.
# Dashlane indie build ## Goal Build the smallest trustworthy replacement for the core Dashlane workflow for one developer or a tiny team. ## Scope Build or adopt an encrypted vault, generate passwords, and sync encrypted data across devices. ## 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: - autofill polish - passkeys - security alerts - account recovery - audited security - sharing - support If those capabilities are essential, use KeePassXC 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 me a personal password vault to replace Dashlane. Requirements: - A Node CLI: `vault add <name>`, `vault get <name>`, `vault list`, `vault gen`. `get` copies the secret to the clipboard with clipboardy and clears it after 20 seconds. - The vault is one encrypted file at ~/.vault/store.age, encrypted with age (shell out to the age binary), key derived from a master passphrase prompted at runtime and never written to disk. - Each entry: name, username, password, URL, notes, updated timestamp. JSON inside the encrypted file, decrypted only in memory. - `vault gen` produces a 24-char random password via crypto.randomBytes, plus a 4-word diceware option for passphrases. - `vault backup` writes a datestamped encrypted copy to ~/.vault/backups/ so I can sync it with any file-sync tool I already trust. - Fully local: no accounts, no telemetry, zero network calls. - Out of scope: browser-extension autofill, passkeys, breach alerts, sharing. Do not invent any crypto, use age exactly as shipped. - README: state plainly that KeePassXC or Bitwarden is the sane choice for most people, and that a forgotten master passphrase means the vault is gone. ## Required capabilities - encrypted storage - browser extension - mobile autofill support - secure backup - optional breach data source ## 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.
# Dashlane product brief ## Problem A simple vault is buildable, but matching Dashlane's extension/mobile autofill, passkey support, breach monitoring, sharing, and trust posture is not a casual clone. ## Product outcome Build or adopt an encrypted vault, generate passwords, and sync encrypted data across devices. ## Target user A serious builder who needs a maintainable product foundation rather than a one-off demo. ## Required capabilities - encrypted storage - browser extension - mobile autofill support - secure backup - optional breach data source ## Explicit non-goals for v1 - autofill polish - passkeys - security alerts - account recovery - audited security - sharing - 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 me a personal password vault to replace Dashlane. Requirements: - A Node CLI: `vault add <name>`, `vault get <name>`, `vault list`, `vault gen`. `get` copies the secret to the clipboard with clipboardy and clears it after 20 seconds. - The vault is one encrypted file at ~/.vault/store.age, encrypted with age (shell out to the age binary), key derived from a master passphrase prompted at runtime and never written to disk. - Each entry: name, username, password, URL, notes, updated timestamp. JSON inside the encrypted file, decrypted only in memory. - `vault gen` produces a 24-char random password via crypto.randomBytes, plus a 4-word diceware option for passphrases. - `vault backup` writes a datestamped encrypted copy to ~/.vault/backups/ so I can sync it with any file-sync tool I already trust. - Fully local: no accounts, no telemetry, zero network calls. - Out of scope: browser-extension autofill, passkeys, breach alerts, sharing. Do not invent any crypto, use age exactly as shipped. - README: state plainly that KeePassXC or Bitwarden is the sane choice for most people, and that a forgotten master passphrase means the vault is gone. ## 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 Dashlane 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
They pay for low-friction secure autofill and confidence that the vault will not be lost.
xautofill polish
xpasskeys
xsecurity alerts
xaccount recovery
xaudited security
xsharing
xsupport
Dashlane pricing
| plan | monthly | annual (per mo) | what you get |
|---|---|---|---|
| premium | — | $5/user | 1 account; unlimited passwords and devices; 1 GB encrypted file storage; VPN |
| friends & family | — | $7.50/workspace | Up to 10 accounts; 1 GB encrypted storage/account; VPN entitlement for the plan manager only |
free tierno free tier; the former Free plan was discontinued; 14-day Premium trial
billingannual only; no monthly personal plan
hidden costsWhen a paid plan expires the account becomes export-only rather than a usable free password manager; the Family VPN is limited to the plan manager, and taxes or app-store pricing can differ
verified 2026-08-14 · source ↗
Vibecode Dashlane
Kinda. The core of Dashlane is buildable in a weekend with the prompt on this page, but there are real gaps: autofill polish, passkeys. Read the honest list above before committing.
How much does Dashlane cost?
Dashlane costs about $5/month (Premium, checked 2026-08-14), which is $60 per year.
What do I lose by replacing Dashlane?
Honestly: autofill polish; passkeys; security alerts; account recovery; audited security; sharing; support. If any of those are load-bearing for you, keep paying.
Is there an open-source alternative to Dashlane?
Yes: KeePassXC (Open-source local password manager prior art; not a Dashlane clone but covers the core vau). Using prior art is also vibecoding; the prompt is for when you want it exactly your way.