resolve-conflicts
Conflict resolution assistant that plans and manages Git merges safely.
Install
mkdir -p .claude/skills/resolve-conflicts && curl -L -o skill.zip "https://agentskills.codes/api/skills/download/2048" && unzip -o skill.zip -d .claude/skills/resolve-conflicts && rm skill.zipInstalls to .claude/skills/resolve-conflicts
Activation
This is the description your AI agent reads to decide when to run this skill — the better it matches your request, the more reliably it fires.
Use this skill immediately when the user mentions merge conflicts that need to be resolved. Do not attempt to resolve conflicts directly - invoke this skill first. This skill specializes in providing a structured framework for merging imports, tests, lock files (regeneration), configuration files, and handling deleted-but-modified files with backup and analysis.Key capabilities
- →Analyze conflict source types and scope
- →Generate systematic merge resolution plans
- →Automate lock file regeneration post-merge
- →Handle deleted-but-modified file backups
- →Orchestrate resolution order for complex branches
How it works
Follows a structured decision tree to categorize conflict types, generate a safe execution plan, and apply automated tool-assisted merging.
Inputs & outputs
When to use resolve-conflicts
- →Resolve complex Git merge conflicts
- →Regenerate lock files after merging
- →Plan safe resolution for deleted files
About this skill
Git Conflict Resolution
Resolve Git merge conflicts by intelligently combining changes from both branches while preserving the intent of both changes. This skill follows a plan-first approach: assess conflicts, create a detailed resolution plan, get approval, then execute.
Core Principles
- Plan Before Executing: Always create a structured resolution plan and get user approval before making changes
- Prefer Both Changes: Default to keeping both changes unless they directly contradict
- Merge, Don't Choose: Especially for imports, tests, and configuration
- Regenerate Generated Files: Never manually merge generated files - always regenerate them from their sources
- Backup Before Resolving: For deleted-modified files, create backups first
- Validate with Tests: Always run tests after resolution
- Explain All Resolutions: For each conflict resolved, provide a one-line explanation of the resolution strategy
- Ask When Unclear: When the correct resolution isn't clear from the diff, present options to the user and ask for their choice
Workflow
Step 1: Assess the Conflict Situation
Run initial checks to understand the conflict scope:
git status
Identify and categorize all conflicted files:
- Regular file conflicts (both modified)
- Deleted-modified conflicts (one deleted, one modified)
- Generated file conflicts (lock files, build artifacts, generated code)
- Test file conflicts
- Import/configuration conflicts
- Binary file conflicts
For each conflicted file, gather information:
- File type and purpose
- Nature of the conflict (content, deletion, type change)
- Scope of changes (lines changed, sections affected)
- Whether the file is generated or hand-written
Step 2: Create Merge Resolution Plan
Based on the assessment, create a structured plan before resolving any conflicts. Present the plan in the following markdown format:
## Merge Resolution Plan
### Conflict Summary
- **Total conflicted files**: [N]
- **Deleted-modified conflicts**: [N]
- **Generated files**: [N]
- **Regular conflicts**: [N]
### Resolution Strategy by File
#### 1. [File Path]
**Conflict Type**: [deleted-modified / generated / imports / tests / code logic / config / struct / binary]
**Strategy**: [Brief description of resolution approach]
**Rationale**: [Why this strategy is appropriate]
**Risk**: [Low/Medium/High] - [Brief risk description]
**Action Items**:
- [ ] [Specific action 1]
- [ ] [Specific action 2]
#### 2. [File Path]
...
### Execution Order
1. **Phase 1: Deleted-Modified Files** - Handle deletions and backups first
2. **Phase 2: Generated Files** - Regenerate from source
3. **Phase 3: Low-Risk Merges** - Imports, tests, documentation
4. **Phase 4: High-Risk Merges** - Code logic, configuration, structs
5. **Phase 5: Validation** - Compile, test, verify
### Questions/Decisions Needed
- [ ] **[File/Decision]**: [Question for user] (Options: 1, 2, 3)
### Validation Steps
- [ ] Run conflict validation script
- [ ] Compile project
- [ ] Run test suite
- [ ] Manual verification of high-risk changes
Present this plan to the user and wait for their approval before proceeding with resolution. If there are any unclear conflicts where you need user input, list them in the "Questions/Decisions Needed" section.
For a complete example plan, see references/sample-plan.md.
Step 3: Handle Deleted-Modified Files
Execute this phase only after the plan is approved.
If there are deleted-but-modified files (status: DU, UD, DD, UA, AU):
.forge/skills/resolve-conflicts/scripts/handle-deleted-modified.sh
This script will:
- Create timestamped backups of modified content
- Analyze potential relocation targets
- Generate analysis reports for each file
- Automatically resolve the deletion status
Review the backup directory and analysis files to understand where changes should be applied.
Step 4: Execute Resolution Plan
Follow the execution order defined in your plan. For each conflicted file, apply the appropriate resolution pattern according to your plan. For every conflict you resolve, provide a one-line explanation of how you're resolving it.
As you complete each action item in your plan, mark it as done and report progress to the user.
When Resolution is Unclear
When you cannot determine the correct resolution from the diff alone (these should already be listed in your plan's "Questions/Decisions Needed" section):
- Present the conflict to the user with the conflicting code from both sides
- Provide numbered options for resolution (Option 1, Option 2, etc.)
- Explain each option clearly with what it would do
- Ask the user to choose an option number or provide additional information
- Remember their choice and apply similar reasoning to subsequent related conflicts
Example interaction:
I found a conflict in src/main.rs where both branches modify the `calculate_price` function:
<<<<<<< HEAD (Current Branch)
fn calculate_price(item: &Item) -> f64 {
item.base_price * (1.0 + item.tax_rate)
}
=======
fn calculate_price(item: &Item) -> f64 {
item.base_price + item.tax_amount
}
>>>>>>> feature-branch (Incoming Branch)
I'm not sure which calculation is correct. Please select an option:
**Option 1**: Keep current branch (multiplies base_price by tax_rate)
**Option 2**: Keep incoming branch (adds tax_amount to base_price)
**Option 3**: Keep both approaches with a new parameter
**Option 4**: Provide more context to help me decide
Please respond with "Option 1", "Option 2", "Option 3", or "Option 4", or provide additional information.
Once the user responds, apply their decision and similar logic to related conflicts.
Resolution Patterns
For each conflicted file, apply the appropriate resolution pattern:
Imports/Dependencies
Goal: Merge all unique imports from both branches.
One-line explanation: "Merging imports by combining unique imports from both branches, removing duplicates, and grouping by module."
Read references/patterns.md section "Import Conflicts" for detailed examples.
Quick approach:
- Extract all imports from both sides
- Remove duplicates
- Group by module/package
- Follow language-specific style (alphabetize, group std/external/internal)
Tests
Goal: Include all test cases and test data from both branches.
One-line explanation: "Merging tests by including all test cases from both branches, combining fixtures, and renaming if necessary to avoid conflicts."
Read references/patterns.md section "Test Conflicts" for detailed examples.
Quick approach:
- Keep all test functions unless they test the exact same thing
- Merge test fixtures and setup functions
- Combine assertions from both sides
- If test names conflict but test different behaviors, rename to clarify
Generated Files
Goal: Regenerate any generated files to include changes from both branches.
One-line explanation: "Resolving generated file by regenerating it from source files to incorporate changes from both branches."
Recognition: A file is generated if it:
- Is produced by a build tool, compiler, or code generator
- Has a source file or configuration that defines it
- Contains headers/comments indicating it's auto-generated
- Is listed in
.gitattributesas generated - Common examples: lock files, protobuf outputs, GraphQL schema files, compiled assets, auto-generated docs
Approach:
-
Identify the generation source: Determine what command or tool generates the file
-
Choose either version temporarily (doesn't matter which):
git checkout --ours <generated-file> # or --theirs -
Regenerate from source: Run the appropriate generation command:
# Package manager lock files cargo update # for Cargo.lock npm install # for package-lock.json yarn install # for yarn.lock bundle install # for Gemfile.lock poetry lock --no-update # for poetry.lock # Code generation protoc ... # for protobuf files graphql-codegen # for GraphQL generated code make generate # for Makefile-based generation npm run generate # for npm script-based generation # Build artifacts npm run build # for compiled/bundled assets cargo build # for Rust build artifacts -
Stage the regenerated file:
git add <generated-file>
When unsure if a file is generated: Check for auto-generation markers in the file header, or ask the user if you should regenerate or manually merge the file.
Configuration Files
Goal: Merge configuration values from both branches.
One-line explanation: "Merging configuration by including all keys from both branches and choosing appropriate values for conflicts."
Read references/patterns.md section "Configuration File Conflicts" for detailed examples.
Quick approach:
- Include all keys from both sides
- For conflicting values, choose based on:
- Newer/more recent value
- Safer/more conservative value
- Production requirements
- Document choice in commit message
When unclear: Ask the user which configuration value to prefer (current vs incoming)
Code Logic
Goal: Understand intent of both changes and combine if possible.
One-line explanation: "Resolving code logic by analyzing intent: merging if changes are orthogonal, or choosing one approach if they conflict."
Read references/patterns.md section "Code Logic Conflicts" for detailed examples.
Quick approach:
- Analyze what each branch is trying to achieve
- If changes are orthogonal (different concerns), merge both
- If changes conflict (
Content truncated.
When not to use it
- →Trivial, single-line merge conflicts
- →Resolving binary file conflicts where manual user oversight is required
Prerequisites
Limitations
- →Requires human approval before executing changes
- →Depends on external build tools for file regeneration
- →Conflict resolution is restricted to supported file types
How it compares
It pauses the process for a validated plan before modifying files, preventing accidental data loss during complex merges.
Compared to similar skills
resolve-conflicts side by side with the closest alternatives in the catalog.
| Skill | Installs | Updated | Safety | Difficulty |
|---|---|---|---|---|
| resolve-conflicts (this skill) | 81 | 8mo | Review | Intermediate |
| git-advanced-workflows | 11 | 2mo | Review | Advanced |
| nx-workspace | 4 | 6mo | Review | Beginner |
| fix-github-issue | 1 | 6mo | Review | Intermediate |
Try saying
Example prompts that trigger this skill in your AI assistant.
More by antinomyhq
View all by antinomyhq →You might also like
git-advanced-workflows
wshobson
Master advanced Git workflows including rebasing, cherry-picking, bisect, worktrees, and reflog to maintain clean history and recover from any situation. Use when managing complex Git histories, collaborating on feature branches, or troubleshooting repository issues.
nx-workspace
nrwl
Explore and understand Nx workspaces. USE WHEN answering any questions about the nx workspace, the projects in it or tasks to run. EXAMPLES: 'What projects are in this workspace?', 'How is project X configured?', 'What targets can I run?', 'What's affected by my changes?', 'Which projects depend on library Y?', or any questions about Nx workspace structure, project configuration, or available tasks.
fix-github-issue
AgnosticUI
Fix a GitHub issue by number. Use when asked to fix GitHub issues.
rebase-pr
AztecProtocol
Rebase a PR on its base branch, fix conflicts, and verify build
resolve-pr-parallel
EveryInc
Resolve all PR comments using parallel processing. Use when addressing PR review feedback, resolving review threads, or batch-fixing PR comments.
workflow-patterns
wshobson
Use this skill when implementing tasks according to Conductor's TDD workflow, handling phase checkpoints, managing git commits for tasks, or understanding the verification protocol.