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Hermes Pipeline d843836fae Add Skill: text-concatenation-pipeline
Extracted from: https://github.com/temiroff/Blacknode.git
Score: 1.0
2026-08-08 22:42:46 +00:00
9 changed files with 108 additions and 151 deletions
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---
name: conditional-input-routing
version: 1.0.0
description: Collect user input, classify or branch on its content, and route to appropriate
success or failure handling paths to produce a final result
inputs:
- name: request
type: string
description: User-provided input or request to be evaluated
steps:
- name: Start
action: input agent captures initial request into state
agent_type: input
output_field: request
- name: Classify
action: branching agent evaluates request and routes to next_node or on_failure
agent_type: branching
input_fields: request
output_field: decision
next_node: Approve
on_failure: Reject
- name: Approve
action: default agent processes approved request and sets result
agent_type: default
input_fields: request
output_field: result
prompt: 'Request approved: {request}'
- name: Reject
action: default agent processes rejected request and sets result
agent_type: default
input_fields: request
output_field: result
prompt: 'Request rejected: {request}'
outputs:
- name: result
type: string
description: Final output from either the approve or reject branch
tags: []
metadata:
source_repo: https://github.com/jwwelbor/AgentMap.git
extracted_at: ''
confidence: 0.9
---
# conditional-input-routing
Collect user input, classify or branch on its content, and route to appropriate success or failure handling paths to produce a final result
## Steps
1. {'name': 'Start', 'action': 'input agent captures initial request into state', 'agent_type': 'input', 'output_field': 'request'}
2. {'name': 'Classify', 'action': 'branching agent evaluates request and routes to next_node or on_failure', 'agent_type': 'branching', 'input_fields': 'request', 'output_field': 'decision', 'next_node': 'Approve', 'on_failure': 'Reject'}
3. {'name': 'Approve', 'action': 'default agent processes approved request and sets result', 'agent_type': 'default', 'input_fields': 'request', 'output_field': 'result', 'prompt': 'Request approved: {request}'}
4. {'name': 'Reject', 'action': 'default agent processes rejected request and sets result', 'agent_type': 'default', 'input_fields': 'request', 'output_field': 'result', 'prompt': 'Request rejected: {request}'}
## Inputs
- {'name': 'request', 'type': 'string', 'description': 'User-provided input or request to be evaluated'}
## Outputs
- {'name': 'result', 'type': 'string', 'description': 'Final output from either the approve or reject branch'}
## Failure Modes
- Input node fails to capture request (handled by on_failure if defined)
- Branching condition not met and no on_failure path defined
- Missing input_fields in state causing agent execution error
## Source
Extracted from: [https://github.com/jwwelbor/AgentMap.git](https://github.com/jwwelbor/AgentMap.git)
Confidence: 0.9
@@ -1,6 +0,0 @@
# Commands: conditional-input-routing
## Available Commands
- `/skill conditional-input-routing` — Load this skill
- `/run conditional-input-routing` — Execute workflow
@@ -1,10 +0,0 @@
# Examples: conditional-input-routing
## Usage Example
```python
# How to use this skill
# Inputs: {'name': 'request', 'type': 'string', 'description': 'User-provided input or request to be evaluated'}
# Process: {'name': 'Start', 'action': 'input agent captures initial request into state', 'agent_type': 'input', 'output_field': 'request'} → {'name': 'Classify', 'action': 'branching agent evaluates request and routes to next_node or on_failure', 'agent_type': 'branching', 'input_fields': 'request', 'output_field': 'decision', 'next_node': 'Approve', 'on_failure': 'Reject'} → {'name': 'Approve', 'action': 'default agent processes approved request and sets result', 'agent_type': 'default', 'input_fields': 'request', 'output_field': 'result', 'prompt': 'Request approved: {request}'}
# Outputs: {'name': 'result', 'type': 'string', 'description': 'Final output from either the approve or reject branch'}
```
@@ -1,61 +0,0 @@
{
"name": "conditional-input-routing",
"version": "1.0.0",
"goal": "Collect user input, classify or branch on its content, and route to appropriate success or failure handling paths to produce a final result",
"inputs": [
{
"name": "request",
"type": "string",
"description": "User-provided input or request to be evaluated"
}
],
"steps": [
{
"name": "Start",
"action": "input agent captures initial request into state",
"agent_type": "input",
"output_field": "request"
},
{
"name": "Classify",
"action": "branching agent evaluates request and routes to next_node or on_failure",
"agent_type": "branching",
"input_fields": "request",
"output_field": "decision",
"next_node": "Approve",
"on_failure": "Reject"
},
{
"name": "Approve",
"action": "default agent processes approved request and sets result",
"agent_type": "default",
"input_fields": "request",
"output_field": "result",
"prompt": "Request approved: {request}"
},
{
"name": "Reject",
"action": "default agent processes rejected request and sets result",
"agent_type": "default",
"input_fields": "request",
"output_field": "result",
"prompt": "Request rejected: {request}"
}
],
"outputs": [
{
"name": "result",
"type": "string",
"description": "Final output from either the approve or reject branch"
}
],
"failure_modes": [
"Input node fails to capture request (handled by on_failure if defined)",
"Branching condition not met and no on_failure path defined",
"Missing input_fields in state causing agent execution error"
],
"confidence": 0.9,
"explanation": "Extracted from AgentMap's documented conditional workflow example (ReviewFlow). This CSV-declared pattern of input to branching to dual-path handling is reusable for any approval, triage, or routing scenario without writing orchestration code.",
"source_repo": "https://github.com/jwwelbor/AgentMap.git",
"score": 1.0
}
@@ -0,0 +1,60 @@
---
name: text-concatenation-pipeline
version: 1.0.0
description: Combine two text inputs into a single output string using a Blacknode
node graph.
inputs:
- text_a (string)
- text_b (string)
steps:
- Instantiate a Text node with parameter value set to text_a
- Instantiate a Text node with parameter value set to text_b
- Instantiate a Concat node with no parameters
- Instantiate an Output node
- Connect output port 'value' of first Text node to input port 'a' of Concat node
- Connect output port 'value' of second Text node to input port 'b' of Concat node
- Connect output port 'value' of Concat node to input port 'value' of Output node
- Execute graph by cooking the Output node's 'value' port to obtain result
outputs:
- concatenated_text (string)
tags: []
metadata:
source_repo: https://github.com/temiroff/Blacknode.git
extracted_at: ''
confidence: 0.95
---
# text-concatenation-pipeline
Combine two text inputs into a single output string using a Blacknode node graph.
## Steps
1. Instantiate a Text node with parameter value set to text_a
2. Instantiate a Text node with parameter value set to text_b
3. Instantiate a Concat node with no parameters
4. Instantiate an Output node
5. Connect output port 'value' of first Text node to input port 'a' of Concat node
6. Connect output port 'value' of second Text node to input port 'b' of Concat node
7. Connect output port 'value' of Concat node to input port 'value' of Output node
8. Execute graph by cooking the Output node's 'value' port to obtain result
## Inputs
- text_a (string)
- text_b (string)
## Outputs
- concatenated_text (string)
## Failure Modes
- One or both text inputs missing or non-string
- Invalid node connections (port mismatch)
- Runtime error during graph execution
## Source
Extracted from: [https://github.com/temiroff/Blacknode.git](https://github.com/temiroff/Blacknode.git)
Confidence: 0.95
@@ -0,0 +1,6 @@
# Commands: text-concatenation-pipeline
## Available Commands
- `/skill text-concatenation-pipeline` — Load this skill
- `/run text-concatenation-pipeline` — Execute workflow
@@ -0,0 +1,10 @@
# Examples: text-concatenation-pipeline
## Usage Example
```python
# How to use this skill
# Inputs: text_a (string), text_b (string)
# Process: Instantiate a Text node with parameter value set to text_a → Instantiate a Text node with parameter value set to text_b → Instantiate a Concat node with no parameters
# Outputs: concatenated_text (string)
```
@@ -0,0 +1,31 @@
{
"name": "text-concatenation-pipeline",
"version": "1.0.0",
"goal": "Combine two text inputs into a single output string using a Blacknode node graph.",
"inputs": [
"text_a (string)",
"text_b (string)"
],
"steps": [
"Instantiate a Text node with parameter value set to text_a",
"Instantiate a Text node with parameter value set to text_b",
"Instantiate a Concat node with no parameters",
"Instantiate an Output node",
"Connect output port 'value' of first Text node to input port 'a' of Concat node",
"Connect output port 'value' of second Text node to input port 'b' of Concat node",
"Connect output port 'value' of Concat node to input port 'value' of Output node",
"Execute graph by cooking the Output node's 'value' port to obtain result"
],
"outputs": [
"concatenated_text (string)"
],
"failure_modes": [
"One or both text inputs missing or non-string",
"Invalid node connections (port mismatch)",
"Runtime error during graph execution"
],
"confidence": 0.95,
"explanation": "Extracted from examples/converted_text_pipeline.py and referenced templates/text-pipeline.json in the Blacknode repository. The workflow is a basic reusable pattern for string concatenation using the visual node editor's graph model.",
"source_repo": "https://github.com/temiroff/Blacknode.git",
"score": 1.0
}
@@ -1,4 +1,4 @@
# Tests: conditional-input-routing
# Tests: text-concatenation-pipeline
## Test Checklist