OpenRouter Context Optimization

Optimize context window usage for OpenRouter models to reduce costs and improve quality. Ideal for long conversations, RAG systems, and token limit management.

Sby Skills Guide Bot
Data & AIAdvanced
107/23/2026
Claude CodeCodex
#saas#openrouter#optimization#context-window

Recommended for


name: openrouter-context-optimization description: 'Optimize context window usage for OpenRouter models to reduce cost and improve quality. Use when hitting context limits, managing long conversations, or building RAG systems. Triggers: ''openrouter context'', ''context window'', ''openrouter token limit'', ''reduce tokens openrouter''.

' allowed-tools: Read, Write, Edit, Grep, Bash(python3:), Bash(node:), Bash(curl:), Bash(jq:) version: 1.20.0 license: MIT author: Jeremy Longshore jeremy@intentsolutions.io tags:

  • saas
  • openrouter
  • optimization
  • context-window compatibility: Designed for Claude Code, also compatible with Codex and OpenClaw

OpenRouter Context Optimization

Overview

OpenRouter models have varying context windows (4K to 1M+ tokens). Since pricing is per-token, stuffing unnecessary context wastes money and can degrade output quality. This skill covers context window lookup, token estimation, conversation trimming, chunking strategies, and Anthropic prompt caching for large contexts.

Prerequisites

  • An OpenRouter API key (sk-or-v1-...) exported as OPENROUTER_API_KEY — see the openrouter-install-auth skill for setup
  • Python 3.8+ with the OpenAI SDK and requests for model-metadata lookup; tiktoken for exact token counting per the references
  • curl and jq to query context windows and pricing from /api/v1/models
  • Node.js 18+ if you use the TypeScript context-budget calculator in the references

Instructions

  1. Run the Query Context Limits one-liner — it returns context_length and prompt price per 1M tokens for each candidate model, so you know the real budget before writing code.
  2. Estimate input size (~4 characters per token, or exactly with tiktoken per the references) and pick a model with select_model_for_context() from Context-Aware Model Selection — it applies an 80% safety margin and falls back through gpt-4o-mini (128K) → Claude 3.5 Sonnet (200K) → Gemini 2.0 Flash (1M).
  3. Keep long conversations inside budget with trim_conversation() per Conversation Trimming: system prompt plus the last N messages, with a trim-marker note injected where history was dropped.
  4. For documents that exceed any window, use chunk_and_process() per Chunking for Large Documents — 8,000-char chunks with 500-char overlap, analyzed independently at temperature=0 and then synthesized.
  5. Mark large static blocks with cache_control: {"type": "ephemeral"} per Prompt Caching for Repeated Context to cut repeated input cost by 90% on Anthropic models.
  6. Monitor prompt_tokens on every response (Enterprise Considerations) to catch context bloat before it becomes a 400 context_length_exceeded.

Query Context Limits

# Check context window for specific models
curl -s https://openrouter.ai/api/v1/models | jq '[.data[] | select(
  .id == "anthropic/claude-3.5-sonnet" or
  .id == "openai/gpt-4o" or
  .id == "google/gemini-2.0-flash-001" or
  .id == "meta-llama/llama-3.1-70b-instruct"
) | {id, context_length, prompt_per_M: ((.pricing.prompt|tonumber)*1000000)}]'

Context-Aware Model Selection

import os, requests
from openai import OpenAI

client = OpenAI(
    base_url="https://openrouter.ai/api/v1",
    api_key=os.environ["OPENROUTER_API_KEY"],
    default_headers={"HTTP-Referer": "https://my-app.com", "X-Title": "my-app"},
)

# Cache model metadata at startup
MODELS = {m["id"]: m for m in requests.get("https://openrouter.ai/api/v1/models").json()["data"]}

def estimate_tokens(text: str) -> int:
    """Rough estimate: 1 token ~ 4 characters for English text."""
    return len(text) // 4

def select_model_for_context(messages: list, preferred: str = "anthropic/claude-3.5-sonnet") -> str:
    """Pick a model that fits the context, falling back to larger windows."""
    estimated_tokens = sum(len(m.get("content", "")) for m in messages) // 4

    FALLBACK_CHAIN = [
        ("openai/gpt-4o-mini", 128_000),
        ("anthropic/claude-3.5-sonnet", 200_000),
        ("google/gemini-2.0-flash-001", 1_000_000),
    ]

    # Try preferred model first
    preferred_ctx = MODELS.get(preferred, {}).get("context_length", 0)
    if estimated_tokens < preferred_ctx * 0.8:  # 80% safety margin
        return preferred

    for model_id, ctx in FALLBACK_CHAIN:
        if estimated_tokens < ctx * 0.8:
            return model_id

    raise ValueError(f"Content too large ({estimated_tokens} est. tokens)")

Conversation Trimming

def trim_conversation(
    messages: list[dict],
    max_tokens: int = 100_000,
    keep_system: bool = True,
    keep_last_n: int = 4,
) -> list[dict]:
    """Trim conversation history to fit context window.

    Strategy: Keep system prompt + last N messages.
    If still too large, reduce to last 2 messages.
    """
    system = [m for m in messages if m["role"] == "system"] if keep_system else []
    non_system = [m for m in messages if m["role"] != "system"]

    kept = non_system[-keep_last_n:]
    trimmed = non_system[:-keep_last_n] if len(non_system) > keep_last_n else []

    total_est = sum(estimate_tokens(m.get("content", "")) for m in system + kept)
    if total_est > max_tokens and keep_last_n > 2:
        kept = non_system[-2:]

    result = system + kept
    if trimmed:
        summary_note = {
            "role": "system",
            "content": f"[Previous {len(trimmed)} messages trimmed for context limits]",
        }
        result = system + [summary_note] + kept

    return result

Chunking for Large Documents

def chunk_and_process(document: str, question: str, model: str = "openai/gpt-4o-mini",
                      chunk_size: int = 8000, overlap: int = 500) -> str:
    """Process a large document in overlapping chunks, then synthesize."""
    chunks = []
    start = 0
    while start < len(document):
        chunks.append(document[start:start + chunk_size])
        start += chunk_size - overlap

    results = []
    for i, chunk in enumerate(chunks):
        response = client.chat.completions.create(
            model=model,
            messages=[
                {"role": "system", "content": f"Analyzing chunk {i+1}/{len(chunks)}."},
                {"role": "user", "content": f"Document:\n{chunk}\n\nQuestion: {question}"},
            ],
            max_tokens=1024, temperature=0,
        )
        results.append(response.choices[0].message.content)

    # Synthesize
    synthesis = client.chat.completions.create(
        model=model,
        messages=[
            {"role": "system", "content": "Synthesize these partial analyses."},
            {"role": "user", "content": f"Question: {question}\n\nResults:\n" + "\n---\n".join(results)},
        ],
        max_tokens=2048, temperature=0,
    )
    return synthesis.choices[0].message.content

Prompt Caching for Repeated Context

# Anthropic models support prompt caching -- mark large static blocks
# Subsequent requests with same cached block cost 90% less for input tokens
response = client.chat.completions.create(
    model="anthropic/claude-3.5-sonnet",
    messages=[
        {
            "role": "system",
            "content": [
                {
                    "type": "text",
                    "text": large_reference_document,  # 50K+ tokens
                    "cache_control": {"type": "ephemeral"},
                }
            ],
        },
        {"role": "user", "content": "Summarize section 3."},
    ],
    max_tokens=1024,
)
# First request: cache_creation_input_tokens at 1.25x rate
# Subsequent: cache_read_input_tokens at 0.1x rate (90% savings)

Output

  • A jq-formatted listing of model IDs with context_length and per-1M prompt pricing from /api/v1/models
  • A model ID selected to fit the estimated token count within an 80% safety margin, or a ValueError when nothing fits
  • A trimmed message list containing the system prompt, a [Previous N messages trimmed for context limits] note, and the most recent turns
  • A single synthesized answer assembled from per-chunk analyses of an oversized document

Examples

Multi-turn chat with the references' prune_conversation() holding a 2,000-token budget — oldest messages drop as the conversation grows:

[Pruned] 9 -> 7 messages (1876 tokens)
Q: What about class-based decorators?...
Tokens: 412

The pruner always keeps the system message and removes the oldest non-system turns first. More worked examples: references/examples.md.

Error Handling

| Error | Cause | Fix | |-------|-------|-----| | 400 context_length_exceeded | Input + max_tokens > model limit | Trim messages or use larger-context model | | 400 max_tokens too large | max_tokens alone exceeds limit | Reduce max_tokens | | Slow responses | Very large context | Use streaming; consider chunking | | Degraded quality | Too much irrelevant context | Trim to relevant content only |

Enterprise Considerations

  • Query /api/v1/models at startup to cache context limits -- don't hardcode (they change)
  • Use max_tokens on every request to prevent runaway completion costs on large contexts
  • Implement conversation trimming as middleware so all calls respect limits
  • Use Anthropic prompt caching for RAG contexts that repeat across requests (90% input savings)
  • Route large-context tasks to cost-effective models (Gemini Flash for 1M context at low cost)
  • Monitor prompt_tokens in responses to detect context bloat before it hits limits

References

Related skills