- Create a new directory with these three files (requirements.txt, main.py, README.md)
python -m venv venv
source venv/bin/activate
pip install -r requirements.txt
python main.py
- Update
main()
to run the example prompt chains
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Code is clean if it can be understood easily – by everyone on the team. Clean code can be read and enhanced by a developer other than its original author. With understandability comes readability, changeability, extensibility and maintainability.
- Follow standard conventions.
- Keep it simple stupid. Simpler is always better. Reduce complexity as much as possible.
- Boy scout rule. Leave the campground cleaner than you found it.
- Always find root cause. Always look for the root cause of a problem.
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Ref : stackoverflow
The best solution in my opinion is to use the unittest
[command line interface][1] which will add the directory to the sys.path
so you don't have to (done in the TestLoader
class).
For example for a directory structure like this:
new_project
├── antigravity.py
Good question! I am collecting human data on how quantization affects outputs. See here for more information: ggerganov/llama.cpp#5962
In the meantime, use the largest that fully fits in your GPU. If you can comfortably fit Q4_K_S, try using a model with more parameters.
See the wiki upstream: https://github.com/ggerganov/llama.cpp/wiki/Feature-matrix
import autogen | |
from user_proxy_webagent import UserProxyWebAgent | |
import asyncio | |
config_list = [ | |
{ | |
"model": "gpt-3.5-turbo", | |
# "api_key": "<YOUR KEY HERE>" | |
} | |
] |
People
:bowtie: |
😄 :smile: |
😆 :laughing: |
---|---|---|
😊 :blush: |
😃 :smiley: |
:relaxed: |
😏 :smirk: |
😍 :heart_eyes: |
😘 :kissing_heart: |
😚 :kissing_closed_eyes: |
😳 :flushed: |
😌 :relieved: |
😆 :satisfied: |
😁 :grin: |
😉 :wink: |
😜 :stuck_out_tongue_winking_eye: |
😝 :stuck_out_tongue_closed_eyes: |
😀 :grinning: |
😗 :kissing: |
😙 :kissing_smiling_eyes: |
😛 :stuck_out_tongue: |
def is_safe(graph, colours, colour, current): | |
neighbours = graph[current] | |
for neighbour in neighbours: | |
if colour == colours[neighbour - 1]: | |
return False | |
return True | |
def graph_traversal(graph, colours, vertices, current): | |
if current == vertices + 1: | |
return True |