135 comments

  • nater5000 13 hours ago ago

    This is cool. I definitely think the "micro" sized LLM space is underappreciated, so it's always good to see work like this. I foresee a paradigm in some contexts where you have a hierarchy of LLMs, with more competent models actively training smaller models to solve specific tasks very efficiently, and something like this could be the smallest layer in that stack.

    With that being said, the web demo is not particularly impressive. It really doesn't like anything I throw at it. I'm fine with accepting that fine-tuning is the solution to this, but I wonder if there's anything to gain from a bigger model? I know it's completely counter to the whole point of this, but a 14MB binary using 28MB of RAM seems unnecessarily small and pretty arbitrary.

    Like, what does a 28MB binary get you? Or a 140MB binary? Or a 1.4MB binary? I'm guessing the choice of 14MB came from minimizing the size as much as possible while meeting certain requirements/performance expectations, but even a Pi 5 has plenty more room to spare. Curious if there's a good explanation for this (which I may have missed in my skim of the post).

    • ProtoAES256 8 minutes ago ago

      It's called a LM :). LLM stands for Large Language Model.

    • HenryNdubuaku 13 hours ago ago

      So, its not a general language model, focused on tool call strictly for tiny edge-devices. There are solutions everywhere for high-capacity devices, Needle is for sub-$200 devices.

      • anon373839 6 hours ago ago

        It seems to me that the model struggles to have enough general intelligence, knowledge, or reasoning capacity for arbitrary prompted tool calling. At this size, not surprising.

        I am VERY interested in seeing how it could perform with some fine-tuning for a specific family of tools/tasks. That would be a great addition to the demo.

        • electroglyph 36 minutes ago ago

          i would assume a model this size would require finetuning tbh. even functiongemma recommends that.

      • fwipsy 11 hours ago ago

        14mb? More like sub-$20 devices.

        • TomatoCo 10 hours ago ago

          Most pi pico's come with 16mb of flash. I wonder what kind of performance that can eek out.

          • SequoiaHope 9 hours ago ago

            Well running from QSPI flash (even the internal memory versions use SPI internally) so any inference would be very slow streaming from that compared to RAM. The featured article says: “With a peak session RAM around 28MB, Needle runs on newer microcontrollers like ESP32-S3.” So I don’t see this doing anything useful on a Pico. The Pico 2 (RP2350) for example has 520k of RAM.

            • Rohansi 8 hours ago ago

              An ESP32 has the same amount of SRAM as the Pi Pico. You can hook up PSRAM to the Pi Pico just like ESP32 to get 16MB more RAM.

    • silentbob7 6 hours ago ago

      I'm quite impressed by the results of the web demo, especially given its size and the precision with which it uses the three available tools (tested with German commands). I could imagine that this LLM would fit well into a setup with multiple micro-sized LLMs for different purposes; so 14 MB for precise tool invocation is a reasonable memory footprint when a number of other local models are running (e.g. STT, TTS + language models).

      • HenryNdubuaku an hour ago ago

        yes, that's what we had in mind while building

  • CarpeNecopinus 4 hours ago ago

    It's definitely cool that you can get any reasoning whatsoever out of such a small model. That said, its reasoning is "interesting":

    Query: "Make the living room dark" Agent: "User wants lights on in living room. 'dark' implies dim. Room 'living room', action 'on'." (And on every test I did, it just completely ignored the "brightness" parameter)

    It also appears to have no concept of what a door or light actually is, whenever the query diverges from "Lock door X" or "Turn on light X", it tries to shoehorn whatever additional context is given into the device name:

    Query: "Lock out the vacuum salesman at the front door" Agent tries to lock "front door vacuum salesman"

    "The way you talk really makes me appreciate silence" is classified as "positive" with 82% confidence.

    • AmazingTurtle 3 hours ago ago

      that model is 14MB large what do you expect. but I agree it's funny regardless

    • HenryNdubuaku an hour ago ago

      Ok, this is genuinely funny, we will fix these as we iterate, thanks lol.

  • dbeardsl 10 hours ago ago

    My first query:

    > Make it a little warmer in here.

    The reply:

    > "name": "set_thermostat", > "arguments": { > "temperature": 65, > "mode": "cool", > ... > "reasoning": "'warmer' implies need for cooling; set_thermostat with temperature 65 (typical warmth) and mode 'cool'.",

    Maybe I'm doing it wrong?

    • ocihangir 5 hours ago ago

      Tested your example, the confidence is 0. In smart home context, I can think of an application where the low confidence answers can be forwarded to cloud, whereas the vast majority generic queries solved locally, if the confidence is reliable enough. The response is quite fast by the way.

    • dannyw 10 hours ago ago

      It's not a conversational model. It's meant as a local tool calling model.

      • derangedHorse 10 hours ago ago

        Yes, I think OP understands that. What he and many others in this thread are trying to understand is what makes this model useful.

        • ehnto 8 hours ago ago

          Turning a voice command into a tool call should be self evidently useful, being able to do that on a small embedded device is the novelty here. In this theoretical example, the thermostat is hosting the model on device and would use no external services.

          • tomrod 8 hours ago ago

            I confused by the dispatch model. Tool calls typically need some reasonability to be deterministic and, more importantly, predictable in response (o/w GIGO). Why would the thermostat need to interpret a voice command that the node capturing the voice command would not interpret instead?

            • ehnto 7 hours ago ago

              The node capturing the voice command could be the thermostat. From my understanding they are targeting very small devices.

              So that could be a master home automation node, but why not also a single purpose device? I can think of more bad examples than I can good ones, but maybe I am doing some soldering and I need my soldering iron turned up a bit; my hands are full, so doing that by voice would be useful enough. Something I would never link up to a big AI model or home automation network, but could be useful to control by voice.

              If it's something that can be burnt directly into a chip and shipped with the products for cheap, maybe that's a more pragmatic way to get AI into small devices (see taalas for a much bigger model doing that, althoug not yet cheap).

              • tomrod 7 hours ago ago

                Oh I agree that's not unreasonable. I wonder about the harnessing heft required to make it feasible though. If I say I'd like it a bit warmer, a tool can deterministically bump a few degrees while an LLM might bump it 10C. So do we limit the tool's range?

      • weird-eye-issue 2 hours ago ago

        That's exactly what they were testing and what it failed at

      • KPGv2 36 minutes ago ago

        Yes, and it seems the tool called here was the thermostat, to set the mode literally the opposite of what was requested.

        "Make it warmer"

        tool that cools room called

    • owebmaster 8 hours ago ago

      Try asking it to set the thermostat to a value. It's a very small model, there's not much reasoning capability

  • Tiberium 14 hours ago ago

    Funny result from the web demo. I'm well aware that it's an extremely small and, well, stupid, model, but even so:

    Query: HN

    Result:

    { "function_calls": [ { "name": "lock_door", "arguments": { "door": "front door" } } ], "reasoning": "User wants to lock the door. No specific door mentioned, so use 'front door' as default.", "confidence": 0 }

    I'd expect it to at least ignore (call no tools) for the queries that it doesn't understand. And it seems like it does do that, just not consistently.

    • yoavm 14 hours ago ago

      The website says the model is for "tool calling, device use, and structured extraction". Your example just doesn't seem to be very relevant. FWIW, it did a pretty good job for tool calling when I tried it, and I think it could be pretty nice to have this running on locally and integrate with Home Assistant.

      • evmaki 14 hours ago ago

        False positives are definitely relevant and worth measuring - natural language interfaces always have a discoverability problem, i.e., users not knowing what actions the system does and does not support. If the frontend of that system lacks the ability to reject unsupported commands, weird stuff happens.

        Nonetheless, this is very cool work! If I can offer a small suggestion to the team at Cactus, it would be to evaluate your releases on some usability criteria (including false positives). Any serious integrator or adopter of these models would want to have that information available.

        • jdknezek 14 hours ago ago

          > "confidence": 0

          OP and the linked page talk about the confidence score and using it as an action threshold, so it looks like an appropriate total response to me.

          • evmaki 13 hours ago ago

            Right, but that's not the same thing as reporting a benchmark across a test set. It doesn't help me determine how well the model does across a decently-large sample size of commands. It doesn't tell me with what reliability the confidence will be below a given threshold when it should be, above that threshold when it should be, etc.

        • HenryNdubuaku 13 hours ago ago

          Thanks, noted!

      • planb 5 hours ago ago

        This is extremely impressive if it works. But on the other hand, if the number of cases where it works as expected is lower than what we could catch with a (old-Siri-style) heuristics based approach, and the rest fails in unpredictable ways, I'd prefer the dumb old "I did not understand that" response.

      • curious_cat_163 10 hours ago ago

        I think the test above is about tool calling... That's how I read it. The issue here is known as "out of distribution detection" in the old-timey classification world.

        I am not sure how a micro model will fundamentally solve it. Would love to understand what dannyw and team did there?

        • derangedHorse 10 hours ago ago

          How did you draw an association between dannyw and Cactus? There are no 'Danny's on the list of GH contributors nor is there one named in the paper. Just curious.

    • petu 14 hours ago ago

      "confidence": 0, so I guess you could threshold it

      • justoneletter 7 hours ago ago

        Only if the confidences are calibrated, and they probably aren't. Any idea how the confidence is derived?

    • kristjan 3 hours ago ago

      It seems to love locking doors. I was hoping this would dim the lights.

      > I'm hungover

      { "function_calls": [ { "name": "lock_door", "arguments": { "door": "front door" } } ], "reasoning": "User wants to lock the door. 'hungover' implies a security door. No specific door named, so use 'front door' as default.", "confidence": 0 }

    • jszymborski 14 hours ago ago

      no, this is the appropriate response to hearing the words "HN" :P

    • plingbang 12 hours ago ago

      I've got an identical output with the prompt "do not lock the door".

    • hmokiguess 14 hours ago ago

      yeah I got the same, almost like its biased heavily towards that as the 0 ranking -- my prompt was just the word 'potato'

    • Schiendelman 14 hours ago ago

      Was that the first message you sent it?

    • HenryNdubuaku 13 hours ago ago

      This is exactly why the confidence feature was introduced, the model knows when its wrong, we could hide that part and return a placeholder "sorry I only do function calls", would that be better or you prefer to see everything?

  • havercosine 3 hours ago ago

    Congratulations. 28MB is impressive, I've not played around with actual queries/outputs.

    I'm wondering what is the overall thesis/plan here and where exactly the innovation lies? Would love if you can throw light on below,

      - If I understand, this is complete stack of a custom architecture (attention only transformers), custom quantisation format and a runtime engine all packaged together?
      - How do you differentiate / compete against LiteRT (former TensorFlowLite) and Lite RT LM? Google is heavily investing in this ecosystem because Android is where they have distribution moat. Wouldn't it be easier for me as a developer to build on top of LiteRT since it is relatively open ecosystem and I can pack large number of open models from HF directly?
      - What exact challenges you saw with TFLite, TVM etc that prompted this effort ?
      - What will be the pricing model like?
    • HenryNdubuaku 2 hours ago ago

      So TFLite is an inference engine while Needle is a model, which you can port on TFLite btw.

  • arthuqa 14 hours ago ago

    That's really cool - I was already thinking of compressing `functiongemma-270m-it` down to 1-2 bits so it would work flawlessly in the browser. Your `Fine-tuning` feature is even much more convenient.

  • profsummergig 13 hours ago ago

    Could someone please share how such open source micro-LLMs might have been created?

    Do the creators take something like DeepSeek, and then delete most of the neurons to whittle down the size?

    • anigbrowl 10 hours ago ago

      There's a Manning book on creating your own LLM from scratch which answers your question exactly. There's another book from the same publisher specifically about small language models for specialty purposes.

    • HenryNdubuaku 13 hours ago ago

      Technically, you could do that, but we trained this one from the ground up!

      • profsummergig 11 hours ago ago

        That sounds like an enormously expensive exercise.

        • salamo 11 hours ago ago

          As someone who's done something similar (https://blog.lukesalamone.com/posts/creating-tiny-semantic-s...) the expensive part wasn't the training itself but the data curation and evaluation post-training. For this, getting a reasonable distribution of tool calls when the tool call can be anything isn't easy.

          Once you have that, the model is small enough batch sizes are probably enormous and training can probably be done on a consumer-grade GPU in a week or less. Or even faster on a bigger GPU.

        • ronsor 11 hours ago ago

          At <50M parameters, training costs are completely trivial. You'll spend a lot more on your rent this month.

        • kadoban 10 hours ago ago

          Training scales pretty badly, so smaller models like this are really not that bad in terms of cost.

        • genxy 10 hours ago ago

          You can train a model of this size on your laptop in a day.

    • hgoel 12 hours ago ago

      Another option for something this small and narrowly specialized could be to get traditional LLMs to synthesize the training data. Model collapse is probably less of an issue at this size relative to terabyte sized models.

  • rcarmo 4 hours ago ago

    Nice. I used Needle as a router in https://rcarmo.github.io/projects/memento/, need to take a look at this

  • Robin_Message 3 hours ago ago

    > Turn the lights down low in the bedroom

    Sets lights to 30% but also off

    > Turn the lights low in the bedroom

    Sets lights to on

    This is a cool idea but I think humans assume more than 14MB of intelligence. This is like the unhelpful guard in the swamp castle of Monty Python's Holy Grail

    • HenryNdubuaku 2 hours ago ago

      Haha, its not a generalist model, cheap devices cannot run LLM in production, so we brig on-device intelligence to them in the size they can. Needle is niche, not a Gemma or GPT replacement.

      • Robin_Message 2 hours ago ago

        Right, but I don't think consumers would consider this "intelligence". It's too dumb.

  • raylad an hour ago ago

    It seems to fail. I sent the prompt:

    “ 5° warmer”

    And it said:

    “ setting the temperature to 5°F”

  • hathym 13 hours ago ago

    I tested with

      import needle
    
      @needle.tool
      def add(a: int, b: int):
          "Add two numbers."
          return a + b
    
      agent = needle.Needle(tools=[add])
      print(agent.run("calculate 1 + 1?")["reasoning"])
    
    
    python main.py No calculator or math tool available.

    conclusion: completly useless

    • HenryNdubuaku 13 hours ago ago

      Try the following tool description: "Calculate the sum of two numbers. Use for any arithmetic or math question." instead of "Add two numbers." Let me know how it goes, thanks!

      • HenryNdubuaku 13 hours ago ago

        It does better with clearer tool description, but we are taking note of these complaints for future improvements.

      • hathym 13 hours ago ago

        works better that way, thanks :)

        • hathym 13 hours ago ago

          but still struggle when changing the quesion:

            import needle
          
            @needle.tool
            def add(a: int, b: int):
                "Calculate the sum of two numbers. Use for any arithmetic or math question."
                return a + b
          
            agent = needle.Needle(tools=[add])
            print(agent.run("what is 5 + 7?")["reasoning"])
          
          
          >> No calculator or math tool available. Cannot compute numbers.
          • HenryNdubuaku 13 hours ago ago

            Ah, another failure point on our end! So a simple "5 + 7" and "add 5 and 7" works. But to handle ambiguity, the python package ships pipelines to synthesize augmentations and fine-tune on your samples for robustness. Just run "needle playground" and use the UI. Apologies.

        • HenryNdubuaku 13 hours ago ago

          Thanks, we shall improve this for the next release.

  • redrix 13 hours ago ago

    This is cool!

    While most of the industry focuses on the frontier of “intelligence” (function), a release like this represents the frontier of the other end of the spectrum (form).

    Both are important if we ever want to see “Opus-level” capability running locally on commodity machines in the future.

    • dalemhurley 12 hours ago ago

      agreed, this is where we have the biggest opportunity for innovation.

    • HenryNdubuaku 13 hours ago ago

      thanks!

  • kooi 7 hours ago ago

    Its pretty significant you've got this working locally in wasm. Very cool.

    Re: robotics: I'm unsure how this could be helpful.

    It fails a pretty simple navigation prompt.

    X0: (0.0, 0.0). Object bounding box: [1.0, 1.0, 2.0, 2.0]. navigate to (3.0,3.0)

    I changed it to "call path planner to navigate: a_star(x0, xf, obs)"

    Another fail.

    My intuition tells me micro llms will/are important for robotics. I just can't grok it. Can someone without control theory experience give me a good example?

    Probably at the planning level of the navigation stack. That's where I see reasoning being helpful. Lower than that...idk

    Give me an example of a robotics prompt that seems useful and I'll give you an example why we don't need LLMs to be a tracking controller, etc.

  • r0ze-at-hn 4 hours ago ago

    Curious, why did you go down to 2bit rather than 4 bits? 4bit with folding the layers should arrive at the same size, but with better quality?

    • HenryNdubuaku 2 hours ago ago

      A lot of Needle 1 users deployed on microcontrollers, we couldn't just throw them under the bus only t chase benchmarks, so its a price we are willing to pay :(

  • tolugenius 14 hours ago ago

    This is really cool, I'm curious how much knowledge can their be in smaller models? It seems the current trade off is you need sizeably larger models for more performance but I'm curious if in your work how far this is true, as edge ai is really what needs to get better before physical ai can take off (my two cents).

    • msdz 14 hours ago ago

      I imagine at such a low parameter count, there would be little to no world knowledge whatsoever, and the entire focus is on getting the structure of tool calling etc. right…?

      But yeah, in terms of “physical” AI, robotics definitely comes to mind for me as well, where tool calls/structured “device” use in a “realtime”/edge application are highly beneficial (if you wanted to go with LLMs), but beefy hardware can’t be easily used.

      • rshemet 9 hours ago ago

        Roman from Cactus here -

        yes you're right, there's only so much a 14MB model can do.

        Needle excels at in-conext inference, with tightly defined environments. In our experience:

        accurate descriptions + narrow tool scope = success

  • hgoel 13 hours ago ago

    Makes me think of the demo from some time ago where someone got a ~29M parameter model running on an esp32. I wonder what kind of throughput this could get if a handful of esp32s were strung together...

    Edit: I have a pile of d1 minis, but not much time.

    • HenryNdubuaku 13 hours ago ago

      That demo was Needle 1 indeed and we are creating the guide for ESP32 now as we speak.

    • forsalebypwner 13 hours ago ago

      They mention that this specific model is able to run on an ESP32-S3, or an ESP32-P4 which has 32MB of PSRAM. I'm trying to figure out how to do this now.

  • pylotlight 9 hours ago ago

    What about use case for replacing regex? I.e "random formatted title.extension" - extract the title or some tag or something for more dynamic string manipulation for pulling structured data out of strings efficiently and more simply than regex provides?

  • mmastrac 11 hours ago ago

    Congrats on this release. The WASM implementation is really cool. This is a surprisingly good fit for a lot of cases, and I totally want to try turning this into a helper assistant for an application.

    Please, though, take a pass at humanizing the text on the page. It's Clauded up all over and makes it hard to read.

  • dangoodmanUT 11 hours ago ago

    > turn on the tv

    { "function_calls": [ { "name": "lock_door", "arguments": { "door": "tv" } } ], "confidence": 0.0158 }

    Very interesting, seems confidence is 0 when tool calls are right?

    • pylotlight 9 hours ago ago

      You may want to reword that.. what do you think 0 confidence means... ?

  • skavi 13 hours ago ago

    I wonder if there's any way to get this to plan out a dag of tool calls? i.e. use the results from earlier calls as the parameters to later ones? I tried introducing a stack based system, but gave up pretty quickly.

    • HenryNdubuaku 13 hours ago ago

      Yes, though for better results in production, after creating your tool json, use the provided data synthesis and fine-tuning pipeline. It tunes on on your mac.

  • minimaltom 14 hours ago ago

    Was really cool to see yous use Engrams to cut down compute!

    Given its basically an O(1) lookup with disk space being the main constraint, I was curious if you've tried ablating engram layers and sizes across your setup?

    Also, why mHC over attention residuals?

    • HenryNdubuaku 13 hours ago ago

      Yes, we ablated Engrams rigorously and found that it returned world knowledge like FFN without without compute expenditure.

      • minimaltom 13 hours ago ago

        What about mHC? I'm surprised it helped with such a small compute budget.

  • dofm 14 hours ago ago

    Naïve and clumsy question: how would you pair this with speech-text-speech stuff, wake words etc.? Are there good examples of this for a Pi 5?

    The demo is super — I'm just having trouble seeing the whole picture for e.g. a screenless device.

    ETA: pun not intended

    • nater5000 14 hours ago ago

      The best entrypoint is Home Assistant: https://www.home-assistant.io/

      That will get you a lot further than what you're asking, but if you dig a bit through Home Assistant features, resources, etc., you may find the current "best" answers to your questions.

      If you want a quick answer: Whisper is a good open-source speech-to-text model which comes in a variety of sizes (https://huggingface.co/openai/whisper-tiny). You can definitely get something like this running on a Pi 5. There are plenty of other STT models out there, some of which are built specifically for this context (again, see the Home Assistant stuff), but Whisper comes up a lot as a good default choice.

      So with something like Whisper, you could just have a simple script which is constantly listening to a rolling window of audio and transcribing it. When the transcription includes a key phrase, you can pass the rest of the transcription to Needle2 (or anything else for that matter). From there, you take the results and execute the necessary tool calls.

      There's a bit more to all of this to make it work smoothly, but fundamentally this is all there is to it. All this would work very fast on a Pi 5 (although I wouldn't expect the results to be particularly good without some serious hand-crafted logic, fine-tuning, etc.). If you want to mess around this stuff, handing all of this to Claude, Codex, etc., can get you something spun up and functional very quickly.

      • silentbob7 5 hours ago ago

        The wyoming protocoll seems to be the path for home assistant audio, so you need STT (wyoming-faster-whisper), TTS (wyoming-piper for wide language support) API endpoints and some Ollama or OpenAI API endpoint available for your home assistant server.

        • dofm 4 hours ago ago

          That is interesting, thanks. And I see separable wake-word detection there. I'd always assumed that was likely to be closer to the metal (more like recognise a sound than turn sound to word).

      • dofm 13 hours ago ago

        This is a very responsive answer, thank you so much. (I'd assumed maybe Whisper but the wake word "loop" detail there is illuminating.)

    • HenryNdubuaku 14 hours ago ago

      Users often stack a transcription model on top to get the voice prompt, then decode to actions. Think of Alexa and Siri.

      • dofm 13 hours ago ago

        Thank you.

  • prmoustache 6 hours ago ago

    How many languages does it supports in such a small size?

    • HenryNdubuaku 2 hours ago ago

      7 for now, English, German, Polish, French, Dutch, Latin, Italin.

    • silentbob7 5 hours ago ago

      Tested with german and this kinda works, but confidence suffers.

  • sroussey 12 hours ago ago

    Looking forward to npm version of needle-rs supporting v2. I added needle support for tool use in my side project.

    • HenryNdubuaku 12 hours ago ago

      thanks, give the playground a go and let us know how to improve!

      • sroussey 11 hours ago ago

        I tried tweeking for structured extraction, but got issues with token budget. What is the context size?

  • forsalebypwner 13 hours ago ago

    Any instructions available for running this on an ESP32-S3 or P4 like the site says?

    • rshemet 12 hours ago ago

      Hey! Roman here from Cactus - yes, we're putting putting together a detailed guide for ESP32.

      In the meantime, if you have enough RAM for the current model (≈28MB), our repo will get you up & running:

      https://github.com/cactus-compute/needle

  • ianseyler 13 hours ago ago

    I’d be interested in attempting to run this in a network- enabled 32MiB RAM microVM.

  • snyp 8 hours ago ago

    This is so cool! Congrats to the team!

  • anr0 7 hours ago ago

    these micro LLMs could be a game changer for hearing aids

    so many interesting lowfi hardware use cases

    • HenryNdubuaku 2 hours ago ago

      Exactly the use cases we designed Needle for!

  • yorwba 13 hours ago ago

    "make it as dark as possible"

      {
        "function_calls": [
          {
            "name": "set_thermostat",
            "arguments": {
              "temperature": 72,
              "mode": "cool",
              "room": "living room"
            }
          }
        ],
        "reasoning": "'as dark as possible' -> set_thermostat to warm; 'dark' implies higher temperature; 'cool' mode for darkness.",
        "confidence": 0
      }
    
    ... maybe this counts as dark humor at least.

    Since it seems limited to matching a few templates and otherwise falling flat on its face, I wonder how 14MB of regexes would fare in its stead. Normally you wouldn't want to parse arbitrary natural language input with regex because of how tedious and brittle it would be, but for the tedium we have LLMs and this alternative isn't exactly robust either.

    • HenryNdubuaku 2 hours ago ago

      SO when confused, it gives you a low confidence score as a signal, in which case its recommended to finetune using th python package, train on your mac/PC

    • silentbob7 5 hours ago ago

      I also wonder how small a LLM trained on catching only subject (e.g. living room) and action (light on) from text input could be compared to needle - the json wrapping could be done afterwards using templates.

      • HenryNdubuaku 2 hours ago ago

        The problem is the target device, an LLM can't run on an average TV well.

  • tamperoff 9 hours ago ago

    Is there a prebuilt apk somewhere?

  • mickael-kerjean 11 hours ago ago

    Any plan to release on ollama?

  • written-beyond 11 hours ago ago

    Great work! Keep it up

  • KennyBlanken 8 hours ago ago

    If you want Needle2 to rget lots of testing, become well known, etc - make a Home Assistant plugin.

    • rshemet 7 hours ago ago

      hey Kenny, Roman from Cactus here -

      could you say more? What kind of home assistant / what stack

  • platevoltage 10 hours ago ago

    This is very interesting! I'm going to spend some time with this. This is really the only class of LLM I'm interested in at all. I sincerely hope on-device takes over and everyone looses their asses on these data centers.

    • HenryNdubuaku 2 hours ago ago

      Thanks! Let us know how it goes :)

  • varispeed 14 hours ago ago

    What is the difference between this and random sentence generator?

    • HenryNdubuaku 14 hours ago ago

      Random sentence is not a function call.

    • actionfromafar 14 hours ago ago

      Ask it to lock a door for instance. It seems to convert simple instructions to reasonable tool calls. Check its confidence score.

  • peter_d_sherman 6 hours ago ago

    Utterly Fascinating!

    For the longest time, I conceptualized LLM's as Text Input -> Text Output transformers, then later as Text Input -> Video Output transformers. Later still I conceptualized them (if they were general purpose) as Any Format Input -> Any Format Output transformers...

    The idea of a smaller parameter model runable on smaller/slower/less complex hardware (computers with no GPU, slower CPU's, less memory, aka "Edge Devices") trained for Text Input -> JSON Output (used for tool calls, etc.) I could honestly not conceptualize before seeing the demo on the web page...

    But now that I've seen it and conceptualized it -- I'd have to say: "Yes, there's definitely a huge niche, a huge market for this, directly between the non-LLM driven tools and software and SaaS's of yesteryear, and the latest, cutting edge Frontier AI models of today!"

    So, I like Needle a lot!

    I like Needle a lot, and I love the idea of any tiny resource-thrifty LLM that can run on older hardware, that outputs only JSON!

    I can see a huge market for it!

    • HenryNdubuaku 2 hours ago ago

      You explained it better, we've done a bad job at communicating its nice :(

  • yieldcrv 12 hours ago ago

    what does the first L mean in LLM?

    • janalsncm 11 hours ago ago

      Fwiw people have told me that GPT2 doesn’t qualify as an LLM at 550MB despite being one of the first LLMs.

      So the practical answer to your question is: not much.

    • rshemet 8 hours ago ago

      it stands for Lets-not-be-sarcastic :)

  • grenli 13 hours ago ago

    The learned confidence gate is the crucial piece for a 14MB action model. On ambiguous requests such as the HN example, what calibration target decides between abstaining locally and escalating to the cloud?

    • HenryNdubuaku 13 hours ago ago

      around +60% confidence threshold is cool from experiments, the problem is that you gotta test on your own workload, no existing benchmark could honestly paint the full picture, so we exposed the confidence threshold for everyone.