Earlier quoted context omitted.
Legit curious what the use case would be, that would justify Apple adding it in. Like, when do you need to text someone who's within Bluetooth range but somehow has no WiFi or cell reception?
Hiking, Airplane, stadia (here in India the tower capacity get exhausted), underground metro etc
Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
101–110 of 457 posts
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#102I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
Central node addressing control is the only way to solve it. Making it self-governing through payments is a nice idea.
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#103I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#104I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#105A bit different, as it's mainly for voice - but I made an app 'Murmur : Bluetooth Group Calls' - that lets you hold group voice calls and message via a mesh of Bluetooth LE connections. It's available on Android and iOS. https://apps.apple.com/gb/app/murmur-bluetooth-group-calls/i... Doesn't really get any downloads, so not sure there's much demand for this - but I use it with some shokz bone conducting headphones fo…
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#106Everything old is new again... Repo description reminds me of the Shortwave app from the 2010s. https://medium.com/@alonsoholmes/wtfbeacon-how-shortwave-wor...
Seems like people in this thread are inspired by this novel concept that isn't novel at all.
FireChat was in fact used against dictatorial governments during protests in Iraq and Hong Kong. So it fits the aspired goal for the apps suggested here perfectly, and yet still failed as a product.
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#107I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#108I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
> Works best in areas with patchy or no internet, or under censorship. The biggest problem I immediately foresee is that this sounds backwards. It doesn't work best in areas with patchy or no internet, it works best in areas with lots of participating devices. It's most needed in areas with patchy or no internet, but those areas are likely to be the opposite of the areas with lots of participating devices.
In fairness to op, the proposed solution seems best intended for comms blackouts in densely populated areas rather than areas with persistently limited access.
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#109I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
> Works best in areas with patchy or no internet, or under censorship. The biggest problem I immediately foresee is that this sounds backwards. It doesn't work best in areas with patchy or no internet, it works best in areas with lots of participating devices. It's most needed in areas with patchy or no internet, but those areas are likely to be the opposite of the areas with lots of participating devices.
Re: Bitchat – A decentralized messaging app that works over Bluetooth mesh networks
#110I’ve been toying with a concept inspired by Apple’s Find My network: Imagine a decentralized, delay-tolerant messaging system where messages hop device-to-device (e.g., via Bluetooth, UWB, Wi-Fi Direct), similar to how “Find My” relays location via nearby iPhones. Now add a twist: • Senders pay a small fee to send a message. • Relaying devices earn a micro-payment (could be tokens, sats, etc.) for carrying the messag…
> Works best in areas with patchy or no internet, or under censorship. The biggest problem I immediately foresee is that this sounds backwards. It doesn't work best in areas with patchy or no internet, it works best in areas with lots of participating devices. It's most needed in areas with patchy or no internet, but those areas are likely to be the opposite of the areas with lots of participating devices.