Data beacon pulser(s) powered by information slingshot
Systems and methods for providing data beacons are disclosed. In some embodiments the system can include a first node and a second node. Each node includes a read queue, a write queue and a parallel file system. Data is written from the write queue on the first node to the parallel file system on the second node and from the write queue on the second node to the parallel file system on the first node. The read queue on each node receives data from the parallel file system on the node itself.
1. A network system for providing data beacons, comprising:
a first node comprising a first read queue, a first write queue, and a first parallel file system;
a second node comprising a second read queue, a second write queue, and a second parallel file system;
wherein the first node writes first data from the first write queue to the second parallel file system; and
wherein the second node reads the first data from the second parallel file system and places the first data in the second read queue.
2. The network system of claim 1 , wherein the second node writes second data from the second write queue to the first parallel file system; and
wherein the first node reads the second data from the first parallel file system and places the second data in the first read queue.
3. The network system of claim 1 , wherein the first data is a carrier file comprising a header, a body, and a footer.
4. The network system of claim 3 , wherein the first nodes subsequently writes additional data to the first parallel file system.
5. The network system of claim 4 , wherein the additional data is written at a set frequency.
6. The network system of claim 4 , wherein the additional data only contains information that has changed since the first data was written.
7. The network system of claim 1 , further comprising a third node comprising a third read queue, a third write queue, and a third parallel file system;
wherein the first node writes first data from the first write queue to the second and third parallel file systems at the same time; and
wherein the third node reads the first data from the third parallel file system and places the first data in the third read queue.