Is there high performance FPGA that does not depend on proprietary bloated windows-only toolchain?
There's icestorm but the supported hardware is not exactly high performance, IIRC the biggest chips supported have around 8K LUTs.
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Is there high performance FPGA that does not depend on proprietary bloated windows-only toolchain?
There's icestorm but the supported hardware is not exactly high performance, IIRC the biggest chips supported have around 8K LUTs.
Is there high performance FPGA that does not depend on proprietary bloated windows-only toolchain?
Proprietary and bloated yes, but I believe both Xilinx and Altera both have software available for Linux, or am I wrong? At least I used Altera's suite on Linux once for a pilot project.
"Intel does offer an emulator, so testing for correctness does not require this long step, but determining and optimizing performance does require these overnight compile phases." After some experience with FPGAs, the emulation step is not enough to test for correctness. Most of the problems happen while synchronizing signals with inputs/outputs and with other weird timing problems, glitches and unintuitive behavior…
Is there high performance FPGA that does not depend on proprietary bloated windows-only toolchain?
Aren't FPGA's used mostly to test/design a circuit that you would then go on to actually fabricate/build? I could be wrong but I thought FPGA's were stateless (meaning if they powered off/reboot you loose everything and have to set it up from scratch again).
Aren't FPGA's used mostly to test/design a circuit that you would then go on to actually fabricate/build? I could be wrong but I thought FPGA's were stateless (meaning if they powered off/reboot you loose everything and have to set it up from scratch again).
Aren't FPGA's used mostly to test/design a circuit that you would then go on to actually fabricate/build? I could be wrong but I thought FPGA's were stateless (meaning if they powered off/reboot you loose everything and have to set it up from scratch again).