Add TinyFPGA platform based on Migen.
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@ -0,0 +1,40 @@
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from litex.build.generic_platform import *
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from litex.build.lattice import LatticePlatform
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from litex.build.lattice.programmer import TinyFpgaBProgrammer
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_io = [
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("usb", 0,
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Subsignal("d_p", Pins("A3")),
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Subsignal("d_n", Pins("A4")),
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IOStandard("LVCMOS33")
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),
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("spiflash", 0,
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Subsignal("cs_n", Pins("F7"), IOStandard("LVCMOS33")),
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Subsignal("clk", Pins("G7"), IOStandard("LVCMOS33")),
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Subsignal("mosi", Pins("G6"), IOStandard("LVCMOS33")),
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Subsignal("miso", Pins("H7"), IOStandard("LVCMOS33"))
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),
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("clk16", 0, Pins("B4"), IOStandard("LVCMOS33"))
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]
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_connectors = [
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# B2-J1, Pins 4-13
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# D9-C9, Pins 18-19, Pins 21-24
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# E8, Pin 20 (Input only)
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("GPIO", "B2 A2 A1 B1 C1 D1 E1 G1 H1 J1 D9 C9 A9 A8 A7 A6"),
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("GBIN", "E8")
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]
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class Platform(LatticePlatform):
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default_clk_name = "clk16"
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default_clk_period = 62.5
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def __init__(self):
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LatticePlatform.__init__(self, "ice40-lp8k-cm81", _io, _connectors,
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toolchain="icestorm")
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def create_programmer(self):
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return TinyFpgaBProgrammer()
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@ -41,3 +41,18 @@ class IceBurnProgrammer(GenericProgrammer):
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def load_bitstream(self, bitstream_file):
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def load_bitstream(self, bitstream_file):
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subprocess.call([self.iceburn, "-evw", bitstream_file])
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subprocess.call([self.iceburn, "-evw", bitstream_file])
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class TinyFpgaBProgrammer(GenericProgrammer):
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needs_bitreverse = False
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# The default flash address you probably want is 0x30000; the image at
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# address 0 is for the bootloader.
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def flash(self, address, bitstream_file):
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subprocess.call(["tinyfpgab", "-a", str(address), "-p",
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bitstream_file])
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# Force user image to boot if a user reset tinyfpga, the bootloader
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# is active, and the user image need not be reprogrammed.
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def boot(self):
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subprocess.call(["tinyfpgab", "-b"])
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