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							@@ -118,15 +118,28 @@
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					<li>Blinkenlights</li>
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				</ol>
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			</section>
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			<section>
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				<h2>Workshop Outline</h2>
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				<ol>
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					<li>What do I need to get started?</li>
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					<li>What is Fomu, and what is an FPGA?</li>
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					<li>What can I do with Fomu?</li>
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					<li>What makes Fomu special?</li>
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				</ol>
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			</section>
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			<section>
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				<section>
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					<h2>What do I need to get started?</h2>
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					<ol>
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						<li>Synthesis</li>
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						<li>Place-and-Route</li>
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						<li>Packer</li>
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					</ol>
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				</section>
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			</section>
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			<section>
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				<section>
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					<h2>What is an FPGA?</h2>
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@@ -137,6 +150,7 @@
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						FPGAs are measured in resources called LUTs or LCs.
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					</p>
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				</section>
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				<section>
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					<h2>What is Fomu?</h2>
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					<p>
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@@ -145,6 +159,15 @@
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						Unlike many other PCBs, Fomu does not have a separate USB controller chip.  This means that any projects that want to use the USB port must include a USB softcore.
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					</p>
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				</section>
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				<section>
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					<h2>Fomu Block Design Diagram</h2>
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				</section>
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				<section>
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					<h2>ICE40 Features</h2>
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				</section>
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				<section>
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					<h2>What is this PCB?</h2>
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					<p>
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@@ -168,16 +191,113 @@
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						* Swap PMODa pins for I3C
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					</p>
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				</section>
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				<section>
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					<h2>Levels of Fomu</h2>
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					<p>
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						Fomu aims to be accessable on three levels:
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						<ol>
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							<li>Python / Interpreted</li>
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							<li>RISC-V</li>
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							<li>Verilog / FPGA</li>
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						</ol>
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					</p>
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					<h2>What modifications does it have?</h2>
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					<ul>
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						<li>Shorting out two zero-ohm resistors</li>
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						<li>Programming SPI flash</li>
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						<li>Bending SPI flash pins inward</li>
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						<li>Mounting crystal on its side</li>
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						<li>Attaching power to crystal</li>
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					</ul>
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				</section>
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			</section>
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			<section>
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				<h2>Levels of Fomu</h2>
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		||||
				<p>
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					Fomu aims to be accessable on three levels:
 | 
			
		||||
					<ol>
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		||||
						<li>Python / Interpreted</li>
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		||||
						<li>RISC-V</li>
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		||||
						<li>Verilog / FPGA</li>
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					</ol>
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				</p>
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			</section>
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			<section>
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				<section>
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					<h2>Python / Interpreted</h2>
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					<ol>
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						<li><strong>Goal:</strong> Multiple interpreters, auto-reload, USB disk interface</li>
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						<li><strong>Now:</strong> MicroPython binary</li>
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					</ol>
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				</section>
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				<section>
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					<h2>Loading Programs onto Fomu</h2>
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					<code>dfu-util -l</code>
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					<code>dfu-util -D update.bin</code>
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				</section>
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				<section>
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					<h2>Loading MicroPython</h2>
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					<code>dfu-util -D micropython.dfu</code>
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				</section>
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				<section>
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					<h2>Connecting via serial</h2>
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				</section>
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				<section>
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					<h2>Interacting with Fomu</h2>
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				</section>
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				<section>
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					<h2>RGB LEDD reference</h2>
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				</section>
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				<section>
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					<h2>Future Work</h2>
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					CircuitPython, etc.
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				</section>
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			</section>
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			<section>
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				<section>
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					<h2>RISC-V code</h2>
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				</section>
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				<section>
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					<h2>LiteX Machine Model</h2>
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				</section>
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				<section>
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					<h2>Wishbone Interface</h2>
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				</section>
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				<section>
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					<h2>Wishbone Bridge</h2>
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				</section>
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				<section>
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					<h2>Interacting with LEDD directly</h2>
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				</section>
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				<section>
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					<h2>Writing RISC-V Code</h2>
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				</section>
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			</section>
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			<section>
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				<section>
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					<h2>Hardware Description Language</h2>
 | 
			
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				</section>
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				<section>
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					<h2>Yosys and NextPNR</h2>
 | 
			
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				</section>
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				<section>
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					<h2>Blinking an LED</h2>
 | 
			
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				</section>
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				<section>
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					<h2>LiteX and MiGen</h2>
 | 
			
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				</section>
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				<section>
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					<h2>VexRiscv</h2>
 | 
			
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				</section>
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			</section>
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		</div>
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