[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"article-risc-v-hobbyists-open-hardware-obsession-zh":3,"article-related-risc-v-hobbyists-open-hardware-obsession-zh":31,"series-industry-9e53719f-5134-4bf1-8fe2-6471ee921eb5":76},{"id":4,"slug":5,"title":6,"content":7,"summary":8,"source":9,"source_url":10,"author":11,"image_url":12,"cover_image":12,"category":13,"language":14,"translated_content":11,"related_article_id":15,"keywords":16,"key_takeaways":23,"views":27,"created_at":28,"published_at":29,"topic_cluster_id":30},"9e53719f-5134-4bf1-8fe2-6471ee921eb5","risc-v-hobbyists-open-hardware-obsession-zh","RISC-V 業餘玩家證明了：開放硬體仍獎勵偏執式工程","\u003Cp data-speakable=\"summary\">我認為，開放硬體真正的進展，仍然最常來自像 Yuri Zaporozhets 這種願意端到端掌控整個系統的業餘工程師，而不是只做單點優化的團隊。\u003C\u002Fp>\u003Cp>Yuri Zaporozhets 不是在做懷舊玩具；他在\u003Ca href=\"\u002Fnews\u002Fagent-network-pentagon-ai-human-control-zh\">證明\u003C\u002Fa>，開放硬體最有生命力的突破，往往出自願意把整個堆疊從底層一路做到應用層的人。他的 GateMate Personal Computer 跑在 25 MHz \u003Ca href=\"\u002Fnews\u002Fzhihe-a210-risc-v-soc-dev-kit-breakdown-zh\">RISC\u003C\u002Fa>-V 核心上，使用一塊 €50 FPGA 板，還有 VGA 輸出、額外 PSRAM、BIOS 與自製早期作業系統。這不是展示用樣機，而是一台從廉價板子走到可用桌面系統的真機，證明開放硬體仍然可以被「把事情做完」的人推進。\u003C\u002Fp>\u003Ch2>第一個論點\u003C\u002Fh2>\u003Cp>第一個理由很直接：端到端控制，勝過只做局部最佳化。GateMate PC 不是把一顆巧妙晶片塞進既有電腦，而是把軟 \u003Ca href=\"\u002Ftag\u002Frisc-v\">RISC-V\u003C\u002Fa> CPU、自訂顯示邏輯、額外記憶體與自製作業系統綁成一個完整系統。這種整合的價值在於，最棘手的系統問題通常都藏在層與層之間；當同一個人能改硬體、改韌體、改 OS，這些縫隙就不再是黑箱。\u003C\u002Fp>\n\u003Cfigure class=\"my-6\">\u003Cimg src=\"https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782906469131-qew3.png\" alt=\"RISC-V 業餘玩家證明了：開放硬體仍獎勵偏執式工程\" class=\"rounded-xl w-full\" loading=\"lazy\" \u002F>\u003C\u002Ffigure>\n\u003Cp>他的 System\u002F359 也說明同一件事。這台迷你 mainframe 不是博物館複製品，而是借用 IBM mainframe 的 channel I\u002FO、指令風格與 PSW 概念，再把其他部分重新現代化。這裡最重要的不是「像不像」，而是 1 個工程師若能同時設計架構、組譯器、執行環境與 I\u002FO 模型，做出來的就不只是 clone，而是一種對機器應該如何運作的完整主張。\u003C\u002Fp>\u003Ch2>第二個論點\u003C\u002Fh2>\u003Cp>第二個理由是：舊程式碼只有在有人願意重寫時，才會真正變成資產。Zaporozhets 將 QNX 6.4 移植到 RISC-V 的起點，是直接移植，但最後演化成 QRV，一個把 32 位元程式碼庫重構成 64 位元 LP64 系統的專案。這種工作大多數團隊都會避開，因為它慢、風險高、又不夠體面；但也只有這種做法，才能讓老想法在新架構上活下來，而不是把舊限制一起搬過去。\u003C\u002Fp>\u003Cp>更關鍵的是，他不是只做到「能開機」。QRV 後來做到 multi-user login，並在達成目標後完成最終版本。這個順序比移植本身更有說服力，因為很多專案都能 compile，卻很少能跨過那條線，變成一個像 OS 的系統，而不是實驗室樣品。Zaporozhets 證明，耐心加上反覆重寫，確實能把過時原始碼變成新平台。\u003C\u002Fp>\u003Ch2>反方可能怎麼說\u003C\u002Fh2>\u003Cp>最強的反對意見是，這些都只是業餘玩家的表演。多數工程師不\u003Ca href=\"\u002Fnews\u002Fdow-agent-network-military-ai-right-move-zh\">需要\u003C\u002Fa> FPGA PC、迷你 mainframe，或把微核心分叉成兩套；他們需要穩定工具、可預期支援，以及能準時交付的軟體。從這個角度看，Zaporozhets 的作品價值很小：技術漂亮，但孤立，而且看不出大規模採用的路徑。\u003C\u002Fp>\n\u003Cfigure class=\"my-6\">\u003Cimg src=\"https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782906471507-6cit.png\" alt=\"RISC-V 業餘玩家證明了：開放硬體仍獎勵偏執式工程\" class=\"rounded-xl w-full\" loading=\"lazy\" \u002F>\u003C\u002Ffigure>\n\u003Cp>另一個合理批評是，這種成果很難複製。他用 \u003Ca href=\"\u002Ftag\u002Fclaude\">Claude\u003C\u002Fa> 協助，專案跨度又以年計。這讓整個過程看起來不像一套可供團隊複用的方法，而更像一個極度投入、再加上大量自動化輔助的個人執念。如果成果高度依賴某個特別有毅力的人，那就很難說這是產業可直接套用的模式。\u003C\u002Fp>\u003Cp>這些批評都成立，但它們沒有打到重點。這不是每個團隊都該照抄的模板，而是證據：開放硬體與開放系統的進步，仍然主要來自深度好奇心與極廣的技術掌控力。它的價值不在於今天就能大規模採用，而在於它把明天可行的範圍往外推。限制是規模，不是正當性。\u003C\u002Fp>\u003Ch2>你能做什麼\u003C\u002Fh2>\u003Cp>如果你是工程師，不要把硬體、核心、工具鏈當成互不相干的世界來評估平台；如果你是 PM，優先選擇能讓團隊檢視、修改、替換各層而不必經過供應商許可的系統；如果你是創辦人，應該支持那些獎勵整合工作的開放架構，因為下一個真正耐久的平台優勢，會來自仍然能把整台機器做出來的人，而不是只會租用它的人。\u003C\u002Fp>","我認為，開放硬體真正的進展，仍然最常來自像 Yuri Zaporozhets 這種願意端到端掌控整個系統的業餘工程師，而不是只做單點優化的團隊。","www.theregister.com","https:\u002F\u002Fwww.theregister.com\u002Fsoftware\u002F2026\u002F06\u002F26\u002Fone-man-two-kernels-and-a-lot-of-risc-v\u002F5262858",null,"https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782906469131-qew3.png","industry","zh","5040a23c-22d0-47ab-94a5-e10ca77708cb",[17,18,19,20,21,22],"RISC-V","開放硬體","FPGA","業餘工程","系統整合","Yuri Zaporozhets",[24,25,26],"端到端掌控硬體、韌體與軟體，仍是開放硬體最有效的推進方式。","把舊系統重寫到新架構上，比單純移植更能釋放平台價值。","RISC-V 的開放性，讓實驗、替換與重構成為正常工程選項。",0,"2026-07-01T11:47:21.427953+00:00","2026-07-01T11:47:21.405+00:00","62e417cc-8148-4dd3-a625-4c9f3b1526a6",{"tags":32,"relatedLang":35,"relatedPosts":39},[33],{"name":17,"slug":34},"risc-v",{"id":15,"slug":36,"title":37,"language":38},"risc-v-hobbyists-open-hardware-obsession-en","RISC-V hobbyists are proving open hardware still rewards obsession","en",[40,46,52,58,64,70],{"id":41,"slug":42,"title":43,"cover_image":44,"image_url":44,"created_at":45,"category":13},"78862c57-6d3f-4761-89ce-20f3f86246bf","bootdev-go-course-turns-syntax-into-services-zh","Boot.dev 的 Go 課程把語法帶到服務層","https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782908273465-j8m0.png","2026-07-01T12:17:22.638822+00:00",{"id":47,"slug":48,"title":49,"cover_image":50,"image_url":50,"created_at":51,"category":13},"d4c48f57-3c66-4f40-9b06-76ceec529b87","suse-openchip-risc-v-eu-sovereign-stack-zh","SUSE 和 Openchip 把 RISC-V 變成 EU stack","https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782907403535-s085.png","2026-07-01T12:02:56.092615+00:00",{"id":53,"slug":54,"title":55,"cover_image":56,"image_url":56,"created_at":57,"category":13},"a0b99632-c8ec-4590-8549-4f9cbbb48b88","microsoft-build-2026-securing-code-agents-models-zh","Microsoft Build 2026：先管住 AI 再談加速","https:\u002F\u002Fxxdpdyhzhpamafnrdkyq.supabase.co\u002Fstorage\u002Fv1\u002Fobject\u002Fpublic\u002Fcovers\u002Finline-1782903772745-9sqj.png","2026-07-01T11:02:29.280907+00:00",{"id":59,"slug":60,"title":61,"cover_image":62,"image_url":62,"created_at":63,"category":13},"376489b6-f1cf-4e51-94fe-1d6eec955594","5-details-pentagon-agent-network-ai-battle-decisions-zh","5 個細節看懂五角大廈 Agent 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