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#spacemitk1 — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #spacemitk1, aggregated by home.social.

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  1. Lilbits: A RISC-V router (crowdfunding), an E Ink color dev kit, and Windows 11 taskbar customization

    As promised, Microsoft is bringing back the ability to reposition the Windows taskbar… although you can’t actually do it just yet unless your a member of the Windows 11 Insider Preview program running an experimental build of Windows 11. More options for customizing the Start Menu are also rolling out to Insiders.

    In other recent tech news from around the web, a crowdfunding project is […]

    #crowdfunding #eInk #eInkDevKit #eInkSpectra6 #geekomA9Max #googlebook #lilbits #m5paperColor #microsoft #miniPc #pinepower #pinepowerV2 #riscV #riscVRouter #spacemitK1 #start9 #taskbar #windows #windows11 Read more: liliputing.com/lilbits-a-risc-
  2. Lilbits: A RISC-V router (crowdfunding), an E Ink color dev kit, and Windows 11 taskbar customization

    As promised, Microsoft is bringing back the ability to reposition the Windows taskbar… although you can’t actually do it just yet unless your a member of the Windows 11 Insider Preview program running an experimental build of Windows 11. More options for customizing the Start Menu are also rolling out to Insiders.

    In other recent tech news from around the web, a crowdfunding project is […]

    #crowdfunding #eInk #eInkDevKit #eInkSpectra6 #geekomA9Max #googlebook #lilbits #m5paperColor #microsoft #miniPc #pinepower #pinepowerV2 #riscV #riscVRouter #spacemitK1 #start9 #taskbar #windows #windows11 Read more: liliputing.com/lilbits-a-risc-
  3. Lilbits: A RISC-V router (crowdfunding), an E Ink color dev kit, and Windows 11 taskbar customization

    As promised, Microsoft is bringing back the ability to reposition the Windows taskbar… although you can’t actually do it just yet unless your a member of the Windows 11 Insider Preview program running an experimental build of Windows 11. More options for customizing the Start Menu are also rolling out to Insiders.

    In other recent tech news from around the web, a crowdfunding project is […]

    #crowdfunding #eInk #eInkDevKit #eInkSpectra6 #geekomA9Max #googlebook #lilbits #m5paperColor #microsoft #miniPc #pinepower #pinepowerV2 #riscV #riscVRouter #spacemitK1 #start9 #taskbar #windows #windows11 Read more: liliputing.com/lilbits-a-risc-
  4. Lilbits: A RISC-V router (crowdfunding), an E Ink color dev kit, and Windows 11 taskbar customization

    As promised, Microsoft is bringing back the ability to reposition the Windows taskbar… although you can’t actually do it just yet unless your a member of the Windows 11 Insider Preview program running an experimental build of Windows 11. More options for customizing the Start Menu are also rolling out to Insiders.

    In other recent tech news from around the web, a crowdfunding project is […]

    #crowdfunding #eInk #eInkDevKit #eInkSpectra6 #geekomA9Max #googlebook #lilbits #m5paperColor #microsoft #miniPc #pinepower #pinepowerV2 #riscV #riscVRouter #spacemitK1 #start9 #taskbar #windows #windows11 Read more: liliputing.com/lilbits-a-risc-
  5. Canonical and SpacemiT team up for Ubuntu on SpacemiT K1 and K3 RISC-V chips

    Chinese RISC-V chip maker SpacemiT is partnering with Canonical to bring Ubuntu to computers powered by two of the company’s processors.

    The Spacemit K1 is an 8-core RISC-V processor that’s been around for a little while, but the SpacemiT K3 is a newer, higher-performance chip that’s one of the first to comply with the new RVA23 standard.

    That’s important because starting with Ubuntu 25.10, […]

    #chips #riscV #rva23 #spacemitK1 #spacemitK3 #ubuntu Read more: liliputing.com/canonical-and-s
  6. Canonical and SpacemiT team up for Ubuntu on SpacemiT K1 and K3 RISC-V chips

    Chinese RISC-V chip maker SpacemiT is partnering with Canonical to bring Ubuntu to computers powered by two of the company’s processors.

    The Spacemit K1 is an 8-core RISC-V processor that’s been around for a little while, but the SpacemiT K3 is a newer, higher-performance chip that’s one of the first to comply with the new RVA23 standard.

    That’s important because starting with Ubuntu 25.10, […]

    #chips #riscV #rva23 #spacemitK1 #spacemitK3 #ubuntu Read more: liliputing.com/canonical-and-s
  7. Canonical and SpacemiT team up for Ubuntu on SpacemiT K1 and K3 RISC-V chips

    Chinese RISC-V chip maker SpacemiT is partnering with Canonical to bring Ubuntu to computers powered by two of the company’s processors.

    The Spacemit K1 is an 8-core RISC-V processor that’s been around for a little while, but the SpacemiT K3 is a newer, higher-performance chip that’s one of the first to comply with the new RVA23 standard.

    That’s important because starting with Ubuntu 25.10, […]

    #chips #riscV #rva23 #spacemitK1 #spacemitK3 #ubuntu Read more: liliputing.com/canonical-and-s
  8. Canonical and SpacemiT team up for Ubuntu on SpacemiT K1 and K3 RISC-V chips

    Chinese RISC-V chip maker SpacemiT is partnering with Canonical to bring Ubuntu to computers powered by two of the company’s processors.

    The Spacemit K1 is an 8-core RISC-V processor that’s been around for a little while, but the SpacemiT K3 is a newer, higher-performance chip that’s one of the first to comply with the new RVA23 standard.

    That’s important because starting with Ubuntu 25.10, […]

    #chips #riscV #rva23 #spacemitK1 #spacemitK3 #ubuntu Read more: liliputing.com/canonical-and-s
  9. Bit-Brick Cluster K1 lets you build a 32-core RISC-V computer (by clustering 4 SpacemiT K1 boards)

    The SpacemiT K1 is an 8-core RISC-V processor that has been tapped for several single-board computers, laptops, and tablets in the past two years. It’s not exactly the fastest processor available, with performance about on par with what you’d expect from an Arm Cortex-A55 chip. But you know what’s faster than an 8-core RISC-V processor? A cluster board that lets you leverage four of them at […]

    #bitBrickClusterK1 #clusterBoard #clusterComputering #riscV #spacemitK1 #ssomK1 Read more: liliputing.com/bit-brick-clust
  10. Bit-Brick Cluster K1 lets you build a 32-core RISC-V computer (by clustering 4 SpacemiT K1 boards)

    The SpacemiT K1 is an 8-core RISC-V processor that has been tapped for several single-board computers, laptops, and tablets in the past two years. It’s not exactly the fastest processor available, with performance about on par with what you’d expect from an Arm Cortex-A55 chip. But you know what’s faster than an 8-core RISC-V processor? A cluster board that lets you leverage four of them at […]

    #bitBrickClusterK1 #clusterBoard #clusterComputering #riscV #spacemitK1 #ssomK1 Read more: liliputing.com/bit-brick-clust
  11. Bit-Brick Cluster K1 lets you build a 32-core RISC-V computer (by clustering 4 SpacemiT K1 boards)

    The SpacemiT K1 is an 8-core RISC-V processor that has been tapped for several single-board computers, laptops, and tablets in the past two years. It’s not exactly the fastest processor available, with performance about on par with what you’d expect from an Arm Cortex-A55 chip. But you know what’s faster than an 8-core RISC-V processor? A cluster board that lets you leverage four of them at […]

    #bitBrickClusterK1 #clusterBoard #clusterComputering #riscV #spacemitK1 #ssomK1 Read more: liliputing.com/bit-brick-clust
  12. Bit-Brick Cluster K1 lets you build a 32-core RISC-V computer (by clustering 4 SpacemiT K1 boards)

    The SpacemiT K1 is an 8-core RISC-V processor that has been tapped for several single-board computers, laptops, and tablets in the past two years. It’s not exactly the fastest processor available, with performance about on par with what you’d expect from an Arm Cortex-A55 chip. But you know what’s faster than an 8-core RISC-V processor? A cluster board that lets you leverage four of them at […]

    #bitBrickClusterK1 #clusterBoard #clusterComputering #riscV #spacemitK1 #ssomK1 Read more: liliputing.com/bit-brick-clust
  13. Update: The BPI-CM6 compute module with a SpacemiT K1 RISC-V processor is now available for $67 + shipping (or $84 for a bundle that includes a carrier board). liliputing.com/banana-pi-bpi-c #RISCV #SpaceMiTK1 #BananaPi #ComputeModule #BananaPiBPI-CM6

  14. Update: The BPI-CM6 compute module with a SpacemiT K1 RISC-V processor is now available for $67 + shipping (or $84 for a bundle that includes a carrier board). liliputing.com/banana-pi-bpi-c -CM6

  15. Update: The BPI-CM6 compute module with a SpacemiT K1 RISC-V processor is now available for $67 + shipping (or $84 for a bundle that includes a carrier board). liliputing.com/banana-pi-bpi-c #RISCV #SpaceMiTK1 #BananaPi #ComputeModule #BananaPiBPI-CM6

  16. Update: The BPI-CM6 compute module with a SpacemiT K1 RISC-V processor is now available for $67 + shipping (or $84 for a bundle that includes a carrier board). liliputing.com/banana-pi-bpi-c #RISCV #SpaceMiTK1 #BananaPi #ComputeModule #BananaPiBPI-CM6

  17. Update: The BPI-CM6 compute module with a SpacemiT K1 RISC-V processor is now available for $67 + shipping (or $84 for a bundle that includes a carrier board). liliputing.com/banana-pi-bpi-c #RISCV #SpaceMiTK1 #BananaPi #ComputeModule #BananaPiBPI-CM6

  18. Banana Pi BPI-CM6 is a compute module with a SpacemiT K1 RISC-V processor

    The Banana Pi BPI-CM6 is a computer-on-a-module that’s the same size and shape as a Raspberry Pi CM4 and even uses the same board-to-board connectors. But while Raspberry Pi’s compute module has an ARM-based processor, the BPI-CM6 is powered by a SpacemiT K1 octa-core RISC-V chip.

    Basically it has the same capabilities as the Banana Pi BPI-F3 single-board computer that launched a year ago but […]

    #bananaPi #bananaPiBpiCm6 #bpiCm6 #riscV #spacemit #spacemitK1

    Read more: liliputing.com/banana-pi-bpi-c

  19. Banana Pi BPI-CM6 is a compute module with a SpacemiT K1 RISC-V processor

    The Banana Pi BPI-CM6 is a computer-on-a-module that’s the same size and shape as a Raspberry Pi CM4 and even uses the same board-to-board connectors. But while Raspberry Pi’s compute module has an ARM-based processor, the BPI-CM6 is powered by a SpacemiT K1 octa-core RISC-V chip.

    Basically it has the same capabilities as the Banana Pi BPI-F3 single-board computer that launched a year ago but […]

    #bananaPi #bananaPiBpiCm6 #bpiCm6 #riscV #spacemit #spacemitK1

    Read more: liliputing.com/banana-pi-bpi-c

  20. Banana Pi BPI-CM6 is a compute module with a SpacemiT K1 RISC-V processor

    The Banana Pi BPI-CM6 is a computer-on-a-module that’s the same size and shape as a Raspberry Pi CM4 and even uses the same board-to-board connectors. But while Raspberry Pi’s compute module has an ARM-based processor, the BPI-CM6 is powered by a SpacemiT K1 octa-core RISC-V chip.

    Basically it has the same capabilities as the Banana Pi BPI-F3 single-board computer that launched a year ago but […]

    #bananaPi #bananaPiBpiCm6 #bpiCm6 #riscV #spacemit #spacemitK1

    Read more: liliputing.com/banana-pi-bpi-c

  21. Banana Pi BPI-CM6 is a compute module with a SpacemiT K1 RISC-V processor

    The Banana Pi BPI-CM6 is a computer-on-a-module that’s the same size and shape as a Raspberry Pi CM4 and even uses the same board-to-board connectors. But while Raspberry Pi’s compute module has an ARM-based processor, the BPI-CM6 is powered by a SpacemiT K1 octa-core RISC-V chip.

    Basically it has the same capabilities as the Banana Pi BPI-F3 single-board computer that launched a year ago but […]

    #bananaPi #bananaPiBpiCm6 #bpiCm6 #riscV #spacemit #spacemitK1

    Read more: liliputing.com/banana-pi-bpi-c

  22. 🧵 2/n

    At last I got that final but important piece for my RISC-V SBC ( @bananapi BPI-F3): the cooler. Now I can finally start compiling some big chunks of code like Qt and KDE software. I do have distributed cross-compiling set up using Icecream, but apparently you can't prevent it scheduling compile jobs locally on SBC and only send them to more powerful computers. Let the fun begin…

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  23. 🧵 2/n

    At last I got that final but important piece for my RISC-V SBC ( @bananapi BPI-F3): the cooler. Now I can finally start compiling some big chunks of code like Qt and KDE software. I do have distributed cross-compiling set up using Icecream, but apparently you can't prevent it scheduling compile jobs locally on SBC and only send them to more powerful computers. Let the fun begin…

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  24. 🧵 2/n

    At last I got that final but important piece for my RISC-V SBC ( @bananapi BPI-F3): the cooler. Now I can finally start compiling some big chunks of code like Qt and KDE software. I do have distributed cross-compiling set up using Icecream, but apparently you can't prevent it scheduling compile jobs locally on SBC and only send them to more powerful computers. Let the fun begin…

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  25. 🧵 2/n

    At last I got that final but important piece for my RISC-V SBC ( @bananapi BPI-F3): the cooler. Now I can finally start compiling some big chunks of code like Qt and KDE software. I do have distributed cross-compiling set up using Icecream, but apparently you can't prevent it scheduling compile jobs locally on SBC and only send them to more powerful computers. Let the fun begin…

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  26. 🧵 2/n

    At last I got that final but important piece for my RISC-V SBC ( @bananapi BPI-F3): the cooler. Now I can finally start compiling some big chunks of code like Qt and KDE software. I do have distributed cross-compiling set up using Icecream, but apparently you can't prevent it scheduling compile jobs locally on SBC and only send them to more powerful computers. Let the fun begin…

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  27. 🧵 1/n

    Just got some RISC-V hardware goodies to play with in the following days/months: BPI-F3 SBC by @bananapi with SpacemiT K1 8-core CPU supporting RVV 1.0 vector extensions. Hooked it up to the TV, booted it for the first time from a microSD with the default Bianbu GNU/Linux distro, so far so good. Will try to get Gentoo or openSUSE Tumbleweed with KDE Plasma/software running next.

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  28. 🧵 1/n

    Just got some RISC-V hardware goodies to play with in the following days/months: BPI-F3 SBC by @bananapi with SpacemiT K1 8-core CPU supporting RVV 1.0 vector extensions. Hooked it up to the TV, booted it for the first time from a microSD with the default Bianbu GNU/Linux distro, so far so good. Will try to get Gentoo or openSUSE Tumbleweed with KDE Plasma/software running next.

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  29. 🧵 1/n

    Just got some RISC-V hardware goodies to play with in the following days/months: BPI-F3 SBC by @bananapi with SpacemiT K1 8-core CPU supporting RVV 1.0 vector extensions. Hooked it up to the TV, booted it for the first time from a microSD with the default Bianbu GNU/Linux distro, so far so good. Will try to get Gentoo or openSUSE Tumbleweed with KDE Plasma/software running next.

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  30. 🧵 1/n

    Just got some RISC-V hardware goodies to play with in the following days/months: BPI-F3 SBC by @bananapi with SpacemiT K1 8-core CPU supporting RVV 1.0 vector extensions. Hooked it up to the TV, booted it for the first time from a microSD with the default Bianbu GNU/Linux distro, so far so good. Will try to get Gentoo or openSUSE Tumbleweed with KDE Plasma/software running next.

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  31. 🧵 1/n

    Just got some RISC-V hardware goodies to play with in the following days/months: BPI-F3 SBC by @bananapi with SpacemiT K1 8-core CPU supporting RVV 1.0 vector extensions. Hooked it up to the TV, booted it for the first time from a microSD with the default Bianbu GNU/Linux distro, so far so good. Will try to get Gentoo or openSUSE Tumbleweed with KDE Plasma/software running next.

    #RISCV #RISC_V #BananaPi #BPIF3 #BPI_F3 #SBC #SingleBoardComputer #SpacemiTK1 #SpacemiT #RVV #Bianbu #Linux

  32. @haui

    I couldn't resist to have a quick look into the device tree file(s) in the kernel sources of Bianbu Linux:

    see here: gitee.com/bianbu-linux/linux-6

    On a quick look (didn't check entry by entry) the 'riscv,isa-extensions' entries per cpu seems to match your table.

    Anyway as I said before, I think this does not need to reflect the real capabilities of the SOC too.

    #riscv #spacemit #spacemitk1 #spacemitx60 #devicetree #linux #bananapif3 #bpif3

  33. @haui

    I couldn't resist to have a quick look into the device tree file(s) in the kernel sources of Bianbu Linux:

    see here: gitee.com/bianbu-linux/linux-6

    On a quick look (didn't check entry by entry) the 'riscv,isa-extensions' entries per cpu seems to match your table.

    Anyway as I said before, I think this does not need to reflect the real capabilities of the SOC too.

  34. @haui

    I couldn't resist to have a quick look into the device tree file(s) in the kernel sources of Bianbu Linux:

    see here: gitee.com/bianbu-linux/linux-6

    On a quick look (didn't check entry by entry) the 'riscv,isa-extensions' entries per cpu seems to match your table.

    Anyway as I said before, I think this does not need to reflect the real capabilities of the SOC too.

    #riscv #spacemit #spacemitk1 #spacemitx60 #devicetree #linux #bananapif3 #bpif3

  35. @haui

    I couldn't resist to have a quick look into the device tree file(s) in the kernel sources of Bianbu Linux:

    see here: gitee.com/bianbu-linux/linux-6

    On a quick look (didn't check entry by entry) the 'riscv,isa-extensions' entries per cpu seems to match your table.

    Anyway as I said before, I think this does not need to reflect the real capabilities of the SOC too.

    #riscv #spacemit #spacemitk1 #spacemitx60 #devicetree #linux #bananapif3 #bpif3

  36. @haui

    Regarding this I found an article from RedHat:

    see research.redhat.com/blog/artic

    According to the article the DeviceTree can be used to get that information, but since that's just a configuration describing the hardware it could be incomplete too.

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #devicetree

  37. @haui

    Regarding this I found an article from RedHat:

    see research.redhat.com/blog/artic

    According to the article the DeviceTree can be used to get that information, but since that's just a configuration describing the hardware it could be incomplete too.

  38. @haui

    Regarding this I found an article from RedHat:

    see research.redhat.com/blog/artic

    According to the article the DeviceTree can be used to get that information, but since that's just a configuration describing the hardware it could be incomplete too.

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #devicetree

  39. @haui

    Regarding this I found an article from RedHat:

    see research.redhat.com/blog/artic

    According to the article the DeviceTree can be used to get that information, but since that's just a configuration describing the hardware it could be incomplete too.

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #devicetree

  40. @haui

    I do not think the SOC is missing those extensions.

    See here: kernel.org/doc/html/v6.12-rc4/

    According to the kernel documentation about isa lines in /proc/cpuinfo:

    "... the absence of an extension in these lines does not necessarily mean the hardware does not support that feature. The running kernel may not recognize the extension, or may have deliberately removed it from the listing."

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #kernel

  41. @haui

    I do not think the SOC is missing those extensions.

    See here: kernel.org/doc/html/v6.12-rc4/

    According to the kernel documentation about isa lines in /proc/cpuinfo:

    "... the absence of an extension in these lines does not necessarily mean the hardware does not support that feature. The running kernel may not recognize the extension, or may have deliberately removed it from the listing."

  42. @haui

    I do not think the SOC is missing those extensions.

    See here: kernel.org/doc/html/v6.12-rc4/

    According to the kernel documentation about isa lines in /proc/cpuinfo:

    "... the absence of an extension in these lines does not necessarily mean the hardware does not support that feature. The running kernel may not recognize the extension, or may have deliberately removed it from the listing."

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #kernel

  43. @haui

    I do not think the SOC is missing those extensions.

    See here: kernel.org/doc/html/v6.12-rc4/

    According to the kernel documentation about isa lines in /proc/cpuinfo:

    "... the absence of an extension in these lines does not necessarily mean the hardware does not support that feature. The running kernel may not recognize the extension, or may have deliberately removed it from the listing."

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #kernel

  44. @haui

    I do not think the SOC is missing those extensions.

    See here: kernel.org/doc/html/v6.12-rc4/

    According to the kernel documentation about isa lines in /proc/cpuinfo:

    "... the absence of an extension in these lines does not necessarily mean the hardware does not support that feature. The running kernel may not recognize the extension, or may have deliberately removed it from the listing."

    #riscv #spacemit #spacemitk1 #bananapif3 #bpif3 #linux #kernel