Difference between pages "Subarches" and "Test"

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{{:Install/Header}}
{{#get_web_data:url=http://build.funtoo.org/index.xml|format=xml|use xpath|data=builds=/subarches/subarch[@name='amd64-bulldozer']/@builds}}
= Funtoo Linux Sub-Architectures =
;Builds: {{#external_value:builds}}
__NOTITLE__
This page provides an overview of Funtoo Linux sub-architectures (also called ''subarches'',) designed for quick and easy reference. While this information is available in other places, such as Wikipedia, it often takes some time to study and cross-reference the various articles to get a good understanding of each type of sub-architecture, and this information generally isn't all collected neatly in one place. That is the purpose of this page. When possible, links to more detailed Wikipedia pages are provided. You are encouraged to help maintain this page as well as the Wikipedia articles referenced here.


== 64-bit Suport (Generic) ==
{{fullurl:News:The Many Builds of Funtoo Linux}}
{{#widget:AddThis}}


=== generic_64 ===
I like the {{f|/etc/make.conf}} file, which can also be referred to as {{f|/etc/portage/make.conf}}. It is a groovy file. Another cool file is {{f|/etc/fstab}}.


The '''generic_64''' subarch is designed to support 64-bit PC-compatible CPUs, such as the [[Wikipedia:AMD_K8|AMD K8-series processors]], which were introduced in late 2003. They were notable as the first processors that supported the [[Wikipedia:X86-64|AMD64 (also called X86-64) 64-bit instruction set]] for PC-compatible systems, which was introduced as a backwards-compatible 64-bit alternative to Intel's IA-64 architecture. Intel followed suit and also began supporting this 64-bit instruction set, which they called "[[Wikipedia:X86-64#Intel_64|Intel 64]]", by releasing X86-64 64-bit compatible CPUs from mid-2004 onwards (See [[Wikipedia:X86-64#Intel_64_implementations|Intel 64 implementations]].)
=== make.conf mentions ===


AMD desktop 64-bit CPUs include the Athlon 64, Athlon 64 FX, Athlon 64 X2, Athlon X2, Turion 64, Turion 64 X2 and Sempron series processors. AMD server processors were released under the Opteron brand and have codenames SledgeHammer, Venus, Troy, Athens, Denmark, Italy, Egypt, Santa Ana and Santa Rosa. All Opterons released through late 2006 were based on the K8 microarchitecture with original X86-64 instructions.
{{#ask: [[Mentions file::make.conf]]
| format=category
}}


== 64-bit AMD Processors ==
{{console|body=
 
# ##i##bluetoothctl
=== amd64-k10 ===
[##g##NEW##!g##] Controller 00:02:72:C9:62:65 antec [default]
 
##bl##[bluetooth]##!bl###power on
The '''amd64-k10''' subarch provides support for the [[Wikipedia:AMD_10h|AMD Family 10h processors]], which were released in late 2007 as a successor to the AMD K8 series processors.
Changing power on succeeded
 
##bl##[bluetooth]##!bl### ##i##agent on
Desktop amd64-k10 CPUs include [[Wikipedia:AMD Phenom|AMD Phenom]], [[Wikipedia:AMD_10h#Phenom_II_Models|AMD Phenom II]] and [[Wikipedia:AMD_10h#Athlon_II_Models|AMD Athlon II]]. Server CPUs include Opterons with codenames Budapest, Barcelona, Suzuka, Shanghai, Istanbul, Lisbon, and Magny-Cours. A full listing of amd64-k10 Opteron models [[Wikipedia:List_of_AMD_Opteron_microprocessors#K10_based_Opterons|can be found here]].
Agent registered
 
##bl##[bluetooth]##!bl### ##i##scan on
=== amd64-bulldozer ===
Discovery started
 
##bl##[bluetooth]##!bl### ##i##devices
The '''amd64-bulldozer''' subarch supports the [[Wikipedia:Bulldozer (microarchitecture)|AMD bulldozer microarchitecture]] CPUs, which were released from late 2011 through the first quarter of 2012 as a replacement for the [[Wikipedia:AMD_10h|K10 microarchitecture]] CPUs.
Device 00:1F:20:3D:1E:75 Logitech K760
Bulldozer desktop CPUs use the [[Wikipedia:Socket_AM3+|AM3+ socket]] and server CPUs use the  [[Wikipedia:Socket_G34|G34 socket]].
##bl##[bluetooth]##!bl### ##i##pair 00:1F:20:3D:1E:75
 
Attempting to pair with 00:1F:20:3D:1E:75
Desktop bulldozer CPUs include the [[Wikipedia:List_of_AMD_FX_microprocessors#.22Zambezi.22_.2832_nm_SOI.29|Zambezi FX-series CPUs]]. Server bulldozer CPUs include Opterons with codenames Zurich (Opteron 3200-series), Valencia (Opteron 4200-series) and Interlagos (Opteron 6200 series). A complete list of Opteron models [[Wikipedia:http://en.wikipedia.org/wiki/Opteron#Opteron_.2832_nm_SOI.29-_First_Generation_Bulldozer_Microarchitecture|can be found here.]].
[##y##CHG##!y##] Device 00:1F:20:3D:1E:75 Connected: yes
 
##r##[agent]##!r## Passkey: 454358
=== amd64-piledriver ===
##r##[agent]##!r## Passkey: ##i##4##!i##54358
 
##r##[agent]##!r## Passkey: ##i##45##!i##4358
The '''amd64-piledriver''' subarch supports the [[Wikipedia:Piledriver (microarchitecture)|AMD Piledriver microarchitecture]] produced by AMD from mid-2012 through 2015, which is the successor to the [[Wikipedia:Bulldozer (microarchitecture)|AMD bulldozer microarchitecture]].
##r##[agent]##!r## Passkey: ##i##454##!i##358
Piledriver CPUs and APUs are available that use the [[Wikipedia:FM2 Socket|FM2 socket]]. Desktop Piledriver CPUs use the [[Wikipedia:Socket_AM3+|AM3+ socket]]. Server Piledriver CPUs use a variety of sockets, including [[Wikipedia:Socket_AM3+|AM3+]], [[Wikipedia:Socket_C32|C32]] and [[Wikipedia:Socket_G34|G34]].
##r##[agent]##!r## Passkey: ##i##4543##!i##58
 
##r##[agent]##!r## Passkey: ##i##45435##!i##8
Desktop piledriver CPU and APUs include FX-series with codename Vishera (FX-8350, FX-8370),  [[Wikipedia:List_of_AMD_accelerated_processing_unit_microprocessors#Virgo:_.22Trinity.22_.282012.2C_32_nm.29|A-series with codename Trinity]] (A6-5400K, A10-5800K) and [[Wikipedia:http://en.wikipedia.org/wiki/List_of_AMD_accelerated_processing_unit_microprocessors#.22Richland.22_.282013.2C_32_nm.29_2|A-series with codename Richland]].
##r##[agent]##!r## Passkey: ##i##454358##!i##
 
[##y##CHG##!y##] Device 00:1F:20:3D:1E:75 Paired: yes
Server piledriver CPUs include Opterons with codenames Delhi (Opteron 3300-series, [[Wikipedia:Socket_AM3+|AM3+]]), Seoul (Opteron 4300-series, [[Wikipedia:Socket_C32|C32]])  and Abu Dhabi (Opteron 6300-series, [[Wikipedia:Socket_G34|G34]]). A full listing of Opteron models [[Wikipedia:Opteron#Opteron_.2832_nm_SOI.29_-_Piledriver_Microarchitecture|is available here]].
Pairing successful
 
[##y##CHG##!y##] Device 00:1F:20:3D:1E:75 Connected: no
Piledriver adds several new instructions over bulldozer, so AMD bulldozer systems cannot run amd64-piledriver-optimized stages. However, this subarch is  instruction-compatible with its successor, the, so amd64-piledriver stages can run on amd64-steamroller systems, and vice versa.
##bl##[bluetooth]##!bl### ##i##connect 00:1F:20:3D:1E:75
 
Attempting to connect to 00:1F:20:3D:1E:75
=== amd64-steamroller ===
[##y##CHG##!y##] Device 00:1F:20:3D:1E:75 Connected: yes
 
Connection successful
The '''amd64-steamroller''' subarch supports the  [[Wikipedia:Steamroller (microarchitecture)|AMD steamroller microarchitecture]], produced from early 2014. It is the successor to the [[Wikipedia:Piledriver (microarchitecture)|AMD Piledriver microarchitecture]].
##bl##[bluetooth]##!bl### ##i##quit
Steamroller APUs are available that use the [[Wikipedia:FM2+ Socket|FM2+ socket]] and  [[Wikipedia:Socket_FP3|FP3 socket]] (mobile.)
[##r##DEL##!r##] Controller 00:02:72:C9:62:65 antec [default]
 
#
Desktop steamroller APUs include the [[Wikipedia:AMD_Accelerated_Processing_Unit#Steamroller_architecture_.282014.29:_Kaveri|A-Series with codename Kaveri]], such as the quad-core AMD A10-7850K APU. Steamroller APUs are also available in mobile versions. Server steamroller APUs will include the codename Berlin APUs, which are expected to be released some time in 2015.
}}
 
Amd64-steamroller subarches are instruction-compatible with amd64-piledriver, but add new instructions over amd64-bulldozer.
 
=== amd64-jaguar ===
 
The '''amd64-jaguar''' (also called AMD Family 16h) subarch supports the  [[Wikipedia:Jaguar (microarchitecture)|AMD jaguar microarchitecture]], which is targeted at low-power devices, including notebooks, tablets and small form-factor desktops and servers. It is perhaps most well-known for being the microarchitecture used for the [[Wikipedia:Playstation 4|Playstation 4]] and [[Wikipedia:Xbox One|Xbox One]], which each use custom 8-core Jaguar APUs.
Socketed Jaguar APUs use the [[Wikipedia:AM1 Socket|AM1 socket]], and  [[Wikipedia:Socket_FT3|FT3 socket]] for mobile devices. G-series [[Wikipedia:System_on_a_chip|"system on a chip" (SoC)]] APUs are available for non-socketed devices such as tablets and embedded system boards.
 
Desktop Jaguar APUs include the [[Wikipedia:List_of_AMD_accelerated_processing_unit_microprocessors#.22Kabini.22.2C_.22Temash.22_.282013.2C_28_nm.29|Kabini A-series APUs and Temash E-series APUs]], such as the Athlon 5150 and 5350 APUs, and Sempron 2650 and 3850.
 
Amd64-jaguar subarches use the MOVBE instruction which is not available on amd64-bulldozer, amd64-piledriver or amd64-steamroller. They are thus not instruction-compatible with any of these subarches.
 
== 64-bit intel Processors ==
* [[Wikipedia:Intel_Core|intel core processors]]
* [[Wikipedia:Comparison_of_Intel_processors|comparison of intel processors]]
 
=== corei7 ===
* [[Wikipedia:List_of_Intel_Core_i7_microprocessors|core i7 processors]]
 
=== core2_64 ===
* [[Wikipedia:Intel_Core_2|core 2]]
 
=== atom_64 ===
* [[Wikipedia:Intel_Atom_(CPU)|atom]]
{{:Install/Footer}}

Revision as of 05:46, January 6, 2015

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Builds

https://www.funtoo.org/News:The_Many_Builds_of_Funtoo_Linux

I like the /etc/make.conf file, which can also be referred to as /etc/portage/make.conf. It is a groovy file. Another cool file is /etc/fstab.

make.conf mentions

{{#ask: Mentions file::make.conf | format=category }}

root # bluetoothctl 
[NEW] Controller 00:02:72:C9:62:65 antec [default]
root ##bl##[bluetooth]##!bl###power on
Changing power on succeeded
root ##bl##[bluetooth]##!bl### agent on
Agent registered
root ##bl##[bluetooth]##!bl### scan on
Discovery started
root ##bl##[bluetooth]##!bl### devices
Device 00:1F:20:3D:1E:75 Logitech K760
root ##bl##[bluetooth]##!bl### pair 00:1F:20:3D:1E:75
Attempting to pair with 00:1F:20:3D:1E:75
[CHG] Device 00:1F:20:3D:1E:75 Connected: yes
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
root ##r##[agent]##!r## Passkey: 454358
[CHG] Device 00:1F:20:3D:1E:75 Paired: yes
Pairing successful
[CHG] Device 00:1F:20:3D:1E:75 Connected: no
root ##bl##[bluetooth]##!bl### connect 00:1F:20:3D:1E:75
Attempting to connect to 00:1F:20:3D:1E:75
[CHG] Device 00:1F:20:3D:1E:75 Connected: yes
Connection successful
root ##bl##[bluetooth]##!bl### quit
[DEL] Controller 00:02:72:C9:62:65 antec [default]
root #