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@almas
almas / ubuntu-on-mbp-a1707.md
Last active July 18, 2025 00:17 — forked from rob-hills/ubuntu-22.04-mbp-a1707.md
Ubuntu LTS on MacBook Pro 2017 (A1707, MBP 14,3)(T1 chip)

Summary

Notes to install Ubuntu 22.04.4LTS (Upgraded to 24.04LTS) up and running on my 2017 MacBook Pro 15 inch (MacBookPro14,3).

Now everything except the TouchID (Fingerprint), Suspend and Hibernation seems to work for me.

About Ubuntu 24.04LTS: I tried to install Ubuntu 24.04 and didn't have success. There was a crash issue during installation. https://bugs.launchpad.net/subiquity/+bug/2065310 But I installed 22.04 and upgraded it to the 24.04LTS later and it working same as 22.04.4.

Useful References (not mentioned in the text)

@scottjacobsen
scottjacobsen / git+clone+ssh+agent+forward+sudo
Created December 14, 2012 00:07
Git clone using ssh agent forwarding and sudo
SSH agent forwarding is great. It allows you to ssh from one server to
another all the while using the ssh-agent running on your local
workstation. The benefit is you don't need to generate ssh key pairs
on the servers you are connecting to in order to hop around.
When you ssh to a remote machine the remote machine talks to your
local ssh-agent through the socket referenced by the SSH_AUTH_SOCK
environment variable.
So you the remote server you can do something like:
@hellerbarde
hellerbarde / latency.markdown
Created May 31, 2012 13:16 — forked from jboner/latency.txt
Latency numbers every programmer should know

Latency numbers every programmer should know

L1 cache reference ......................... 0.5 ns
Branch mispredict ............................ 5 ns
L2 cache reference ........................... 7 ns
Mutex lock/unlock ........................... 25 ns
Main memory reference ...................... 100 ns             
Compress 1K bytes with Zippy ............. 3,000 ns  =   3 µs
Send 2K bytes over 1 Gbps network ....... 20,000 ns  =  20 µs
SSD random read ........................ 150,000 ns  = 150 µs

Read 1 MB sequentially from memory ..... 250,000 ns = 250 µs