Skip to content

GitLab

  • Menu
Projects Groups Snippets
    • Loading...
  • Help
    • Help
    • Support
    • Community forum
    • Submit feedback
    • Contribute to GitLab
  • Sign in
  • wslda wslda
  • Project information
    • Project information
    • Activity
    • Labels
    • Members
  • Repository
    • Repository
    • Files
    • Commits
    • Branches
    • Tags
    • Contributors
    • Graph
    • Compare
  • Issues 0
    • Issues 0
    • List
    • Boards
    • Service Desk
    • Milestones
  • Merge requests 0
    • Merge requests 0
  • CI/CD
    • CI/CD
    • Pipelines
    • Jobs
    • Schedules
  • Deployments
    • Deployments
    • Environments
    • Releases
  • Monitor
    • Monitor
    • Incidents
  • Packages & Registries
    • Packages & Registries
    • Package Registry
    • Container Registry
    • Infrastructure Registry
  • Analytics
    • Analytics
    • CI/CD
    • Repository
    • Value stream
  • Wiki
    • Wiki
  • Snippets
    • Snippets
  • Activity
  • Graph
  • Create a new issue
  • Jobs
  • Commits
  • Issue Boards
Collapse sidebar
  • wtools
  • wsldawslda
  • Wiki
  • Converting the toolkit to HIP

Converting the toolkit to HIP · Changes

Page history
Update Converting the toolkit to HIP authored Mar 17, 2023 by Gabriel Wlazłowski's avatar Gabriel Wlazłowski
Hide whitespace changes
Inline Side-by-side
Converting-the-toolkit-to-HIP.md
View page @ 1092bf44
**!!! UNDER CONSTRUCTION !!!**
# Hipify the code
To be able to use the toolkit with AMD ROCm you need to first hipify the code.
Use provided script
......@@ -49,4 +47,7 @@ HIPCCFLAGS=-std=c++14 --offload-arch=gfx90a
# LIBRARIES
# You need to link to amdhip64 and hipfft libs
LIBS= -L$(HIP_LIB_PATH) -lamdhip64 -L$(EBROOTHIPFFT)/lib -lhipfft -lm
```
\ No newline at end of file
```
# Example
See for [LUMI supercomputer templates](https://gitlab.fizyka.pw.edu.pl/wtools/wslda/-/tree/public/templates/lumi/td).
\ No newline at end of file
Clone repository
  • API version
  • Automatic interpolations
  • Auxiliary tools
  • Browsing the code
  • Broyden algorithm
  • C and CUDA
  • Campaign of calculations
  • Checking correctness of settings
  • Chemical potentials control
  • Code & Results quality
  • Common failures of static codes
  • Common failures of time dependent codes
  • Computation domain
  • Configuring GPU machine
  • Constraining densities and potentials
View All Pages