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Jean-Paul Chaput 9594476ab6 Improved SRAM output multiplexer, using NAND/NOR.
* New: In cumulus/plugins/sram_256x32.py, build the output mux using a
    NAND2/NOR2 binary tree instead of mux2/mux3. Use more, but much
    smaller cells. The reduction of wirelength (from Yosys) goes
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      Uses a specially placed tree to minimize wire length.
* New: In cumulus/plugins/sram.py, extend StdCellConf to convert names
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Seabreeze Seabreeze : nothing new, just some typos fixed 2022-08-23 14:35:55 +02:00
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coloquinte Adapt Nix code to Python 3 switch. 2021-10-26 20:10:59 +00:00
crlcore Save VHDL model only once in the rsave Cumulus plugin. 2022-05-21 13:02:58 +02:00
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equinox Fix library linking problem for gcc 9 and above (Ubuntu 20/Debian 11). 2021-11-22 00:05:48 +01:00
etesian Computation of the relative area used by the registers in Etesian. 2022-06-05 20:36:41 +02:00
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katabatic Allow the detailed routing to be build from non-bottom P&R layers. 2021-12-11 19:51:24 +01:00
katana Fix a crash in PowerRails when a terminal is not connected. 2022-10-14 10:10:43 +02:00
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nix nix: Remove unnecessary `ln` from libresoc test 2021-10-26 23:00:13 +00:00
oroshi Port to Python3 capacitors & resistors generators. 2022-07-13 11:20:55 +02:00
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README.rst

.. -*- Mode: rst -*-


===============
Coriolis README
===============

Coriolis is a free database, placement tool and routing tool for VLSI design.


Purpose
=======

Coriolis provides several tools to perform the layout of VLSI circuits.  Its
main components are the Hurricane database, the Etesian placer and the Katana
router, but other tools can use the Hurricane database and the parsers
provided.

The user interface <cgt> is the prefered way to use Coriolis, but all
Coriolis tools are Python modules and thus scriptable.


Documentation
=============

The complete documentation is available here, both in pdf & html:

   ./documentation/output/html
   ./documentation/UsersGuide/UsersGuide.pdf

The documentation of the latest *stable* version is also
available online. It may be quite outdated from the *devel*
version.

    https://www-soc.lip6.fr/sesi-docs/coriolis2-docs/coriolis2/en/latex/users-guide/UsersGuide.pdf


Building Coriolis
=================

To build Coriolis, ensure the following prerequisites are met:

* Python 3.
* cmake.
* boost.
* bison & flex.
* Qt 4 or 5.
* libxml2.
* RapidJSON
* A C++11 compliant compiler.

The build system relies on a fixed directory tree from the root
of the user currently building it. Thus first step is to get a clone of
the repository in the right place. Proceed as follow: ::

   ego@home:~$ mkdir -p ~/coriolis-2.x/src/support
   ego@home:~$ cd ~/coriolis-2.x/src/support
   ego@home:~$ git clone http://github.com/miloyip/rapidjson
   ego@home:~$ git checkout ec322005072076ef53984462fb4a1075c27c7dfd
   ego@home:~$ cd ~/coriolis-2.x/src
   ego@home:src$ git clone https://gitlab.lip6.fr/vlsi-eda/coriolis.git
   ego@home:src$ cd coriolis

Then, build the tool: ::

    ego@home:coriolis$ make install

If you encounter issues, please consult SUPPORT.rst for tips.
Coriolis gets installed at the root of the following tree: ::

    ~/coriolis-2.x/<OS>.<DISTRIB>/Release.Shared/install/

Where ``<OS>`` is the name of your operating system and ``<DISTRIB>`` your
distribution.


Using Coriolis
==============

The Coriolis main interface can be launched with the command: ::

    ego@home:~: ~/coriolis-2.x/<OS>.<DISTRIB>/Release.Shared/install/bin/coriolis

The ``coriolis`` script detects its location and setups the UNIX
environment appropriately, then lauches ``cgt`` (or *any* command, with the
``--run=<COMMAND>`` option).

Conversely, you can setup the current shell environement for Coriolis by 
using the helper ``coriolisEnv.py``, then run any Coriolis tool: ::

    ego@home:~$ eval `~/coriolis-2.x/src/coriolis/bootstrap/coriolisEnv.py`
    ego@home:~$ cgt -V