Commit Graph

32 Commits

Author SHA1 Message Date
Paolo Tosco
c08ea49bda - enable building DLLs on Windows (#1861)
* - enable building DLLs on Windows

* - export.h and test.h are now auto-generated by CMake
2018-05-16 08:42:41 +02:00
Greg Landrum
108d84ab1e Switch from boost::thread to std::thread (#1745)
* boost::thread mostly gone... still need to get rid of once
everything compiles

* replace boost::call_once

* remove link-time dependency on boost::thread

* first pass at using async

* switch to using async everywhere
2018-02-22 03:43:07 +01:00
Paolo Tosco
995db8c18f Addresses GitHub #1688 (#1694)
* Addresses GitHub #1688

* - Addresses GitHub #1688 using a generic Python container rather than a Python list
2017-12-30 07:39:17 +00:00
Greg Landrum
f94e277856 another pass of clang modernize 2017-10-12 06:35:51 +02:00
Greg Landrum
87786c08b5 Merge branch 'master' into modern_cxx
# Conflicts:
#	.travis.yml
#	Code/GraphMol/FileParsers/MolFileParser.cpp
#	Code/GraphMol/FileParsers/MolFileStereochem.cpp
#	Code/GraphMol/ForceFieldHelpers/UFF/testUFFHelpers.cpp
#	Code/GraphMol/MolAlign/testMolAlign.cpp
#	Code/GraphMol/MolDraw2D/MolDraw2D.cpp
#	Code/GraphMol/MolDraw2D/Wrap/rdMolDraw2D.cpp
#	Code/GraphMol/QueryOps.cpp
#	Code/GraphMol/ROMol.cpp
#	Code/GraphMol/SmilesParse/test.cpp
#	Code/GraphMol/Trajectory/Trajectory.cpp
#	Code/GraphMol/Wrap/Atom.cpp
#	Code/GraphMol/Wrap/Bond.cpp
#	Code/GraphMol/new_canon.cpp
#	Code/RDGeneral/testDict.cpp
#	Code/SimDivPickers/Wrap/MaxMinPicker.cpp
2017-10-05 05:58:38 +02:00
Brian Kelley
7488840ac4 Fix/urange check (#1506)
* Fixes atom documentation

* Fixes #1461

This is a complicated one.  Basically URANGE_CHECK when
used on unsigned integers has a problem when the size of
the range it’s checking is 0.  The standard operations is
to check

URANGE(num, size-1)

Which (for unsigned integers) obviously rolls over.

This fixes all usage cases to be

URANGE(num+1, size)

And fixes the bugs found.  (addBond and the mmff tests)

* Fixes #1461 - Updates URANGE_CHECK to be 0<=x<hi
2017-09-11 21:17:33 +02:00
Greg Landrum
7c0bb0b743 clang-tidy output 2017-04-22 17:09:24 +02:00
Paolo Tosco
72066affe9 - Optimization of UFF and MMFF forcefields (#1218)
* - optimization to UFF and MMFF forcefields

* - further optimizations (memset, factoring unnecessary in-loop
  initialization out of the loop, replacing if clause with pre-increment)

* - fixed a couple of stylistic glitches

* - the torsionSmarts parameter in addTorsions() is now a const std::string&

* - implemented the DefaultTorsionBondSmarts singleton using boost::call_once()
2017-01-04 08:33:34 +01:00
Paolo Tosco
e4a9df4c89 - fixed a bug in getUFFAngleBendParams() 2016-04-08 00:07:00 +01:00
Greg Landrum
e08e0d16d8 first pass, using google style 2015-11-14 14:58:11 +01:00
Brian Kelley
210f2951e0 Silences warnings in tests 2015-10-18 21:20:11 -04:00
Brian Kelley
a146c3826a Remove unused variables/functions and register keyword 2015-10-18 10:01:00 -04:00
Greg Landrum
d76e2054c2 Fixes #613 2015-09-16 04:35:39 +02:00
Greg Landrum
49cada6e46 First pass at #586 2015-09-04 11:09:57 +02:00
Nadine Schneider
0132cc72e9 Merge branch 'newCanon' into master3
Conflicts:
	Code/GraphMol/SmilesParse/test.cpp
2015-04-10 10:25:47 +02:00
Nadine Schneider
5d963846b8 merge 2015-04-10 09:44:18 +02:00
Greg Landrum
8c3d698472 remove some compiler warnings 2015-03-22 18:13:58 +01:00
Greg Landrum
d0d0bbf495 fix a problem with the multi-threading
add more tests.
2015-03-10 06:16:58 +01:00
Greg Landrum
7d115c5c3a initial pass at supporting multi-threaded minimization. This may not be where we want to land, but it does seem to work 2015-03-10 04:10:02 +01:00
Greg Landrum
ca5c77cc50 add a UFFOptimizeMoleculeConfs() method 2015-03-09 07:06:47 +01:00
Greg Landrum
f41ea05edf also return energy from UFFOptimizeMolecule() 2015-03-09 06:20:15 +01:00
Greg Landrum
35aa4d0de2 add UFFOptimizeMolecule() to C++ API 2015-03-09 06:09:59 +01:00
Greg Landrum
2d9f809770 fix some broken tests; pyDistGeom is still failing 2015-01-23 06:43:12 -05:00
Brian Kelley
95a92282d1 Dictionary access is saniztized and optimized.
o rdkit gains a RDKit::common_properties namespace that contains common string value properties

 o Dict.h and below gain getPropIfPresent that attempts to retrieve a property and returns
  true/false on success or failure.  This is used to optimize access.

 o rdkit learns how to pass property keys by reference, not value.

A new namespace has been added to RDKit, common_properties
that contains the std::string values for commonly used
properties.  This helps to avoid typos in string values
but also avoids a creation of std::strings from character
values.  All accessors (has/get/clear and getPropIfPresent) now pass
the key by reference.

Additionally, getPropIfPresent removes the double lookup
of hasProp/getProp which can be a significant speedup
in the smiles and smarts parsers (10-20%)
2015-01-15 12:23:29 -05:00
Greg Landrum
fd127bb10e add missed include file 2014-11-17 08:27:05 +01:00
Greg Landrum
6c373ef11f - added C++ and Python helpers to retrieve force-field parameters
(i.e., equilibrium distances/angles and force constants) from
  UFF and MMFF in response to two requests recently appeared
  on the RDKit-discuss mailing list:
  http://sourceforge.net/p/rdkit/mailman/message/32953737/
  http://sourceforge.net/p/rdkit/mailman/message/32880156/
- did some clean up on the MMFF code
- NB there are two ABI changes:
  1) StretchBendContrib(ForceField *owner,
       const unsigned int idx1, const unsigned int idx2, const unsigned int idx3,
       const MMFFStbn *mmffStbnParams, const MMFFAngle *mmffAngleParams,
       const MMFFBond *mmffBondParams1, const MMFFBond *mmffBondParams2);
     previously was:
     StretchBendContrib(ForceField *owner,
       const unsigned int idx1, const unsigned int idx2, const unsigned int idx3,
       const std::pair<bool, const MMFFStbn *> mmffStbnParams,
       const MMFFAngle *mmffAngleParams, const MMFFBond *mmffBondParams1,
       const MMFFBond *mmffBondParams2);
  2) std::pair<double, double> calcStbnForceConstants(const MMFFStbn *mmffStbnParams);
     previously was:
     std::pair<double, double> calcStbnForceConstants
       (const std::pair<bool, const MMFFStbn *> mmffStbnParams);
  The two changes are NOT mandatory - however, both the StretchBendContrib constructor
  and calcStbnForceConstants(), though public, are basically "internal" method that
  most likely no-one has ever invoked. Given that the current API is MUCH better
  and cleaner, I would really advise for the new version.
2014-11-17 05:51:20 +01:00
Greg Landrum
6f08c4e4d7 Test multi-thread safety for UFF and MMFF94. Both pass
Fixes #160
2013-11-20 06:42:27 +01:00
Greg Landrum
c95d57aa54 add in-place form of addHs() 2013-10-04 07:58:53 +02:00
ptosco
3646270a49 - Implemented a hack to improve the UFF-generated geometries of 3- and
4-membered rings containing sp2 atoms. The hack consists in
  altering on-the-fly the theta0 equilibrium angle, depending on
  ring size and collocation of the two edges of the angle (i.e.,
  both edges inside the ring or one inside and one outside)
- Added a relevant test in
  Code/GraphMol/ForceFieldHelpers/UFF/testUFFHelpers.cpp
2013-09-24 14:45:08 +02:00
Greg Landrum
2efd05a7e3 Fixes #105 2013-09-23 01:38:14 -04:00
ptosco
b1acab59b0 - I have made MMFF atom typing more robust since I realized that
incorrect typing might arise when hydrogens were not added after
  generating 3D coordinates from SMILES strings; now all 761 test molecules
  are correctly typed no matter whether hydrogens are explicit or implicit

- MMFF test suite: I have cut down to the bare essential the
  MMFF94/MMFF94s reference log files, but their size could be reduced only
  by about 30%. It could have been reduced more converting multiple spaces
  into a tab, but the MMFF94 file (the larger one) would still be around
  11 MB, and human readability would be greatly impaired. Hence I decided
  to keep the spaces and gzip the reference logs, which reduces their
  combined size to ~ 3.5 MB, which I think is fine; the test program checks
  if the gunzipped files already exist, otherwise it gunzips them upfront.
  While cutting, I also sorted the molecules in the same order as in the
  SDF/SMILES files, so that it runs about 10 times faster than before.
  Now the test runs on MMFF94 only (MMFF94s only concerns different OOP
  parameters, there are no algorithmic differences, so as long as one does
  not alter the original parameters it can be safely skipped), computing
  every 4th molecule, and it runs in 12 seconds on my laptop. Running
  all molecules takes ~ 50 seconds, but I think it is rather overkill,
  and I would keep it as it is.

- I have added a test suite for MMFF ForceFieldHelpers (like the one
  already existing for UFF); I have also complemented the Python wrapper
  test suite for ForceFieldHelpers with a few tests for MMFF.

- I have written Python wrappers for the MMFF-related functionality;
  while doing that I realized that many of the wrapper code relocations
  that I made in my previous pull request were not necessary/appropriate,
  so I reverted them. The only difference from the UFF Python API is that,
  just like for the C++ API, in addition to the PyForceField object there
  is a PyMMFFMolProperties object which is created before constructing the
  force field itself; the PyMMFFMolProperties is necessary to set (e.g.,
  dielectric constant, dielectric model) or get (e.g., atom type, formal
  and partial charge) some MMFF properties which are not present in UFF,
  while preserving binary compatibility of the libraries. Probably you
  remember that we discussed about setting atom type and charge properties
  with SetProp besides populating the MMFFMolProperties object, in order
  to allow easy access to Python users. However, I think that the solution
  I adopted is preferrable since it is more consistent with the C++ API,
  it enables faster access to properties and it allows tailoring the MMFF
  environment (i.e., choosing MMFF94/MMFF94s, setting the verbosity level,
  including/excluding terms from the MMFF equation, setting dielectric
  constant/model) just as from C++.

  The MMFF-related Python functions I implemented are:

  * MMFFOptimizeMolecule(mol, mmffVariant = "MMFF94", maxIters = 200,
      nonBondedThresh = 100.0, confId = -1, ignoreInterfragInteractions
      = true)

    uses MMFF to optimize a molecule's structure (just like
    UFFOptimizeMolecule)

  * SanitizeMMFFMol(mol)

    sanitizes a molecule according to MMFF requirements

  * SetupMMFFForceField(mol, mmffVariant = "MMFF94", mmffVerbosity = 0)

    returns a PyMMFFMolProperties object for a molecule; the
    PyMMFFMolProperties object is required by MMFFGetMoleculeForceField()
    and can be used to get/set MMFF properties

  * MMFFGetMoleculeForceField(mol, pyMMFFMolProperties,
      nonBondedThresh = 100.0, confId = -1, ignoreInterfragInteractions
      = true)

    returns a MMFF force field for a molecule (just like
    UFFGetMoleculeForceField)

  * MMFFHasAllMoleculeParams(mol)

    checks if MMFF parameters are available for all of a molecule's atoms
    (just like UFFHasAllMoleculeParams)

  There are also a few methods connected to the PyMMFFMolProperties class
  which mirror those available from C++ for the MMFFMolProperties class:

  * GetMMFFAtomType(idx)

    Retrieves MMFF atom type for atom with index idx

  * GetMMFFFormalCharge(idx)

    Retrieves MMFF formal charge for atom with index idx

  * GetMMFFPartialCharge(idx)

    Retrieves MMFF partial charge for atom with index idx

  * SetMMFFDielectricModel(dielModel = 1)

    sets the DielModel MMFF property (1: constant; 2: distance-dependent;
    defaults to constant)

  * SetMMFFDielectricConstant(dielConst = 1.0)

    Sets the DielConst MMFF property (defaults to 1.0)

  * SetMMFFBondTerm(state = True)

    Sets the bond term to be included in the MMFF equation (defaults
    to True)

  * SetMMFFAngleTerm(state = True)

    Sets the angle term to be included in the MMFF equation (defaults
    to True)

  * SetMMFFStretchBendTerm(state = True)

    Sets the stretch-bend term to be included in the MMFF equation (defaults
    to True)

  * SetMMFFOopTerm(state = True)

    Sets the out-of-plane bend term to be included in the MMFF equation
    (defaults to True)

  * SetMMFFTorsionTerm(state = True)

    Sets the torsional term to be included in the MMFF equation (defaults
    to True)

  * SetMMFFVdWTerm(state = True)

    Sets the Van der Waals term to be included in the MMFF equation
    (defaults to True)

  * SetMMFFEleTerm(state = True)

    Sets the electrostatic term to be included in the MMFF equation
    (defaults to True)

  * SetMMFFVariant(mmffVariant = "MMFF94")

    Sets the MMFF variant to be used ("MMFF94" or "MMFF94s"; defaults to
    "MMFF94")

  * SetMMFFVerbosity(verbosity = 0)

    Sets the MMFF verbosity (0: none; 1: low; 2: high; defaults to 0)

  Hence, most users will do something like this to optimize a molecule
  structure obtained from a SMILES string:

  from rdkit import Chem
  from rdkit.Chem import AllChem

  m = Chem.MolFromSmiles("O=C(C)c1cccnc1", False)
  AllChem.SanitizeMMFFMol(m)
  m2 = Chem.AddHs(m)
  AllChem.EmbedMolecule(m2)
  # Opt
  AllChem.MMFFOptimizeMolecule(m2)
  print >>file('structure_min.sdf','w'), Chem.MolToMolBlock(m2)

  Those willing to play a bit more with MMFF properties may do the
  following:

  from rdkit import Chem
  from rdkit.Chem import AllChem

  m = Chem.MolFromSmiles("O=C(C)c1cccnc1", False)
  AllChem.SanitizeMMFFMol(m)
  m2 = Chem.AddHs(m)
  AllChem.EmbedMolecule(m2)
  pyMP = AllChem.SetupMMFFForceField(m2)
  pyMP.SetMMFFVariant("MMFF94s")
  pyMP.SetMMFFDielectricModel(2)
  pyFF = AllChem.MMFFGetMoleculeForceField(m2, pyMP)
  pyFF.Minimize()
  print >>file('structure_min.sdf','w'), Chem.MolToMolBlock(m2)
  print 'Energy = {0:12.4f}'.format(pyFF.CalcEnergy())
  i = 0
  for i in range(0, m2.GetNumAtoms()):
    print '{0:4d} {1:4d} {2:8.4f} {3:8.4f}'.format(i + 1,
      int(pyMP.GetMMFFAtomType(i)),
      float(pyMP.GetMMFFFormalCharge(i)),
      float(pyMP.GetMMFFPartialCharge(i)))

- OOP backport to UFF. I added the inversion term to the UFF
  implementation following the original UFF paper by Rappe'. I have already
  modified the figures in a couple of test files to reflect the new energy
  values.

- 2-bit neighbor matrix and graph-based angle enumeration now reflect
  the MMFF implementation.
2013-09-16 12:08:02 +02:00
ptosco
3f4297fa44 Created a new MMFF branch. I moved some files/folders from
Code/ForceField and Code/GraphMol/ForceFieldHelpers to the
respective UFF subfolders since from now on UFF will not be
the only available force field anymore. I updated the
relevant CMakeLists.txt files accordingly.

Paolo
2013-08-18 09:11:29 +02:00