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Generic implementation of optimal grouping of objects using dynamic programming #272
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Generic implementation of optimal grouping of objects using dynamic programming #272
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The algorithm will work on an array of objects if I am not wrong. So, the code should be shifted to |
I have moved the file to linear_data_structures. |
Hi, |
Hi, |
Add some tests for your patch. See |
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Too many empty lines.
""" | ||
gets a value | ||
""" | ||
return matrix[lookup_index[0]][lookup_index[1]] |
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One liner functions aren't recommended. They just slow down the code.
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See my suggestions at https://github.com/codezonediitj/pydatastructs/pull/272/files#r426157438
You have to do something similar with every one liner function.
""" | ||
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# gets the present value at the present index | ||
present_value = _get_value_opt_group(cost_storage, lookup_index) |
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present_value = _get_value_opt_group(cost_storage, lookup_index) | |
present_value = cost_storage[lookup_index[0]][lookup_index[1]] |
def _test_lookup_function(lookup_index: List[int], input_index: List[int]): | ||
if lookup_index is None: | ||
raise TypeError( | ||
'Check lookup_function: returning wrong type should return an array of start and end index') | ||
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if lookup_index.__len__() < 2: | ||
raise ValueError( | ||
'Check lookup_function:lookup index should at least have 2 integer items, first specifying the start and second specifying the last indices') |
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if input_index == lookup_index: | ||
raise RuntimeError( | ||
'Check lookup_function:verify get_lookup_fn giving same output as input which will lead to infinite loop') |
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if input_index == lookup_index: | |
raise RuntimeError( | |
'Check lookup_function:verify get_lookup_fn giving same output as input which will lead to infinite loop') | |
assert input_index == lookup_index |
if get_lookup_fn is None or type(get_lookup_fn) is not FunctionType: | ||
raise TypeError( | ||
'get_lookup_fn cannot be none and should be a function with 3 arguments') |
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Do not worry about type checking. If user will give garbage, they will get garbage.
@@ -3,13 +3,16 @@ | |||
from pydatastructs.utils.misc_util import _check_type, _comp | |||
from concurrent.futures import ThreadPoolExecutor | |||
from math import log, floor | |||
from types import * |
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Do not do *
, import only those things which you want to use. Avoid namespace pollution.
Codecov Report
@@ Coverage Diff @@
## master #272 +/- ##
=============================================
- Coverage 98.842% 98.662% -0.181%
=============================================
Files 23 23
Lines 2420 2467 +47
=============================================
+ Hits 2392 2434 +42
- Misses 28 33 +5
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Hi, |
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LGTM 👍
@pravalikavis Please resolve merge conflicts. |
My only concern with dynamic programming problems is that they aren't that abstract and generalized. Moreover, they are pseudo-polynomial solutions to optimisation problems (mostly discrete). So possibly, we can add a separate optimisation module and put the dynamic programming solutions there. In fact they can also contain parametrised approximation algorithm. Anyways, we should first check if there is already a python package for solving these kind of formulations. |
Agreed on this |
References to other Issues or PRs or Relevant literature
fixes #230
Brief description of what is fixed or changed
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