`polars.cumsum()` is now `.cum_sum()`
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				|  | @ -493,7 +493,7 @@ def ledger_to_dfs( | |||
| 
 | ||||
|         df = dfs[key] = ldf.with_columns([ | ||||
| 
 | ||||
|             pl.cumsum('size').alias('cumsize'), | ||||
|             pl.cum_sum('size').alias('cumsize'), | ||||
| 
 | ||||
|             # amount of source asset "sent" (via buy txns in | ||||
|             # the market) to acquire the dst asset, PER txn. | ||||
|  | @ -508,7 +508,7 @@ def ledger_to_dfs( | |||
|         ]).with_columns([ | ||||
| 
 | ||||
|             # rolling balance in src asset units | ||||
|             (pl.col('dst_bot').cumsum() * -1).alias('src_balance'), | ||||
|             (pl.col('dst_bot').cum_sum() * -1).alias('src_balance'), | ||||
| 
 | ||||
|             # "position operation type" in terms of increasing the | ||||
|             # amount in the dst asset (entering) or decreasing the | ||||
|  | @ -650,7 +650,7 @@ def ledger_to_dfs( | |||
|                 # cost that was included in the least-recently | ||||
|                 # entered txn that is still part of the current CSi | ||||
|                 # set. | ||||
|                 # => we look up the cost-per-unit cumsum and apply | ||||
|                 # => we look up the cost-per-unit cum_sum and apply | ||||
|                 # if over the current txn size (by multiplication) | ||||
|                 # and then reverse that previusly applied cost on | ||||
|                 # the txn_cost for this record. | ||||
|  |  | |||
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