Bound commit checkpoints by key range

Use a capped ordered query to discover each checkpoint watermark before locking and processing only that key range.

Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 85be3fc4-5253-47b8-ba1b-6b8fd188fcea
This commit is contained in:
Jesper Schulz-Wedde 2026-07-14 11:48:01 +02:00
parent bad62d2763
commit e374a8a4b8
2 changed files with 43 additions and 12 deletions

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@ -1,3 +1,17 @@
query 50127 "Perf Customer Chunk"
{
QueryType = Normal;
OrderBy = ascending(CustomerNo);
elements
{
dataitem(Customer; Customer)
{
column(CustomerNo; "No.") { }
}
}
}
codeunit 50128 "Perf Sample CommitInLoop Good" codeunit 50128 "Perf Sample CommitInLoop Good"
{ {
procedure NormalizeCustomerNames() procedure NormalizeCustomerNames()
@ -5,28 +19,45 @@ codeunit 50128 "Perf Sample CommitInLoop Good"
LastCustomerNo: Code[20]; LastCustomerNo: Code[20];
begin begin
// The outer loop owns checkpoints; the per-row loop contains no Commit. // The outer loop owns checkpoints; the per-row loop contains no Commit.
while NormalizeNextChunk(LastCustomerNo, 500) do while NormalizeNextChunk(LastCustomerNo) do
Commit(); Commit();
end; end;
local procedure NormalizeNextChunk(var LastCustomerNo: Code[20]; ChunkSize: Integer): Boolean local procedure NormalizeNextChunk(var LastCustomerNo: Code[20]): Boolean
var var
Customer: Record Customer; Customer: Record Customer;
RowsInChunk: Integer; CustomerChunk: Query "Perf Customer Chunk";
FirstCustomerNo: Code[20];
LastChunkCustomerNo: Code[20];
begin begin
Customer.SetCurrentKey("No."); CustomerChunk.TopNumberOfRows(500);
if LastCustomerNo <> '' then if LastCustomerNo <> '' then
Customer.SetFilter("No.", '>%1', LastCustomerNo); CustomerChunk.SetFilter(CustomerNo, '>%1', LastCustomerNo);
if not Customer.FindSet(true) then CustomerChunk.Open();
if not CustomerChunk.Read() then begin
CustomerChunk.Close();
exit(false); exit(false);
end;
FirstCustomerNo := CustomerChunk.CustomerNo;
repeat
LastChunkCustomerNo := CustomerChunk.CustomerNo;
until not CustomerChunk.Read();
CustomerChunk.Close();
Customer.SetCurrentKey("No.");
Customer.SetRange("No.", FirstCustomerNo, LastChunkCustomerNo);
if not Customer.FindSet(true) then begin
LastCustomerNo := LastChunkCustomerNo;
exit(true);
end;
repeat repeat
Customer.Name := UpperCase(Customer.Name); Customer.Name := UpperCase(Customer.Name);
Customer.Modify(); Customer.Modify();
LastCustomerNo := Customer."No."; until Customer.Next() = 0;
RowsInChunk += 1;
until (RowsInChunk >= ChunkSize) or (Customer.Next() = 0);
LastCustomerNo := LastChunkCustomerNo;
exit(true); exit(true);
end; end;
} }

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@ -1,7 +1,7 @@
--- ---
bc-version: [all] bc-version: [all]
domain: performance domain: performance
keywords: [commit, loop, transaction, lock, checkpoint, codeunit-run] keywords: [commit, loop, transaction, lock, checkpoint, bounded, watermark, topnumberofrows, codeunit-run]
technologies: [al] technologies: [al]
countries: [w1] countries: [w1]
application-area: [all] application-area: [all]
@ -13,11 +13,11 @@ application-area: [all]
## Description ## Description
Commit ends the current write transaction. Calling it inside a per-row loop produces one transaction per iteration and loses the ability to roll back the whole operation atomically; it also interferes with the platform's ability to batch write operations. Most loops need no explicit Commit at all — AL auto-commits the enclosing code module on successful completion (see `understand-implicit-transaction-boundary.md`). When the batch is too large for one transaction, the fix is not a per-row Commit but bounded checkpoints that each process N rows. Commit ends the current write transaction. Calling it inside a per-row loop produces one transaction per iteration and loses the ability to roll back the whole operation atomically; it also interferes with the platform's ability to batch write operations. Most loops need no explicit Commit at all — AL auto-commits the enclosing code module on successful completion (see `understand-implicit-transaction-boundary.md`). When the batch is too large for one transaction, the fix is not a per-row Commit but bounded checkpoints that each retrieve and process the next N rows.
## Best Practice ## Best Practice
If the batch is large enough that a single transaction is untenable, use an outer loop that selects and finishes the next N rows. Commit only after the inner row loop has returned and the checkpoint state identifies where the next chunk starts. A `Codeunit.Run` boundary can also own a chunk when its implicit commit and error behavior fit the caller — see `codeunit-run-as-atomic-sub-operation.md`. If the batch is large enough that a single transaction is untenable, use an ordered primary-key watermark and retrieve a bounded next-N window. `FindSet` is optimized for reading the complete filtered set and isn't implemented as `TOP X`, so calling it over the remaining tail and breaking after N rows does not bound retrieval. The sample uses a query capped by [`TopNumberOfRows`](https://learn.microsoft.com/en-us/dynamics365/business-central/dev-itpro/developer/methods-auto/query/queryinstance-topnumberofrows-method) to discover the next upper key, then locks and processes only that key range. Commit after the bounded inner loop returns and persist its upper key as the next watermark. Use a stable key and define how a later run handles records inserted at or below an already committed watermark. A `Codeunit.Run` boundary can also own a chunk when its implicit commit and error behavior fit the caller — see `codeunit-run-as-atomic-sub-operation.md`.
See sample: `avoid-commit-inside-loops.good.al`. See sample: `avoid-commit-inside-loops.good.al`.