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feat(gnovm): handle loop variables #2429
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Co-authored-by: Morgan <[email protected]>
Co-authored-by: Morgan <[email protected]>
Co-authored-by: Morgan <[email protected]>
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I left some comments for small tweaks but otherwise LGTM.
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all resolved. I'll merge it. |
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Problem Definition
The problem originates from the issue described in #1135. While the full scope of the issue is broader, it fundamentally relates to the concept of loop variable escapes block where it's defined.
e.g. 1:
e.g. 2:
e.g. 3:
Solution ideas
identify escaped vars in preprocess:
Detect situations where a loop variable is defined within a loop block(including
for/range
loops or loops constructed usinggoto
statements), and escapes the block where it's defined.runtime allocation:
Allocate a new heap item for the loop variable in each iteration to ensure each iteration operates with its unique variable instance.
NOTE1: this is consistent with Go's Strategy:
"Each iteration has its own separate declared variable (or variables) [Go 1.22]. The variable used by the first iteration is declared by the init statement. The variable used by each subsequent iteration is declared implicitly before executing the post statement and initialized to the value of the previous iteration's variable at that moment."
NOTE2: the
loopvar
feature of Go 1.22 is not supported in this version, and will be supported in next version.not supporting capture
i
defined in for/range clause;Implementation Details
Preprocess Stage(Multi-Phase Preprocessor):
Phase 1:
initStaticBlocks
: Establish a cascading scope structure wherepredefine
is conducted. In this phase Name expressions are initially marked asNameExprTypeDefine
, which may later be upgraded toNameExprTypeHeapDefine
if it is determined that they escape the loop block. This phase also supports other processes as a prerequisite#2077.Phase 2:
preprocess1
: This represents the original preprocessing phase(not going into details).Phase 3:
findGotoLoopDefines
: By traversing the AST, any name expression defined in a loop block (for/range, goto) with the attributeNameExprTypeDefine
is promoted toNameExprTypeHeapDefine
. This is used in later phase.Phase 4:
findLoopUses1
: Identify the usage ofNameExprTypeHeapDefine
name expressions. If a name expression is used in a function literal or is referrnced(e.g. &a), and it was previously defined asNameExprTypeHeapDefine
, theused
name expression is then given the attributeNameExprTypeHeapUse
. This step finalizes whether a name expression will be allocated on the heap and used from heap.Closures
represent a particular scenario in this context. Each closure, defined by a funcLitExpr that captures variables, is associated with a HeapCaptures list. This list consists of NameExprs, which are utilized at runtime to obtain the actual variable values for each iteration. Correspondingly, within the funcLitExpr block, a list of placeholder values are defined. These placeholders are populated during the doOpFuncLit phase and subsequently utilized in thedoOpCall
to ensure that each iteration uses the correct data.Phase 5:
findLoopUses2
: Convert non-loop uses of loop-defined names toNameExprTypeHeapUse
. Also, demoteNameExprTypeHeapDefine
back toNameExprTypeDefine
if no actual usage is found. Also , as the last phase, attributes no longer needed will be cleaned up after this phase.Runtime Stage:
Variable Allocation:
NameExprTypeHeapDefine
triggers the allocation of a newheapItemValue
for it, which will be used by anyNameExprTypeHeapUse
.Function Literal Handling:
doOpFuncLit
, retrieve theHeapCapture
values (previously allocated heap item values) and fill in the placeholder values within thefuncLitExpr
block.doOpCall
), theplaceHolder
values(fv.Captures) are used to update the execution context, ensuring accurate and consistent results across iterations.