mirror of
https://github.com/Ed94/raddebugger.git
synced 2026-08-11 08:08:08 +00:00
eval2: fix parsing task popping rules, still give chance to rhs when popping tasks in all cases
This commit is contained in:
+15
-27
@@ -1571,6 +1571,7 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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for(B32 done = 0; !done;)
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for(B32 done = 0; !done;)
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{
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{
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U64 start_off = off;
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U64 start_off = off;
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E2_ParseTask *start_task = state->top_task;
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S64 max_precedence = state->top_task->max_precedence;
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S64 max_precedence = state->top_task->max_precedence;
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B32 type_ancestors = state->top_task->do_type_ancestors;
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B32 type_ancestors = state->top_task->do_type_ancestors;
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B32 need_new_expr = (expr == &e2_expr_nil && !type_ancestors && !state->caller_info_completes_task);
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B32 need_new_expr = (expr == &e2_expr_nil && !type_ancestors && !state->caller_info_completes_task);
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@@ -1615,17 +1616,21 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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//- rjf: symbols (possible prefix unaries, *or* unexpected)
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//- rjf: symbols (possible prefix unaries, *or* unexpected)
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else if(need_new_expr && e2_try_token(lang, string, E2_TokenKind_Symbol, s(""), &off, &token))
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else if(need_new_expr && e2_try_token(lang, string, E2_TokenKind_Symbol, s(""), &off, &token))
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{
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{
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String8 token_string = str8_substr(string, token.range);
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// rjf: string -> operator kind
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// rjf: string -> operator kind
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B32 unexpected = !str8_match(token_string, state->top_task->expected_closer, 0);
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E2_ExprKind expr_kind = E2_ExprKind_Null;
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E2_ExprKind expr_kind = E2_ExprKind_Null;
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String8 closer = {0};
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String8 closer = {0};
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S64 precedence = 0;
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S64 precedence = 0;
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{
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{
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String8 token_string = str8_substr(string, token.range);
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for EachIndex(idx, lang_info->expr_kind_parse_infos_count)
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for EachIndex(idx, lang_info->expr_kind_parse_infos_count)
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{
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{
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if(lang_info->expr_kind_parse_infos[idx].parse_kind == E2_ExprParseKind_Prefix &&
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if(lang_info->expr_kind_parse_infos[idx].parse_kind == E2_ExprParseKind_Prefix &&
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lang_info->expr_kind_parse_infos[idx].precedence <= max_precedence &&
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str8_match(token_string, lang_info->expr_kind_parse_infos[idx].pre, 0))
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str8_match(token_string, lang_info->expr_kind_parse_infos[idx].pre, 0))
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{
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unexpected = 0;
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if(lang_info->expr_kind_parse_infos[idx].precedence <= max_precedence)
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{
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{
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expr_kind = lang_info->expr_kind_parse_infos[idx].expr_kind;
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expr_kind = lang_info->expr_kind_parse_infos[idx].expr_kind;
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closer = lang_info->expr_kind_parse_infos[idx].post;
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closer = lang_info->expr_kind_parse_infos[idx].post;
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@@ -1634,6 +1639,7 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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}
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}
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}
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}
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}
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}
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}
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// rjf: push task for operand
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// rjf: push task for operand
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if(expr_kind != E2_ExprKind_Null)
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if(expr_kind != E2_ExprKind_Null)
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@@ -1657,9 +1663,8 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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}
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}
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// rjf: report unexpected symbols
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// rjf: report unexpected symbols
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if(expr_kind == E2_ExprKind_Null)
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if(expr_kind == E2_ExprKind_Null && unexpected)
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{
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{
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String8 token_string = str8_substr(string, token.range);
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e2_msgf(arena, &parse.msgs, token.range, "Unexpected `%S`.", token_string);
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e2_msgf(arena, &parse.msgs, token.range, "Unexpected `%S`.", token_string);
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}
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}
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}
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}
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@@ -1935,7 +1940,7 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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//- rjf: if we're parsing a type, and we see a C-style type info recursion (to
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//- rjf: if we're parsing a type, and we see a C-style type info recursion (to
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// express ancestors of the current type), then we need to generate a task to
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// express ancestors of the current type), then we need to generate a task to
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// descend and parse the ancestor type
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// descend and parse the ancestor type
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if(!state->caller_info_completes_task && expr != &e2_expr_nil)
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if(!state->caller_info_completes_task && expr != &e2_expr_nil && (state->top_task->next_type_ancestor == 0 || state->top_task->next_type_ancestor == &e2_expr_nil))
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{
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{
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B32 parent_looking_for_type = (state->top_task->expr_kind != E2_ExprKind_Null &&
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B32 parent_looking_for_type = (state->top_task->expr_kind != E2_ExprKind_Null &&
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state->top_task->child_count == 0 &&
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state->top_task->child_count == 0 &&
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@@ -2031,12 +2036,8 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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}
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}
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}
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}
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//- rjf: attach formed expressions to parent task exprs; pop tasks when they're done.
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//- rjf: attach formed expressions to parent task; pop task if done.
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// if we have no parent task, then we just fill the result, and we're done with the parse.
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if(state->caller_info_completes_task || expr != &e2_expr_nil)
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if(state->caller_info_completes_task || expr != &e2_expr_nil)
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{
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//- rjf: pop finished expressions
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for(B32 task_pushed = 0; state->top_task != 0 && !done && !task_pushed;)
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{
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{
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//- rjf: if this task has a type ancestor: our finished expression is
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//- rjf: if this task has a type ancestor: our finished expression is
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// actually a descendant of that. we want to push our finished expression
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// actually a descendant of that. we want to push our finished expression
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@@ -2156,7 +2157,6 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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E2_ExprNode *child_n = push_array(arena, E2_ExprNode, 1);
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E2_ExprNode *child_n = push_array(arena, E2_ExprNode, 1);
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SLLQueuePush(task->first_child, task->last_child, child_n);
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SLLQueuePush(task->first_child, task->last_child, child_n);
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child_n->v = type_expr;
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child_n->v = type_expr;
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task_pushed = 1;
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}
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}
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}
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}
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@@ -2216,33 +2216,21 @@ e2_parse_from_string(Arena *arena, E2_ParseState *state, B32 identifier_is_type,
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SLLStackPop(state->top_task);
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SLLStackPop(state->top_task);
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SLLStackPush(state->free_task, completed_task);
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SLLStackPush(state->free_task, completed_task);
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}
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}
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//- rjf: if this task still has potential right-hand-sides, then we need to
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// break out of the pop-loop and keep parsing at this level.
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if(state->top_task->expr_kind == E2_ExprKind_Null || completed_task->do_type_ancestors)
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{
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break;
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}
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}
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}
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//- rjf: if the top task is not done -> break & continue.
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//- rjf: if the top task is not done -> continue parsing.
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//
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//
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// if we have an active op kind, reset expression, because we need to parse another.
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// if we have an active op kind, reset expression, because we need to parse another.
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// if we don't, we need to look for extensions of our current expression instead.
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// if we don't, we need to look for extensions of our current expression instead.
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//
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//
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else
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else if(state->top_task->expr_kind != E2_ExprKind_Null)
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{
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if(state->top_task->expr_kind != E2_ExprKind_Null)
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{
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{
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expr = &e2_expr_nil;
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expr = &e2_expr_nil;
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}
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}
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break;
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}
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}
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}
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}
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//- rjf: we're always done if there's nothing left to parse, *or* if we made no progress.
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//- rjf: we're done if we couldn't make any more progress.
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if(off >= string.size || (off == start_off && !e2_parse_status_is_caller_request(parse.status)))
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if(start_task == state->top_task && (off >= string.size || (off == start_off && !e2_parse_status_is_caller_request(parse.status))))
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{
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{
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done = 1;
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done = 1;
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if(expr != &e2_expr_nil)
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if(expr != &e2_expr_nil)
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@@ -9,12 +9,13 @@ E2_ExprKindTable:
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{TypeIdentifier 0 1 0 0 }
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{TypeIdentifier 0 1 0 0 }
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{Ptr 1 1 1 1 }
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{Ptr 1 1 1 1 }
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{Array 1 1 1 2 }
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{Array 1 1 1 2 }
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{Function 1 1 1 0xffffffffffffffffull}
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{Numeric 0 0 0 0 }
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{Numeric 0 0 0 0 }
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{StringLiteral 0 0 0 0 }
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{StringLiteral 0 0 0 0 }
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{CharLiteral 0 0 0 0 }
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{CharLiteral 0 0 0 0 }
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{Dot 1 0 0 1 }
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{Dot 1 0 0 1 }
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{Index 0 0 0 2 }
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{Index 0 0 0 2 }
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{Call 1 0 0 0xffffffffffffffffull}
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{Call 0 0 0 0xffffffffffffffffull}
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{DerefAsm 1 0 0 1 }
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{DerefAsm 1 0 0 1 }
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{SizeOf 1 0 1 1 }
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{SizeOf 1 0 1 1 }
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{TypeOf 1 1 1 1 }
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{TypeOf 1 1 1 1 }
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@@ -4,7 +4,7 @@
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//- GENERATED CODE
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//- GENERATED CODE
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C_LINKAGE_BEGIN
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C_LINKAGE_BEGIN
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B8 e2_expr_kind_allow_type_operands_table[43] =
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B8 e2_expr_kind_allow_type_operands_table[44] =
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{
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{
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0,
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0,
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0,
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0,
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@@ -12,12 +12,13 @@ B8 e2_expr_kind_allow_type_operands_table[43] =
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0,
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0,
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1,
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1,
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1,
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1,
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1,
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0,
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0,
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0,
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0,
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0,
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0,
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1,
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1,
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0,
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0,
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1,
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0,
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1,
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1,
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1,
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1,
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1,
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1,
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@@ -51,7 +52,7 @@ B8 e2_expr_kind_allow_type_operands_table[43] =
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1,
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1,
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};
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};
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B8 e2_expr_kind_is_type_expr_table[43] =
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B8 e2_expr_kind_is_type_expr_table[44] =
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{
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{
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0,
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0,
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0,
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0,
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@@ -59,6 +60,7 @@ B8 e2_expr_kind_is_type_expr_table[43] =
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1,
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1,
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1,
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1,
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1,
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1,
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1,
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0,
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0,
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0,
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0,
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0,
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0,
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@@ -98,7 +100,7 @@ B8 e2_expr_kind_is_type_expr_table[43] =
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0,
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0,
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};
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};
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B8 e2_expr_kind_is_first_operand_type_maybe_table[43] =
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B8 e2_expr_kind_is_first_operand_type_maybe_table[44] =
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{
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{
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0,
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0,
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0,
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0,
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@@ -106,6 +108,7 @@ B8 e2_expr_kind_is_first_operand_type_maybe_table[43] =
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0,
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0,
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1,
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1,
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1,
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1,
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1,
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0,
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0,
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0,
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0,
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0,
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0,
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@@ -145,7 +148,7 @@ B8 e2_expr_kind_is_first_operand_type_maybe_table[43] =
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0,
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0,
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};
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};
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U64 e2_expr_kind_target_operand_count_table[43] =
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U64 e2_expr_kind_target_operand_count_table[44] =
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{
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{
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0,
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0,
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0,
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0,
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@@ -153,6 +156,7 @@ U64 e2_expr_kind_target_operand_count_table[43] =
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0,
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0,
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1,
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1,
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2,
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2,
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0xffffffffffffffffull,
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0,
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0,
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0,
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0,
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0,
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0,
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@@ -14,6 +14,7 @@ E2_ExprKind_MacroArg,
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E2_ExprKind_TypeIdentifier,
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E2_ExprKind_TypeIdentifier,
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E2_ExprKind_Ptr,
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E2_ExprKind_Ptr,
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E2_ExprKind_Array,
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E2_ExprKind_Array,
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E2_ExprKind_Function,
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E2_ExprKind_Numeric,
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E2_ExprKind_Numeric,
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E2_ExprKind_StringLiteral,
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E2_ExprKind_StringLiteral,
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E2_ExprKind_CharLiteral,
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E2_ExprKind_CharLiteral,
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@@ -158,10 +159,10 @@ E2_ExprKindParseInfo *expr_kind_parse_infos;
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};
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};
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C_LINKAGE_BEGIN
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C_LINKAGE_BEGIN
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extern B8 e2_expr_kind_allow_type_operands_table[43];
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extern B8 e2_expr_kind_allow_type_operands_table[44];
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extern B8 e2_expr_kind_is_type_expr_table[43];
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extern B8 e2_expr_kind_is_type_expr_table[44];
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extern B8 e2_expr_kind_is_first_operand_type_maybe_table[43];
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extern B8 e2_expr_kind_is_first_operand_type_maybe_table[44];
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extern U64 e2_expr_kind_target_operand_count_table[43];
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extern U64 e2_expr_kind_target_operand_count_table[44];
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extern E2_LangInfo e2_lang_kind_info_table[1];
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extern E2_LangInfo e2_lang_kind_info_table[1];
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extern E2_ExprKindParseInfo e2_expr_kind_parse_info_table__clike[38];
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extern E2_ExprKindParseInfo e2_expr_kind_parse_info_table__clike[38];
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extern U8 e2_type_kind_basic_byte_size_table[61];
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extern U8 e2_type_kind_basic_byte_size_table[61];
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@@ -43,8 +43,9 @@ entry_point(CmdLine *cmdline)
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// (A)
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// (A)
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// int & B
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// int & B
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// (1 + (int)&B)
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// (1 + (int)&B)
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s("int32 *"),
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// TODO(rjf): this is now busted, `mul` root comes out - related to always having a top task maybe?
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s("int32[100]"),
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s("int32 (*) [100]"),
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s("3 * 4 + 2"),
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s("3 * 4 + 2"),
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s("(3 * 4) + 2"),
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s("(3 * 4) + 2"),
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s("3 * 4"),
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s("3 * 4"),
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@@ -57,8 +58,6 @@ entry_point(CmdLine *cmdline)
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s("123, 456"),
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s("123, 456"),
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s("222.f"),
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s("222.f"),
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s("123 as float32"),
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s("123 as float32"),
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s("int32 (*) [100]"),
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s("int32[100]"),
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s("cast float32 123"),
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s("cast float32 123"),
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s("cast (float32) 123"),
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s("cast (float32) 123"),
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s("(int32 *)123"),
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s("(int32 *)123"),
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