eliminate all old debug engine eval visualization code; we're now moved over to the new more standalone eval viz codebase layer

This commit is contained in:
Ryan Fleury
2024-09-10 17:22:24 -07:00
parent 20aba085cd
commit e6872cb71e
8 changed files with 58 additions and 1715 deletions
+1 -7
View File
@@ -428,16 +428,10 @@ D_ViewRuleTable:
COUNT,
}
@gen
{
@expand(D_ViewRuleTable a) `$(a.xp == "x" -> "D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_DEF(" .. a.name_lower .. ");")`;
@expand(D_ViewRuleTable a) `$(a.vb == "x" -> "D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(" .. a.name_lower .. ");")`;
}
@data(D_ViewRuleSpecInfo) @c_file d_core_view_rule_spec_info_table:
{
@expand(D_ViewRuleTable a)
```{str8_lit_comp("$(a.string)"), str8_lit_comp("$(a.display_name)"), str8_lit_comp("$(a.schema)"), str8_lit_comp("$(a.description)"), (D_ViewRuleSpecInfoFlag_Inherited*$(a.ih == "x"))|(D_ViewRuleSpecInfoFlag_Expandable*$(a.ex == "x"))|(D_ViewRuleSpecInfoFlag_ExprResolution*$(a.xp == "x"))|(D_ViewRuleSpecInfoFlag_VizBlockProd*$(a.vb == "x")), $(a.xp == "x" -> "D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_NAME("..a.name_lower..")") $(a.xp != "x" -> 0), $(a.vb == "x" -> "D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME("..a.name_lower..")") $(a.vb != "x" -> 0), }```;
```{str8_lit_comp("$(a.string)"), str8_lit_comp("$(a.display_name)"), str8_lit_comp("$(a.schema)"), str8_lit_comp("$(a.description)"), (D_ViewRuleSpecInfoFlag_Inherited*$(a.ih == "x"))|(D_ViewRuleSpecInfoFlag_Expandable*$(a.ex == "x"))|(D_ViewRuleSpecInfoFlag_ExprResolution*$(a.xp == "x"))|(D_ViewRuleSpecInfoFlag_VizBlockProd*$(a.vb == "x")), }```;
}
////////////////////////////////
File diff suppressed because it is too large Load Diff
-51
View File
@@ -280,8 +280,6 @@ struct D_ViewRuleSpecInfo
String8 schema;
String8 description;
D_ViewRuleSpecInfoFlags flags;
D_CoreViewRuleExprResolutionHookFunctionType *expr_resolution;
D_CoreViewRuleVizBlockProdHookFunctionType *viz_block_prod;
};
typedef struct D_ViewRuleSpecInfoArray D_ViewRuleSpecInfoArray;
@@ -1347,60 +1345,11 @@ internal String8 d_eval_view_rule_from_key(D_EvalView *eval_view, D_ExpandKey ke
////////////////////////////////
//~ rjf: Evaluation Visualization
//- rjf: expr * view rule table -> expr
internal E_Expr *d_expr_from_expr_cfg(Arena *arena, E_Expr *expr, D_CfgTable *cfg);
//- rjf: evaluation value string builder helpers
internal String8 d_string_from_ascii_value(Arena *arena, U8 val);
internal String8 d_string_from_hresult_facility_code(U32 code);
internal String8 d_string_from_hresult_code(U32 code);
internal String8 d_string_from_simple_typed_eval(Arena *arena, D_EvalVizStringFlags flags, U32 radix, E_Eval eval);
internal String8 d_escaped_from_raw_string(Arena *arena, String8 raw);
//- rjf: type info -> expandability/editablity
internal B32 d_type_key_is_expandable(E_TypeKey type_key);
internal B32 d_type_key_is_editable(E_TypeKey type_key);
//- rjf: writing values back to child processes
internal B32 d_commit_eval_value_string(E_Eval dst_eval, String8 string);
//- rjf: type helpers
internal E_MemberArray d_filtered_data_members_from_members_cfg_table(Arena *arena, E_MemberArray members, D_CfgTable *cfg);
internal D_EvalLinkBaseChunkList d_eval_link_base_chunk_list_from_eval(Arena *arena, E_TypeKey link_member_type_key, U64 link_member_off, E_Eval eval, U64 cap);
internal D_EvalLinkBase d_eval_link_base_from_chunk_list_index(D_EvalLinkBaseChunkList *list, U64 idx);
internal D_EvalLinkBaseArray d_eval_link_base_array_from_chunk_list(Arena *arena, D_EvalLinkBaseChunkList *chunks);
//- rjf: viz block collection building
internal D_EvalVizBlock *d_eval_viz_block_begin(Arena *arena, D_EvalVizBlockKind kind, D_ExpandKey parent_key, D_ExpandKey key, S32 depth);
internal D_EvalVizBlock *d_eval_viz_block_split_and_continue(Arena *arena, D_EvalVizBlockList *list, D_EvalVizBlock *split_block, U64 split_idx);
internal void d_eval_viz_block_end(D_EvalVizBlockList *list, D_EvalVizBlock *block);
internal void d_append_expr_eval_viz_blocks__rec(Arena *arena, D_EvalView *view, D_ExpandKey parent_key, D_ExpandKey key, String8 string, E_Expr *expr, D_CfgTable *cfg_table, S32 depth, D_EvalVizBlockList *list_out);
internal D_EvalVizBlockList d_eval_viz_block_list_from_eval_view_expr_keys(Arena *arena, D_EvalView *eval_view, D_CfgTable *cfg_table, String8 expr, D_ExpandKey parent_key, D_ExpandKey key);
internal void d_eval_viz_block_list_concat__in_place(D_EvalVizBlockList *dst, D_EvalVizBlockList *to_push);
//- rjf: viz block list <-> table coordinates
internal S64 d_row_num_from_viz_block_list_key(D_EvalVizBlockList *blocks, D_ExpandKey key);
internal D_ExpandKey d_key_from_viz_block_list_row_num(D_EvalVizBlockList *blocks, S64 row_num);
internal D_ExpandKey d_parent_key_from_viz_block_list_row_num(D_EvalVizBlockList *blocks, S64 row_num);
//- rjf: viz block * index -> expression
internal E_Expr *d_expr_from_eval_viz_block_index(Arena *arena, D_EvalVizBlock *block, U64 index);
//- rjf: viz row list building
internal D_EvalVizRow *d_eval_viz_row_list_push_new(Arena *arena, D_EvalView *eval_view, D_EvalVizWindowedRowList *rows, D_EvalVizBlock *block, D_ExpandKey key, E_Expr *expr);
internal D_EvalVizWindowedRowList d_eval_viz_windowed_row_list_from_viz_block_list(Arena *arena, D_EvalView *eval_view, Rng1S64 visible_range, D_EvalVizBlockList *blocks);
//- rjf: viz row -> strings
internal String8 d_expr_string_from_viz_row(Arena *arena, D_EvalVizRow *row);
//- rjf: viz row -> expandability/editability
internal B32 d_viz_row_is_expandable(D_EvalVizRow *row);
internal B32 d_viz_row_is_editable(D_EvalVizRow *row);
//- rjf: eval / view rule params tree info extraction
internal U64 d_base_offset_from_eval(E_Eval eval);
internal E_Value d_value_from_params(MD_Node *params);
internal E_TypeKey d_type_key_from_params(MD_Node *params);
internal E_Value d_value_from_params_key(MD_Node *params, String8 key);
internal Rng1U64 d_range_from_eval_params(E_Eval eval, MD_Node *params);
internal TXT_LangKind d_lang_kind_from_eval_params(E_Eval eval, MD_Node *params);
+21 -21
View File
@@ -287,27 +287,27 @@ D_CmdSpecInfo d_core_cmd_kind_spec_info_table[38] =
D_ViewRuleSpecInfo d_core_view_rule_spec_info_table[21] =
{
{str8_lit_comp("default"), str8_lit_comp("Default"), str8_lit_comp(""), str8_lit_comp(""), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(default) , },
{str8_lit_comp("array"), str8_lit_comp("Array"), str8_lit_comp("x:{expr}"), str8_lit_comp("Specifies that a pointer points to N elements, rather than only 1."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_NAME(array) , 0, },
{str8_lit_comp("slice"), str8_lit_comp("Slice"), str8_lit_comp(""), str8_lit_comp("Specifies that a pointer within a struct, also containing an integer, points to the number of elements encoded by the integer."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_NAME(slice) , 0, },
{str8_lit_comp("list"), str8_lit_comp("List"), str8_lit_comp("x:{member}"), str8_lit_comp("Specifies that some struct, union, or class forms the top of a linked list, and the member which points at the following element in the list."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(list) , },
{str8_lit_comp("bswap"), str8_lit_comp("Byte Swap"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should be byte-swapped, such that their endianness is reversed."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_NAME(bswap) , 0, },
{str8_lit_comp("cast"), str8_lit_comp("Cast"), str8_lit_comp("x:{type}"), str8_lit_comp("Specifies that the expression to which the view rule is applied should be casted to the provided type."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_NAME(cast) , 0, },
{str8_lit_comp("dec"), str8_lit_comp("Decimal Base (Base 10)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-10 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("bin"), str8_lit_comp("Binary Base (Base 2)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-2 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("oct"), str8_lit_comp("Octal Base (Base 8)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-8 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("hex"), str8_lit_comp("Hexadecimal Base (Base 16)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-16 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("only"), str8_lit_comp("Only Specified Members"), str8_lit_comp("x:{member}"), str8_lit_comp("Specifies that only the specified members should appear in struct, union, or class evaluations."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(only) , },
{str8_lit_comp("omit"), str8_lit_comp("Omit Specified Members"), str8_lit_comp("x:{member}"), str8_lit_comp("Omits a list of member names from appearing in struct, union, or class evaluations."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(omit) , },
{str8_lit_comp("no_addr"), str8_lit_comp("Disable Address Values"), str8_lit_comp(""), str8_lit_comp("Displays only what pointers point to, if possible, without the pointer's address value."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("checkbox"), str8_lit_comp("Checkbox"), str8_lit_comp(""), str8_lit_comp("Displays simple integer values as checkboxes, encoding zero or nonzero values."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), 0, 0, },
{str8_lit_comp("color_rgba"), str8_lit_comp("Color (RGBA)"), str8_lit_comp(""), str8_lit_comp("Displays as a color, interpreting the data as encoding R, G, B, and A values."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(color_rgba) , },
{str8_lit_comp("text"), str8_lit_comp("Text"), str8_lit_comp("x:{'lang':lang, 'size':expr}"), str8_lit_comp("Displays as text."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(text) , },
{str8_lit_comp("disasm"), str8_lit_comp("Disassembly"), str8_lit_comp("x:{'arch':arch, 'size':expr}"), str8_lit_comp("Displays as disassembled instructions, interpreting the data as raw machine code."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(disasm) , },
{str8_lit_comp("memory"), str8_lit_comp("Memory"), str8_lit_comp("x:{'size':expr}"), str8_lit_comp("Displays as a raw memory grid."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(memory) , },
{str8_lit_comp("graph"), str8_lit_comp("Graph"), str8_lit_comp(""), str8_lit_comp("Displays as a pointer graph, visualizing nodes and edges formed by pointers directly."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(graph) , },
{str8_lit_comp("bitmap"), str8_lit_comp("Bitmap"), str8_lit_comp("x:{'w':expr, 'h':expr, 'fmt':tex2dformat}"), str8_lit_comp("Displays as a bitmap, interpreting the data as raw pixel data."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(bitmap) , },
{str8_lit_comp("geo3d"), str8_lit_comp("Geometry (3D)"), str8_lit_comp("x:{'count':expr, 'vtx':expr, 'vtx_size':expr}"), str8_lit_comp("Displays as geometry, interpreting the data as index or vertex data."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), 0, D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_NAME(geo3d) , },
{str8_lit_comp("default"), str8_lit_comp("Default"), str8_lit_comp(""), str8_lit_comp(""), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("array"), str8_lit_comp("Array"), str8_lit_comp("x:{expr}"), str8_lit_comp("Specifies that a pointer points to N elements, rather than only 1."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("slice"), str8_lit_comp("Slice"), str8_lit_comp(""), str8_lit_comp("Specifies that a pointer within a struct, also containing an integer, points to the number of elements encoded by the integer."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("list"), str8_lit_comp("List"), str8_lit_comp("x:{member}"), str8_lit_comp("Specifies that some struct, union, or class forms the top of a linked list, and the member which points at the following element in the list."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("bswap"), str8_lit_comp("Byte Swap"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should be byte-swapped, such that their endianness is reversed."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("cast"), str8_lit_comp("Cast"), str8_lit_comp("x:{type}"), str8_lit_comp("Specifies that the expression to which the view rule is applied should be casted to the provided type."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*1)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("dec"), str8_lit_comp("Decimal Base (Base 10)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-10 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("bin"), str8_lit_comp("Binary Base (Base 2)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-2 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("oct"), str8_lit_comp("Octal Base (Base 8)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-8 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("hex"), str8_lit_comp("Hexadecimal Base (Base 16)"), str8_lit_comp(""), str8_lit_comp("Specifies that all integral evaluations should appear in base-16 form."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("only"), str8_lit_comp("Only Specified Members"), str8_lit_comp("x:{member}"), str8_lit_comp("Specifies that only the specified members should appear in struct, union, or class evaluations."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("omit"), str8_lit_comp("Omit Specified Members"), str8_lit_comp("x:{member}"), str8_lit_comp("Omits a list of member names from appearing in struct, union, or class evaluations."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("no_addr"), str8_lit_comp("Disable Address Values"), str8_lit_comp(""), str8_lit_comp("Displays only what pointers point to, if possible, without the pointer's address value."), (D_ViewRuleSpecInfoFlag_Inherited*1)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("checkbox"), str8_lit_comp("Checkbox"), str8_lit_comp(""), str8_lit_comp("Displays simple integer values as checkboxes, encoding zero or nonzero values."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*0)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*0), },
{str8_lit_comp("color_rgba"), str8_lit_comp("Color (RGBA)"), str8_lit_comp(""), str8_lit_comp("Displays as a color, interpreting the data as encoding R, G, B, and A values."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("text"), str8_lit_comp("Text"), str8_lit_comp("x:{'lang':lang, 'size':expr}"), str8_lit_comp("Displays as text."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("disasm"), str8_lit_comp("Disassembly"), str8_lit_comp("x:{'arch':arch, 'size':expr}"), str8_lit_comp("Displays as disassembled instructions, interpreting the data as raw machine code."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("memory"), str8_lit_comp("Memory"), str8_lit_comp("x:{'size':expr}"), str8_lit_comp("Displays as a raw memory grid."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("graph"), str8_lit_comp("Graph"), str8_lit_comp(""), str8_lit_comp("Displays as a pointer graph, visualizing nodes and edges formed by pointers directly."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("bitmap"), str8_lit_comp("Bitmap"), str8_lit_comp("x:{'w':expr, 'h':expr, 'fmt':tex2dformat}"), str8_lit_comp("Displays as a bitmap, interpreting the data as raw pixel data."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
{str8_lit_comp("geo3d"), str8_lit_comp("Geometry (3D)"), str8_lit_comp("x:{'count':expr, 'vtx':expr, 'vtx_size':expr}"), str8_lit_comp("Displays as geometry, interpreting the data as index or vertex data."), (D_ViewRuleSpecInfoFlag_Inherited*0)|(D_ViewRuleSpecInfoFlag_Expandable*1)|(D_ViewRuleSpecInfoFlag_ExprResolution*0)|(D_ViewRuleSpecInfoFlag_VizBlockProd*1), },
};
C_LINKAGE_END
@@ -273,21 +273,6 @@ U64 inline_depth;
.string = d_regs()->string,\
.params_tree = d_regs()->params_tree,\
D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_DEF(array);
D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_DEF(slice);
D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_DEF(bswap);
D_VIEW_RULE_EXPR_RESOLUTION_FUNCTION_DEF(cast);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(default);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(list);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(only);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(omit);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(color_rgba);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(text);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(disasm);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(memory);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(graph);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(bitmap);
D_VIEW_RULE_VIZ_BLOCK_PROD_FUNCTION_DEF(geo3d);
global B32 DEV_telemetry_capture = 0;
global B32 DEV_simulate_lag = 0;
global B32 DEV_draw_ui_text_pos = 0;