ready to make the debug dump

This commit is contained in:
Edward R. Gonzalez 2025-05-12 02:51:49 -04:00
parent 81a3465fc4
commit 48802b5f73

View File

@ -974,7 +974,6 @@ void str8gen_init(Str8Gen* gen, SliceByte backing);
Str8Gen str8gen_make( SliceByte backing); Str8Gen str8gen_make( SliceByte backing);
void str8gen_append_str8(Str8Gen* gen, Str8 str); void str8gen_append_str8(Str8Gen* gen, Str8 str);
// void str8gen_append_fmt (Str8Gen* gen, Str8 fmt, ...);
void str8gen_init(Str8Gen* gen, SliceByte backing) { void str8gen_init(Str8Gen* gen, SliceByte backing) {
assert(gen != nullptr); assert(gen != nullptr);
@ -998,6 +997,7 @@ In order to support appending formatted content via str8gen_apppend_fmt, we'll b
Where a format template string is provided with a 'id' wrapped in delimiters which will be the angle brackets: <id> Where a format template string is provided with a 'id' wrapped in delimiters which will be the angle brackets: <id>
Example: This formatted string will have <id> subsituted into it. Example: This formatted string will have <id> subsituted into it.
*/ */
#pragma region fmt_vtoken
typedef struct FmtTokEntry FmtTokEntry; typedef struct FmtTokEntry FmtTokEntry;
struct FmtTokEntry { struct FmtTokEntry {
@ -1102,11 +1102,13 @@ struct SliceStr8 {
SSIZE len; SSIZE len;
}; };
Str8 fmt__vtoken(SliceByte backing, Str8 fmt_template, SliceStr8* tokens) #define local_persist static
{
FArena a_backing = farena_init(backing);
SliceFmtTokEntry table = {a_backing.start, 0};
Str8 fmt__vtoken(SliceByte backing_tbl, SliceByte backing_buf, Str8 fmt_template, SliceStr8* tokens)
{
assert(tokens != nullptr);
FArena a_backing = farena_init(backing_tbl);
SliceFmtTokEntry table = {a_backing.start, 0};
S32 left = tokens->len; S32 left = tokens->len;
for (slice_iter(*tokens, token)) { for (slice_iter(*tokens, token)) {
FmtTokEntry* entry = farena_push(a_backing, FmtTokEntry); FmtTokEntry* entry = farena_push(a_backing, FmtTokEntry);
@ -1116,14 +1118,36 @@ Str8 fmt__vtoken(SliceByte backing, Str8 fmt_template, SliceStr8* tokens)
entry->value = * token; entry->value = * token;
++ table.len; ++ table.len;
} }
SliceByte buffer = { .ptr = cast(U8*, a_backing.start) + a_backing.used, .len = a_backing.capacity - a_backing.used }; Str8 result = fmt_vtoken_slice(backing_buf, table, fmt_template);
Str8 result = fmt_vtoken_slice(buffer, table, fmt_template);
return result; return result;
} }
// Expected to take a Str8 array of entries formatted as a 2D array of key-value pairs (Str8[length][2]) // Expected to take a Str8 array of entries formatted as a 2D array of key-value pairs (Str8[length][2])
// The array will be tracked using a SliceStr8 structure. // The array will be tracked using a SliceStr8 structure.
#define fmt_vtoken(backing, fmt_template, tokens) fmt__vtoken(backing, fmt_template, &(SliceStr8){.ptr = cast(Str8*, tokens), .len = size_of(tokens) / size_of(Str8) }) #define fmt_vtoken(backing_tbl, backing_buf, fmt_template, tokens) \
fmt__vtoken(backing_tbl, backing_buf, lit(fmt_template), \
&(SliceStr8){ \
.ptr = cast(Str8*, ((Str8[])tokens)), \
.len = size_of( ((Str8[])tokens)) / size_of(Str8) \
} \
)
#pragma endregion fmt_vtoken
inline
void str8gen__append_fmt(Str8Gen* gen, Str8 fmt_template, SliceStr8* tokens)
{
local_persist FMem_64KB tbl_backing = {0};
SliceByte fmt_backing = {gen->ptr + gen->len, gen->backing.len - gen->len};
fmt__vtoken(fmem_slice(tbl_backing), fmt_backing, fmt_template, tokens);
return;
}
#define str8gen_append_fmt(gen, fmt_template, tokens) \
str8gen__append_fmt(& gen, lit(fmt_template), \
&(SliceStr8){ \
.ptr = cast(Str8*, ((Str8[])tokens)), \
.len = size_of( ((Str8[])tokens)) / size_of(Str8) \
} \
)
/* /*
Define a mapping array: Define a mapping array:
@ -1132,18 +1156,34 @@ Str8 mappings [][2] = {
^^ Add entries as above ^^ ^^ Add entries as above ^^
} }
*/ */
#define fmt_vtoken_entry(key, value) { lit(key), lit(value) } #define fmt_entry(key, value) lit(key), lit(value)
#ifdef DEMO__WATL_DUMP_V1 #ifdef DEMO__WATL_DUMP_V1
int main() int main()
{ {
set_utf8_codepage(); set_utf8_codepage();
SliceByte scratch = slicemem_alloc(MEGABYTES(64)); local_persist FMem_64KB tbl_scratch;
Str8 subst_table [][2] = { SliceByte fmt_scratch = slicemem_alloc(MEGABYTES(8));
fmt_vtoken_entry("maybe_sub", "IT SUBST!!!"), Str8 test_str = fmt_vtoken(fmem_slice(tbl_scratch), fmt_scratch, "Will this work? <maybe_sub>", {
}; fmt_entry("maybe_sub", "IT SUBST!!!")
Str8 test_str = fmt_vtoken(scratch, lit("Will this work? <maybe_sub>"), subst_table); });
SliceByte scratchgen = slicemem_alloc(MEGABYTES(16));
Str8Gen gen = str8gen_make(scratchgen);
str8gen_append_fmt(gen, "Testing now with Str8Gen!! <maybe_sub>!", {
fmt_entry("maybe_sub", "lets fucking go!!!")
});
return 0; return 0;
} }
#endif #endif
/*
We now have what we need to create the debug dump and the structural listing for WATL's data structures.
*/
Str8 watl_debug_dmp(SliceByte buffer, WATL_SliceLine lines)
{
Str8Gen result = str8gen_make(buffer);
return (Str8){ result.ptr, result.len };
}