scripts/kallsyms: change the output order

Currently, this tool outputs symbol data in the following order.

 (1) kallsyms_addressed / kallsyms_offsets
 (2) kallsyms_relative_base
 (3) kallsyms_num_syms
 (4) kallsyms_names
 (5) kallsyms_markers
 (6) kallsyms_seq_of_names
 (7) kallsyms_token_table
 (8) kallsyms_token_index

This commit changes the order as follows:

 (1) kallsyms_num_syms
 (2) kallsyms_names
 (3) kallsyms_markers
 (4) kallsyms_token_table
 (5) kallsyms_token_index
 (6) kallsyms_addressed / kallsyms_offsets
 (7) kallsyms_relative_base
 (8) kallsyms_seq_of_names

The motivation is to decrease the number of function calls to
expand_symbol() and cleanup_symbol_name().

The compressed names are only required for writing 'kallsyms_names'.
If you do this first, we can restore the original symbol names.
You do not need to repeat the same operation over again.

The actual refactoring will happen in the next commit.

Signed-off-by: Masahiro Yamada <masahiroy@kernel.org>
This commit is contained in:
Masahiro Yamada 2023-03-08 20:52:41 +09:00
parent 320e7c9d44
commit 404bad70fc

View file

@ -412,56 +412,6 @@ static void write_src(void)
printf("\t.section .rodata, \"a\"\n");
if (!base_relative)
output_label("kallsyms_addresses");
else
output_label("kallsyms_offsets");
for (i = 0; i < table_cnt; i++) {
if (base_relative) {
/*
* Use the offset relative to the lowest value
* encountered of all relative symbols, and emit
* non-relocatable fixed offsets that will be fixed
* up at runtime.
*/
long long offset;
int overflow;
if (!absolute_percpu) {
offset = table[i]->addr - relative_base;
overflow = (offset < 0 || offset > UINT_MAX);
} else if (symbol_absolute(table[i])) {
offset = table[i]->addr;
overflow = (offset < 0 || offset > INT_MAX);
} else {
offset = relative_base - table[i]->addr - 1;
overflow = (offset < INT_MIN || offset >= 0);
}
if (overflow) {
fprintf(stderr, "kallsyms failure: "
"%s symbol value %#llx out of range in relative mode\n",
symbol_absolute(table[i]) ? "absolute" : "relative",
table[i]->addr);
exit(EXIT_FAILURE);
}
expand_symbol(table[i]->sym, table[i]->len, buf);
printf("\t.long\t%#x /* %s */\n", (int)offset, buf);
} else if (!symbol_absolute(table[i])) {
output_address(table[i]->addr);
} else {
printf("\tPTR\t%#llx\n", table[i]->addr);
}
}
printf("\n");
if (base_relative) {
output_label("kallsyms_relative_base");
output_address(relative_base);
printf("\n");
}
output_label("kallsyms_num_syms");
printf("\t.long\t%u\n", table_cnt);
printf("\n");
@ -521,15 +471,6 @@ static void write_src(void)
free(markers);
sort_symbols_by_name();
output_label("kallsyms_seqs_of_names");
for (i = 0; i < table_cnt; i++)
printf("\t.byte 0x%02x, 0x%02x, 0x%02x\n",
(unsigned char)(table[i]->seq >> 16),
(unsigned char)(table[i]->seq >> 8),
(unsigned char)(table[i]->seq >> 0));
printf("\n");
output_label("kallsyms_token_table");
off = 0;
for (i = 0; i < 256; i++) {
@ -544,6 +485,65 @@ static void write_src(void)
for (i = 0; i < 256; i++)
printf("\t.short\t%d\n", best_idx[i]);
printf("\n");
if (!base_relative)
output_label("kallsyms_addresses");
else
output_label("kallsyms_offsets");
for (i = 0; i < table_cnt; i++) {
if (base_relative) {
/*
* Use the offset relative to the lowest value
* encountered of all relative symbols, and emit
* non-relocatable fixed offsets that will be fixed
* up at runtime.
*/
long long offset;
int overflow;
if (!absolute_percpu) {
offset = table[i]->addr - relative_base;
overflow = (offset < 0 || offset > UINT_MAX);
} else if (symbol_absolute(table[i])) {
offset = table[i]->addr;
overflow = (offset < 0 || offset > INT_MAX);
} else {
offset = relative_base - table[i]->addr - 1;
overflow = (offset < INT_MIN || offset >= 0);
}
if (overflow) {
fprintf(stderr, "kallsyms failure: "
"%s symbol value %#llx out of range in relative mode\n",
symbol_absolute(table[i]) ? "absolute" : "relative",
table[i]->addr);
exit(EXIT_FAILURE);
}
expand_symbol(table[i]->sym, table[i]->len, buf);
printf("\t.long\t%#x /* %s */\n", (int)offset, buf);
} else if (!symbol_absolute(table[i])) {
output_address(table[i]->addr);
} else {
printf("\tPTR\t%#llx\n", table[i]->addr);
}
}
printf("\n");
if (base_relative) {
output_label("kallsyms_relative_base");
output_address(relative_base);
printf("\n");
}
sort_symbols_by_name();
output_label("kallsyms_seqs_of_names");
for (i = 0; i < table_cnt; i++)
printf("\t.byte 0x%02x, 0x%02x, 0x%02x\n",
(unsigned char)(table[i]->seq >> 16),
(unsigned char)(table[i]->seq >> 8),
(unsigned char)(table[i]->seq >> 0));
printf("\n");
}