Files
s390-tools/hyptop/table.c
Mete Durlu 0d6e63abdc hyptop: Calculate sample time delta for physical partition
Physical machine information does not include any monotonically
increasing time field like other per CPU information blocks. This
Prevents the percentage calculation for the physical information fields
as the divisor(time_delta) is missing;

field% = (value_current - value_previous) / time_delta

To circumvent that, use the current partition's per CPU online time
values to calculate the time_delta. Integrate time_delta as a new
field(phys_delta_us) specific to the physical systems.

Explicitly CPU0 online time is used, since CPU0 is always online
and cannot be deconfigured on s390x. Its online-time deltas would
match those of the physical CPUs.

Since a new field has to be used for physical systems a new
column in the table also has to be created but instead map the
physical system field to the corresponding regular system fields
for a nicer table view.

Reviewed-by: Vasily Gorbik <gor@linux.ibm.com>
Signed-off-by: Mete Durlu <meted@linux.ibm.com>
Signed-off-by: Steffen Eiden <seiden@linux.ibm.com>
2025-12-10 14:40:51 +01:00

1317 lines
27 KiB
C

/*
* hyptop - Show hypervisor performance data on System z
*
* Table module: Provide line mode and curses base table
*
* Copyright IBM Corp. 2010, 2017
*
* s390-tools is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <ctype.h>
#include <errno.h>
#include <ncurses.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "lib/util_fmt.h"
#include "lib/util_libc.h"
#include "helper.h"
#include "hyptop.h"
#include "table.h"
#define L_ROWS_EXTRA 2 /* head + last */
#define table_col_iterate(t, col, i) \
for (i = 0, col = t->col_vec[0]; col != NULL; col = t->col_vec[++i])
/*
* Is row marked?
*/
static int l_row_is_marked(struct table *t, struct table_row *row)
{
struct table_mark_key *key;
util_list_iterate(&t->mark_key_list, key) {
if (strcmp(row->entries[0].str, key->str) == 0)
return 1;
}
return 0;
}
/*
* Add mark key to table
*/
static void l_mark_key_add(struct table *t, char *str)
{
struct table_mark_key *key;
key = ht_zalloc(sizeof(*key));
util_strlcpy(key->str, str, sizeof(key->str));
util_list_add_tail(&t->mark_key_list, key);
}
/*
* Remove mark key from table
*/
static void l_mark_key_remove(struct table *t, char *str)
{
struct table_mark_key *key, *tmp;
util_list_iterate_safe(&t->mark_key_list, key, tmp) {
if (strcmp(str, key->str) == 0) {
util_list_remove(&t->mark_key_list, key);
ht_free(key);
return;
}
}
}
/*
* Delete all mark keys from table
*/
void table_row_mark_del_all(struct table *t)
{
struct table_mark_key *key, *tmp;
struct table_row *row;
util_list_iterate(&t->row_list, row)
row->marked = 0;
util_list_iterate_safe(&t->mark_key_list, key, tmp) {
util_list_remove(&t->mark_key_list, key);
ht_free(key);
}
}
/*
* Toggle mark for "row"
*/
void table_row_mark_toggle(struct table *t, struct table_row *row)
{
if (row->marked) {
l_mark_key_remove(t, row->entries[0].str);
row->marked = 0;
t->row_cnt_marked--;
if (t->row_cnt_marked == 0)
t->mode_hide_unmarked = 0;
} else {
l_mark_key_add(t, row->entries[0].str);
row->marked = 1;
t->row_cnt_marked++;
}
}
/*
* Toggle mark by key
*/
void table_row_mark_toggle_by_key(struct table *t, const char *str)
{
struct table_row *row;
util_list_iterate(&t->row_list, row) {
if (strcmp(str, row->entries[0].str) == 0)
table_row_mark_toggle(t, row);
}
}
/*
* Is column selected?
*/
static int l_col_selected(struct table *t, struct table_col *col)
{
return t->col_selected == col;
}
/*
* Get number of rows for table
*/
static int l_row_cnt(struct table *t)
{
return t->mode_hide_unmarked ? t->row_cnt_marked : t->row_cnt;
}
/*
* Get number of data rows that we can display on screen
*/
static int l_row_cnt_displ(struct table *t)
{
return g.c.row_cnt - t->row_cnt_extra;
}
/*
* Alloc a new row for table
*/
struct table_row *table_row_alloc(struct table *t)
{
struct table_row *table_row;
table_row = ht_zalloc(sizeof(*table_row));
table_row->entries = ht_zalloc(sizeof(*table_row->entries) *
t->col_cnt);
return table_row;
}
/*
* Free table row
*/
static void table_row_free(struct table_row *table_row)
{
ht_free(table_row->entries);
ht_free(table_row);
}
/*
* Allocate and initialize a new table
*/
struct table *table_new(int extra_rows, int sorted, int first_bold,
int with_units)
{
struct table *t = ht_zalloc(sizeof(*t));
util_list_init(&t->row_list, struct table_row, list);
util_list_init(&t->mark_key_list, struct table_mark_key, list);
t->row_cnt_marked = 0;
if (with_units)
t->row_cnt_extra = extra_rows + L_ROWS_EXTRA + 1;
else
t->row_cnt_extra = extra_rows + L_ROWS_EXTRA;
t->attr_with_units = with_units;
t->attr_sorted_table = sorted;
t->attr_first_bold = first_bold;
return t;
}
/*
* Initialize headline for one column
*/
static void l_col_headline_init(struct table *t, struct table_col *col)
{
char *ptr;
strcpy(col->p->head_first, col->head);
ptr = strchr(col->p->head_first, tolower(col->hotkey));
assert(ptr != NULL);
*ptr = 0;
col->p->head_char[0] = col->hotkey;
strcpy(col->p->head_last, ++ptr);
if (!t->attr_sorted_table) {
util_str_toupper(col->p->head_first);
util_str_toupper(col->p->head_last);
col->p->head_char[0] = toupper(col->p->head_char[0]);
}
}
/*
* Initialize the max width values for a column
*/
static void l_col_max_width_init(struct table *t, struct table_col *col)
{
/* Units are displayed with brackets, therefore (+2) */
if (t->attr_with_units)
col->p->max_width = MAX(strlen(col->head),
strlen(col->unit->str) + 2);
else
col->p->max_width = strlen(col->head);
}
/*
* Add a new column to table
*/
void table_col_add(struct table *t, struct table_col *col)
{
col->p = ht_zalloc(sizeof(*col->p));
col->p->col_nr = t->col_cnt;
col->p->enabled = 1;
t->col_cnt++;
t->col_vec = ht_realloc(t->col_vec, sizeof(void *) *
(t->col_cnt + 1));
t->col_vec[t->col_cnt - 1] = col;
t->col_vec[t->col_cnt] = NULL;
if (!t->col_selected && t->attr_sorted_table)
t->col_selected = col;
if (t->row_last)
table_row_free(t->row_last);
t->row_last = table_row_alloc(t);
l_col_headline_init(t, col);
l_col_max_width_init(t, col);
}
/*
* Initialize last row
*/
static void l_row_last_init(struct table *t)
{
memset(t->row_last->entries, 0,
t->col_cnt * sizeof(struct table_entry));
}
/*
* Delete all rows of a table
*/
void table_row_del_all(struct table *t)
{
struct table_row *row, *tmp;
util_list_iterate_safe(&t->row_list, row, tmp) {
util_list_remove(&t->row_list, row);
table_row_free(row);
}
if (t->row_physical) {
table_row_free(t->row_physical);
t->row_physical = NULL;
}
l_row_last_init(t);
t->row_cnt_marked = 0;
t->ready = 0;
t->row_cnt = 0;
}
/*
* Reset table
*/
void table_reset(struct table *t)
{
table_row_mark_del_all(t);
table_row_del_all(t);
t->mode_sort_inverse = 0;
t->mode_select = 0;
}
/*
* Return true, if "e1" is less than "e2"
*/
static int l_entry_less_than(enum table_col_type type, struct table_entry *e1,
struct table_entry *e2)
{
switch (type) {
case TABLE_COL_TYPE_U64:
return (e1->d.u64.v1 < e2->d.u64.v1);
case TABLE_COL_TYPE_S64:
return (e1->d.s64.v1 < e2->d.s64.v1);
case TABLE_COL_TYPE_STR:
return (strcmp(e1->str, e2->str) > 0);
}
return 0; /* Keep gcc quite */
}
/*
* Return true, if "row1" is less than "row2"
*/
static int l_row_less_than(struct table *t, struct table_row *row1,
struct table_row *row2)
{
struct table_col *col = t->col_selected;
struct table_entry *e1 = &row1->entries[col->p->col_nr];
struct table_entry *e2 = &row2->entries[col->p->col_nr];
if ((t->mode_sort_inverse && !col->p->rsort) ||
(!t->mode_sort_inverse && col->p->rsort))
return !l_entry_less_than(col->type, e1, e2);
else
return l_entry_less_than(col->type, e1, e2);
}
/*
* Calculate: e1 = e1 + e2
*/
static void l_entry_sum(enum table_col_type type, struct table_entry *e1,
struct table_entry *e2)
{
switch (type) {
case TABLE_COL_TYPE_U64:
e1->d.u64.v1 += e2->d.u64.v1;
return;
case TABLE_COL_TYPE_S64:
e1->d.s64.v1 += e2->d.s64.v1;
return;
default:
assert(0);
return;
}
}
/*
* Calculate: e1 = MAX(e1, e2)
*/
static void l_entry_max(enum table_col_type type, struct table_entry *e1,
struct table_entry *e2)
{
switch (type) {
case TABLE_COL_TYPE_U64:
e1->d.u64.v1 = MAX(e1->d.u64.v1, e2->d.u64.v1);
return;
case TABLE_COL_TYPE_S64:
e1->d.s64.v1 = MAX(e1->d.s64.v1, e2->d.s64.v1);
return;
default:
assert(0);
return;
}
}
/*
* Aggregate "row" to "last row"
*/
static void l_row_last_agg(struct table *t, struct table_row *table_row)
{
struct table_col *col;
int col_nr;
table_col_iterate(t, col, col_nr) {
struct table_entry *e_last = &t->row_last->entries[col_nr];
struct table_entry *e_new = &table_row->entries[col_nr];
if (!e_new->set)
continue;
switch (col->agg) {
case TABLE_COL_AGG_SUM:
l_entry_sum(col->type, e_last, e_new);
break;
case TABLE_COL_AGG_MAX:
l_entry_max(col->type, e_last, e_new);
break;
case TABLE_COL_AGG_NONE:
break;
}
e_last->set = 1;
}
}
/*
* Format row: Invoke unit callback and adjust max width of column
*/
static void l_row_format(struct table *t, struct table_row *row)
{
unsigned int len, col_nr;
struct table_col *col;
table_col_iterate(t, col, col_nr) {
struct table_entry *e = &row->entries[col_nr];
if (col->agg == TABLE_COL_AGG_NONE && row == t->row_last)
len = 0;
else
len = col->unit->fn(col, e);
assert(len < TABLE_STR_MAX);
if (len > col->p->max_width)
col->p->max_width = len;
}
}
/*
* Calculate last row
*/
static void l_row_last_calc(struct table *t)
{
struct table_row *row;
l_row_last_init(t);
util_list_iterate(&t->row_list, row) {
if (t->mode_hide_unmarked && !row->marked)
continue;
l_row_last_agg(t, row);
}
l_row_format(t, t->row_last);
}
/*
* Finish table after all rows have been added
*/
void table_finish(struct table *t)
{
if (t->row_physical)
l_row_format(t, t->row_physical);
l_row_last_calc(t);
t->ready = 1;
}
/*
* Add new row to table
*/
void table_row_add(struct table *t, struct table_row *row)
{
struct table_row *tmp;
l_row_format(t, row);
if (util_list_is_empty(&t->row_list) || !t->attr_sorted_table) {
util_list_add_tail(&t->row_list, row);
} else {
util_list_iterate(&t->row_list, tmp) {
if (l_row_less_than(t, tmp, row))
break;
}
if (tmp)
util_list_add_prev(&t->row_list, row, tmp);
else
util_list_add_tail(&t->row_list, row);
}
if (l_row_is_marked(t, row)) {
row->marked = 1;
t->row_cnt_marked++;
}
t->row_cnt++;
}
/*
* Rebuild table: Reformat all rows and adjust max width values
*/
void table_rebuild(struct table *t)
{
struct table_col *col;
struct table_row *row;
unsigned int i;
table_col_iterate(t, col, i)
l_col_max_width_init(t, col);
util_list_iterate(&t->row_list, row)
l_row_format(t, row);
if (t->row_physical)
l_row_format(t, t->row_physical);
l_row_format(t, t->row_last);
}
/*
* Compare callback for linked list sorting (ordering: large to small)
*/
static int l_row_cmp_fn(void *a, void *b, void *data)
{
return l_row_less_than(data, a, b) ? 1 : -1;
}
/*
* Sort table (ordering: large to small)
*/
static void l_table_sort(struct table *t)
{
util_list_sort(&t->row_list, l_row_cmp_fn, t);
}
/*
* Adjust table values for select mode (e.g. for window resize or scrolling)
*/
static void l_adjust_values_select_mode(struct table *t)
{
int row_cnt_displ = l_row_cnt_displ(t);
int row_cnt = l_row_cnt(t);
/* We went out of range with row selection */
if (t->row_nr_select >= row_cnt)
t->row_nr_select = row_cnt - 1;
/* Is selected row within visible area? */
if (t->row_nr_select < t->row_nr_begin) {
/* Selected row is above area: Scroll up */
t->row_nr_begin = t->row_nr_select;
} else if (t->row_nr_select - t->row_nr_begin >= row_cnt_displ) {
/* Selected row is below area: Scroll down */
t->row_nr_begin = MAX(t->row_nr_select - row_cnt_displ + 1, 0);
}
}
/*
* Adjust table values (e.g. for window resize or scrolling)
*/
static void l_adjust_values(struct table *t)
{
int row_cnt_displ = l_row_cnt_displ(t);
int row_cnt = l_row_cnt(t);
if (t->mode_select)
l_adjust_values_select_mode(t);
/* If we do not use the whole screen, scroll up */
if (row_cnt - t->row_nr_begin < row_cnt_displ)
t->row_nr_begin = MAX(row_cnt - row_cnt_displ, 0);
}
/*
* Number of rows to be scrolled for page scroll
*/
static int l_scroll_page_row_cnt(struct table *t)
{
/* We have two rows overlap for scrolling pages */
return l_row_cnt_displ(t) - 2;
}
/*
* Scroll table down
*/
void table_scroll_down(struct table *t, enum table_scroll_unit scroll_unit)
{
switch (scroll_unit) {
case TABLE_SCROLL_LINE:
t->row_nr_begin++;
break;
case TABLE_SCROLL_PAGE:
t->row_nr_begin += l_scroll_page_row_cnt(t);
break;
case TABLE_SCROLL_LAST:
t->row_nr_begin = t->row_cnt;
break;
}
}
/*
* Scroll table up
*/
void table_scroll_up(struct table *t, enum table_scroll_unit scroll_unit)
{
switch (scroll_unit) {
case TABLE_SCROLL_LINE:
t->row_nr_begin = MAX(t->row_nr_begin - 1, 0);
break;
case TABLE_SCROLL_PAGE:
t->row_nr_begin =
MAX(t->row_nr_begin - l_scroll_page_row_cnt(t), 0);
break;
case TABLE_SCROLL_LAST:
t->row_nr_begin = 0;
break;
}
}
/*
* Return selected row
*/
static struct table_row *l_selected_row(struct table *t)
{
struct table_row *row;
int row_nr = 0;
util_list_iterate(&t->row_list, row) {
if (t->mode_hide_unmarked && !row->marked)
continue;
if (row_nr == t->row_nr_select)
return row;
row_nr++;
}
return NULL;
}
/*
* Toggle mark for selected row
*/
static void l_row_select_mark_toggle(struct table *t)
{
struct table_row *row;
row = l_selected_row(t);
table_row_mark_toggle(t, row);
l_row_last_calc(t);
}
/*
* Switch select mode off
*/
static void l_select_mode_off(struct table *t)
{
t->mode_select = 0;
}
/*
* Switch select mode on
*/
static void l_select_mode_on(struct table *t)
{
t->mode_select = 1;
t->row_nr_select = t->row_nr_begin;
}
/*
* Get key for selected row
*/
void table_row_select_key_get(struct table *t, char str[TABLE_STR_MAX])
{
struct table_row *row;
row = l_selected_row(t);
util_strlcpy(str, row->entries[0].str, TABLE_STR_MAX);
}
/*
* Select row one page down
*/
void table_row_select_down(struct table *t, enum table_scroll_unit scroll_unit)
{
switch (scroll_unit) {
case TABLE_SCROLL_LINE:
t->row_nr_select++;
break;
case TABLE_SCROLL_PAGE:
t->row_nr_select += g.c.row_cnt - t->row_cnt_extra;
break;
case TABLE_SCROLL_LAST:
t->row_nr_select = t->row_cnt;
break;
}
}
/*
* Select row one page up
*/
void table_row_select_up(struct table *t, enum table_scroll_unit scroll_unit)
{
switch (scroll_unit) {
case TABLE_SCROLL_LINE:
t->row_nr_select = MAX(t->row_nr_select - 1, 0);
break;
case TABLE_SCROLL_PAGE:
t->row_nr_select = MAX(t->row_nr_begin -
(g.c.row_cnt - t->row_cnt_extra), 0);
break;
case TABLE_SCROLL_LAST:
t->row_nr_select = 0;
break;
}
}
/*
* Toggle "hide unmarked" mode
*/
static int l_mode_hide_unmarked_toggle(struct table *t)
{
if (t->row_cnt_marked == 0)
return -ENODEV;
t->mode_hide_unmarked = t->mode_hide_unmarked ? 0 : 1;
t->row_nr_select = 0;
l_row_last_calc(t);
return 0;
}
/*
* Is it possible to scroll down the table?
*/
static int l_can_scroll_down(struct table *t)
{
int row_cnt = t->mode_hide_unmarked ? t->row_cnt_marked : t->row_cnt;
int row_cnt_real = g.c.row_cnt - t->row_cnt_extra;
return (row_cnt - t->row_nr_begin > row_cnt_real);
}
/*
* Is it possible to scroll up the table?
*/
static int l_can_scroll_up(struct table *t)
{
return (t->row_nr_begin > 0);
}
/*
* Update the status field
*/
static void l_status_update(struct table *t)
{
struct table_entry *e_status = &t->row_last->entries[0];
if (g.o.batch_mode_specified)
return;
if (l_can_scroll_down(t) && l_can_scroll_up(t))
strcpy(e_status->str, "|");
else if (l_can_scroll_up(t))
strcpy(e_status->str, "^");
else if (l_can_scroll_down(t))
strcpy(e_status->str, "V");
else
strcpy(e_status->str, "=");
if (t->attr_sorted_table) {
strcat(e_status->str, ":");
if (t->mode_sort_inverse)
strcat(e_status->str, "^");
else
strcat(e_status->str, "V");
}
strcat(e_status->str, ":");
if (t->mode_select)
strcat(e_status->str, "S");
else
strcat(e_status->str, "N");
}
/*
* Print string with alignment
*/
static void l_str_print(struct table_col *col, const char *str)
{
char unit[10];
if (col->align == TABLE_COL_ALIGN_LEFT)
sprintf(unit, "%%-%ds", col->p->max_width);
else
sprintf(unit, "%%%ds", col->p->max_width);
hyptop_printf(unit, str);
}
/*
* Print string for "col"
*/
static void l_col_print(struct table *t, struct table_col *col, const char *str)
{
if (l_col_selected(t, col))
ht_underline_on();
if (col->p->col_nr == 0 && t->attr_first_bold)
ht_bold_on();
l_str_print(col, str);
if (l_col_selected(t, col))
ht_underline_off();
if (col->p->col_nr == 0 && t->attr_first_bold)
ht_bold_off();
}
/*
* Print status field
*/
static void l_status_print(struct table *t, const char *str)
{
ht_bold_on();
l_str_print(t->col_vec[0], str);
ht_bold_off();
}
/*
* Print headline of column
*/
static void l_col_headline_print(struct table *t, struct table_col *col)
{
unsigned int len = strlen(col->head);
char blank_str[TABLE_STR_MAX];
(void) t;
memset(blank_str, ' ', col->p->max_width - len);
blank_str[col->p->max_width - len] = 0;
if (l_col_selected(t, col))
ht_bold_on();
if (col->align == TABLE_COL_ALIGN_RIGHT)
hyptop_printf("%s", blank_str);
hyptop_printf("%s", col->p->head_first);
if (t->attr_sorted_table)
ht_underline_on();
hyptop_printf("%s", col->p->head_char);
if (t->attr_sorted_table)
ht_underline_off();
hyptop_printf("%s", col->p->head_last);
if (col->align == TABLE_COL_ALIGN_LEFT)
hyptop_printf("%s", blank_str);
if (l_col_selected(t, col))
ht_bold_off();
}
/*
* Print headline for table
*/
static void l_headline_print(struct table *t)
{
struct table_col *col;
int col_nr, first = 1;
ht_reverse_on();
/* Print all column headlines */
table_col_iterate(t, col, col_nr) {
if (!col->p->enabled)
continue;
if (first)
first = 0;
else
hyptop_printf(" ");
l_col_headline_print(t, col);
}
/* This creates a black bar to the end of the line */
hyptop_print_seek_back(0);
ht_reverse_off();
hyptop_print_nl();
}
/*
* Print unit line for table
*/
static void l_unitline_print(struct table *t)
{
struct table_col *col;
int col_nr, first = 1;
char unit_str[20];
if (!t->attr_with_units)
return;
ht_reverse_on();
/* Print all column units */
table_col_iterate(t, col, col_nr) {
if (!col->p->enabled)
continue;
if (first)
first = 0;
else
hyptop_printf(" ");
if (l_col_selected(t, col))
ht_bold_on();
snprintf(unit_str, sizeof(unit_str), "(%s)", col->unit->str);
l_str_print(col, unit_str);
if (l_col_selected(t, col))
ht_bold_off();
}
/* This creates a black bar to the end of the line */
hyptop_print_seek_back(0);
ht_reverse_off();
hyptop_print_nl();
}
/*
* Print one table row
*/
static void l_row_print(struct table *t, struct table_row *row)
{
struct table_col *col;
int first = 1, col_nr;
table_col_iterate(t, col, col_nr) {
struct table_entry *e = &row->entries[col_nr];
if (!col->p->enabled)
continue;
if (!first)
hyptop_printf(" ");
else
first = 0;
if (row == t->row_last && col_nr == 0)
l_status_print(t, e->str);
else
l_col_print(t, col, e->str);
}
}
/*
* Print table under curses
*/
static void l_table_print_curses(struct table *t)
{
struct table_row *row;
int row_nr = 0;
if (!t->ready)
return;
l_adjust_values(t);
l_status_update(t);
l_headline_print(t);
l_unitline_print(t);
util_list_iterate(&t->row_list, row) {
if (t->mode_hide_unmarked && !row->marked)
continue;
if (row_nr < t->row_nr_begin) {
row_nr++;
continue;
}
if (row_nr - t->row_nr_begin >= g.c.row_cnt - t->row_cnt_extra)
break;
if (t->mode_select && row_nr == t->row_nr_select)
ht_reverse_on();
if (row->marked)
ht_bold_on();
l_row_print(t, row);
if (t->mode_select && row_nr == t->row_nr_select) {
#ifdef WITH_SCROLL_BAR
hyptop_print_seek_back(1);
#else
hyptop_print_seek_back(0);
#endif
ht_reverse_off();
}
if (row->marked)
ht_bold_off();
hyptop_print_nl();
row_nr++;
}
ht_reverse_on();
l_row_print(t, t->row_last);
if (t->row_physical) {
hyptop_print_nl();
l_row_print(t, t->row_physical);
}
hyptop_print_seek_back(0);
ht_reverse_off();
#ifdef WITH_SCROLL_BAR
if (t->mode_hide_unmarked)
ht_print_scroll_bar(t->row_cnt_marked, t->row_nr_begin,
t->row_cnt_extra - 1, 1,
l_can_scroll_up(t),
l_can_scroll_down(t), 1);
else
ht_print_scroll_bar(t->row_cnt, t->row_nr_begin,
t->row_cnt_extra - 1, 1,
l_can_scroll_up(t),
l_can_scroll_down(t), 1);
#endif
}
/*
* Print table under batch mode
*/
static void l_table_print_all(struct table *t)
{
struct table_row *row;
l_headline_print(t);
l_unitline_print(t);
util_list_iterate(&t->row_list, row) {
l_row_print(t, row);
hyptop_print_nl();
}
l_row_print(t, t->row_last);
hyptop_print_nl();
if (t->row_physical) {
l_row_print(t, t->row_physical);
hyptop_print_nl();
}
hyptop_printf("------------------------------------------------------"
"-------------------------\n");
}
/*
* Print one table row as structured output
*
* Note: column filtering and sorting is explicitly ignored because the
* assumption is that these operations can be trivially performed by the
* consumer.
*/
static void l_row_print_formatted(struct table *t, struct table_row *row)
{
struct table_col *col;
int col_nr;
table_col_iterate(t, col, col_nr) {
unsigned int flags = 0;
struct table_entry *e = &row->entries[col_nr];
if (row == t->row_last && col_nr == 0)
continue;
if (table_col_needs_quotes(col))
flags = FMT_QUOTE;
if (strcmp(e->str, "-") == 0 || strcmp(e->str, "") == 0)
flags |= FMT_INVAL;
util_fmt_pair(flags, col->head, "%s", e->str);
}
}
/*
* Print table as structured output
*/
static void l_table_print_all_formatted(struct table *t)
{
struct table_row *row;
util_fmt_obj_start(FMT_ROW, "iteration");
util_fmt_pair(FMT_PERSIST, "iteration", "%u", g.o.iterations_act);
ht_fmt_time();
ht_fmt_cpu_types();
if (t->row_physical) {
util_fmt_obj_start(FMT_ROW, "physical_information");
l_row_print_formatted(t, t->row_physical);
util_fmt_obj_end(); /* physical_information{} */
}
if (strcmp(g.o.cur_win->id, "sys_list") == 0)
util_fmt_obj_start(FMT_LIST, "systems");
else
util_fmt_obj_start(FMT_LIST, "cpus");
util_list_iterate(&t->row_list, row) {
util_fmt_obj_start(FMT_ROW, "entry");
l_row_print_formatted(t, row);
util_fmt_obj_end(); /* entry */
}
util_fmt_obj_end(); /* systems[] */
util_fmt_obj_start(FMT_DEFAULT, "summary");
l_row_print_formatted(t, t->row_last);
util_fmt_obj_end(); /* summary{} */
util_fmt_obj_end(); /* iteration */
}
void table_fmt_start(void)
{
if (!g.o.format_specified)
return;
if (g.o.format != FMT_JSONSEQ)
util_fmt_obj_start(FMT_LIST, "hyptop");
}
void table_fmt_end(void)
{
if (!g.o.format_specified)
return;
if (g.o.format != FMT_JSONSEQ)
util_fmt_obj_end(); /* hyptop[] */
}
/*
* Print table to screen
*/
void table_print(struct table *t)
{
if (g.o.batch_mode_specified) {
if (!g.o.format_specified)
l_table_print_all(t);
else
l_table_print_all_formatted(t);
} else {
l_table_print_curses(t);
}
}
/*
* Return column by hotkey
*/
static struct table_col *l_col_by_hotkey(struct table *t, char hotkey)
{
struct table_col *col;
int col_nr;
table_col_iterate(t, col, col_nr) {
if (col->hotkey == hotkey)
return col;
}
return NULL;
}
/*
* Select next unit for column with "hotkey"
*/
void table_col_unit_next(struct table *t, char hotkey)
{
struct table_col *col;
int i;
col = l_col_by_hotkey(t, hotkey);
if (!col || !col->unit_fam)
assert(0);
for (i = 0; col->unit_fam[i] != NULL; i++) {
if (col->unit != col->unit_fam[i])
continue;
if (col->unit_fam[i + 1] == NULL)
col->unit = col->unit_fam[0];
else
col->unit = col->unit_fam[i + 1];
return;
}
assert(0);
}
/*
* Select previous unit for column with "hotkey"
*/
void table_col_unit_prev(struct table *t, char hotkey)
{
struct table_col *col;
int i;
col = l_col_by_hotkey(t, hotkey);
if (!col || !col->unit_fam)
assert(0);
for (i = 0; col->unit_fam[i] != NULL; i++) {
if (col->unit != col->unit_fam[i])
continue;
if (i == 0) {
int j;
for (j = 0; col->unit_fam[j] != NULL; j++) {}
col->unit = col->unit_fam[j - 1];
} else {
col->unit = col->unit_fam[i - 1];
}
return;
}
assert(0);
}
/*
* Set unit for column
*/
int table_col_unit_set(struct table *t, char hotkey, const char *str)
{
struct table_col *col;
int i;
col = l_col_by_hotkey(t, hotkey);
if (!col)
return -ENODEV;
for (i = 0; col->unit_fam[i] != NULL; i++) {
if (strcasecmp(col->unit_fam[i]->str, str) == 0) {
col->unit = col->unit_fam[i];
return 0;
}
}
return -EINVAL;
}
/*
* Select column by hotkey
*/
int table_col_select(struct table *t, char hotkey)
{
struct table_col *col;
if (!t->attr_sorted_table)
assert(0);
col = l_col_by_hotkey(t, hotkey);
if (!col || !col->p->enabled)
return -ENODEV;
if (t->col_selected == col) {
t->mode_sort_inverse = t->mode_sort_inverse ? 0 : 1;
} else {
t->mode_sort_inverse = 0;
t->col_selected = col;
}
table_rebuild(t);
l_table_sort(t);
return 0;
}
/*
* Select next column
*/
void table_col_select_next(struct table *t)
{
int i;
for (i = t->col_selected->p->col_nr + 1; i < t->col_cnt; i++) {
if (t->col_vec[i]->p->enabled)
goto found;
}
return;
found:
t->col_selected = t->col_vec[i];
l_table_sort(t);
}
/*
* Select previous column
*/
void table_col_select_prev(struct table *t)
{
int i;
for (i = t->col_selected->p->col_nr - 1; i >= 0; i--) {
if (t->col_vec[i]->p->enabled)
goto found;
}
return;
found:
t->col_selected = t->col_vec[i];
l_table_sort(t);
}
/*
* Toggle enabled status for column
*/
void table_col_enable_toggle(struct table *t, char hotkey)
{
struct table_col *col;
col = l_col_by_hotkey(t, hotkey);
if (!col || col->p->col_nr == 0)
return;
col->p->enabled = col->p->enabled ? 0 : 1;
if (col == t->col_selected)
t->col_selected = t->col_vec[0];
}
/*
* Process input for table
*/
void table_process_input(struct table *t, int c)
{
switch (c) {
case '<':
if (t->attr_sorted_table)
table_col_select_prev(t);
break;
case '>':
if (t->attr_sorted_table)
table_col_select_next(t);
break;
case '.':
if (l_mode_hide_unmarked_toggle(t) == 0)
l_select_mode_off(t);
break;
case '+':
if (!t->attr_with_units)
break;
table_col_unit_next(t, t->col_selected->hotkey);
table_rebuild(t);
break;
case '-':
if (!t->attr_with_units)
break;
table_col_unit_prev(t, t->col_selected->hotkey);
table_rebuild(t);
break;
case 'G':
if (t->mode_select)
table_row_select_down(t, TABLE_SCROLL_LAST);
else
table_scroll_down(t, TABLE_SCROLL_LAST);
break;
case 'g':
if (t->mode_select)
table_row_select_up(t, TABLE_SCROLL_LAST);
else
table_scroll_up(t, TABLE_SCROLL_LAST);
break;
case KEY_NPAGE:
if (t->mode_select)
table_row_select_down(t, TABLE_SCROLL_PAGE);
else
table_scroll_down(t, TABLE_SCROLL_PAGE);
break;
case KEY_PPAGE:
if (t->mode_select)
table_row_select_up(t, TABLE_SCROLL_PAGE);
else
table_scroll_up(t, TABLE_SCROLL_PAGE);
break;
case 'j':
case KEY_DOWN:
if (t->mode_select)
table_row_select_down(t, TABLE_SCROLL_LINE);
else
table_scroll_down(t, TABLE_SCROLL_LINE);
break;
case 'k':
case KEY_UP:
if (t->mode_select)
table_row_select_up(t, TABLE_SCROLL_LINE);
else
table_scroll_up(t, TABLE_SCROLL_LINE);
break;
case ' ':
if (t->mode_select) {
l_row_select_mark_toggle(t);
} else {
table_row_mark_del_all(t);
t->mode_hide_unmarked = 0;
}
break;
case 'l':
case KEY_RIGHT:
if (!t->mode_select)
l_select_mode_on(t);
break;
case 'h':
case KEY_LEFT:
if (t->mode_select)
l_select_mode_off(t);
break;
default:
if (t->attr_sorted_table)
table_col_select(t, c);
}
}