~ruther/qmk_firmware

dedc54a328ab900f47da8478bd9c6b7d14891e15 — Stefan Kerkmann 2 years ago 233ae20
[Core] guard action related debug messages (#19348)

5 files changed, 99 insertions(+), 158 deletions(-)

M quantum/action.c
M quantum/action.h
M quantum/action_layer.c
M quantum/action_tapping.c
D quantum/logging/nodebug.h
M quantum/action.c => quantum/action.c +42 -65
@@ 16,12 16,6 @@ along with this program.  If not, see <http://www.gnu.org/licenses/>.
*/
#include <limits.h>

#ifdef DEBUG_ACTION
#    include "debug.h"
#else
#    include "nodebug.h"
#endif

#include "host.h"
#include "keycode.h"
#include "keyboard.h"


@@ 77,10 71,10 @@ __attribute__((weak)) bool pre_process_record_quantum(keyrecord_t *record) {
 */
void action_exec(keyevent_t event) {
    if (!IS_NOEVENT(event)) {
        dprint("\n---- action_exec: start -----\n");
        dprint("EVENT: ");
        ac_dprintf("\n---- action_exec: start -----\n");
        ac_dprintf("EVENT: ");
        debug_event(event);
        dprintln();
        ac_dprintf("\n");
#if defined(RETRO_TAPPING) || defined(RETRO_TAPPING_PER_KEY) || (defined(AUTO_SHIFT_ENABLE) && defined(RETRO_SHIFT))
        retro_tapping_counter++;
#endif


@@ 132,7 126,7 @@ void action_exec(keyevent_t event) {
        process_record(&record);
    }
    if (!IS_NOEVENT(record.event)) {
        dprint("processed: ");
        ac_dprintf("processed: ");
        debug_record(record);
        dprintln();
    }


@@ 280,15 274,15 @@ void process_record_handler(keyrecord_t *record) {
#else
    action_t action = store_or_get_action(record->event.pressed, record->event.key);
#endif
    dprint("ACTION: ");
    ac_dprintf("ACTION: ");
    debug_action(action);
#ifndef NO_ACTION_LAYER
    dprint(" layer_state: ");
    ac_dprintf(" layer_state: ");
    layer_debug();
    dprint(" default_layer_state: ");
    ac_dprintf(" default_layer_state: ");
    default_layer_debug();
#endif
    dprintln();
    ac_dprintf("\n");

    process_action(record, action);
}


@@ 432,14 426,14 @@ void process_action(keyrecord_t *record, action_t action) {
                    } else {
                        if (event.pressed) {
                            if (tap_count == 0) {
                                dprint("MODS_TAP: Oneshot: 0\n");
                                ac_dprintf("MODS_TAP: Oneshot: 0\n");
                                register_mods(mods | get_oneshot_mods());
                            } else if (tap_count == 1) {
                                dprint("MODS_TAP: Oneshot: start\n");
                                ac_dprintf("MODS_TAP: Oneshot: start\n");
                                set_oneshot_mods(mods | get_oneshot_mods());
#        if defined(ONESHOT_TAP_TOGGLE) && ONESHOT_TAP_TOGGLE > 1
                            } else if (tap_count == ONESHOT_TAP_TOGGLE) {
                                dprint("MODS_TAP: Toggling oneshot");
                                ac_dprintf("MODS_TAP: Toggling oneshot");
                                register_mods(mods);
                                clear_oneshot_mods();
                                set_oneshot_locked_mods(mods | get_oneshot_locked_mods());


@@ 490,23 484,23 @@ void process_action(keyrecord_t *record, action_t action) {
                                get_hold_on_other_key_press(get_event_keycode(record->event, false), record) &&
#        endif
                                record->tap.interrupted) {
                                dprint("mods_tap: tap: cancel: add_mods\n");
                                ac_dprintf("mods_tap: tap: cancel: add_mods\n");
                                // ad hoc: set 0 to cancel tap
                                record->tap.count = 0;
                                register_mods(mods);
                            } else
#    endif
                            {
                                dprint("MODS_TAP: Tap: register_code\n");
                                ac_dprintf("MODS_TAP: Tap: register_code\n");
                                register_code(action.key.code);
                            }
                        } else {
                            dprint("MODS_TAP: No tap: add_mods\n");
                            ac_dprintf("MODS_TAP: No tap: add_mods\n");
                            register_mods(mods);
                        }
                    } else {
                        if (tap_count > 0) {
                            dprint("MODS_TAP: Tap: unregister_code\n");
                            ac_dprintf("MODS_TAP: Tap: unregister_code\n");
                            if (action.layer_tap.code == KC_CAPS_LOCK) {
                                wait_ms(TAP_HOLD_CAPS_DELAY);
                            } else {


@@ 514,7 508,7 @@ void process_action(keyrecord_t *record, action_t action) {
                            }
                            unregister_code(action.key.code);
                        } else {
                            dprint("MODS_TAP: No tap: add_mods\n");
                            ac_dprintf("MODS_TAP: No tap: add_mods\n");
                            unregister_mods(mods);
                        }
                    }


@@ 666,15 660,15 @@ void process_action(keyrecord_t *record, action_t action) {
                    /* tap key */
                    if (event.pressed) {
                        if (tap_count > 0) {
                            dprint("KEYMAP_TAP_KEY: Tap: register_code\n");
                            ac_dprintf("KEYMAP_TAP_KEY: Tap: register_code\n");
                            register_code(action.layer_tap.code);
                        } else {
                            dprint("KEYMAP_TAP_KEY: No tap: On on press\n");
                            ac_dprintf("KEYMAP_TAP_KEY: No tap: On on press\n");
                            layer_on(action.layer_tap.val);
                        }
                    } else {
                        if (tap_count > 0) {
                            dprint("KEYMAP_TAP_KEY: Tap: unregister_code\n");
                            ac_dprintf("KEYMAP_TAP_KEY: Tap: unregister_code\n");
                            if (action.layer_tap.code == KC_CAPS_LOCK) {
                                wait_ms(TAP_HOLD_CAPS_DELAY);
                            } else {


@@ 682,7 676,7 @@ void process_action(keyrecord_t *record, action_t action) {
                            }
                            unregister_code(action.layer_tap.code);
                        } else {
                            dprint("KEYMAP_TAP_KEY: No tap: Off on release\n");
                            ac_dprintf("KEYMAP_TAP_KEY: No tap: Off on release\n");
                            layer_off(action.layer_tap.val);
                        }
                    }


@@ 882,32 876,15 @@ __attribute__((weak)) void register_code(uint8_t code) {
        // TODO: should push command_proc out of this block?
        if (command_proc(code)) return;

#ifndef NO_ACTION_ONESHOT
/* TODO: remove
        if (oneshot_state.mods && !oneshot_state.disabled) {
            uint8_t tmp_mods = get_mods();
            add_mods(oneshot_state.mods);

            add_key(code);
            send_keyboard_report();

            set_mods(tmp_mods);
            send_keyboard_report();
            oneshot_cancel();
        } else
*/
#endif
        {
            // Force a new key press if the key is already pressed
            // without this, keys with the same keycode, but different
            // modifiers will be reported incorrectly, see issue #1708
            if (is_key_pressed(keyboard_report, code)) {
                del_key(code);
                send_keyboard_report();
            }
            add_key(code);
        // Force a new key press if the key is already pressed
        // without this, keys with the same keycode, but different
        // modifiers will be reported incorrectly, see issue #1708
        if (is_key_pressed(keyboard_report, code)) {
            del_key(code);
            send_keyboard_report();
        }
        add_key(code);
        send_keyboard_report();
    } else if IS_MOD (code) {
        add_mods(MOD_BIT(code));
        send_keyboard_report();


@@ 1139,7 1116,7 @@ bool is_tap_action(action_t action) {
 * FIXME: Needs documentation.
 */
void debug_event(keyevent_t event) {
    dprintf("%04X%c(%u)", (event.key.row << 8 | event.key.col), (event.pressed ? 'd' : 'u'), event.time);
    ac_dprintf("%04X%c(%u)", (event.key.row << 8 | event.key.col), (event.pressed ? 'd' : 'u'), event.time);
}
/** \brief Debug print (FIXME: Needs better description)
 *


@@ 1148,7 1125,7 @@ void debug_event(keyevent_t event) {
void debug_record(keyrecord_t record) {
    debug_event(record.event);
#ifndef NO_ACTION_TAPPING
    dprintf(":%u%c", record.tap.count, (record.tap.interrupted ? '-' : ' '));
    ac_dprintf(":%u%c", record.tap.count, (record.tap.interrupted ? '-' : ' '));
#endif
}



@@ 1159,41 1136,41 @@ void debug_record(keyrecord_t record) {
void debug_action(action_t action) {
    switch (action.kind.id) {
        case ACT_LMODS:
            dprint("ACT_LMODS");
            ac_dprintf("ACT_LMODS");
            break;
        case ACT_RMODS:
            dprint("ACT_RMODS");
            ac_dprintf("ACT_RMODS");
            break;
        case ACT_LMODS_TAP:
            dprint("ACT_LMODS_TAP");
            ac_dprintf("ACT_LMODS_TAP");
            break;
        case ACT_RMODS_TAP:
            dprint("ACT_RMODS_TAP");
            ac_dprintf("ACT_RMODS_TAP");
            break;
        case ACT_USAGE:
            dprint("ACT_USAGE");
            ac_dprintf("ACT_USAGE");
            break;
        case ACT_MOUSEKEY:
            dprint("ACT_MOUSEKEY");
            ac_dprintf("ACT_MOUSEKEY");
            break;
        case ACT_LAYER:
            dprint("ACT_LAYER");
            ac_dprintf("ACT_LAYER");
            break;
        case ACT_LAYER_MODS:
            dprint("ACT_LAYER_MODS");
            ac_dprintf("ACT_LAYER_MODS");
            break;
        case ACT_LAYER_TAP:
            dprint("ACT_LAYER_TAP");
            ac_dprintf("ACT_LAYER_TAP");
            break;
        case ACT_LAYER_TAP_EXT:
            dprint("ACT_LAYER_TAP_EXT");
            ac_dprintf("ACT_LAYER_TAP_EXT");
            break;
        case ACT_SWAP_HANDS:
            dprint("ACT_SWAP_HANDS");
            ac_dprintf("ACT_SWAP_HANDS");
            break;
        default:
            dprint("UNKNOWN");
            ac_dprintf("UNKNOWN");
            break;
    }
    dprintf("[%X:%02X]", action.kind.param >> 8, action.kind.param & 0xff);
    ac_dprintf("[%X:%02X]", action.kind.param >> 8, action.kind.param & 0xff);
}

M quantum/action.h => quantum/action.h +13 -1
@@ 112,7 112,19 @@ bool is_tap_action(action_t action);
void process_record_tap_hint(keyrecord_t *record);
#endif

/* debug */
////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
// Helpers

#ifdef ACTION_DEBUG
#    include "debug.h"
#    include "print.h"
#    define ac_dprintf(...) dprintf(__VA_ARGS__)
#else
#    define ac_dprintf(...) \
        do {                \
        } while (0)
#endif

void debug_event(keyevent_t event);
void debug_record(keyrecord_t record);
void debug_action(action_t action);

M quantum/action_layer.c => quantum/action_layer.c +8 -14
@@ 1,12 1,6 @@
#include <limits.h>
#include <stdint.h>

#ifdef DEBUG_ACTION
#    include "debug.h"
#else
#    include "nodebug.h"
#endif

#include "keyboard.h"
#include "keymap.h"
#include "action.h"


@@ 39,12 33,12 @@ __attribute__((weak)) layer_state_t default_layer_state_set_kb(layer_state_t sta
 */
static void default_layer_state_set(layer_state_t state) {
    state = default_layer_state_set_kb(state);
    debug("default_layer_state: ");
    ac_dprintf("default_layer_state: ");
    default_layer_debug();
    debug(" to ");
    ac_dprintf(" to ");
    default_layer_state = state;
    default_layer_debug();
    debug("\n");
    ac_dprintf("\n");
#if defined(STRICT_LAYER_RELEASE)
    clear_keyboard_but_mods(); // To avoid stuck keys
#elif defined(SEMI_STRICT_LAYER_RELEASE)


@@ 57,7 51,7 @@ static void default_layer_state_set(layer_state_t state) {
 * Print out the hex value of the 32-bit default layer state, as well as the value of the highest bit.
 */
void default_layer_debug(void) {
    dprintf("%08lX(%u)", default_layer_state, get_highest_layer(default_layer_state));
    ac_dprintf("%08hX(%u)", default_layer_state, get_highest_layer(default_layer_state));
}

/** \brief Default Layer Set


@@ 119,12 113,12 @@ __attribute__((weak)) layer_state_t layer_state_set_kb(layer_state_t state) {
 */
void layer_state_set(layer_state_t state) {
    state = layer_state_set_kb(state);
    dprint("layer_state: ");
    ac_dprintf("layer_state: ");
    layer_debug();
    dprint(" to ");
    ac_dprintf(" to ");
    layer_state = state;
    layer_debug();
    dprintln();
    ac_dprintf("\n");
#    if defined(STRICT_LAYER_RELEASE)
    clear_keyboard_but_mods(); // To avoid stuck keys
#    elif defined(SEMI_STRICT_LAYER_RELEASE)


@@ 218,7 212,7 @@ void layer_xor(layer_state_t state) {
 * Print out the hex value of the 32-bit layer state, as well as the value of the highest bit.
 */
void layer_debug(void) {
    dprintf("%08lX(%u)", layer_state, get_highest_layer(layer_state));
    ac_dprintf("%08hX(%u)", layer_state, get_highest_layer(layer_state));
}
#endif


M quantum/action_tapping.c => quantum/action_tapping.c +36 -52
@@ 1,12 1,6 @@
#include <stdint.h>
#include <stdbool.h>

#ifdef DEBUG_ACTION
#    include "debug.h"
#else
#    include "nodebug.h"
#endif

#include "action.h"
#include "action_layer.h"
#include "action_tapping.h"


@@ 92,14 86,14 @@ static void debug_waiting_buffer(void);
void action_tapping_process(keyrecord_t record) {
    if (process_tapping(&record)) {
        if (!IS_NOEVENT(record.event)) {
            debug("processed: ");
            ac_dprintf("processed: ");
            debug_record(record);
            debug("\n");
            ac_dprintf("\n");
        }
    } else {
        if (!waiting_buffer_enq(record)) {
            // clear all in case of overflow.
            debug("OVERFLOW: CLEAR ALL STATES\n");
            ac_dprintf("OVERFLOW: CLEAR ALL STATES\n");
            clear_keyboard();
            waiting_buffer_clear();
            tapping_key = (keyrecord_t){};


@@ 108,21 102,19 @@ void action_tapping_process(keyrecord_t record) {

    // process waiting_buffer
    if (!IS_NOEVENT(record.event) && waiting_buffer_head != waiting_buffer_tail) {
        debug("---- action_exec: process waiting_buffer -----\n");
        ac_dprintf("---- action_exec: process waiting_buffer -----\n");
    }
    for (; waiting_buffer_tail != waiting_buffer_head; waiting_buffer_tail = (waiting_buffer_tail + 1) % WAITING_BUFFER_SIZE) {
        if (process_tapping(&waiting_buffer[waiting_buffer_tail])) {
            debug("processed: waiting_buffer[");
            debug_dec(waiting_buffer_tail);
            debug("] = ");
            ac_dprintf("processed: waiting_buffer[%u] =", waiting_buffer_tail);
            debug_record(waiting_buffer[waiting_buffer_tail]);
            debug("\n\n");
            ac_dprintf("\n\n");
        } else {
            break;
        }
    }
    if (!IS_NOEVENT(record.event)) {
        debug("\n");
        ac_dprintf("\n");
    }
}



@@ 195,7 187,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    retroshift_swap_times();
#    endif
                    // first tap!
                    debug("Tapping: First tap(0->1).\n");
                    ac_dprintf("Tapping: First tap(0->1).\n");
                    tapping_key.tap.count = 1;
                    debug_tapping_key();
                    process_record(&tapping_key);


@@ 237,7 229,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    )
                ) {
                    // clang-format on
                    debug("Tapping: End. No tap. Interfered by typing key\n");
                    ac_dprintf("Tapping: End. No tap. Interfered by typing key\n");
                    process_record(&tapping_key);
                    tapping_key = (keyrecord_t){};
                    debug_tapping_key();


@@ 274,7 266,7 @@ bool process_tapping(keyrecord_t *keyp) {
                            break;
                    }
                    // Release of key should be process immediately.
                    debug("Tapping: release event of a key pressed before tapping\n");
                    ac_dprintf("Tapping: release event of a key pressed before tapping\n");
                    process_record(keyp);
                    return true;
                } else {


@@ 282,7 274,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    if (event.pressed) {
                        tapping_key.tap.interrupted = true;
                        if (TAP_GET_HOLD_ON_OTHER_KEY_PRESS) {
                            debug("Tapping: End. No tap. Interfered by pressed key\n");
                            ac_dprintf("Tapping: End. No tap. Interfered by pressed key\n");
                            process_record(&tapping_key);
                            tapping_key = (keyrecord_t){};
                            debug_tapping_key();


@@ 297,9 289,7 @@ bool process_tapping(keyrecord_t *keyp) {
            // tap_count > 0
            else {
                if (IS_TAPPING_RECORD(keyp) && !event.pressed) {
                    debug("Tapping: Tap release(");
                    debug_dec(tapping_key.tap.count);
                    debug(")\n");
                    ac_dprintf("Tapping: Tap release(%u)\n", tapping_key.tap.count);
                    keyp->tap = tapping_key.tap;
                    process_record(keyp);
                    tapping_key = *keyp;


@@ 307,7 297,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    return true;
                } else if (is_tap_record(keyp) && event.pressed) {
                    if (tapping_key.tap.count > 1) {
                        debug("Tapping: Start new tap with releasing last tap(>1).\n");
                        ac_dprintf("Tapping: Start new tap with releasing last tap(>1).\n");
                        // unregister key
                        process_record(&(keyrecord_t){
                            .tap           = tapping_key.tap,


@@ 319,7 309,7 @@ bool process_tapping(keyrecord_t *keyp) {
#    endif
                        });
                    } else {
                        debug("Tapping: Start while last tap(1).\n");
                        ac_dprintf("Tapping: Start while last tap(1).\n");
                    }
                    tapping_key = *keyp;
                    waiting_buffer_scan_tap();


@@ 327,7 317,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    return true;
                } else {
                    if (!IS_NOEVENT(event)) {
                        debug("Tapping: key event while last tap(>0).\n");
                        ac_dprintf("Tapping: key event while last tap(>0).\n");
                    }
                    process_record(keyp);
                    return true;


@@ 337,23 327,23 @@ bool process_tapping(keyrecord_t *keyp) {
        // after TAPPING_TERM
        else {
            if (tapping_key.tap.count == 0) {
                debug("Tapping: End. Timeout. Not tap(0): ");
                ac_dprintf("Tapping: End. Timeout. Not tap(0): ");
                debug_event(event);
                debug("\n");
                ac_dprintf("\n");
                process_record(&tapping_key);
                tapping_key = (keyrecord_t){};
                debug_tapping_key();
                return false;
            } else {
                if (IS_TAPPING_RECORD(keyp) && !event.pressed) {
                    debug("Tapping: End. last timeout tap release(>0).");
                    ac_dprintf("Tapping: End. last timeout tap release(>0).");
                    keyp->tap = tapping_key.tap;
                    process_record(keyp);
                    tapping_key = (keyrecord_t){};
                    return true;
                } else if (is_tap_record(keyp) && event.pressed) {
                    if (tapping_key.tap.count > 1) {
                        debug("Tapping: Start new tap with releasing last timeout tap(>1).\n");
                        ac_dprintf("Tapping: Start new tap with releasing last timeout tap(>1).\n");
                        // unregister key
                        process_record(&(keyrecord_t){
                            .tap           = tapping_key.tap,


@@ 365,7 355,7 @@ bool process_tapping(keyrecord_t *keyp) {
#    endif
                        });
                    } else {
                        debug("Tapping: Start while last timeout tap(1).\n");
                        ac_dprintf("Tapping: Start while last timeout tap(1).\n");
                    }
                    tapping_key = *keyp;
                    waiting_buffer_scan_tap();


@@ 373,7 363,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    return true;
                } else {
                    if (!IS_NOEVENT(event)) {
                        debug("Tapping: key event while last timeout tap(>0).\n");
                        ac_dprintf("Tapping: key event while last timeout tap(>0).\n");
                    }
                    process_record(keyp);
                    return true;


@@ 388,9 378,7 @@ bool process_tapping(keyrecord_t *keyp) {
                        // sequential tap.
                        keyp->tap = tapping_key.tap;
                        if (keyp->tap.count < 15) keyp->tap.count += 1;
                        debug("Tapping: Tap press(");
                        debug_dec(keyp->tap.count);
                        debug(")\n");
                        ac_dprintf("Tapping: Tap press(%u)\n", keyp->tap.count);
                        process_record(keyp);
                        tapping_key = *keyp;
                        debug_tapping_key();


@@ 401,7 389,7 @@ bool process_tapping(keyrecord_t *keyp) {
                    return true;
                } else if (is_tap_record(keyp)) {
                    // Sequential tap can be interfered with other tap key.
                    debug("Tapping: Start with interfering other tap.\n");
                    ac_dprintf("Tapping: Start with interfering other tap.\n");
                    tapping_key = *keyp;
                    waiting_buffer_scan_tap();
                    debug_tapping_key();


@@ 414,16 402,16 @@ bool process_tapping(keyrecord_t *keyp) {
                    return true;
                }
            } else {
                if (!IS_NOEVENT(event)) debug("Tapping: other key just after tap.\n");
                if (!IS_NOEVENT(event)) ac_dprintf("Tapping: other key just after tap.\n");
                process_record(keyp);
                return true;
            }
        } else {
            // FIX: process_action here?
            // timeout. no sequential tap.
            debug("Tapping: End(Timeout after releasing last tap): ");
            ac_dprintf("Tapping: End(Timeout after releasing last tap): ");
            debug_event(event);
            debug("\n");
            ac_dprintf("\n");
            tapping_key = (keyrecord_t){};
            debug_tapping_key();
            return false;


@@ 432,7 420,7 @@ bool process_tapping(keyrecord_t *keyp) {
    // not tapping state
    else {
        if (event.pressed && is_tap_record(keyp)) {
            debug("Tapping: Start(Press tap key).\n");
            ac_dprintf("Tapping: Start(Press tap key).\n");
            tapping_key = *keyp;
            process_record_tap_hint(&tapping_key);
            waiting_buffer_scan_tap();


@@ 455,14 443,14 @@ bool waiting_buffer_enq(keyrecord_t record) {
    }

    if ((waiting_buffer_head + 1) % WAITING_BUFFER_SIZE == waiting_buffer_tail) {
        debug("waiting_buffer_enq: Over flow.\n");
        ac_dprintf("waiting_buffer_enq: Over flow.\n");
        return false;
    }

    waiting_buffer[waiting_buffer_head] = record;
    waiting_buffer_head                 = (waiting_buffer_head + 1) % WAITING_BUFFER_SIZE;

    debug("waiting_buffer_enq: ");
    ac_dprintf("waiting_buffer_enq: ");
    debug_waiting_buffer();
    return true;
}


@@ 516,9 504,7 @@ void waiting_buffer_scan_tap(void) {
            waiting_buffer[i].tap.count = 1;
            process_record(&tapping_key);

            debug("waiting_buffer_scan_tap: found at [");
            debug_dec(i);
            debug("]\n");
            ac_dprintf("waiting_buffer_scan_tap: found at [%u]\n", i);
            debug_waiting_buffer();
            return;
        }


@@ 530,9 516,9 @@ void waiting_buffer_scan_tap(void) {
 * FIXME: Needs docs
 */
static void debug_tapping_key(void) {
    debug("TAPPING_KEY=");
    ac_dprintf("TAPPING_KEY=");
    debug_record(tapping_key);
    debug("\n");
    ac_dprintf("\n");
}

/** \brief Waiting buffer debug print


@@ 540,15 526,13 @@ static void debug_tapping_key(void) {
 * FIXME: Needs docs
 */
static void debug_waiting_buffer(void) {
    debug("{ ");
    ac_dprintf("{ ");
    for (uint8_t i = waiting_buffer_tail; i != waiting_buffer_head; i = (i + 1) % WAITING_BUFFER_SIZE) {
        debug("[");
        debug_dec(i);
        debug("]=");
        ac_dprintf("[%u]=", i);
        debug_record(waiting_buffer[i]);
        debug(" ");
        ac_dprintf(" ");
    }
    debug("}\n");
    ac_dprintf("}\n");
}

#endif

D quantum/logging/nodebug.h => quantum/logging/nodebug.h +0 -26
@@ 1,26 0,0 @@
/*
Copyright 2013 Jun Wako <wakojun@gmail.com>

This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 2 of the License, or
(at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU General Public License for more details.

You should have received a copy of the GNU General Public License
along with this program.  If not, see <http://www.gnu.org/licenses/>.
*/

#pragma once

#ifndef NO_DEBUG
#    define NO_DEBUG
#    include "debug.h"
#    undef NO_DEBUG
#else
#    include "debug.h"
#endif