525 lines
14 KiB
C
525 lines
14 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* Copyright (c) 2000-2002 Vojtech Pavlik <vojtech@ucw.cz>
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* Copyright (c) 2001-2002, 2007 Johann Deneux <johann.deneux@gmail.com>
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*
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* USB/RS232 I-Force joysticks and wheels.
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*/
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#include "iforce.h"
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/*
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* Set the magnitude of a constant force effect
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* Return error code
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*
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* Note: caller must ensure exclusive access to device
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*/
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static int make_magnitude_modifier(struct iforce* iforce,
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struct resource* mod_chunk, int no_alloc, __s16 level)
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{
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unsigned char data[3];
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if (!no_alloc) {
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mutex_lock(&iforce->mem_mutex);
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if (allocate_resource(&(iforce->device_memory), mod_chunk, 2,
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iforce->device_memory.start, iforce->device_memory.end, 2L,
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NULL, NULL)) {
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mutex_unlock(&iforce->mem_mutex);
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return -ENOSPC;
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}
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mutex_unlock(&iforce->mem_mutex);
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}
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data[0] = LO(mod_chunk->start);
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data[1] = HI(mod_chunk->start);
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data[2] = HIFIX80(level);
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iforce_send_packet(iforce, FF_CMD_MAGNITUDE, data);
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iforce_dump_packet(iforce, "magnitude", FF_CMD_MAGNITUDE, data);
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return 0;
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}
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/*
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* Upload the component of an effect dealing with the period, phase and magnitude
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*/
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static int make_period_modifier(struct iforce* iforce,
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struct resource* mod_chunk, int no_alloc,
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__s16 magnitude, __s16 offset, u16 period, u16 phase)
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{
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unsigned char data[7];
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period = TIME_SCALE(period);
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if (!no_alloc) {
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mutex_lock(&iforce->mem_mutex);
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if (allocate_resource(&(iforce->device_memory), mod_chunk, 0x0c,
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iforce->device_memory.start, iforce->device_memory.end, 2L,
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NULL, NULL)) {
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mutex_unlock(&iforce->mem_mutex);
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return -ENOSPC;
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}
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mutex_unlock(&iforce->mem_mutex);
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}
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data[0] = LO(mod_chunk->start);
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data[1] = HI(mod_chunk->start);
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data[2] = HIFIX80(magnitude);
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data[3] = HIFIX80(offset);
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data[4] = HI(phase);
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data[5] = LO(period);
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data[6] = HI(period);
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iforce_send_packet(iforce, FF_CMD_PERIOD, data);
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return 0;
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}
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/*
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* Uploads the part of an effect setting the envelope of the force
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*/
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static int make_envelope_modifier(struct iforce* iforce,
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struct resource* mod_chunk, int no_alloc,
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u16 attack_duration, __s16 initial_level,
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u16 fade_duration, __s16 final_level)
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{
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unsigned char data[8];
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attack_duration = TIME_SCALE(attack_duration);
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fade_duration = TIME_SCALE(fade_duration);
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if (!no_alloc) {
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mutex_lock(&iforce->mem_mutex);
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if (allocate_resource(&(iforce->device_memory), mod_chunk, 0x0e,
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iforce->device_memory.start, iforce->device_memory.end, 2L,
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NULL, NULL)) {
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mutex_unlock(&iforce->mem_mutex);
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return -ENOSPC;
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}
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mutex_unlock(&iforce->mem_mutex);
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}
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data[0] = LO(mod_chunk->start);
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data[1] = HI(mod_chunk->start);
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data[2] = LO(attack_duration);
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data[3] = HI(attack_duration);
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data[4] = HI(initial_level);
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data[5] = LO(fade_duration);
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data[6] = HI(fade_duration);
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data[7] = HI(final_level);
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iforce_send_packet(iforce, FF_CMD_ENVELOPE, data);
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return 0;
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}
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/*
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* Component of spring, friction, inertia... effects
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*/
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static int make_condition_modifier(struct iforce* iforce,
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struct resource* mod_chunk, int no_alloc,
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__u16 rsat, __u16 lsat, __s16 rk, __s16 lk, u16 db, __s16 center)
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{
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unsigned char data[10];
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if (!no_alloc) {
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mutex_lock(&iforce->mem_mutex);
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if (allocate_resource(&(iforce->device_memory), mod_chunk, 8,
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iforce->device_memory.start, iforce->device_memory.end, 2L,
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NULL, NULL)) {
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mutex_unlock(&iforce->mem_mutex);
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return -ENOSPC;
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}
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mutex_unlock(&iforce->mem_mutex);
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}
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data[0] = LO(mod_chunk->start);
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data[1] = HI(mod_chunk->start);
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data[2] = (100 * rk) >> 15; /* Dangerous: the sign is extended by gcc on plateforms providing an arith shift */
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data[3] = (100 * lk) >> 15; /* This code is incorrect on cpus lacking arith shift */
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center = (500 * center) >> 15;
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data[4] = LO(center);
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data[5] = HI(center);
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db = (1000 * db) >> 16;
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data[6] = LO(db);
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data[7] = HI(db);
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data[8] = (100 * rsat) >> 16;
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data[9] = (100 * lsat) >> 16;
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iforce_send_packet(iforce, FF_CMD_CONDITION, data);
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iforce_dump_packet(iforce, "condition", FF_CMD_CONDITION, data);
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return 0;
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}
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static unsigned char find_button(struct iforce *iforce, signed short button)
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{
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int i;
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for (i = 1; iforce->type->btn[i] >= 0; i++)
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if (iforce->type->btn[i] == button)
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return i + 1;
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return 0;
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}
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/*
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* Analyse the changes in an effect, and tell if we need to send an condition
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* parameter packet
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*/
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static int need_condition_modifier(struct iforce *iforce,
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struct ff_effect *old,
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struct ff_effect *new)
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{
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int ret = 0;
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int i;
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if (new->type != FF_SPRING && new->type != FF_FRICTION) {
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dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
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__func__);
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return 0;
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}
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for (i = 0; i < 2; i++) {
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ret |= old->u.condition[i].right_saturation != new->u.condition[i].right_saturation
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|| old->u.condition[i].left_saturation != new->u.condition[i].left_saturation
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|| old->u.condition[i].right_coeff != new->u.condition[i].right_coeff
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|| old->u.condition[i].left_coeff != new->u.condition[i].left_coeff
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|| old->u.condition[i].deadband != new->u.condition[i].deadband
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|| old->u.condition[i].center != new->u.condition[i].center;
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}
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return ret;
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}
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/*
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* Analyse the changes in an effect, and tell if we need to send a magnitude
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* parameter packet
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*/
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static int need_magnitude_modifier(struct iforce *iforce,
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struct ff_effect *old,
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struct ff_effect *effect)
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{
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if (effect->type != FF_CONSTANT) {
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dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
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__func__);
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return 0;
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}
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return old->u.constant.level != effect->u.constant.level;
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}
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/*
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* Analyse the changes in an effect, and tell if we need to send an envelope
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* parameter packet
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*/
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static int need_envelope_modifier(struct iforce *iforce, struct ff_effect *old,
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struct ff_effect *effect)
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{
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switch (effect->type) {
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case FF_CONSTANT:
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if (old->u.constant.envelope.attack_length != effect->u.constant.envelope.attack_length
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|| old->u.constant.envelope.attack_level != effect->u.constant.envelope.attack_level
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|| old->u.constant.envelope.fade_length != effect->u.constant.envelope.fade_length
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|| old->u.constant.envelope.fade_level != effect->u.constant.envelope.fade_level)
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return 1;
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break;
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case FF_PERIODIC:
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if (old->u.periodic.envelope.attack_length != effect->u.periodic.envelope.attack_length
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|| old->u.periodic.envelope.attack_level != effect->u.periodic.envelope.attack_level
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|| old->u.periodic.envelope.fade_length != effect->u.periodic.envelope.fade_length
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|| old->u.periodic.envelope.fade_level != effect->u.periodic.envelope.fade_level)
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return 1;
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break;
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default:
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dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
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__func__);
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}
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return 0;
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}
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/*
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* Analyse the changes in an effect, and tell if we need to send a periodic
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* parameter effect
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*/
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static int need_period_modifier(struct iforce *iforce, struct ff_effect *old,
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struct ff_effect *new)
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{
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if (new->type != FF_PERIODIC) {
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dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
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__func__);
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return 0;
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}
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return (old->u.periodic.period != new->u.periodic.period
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|| old->u.periodic.magnitude != new->u.periodic.magnitude
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|| old->u.periodic.offset != new->u.periodic.offset
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|| old->u.periodic.phase != new->u.periodic.phase);
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}
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/*
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* Analyse the changes in an effect, and tell if we need to send an effect
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* packet
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*/
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static int need_core(struct ff_effect *old, struct ff_effect *new)
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{
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if (old->direction != new->direction
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|| old->trigger.button != new->trigger.button
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|| old->trigger.interval != new->trigger.interval
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|| old->replay.length != new->replay.length
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|| old->replay.delay != new->replay.delay)
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return 1;
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return 0;
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}
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/*
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* Send the part common to all effects to the device
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*/
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static int make_core(struct iforce* iforce, u16 id, u16 mod_id1, u16 mod_id2,
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u8 effect_type, u8 axes, u16 duration, u16 delay, u16 button,
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u16 interval, u16 direction)
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{
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unsigned char data[14];
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duration = TIME_SCALE(duration);
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delay = TIME_SCALE(delay);
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interval = TIME_SCALE(interval);
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data[0] = LO(id);
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data[1] = effect_type;
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data[2] = LO(axes) | find_button(iforce, button);
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data[3] = LO(duration);
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data[4] = HI(duration);
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data[5] = HI(direction);
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data[6] = LO(interval);
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data[7] = HI(interval);
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data[8] = LO(mod_id1);
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data[9] = HI(mod_id1);
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data[10] = LO(mod_id2);
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data[11] = HI(mod_id2);
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data[12] = LO(delay);
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data[13] = HI(delay);
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/* Stop effect */
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/* iforce_control_playback(iforce, id, 0);*/
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iforce_send_packet(iforce, FF_CMD_EFFECT, data);
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/* If needed, restart effect */
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if (test_bit(FF_CORE_SHOULD_PLAY, iforce->core_effects[id].flags)) {
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/* BUG: perhaps we should replay n times, instead of 1. But we do not know n */
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iforce_control_playback(iforce, id, 1);
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}
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return 0;
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}
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/*
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* Upload a periodic effect to the device
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* See also iforce_upload_constant.
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*/
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int iforce_upload_periodic(struct iforce *iforce, struct ff_effect *effect, struct ff_effect *old)
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{
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u8 wave_code;
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int core_id = effect->id;
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struct iforce_core_effect* core_effect = iforce->core_effects + core_id;
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struct resource* mod1_chunk = &(iforce->core_effects[core_id].mod1_chunk);
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struct resource* mod2_chunk = &(iforce->core_effects[core_id].mod2_chunk);
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int param1_err = 1;
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int param2_err = 1;
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int core_err = 0;
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if (!old || need_period_modifier(iforce, old, effect)) {
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param1_err = make_period_modifier(iforce, mod1_chunk,
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old != NULL,
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effect->u.periodic.magnitude, effect->u.periodic.offset,
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effect->u.periodic.period, effect->u.periodic.phase);
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if (param1_err)
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return param1_err;
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set_bit(FF_MOD1_IS_USED, core_effect->flags);
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}
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if (!old || need_envelope_modifier(iforce, old, effect)) {
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param2_err = make_envelope_modifier(iforce, mod2_chunk,
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old !=NULL,
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effect->u.periodic.envelope.attack_length,
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effect->u.periodic.envelope.attack_level,
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effect->u.periodic.envelope.fade_length,
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effect->u.periodic.envelope.fade_level);
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if (param2_err)
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return param2_err;
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set_bit(FF_MOD2_IS_USED, core_effect->flags);
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}
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switch (effect->u.periodic.waveform) {
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case FF_SQUARE: wave_code = 0x20; break;
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case FF_TRIANGLE: wave_code = 0x21; break;
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case FF_SINE: wave_code = 0x22; break;
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case FF_SAW_UP: wave_code = 0x23; break;
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case FF_SAW_DOWN: wave_code = 0x24; break;
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default: wave_code = 0x20; break;
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}
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if (!old || need_core(old, effect)) {
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core_err = make_core(iforce, effect->id,
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mod1_chunk->start,
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mod2_chunk->start,
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wave_code,
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0x20,
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effect->replay.length,
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effect->replay.delay,
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effect->trigger.button,
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effect->trigger.interval,
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effect->direction);
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}
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/* If one of the parameter creation failed, we already returned an
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* error code.
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* If the core creation failed, we return its error code.
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* Else: if one parameter at least was created, we return 0
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* else we return 1;
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*/
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return core_err < 0 ? core_err : (param1_err && param2_err);
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}
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/*
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* Upload a constant force effect
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* Return value:
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* <0 Error code
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* 0 Ok, effect created or updated
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* 1 effect did not change since last upload, and no packet was therefore sent
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*/
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int iforce_upload_constant(struct iforce *iforce, struct ff_effect *effect, struct ff_effect *old)
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{
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int core_id = effect->id;
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struct iforce_core_effect* core_effect = iforce->core_effects + core_id;
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struct resource* mod1_chunk = &(iforce->core_effects[core_id].mod1_chunk);
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struct resource* mod2_chunk = &(iforce->core_effects[core_id].mod2_chunk);
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int param1_err = 1;
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int param2_err = 1;
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int core_err = 0;
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if (!old || need_magnitude_modifier(iforce, old, effect)) {
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param1_err = make_magnitude_modifier(iforce, mod1_chunk,
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old != NULL,
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effect->u.constant.level);
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if (param1_err)
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return param1_err;
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set_bit(FF_MOD1_IS_USED, core_effect->flags);
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}
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if (!old || need_envelope_modifier(iforce, old, effect)) {
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param2_err = make_envelope_modifier(iforce, mod2_chunk,
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old != NULL,
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effect->u.constant.envelope.attack_length,
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effect->u.constant.envelope.attack_level,
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effect->u.constant.envelope.fade_length,
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effect->u.constant.envelope.fade_level);
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if (param2_err)
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return param2_err;
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set_bit(FF_MOD2_IS_USED, core_effect->flags);
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}
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if (!old || need_core(old, effect)) {
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core_err = make_core(iforce, effect->id,
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mod1_chunk->start,
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mod2_chunk->start,
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0x00,
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0x20,
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effect->replay.length,
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effect->replay.delay,
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effect->trigger.button,
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effect->trigger.interval,
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effect->direction);
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}
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/* If one of the parameter creation failed, we already returned an
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* error code.
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* If the core creation failed, we return its error code.
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* Else: if one parameter at least was created, we return 0
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* else we return 1;
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*/
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return core_err < 0 ? core_err : (param1_err && param2_err);
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}
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/*
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* Upload an condition effect. Those are for example friction, inertia, springs...
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*/
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int iforce_upload_condition(struct iforce *iforce, struct ff_effect *effect, struct ff_effect *old)
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{
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int core_id = effect->id;
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struct iforce_core_effect* core_effect = iforce->core_effects + core_id;
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struct resource* mod1_chunk = &(core_effect->mod1_chunk);
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struct resource* mod2_chunk = &(core_effect->mod2_chunk);
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u8 type;
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int param_err = 1;
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int core_err = 0;
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switch (effect->type) {
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case FF_SPRING: type = 0x40; break;
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case FF_DAMPER: type = 0x41; break;
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default: return -1;
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}
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if (!old || need_condition_modifier(iforce, old, effect)) {
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param_err = make_condition_modifier(iforce, mod1_chunk,
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old != NULL,
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effect->u.condition[0].right_saturation,
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effect->u.condition[0].left_saturation,
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effect->u.condition[0].right_coeff,
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effect->u.condition[0].left_coeff,
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effect->u.condition[0].deadband,
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effect->u.condition[0].center);
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if (param_err)
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return param_err;
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set_bit(FF_MOD1_IS_USED, core_effect->flags);
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param_err = make_condition_modifier(iforce, mod2_chunk,
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old != NULL,
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effect->u.condition[1].right_saturation,
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effect->u.condition[1].left_saturation,
|
|
effect->u.condition[1].right_coeff,
|
|
effect->u.condition[1].left_coeff,
|
|
effect->u.condition[1].deadband,
|
|
effect->u.condition[1].center);
|
|
if (param_err)
|
|
return param_err;
|
|
set_bit(FF_MOD2_IS_USED, core_effect->flags);
|
|
|
|
}
|
|
|
|
if (!old || need_core(old, effect)) {
|
|
core_err = make_core(iforce, effect->id,
|
|
mod1_chunk->start, mod2_chunk->start,
|
|
type, 0xc0,
|
|
effect->replay.length, effect->replay.delay,
|
|
effect->trigger.button, effect->trigger.interval,
|
|
effect->direction);
|
|
}
|
|
|
|
/* If the parameter creation failed, we already returned an
|
|
* error code.
|
|
* If the core creation failed, we return its error code.
|
|
* Else: if a parameter was created, we return 0
|
|
* else we return 1;
|
|
*/
|
|
return core_err < 0 ? core_err : param_err;
|
|
}
|