root/drivers/staging/speakup/speakup_decext.c

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DEFINITIONS

This source file includes following definitions.
  1. read_buff_add
  2. synth_full
  3. do_catch_up
  4. synth_flush

   1 // SPDX-License-Identifier: GPL-2.0+
   2 /*
   3  * originally written by: Kirk Reiser <kirk@braille.uwo.ca>
   4  * this version considerably modified by David Borowski, david575@rogers.com
   5  *
   6  * Copyright (C) 1998-99  Kirk Reiser.
   7  * Copyright (C) 2003 David Borowski.
   8  *
   9  * specificly written as a driver for the speakup screenreview
  10  * s not a general device driver.
  11  */
  12 #include <linux/jiffies.h>
  13 #include <linux/sched.h>
  14 #include <linux/timer.h>
  15 #include <linux/kthread.h>
  16 
  17 #include "spk_priv.h"
  18 #include "speakup.h"
  19 
  20 #define DRV_VERSION "2.14"
  21 #define SYNTH_CLEAR 0x03
  22 #define PROCSPEECH 0x0b
  23 
  24 static volatile unsigned char last_char;
  25 
  26 static void read_buff_add(u_char ch)
  27 {
  28         last_char = ch;
  29 }
  30 
  31 static inline bool synth_full(void)
  32 {
  33         return last_char == 0x13;
  34 }
  35 
  36 static void do_catch_up(struct spk_synth *synth);
  37 static void synth_flush(struct spk_synth *synth);
  38 
  39 static int in_escape;
  40 
  41 static struct var_t vars[] = {
  42         { CAPS_START, .u.s = {"[:dv ap 222]" } },
  43         { CAPS_STOP, .u.s = {"[:dv ap 100]" } },
  44         { RATE, .u.n = {"[:ra %d]", 7, 0, 9, 150, 25, NULL } },
  45         { PITCH, .u.n = {"[:dv ap %d]", 100, 0, 100, 0, 0, NULL } },
  46         { VOL, .u.n = {"[:dv gv %d]", 13, 0, 16, 0, 5, NULL } },
  47         { PUNCT, .u.n = {"[:pu %c]", 0, 0, 2, 0, 0, "nsa" } },
  48         { VOICE, .u.n = {"[:n%c]", 0, 0, 9, 0, 0, "phfdburwkv" } },
  49         { DIRECT, .u.n = {NULL, 0, 0, 1, 0, 0, NULL } },
  50         V_LAST_VAR
  51 };
  52 
  53 /*
  54  * These attributes will appear in /sys/accessibility/speakup/decext.
  55  */
  56 static struct kobj_attribute caps_start_attribute =
  57         __ATTR(caps_start, 0644, spk_var_show, spk_var_store);
  58 static struct kobj_attribute caps_stop_attribute =
  59         __ATTR(caps_stop, 0644, spk_var_show, spk_var_store);
  60 static struct kobj_attribute pitch_attribute =
  61         __ATTR(pitch, 0644, spk_var_show, spk_var_store);
  62 static struct kobj_attribute punct_attribute =
  63         __ATTR(punct, 0644, spk_var_show, spk_var_store);
  64 static struct kobj_attribute rate_attribute =
  65         __ATTR(rate, 0644, spk_var_show, spk_var_store);
  66 static struct kobj_attribute voice_attribute =
  67         __ATTR(voice, 0644, spk_var_show, spk_var_store);
  68 static struct kobj_attribute vol_attribute =
  69         __ATTR(vol, 0644, spk_var_show, spk_var_store);
  70 
  71 static struct kobj_attribute delay_time_attribute =
  72         __ATTR(delay_time, 0644, spk_var_show, spk_var_store);
  73 static struct kobj_attribute direct_attribute =
  74         __ATTR(direct, 0644, spk_var_show, spk_var_store);
  75 static struct kobj_attribute full_time_attribute =
  76         __ATTR(full_time, 0644, spk_var_show, spk_var_store);
  77 static struct kobj_attribute jiffy_delta_attribute =
  78         __ATTR(jiffy_delta, 0644, spk_var_show, spk_var_store);
  79 static struct kobj_attribute trigger_time_attribute =
  80         __ATTR(trigger_time, 0644, spk_var_show, spk_var_store);
  81 
  82 /*
  83  * Create a group of attributes so that we can create and destroy them all
  84  * at once.
  85  */
  86 static struct attribute *synth_attrs[] = {
  87         &caps_start_attribute.attr,
  88         &caps_stop_attribute.attr,
  89         &pitch_attribute.attr,
  90         &punct_attribute.attr,
  91         &rate_attribute.attr,
  92         &voice_attribute.attr,
  93         &vol_attribute.attr,
  94         &delay_time_attribute.attr,
  95         &direct_attribute.attr,
  96         &full_time_attribute.attr,
  97         &jiffy_delta_attribute.attr,
  98         &trigger_time_attribute.attr,
  99         NULL,   /* need to NULL terminate the list of attributes */
 100 };
 101 
 102 static struct spk_synth synth_decext = {
 103         .name = "decext",
 104         .version = DRV_VERSION,
 105         .long_name = "Dectalk External",
 106         .init = "[:pe -380]",
 107         .procspeech = PROCSPEECH,
 108         .clear = SYNTH_CLEAR,
 109         .delay = 500,
 110         .trigger = 50,
 111         .jiffies = 50,
 112         .full = 40000,
 113         .flags = SF_DEC,
 114         .dev_name = SYNTH_DEFAULT_DEV,
 115         .startup = SYNTH_START,
 116         .checkval = SYNTH_CHECK,
 117         .vars = vars,
 118         .io_ops = &spk_ttyio_ops,
 119         .probe = spk_ttyio_synth_probe,
 120         .release = spk_ttyio_release,
 121         .synth_immediate = spk_ttyio_synth_immediate,
 122         .catch_up = do_catch_up,
 123         .flush = synth_flush,
 124         .is_alive = spk_synth_is_alive_restart,
 125         .synth_adjust = NULL,
 126         .read_buff_add = read_buff_add,
 127         .get_index = NULL,
 128         .indexing = {
 129                 .command = NULL,
 130                 .lowindex = 0,
 131                 .highindex = 0,
 132                 .currindex = 0,
 133         },
 134         .attributes = {
 135                 .attrs = synth_attrs,
 136                 .name = "decext",
 137         },
 138 };
 139 
 140 static void do_catch_up(struct spk_synth *synth)
 141 {
 142         u_char ch;
 143         static u_char last = '\0';
 144         unsigned long flags;
 145         unsigned long jiff_max;
 146         struct var_t *jiffy_delta;
 147         struct var_t *delay_time;
 148         int jiffy_delta_val = 0;
 149         int delay_time_val = 0;
 150 
 151         jiffy_delta = spk_get_var(JIFFY);
 152         delay_time = spk_get_var(DELAY);
 153 
 154         spin_lock_irqsave(&speakup_info.spinlock, flags);
 155         jiffy_delta_val = jiffy_delta->u.n.value;
 156         spin_unlock_irqrestore(&speakup_info.spinlock, flags);
 157         jiff_max = jiffies + jiffy_delta_val;
 158 
 159         while (!kthread_should_stop()) {
 160                 spin_lock_irqsave(&speakup_info.spinlock, flags);
 161                 if (speakup_info.flushing) {
 162                         speakup_info.flushing = 0;
 163                         spin_unlock_irqrestore(&speakup_info.spinlock, flags);
 164                         synth->flush(synth);
 165                         continue;
 166                 }
 167                 synth_buffer_skip_nonlatin1();
 168                 if (synth_buffer_empty()) {
 169                         spin_unlock_irqrestore(&speakup_info.spinlock, flags);
 170                         break;
 171                 }
 172                 ch = synth_buffer_peek();
 173                 set_current_state(TASK_INTERRUPTIBLE);
 174                 delay_time_val = delay_time->u.n.value;
 175                 spin_unlock_irqrestore(&speakup_info.spinlock, flags);
 176                 if (ch == '\n')
 177                         ch = 0x0D;
 178                 if (synth_full() || !synth->io_ops->synth_out(synth, ch)) {
 179                         schedule_timeout(msecs_to_jiffies(delay_time_val));
 180                         continue;
 181                 }
 182                 set_current_state(TASK_RUNNING);
 183                 spin_lock_irqsave(&speakup_info.spinlock, flags);
 184                 synth_buffer_getc();
 185                 spin_unlock_irqrestore(&speakup_info.spinlock, flags);
 186                 if (ch == '[') {
 187                         in_escape = 1;
 188                 } else if (ch == ']') {
 189                         in_escape = 0;
 190                 } else if (ch <= SPACE) {
 191                         if (!in_escape && strchr(",.!?;:", last))
 192                                 synth->io_ops->synth_out(synth, PROCSPEECH);
 193                         if (time_after_eq(jiffies, jiff_max)) {
 194                                 if (!in_escape)
 195                                         synth->io_ops->synth_out(synth,
 196                                                                  PROCSPEECH);
 197                                 spin_lock_irqsave(&speakup_info.spinlock,
 198                                                   flags);
 199                                 jiffy_delta_val = jiffy_delta->u.n.value;
 200                                 delay_time_val = delay_time->u.n.value;
 201                                 spin_unlock_irqrestore(&speakup_info.spinlock,
 202                                                        flags);
 203                                 schedule_timeout(msecs_to_jiffies
 204                                                  (delay_time_val));
 205                                 jiff_max = jiffies + jiffy_delta_val;
 206                         }
 207                 }
 208                 last = ch;
 209         }
 210         if (!in_escape)
 211                 synth->io_ops->synth_out(synth, PROCSPEECH);
 212 }
 213 
 214 static void synth_flush(struct spk_synth *synth)
 215 {
 216         in_escape = 0;
 217         synth->io_ops->flush_buffer();
 218         synth->synth_immediate(synth, "\033P;10z\033\\");
 219 }
 220 
 221 module_param_named(ser, synth_decext.ser, int, 0444);
 222 module_param_named(dev, synth_decext.dev_name, charp, 0444);
 223 module_param_named(start, synth_decext.startup, short, 0444);
 224 
 225 MODULE_PARM_DESC(ser, "Set the serial port for the synthesizer (0-based).");
 226 MODULE_PARM_DESC(dev, "Set the device e.g. ttyUSB0, for the synthesizer.");
 227 MODULE_PARM_DESC(start, "Start the synthesizer once it is loaded.");
 228 
 229 module_spk_synth(synth_decext);
 230 
 231 MODULE_AUTHOR("Kirk Reiser <kirk@braille.uwo.ca>");
 232 MODULE_AUTHOR("David Borowski");
 233 MODULE_DESCRIPTION("Speakup support for DECtalk External synthesizers");
 234 MODULE_LICENSE("GPL");
 235 MODULE_VERSION(DRV_VERSION);
 236 

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