Rearrange the argument checking and processing so that enable and disable

can be combined with configuring the period and duty cycle (the same ioctl
sets all 3 values at once, so there's no reason to require the user to run
the program twice to get all 3 things set).
This commit is contained in:
Ian Lepore 2019-06-18 01:15:00 +00:00
parent 123570fb92
commit 26f3ca615d
Notes: svn2git 2020-12-20 02:59:44 +00:00
svn path=/head/; revision=349166
2 changed files with 38 additions and 59 deletions

View file

@ -31,19 +31,12 @@
.Sh SYNOPSIS
.Nm
.Op Fl f Ar device
.Fl E
.Nm
.Op Fl f Ar device
.Fl D
.Nm
.Op Fl f Ar device
.Fl C
.Nm
.Op Fl f Ar device
.Fl p Ar period
.Nm
.Op Fl f Ar device
.Fl d Ar duty
.Op Fl D | Fl E
.Op Fl p Ar period
.Op Fl d Ar duty
.Sh DESCRIPTION
The
.Nm
@ -76,19 +69,19 @@ is used.
If an unqualified name is provided,
.Pa /dev/pwm
is automatically prepended.
.It Fl E
Enable the PWM channel.
.It Fl D
Disable the PWM channel.
.It Fl C
Show the configuration of the PWM channel.
.It Fl p Ar period
Configure the period (in nanoseconds) of the PWM channel
.It Fl D
Disable the PWM channel.
.It Fl d Ar duty
Configure the duty (in nanoseconds or percentage) of the PWM channel.
Duty is the portion of the
.Ar period
during which the signal is asserted.
.It Fl E
Enable the PWM channel.
.It Fl p Ar period
Configure the period (in nanoseconds) of the PWM channel.
.El
.Sh EXAMPLES
.Bl -bullet
@ -98,9 +91,10 @@ Show the configuration of the PWM channel:
pwm -f /dev/pwm/pwmc0.1 -C
.Ed
.It
Configure a 50000 ns period and a 25000 ns duty cycle:
Configure a 50000 ns period and a 25000 ns duty cycle
and enable the channel:
.Bd -literal
pwm -f pwmc1.1 -p 50000 -d 25000
pwm -f pwmc1.1 -E -p 50000 -d 25000
.Ed
.It
Configure a 50% duty cycle on the device and channel which

View file

@ -66,11 +66,8 @@ static void
usage(void)
{
fprintf(stderr, "Usage:\n");
fprintf(stderr, "\tpwm [-f dev] -E\n");
fprintf(stderr, "\tpwm [-f dev] -D\n");
fprintf(stderr, "\tpwm [-f dev] -C\n");
fprintf(stderr, "\tpwm [-f dev] -p period\n");
fprintf(stderr, "\tpwm [-f dev] -d duty\n");
fprintf(stderr, "\tpwm [-f dev] [-D | -E] [-p period] [-d duty[%%]]\n");
exit(1);
}
@ -94,14 +91,14 @@ main(int argc, char *argv[])
while ((ch = getopt(argc, argv, "f:EDCp:d:")) != -1) {
switch (ch) {
case 'E':
if (action)
if (action & (PWM_DISABLE | PWM_SHOW_CONFIG))
usage();
action = PWM_ENABLE;
action |= PWM_ENABLE;
break;
case 'D':
if (action)
if (action & (PWM_ENABLE | PWM_SHOW_CONFIG))
usage();
action = PWM_DISABLE;
action |= PWM_DISABLE;
break;
case 'C':
if (action)
@ -109,17 +106,23 @@ main(int argc, char *argv[])
action = PWM_SHOW_CONFIG;
break;
case 'p':
if (action & ~(PWM_PERIOD | PWM_DUTY))
if (action & PWM_SHOW_CONFIG)
usage();
action = PWM_PERIOD;
action |= PWM_PERIOD;
period = strtol(optarg, NULL, 10);
break;
case 'd':
if (action & ~(PWM_PERIOD | PWM_DUTY))
if (action & PWM_SHOW_CONFIG)
usage();
action = PWM_DUTY;
action |= PWM_DUTY;
duty = strtol(optarg, &percent, 10);
if (*percent != '\0' && *percent != '%')
if (*percent == '%') {
if (duty < 0 || duty > 100) {
fprintf(stderr,
"Invalid duty percentage\n");
usage();
}
} else if (*percent != '\0')
usage();
break;
case 'f':
@ -169,49 +172,31 @@ main(int argc, char *argv[])
goto fail;
}
switch (action) {
case PWM_ENABLE:
if (state.enable == false) {
state.enable = true;
if (ioctl(fd, PWMSETSTATE, &state) == -1) {
fprintf(stderr,
"Cannot enable the pwm controller\n");
goto fail;
}
}
break;
case PWM_DISABLE:
if (state.enable == true) {
state.enable = false;
if (ioctl(fd, PWMSETSTATE, &state) == -1) {
fprintf(stderr,
"Cannot disable the pwm controller\n");
goto fail;
}
}
break;
case PWM_SHOW_CONFIG:
if (action == PWM_SHOW_CONFIG) {
printf("period: %u\nduty: %u\nenabled:%d\n",
state.period,
state.duty,
state.enable);
break;
case PWM_PERIOD:
case PWM_DUTY:
if (period != -1)
goto fail;
} else {
if (action & PWM_ENABLE)
state.enable = true;
if (action & PWM_DISABLE)
state.enable = false;
if (action & PWM_PERIOD)
state.period = period;
if (duty != -1) {
if (action & PWM_DUTY) {
if (*percent != '\0')
state.duty = state.period * duty / 100;
else
state.duty = duty;
}
if (ioctl(fd, PWMSETSTATE, &state) == -1) {
fprintf(stderr,
"Cannot configure the pwm controller\n");
goto fail;
}
break;
}
close(fd);