aboutsummaryrefslogtreecommitdiffstats
path: root/testhal/STM32L1xx/ADC/main.c
blob: 140834f9c504a4321b968c18ea3e85427b1c3050 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
/*
    ChibiOS/RT - Copyright (C) 2006,2007,2008,2009,2010,
                 2011,2012 Giovanni Di Sirio.

    This file is part of ChibiOS/RT.

    ChibiOS/RT 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 3 of the License, or
    (at your option) any later version.

    ChibiOS/RT 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/>.
*/

#include "ch.h"
#include "hal.h"

#define ADC_GRP1_NUM_CHANNELS   1
#define ADC_GRP1_BUF_DEPTH      8

#define ADC_GRP2_NUM_CHANNELS   8
#define ADC_GRP2_BUF_DEPTH      16

static adcsample_t samples1[ADC_GRP1_NUM_CHANNELS * ADC_GRP1_BUF_DEPTH];
static adcsample_t samples2[ADC_GRP2_NUM_CHANNELS * ADC_GRP2_BUF_DEPTH];

/*
 * ADC streaming callback.
 */
size_t nx = 0, ny = 0;
static void adccallback(ADCDriver *adcp, adcsample_t *buffer, size_t n) {

  (void)adcp;
  if (samples2 == buffer) {
    nx += n;
  }
  else {
    ny += n;
  }
}

static void adcerrorcallback(ADCDriver *adcp, adcerror_t err) {

  (void)adcp;
  (void)err;
}

/*
 * ADC conversion group.
 * Mode:        Linear buffer, 8 samples of 1 channel, SW triggered.
 * Channels:    IN10.
 */
static const ADCConversionGroup adcgrpcfg1 = {
  FALSE,
  ADC_GRP1_NUM_CHANNELS,
  NULL,
  adcerrorcallback,
  0,                        /* CR1 */
  ADC_CR2_SWSTART,          /* CR2 */
  0,                        /* SMPR1 */
  ADC_SMPR2_SMP_AN10(ADC_SAMPLE_4),
  0,                        /* SMPR3 */
  ADC_SQR1_NUM_CH(ADC_GRP1_NUM_CHANNELS),
  0, 0, 0,                  /* SQR2, SQR3, SQR4 */
  ADC_SQR5_SQ1_N(ADC_CHANNEL_IN10)
};

/*
 * ADC conversion group.
 * Mode:        Continuous, 16 samples of 8 channels, SW triggered.
 * Channels:    IN10, IN11, IN10, IN11, IN10, IN11, Sensor, VRef.
 */
static const ADCConversionGroup adcgrpcfg2 = {
  TRUE,
  ADC_GRP2_NUM_CHANNELS,
  adccallback,
  adcerrorcallback,
  0,                        /* CR1 */
  ADC_CR2_SWSTART,          /* CR2 */
  0,                        /* SMPR1 */
  ADC_SMPR2_SMP_AN11(ADC_SAMPLE_48) | ADC_SMPR2_SMP_AN10(ADC_SAMPLE_48) |
  ADC_SMPR2_SMP_SENSOR(ADC_SAMPLE_192) | ADC_SMPR2_SMP_VREF(ADC_SAMPLE_192),
  0,                        /* SMPR3 */
  ADC_SQR1_NUM_CH(ADC_GRP2_NUM_CHANNELS),
  0, 0,                     /* SQR2, SQR3 */
  ADC_SQR4_SQ8_N(ADC_CHANNEL_SENSOR) | ADC_SQR4_SQ7_N(ADC_CHANNEL_VREFINT),
  ADC_SQR5_SQ6_N(ADC_CHANNEL_IN11)   | ADC_SQR5_SQ5_N(ADC_CHANNEL_IN10) |
  ADC_SQR5_SQ4_N(ADC_CHANNEL_IN11)   | ADC_SQR5_SQ3_N(ADC_CHANNEL_IN10) |
  ADC_SQR5_SQ2_N(ADC_CHANNEL_IN11)   | ADC_SQR5_SQ1_N(ADC_CHANNEL_IN10)
};

/*
 * Red LEDs blinker thread, times are in milliseconds.
 */
static WORKING_AREA(waThread1, 128);
static msg_t Thread1(void *arg) {

  (void)arg;
  chRegSetThreadName("blinker");
  while (TRUE) {
    palSetPad(GPIOB, GPIOB_LED4);
    chThdSleepMilliseconds(500);
    palClearPad(GPIOB, GPIOB_LED4);
    chThdSleepMilliseconds(500);
  }
}

/*
 * Application entry point.
 */
int main(void) {

  /*
   * System initializations.
   * - HAL initialization, this also initializes the configured device drivers
   *   and performs the board-specific initializations.
   * - Kernel initialization, the main() function becomes a thread and the
   *   RTOS is active.
   */
  halInit();
  chSysInit();

  /*
   * Setting up analog inputs used by the demo.
   */
  palSetGroupMode(GPIOC, PAL_PORT_BIT(0) | PAL_PORT_BIT(1),
                  0, PAL_MODE_INPUT_ANALOG);

  /*
   * Creates the blinker thread.
   */
  chThdCreateStatic(waThread1, sizeof(waThread1), NORMALPRIO, Thread1, NULL);

  /*
   * Activates the ADC1 driver and the thermal sensor.
   */
  adcStart(&ADCD1, NULL);
  adcSTM32EnableTSVREFE();

  /*
   * Linear conversion.
   */
  adcConvert(&ADCD1, &adcgrpcfg1, samples1, ADC_GRP1_BUF_DEPTH);
  chThdSleepMilliseconds(1000);

  /*
   * Starts an ADC continuous conversion.
   */
  adcStartConversion(&ADCD1, &adcgrpcfg2, samples2, ADC_GRP2_BUF_DEPTH);

  /*
   * Normal main() thread activity, in this demo it does nothing.
   */
  while (TRUE) {
    if (palReadPad(GPIOA, GPIOA_BUTTON)) {
      adcStopConversion(&ADCD1);
      adcSTM32DisableTSVREFE();
    }
    chThdSleepMilliseconds(500);
  }
}
.gnu.warning sections are handled specially by elf32.em. */ *(.gnu.warning) *(.sfpr .glink) } =0x60000000 .fini : { KEEP (*(.fini)) } =0x60000000 PROVIDE (__etext = .); PROVIDE (_etext = .); PROVIDE (etext = .); .rodata : { *(.rodata .rodata.* .gnu.linkonce.r.*) } .rodata1 : { *(.rodata1) } .sdata2 : { *(.sdata2 .sdata2.* .gnu.linkonce.s2.*) } .sbss2 : { *(.sbss2 .sbss2.* .gnu.linkonce.sb2.*) } .eh_frame_hdr : { *(.eh_frame_hdr) } /* Adjust the address for the data segment. We want to adjust up to the same address within the page on the next page up. */ . = ALIGN (0x10000) - ((0x10000 - .) & (0x10000 - 1)); . = DATA_SEGMENT_ALIGN (0x10000, 0x1000); /* Ensure the __preinit_array_start label is properly aligned. We could instead move the label definition inside the section, but the linker would then create the section even if it turns out to be empty, which isn't pretty. */ . = ALIGN(64 / 8); PROVIDE (__preinit_array_start = .); .preinit_array : { *(.preinit_array) } PROVIDE (__preinit_array_end = .); PROVIDE (__init_array_start = .); .init_array : { *(.init_array) } PROVIDE (__init_array_end = .); PROVIDE (__fini_array_start = .); .fini_array : { *(.fini_array) } PROVIDE (__fini_array_end = .); .data : { *(.data .gnu.linkonce.d.*) SORT(CONSTRUCTORS) } . = ALIGN(4096); __init_begin = .; _sinittext = .; .init.text : { *(.init.text) } : text _einittext = .; .init.data : { *(.init.data) } : text . = ALIGN(32); __setup_start = .; .init.setup : { *(.init.setup) } : text __setup_end = .; __initcall_start = .; .initcall.init : { *(.initcall1.init) } : text __initcall_end = .; __init_hcall_start = .; .init_hcall.init : { *(.init_hcall.init) } : text __init_hcall_end = .; __builtin_cmdline : { *(__builtin_cmdline) } : text . = ALIGN(4096); __init_end = .; __per_cpu_start = .; .data.percpu : { *(.data.percpu) } __per_cpu_data_end = .; . = __per_cpu_start + (NR_CPUS << PERCPU_SHIFT); . = ALIGN(STACK_SIZE); __per_cpu_end = .; .data1 : { *(.data1) } .tdata : { *(.tdata .tdata.* .gnu.linkonce.td.*) } .tbss : { *(.tbss .tbss.* .gnu.linkonce.tb.*) *(.tcommon) } .eh_frame : { KEEP (*(.eh_frame)) } .gcc_except_table : { *(.gcc_except_table) } .toc1 ALIGN(8) : { *(.toc1) } .opd ALIGN(8) : { KEEP (*(.opd)) } .dynamic : { *(.dynamic) } .ctors : { /* gcc uses crtbegin.o to find the start of the constructors, so we make sure it is first. Because this is a wildcard, it doesn't matter if the user does not actually link against crtbegin.o; the linker won't look for a file to match a wildcard. The wildcard also means that it doesn't matter which directory crtbegin.o is in. */ KEEP (*crtbegin*.o(.ctors)) /* We don't want to include the .ctor section from from the crtend.o file until after the sorted ctors. The .ctor section from the crtend file contains the end of ctors marker and it must be last */ KEEP (*(EXCLUDE_FILE (*crtend*.o ) .ctors)) KEEP (*(SORT(.ctors.*))) KEEP (*(.ctors)) } .dtors : { KEEP (*crtbegin*.o(.dtors)) KEEP (*(EXCLUDE_FILE (*crtend*.o ) .dtors)) KEEP (*(SORT(.dtors.*))) KEEP (*(.dtors)) } .jcr : { KEEP (*(.jcr)) } .got ALIGN(8) : { *(.got .toc) } /* We want the small data sections together, so single-instruction offsets can access them all, and initialized data all before uninitialized, so we can shorten the on-disk segment size. */ .sdata : { *(.sdata .sdata.* .gnu.linkonce.s.*) } _edata = .; PROVIDE (edata = .); __bss_start = .; .tocbss ALIGN(8) : { *(.tocbss)} .sbss : { PROVIDE (__sbss_start = .); PROVIDE (___sbss_start = .); *(.dynsbss) *(.sbss .sbss.* .gnu.linkonce.sb.*) *(.scommon) PROVIDE (__sbss_end = .); PROVIDE (___sbss_end = .); } .plt : { *(.plt) } .bss : { *(.dynbss) *(.bss .bss.* .gnu.linkonce.b.*) *(COMMON) /* Align here to ensure that the .bss section occupies space up to _end. Align after .bss to ensure correct alignment even if the .bss section disappears because there are no input sections. */ . = ALIGN(64 / 8); } . = ALIGN(64 / 8); _end = .; PROVIDE (end = .); . = DATA_SEGMENT_END (.); /* Stabs debugging sections. */ .stab 0 : { *(.stab) } .stabstr 0 : { *(.stabstr) } .stab.excl 0 : { *(.stab.excl) } .stab.exclstr 0 : { *(.stab.exclstr) } .stab.index 0 : { *(.stab.index) } .stab.indexstr 0 : { *(.stab.indexstr) } .comment 0 : { *(.comment) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section so we begin them at 0. */ /* DWARF 1 */ .debug 0 : { *(.debug) } .line 0 : { *(.line) } /* GNU DWARF 1 extensions */ .debug_srcinfo 0 : { *(.debug_srcinfo) } .debug_sfnames 0 : { *(.debug_sfnames) } /* DWARF 1.1 and DWARF 2 */ .debug_aranges 0 : { *(.debug_aranges) } .debug_pubnames 0 : { *(.debug_pubnames) } /* DWARF 2 */ .debug_info 0 : { *(.debug_info .gnu.linkonce.wi.*) } .debug_abbrev 0 : { *(.debug_abbrev) } .debug_line 0 : { *(.debug_line) } .debug_frame 0 : { *(.debug_frame) } .debug_str 0 : { *(.debug_str) } .debug_loc 0 : { *(.debug_loc) } .debug_macinfo 0 : { *(.debug_macinfo) } /* SGI/MIPS DWARF 2 extensions */ .debug_weaknames 0 : { *(.debug_weaknames) } .debug_funcnames 0 : { *(.debug_funcnames) } .debug_typenames 0 : { *(.debug_typenames) } .debug_varnames 0 : { *(.debug_varnames) } /DISCARD/ : { *(.note.GNU-stack) } }