Merge pull request #15120 from benpicco/driver/at86rf215-trim
driver/at86rf215: add functions to configure trim & clock output at run-time
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commit
665c07eb53
@ -125,7 +125,7 @@ if (!IS_ACTIVE(CONFIG_AT86RF215_USE_CLOCK_OUTPUT)){
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}
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/* allow to configure board-specific trim */
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#ifdef CONFIG_AT86RF215_TRIM_VAL
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at86rf215_reg_write(dev, RG_RF_XOC, CONFIG_AT86RF215_TRIM_VAL | XOC_FS_MASK);
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at86rf215_set_trim(dev, CONFIG_AT86RF215_TRIM_VAL);
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#endif
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/* enable TXFE & RXFE IRQ */
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@ -89,6 +89,18 @@ uint8_t at86rf215_get_chan(const at86rf215_t *dev)
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return at86rf215_reg_read16(dev, dev->RF->RG_CNL);
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}
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void at86rf215_set_trim(at86rf215_t *dev, uint8_t trim)
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{
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assert(trim <= 0xF);
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at86rf215_reg_write(dev, RG_RF_XOC, trim | XOC_FS_MASK);
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}
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void at86rf215_set_clock_output(at86rf215_t *dev,
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at86rf215_clko_cur_t cur, at86rf215_clko_freq_t freq)
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{
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at86rf215_reg_write(dev, RG_RF_CLKO, cur | freq);
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}
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void at86rf215_set_chan(at86rf215_t *dev, uint16_t channel)
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{
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at86rf215_await_state_end(dev, RF_STATE_TX);
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@ -272,6 +272,33 @@ enum {
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AT86RF215_MODE_MR_FSK
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};
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/**
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* @name Clock Output Driver Strength
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* @{
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*/
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typedef enum {
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AT86RF215_CLKO_2mA = 0 << 3, /**< 2 mA */
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AT86RF215_CLKO_4mA = 1 << 3, /**< 4 mA */
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AT86RF215_CLKO_6mA = 2 << 3, /**< 6 mA */
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AT86RF215_CLKO_8mA = 3 << 3, /**< 8 mA */
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} at86rf215_clko_cur_t;
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/** @} */
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/**
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* @name Clock Output Frequency
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* @{
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*/
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typedef enum {
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AT86RF215_CLKO_OFF = 0, /**< Clock Output Disabled */
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AT86RF215_CLKO_26_MHz, /**< 26 MHz */
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AT86RF215_CLKO_32_MHz, /**< 32 MHz */
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AT86RF215_CLKO_16_MHz, /**< 16 MHz */
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AT86RF215_CLKO_8_MHz, /**< 8 MHz */
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AT86RF215_CLKO_4_MHz, /**< 4 MHz */
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AT86RF215_CLKO_2_MHz, /**< 2 MHz */
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AT86RF215_CLKO_1_MHz, /**< 1 MHz */
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} at86rf215_clko_freq_t;
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/**
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* @name Internal device option flags
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* @{
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@ -526,6 +553,42 @@ int8_t at86rf215_get_ed_level(at86rf215_t *dev);
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*/
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void at86rf215_set_option(at86rf215_t *dev, uint16_t option, bool state);
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/**
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* @brief Set crystal oscillator trim value.
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*
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* An internal capacitance array is connected to the
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* crystal oscillator pins TCXO and XTAL2.
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*
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* Each increment of the trim value adds 0.3pF capacitance
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* to the oscillator circuit.
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*
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* To trim a board, enable the clock output with
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* @ref at86rf215_set_clock_output and connect a frequency
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* counter to the clock output pin.
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* Then adjust the trim value until it the measured frequency
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* closely matches the configured output frequency.
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*
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* It is recommended to use a 26 MHz output frequency for the
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* test as this is the raw frequency of the external oscillator.
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*
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* The resulting trim value must then be stored in a persistent
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* memory area of the board to be set via @ref CONFIG_AT86RF215_TRIM_VAL
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*
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* @param[in] dev device to configure
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* @param[in] trim trim value
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*/
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void at86rf215_set_trim(at86rf215_t *dev, uint8_t trim);
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/**
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* @brief Configure the Clock Output pin
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*
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* @param[in] dev device to configure
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* @param[in] cur Clock output current
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* @param[in] freq Clock output frequency
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*/
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void at86rf215_set_clock_output(at86rf215_t *dev,
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at86rf215_clko_cur_t cur, at86rf215_clko_freq_t freq);
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/**
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* @brief Convenience function for simply sending data
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*
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@ -297,6 +297,11 @@ typedef enum {
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} netdev_type_t;
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/** @} */
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/**
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* @brief Will match any device index
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*/
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#define NETDEV_INDEX_ANY (0xFF)
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/**
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* @brief Structure to hold driver state
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*
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@ -103,11 +103,6 @@
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extern "C" {
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#endif
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/**
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* @brief Will match any device index
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*/
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#define NETDEV_INDEX_ANY (0xFF)
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/**
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* @brief Function for providing a EUI-48 to a device
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*
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@ -566,6 +566,19 @@ int gnrc_netif_get_from_netdev(gnrc_netif_t *netif, gnrc_netapi_opt_t *opt);
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int gnrc_netif_set_from_netdev(gnrc_netif_t *netif,
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const gnrc_netapi_opt_t *opt);
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/**
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* @brief Gets an interface by the netdev type (and index)
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*
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* @pre The netdev has been registered with @ref netdev_register
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*
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* @param[in] type driver type of the netdev, can be @ref NETDEV_ANY
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* @param[in] index index of the netdev, can be @ref NETDEV_INDEX_ANY
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*
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* @return The network interface that has a netdev of matching type and index
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* NULL if no matching interface could be found
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*/
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gnrc_netif_t *gnrc_netif_get_by_type(netdev_type_t type, uint8_t index);
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/**
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* @brief Converts a hardware address to a human readable string.
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*
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@ -117,6 +117,31 @@ gnrc_netif_t *gnrc_netif_iter(const gnrc_netif_t *prev)
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return (gnrc_netif_t*) netif_iter((netif_t*) prev);
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}
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gnrc_netif_t *gnrc_netif_get_by_type(netdev_type_t type, uint8_t index)
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{
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gnrc_netif_t *netif = NULL;
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while ((netif = gnrc_netif_iter(netif))) {
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#ifdef MODULE_NETDEV_REGISTER
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if (netif->dev->type != type && type != NETDEV_ANY) {
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continue;
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}
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if (netif->dev->index != index && index != NETDEV_INDEX_ANY) {
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continue;
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}
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#else
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(void)type;
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(void)index;
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assert(index == 0);
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#endif
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return netif;
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}
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return NULL;
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}
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int gnrc_netif_get_from_netdev(gnrc_netif_t *netif, gnrc_netapi_opt_t *opt)
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{
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int res = -ENOTSUP;
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@ -20,13 +20,16 @@
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#include <stdio.h>
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#include "at86rf215.h"
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#include "at86rf215_internal.h"
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#include "thread.h"
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#include "shell.h"
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#include "shell_commands.h"
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#include "sys/bus.h"
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#include "net/gnrc/pktdump.h"
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#include "net/gnrc/netif.h"
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#include "net/gnrc.h"
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#include "od.h"
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static char batmon_stack[THREAD_STACKSIZE_MAIN];
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@ -74,8 +77,126 @@ static int cmd_enable_batmon(int argc, char **argv)
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return res;
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}
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static int cmd_set_trim(int argc, char **argv)
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{
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if (argc < 2) {
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printf("usage: %s <trim>\n", argv[0]);
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return 1;
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}
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uint8_t trim = atoi(argv[1]);
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if (trim > 0xF) {
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puts("Trim value out of range");
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return 1;
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}
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gnrc_netif_t *netif = gnrc_netif_get_by_type(NETDEV_AT86RF215, 0);
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if (netif == NULL) {
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puts("No at86rf215 radio found");
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return 1;
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}
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at86rf215_t* dev = (at86rf215_t*)netif->dev;
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printf("setting trim to %u fF\n", 300U * trim);
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at86rf215_set_trim(dev, trim);
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return 0;
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}
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static int cmd_set_clock_out(int argc, char **argv)
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{
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const char *keys[] = {
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[AT86RF215_CLKO_OFF] = "off",
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[AT86RF215_CLKO_26_MHz] = "26",
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[AT86RF215_CLKO_32_MHz] = "32",
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[AT86RF215_CLKO_16_MHz] = "16",
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[AT86RF215_CLKO_8_MHz] = "8",
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[AT86RF215_CLKO_4_MHz] = "4",
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[AT86RF215_CLKO_2_MHz] = "2",
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[AT86RF215_CLKO_1_MHz] = "1",
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};
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at86rf215_clko_freq_t freq = AT86RF215_CLKO_26_MHz;
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if (argc > 1) {
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unsigned tmp = 0xFF;
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for (unsigned i = 0; i < ARRAY_SIZE(keys); ++i) {
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if (strcmp(argv[1], keys[i]) == 0) {
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tmp = i;
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break;
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}
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}
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if (tmp == 0xFF) {
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printf("usage: %s [freq in MHz | off]\n", argv[0]);
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printf("valid frequencies: off");
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for (unsigned i = 1; i < ARRAY_SIZE(keys); ++i) {
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printf(", %s MHz", keys[i]);
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}
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puts("");
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return 1;
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}
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freq = tmp;
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}
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gnrc_netif_t *netif = gnrc_netif_get_by_type(NETDEV_AT86RF215, 0);
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if (netif == NULL) {
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puts("No at86rf215 radio found");
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return 1;
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}
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at86rf215_t *dev = (at86rf215_t *)netif->dev;
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printf("Clock output set to %s %s\n", keys[freq], freq ? "MHz" : "");
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at86rf215_set_clock_output(dev, AT86RF215_CLKO_4mA, freq);
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return 0;
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}
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static int cmd_get_random(int argc, char **argv)
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{
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uint8_t values;
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uint8_t buffer[256];
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if (argc > 1) {
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values = atoi(argv[1]);
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}
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else {
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values = 16;
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}
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if (values == 0) {
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printf("usage: %s [num]\n", argv[0]);
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return 1;
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}
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gnrc_netif_t *netif = gnrc_netif_get_by_type(NETDEV_AT86RF215, 0);
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if (netif == NULL) {
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puts("No at86rf215 radio found");
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return 1;
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}
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at86rf215_t *dev = (at86rf215_t *)netif->dev;
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at86rf215_get_random(dev, buffer, values);
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od_hex_dump(buffer, values, 0);
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return 0;
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}
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static const shell_command_t shell_commands[] = {
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{ "batmon", "Enable the battery monitor", cmd_enable_batmon },
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{ "set_trim", "at86rf215: Set the trim value of the crystal oscillator", cmd_set_trim },
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{ "set_clko", "at86rf215: Configure the Clock Output pin", cmd_set_clock_out },
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{ "get_random", "at86rf215: Get random values from the radio", cmd_get_random },
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{ NULL, NULL, NULL }
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};
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