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wifi.go
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wifi.go
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package cyw43439
// This file borrows heavily from control.rs from the reference:
// https://github.com/embassy-rs/embassy/blob/26870082427b64d3ca42691c55a2cded5eadc548/cyw43/src/control.rs
import (
"encoding/binary"
"errors"
"net"
"time"
"log/slog"
"github.com/soypat/cyw43439/whd"
)
var (
errJoinAuth = errors.New("join:auth failed")
errJoinSetSSID = errors.New("join:SET_SSID failed")
errJoinWaitSSID = errors.New("join:wait for ssid")
errJoinGeneric = errors.New("join:failed")
)
func (d *Device) clmLoad(clm string) error {
// reference: https://github.com/embassy-rs/embassy/blob/26870082427b64d3ca42691c55a2cded5eadc548/cyw43/src/control.rs#L35
d.debug("initControl", slog.Int("clm_len", len(clm)))
const chunkSize = 1024
remaining := clm
offset := 0
buf8 := u32AsU8(d._iovarBuf[:])[:chunkSize+20]
for len(remaining) > 0 {
chunk := remaining[:min(len(remaining), chunkSize)]
remaining = remaining[len(chunk):]
var flag uint16 = 0x1000 // Download flag handler version.
if offset == 0 {
flag |= 0x0002 // Flag begin.
}
offset += len(chunk)
if offset == len(clm) {
flag |= 0x0004 // Flag end.
}
header := whd.DownloadHeader{ // No CRC.
Flags: flag,
Type: 2, // CLM download type.
Len: uint32(len(chunk)),
}
n := copy(buf8[:8], "clmload\x00")
header.Put(_busOrder, buf8[8:20])
n += whd.DL_HEADER_LEN
n += copy(buf8[20:], chunk)
err := d.doIoctlSet(whd.WLC_SET_VAR, whd.IF_STA, buf8[:n])
if err != nil {
return err
}
}
d.debug("clmload:done")
v, err := d.get_iovar("clmload_status", whd.IF_STA)
if v != 0 || err != nil {
return errjoin(errors.New("clmload_status failed"), err)
}
return nil
}
func (d *Device) initControl(clm string) error {
if d.bt_mode_enabled() {
err := d.bt_init(btFW)
if err != nil {
return errors.New("cyw bt init failed: " + err.Error())
}
}
err := d.clmLoad(clm)
if err != nil {
return err
}
// Disable tx gloming which transfers multiple packets in one request.
// 'glom' is short for "conglomerate" which means "gather together into
// a compact mass".
d.set_iovar("bus:txglom", whd.IF_STA, 0)
d.set_iovar("apsta", whd.IF_STA, 1)
// read MAC Address:
d.get_iovar_n("cur_etheraddr", whd.IF_STA, d.mac[:6])
d.debug("MAC", slog.String("mac", d.hwaddr().String()))
if d.mode&modeWifi != 0 {
countryInfo := whd.CountryInfo("XX", 0)
d.set_iovar_n("country", whd.IF_STA, countryInfo[:])
// set country takes some time, next ioctls fail if we don't wait.
time.Sleep(100 * time.Millisecond)
// Set Antenna to chip antenna.
d.set_ioctl(whd.WLC_SET_ANTDIV, whd.IF_STA, 0)
d.set_iovar("bus:txglom", whd.IF_STA, 0)
time.Sleep(100 * time.Millisecond)
d.set_iovar("ampdu_ba_wsize", whd.IF_STA, 8)
time.Sleep(100 * time.Millisecond)
d.set_iovar("ampdu_mpdu", whd.IF_STA, 4)
time.Sleep(100 * time.Millisecond)
// Ignore uninteresting/spammy events.
var evts eventMask
for i := range evts.events {
evts.events[i] = 0xff
}
evts.Disable(whd.EvRADIO)
evts.Disable(whd.EvIF)
evts.Disable(whd.EvPROBREQ_MSG)
evts.Disable(whd.EvPROBREQ_MSG_RX)
evts.Disable(whd.EvPROBRESP_MSG)
evts.Disable(whd.EvROAM)
buf := make([]byte, evts.Size())
evts.Put(buf)
d.set_iovar_n("bsscfg:event_msgs", whd.IF_STA, buf)
time.Sleep(100 * time.Millisecond)
// Set wifi up.
d.doIoctlSet(whd.WLC_UP, whd.IF_STA, nil)
time.Sleep(100 * time.Millisecond)
d.set_ioctl(whd.WLC_SET_GMODE, whd.IF_STA, 1) // Set GMODE=auto
d.set_ioctl(whd.WLC_SET_BAND, whd.IF_STA, 0) // Set BAND=any
time.Sleep(100 * time.Millisecond)
}
if modeBluetooth&d.mode != 0 {
// TODO: flash bt firmware here?
}
return nil
}
func (d *Device) hwaddr() net.HardwareAddr {
return net.HardwareAddr(d.mac[:6])
}
func (d *Device) set_power_management(mode powerManagementMode) error {
d.debug("set_power_management", slog.String("mode", mode.String()))
if !mode.IsValid() {
return errors.New("invalid power management mode")
}
mode_num := mode.mode()
if mode_num == 2 {
d.set_iovar("pm2_sleep_ret", whd.IF_STA, uint32(mode.sleep_ret_ms()))
d.set_iovar("bcn_li_bcn", whd.IF_STA, uint32(mode.beacon_period()))
d.set_iovar("bcn_li_dtim", whd.IF_STA, uint32(mode.dtim_period()))
d.set_iovar("assoc_listen", whd.IF_STA, uint32(mode.assoc()))
}
return d.set_ioctl(whd.WLC_SET_PM, whd.IF_STA, uint32(mode_num))
}
func (d *Device) join_open(ssid string) error {
d.debug("join_open", slog.String("ssid", ssid))
if len(ssid) > 32 {
return errors.New("ssid too long")
}
d.set_iovar("ampdu_ba_wsize", whd.IF_STA, 8)
d.set_ioctl(whd.WLC_SET_WSEC, whd.IF_STA, 0)
d.set_iovar2("bsscfg:sup_wpa", whd.IF_STA, 0, 0)
d.set_ioctl(whd.WLC_SET_INFRA, whd.IF_STA, 1)
d.set_ioctl(whd.WLC_SET_AUTH, whd.IF_STA, 0)
return d.wait_for_join(ssid)
}
func (d *Device) wait_for_join(ssid string) (err error) {
d.eventmask.Enable(whd.EvSET_SSID)
d.eventmask.Enable(whd.EvAUTH)
err = d.setSSID(ssid)
if err != nil {
return err
}
// Poll for async events.
deadline := time.Now().Add(10 * time.Second)
keepGoing := true
for keepGoing {
time.Sleep(270 * time.Millisecond)
err = d.check_status(d._sendIoctlBuf[:])
if err != nil {
return err
}
// Keep trying until we get a link up/auth failed/timeout.
stateWait := d.state == linkStateDown || d.state == linkStateUpWaitForSSID
keepGoing = stateWait && time.Until(deadline) > 0
}
switch d.state {
case linkStateUp:
// Begin listening in for link change/down events.
d.eventmask.Enable(whd.EvLINK)
d.eventmask.Enable(whd.EvJOIN)
d.eventmask.Enable(whd.EvDISASSOC)
d.eventmask.Enable(whd.EvDEAUTH)
case linkStateAuthFailed:
err = errJoinAuth
case linkStateFailed:
err = errJoinSetSSID
case linkStateUpWaitForSSID:
err = errJoinWaitSSID
default:
err = errJoinGeneric
}
return err
}
type passphraseInfo struct {
length uint16
flags uint16
passphrase [64]byte
}
func (p *passphraseInfo) Put(order binary.ByteOrder, b []byte) {
order.PutUint16(b[0:2], p.length)
order.PutUint16(b[2:4], p.flags)
copy(b[4:68], p.passphrase[:])
}
func (d *Device) setPassphrase(pass string) error {
if len(pass) > 64 {
return errors.New("ssid too long")
}
var pfi = passphraseInfo{
length: uint16(len(pass)),
flags: 1,
}
copy(pfi.passphrase[:], pass)
var buf [68]byte
pfi.Put(_busOrder, buf[:])
return d.doIoctlSet(whd.WLC_SET_WSEC_PMK, whd.IF_STA, buf[:])
}
type ssidInfo struct {
length uint32
ssid [32]byte
}
func (s *ssidInfo) put(order binary.ByteOrder, b []byte) {
order.PutUint32(b[0:4], s.length)
copy(b[4:36], s.ssid[:])
}
// setSSID sets the SSID through Ioctl interface. This command
// also starts the wifi connect procedure.
func (d *Device) setSSID(ssid string) error {
if len(ssid) > 32 {
return errors.New("ssid too long")
}
var info = ssidInfo{
length: uint32(len(ssid)),
}
copy(info.ssid[:], ssid)
var buf [36]byte
info.put(_busOrder, buf[:])
d.state = linkStateDown
return d.doIoctlSet(whd.WLC_SET_SSID, whd.IF_STA, buf[:])
}
type ssidInfoWithIndex struct {
index uint32
info ssidInfo
}
func (s *ssidInfoWithIndex) Put(order binary.ByteOrder, b []byte) {
order.PutUint32(b[0:4], s.index)
s.info.put(order, b[4:40])
}
func (d *Device) setSSIDWithIndex(ssid string, index uint32) error {
if len(ssid) > 32 {
return errors.New("ssid too long")
}
var infoIndex = ssidInfoWithIndex{
info: ssidInfo{
length: uint32(len(ssid)),
},
}
copy(infoIndex.info.ssid[:], ssid)
var buf [40]byte
infoIndex.Put(_busOrder, buf[:])
return d.set_iovar_n("bsscfg:ssid", whd.IF_STA, buf[:])
}
// IsLinkUp returns true if the wifi connection is up.
func (d *Device) IsLinkUp() bool {
return d.state == linkStateUp
}
func (d *Device) JoinWPA2(ssid, pass string) error {
err := d.acquire(modeWifi)
defer d.release()
if err != nil {
return err
}
if ssid != "" && pass == "" {
return d.join_open(ssid)
}
d.info("joinWpa2", slog.String("ssid", ssid), slog.Int("len(pass)", len(pass)))
if err := d.set_iovar("ampdu_ba_wsize", whd.IF_STA, 8); err != nil {
return err
}
// wsec = wpa2
if err := d.set_ioctl(whd.WLC_SET_WSEC, whd.IF_STA, 4); err != nil {
return err
}
if err := d.set_iovar2("bsscfg:sup_wpa", whd.IF_STA, 0, 1); err != nil {
return err
}
if err := d.set_iovar2("bsscfg:sup_wpa2_eapver", whd.IF_STA, 0, 0xffff_ffff); err != nil {
return err
}
if err := d.set_iovar2("bsscfg:sup_wpa_tmo", whd.IF_STA, 0, 2500); err != nil {
return err
}
time.Sleep(100 * time.Millisecond)
if err := d.setPassphrase(pass); err != nil {
return err
}
// set_infra = 1
if err := d.set_ioctl(whd.WLC_SET_INFRA, whd.IF_STA, 1); err != nil {
return err
}
// set_auth = 0 (open)
if err := d.set_ioctl(whd.WLC_SET_AUTH, whd.IF_STA, 0); err != nil {
return err
}
// set_wpa_auth
if err := d.set_ioctl(whd.WLC_SET_WPA_AUTH, whd.IF_STA, 0x80); err != nil {
return err
}
return d.wait_for_join(ssid)
}
func (d *Device) StartAP(ssid, pass string, channel uint8) error {
err := d.acquire(modeWifi)
defer d.release()
if err != nil {
return err
}
security := whd.CYW43_AUTH_OPEN
if pass != "" {
if len(pass) < whd.CYW43_MIN_PSK_LEN || len(pass) > whd.CYW43_MAX_PSK_LEN {
return errors.New("Passphrase is too short or too long")
}
security = whd.CYW43_AUTH_WPA2_AES_PSK
}
// Temporarily set wifi down
if err := d.doIoctlSet(whd.WLC_DOWN, whd.IF_STA, nil); err != nil {
return err
}
// Turn off APSTA mode
if err := d.set_iovar("apsta", whd.IF_STA, 0); err != nil {
return err
}
// Set wifi up again
if err := d.doIoctlSet(whd.WLC_UP, whd.IF_STA, nil); err != nil {
return err
}
// Turn on AP mode
if err := d.set_ioctl(whd.WLC_SET_AP, whd.IF_STA, 1); err != nil {
return err
}
// Set SSID
if err := d.setSSIDWithIndex(ssid, 0); err != nil {
return err
}
// Set channel number
if err := d.set_ioctl(whd.WLC_SET_CHANNEL, whd.IF_STA, uint32(channel)); err != nil {
return err
}
// Set security
if err := d.set_iovar2("bsscfg:wsec", whd.IF_STA, 0, uint32(security)&0xff); err != nil {
return err
}
if security != whd.CYW43_AUTH_OPEN {
// wpa_auth = WPA2_AUTH_PSK | WPA_AUTH_PSK
if err := d.set_iovar2("bsscfg:wpa_auth", whd.IF_STA, 0,
whd.CYW43_WPA_AUTH_PSK|whd.CYW43_WPA2_AUTH_PSK); err != nil {
return err
}
time.Sleep(100 * time.Millisecond)
// Set passphrase
if err := d.setPassphrase(pass); err != nil {
return err
}
}
// Change mutlicast rate from 1 Mbps to 11 Mbps
if err := d.set_iovar("2g_mrate", whd.IF_STA, 11000000/500000); err != nil {
return err
}
// Start AP (bss = BSS_UP)
if err := d.set_iovar2("bss", whd.IF_STA, 0, 1); err != nil {
return err
}
return nil
}