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...
10 Commits
Author SHA1 Message Date
Pontus Oldberg a808f4ae6a Adds option for setting USB max power in makeboards.py (#370) 2021-12-10 04:11:22 -08:00
Pontus Oldberg 4d1f5baa7e Adds a lightweight support class for LTE functionality (#367) 2021-12-09 09:55:09 -08:00
Pontus Oldberg f106035100 Adds support for Challenger NB RP2040 WiFi board and RPICO32 module (#366) 2021-12-07 09:44:38 -08:00
Earle F. Philhower, III 21f49d032b Update README.md 2021-12-06 00:03:11 -08:00
Wai Weng 341307cb8d Added new variant: Cytron Maker Nano RP2040. (#365) 2021-12-06 00:02:54 -08:00
Earle F. Philhower, III 85990ff51d Support CMSIS and rename conflicting header file (#362) 2021-12-03 12:49:34 -08:00
Eric Lind 238a6c83db Update pins_arduino.h for challenger_2040_wifi (#356)
Adding definitions for internal reset and mode pins for ESP8285.
2021-12-01 08:08:37 -08:00
Earle F. Philhower, III 77f03a44b6 Add WIZnet W5100S-EVB-Pico board (#355) 2021-11-30 17:11:08 -08:00
Earle F. Philhower, III 29756de336 Update to SDFat 2.1.1 with UTF-8 support (#343) 2021-11-30 17:06:58 -08:00
Earle F. Philhower, III 1afbbaba63 Add RTC headers to path and pico_utils to link (#353)
Fixes #348

Add the RTC header path in the SDK to the Arduino build path.  Also add
pico_utils to the libpico.a for the datetime_to_str call.

Note that the pico_sdk has a bug in the datetime.h header so you need to
manually bracket the include file as "C":

extern "C" {
    #include "pico/util/datetime.h"
}
2021-11-28 09:00:14 -08:00
28 changed files with 2729 additions and 260 deletions
+4
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@@ -19,11 +19,15 @@ See https://arduino-pico.readthedocs.io/en/latest/ along with the examples for m
* Adafruit Trinkey RP2040 QT
* Arduino Nano RP2040 Connect (preliminary)
* Cytron Maker Pi RP2040
* Cytron Maker Nano RP2040
* Invector Labs Challenger RP2040 WiFi
* Invector Labs Challenger NB RP2040 WiFi
* Invector Labs Challenger RP2040 LTE
* Invector Labs RPICO32
* Melopero Shake RP2040
* SparkFun ProMicro RP2040
* uPesy RP2040 DevKit
* WIZnet W5100S-EVB-Pico
* Generic (configurable flash, I/O pins)
# Installing via Arduino Boards Manager
+1969 -180
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+2 -1
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@@ -30,6 +30,7 @@
#include <pins_arduino.h>
#include "hardware/gpio.h" // Required for the port*Register macros
#include "debug_internal.h"
#include <RP2040.h> // CMSIS
// Try and make the best of the old Arduino abs() macro. When in C++, use
// the sane std::abs() call, but for C code use their macro since stdlib abs()
@@ -95,7 +96,7 @@ void analogWriteResolution(int res);
#endif
#include "SerialUART.h"
#include "RP2040.h"
#include "RP2040Support.h"
#include "Bootsel.h"
// Template which will evaluate at *compile time* to a single 32b number
-1
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@@ -52,7 +52,6 @@ mutex_t __usb_mutex;
#endif
#define USBD_DESC_LEN (TUD_CONFIG_DESC_LEN + TUD_CDC_DESC_LEN)
#define USBD_MAX_POWER_MA (250)
#define USBD_ITF_CDC (0) // needs 2 interfaces
#define USBD_ITF_MAX (2)
BIN
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Binary file not shown.
+4
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@@ -15,6 +15,9 @@
-iwithprefixbefore/pico-sdk/src/common/pico_util/include
-iwithprefixbefore/pico-sdk/src/rp2040/hardware_regs/include
-iwithprefixbefore/pico-sdk/src/rp2040/hardware_structs/include
-iwithprefixbefore/pico-sdk/src/rp2_common/cmsis/include
-iwithprefixbefore/pico-sdk/src/rp2_common/cmsis/stub/CMSIS/Core/Include
-iwithprefixbefore/pico-sdk/src/rp2_common/cmsis/stub/CMSIS/Device/RaspberryPi/RP2040/Include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_adc/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_base/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_claim/include
@@ -26,6 +29,7 @@
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_gpio/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_i2c/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_irq/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_rtc/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_pio/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_pll/include
-iwithprefixbefore/pico-sdk/src/rp2_common/hardware_pwm/include
+2 -8
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@@ -135,8 +135,8 @@ public:
size_t size() {
uint64_t sz = size64();
#ifdef DEBUG_ESP_PORT
if (sz > (uint64_t)SIZE_MAX) {
DEBUG_ESP_PORT.printf_P(PSTR("WARNING: SD card size overflow (%lld>= 4GB). Please update source to use size64().\n"), sz);
if (sz > std::numeric_limits<uint32_t>::max()) {
DEBUG_ESP_PORT.printf_P(PSTR("WARNING: SD card size overflow (%lld >= 4GB). Please update source to use size64().\n"), (long long)sz);
}
#endif
return (size_t)sz;
@@ -191,9 +191,6 @@ private:
// Expose FatStructs.h helpers for MS-DOS date/time for use with dateTimeCallback
static inline uint16_t FAT_DATE(uint16_t year, uint8_t month, uint8_t day) {
return (year - 1980) << 9 | month << 5 | day;
}
static inline uint16_t FAT_YEAR(uint16_t fatDate) {
return 1980 + (fatDate >> 9);
}
@@ -203,9 +200,6 @@ static inline uint8_t FAT_MONTH(uint16_t fatDate) {
static inline uint8_t FAT_DAY(uint16_t fatDate) {
return fatDate & 0X1F;
}
static inline uint16_t FAT_TIME(uint8_t hour, uint8_t minute, uint8_t second) {
return hour << 11 | minute << 5 | second >> 1;
}
static inline uint8_t FAT_HOUR(uint16_t fatTime) {
return fatTime >> 11;
}
+7 -7
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@@ -64,13 +64,13 @@ FileImplPtr SDFSImpl::open(const char* path, OpenMode openMode, AccessMode acces
}
free(pathStr);
}
sdfat::File32 fd = _fs.open(path, flags);
File32 fd = _fs.open(path, flags);
if (!fd) {
DEBUGV("SDFSImpl::openFile: fd=%p path=`%s` openMode=%d accessMode=%d",
&fd, path, openMode, accessMode);
return FileImplPtr();
}
auto sharedFd = std::make_shared<sdfat::File32>(fd);
auto sharedFd = std::make_shared<File32>(fd);
return std::make_shared<SDFSFileImpl>(this, sharedFd, path);
}
@@ -90,7 +90,7 @@ DirImplPtr SDFSImpl::openDir(const char* path)
}
// At this point we have a name of "/blah/blah/blah" or "blah" or ""
// If that references a directory, just open it and we're done.
sdfat::File32 dirFile;
File32 dirFile;
const char *filter = "";
if (!pathStr[0]) {
// openDir("") === openDir("/")
@@ -135,7 +135,7 @@ DirImplPtr SDFSImpl::openDir(const char* path)
DEBUGV("SDFSImpl::openDir: path=`%s`\n", path);
return DirImplPtr();
}
auto sharedDir = std::make_shared<sdfat::File32>(dirFile);
auto sharedDir = std::make_shared<File32>(dirFile);
auto ret = std::make_shared<SDFSDirImpl>(filter, this, sharedDir, pathStr);
free(pathStr);
return ret;
@@ -145,12 +145,12 @@ bool SDFSImpl::format() {
if (_mounted) {
return false;
}
sdfat::SdCardFactory cardFactory;
sdfat::SdCard* card = cardFactory.newCard(sdfat::SdSpiConfig(_cfg._csPin, DEDICATED_SPI, _cfg._spiSettings));
SdCardFactory cardFactory;
SdCard* card = cardFactory.newCard(SdSpiConfig(_cfg._csPin, DEDICATED_SPI, _cfg._spiSettings));
if (!card || card->errorCode()) {
return false;
}
sdfat::FatFormatter fatFormatter;
FatFormatter fatFormatter;
uint8_t *sectorBuffer = new uint8_t[512];
bool ret = fatFormatter.format(card, sectorBuffer, nullptr);
delete[] sectorBuffer;
+33 -32
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@@ -96,11 +96,11 @@ public:
return false;
}
info.maxOpenFiles = 999; // TODO - not valid
info.blockSize = _fs.vol()->sectorsPerCluster() * _fs.vol()->bytesPerSector();
info.blockSize = _fs.vol()->bytesPerCluster();
info.pageSize = 0; // TODO ?
info.maxPathLength = 255; // TODO ?
info.totalBytes =_fs.vol()->clusterCount() * info.blockSize;
info.usedBytes = info.totalBytes - (_fs.vol()->freeClusterCount() * _fs.vol()->sectorsPerCluster() * _fs.vol()->bytesPerSector());
info.usedBytes = info.totalBytes - (_fs.vol()->freeClusterCount() * _fs.vol()->bytesPerCluster());
return true;
}
@@ -114,9 +114,9 @@ public:
info.maxOpenFiles = i.maxOpenFiles;
info.maxPathLength = i.maxPathLength;
#ifdef DEBUG_ESP_PORT
if (i.totalBytes > (uint64_t)SIZE_MAX) {
if (i.totalBytes > std::numeric_limits<uint32_t>::max()) {
// This catches both total and used cases, since used must always be < total.
DEBUG_ESP_PORT.printf_P(PSTR("WARNING: SD card size overflow (%lld>= 4GB). Please update source to use info64().\n"), i.totalBytes);
DEBUG_ESP_PORT.printf_P(PSTR("WARNING: SD card size overflow (%lld >= 4GB). Please update source to use info64().\n"), (long long)i.totalBytes);
}
#endif
info.totalBytes = (size_t)i.totalBytes;
@@ -155,7 +155,7 @@ public:
format();
_mounted = _fs.begin(_cfg._csPin, _cfg._spiSettings);
}
sdfat::FsDateTime::setCallback(dateTimeCB);
FsDateTime::setCallback(dateTimeCB);
return _mounted;
}
@@ -184,7 +184,7 @@ public:
return (totalClusters() / blocksPerCluster());
}
size_t clusterSize() {
return blocksPerCluster() * _fs.vol()->bytesPerSector();
return _fs.vol()->bytesPerCluster();
}
size_t size() {
return (clusterSize() * totalClusters());
@@ -228,7 +228,7 @@ protected:
friend class SDFileImpl;
friend class SDFSDirImpl;
sdfat::SdFat* getFs()
SdFat* getFs()
{
return &_fs;
}
@@ -245,16 +245,17 @@ protected:
if (openMode & OM_TRUNCATE) {
mode |= O_TRUNC;
}
if (accessMode & AM_READ) {
if ((accessMode & (AM_READ | AM_WRITE)) == (AM_READ | AM_WRITE)) {
mode |= O_RDWR;
} else if (accessMode & AM_READ) {
mode |= O_READ;
}
if (accessMode & AM_WRITE) {
} else if (accessMode & AM_WRITE) {
mode |= O_WRITE;
}
return mode;
}
sdfat::SdFat _fs;
SdFat _fs;
SDFSConfig _cfg;
bool _mounted;
};
@@ -263,7 +264,7 @@ protected:
class SDFSFileImpl : public FileImpl
{
public:
SDFSFileImpl(SDFSImpl *fs, std::shared_ptr<sdfat::File32> fd, const char *name)
SDFSFileImpl(SDFSImpl *fs, std::shared_ptr<File32> fd, const char *name)
: _fs(fs), _fd(fd), _opened(true)
{
_name = std::shared_ptr<char>(new char[strlen(name) + 1], std::default_delete<char[]>());
@@ -379,7 +380,7 @@ public:
time_t getLastWrite() override {
time_t ftime = 0;
if (_opened && _fd) {
sdfat::DirFat_t tmp;
DirFat_t tmp;
if (_fd.get()->dirEntry(&tmp)) {
ftime = SDFSImpl::FatToTimeT(*(uint16_t*)tmp.modifyDate, *(uint16_t*)tmp.modifyTime);
}
@@ -390,7 +391,7 @@ public:
time_t getCreationTime() override {
time_t ftime = 0;
if (_opened && _fd) {
sdfat::DirFat_t tmp;
DirFat_t tmp;
if (_fd.get()->dirEntry(&tmp)) {
ftime = SDFSImpl::FatToTimeT(*(uint16_t*)tmp.createDate, *(uint16_t*)tmp.createTime);
}
@@ -399,16 +400,16 @@ public:
}
protected:
SDFSImpl* _fs;
std::shared_ptr<sdfat::File32> _fd;
std::shared_ptr<char> _name;
bool _opened;
SDFSImpl* _fs;
std::shared_ptr<File32> _fd;
std::shared_ptr<char> _name;
bool _opened;
};
class SDFSDirImpl : public DirImpl
{
public:
SDFSDirImpl(const String& pattern, SDFSImpl* fs, std::shared_ptr<sdfat::File32> dir, const char *dirPath = nullptr)
SDFSDirImpl(const String& pattern, SDFSImpl* fs, std::shared_ptr<File32> dir, const char *dirPath = nullptr)
: _pattern(pattern), _fs(fs), _dir(dir), _valid(false), _dirPath(nullptr)
{
if (dirPath) {
@@ -483,14 +484,14 @@ public:
{
const int n = _pattern.length();
do {
sdfat::File32 file;
File32 file;
file.openNext(_dir.get(), O_READ);
if (file) {
_valid = 1;
_size = file.fileSize();
_isFile = file.isFile();
_isDirectory = file.isDir();
sdfat::DirFat_t tmp;
DirFat_t tmp;
if (file.dirEntry(&tmp)) {
_time = SDFSImpl::FatToTimeT(*(uint16_t*)tmp.modifyDate, *(uint16_t*)tmp.modifyTime);
_creation = SDFSImpl::FatToTimeT(*(uint16_t*)tmp.createDate, *(uint16_t*)tmp.createTime);
@@ -515,17 +516,17 @@ public:
}
protected:
String _pattern;
SDFSImpl* _fs;
std::shared_ptr<sdfat::File32> _dir;
bool _valid;
char _lfn[64];
time_t _time;
time_t _creation;
std::shared_ptr<char> _dirPath;
uint32_t _size;
bool _isFile;
bool _isDirectory;
String _pattern;
SDFSImpl* _fs;
std::shared_ptr<File32> _dir;
bool _valid;
char _lfn[64];
time_t _time;
time_t _creation;
std::shared_ptr<char> _dirPath;
uint32_t _size;
bool _isFile;
bool _isDirectory;
};
}; // namespace sdfs
+3
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@@ -41,6 +41,9 @@
{
"name": "Arduino Nano RP2040 Connect"
},
{
"name": "Cytron Maker Nano RP2040"
},
{
"name": "Cytron Maker Pi RP2040"
},
+3 -3
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@@ -96,13 +96,13 @@ discovery.rp2040.pattern="{runtime.tools.pqt-python3.path}/python3" -I "{runtime
# ----------------
## Compile c files
recipe.c.o.pattern="{compiler.path}{compiler.c.cmd}" {compiler.c.flags} {build.usbpid} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.c.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {build.flags.optimize} {includes} "{source_file}" -o "{object_file}"
recipe.c.o.pattern="{compiler.path}{compiler.c.cmd}" {compiler.c.flags} {build.usbpid} {build.usbpwr} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.c.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {build.flags.optimize} {includes} "{source_file}" -o "{object_file}"
## Compile c++ files
recipe.cpp.o.pattern="{compiler.path}{compiler.cpp.cmd}" {compiler.cpp.flags} {build.usbpid} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.cpp.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {build.flags.optimize} {includes} "{source_file}" -o "{object_file}"
recipe.cpp.o.pattern="{compiler.path}{compiler.cpp.cmd}" {compiler.cpp.flags} {build.usbpid} {build.usbpwr} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.cpp.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {build.flags.optimize} {includes} "{source_file}" -o "{object_file}"
## Compile S files
recipe.S.o.pattern="{compiler.path}{compiler.S.cmd}" {compiler.S.flags} {build.usbpid} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.S.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {includes} "{source_file}" -o "{object_file}"
recipe.S.o.pattern="{compiler.path}{compiler.S.cmd}" {compiler.S.flags} {build.usbpid} {build.usbpwr} -DF_CPU={build.f_cpu} -DARDUINO={runtime.ide.version} -DARDUINO_{build.board} -DBOARD_NAME="{build.board}" -DARDUINO_ARCH_{build.arch} {compiler.S.extra_flags} {build.extra_flags} {build.debug_port} {build.debug_level} {includes} "{source_file}" -o "{object_file}"
## Create archives
# archive_file_path is needed for backwards compatibility with IDE 1.6.5 or older, IDE 1.6.6 or newer overrides this value
+2 -5
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@@ -9,16 +9,13 @@ function skip_ino()
read -d '' skiplist << EOL || true
/#attic/
/AvrAdcLogger/
/BackwardCompatibility/
/examplesV1/
/ExFatFormatter/
/ExFatLogger/
/ExFatUnicodeTest/
/RtcTimestampTest/
/SoftwareSpi/
/STM32Test/
/TeensyDmaAdcLogger/
/TeensyRtcTimestamp/
/TeensySdioDemo/
/TeensySdioLogger/
/UserChipSelectFunction/
/UserSPIDriver/
/Adafruit_TinyUSB_Arduino/
+3 -1
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@@ -53,6 +53,7 @@ target_link_libraries(pico
hardware_vreg
hardware_watchdog
hardware_xosc
cmsis
pico_bit_ops
pico_bootrom
pico_bootsel_via_double_reset
@@ -70,8 +71,9 @@ target_link_libraries(pico
pico_standard_link
pico_stdlib
pico_unique_id
pico_util
tinyusb
tinyusb_device_unmarked
tinyusb_device_unmarked
pico_audio
pico_audio_i2s
)
+26 -21
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@@ -37,9 +37,9 @@ def BuildFreq(name):
print("%s.menu.freq.%s.build.f_cpu=%dL" % (name, f, f * 1000000))
def BuildOptimize(name):
for l in [ ("Small", "Small", "-Os", "(standard)"), ("Optimize", "Optimize", "-O", ""), ("Optimize2", "Optimize More", "-O2", ""),
("Optimize3", "Optimize Even More", "-O3", ""), ("Fast", "Fast", "-Ofast", "(maybe slower)"), ("Debug", "Debug", "-Og", "") ]:
print("%s.menu.opt.%s=%s (%s) %s" % (name, l[0], l[1], l[2], l[3]))
for l in [ ("Small", "Small", "-Os", " (standard)"), ("Optimize", "Optimize", "-O", ""), ("Optimize2", "Optimize More", "-O2", ""),
("Optimize3", "Optimize Even More", "-O3", ""), ("Fast", "Fast", "-Ofast", " (maybe slower)"), ("Debug", "Debug", "-Og", "") ]:
print("%s.menu.opt.%s=%s (%s)%s" % (name, l[0], l[1], l[2], l[3]))
print("%s.menu.opt.%s.build.flags.optimize=%s" % (name, l[0], l[2]))
def BuildRTTI(name):
@@ -66,7 +66,7 @@ def BuildWithoutUSBStack(name):
print("%s.menu.usbstack.nousb=No USB" % (name))
print('%s.menu.usbstack.nousb.build.usbstack_flags="-DNO_USB -DDISABLE_USB_SERIAL -I{runtime.platform.path}/tools/libpico"' % (name))
def BuildHeader(name, vendor_name, product_name, vidtouse, pidtouse, vid, pid, boarddefine, variant, uploadtool, flashsize, ramsize, boot2):
def BuildHeader(name, vendor_name, product_name, vidtouse, pidtouse, vid, pid, pwr, boarddefine, variant, uploadtool, flashsize, ramsize, boot2):
prettyname = vendor_name + " " + product_name
print()
print("# -----------------------------------")
@@ -76,6 +76,7 @@ def BuildHeader(name, vendor_name, product_name, vidtouse, pidtouse, vid, pid, b
print("%s.vid.0=%s" % (name, vidtouse))
print("%s.pid.0=%s" % (name, pidtouse))
print("%s.build.usbpid=-DSERIALUSB_PID=%s" % (name, pid))
print("%s.build.usbpwr=-DUSBD_MAX_POWER_MA=%s" % (name, pwr))
print("%s.build.board=%s" % (name, boarddefine))
print("%s.build.mcu=cortex-m0plus" % (name))
print("%s.build.variant=%s" % (name, variant))
@@ -110,7 +111,7 @@ def BuildGlobalMenuList():
print("menu.usbstack=USB Stack")
def MakeBoard(name, vendor_name, product_name, vid, pid, boarddefine, flashsizemb, boot2):
def MakeBoard(name, vendor_name, product_name, vid, pid, pwr, boarddefine, flashsizemb, boot2):
for a, b, c in [ ["", "", "uf2conv"], ["picoprobe", " (Picoprobe)", "picoprobe"], ["picodebug", " (pico-debug)", "picodebug"]]:
n = name + a
p = product_name + b
@@ -127,7 +128,7 @@ def MakeBoard(name, vendor_name, product_name, vid, pid, boarddefine, flashsizem
ramsizekb = 240;
else:
pidtouse = pid
BuildHeader(n, vendor_name, p, vidtouse, pidtouse, vid, pid, boarddefine, name, c, flashsizemb * 1024 * 1024, ramsizekb * 1024, boot2)
BuildHeader(n, vendor_name, p, vidtouse, pidtouse, vid, pid, pwr, boarddefine, name, c, flashsizemb * 1024 * 1024, ramsizekb * 1024, boot2)
if name == "generic":
BuildFlashMenu(n, 2*1024*1024, [0, 1*1024*1024])
BuildFlashMenu(n, 4*1024*1024, [0, 2*1024*1024])
@@ -149,18 +150,22 @@ def MakeBoard(name, vendor_name, product_name, vid, pid, boarddefine, flashsizem
BuildGlobalMenuList()
MakeBoard("rpipico", "Raspberry Pi", "Pico", "0x2e8a", "0x000a", "RASPBERRY_PI_PICO", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_feather", "Adafruit", "Feather RP2040", "0x239a", "0x80f1", "ADAFRUIT_FEATHER_RP2040", 8, "boot2_w25x10cl_4_padded_checksum")
MakeBoard("adafruit_itsybitsy", "Adafruit", "ItsyBitsy RP2040", "0x239a", "0x80fd", "ADAFRUIT_ITSYBITSY_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_qtpy", "Adafruit", "QT Py RP2040", "0x239a", "0x80f7", "ADAFRUIT_QTPY_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_stemmafriend", "Adafruit", "STEMMA Friend RP2040", "0x239a", "0x80e3", "ADAFRUIT_STEMMAFRIEND_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_trinkeyrp2040qt", "Adafruit", "Trinkey RP2040 QT", "0x239a", "0x8109", "ADAFRUIT_TRINKEYQT_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_macropad2040", "Adafruit", "MacroPad RP2040", "0x239a", "0x8107", "ADAFRUIT_MACROPAD_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("arduino_nano_connect", "Arduino", "Nano RP2040 Connect", "0x2341", "0x0058", "ARDUINO_NANO_RP2040_CONNECT", 16, "boot2_w25q080_2_padded_checksum")
MakeBoard("cytron_maker_pi_rp2040", "Cytron", "Maker Pi RP2040", "0x2e8a", "0x1000", "CYTRON_MAKER_PI_RP2040", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("sparkfun_promicrorp2040", "SparkFun", "ProMicro RP2040", "0x1b4f", "0x0026", "SPARKFUN_PROMICRO_RP2040", 16, "boot2_generic_03h_4_padded_checksum")
MakeBoard("generic", "Generic", "RP2040", "0x2e8a", "0xf00a", "GENERIC_RP2040", 16, "boot2_generic_03h_4_padded_checksum")
MakeBoard("challenger_2040_wifi", "iLabs", "Challenger 2040 WiFi", "0x2e8a", "0x1006", "CHALLENGER_2040_WIFI_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("challenger_2040_lte", "iLabs", "Challenger 2040 LTE", "0x2e8a", "0x100b", "CHALLENGER_2040_LTE_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("melopero_shake_rp2040", "Melopero", "Shake RP2040", "0x2e8a", "0x1005", "MELOPERO_SHAKE_RP2040", 16, "boot2_w25q080_2_padded_checksum")
MakeBoard("upesy_rp2040_devkit", "uPesy", "RP2040 DevKit", "0x2e8a", "0x1007", "UPESY_RP2040_DEVKIT", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("rpipico", "Raspberry Pi", "Pico", "0x2e8a", "0x000a", 250, "RASPBERRY_PI_PICO", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_feather", "Adafruit", "Feather RP2040", "0x239a", "0x80f1", 250, "ADAFRUIT_FEATHER_RP2040", 8, "boot2_w25x10cl_4_padded_checksum")
MakeBoard("adafruit_itsybitsy", "Adafruit", "ItsyBitsy RP2040", "0x239a", "0x80fd", 250, "ADAFRUIT_ITSYBITSY_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_qtpy", "Adafruit", "QT Py RP2040", "0x239a", "0x80f7", 250, "ADAFRUIT_QTPY_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_stemmafriend", "Adafruit", "STEMMA Friend RP2040", "0x239a", "0x80e3", 250, "ADAFRUIT_STEMMAFRIEND_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_trinkeyrp2040qt", "Adafruit", "Trinkey RP2040 QT", "0x239a", "0x8109", 250, "ADAFRUIT_TRINKEYQT_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("adafruit_macropad2040", "Adafruit", "MacroPad RP2040", "0x239a", "0x8107", 250, "ADAFRUIT_MACROPAD_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("arduino_nano_connect", "Arduino", "Nano RP2040 Connect", "0x2341", "0x0058", 250, "ARDUINO_NANO_RP2040_CONNECT", 16, "boot2_w25q080_2_padded_checksum")
MakeBoard("cytron_maker_nano_rp2040", "Cytron", "Maker Nano RP2040", "0x2e8a", "0x100f", 250, "CYTRON_MAKER_NANO_RP2040", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("cytron_maker_pi_rp2040", "Cytron", "Maker Pi RP2040", "0x2e8a", "0x1000", 250, "CYTRON_MAKER_PI_RP2040", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("sparkfun_promicrorp2040", "SparkFun", "ProMicro RP2040", "0x1b4f", "0x0026", 250, "SPARKFUN_PROMICRO_RP2040", 16, "boot2_generic_03h_4_padded_checksum")
MakeBoard("generic", "Generic", "RP2040", "0x2e8a", "0xf00a", 250, "GENERIC_RP2040", 16, "boot2_generic_03h_4_padded_checksum")
MakeBoard("challenger_2040_wifi", "iLabs", "Challenger 2040 WiFi", "0x2e8a", "0x1006", 250, "CHALLENGER_2040_WIFI_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("challenger_2040_lte", "iLabs", "Challenger 2040 LTE", "0x2e8a", "0x100b", 500, "CHALLENGER_2040_LTE_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("challenger_nb_2040_wifi", "iLabs", "Challenger NB 2040 WiFi", "0x2e8a", "0x100b", 500, "CHALLENGER_NB_2040_WIFI_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("ilabs_rpico32", "iLabs", "RPICO32", "0x2e8a", "0x1010", 250, "ILABS_2040_RPICO32_RP2040", 8, "boot2_w25q080_2_padded_checksum")
MakeBoard("melopero_shake_rp2040", "Melopero", "Shake RP2040", "0x2e8a", "0x1005", 250, "MELOPERO_SHAKE_RP2040", 16, "boot2_w25q080_2_padded_checksum")
MakeBoard("upesy_rp2040_devkit", "uPesy", "RP2040 DevKit", "0x2e8a", "0x1007", 250, "UPESY_RP2040_DEVKIT", 2, "boot2_w25q080_2_padded_checksum")
MakeBoard("wiznet_5100s_evb_pico", "WIZnet", "W5100S-EVB-Pico", "0x2e8a", "0x1008", 250, "WIZNET_5100S_EVB_PICO", 2, "boot2_w25q080_2_padded_checksum")
@@ -0,0 +1,133 @@
/*
UBlox SARA helper class for the Challenger RP2040 LTE boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include <Arduino.h>
#include <ChallengerLTE.h>
Challenger2040LTEClass::Challenger2040LTEClass() {
pinMode(PIN_SARA_ON, OUTPUT);
digitalWrite(PIN_SARA_ON, LOW); // Output register must always be low
pinMode(PIN_SARA_ON, INPUT_PULLUP);
pinMode(PIN_SARA_RST, INPUT_PULLUP); // Keep as input for now
pinMode(PIN_SARA_PWR, OUTPUT);
digitalWrite(PIN_SARA_PWR, LOW); // No power to SARA yet
serialPortConfigured = false;
}
// Do a HW reset by applying a low pulse to the reset line for 1mSec
bool Challenger2040LTEClass::doPowerOn() {
bool ret;
digitalWrite(PIN_SARA_PWR, HIGH); // Make sure LDO is on
delay(100); // let the power stabilize
pinMode(PIN_SARA_ON, OUTPUT); // Pull power on control low
delay(150); // For 150mS
pinMode(PIN_SARA_ON, INPUT_PULLUP); // before releasing it again.
delay(1000); // Now wait for 1 second
SARA_SERIAL_PORT.begin(DEFAULT_SARA_BAUDRATE);
serialPortConfigured = true;
ret = isAlive(); // Makie sure the modem is
// up and running
delay(250); // Allow for any extra characters
// before flushing the input buffer
while(SARA_SERIAL_PORT.available()) SARA_SERIAL_PORT.read();
return ret;
}
// Checks to see if the modem responds to the "AT" poll command.
bool Challenger2040LTEClass::isAlive(uint32_t timeout) {
SARA_SERIAL_PORT.setTimeout(100);
SARA_SERIAL_PORT.println(F("AT"));
String rdy = SARA_SERIAL_PORT.readStringUntil('\n');
while(!rdy.startsWith(F("OK")) && --timeout) {
SARA_SERIAL_PORT.println(F("AT"));
rdy = SARA_SERIAL_PORT.readStringUntil('\n');
//Serial.println(rdy);
}
SARA_SERIAL_PORT.setTimeout(1000); // Restore serial timeout
if (timeout)
return true;
return false;
}
// Return the current MNO profile
// Returns -1 if the serial port is not yet setup or the number of the current
// MNO profile setting from the modem.
int Challenger2040LTEClass::getMNOProfile() {
if (!serialPortConfigured)
return -1;
SARA_SERIAL_PORT.println(F("AT+UMNOPROF?"));
String resp = getResponse();
return resp.substring(resp.indexOf("+UMNOPROF: ") + 11).toInt();
}
// Set a new MNO profile
// Returns false if the serial port is not yet setup
bool Challenger2040LTEClass::setMNOProfile(int profile) {
if (!serialPortConfigured)
return false;
String cmd = "AT+UMNOPROF=" + String(profile) + ",1";
SARA_SERIAL_PORT.println(cmd);
if (!getResponse().endsWith("OK")) {
return false;
}
return true;
}
// Disable power save features
bool Challenger2040LTEClass::enablePS(bool enable) {
if (!serialPortConfigured)
return false;
if (enable)
SARA_SERIAL_PORT.println(F("AT+CPSMS=1"));
else
SARA_SERIAL_PORT.println(F("AT+CPSMS=0"));
if (!getResponse().endsWith("OK")) {
return false;
}
return true;
}
// Get a response from SARA
// A default serial timeout of 2 seconds allow for reading really slow
// responses which should accommodate most replies. Replies are then trimmed
// from control characters and appended with a tab character as a separator.
//
String Challenger2040LTEClass::getResponse(int timeout) {
SARA_SERIAL_PORT.setTimeout(2000); // allow for really slow responses
String resp = SARA_SERIAL_PORT.readStringUntil('\n');
resp.trim();
String acc = resp;
while(resp.indexOf("OK") == -1 && resp.indexOf("ERROR") == -1 && --timeout) {
resp = SARA_SERIAL_PORT.readStringUntil('\n');
resp.trim();
if (resp.length())
acc += "\t" + resp;
}
return acc;
}
Challenger2040LTEClass Challenger2040LTE;
@@ -0,0 +1,38 @@
/*
UBlox SARA helper class for the Challenger RP2040 LTE boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#define DEFAULT_SARA_BAUDRATE 115200
class Challenger2040LTEClass {
public:
Challenger2040LTEClass();
bool doPowerOn();
bool isAlive(uint32_t timeout = 50);
int getMNOProfile();
bool setMNOProfile(int profile);
bool enablePS(bool enable = true);
String getResponse(int timeout = 5);
private:
bool serialPortConfigured;
};
extern Challenger2040LTEClass Challenger2040LTE;
@@ -21,6 +21,7 @@
#define PIN_SARA_ON (13u)
#define PIN_SARA_RST (14u)
#define PIN_SARA_PWR (15u)
#define SARA_SERIAL_PORT Serial2
// SPI
#define PIN_SPI0_MISO (24u)
@@ -16,6 +16,8 @@
// Connected to ESP8285
#define PIN_SERIAL2_TX (4u)
#define PIN_SERIAL2_RX (5u)
#define PIN_ESP8285_RST (19u)
#define PIN_ESP8285_MODE (13u)
// SPI
#define PIN_SPI0_MISO (24u)
@@ -0,0 +1,107 @@
/*
ESP8285 helper class for the Challenger RP2040 WiFi boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include <Arduino.h>
#include <ChallengerWiFi.h>
Challenger2040WiFiClass::Challenger2040WiFiClass() {
pinMode(PIN_ESP8285_RST, OUTPUT);
digitalWrite(PIN_ESP8285_RST, LOW); // Hold ESP8285 in reset
pinMode(PIN_ESP8285_MODE, OUTPUT);
digitalWrite(PIN_ESP8285_MODE, HIGH); // Prepare for normal start
}
// Do a HW reset by applying a low pulse to the reset line for 1mSec
void Challenger2040WiFiClass::doHWReset() {
digitalWrite(PIN_ESP8285_RST, LOW); // Hold ESP8285 in reset
delay(1);
digitalWrite(PIN_ESP8285_RST, HIGH); // Release ESP8285 reset
}
// Set the mode flag high to indicate normal run operation and do a HW
// reset.
void Challenger2040WiFiClass::runReset() { // Prepare ESP8285 for normal op
digitalWrite(PIN_ESP8285_MODE, HIGH); // Prepare for normal start
doHWReset();
}
// Set the mode flag low to indicate flash operation and do a HW
// reset.
void Challenger2040WiFiClass::flashReset() { // Prepare ESP8285 for flashing
digitalWrite(PIN_ESP8285_MODE, LOW); // Prepare for normal start
doHWReset();
}
// Wait for the modem to reply with a "ready" prompt. This can be done
// after a sw or hw reset have been performed to ensure that the AT
// interpreter is up and running.
bool Challenger2040WiFiClass::waitForReady() {
int timeout = 20; // Aprox max 2 sec
Serial2.begin(DEFAULT_ESP8285_BAUDRATE);
Serial2.setTimeout(100);
String rdy = Serial2.readStringUntil('\n');
while(!rdy.startsWith("ready") && timeout--) {
rdy = Serial2.readStringUntil('\n');
}
Serial2.setTimeout(1000); // Reset default timeout to 1000
if (timeout)
return true;
return false;
}
// Reset the ESP8285 and wait for the "ready" prompt to be returned.
bool Challenger2040WiFiClass::reset() {
runReset();
return waitForReady();
}
// Checks to see if the modem responds to the "AT" poll command.
bool Challenger2040WiFiClass::isAlive() {
int timeout = 5;
Serial2.setTimeout(250);
Serial2.println(F("AT"));
String rdy = Serial2.readStringUntil('\n');
while(!rdy.startsWith(F("OK")) && timeout--) {
rdy = Serial2.readStringUntil('\n');
}
Serial2.setTimeout(1000);
if (timeout)
return true;
return false;
}
// Change the baud rate of the ESP8285 as well as the local UART.
// No checking is done on the input baud rate so the user must know what
// baud rates are valid. The function ends by checking if the ESP8285 is
// reachable by doing an "AT" poll.
bool Challenger2040WiFiClass::changeBaudRate(int baud) {
Serial2.print(F("AT+UART_CUR="));
Serial2.print(baud);
Serial2.println(F(",8,1,0,0"));
delay(100);
Serial2.end();
Serial2.begin(baud);
return isAlive();
}
Challenger2040WiFiClass Challenger2040WiFi;
@@ -0,0 +1,36 @@
/*
ESP8285 helper class for the Challenger RP2040 WiFi boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#define DEFAULT_ESP8285_BAUDRATE 115200
class Challenger2040WiFiClass {
public:
Challenger2040WiFiClass();
void doHWReset();
void runReset();
void flashReset();
bool waitForReady();
bool reset();
bool isAlive();
bool changeBaudRate(int baud);
};
extern Challenger2040WiFiClass Challenger2040WiFi;
@@ -0,0 +1,75 @@
#pragma once
#include <ChallengerWiFi.h>
#define PINS_COUNT (24u)
#define NUM_DIGITAL_PINS (24u)
#define NUM_ANALOG_INPUTS (4u)
#define NUM_ANALOG_OUTPUTS (0u)
#define ADC_RESOLUTION (12u)
// LEDs
#define PIN_LED (12u)
// Serial
#define PIN_SERIAL1_TX (16u)
#define PIN_SERIAL1_RX (17u)
// Connected to ESP8285
#define PIN_SERIAL2_TX (4u)
#define PIN_SERIAL2_RX (5u)
#define PIN_ESP8285_RST (19u)
#define PIN_ESP8285_MODE (13u)
// SPI
#define PIN_SPI0_MISO (24u)
#define PIN_SPI0_MOSI (23u)
#define PIN_SPI0_SCK (22u)
#define PIN_SPI0_SS (21u)
// Not pinned out
#define PIN_SPI1_MISO (31u)
#define PIN_SPI1_MOSI (31u)
#define PIN_SPI1_SCK (31u)
#define PIN_SPI1_SS (31u)
// Wire
#define PIN_WIRE0_SDA (0u)
#define PIN_WIRE0_SCL (1u)
// Not pinned out
#define PIN_WIRE1_SDA (31u)
#define PIN_WIRE1_SCL (31u)
#define SERIAL_HOWMANY (2u)
#define SPI_HOWMANY (1u)
#define WIRE_HOWMANY (1u)
#define LED_BUILTIN PIN_LED
#define NEOPIXEL (11u)
static const uint8_t D0 = (16u);
static const uint8_t D1 = (17u);
static const uint8_t D2 = (24u);
static const uint8_t D3 = (23u);
static const uint8_t D4 = (22u);
static const uint8_t D5 = (2u);
static const uint8_t D6 = (3u);
static const uint8_t D7 = (0u);
static const uint8_t D8 = (1u);
static const uint8_t D9 = (6u);
static const uint8_t D10 = (7u);
static const uint8_t D11 = (8u);
static const uint8_t D12 = (9u);
static const uint8_t D13 = (10u);
static const uint8_t D14 = (14u);
static const uint8_t D15 = (15u);
static const uint8_t D16 = (18u);
static const uint8_t D17 = (20u);
static const uint8_t A0 = (26u);
static const uint8_t A1 = (27u);
static const uint8_t A2 = (28u);
static const uint8_t A3 = (29u);
static const uint8_t A4 = (25u);
static const uint8_t A5 = (21u);
@@ -0,0 +1,52 @@
#pragma once
// LEDs
#define PIN_LED (2u)
// Neopixel
#define PIN_NEOPIXEL (11u)
#define NUM_NEOPIXEL (2u)
#define PIN_RGB PIN_NEOPIXEL
// Buzzer
#define PIN_BUZZER (22u)
// Button
#define PIN_BUTTON (20u)
// Serial 1
#define PIN_SERIAL1_TX (0u)
#define PIN_SERIAL1_RX (1u)
// Serial 2 (Not pinned out)
#define PIN_SERIAL2_TX (31u)
#define PIN_SERIAL2_RX (31u)
// SPI 0
#define PIN_SPI0_MISO (16u)
#define PIN_SPI0_MOSI (19u)
#define PIN_SPI0_SCK (18u)
#define PIN_SPI0_SS (17u)
// SPI 1 (Not pinned out)
#define PIN_SPI1_MISO (31u)
#define PIN_SPI1_MOSI (31u)
#define PIN_SPI1_SCK (31u)
#define PIN_SPI1_SS (31u)
// Wire
#define PIN_WIRE0_SDA (0u)
#define PIN_WIRE0_SCL (1u)
#define PIN_WIRE1_SDA (26u)
#define PIN_WIRE1_SCL (27u)
#define SERIAL_HOWMANY (1u)
#define SPI_HOWMANY (1u)
#define WIRE_HOWMANY (2u)
#include "../generic/common.h"
@@ -0,0 +1,107 @@
/*
ESP8285 helper class for the Challenger RP2040 WiFi boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include <Arduino.h>
#include <Ilabs2040WiFiClass.h>
Ilabs2040WiFiClass::Ilabs2040WiFiClass() {
pinMode(PIN_ESP_RESET, OUTPUT);
digitalWrite(PIN_ESP_RESET, LOW); // Hold ESP8285 in reset
pinMode(PIN_ESP_MODE, OUTPUT);
digitalWrite(PIN_ESP_MODE, HIGH); // Prepare for normal start
}
// Do a HW reset by applying a low pulse to the reset line for 1mSec
void Ilabs2040WiFiClass::doHWReset() {
digitalWrite(PIN_ESP_RESET, LOW); // Hold ESP8285 in reset
delay(1);
digitalWrite(PIN_ESP_RESET, HIGH); // Release ESP8285 reset
}
// Set the mode flag high to indicate normal run operation and do a HW
// reset.
void Ilabs2040WiFiClass::runReset() { // Prepare ESP8285 for normal op
digitalWrite(PIN_ESP_MODE, HIGH); // Prepare for normal start
doHWReset();
}
// Set the mode flag low to indicate flash operation and do a HW
// reset.
void Ilabs2040WiFiClass::flashReset() { // Prepare ESP8285 for flashing
digitalWrite(PIN_ESP_MODE, LOW); // Prepare for normal start
doHWReset();
}
// Wait for the modem to reply with a "ready" prompt. This can be done
// after a sw or hw reset have been performed to ensure that the AT
// interpreter is up and running.
bool Ilabs2040WiFiClass::waitForReady() {
int timeout = 20; // Aprox max 2 sec
ESP_SERIAL_PORT.begin(DEFAULT_ESP8285_BAUDRATE);
ESP_SERIAL_PORT.setTimeout(100);
String rdy = ESP_SERIAL_PORT.readStringUntil('\n');
while(!rdy.startsWith("ready") && timeout--) {
rdy = ESP_SERIAL_PORT.readStringUntil('\n');
}
ESP_SERIAL_PORT.setTimeout(1000); // Reset default timeout to 1000
if (timeout)
return true;
return false;
}
// Reset the ESP8285 and wait for the "ready" prompt to be returned.
bool Ilabs2040WiFiClass::reset() {
runReset();
return waitForReady();
}
// Checks to see if the modem responds to the "AT" poll command.
bool Ilabs2040WiFiClass::isAlive() {
int timeout = 5;
ESP_SERIAL_PORT.setTimeout(250);
ESP_SERIAL_PORT.println(F("AT"));
String rdy = ESP_SERIAL_PORT.readStringUntil('\n');
while(!rdy.startsWith(F("OK")) && timeout--) {
rdy = ESP_SERIAL_PORT.readStringUntil('\n');
}
ESP_SERIAL_PORT.setTimeout(1000);
if (timeout)
return true;
return false;
}
// Change the baud rate of the ESP8285 as well as the local UART.
// No checking is done on the input baud rate so the user must know what
// baud rates are valid. The function ends by checking if the ESP8285 is
// reachable by doing an "AT" poll.
bool Ilabs2040WiFiClass::changeBaudRate(int baud) {
ESP_SERIAL_PORT.print(F("AT+UART_CUR="));
ESP_SERIAL_PORT.print(baud);
ESP_SERIAL_PORT.println(F(",8,1,0,0"));
delay(100);
ESP_SERIAL_PORT.end();
ESP_SERIAL_PORT.begin(baud);
return isAlive();
}
Ilabs2040WiFiClass Ilabs2040WiFi;
@@ -0,0 +1,36 @@
/*
ESP8285 helper class for the Challenger RP2040 WiFi boards
Copyright (c) 2021 P. Oldberg <pontus@ilabs.se>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#define DEFAULT_ESP8285_BAUDRATE 115200
class Ilabs2040WiFiClass {
public:
Ilabs2040WiFiClass();
void doHWReset();
void runReset();
void flashReset();
bool waitForReady();
bool reset();
bool isAlive();
bool changeBaudRate(int baud);
};
extern Ilabs2040WiFiClass Ilabs2040WiFi;
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#pragma once
#include <Ilabs2040WiFiClass.h>
#define PINS_COUNT (26u)
#define NUM_DIGITAL_PINS (26u)
#define NUM_ANALOG_INPUTS (4u)
#define NUM_ANALOG_OUTPUTS (0u)
#define ADC_RESOLUTION (12u)
// Connected to ESP8285
#define PIN_SERIAL1_TX (0u)
#define PIN_SERIAL1_RX (1u)
#define PIN_ESP_RESET (2u)
#define PIN_ESP_MODE (3u)
#define PIN_ESP_TXD PIN_SERIAL1_TX
#define PIN_ESP_RXD PIN_SERIAL1_RX
#define ESP_SERIAL_PORT Serial1
// Serial
#define PIN_SERIAL2_TX (8u)
#define PIN_SERIAL2_RX (9u)
// SPI
#define PIN_SPI0_MISO (24u)
#define PIN_SPI0_MOSI (23u)
#define PIN_SPI0_SCK (22u)
#define PIN_SPI0_SS (21u)
// Not pinned out
#define PIN_SPI1_MISO (31u)
#define PIN_SPI1_MOSI (31u)
#define PIN_SPI1_SCK (31u)
#define PIN_SPI1_SS (31u)
// Wire
#define PIN_WIRE0_SDA (4u)
#define PIN_WIRE0_SCL (5u)
// Not pinned out
#define PIN_WIRE1_SDA (31u)
#define PIN_WIRE1_SCL (31u)
#define SERIAL_HOWMANY (2u)
#define SPI_HOWMANY (1u)
#define WIRE_HOWMANY (1u)
static const uint8_t D0 = (0u); // Internal to the board
static const uint8_t D1 = (1u); // Internal to the board
static const uint8_t D2 = (2u); // Internal to the board
static const uint8_t D3 = (3u); // Internal to the board
static const uint8_t D4 = (4u);
static const uint8_t D5 = (5u);
static const uint8_t D6 = (6u);
static const uint8_t D7 = (7u);
static const uint8_t D8 = (8u);
static const uint8_t D9 = (9u);
static const uint8_t D10 = (10u);
static const uint8_t D11 = (11u);
static const uint8_t D12 = (12u);
static const uint8_t D13 = (13u);
static const uint8_t D14 = (14u);
static const uint8_t D15 = (15u);
static const uint8_t D16 = (16u);
static const uint8_t D17 = (17u);
static const uint8_t D18 = (18u);
static const uint8_t D19 = (19u);
static const uint8_t D20 = (20u);
static const uint8_t D21 = (21u);
static const uint8_t D22 = (22u);
static const uint8_t D23 = (23u);
static const uint8_t D24 = (24u);
static const uint8_t D25 = (25u);
static const uint8_t D26 = (26u);
static const uint8_t D27 = (27u);
static const uint8_t D28 = (28u);
static const uint8_t D29 = (29u);
static const uint8_t A0 = (26u);
static const uint8_t A1 = (27u);
static const uint8_t A2 = (28u);
static const uint8_t A3 = (29u);
@@ -0,0 +1 @@
#include "../generic/pins_arduino.h"