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https://github.com/Threnklyn/esphome-dev.git
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6682c43dfa
## Description: Move esphome-core codebase into esphome (and a bunch of other refactors). See https://github.com/esphome/feature-requests/issues/97 Yes this is a shit ton of work and no there's no way to automate it :( But it will be worth it 👍 Progress: - Core support (file copy etc): 80% - Base Abstractions (light, switch): ~50% - Integrations: ~10% - Working? Yes, (but only with ported components). Other refactors: - Moves all codegen related stuff into a single class: `esphome.codegen` (imported as `cg`) - Rework coroutine syntax - Move from `component/platform.py` to `domain/component.py` structure as with HA - Move all defaults out of C++ and into config validation. - Remove `make_...` helpers from Application class. Reason: Merge conflicts with every single new integration. - Pointer Variables are stored globally instead of locally in setup(). Reason: stack size limit. Future work: - Rework const.py - Move all `CONF_...` into a conf class (usage `conf.UPDATE_INTERVAL` vs `CONF_UPDATE_INTERVAL`). Reason: Less convoluted import block - Enable loading from `custom_components` folder. **Related issue (if applicable):** https://github.com/esphome/feature-requests/issues/97 **Pull request in [esphome-docs](https://github.com/esphome/esphome-docs) with documentation (if applicable):** esphome/esphome-docs#<esphome-docs PR number goes here> ## Checklist: - [ ] The code change is tested and works locally. - [ ] Tests have been added to verify that the new code works (under `tests/` folder). If user exposed functionality or configuration variables are added/changed: - [ ] Documentation added/updated in [esphomedocs](https://github.com/OttoWinter/esphomedocs).
60 lines
1.8 KiB
C++
60 lines
1.8 KiB
C++
#include "remote_base.h"
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#include "esphome/core/log.h"
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namespace esphome {
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namespace remote_base {
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static const char *TAG = "remote_base";
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RemoteComponentBase::RemoteComponentBase(GPIOPin *pin) : pin_(pin) {
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#ifdef ARDUINO_ARCH_ESP32
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static rmt_channel_t next_rmt_channel = RMT_CHANNEL_0;
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this->channel_ = next_rmt_channel;
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next_rmt_channel = rmt_channel_t(int(next_rmt_channel) + 1);
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#endif
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}
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void RemoteReceiverBinarySensorBase::dump_config() { LOG_BINARY_SENSOR("", "Remote Receiver Binary Sensor", this); }
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void RemoteTransmitterBase::send_(uint32_t send_times, uint32_t send_wait) {
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#ifdef ESPHOME_LOG_HAS_VERY_VERBOSE
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const std::vector<int32_t> &vec = this->temp_.get_data();
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char buffer[256];
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uint32_t buffer_offset = 0;
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buffer_offset += sprintf(buffer, "Sending times=%u wait=%ums: ", send_times, send_wait);
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for (int32_t i = 0; i < vec.size(); i++) {
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const int32_t value = vec[i];
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const uint32_t remaining_length = sizeof(buffer) - buffer_offset;
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int written;
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if (i + 1 < vec.size()) {
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written = snprintf(buffer + buffer_offset, remaining_length, "%d, ", value);
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} else {
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written = snprintf(buffer + buffer_offset, remaining_length, "%d", value);
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}
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if (written < 0 || written >= int(remaining_length)) {
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// write failed, flush...
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buffer[buffer_offset] = '\0';
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ESP_LOGVV(TAG, "%s", buffer);
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buffer_offset = 0;
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written = sprintf(buffer, " ");
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if (i + 1 < vec.size()) {
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written += sprintf(buffer + written, "%d, ", value);
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} else {
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written += sprintf(buffer + written, "%d", value);
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}
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}
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buffer_offset += written;
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}
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if (buffer_offset != 0) {
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ESP_LOGVV(TAG, "%s", buffer);
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}
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#endif
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this->send_internal(send_times, send_wait);
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}
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} // namespace remote_base
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} // namespace esphome
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