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select_fix
| Author | SHA1 | Date | |
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3291488a8b | ||
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75550b39f4 | ||
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02e1ed2130 | ||
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2948264917 | ||
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660411ac42 | ||
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88e3f02c9c | ||
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f3f419077b |
@@ -1143,7 +1143,7 @@ message ListEntitiesSelectResponse {
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reserved 4; // Deprecated: was string unique_id
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string icon = 5 [(field_ifdef) = "USE_ENTITY_ICON"];
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repeated string options = 6 [(container_pointer) = "std::vector"];
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repeated string options = 6 [(container_pointer) = "FixedVector"];
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bool disabled_by_default = 7;
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EntityCategory entity_category = 8;
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uint32 device_id = 9 [(field_ifdef) = "USE_DEVICES"];
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@@ -1534,7 +1534,7 @@ class ListEntitiesSelectResponse final : public InfoResponseProtoMessage {
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#ifdef HAS_PROTO_MESSAGE_DUMP
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const char *message_name() const override { return "list_entities_select_response"; }
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#endif
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const std::vector<std::string> *options{};
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const FixedVector<std::string> *options{};
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void encode(ProtoWriteBuffer buffer) const override;
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void calculate_size(ProtoSize &size) const override;
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#ifdef HAS_PROTO_MESSAGE_DUMP
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@@ -9,7 +9,8 @@ static const char *const TAG = "copy.select";
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void CopySelect::setup() {
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source_->add_on_state_callback([this](const std::string &value, size_t index) { this->publish_state(value); });
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traits.set_options(source_->traits.get_options());
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// Copy options from source select
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this->traits.copy_options(source_->traits.get_options());
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if (source_->has_state())
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this->publish_state(source_->state);
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@@ -300,11 +300,11 @@ void LvSelectable::set_selected_text(const std::string &text, lv_anim_enable_t a
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}
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}
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void LvSelectable::set_options(std::vector<std::string> options) {
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void LvSelectable::set_options(std::initializer_list<std::string> options) {
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auto index = this->get_selected_index();
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if (index >= options.size())
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index = options.size() - 1;
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this->options_ = std::move(options);
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this->options_ = options;
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this->set_option_string(join_string(this->options_).c_str());
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lv_event_send(this->obj, LV_EVENT_REFRESH, nullptr);
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this->set_selected_index(index, LV_ANIM_OFF);
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@@ -358,12 +358,12 @@ class LvSelectable : public LvCompound {
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virtual void set_selected_index(size_t index, lv_anim_enable_t anim) = 0;
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void set_selected_text(const std::string &text, lv_anim_enable_t anim);
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std::string get_selected_text();
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std::vector<std::string> get_options() { return this->options_; }
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void set_options(std::vector<std::string> options);
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const FixedVector<std::string> &get_options() { return this->options_; }
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void set_options(std::initializer_list<std::string> options);
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protected:
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virtual void set_option_string(const char *options) = 0;
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std::vector<std::string> options_{};
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FixedVector<std::string> options_{};
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};
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#ifdef USE_LVGL_DROPDOWN
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@@ -53,7 +53,10 @@ class LVGLSelect : public select::Select, public Component {
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this->widget_->set_selected_text(value, this->anim_);
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this->publish();
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}
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void set_options_() { this->traits.set_options(this->widget_->get_options()); }
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void set_options_() {
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// Copy options from lvgl widget to select traits
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this->traits.copy_options(this->widget_->get_options());
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}
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LvSelectable *widget_;
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lv_anim_enable_t anim_;
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@@ -3,9 +3,9 @@
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namespace esphome {
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namespace select {
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void SelectTraits::set_options(std::vector<std::string> options) { this->options_ = std::move(options); }
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void SelectTraits::set_options(std::initializer_list<std::string> options) { this->options_ = options; }
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const std::vector<std::string> &SelectTraits::get_options() const { return this->options_; }
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const FixedVector<std::string> &SelectTraits::get_options() const { return this->options_; }
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} // namespace select
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} // namespace esphome
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@@ -1,18 +1,21 @@
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#pragma once
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#include <vector>
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#include <string>
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#include <initializer_list>
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#include "esphome/core/helpers.h"
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namespace esphome {
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namespace select {
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class SelectTraits {
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public:
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void set_options(std::vector<std::string> options);
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const std::vector<std::string> &get_options() const;
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void set_options(std::initializer_list<std::string> options);
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const FixedVector<std::string> &get_options() const;
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/// Copy options from another SelectTraits (for copy_select, lvgl)
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void copy_options(const FixedVector<std::string> &other) { this->options_.copy_from(other); }
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protected:
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std::vector<std::string> options_;
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FixedVector<std::string> options_;
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};
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} // namespace select
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@@ -378,14 +378,18 @@ async def to_code(config):
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# Track if any network uses Enterprise authentication
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has_eap = False
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def add_sta(ap, network):
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ip_config = network.get(CONF_MANUAL_IP, config.get(CONF_MANUAL_IP))
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cg.add(var.add_sta(wifi_network(network, ap, ip_config)))
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# Build all WiFiAP objects
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networks = config.get(CONF_NETWORKS, [])
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if networks:
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wifi_aps = []
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for network in networks:
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if CONF_EAP in network:
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has_eap = True
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ip_config = network.get(CONF_MANUAL_IP, config.get(CONF_MANUAL_IP))
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wifi_aps.append(wifi_network(network, WiFiAP(), ip_config))
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for network in config.get(CONF_NETWORKS, []):
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if CONF_EAP in network:
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has_eap = True
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cg.with_local_variable(network[CONF_ID], WiFiAP(), add_sta, network)
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# Set all WiFi networks at once
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cg.add(var.set_stas(wifi_aps))
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if CONF_AP in config:
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conf = config[CONF_AP]
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@@ -330,11 +330,8 @@ float WiFiComponent::get_loop_priority() const {
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return 10.0f; // before other loop components
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}
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void WiFiComponent::add_sta(const WiFiAP &ap) { this->sta_.push_back(ap); }
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void WiFiComponent::set_sta(const WiFiAP &ap) {
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this->clear_sta();
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this->add_sta(ap);
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}
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void WiFiComponent::set_stas(const std::initializer_list<WiFiAP> &aps) { this->sta_ = aps; }
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void WiFiComponent::set_sta(const WiFiAP &ap) { this->set_stas({ap}); }
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void WiFiComponent::clear_sta() { this->sta_.clear(); }
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void WiFiComponent::save_wifi_sta(const std::string &ssid, const std::string &password) {
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SavedWifiSettings save{}; // zero-initialized - all bytes set to \0, guaranteeing null termination
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@@ -219,7 +219,7 @@ class WiFiComponent : public Component {
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void set_sta(const WiFiAP &ap);
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WiFiAP get_sta() { return this->selected_ap_; }
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void add_sta(const WiFiAP &ap);
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void set_stas(const std::initializer_list<WiFiAP> &aps);
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void clear_sta();
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#ifdef USE_WIFI_AP
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@@ -393,7 +393,7 @@ class WiFiComponent : public Component {
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#endif
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std::string use_address_;
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std::vector<WiFiAP> sta_;
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FixedVector<WiFiAP> sta_;
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std::vector<WiFiSTAPriority> sta_priorities_;
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wifi_scan_vector_t<WiFiScanResult> scan_result_;
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WiFiAP selected_ap_;
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@@ -194,12 +194,8 @@ template<typename T> class FixedVector {
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size_ = 0;
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}
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public:
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FixedVector() = default;
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/// Constructor from initializer list - allocates exact size needed
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/// This enables brace initialization: FixedVector<int> v = {1, 2, 3};
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FixedVector(std::initializer_list<T> init_list) {
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// Helper to assign from initializer list (shared by constructor and assignment operator)
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void assign_from_initializer_list_(std::initializer_list<T> init_list) {
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init(init_list.size());
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size_t idx = 0;
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for (const auto &item : init_list) {
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@@ -209,9 +205,17 @@ template<typename T> class FixedVector {
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size_ = init_list.size();
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}
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public:
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FixedVector() = default;
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/// Constructor from initializer list - allocates exact size needed
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/// This enables brace initialization: FixedVector<int> v = {1, 2, 3};
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FixedVector(std::initializer_list<T> init_list) { assign_from_initializer_list_(init_list); }
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~FixedVector() { cleanup_(); }
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// Disable copy operations (avoid accidental expensive copies)
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// Use copy_from() for explicit copying when needed (e.g., copy_select)
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FixedVector(const FixedVector &) = delete;
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FixedVector &operator=(const FixedVector &) = delete;
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@@ -234,6 +238,28 @@ template<typename T> class FixedVector {
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return *this;
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}
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/// Assignment from initializer list - avoids temporary and move overhead
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/// This enables: FixedVector<int> v; v = {1, 2, 3};
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FixedVector &operator=(std::initializer_list<T> init_list) {
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cleanup_();
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reset_();
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assign_from_initializer_list_(init_list);
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return *this;
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}
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/// Explicitly copy another FixedVector
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/// This method exists instead of operator= to make copying intentional and visible.
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/// Copying is expensive on embedded systems, so we require explicit opt-in.
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/// Use cases: copy_select (copying source options), lvgl (copying widget options)
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void copy_from(const FixedVector &other) {
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cleanup_();
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reset_();
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init(other.size());
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for (const auto &item : other) {
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push_back(item);
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}
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}
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// Allocate capacity - can be called multiple times to reinit
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void init(size_t n) {
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cleanup_();
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@@ -292,6 +318,11 @@ template<typename T> class FixedVector {
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return data_[size_ - 1];
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}
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/// Access first element (no bounds checking - matches std::vector behavior)
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/// Caller must ensure vector is not empty (size() > 0)
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T &front() { return data_[0]; }
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const T &front() const { return data_[0]; }
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/// Access last element (no bounds checking - matches std::vector behavior)
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/// Caller must ensure vector is not empty (size() > 0)
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T &back() { return data_[size_ - 1]; }
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@@ -305,6 +336,12 @@ template<typename T> class FixedVector {
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T &operator[](size_t i) { return data_[i]; }
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const T &operator[](size_t i) const { return data_[i]; }
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/// Access element with bounds checking (matches std::vector behavior)
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/// Returns reference to element at index i
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/// Behavior for out of bounds access matches std::vector::at() (undefined on embedded)
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T &at(size_t i) { return data_[i]; }
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const T &at(size_t i) const { return data_[i]; }
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// Iterator support for range-based for loops
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T *begin() { return data_; }
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T *end() { return data_ + size_; }
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@@ -12,5 +12,8 @@ esphome:
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- logger.log: "Failed to connect to WiFi!"
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wifi:
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ssid: MySSID
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password: password1
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networks:
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- ssid: MySSID
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password: password1
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- ssid: MySSID2
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password: password2
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