clients: snapshot

This commit is contained in:
nym21
2026-01-14 10:07:27 +01:00
parent 922a0abb60
commit 335cbce09e
5 changed files with 888 additions and 811 deletions
+10 -13
View File
@@ -57,10 +57,10 @@ pub fn prepare_tree_node<'a>(
// Skip if this matches a parameterizable pattern AND has no outlier AND field parts match
let base_result = get_pattern_instance_base(node);
let pattern_fully_matches = pattern_lookup
let pattern_compatible = pattern_lookup
.get(&fields)
.and_then(|name| metadata.find_pattern(name))
.is_some_and(|p| {
.is_none_or(|p| {
p.is_suffix_mode() == base_result.is_suffix_mode
&& p.field_parts_match(&base_result.field_parts)
});
@@ -68,7 +68,7 @@ pub fn prepare_tree_node<'a>(
&& pattern_name != name
&& metadata.is_parameterizable(pattern_name)
&& !base_result.has_outlier
&& pattern_fully_matches
&& pattern_compatible
{
return None;
}
@@ -93,22 +93,19 @@ pub fn prepare_tree_node<'a>(
.is_some_and(|cf| metadata.matches_pattern(cf));
// Check if the pattern mode AND field parts match the instance
let pattern_fully_matches = child_fields
// Uses is_none_or so that "no pattern" doesn't trigger inlining
let pattern_compatible = child_fields
.as_ref()
.and_then(|cf| metadata.find_pattern_by_fields(cf))
.is_some_and(|p| {
// Mode must match (suffix vs prefix)
if p.is_suffix_mode() != base_result.is_suffix_mode {
return false;
}
// Field parts must also match
p.field_parts_match(&base_result.field_parts)
.is_none_or(|p| {
p.is_suffix_mode() == base_result.is_suffix_mode
&& p.field_parts_match(&base_result.field_parts)
});
// should_inline determines if we generate an inline struct type
// We inline if: it's a branch AND (doesn't match any pattern OR pattern doesn't fully match OR has outlier)
// We inline if: it's a branch AND (doesn't match any pattern OR pattern incompatible OR has outlier)
let should_inline =
!is_leaf && (!matches_any_pattern || !pattern_fully_matches || base_result.has_outlier);
!is_leaf && (!matches_any_pattern || !pattern_compatible || base_result.has_outlier);
// Inline type name (only used when should_inline is true)
let inline_type_name = if should_inline {
+80
View File
@@ -861,3 +861,83 @@ fn test_root_cost_basis_prefix() {
let nested_prefix = find_common_prefix(&nested_bases);
println!("Nested cost_basis prefix: {:?}", nested_prefix);
}
#[test]
fn test_price_sats_vs_usd_different_field_parts() {
// This test verifies that price.sats and price.usd, which have the same structure
// but different metric naming conventions, are handled correctly.
//
// price.sats has: price_ohlc_sats, price_sats_close, price_sats_high, etc.
// price.usd has: price_ohlc, price_close, price_high, etc.
//
// Both should use the same structural pattern but with different base arguments.
let catalog = load_catalog();
let metadata = ClientMetadata::from_catalog(catalog.clone());
// Generate JavaScript output
let mut js_output = String::new();
writeln!(js_output, "// Test output").unwrap();
brk_bindgen::javascript::client::generate_base_client(&mut js_output);
brk_bindgen::javascript::client::generate_index_accessors(
&mut js_output,
&metadata.index_set_patterns,
);
brk_bindgen::javascript::client::generate_structural_patterns(
&mut js_output,
&metadata.structural_patterns,
&metadata,
);
brk_bindgen::javascript::tree::generate_tree_typedefs(
&mut js_output,
&metadata.catalog,
&metadata,
);
brk_bindgen::javascript::tree::generate_main_client(
&mut js_output,
&metadata.catalog,
&metadata,
&[],
);
// Verify price.sats uses sats-suffixed metrics
assert!(
js_output.contains("'price_ohlc_sats'"),
"price.sats.ohlc should use 'price_ohlc_sats'"
);
assert!(
js_output.contains("'price_sats'") || js_output.contains("createSplitPattern2(this, 'price_sats')"),
"price.sats.split should use 'price_sats' base"
);
// Verify price.usd uses non-sats metrics (no _sats suffix)
assert!(
js_output.contains("createMetricPattern1(this, 'price_ohlc')"),
"price.usd.ohlc should use 'price_ohlc' (without _sats)"
);
assert!(
js_output.contains("createSplitPattern2(this, 'price')"),
"price.usd.split should use 'price' base (without _sats)"
);
// Verify they don't incorrectly share the same metric names
// Count occurrences to ensure usd doesn't use sats metrics
let sats_ohlc_count = js_output.matches("'price_ohlc_sats'").count();
let usd_ohlc_count = js_output.matches("'price_ohlc')").count();
println!("price_ohlc_sats occurrences: {}", sats_ohlc_count);
println!("price_ohlc occurrences: {}", usd_ohlc_count);
assert!(
sats_ohlc_count >= 1,
"Should have at least one 'price_ohlc_sats' for price.sats"
);
assert!(
usd_ohlc_count >= 1,
"Should have at least one 'price_ohlc' for price.usd"
);
println!("\nPrice sats vs usd field_parts test passed!");
println!(" - price.sats correctly uses sats-suffixed metrics");
println!(" - price.usd correctly uses non-sats metrics");
}
+260 -260
View File
@@ -2974,40 +2974,6 @@ impl BitcoinPattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct ClassAveragePricePattern<T> {
pub _2015: MetricPattern4<T>,
pub _2016: MetricPattern4<T>,
pub _2017: MetricPattern4<T>,
pub _2018: MetricPattern4<T>,
pub _2019: MetricPattern4<T>,
pub _2020: MetricPattern4<T>,
pub _2021: MetricPattern4<T>,
pub _2022: MetricPattern4<T>,
pub _2023: MetricPattern4<T>,
pub _2024: MetricPattern4<T>,
pub _2025: MetricPattern4<T>,
}
impl<T: DeserializeOwned> ClassAveragePricePattern<T> {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
_2015: MetricPattern4::new(client.clone(), _m(&acc, "2015_returns")),
_2016: MetricPattern4::new(client.clone(), _m(&acc, "2016_returns")),
_2017: MetricPattern4::new(client.clone(), _m(&acc, "2017_returns")),
_2018: MetricPattern4::new(client.clone(), _m(&acc, "2018_returns")),
_2019: MetricPattern4::new(client.clone(), _m(&acc, "2019_returns")),
_2020: MetricPattern4::new(client.clone(), _m(&acc, "2020_returns")),
_2021: MetricPattern4::new(client.clone(), _m(&acc, "2021_returns")),
_2022: MetricPattern4::new(client.clone(), _m(&acc, "2022_returns")),
_2023: MetricPattern4::new(client.clone(), _m(&acc, "2023_returns")),
_2024: MetricPattern4::new(client.clone(), _m(&acc, "2024_returns")),
_2025: MetricPattern4::new(client.clone(), _m(&acc, "2025_returns")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct DollarsPattern<T> {
pub average: MetricPattern2<T>,
@@ -3043,33 +3009,35 @@ impl<T: DeserializeOwned> DollarsPattern<T> {
}
/// Pattern struct for repeated tree structure.
pub struct RelativePattern2 {
pub neg_unrealized_loss_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub neg_unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub net_unrealized_pnl_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub net_unrealized_pnl_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub supply_in_loss_rel_to_own_supply: MetricPattern1<StoredF64>,
pub supply_in_profit_rel_to_own_supply: MetricPattern1<StoredF64>,
pub unrealized_loss_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub unrealized_profit_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub unrealized_profit_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub struct ClassAveragePricePattern<T> {
pub _2015: MetricPattern4<T>,
pub _2016: MetricPattern4<T>,
pub _2017: MetricPattern4<T>,
pub _2018: MetricPattern4<T>,
pub _2019: MetricPattern4<T>,
pub _2020: MetricPattern4<T>,
pub _2021: MetricPattern4<T>,
pub _2022: MetricPattern4<T>,
pub _2023: MetricPattern4<T>,
pub _2024: MetricPattern4<T>,
pub _2025: MetricPattern4<T>,
}
impl RelativePattern2 {
impl<T: DeserializeOwned> ClassAveragePricePattern<T> {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
neg_unrealized_loss_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "neg_unrealized_loss_rel_to_own_market_cap")),
neg_unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "neg_unrealized_loss_rel_to_own_total_unrealized_pnl")),
net_unrealized_pnl_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "net_unrealized_pnl_rel_to_own_market_cap")),
net_unrealized_pnl_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "net_unrealized_pnl_rel_to_own_total_unrealized_pnl")),
supply_in_loss_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "supply_in_loss_rel_to_own_supply")),
supply_in_profit_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "supply_in_profit_rel_to_own_supply")),
unrealized_loss_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_loss_rel_to_own_market_cap")),
unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_loss_rel_to_own_total_unrealized_pnl")),
unrealized_profit_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_profit_rel_to_own_market_cap")),
unrealized_profit_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_profit_rel_to_own_total_unrealized_pnl")),
_2015: MetricPattern4::new(client.clone(), _m(&acc, "2015_returns")),
_2016: MetricPattern4::new(client.clone(), _m(&acc, "2016_returns")),
_2017: MetricPattern4::new(client.clone(), _m(&acc, "2017_returns")),
_2018: MetricPattern4::new(client.clone(), _m(&acc, "2018_returns")),
_2019: MetricPattern4::new(client.clone(), _m(&acc, "2019_returns")),
_2020: MetricPattern4::new(client.clone(), _m(&acc, "2020_returns")),
_2021: MetricPattern4::new(client.clone(), _m(&acc, "2021_returns")),
_2022: MetricPattern4::new(client.clone(), _m(&acc, "2022_returns")),
_2023: MetricPattern4::new(client.clone(), _m(&acc, "2023_returns")),
_2024: MetricPattern4::new(client.clone(), _m(&acc, "2024_returns")),
_2025: MetricPattern4::new(client.clone(), _m(&acc, "2025_returns")),
}
}
}
@@ -3106,6 +3074,38 @@ impl RelativePattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct RelativePattern2 {
pub neg_unrealized_loss_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub neg_unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub net_unrealized_pnl_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub net_unrealized_pnl_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub supply_in_loss_rel_to_own_supply: MetricPattern1<StoredF64>,
pub supply_in_profit_rel_to_own_supply: MetricPattern1<StoredF64>,
pub unrealized_loss_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
pub unrealized_profit_rel_to_own_market_cap: MetricPattern1<StoredF32>,
pub unrealized_profit_rel_to_own_total_unrealized_pnl: MetricPattern1<StoredF32>,
}
impl RelativePattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
neg_unrealized_loss_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "neg_unrealized_loss_rel_to_own_market_cap")),
neg_unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "neg_unrealized_loss_rel_to_own_total_unrealized_pnl")),
net_unrealized_pnl_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "net_unrealized_pnl_rel_to_own_market_cap")),
net_unrealized_pnl_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "net_unrealized_pnl_rel_to_own_total_unrealized_pnl")),
supply_in_loss_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "supply_in_loss_rel_to_own_supply")),
supply_in_profit_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "supply_in_profit_rel_to_own_supply")),
unrealized_loss_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_loss_rel_to_own_market_cap")),
unrealized_loss_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_loss_rel_to_own_total_unrealized_pnl")),
unrealized_profit_rel_to_own_market_cap: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_profit_rel_to_own_market_cap")),
unrealized_profit_rel_to_own_total_unrealized_pnl: MetricPattern1::new(client.clone(), _m(&acc, "unrealized_profit_rel_to_own_total_unrealized_pnl")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct CountPattern2<T> {
pub average: MetricPattern1<T>,
@@ -3168,36 +3168,6 @@ impl AddrCountPattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct FullnessPattern<T> {
pub average: MetricPattern2<T>,
pub base: MetricPattern11<T>,
pub max: MetricPattern2<T>,
pub median: MetricPattern6<T>,
pub min: MetricPattern2<T>,
pub pct10: MetricPattern6<T>,
pub pct25: MetricPattern6<T>,
pub pct75: MetricPattern6<T>,
pub pct90: MetricPattern6<T>,
}
impl<T: DeserializeOwned> FullnessPattern<T> {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
average: MetricPattern2::new(client.clone(), _m(&acc, "average")),
base: MetricPattern11::new(client.clone(), acc.clone()),
max: MetricPattern2::new(client.clone(), _m(&acc, "max")),
median: MetricPattern6::new(client.clone(), _m(&acc, "median")),
min: MetricPattern2::new(client.clone(), _m(&acc, "min")),
pct10: MetricPattern6::new(client.clone(), _m(&acc, "pct10")),
pct25: MetricPattern6::new(client.clone(), _m(&acc, "pct25")),
pct75: MetricPattern6::new(client.clone(), _m(&acc, "pct75")),
pct90: MetricPattern6::new(client.clone(), _m(&acc, "pct90")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct FeeRatePattern<T> {
pub average: MetricPattern1<T>,
@@ -3228,6 +3198,36 @@ impl<T: DeserializeOwned> FeeRatePattern<T> {
}
}
/// Pattern struct for repeated tree structure.
pub struct FullnessPattern<T> {
pub average: MetricPattern2<T>,
pub base: MetricPattern11<T>,
pub max: MetricPattern2<T>,
pub median: MetricPattern6<T>,
pub min: MetricPattern2<T>,
pub pct10: MetricPattern6<T>,
pub pct25: MetricPattern6<T>,
pub pct75: MetricPattern6<T>,
pub pct90: MetricPattern6<T>,
}
impl<T: DeserializeOwned> FullnessPattern<T> {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
average: MetricPattern2::new(client.clone(), _m(&acc, "average")),
base: MetricPattern11::new(client.clone(), acc.clone()),
max: MetricPattern2::new(client.clone(), _m(&acc, "max")),
median: MetricPattern6::new(client.clone(), _m(&acc, "median")),
min: MetricPattern2::new(client.clone(), _m(&acc, "min")),
pct10: MetricPattern6::new(client.clone(), _m(&acc, "pct10")),
pct25: MetricPattern6::new(client.clone(), _m(&acc, "pct25")),
pct75: MetricPattern6::new(client.clone(), _m(&acc, "pct75")),
pct90: MetricPattern6::new(client.clone(), _m(&acc, "pct90")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct _0satsPattern {
pub activity: ActivityPattern2,
@@ -3282,84 +3282,6 @@ impl _100btcPattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct _10yTo12yPattern {
pub activity: ActivityPattern2,
pub cost_basis: CostBasisPattern2,
pub outputs: OutputsPattern,
pub realized: RealizedPattern2,
pub relative: RelativePattern2,
pub supply: SupplyPattern2,
pub unrealized: UnrealizedPattern,
}
impl _10yTo12yPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
activity: ActivityPattern2::new(client.clone(), acc.clone()),
cost_basis: CostBasisPattern2::new(client.clone(), acc.clone()),
outputs: OutputsPattern::new(client.clone(), _m(&acc, "utxo_count")),
realized: RealizedPattern2::new(client.clone(), acc.clone()),
relative: RelativePattern2::new(client.clone(), acc.clone()),
supply: SupplyPattern2::new(client.clone(), _m(&acc, "supply")),
unrealized: UnrealizedPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct _0satsPattern2 {
pub activity: ActivityPattern2,
pub cost_basis: CostBasisPattern,
pub outputs: OutputsPattern,
pub realized: RealizedPattern,
pub relative: RelativePattern4,
pub supply: SupplyPattern2,
pub unrealized: UnrealizedPattern,
}
impl _0satsPattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
activity: ActivityPattern2::new(client.clone(), acc.clone()),
cost_basis: CostBasisPattern::new(client.clone(), acc.clone()),
outputs: OutputsPattern::new(client.clone(), _m(&acc, "utxo_count")),
realized: RealizedPattern::new(client.clone(), acc.clone()),
relative: RelativePattern4::new(client.clone(), _m(&acc, "supply_in")),
supply: SupplyPattern2::new(client.clone(), _m(&acc, "supply")),
unrealized: UnrealizedPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct PeriodCagrPattern {
pub _10y: MetricPattern4<StoredF32>,
pub _2y: MetricPattern4<StoredF32>,
pub _3y: MetricPattern4<StoredF32>,
pub _4y: MetricPattern4<StoredF32>,
pub _5y: MetricPattern4<StoredF32>,
pub _6y: MetricPattern4<StoredF32>,
pub _8y: MetricPattern4<StoredF32>,
}
impl PeriodCagrPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
_10y: MetricPattern4::new(client.clone(), _p("10y", &acc)),
_2y: MetricPattern4::new(client.clone(), _p("2y", &acc)),
_3y: MetricPattern4::new(client.clone(), _p("3y", &acc)),
_4y: MetricPattern4::new(client.clone(), _p("4y", &acc)),
_5y: MetricPattern4::new(client.clone(), _p("5y", &acc)),
_6y: MetricPattern4::new(client.clone(), _p("6y", &acc)),
_8y: MetricPattern4::new(client.clone(), _p("8y", &acc)),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct UnrealizedPattern {
pub neg_unrealized_loss: MetricPattern1<Dollars>,
@@ -3412,6 +3334,84 @@ impl _10yPattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct _0satsPattern2 {
pub activity: ActivityPattern2,
pub cost_basis: CostBasisPattern,
pub outputs: OutputsPattern,
pub realized: RealizedPattern,
pub relative: RelativePattern4,
pub supply: SupplyPattern2,
pub unrealized: UnrealizedPattern,
}
impl _0satsPattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
activity: ActivityPattern2::new(client.clone(), acc.clone()),
cost_basis: CostBasisPattern::new(client.clone(), acc.clone()),
outputs: OutputsPattern::new(client.clone(), _m(&acc, "utxo_count")),
realized: RealizedPattern::new(client.clone(), acc.clone()),
relative: RelativePattern4::new(client.clone(), _m(&acc, "supply_in")),
supply: SupplyPattern2::new(client.clone(), _m(&acc, "supply")),
unrealized: UnrealizedPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct _10yTo12yPattern {
pub activity: ActivityPattern2,
pub cost_basis: CostBasisPattern2,
pub outputs: OutputsPattern,
pub realized: RealizedPattern2,
pub relative: RelativePattern2,
pub supply: SupplyPattern2,
pub unrealized: UnrealizedPattern,
}
impl _10yTo12yPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
activity: ActivityPattern2::new(client.clone(), acc.clone()),
cost_basis: CostBasisPattern2::new(client.clone(), acc.clone()),
outputs: OutputsPattern::new(client.clone(), _m(&acc, "utxo_count")),
realized: RealizedPattern2::new(client.clone(), acc.clone()),
relative: RelativePattern2::new(client.clone(), acc.clone()),
supply: SupplyPattern2::new(client.clone(), _m(&acc, "supply")),
unrealized: UnrealizedPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct PeriodCagrPattern {
pub _10y: MetricPattern4<StoredF32>,
pub _2y: MetricPattern4<StoredF32>,
pub _3y: MetricPattern4<StoredF32>,
pub _4y: MetricPattern4<StoredF32>,
pub _5y: MetricPattern4<StoredF32>,
pub _6y: MetricPattern4<StoredF32>,
pub _8y: MetricPattern4<StoredF32>,
}
impl PeriodCagrPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
_10y: MetricPattern4::new(client.clone(), _p("10y", &acc)),
_2y: MetricPattern4::new(client.clone(), _p("2y", &acc)),
_3y: MetricPattern4::new(client.clone(), _p("3y", &acc)),
_4y: MetricPattern4::new(client.clone(), _p("4y", &acc)),
_5y: MetricPattern4::new(client.clone(), _p("5y", &acc)),
_6y: MetricPattern4::new(client.clone(), _p("6y", &acc)),
_8y: MetricPattern4::new(client.clone(), _p("8y", &acc)),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct ActivityPattern2 {
pub coinblocks_destroyed: BlockCountPattern<StoredF64>,
@@ -3455,37 +3455,19 @@ impl<T: DeserializeOwned> SplitPattern2<T> {
}
/// Pattern struct for repeated tree structure.
pub struct CoinbasePattern2 {
pub bitcoin: BlockCountPattern<Bitcoin>,
pub dollars: BlockCountPattern<Dollars>,
pub sats: BlockCountPattern<Sats>,
pub struct CostBasisPattern2 {
pub max: MetricPattern1<Dollars>,
pub min: MetricPattern1<Dollars>,
pub percentiles: PercentilesPattern,
}
impl CoinbasePattern2 {
impl CostBasisPattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
bitcoin: BlockCountPattern::new(client.clone(), _m(&acc, "btc")),
dollars: BlockCountPattern::new(client.clone(), _m(&acc, "usd")),
sats: BlockCountPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct SegwitAdoptionPattern {
pub base: MetricPattern11<StoredF32>,
pub cumulative: MetricPattern2<StoredF32>,
pub sum: MetricPattern2<StoredF32>,
}
impl SegwitAdoptionPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
base: MetricPattern11::new(client.clone(), acc.clone()),
cumulative: MetricPattern2::new(client.clone(), _m(&acc, "cumulative")),
sum: MetricPattern2::new(client.clone(), _m(&acc, "sum")),
max: MetricPattern1::new(client.clone(), _m(&acc, "max_cost_basis")),
min: MetricPattern1::new(client.clone(), _m(&acc, "min_cost_basis")),
percentiles: PercentilesPattern::new(client.clone(), _m(&acc, "cost_basis")),
}
}
}
@@ -3508,24 +3490,6 @@ impl CoinbasePattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct UnclaimedRewardsPattern {
pub bitcoin: BitcoinPattern2<Bitcoin>,
pub dollars: BlockCountPattern<Dollars>,
pub sats: BlockCountPattern<Sats>,
}
impl UnclaimedRewardsPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
bitcoin: BitcoinPattern2::new(client.clone(), _m(&acc, "btc")),
dollars: BlockCountPattern::new(client.clone(), _m(&acc, "usd")),
sats: BlockCountPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct _2015Pattern {
pub bitcoin: MetricPattern4<Bitcoin>,
@@ -3544,24 +3508,6 @@ impl _2015Pattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct CostBasisPattern2 {
pub max: MetricPattern1<Dollars>,
pub min: MetricPattern1<Dollars>,
pub percentiles: PercentilesPattern,
}
impl CostBasisPattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
max: MetricPattern1::new(client.clone(), _m(&acc, "max_cost_basis")),
min: MetricPattern1::new(client.clone(), _m(&acc, "min_cost_basis")),
percentiles: PercentilesPattern::new(client.clone(), _m(&acc, "cost_basis")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct ActiveSupplyPattern {
pub bitcoin: MetricPattern1<Bitcoin>,
@@ -3581,33 +3527,71 @@ impl ActiveSupplyPattern {
}
/// Pattern struct for repeated tree structure.
pub struct CostBasisPattern {
pub max: MetricPattern1<Dollars>,
pub min: MetricPattern1<Dollars>,
pub struct SegwitAdoptionPattern {
pub base: MetricPattern11<StoredF32>,
pub cumulative: MetricPattern2<StoredF32>,
pub sum: MetricPattern2<StoredF32>,
}
impl CostBasisPattern {
impl SegwitAdoptionPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
max: MetricPattern1::new(client.clone(), _m(&acc, "max_cost_basis")),
min: MetricPattern1::new(client.clone(), _m(&acc, "min_cost_basis")),
base: MetricPattern11::new(client.clone(), acc.clone()),
cumulative: MetricPattern2::new(client.clone(), _m(&acc, "cumulative")),
sum: MetricPattern2::new(client.clone(), _m(&acc, "sum")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct RelativePattern4 {
pub supply_in_loss_rel_to_own_supply: MetricPattern1<StoredF64>,
pub supply_in_profit_rel_to_own_supply: MetricPattern1<StoredF64>,
pub struct CoinbasePattern2 {
pub bitcoin: BlockCountPattern<Bitcoin>,
pub dollars: BlockCountPattern<Dollars>,
pub sats: BlockCountPattern<Sats>,
}
impl RelativePattern4 {
impl CoinbasePattern2 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
supply_in_loss_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "loss_rel_to_own_supply")),
supply_in_profit_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "profit_rel_to_own_supply")),
bitcoin: BlockCountPattern::new(client.clone(), _m(&acc, "btc")),
dollars: BlockCountPattern::new(client.clone(), _m(&acc, "usd")),
sats: BlockCountPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct UnclaimedRewardsPattern {
pub bitcoin: BitcoinPattern2<Bitcoin>,
pub dollars: BlockCountPattern<Dollars>,
pub sats: BlockCountPattern<Sats>,
}
impl UnclaimedRewardsPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
bitcoin: BitcoinPattern2::new(client.clone(), _m(&acc, "btc")),
dollars: BlockCountPattern::new(client.clone(), _m(&acc, "usd")),
sats: BlockCountPattern::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct _1dReturns1mSdPattern {
pub sd: MetricPattern4<StoredF32>,
pub sma: MetricPattern4<StoredF32>,
}
impl _1dReturns1mSdPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
sd: MetricPattern4::new(client.clone(), _m(&acc, "sd")),
sma: MetricPattern4::new(client.clone(), _m(&acc, "sma")),
}
}
}
@@ -3629,17 +3613,33 @@ impl SupplyPattern2 {
}
/// Pattern struct for repeated tree structure.
pub struct _1dReturns1mSdPattern {
pub sd: MetricPattern4<StoredF32>,
pub sma: MetricPattern4<StoredF32>,
pub struct RelativePattern4 {
pub supply_in_loss_rel_to_own_supply: MetricPattern1<StoredF64>,
pub supply_in_profit_rel_to_own_supply: MetricPattern1<StoredF64>,
}
impl _1dReturns1mSdPattern {
impl RelativePattern4 {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
sd: MetricPattern4::new(client.clone(), _m(&acc, "sd")),
sma: MetricPattern4::new(client.clone(), _m(&acc, "sma")),
supply_in_loss_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "loss_rel_to_own_supply")),
supply_in_profit_rel_to_own_supply: MetricPattern1::new(client.clone(), _m(&acc, "profit_rel_to_own_supply")),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct CostBasisPattern {
pub max: MetricPattern1<Dollars>,
pub min: MetricPattern1<Dollars>,
}
impl CostBasisPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
max: MetricPattern1::new(client.clone(), _m(&acc, "max_cost_basis")),
min: MetricPattern1::new(client.clone(), _m(&acc, "min_cost_basis")),
}
}
}
@@ -3686,22 +3686,8 @@ impl<T: DeserializeOwned> SatsPattern<T> {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
ohlc: MetricPattern1::new(client.clone(), _m(&acc, "ohlc")),
split: SplitPattern2::new(client.clone(), acc.clone()),
}
}
}
/// Pattern struct for repeated tree structure.
pub struct OutputsPattern {
pub utxo_count: MetricPattern1<StoredU64>,
}
impl OutputsPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
utxo_count: MetricPattern1::new(client.clone(), acc.clone()),
ohlc: MetricPattern1::new(client.clone(), _m(&acc, "ohlc_sats")),
split: SplitPattern2::new(client.clone(), _m(&acc, "sats")),
}
}
}
@@ -3720,6 +3706,20 @@ impl RealizedPriceExtraPattern {
}
}
/// Pattern struct for repeated tree structure.
pub struct OutputsPattern {
pub utxo_count: MetricPattern1<StoredU64>,
}
impl OutputsPattern {
/// Create a new pattern node with accumulated metric name.
pub fn new(client: Arc<BrkClientBase>, acc: String) -> Self {
Self {
utxo_count: MetricPattern1::new(client.clone(), acc.clone()),
}
}
}
// Metrics tree
/// Metrics tree node.